WO2018068698A1 - 能预设自定位时间长短点使合页能自闭结构 - Google Patents

能预设自定位时间长短点使合页能自闭结构 Download PDF

Info

Publication number
WO2018068698A1
WO2018068698A1 PCT/CN2017/105523 CN2017105523W WO2018068698A1 WO 2018068698 A1 WO2018068698 A1 WO 2018068698A1 CN 2017105523 W CN2017105523 W CN 2017105523W WO 2018068698 A1 WO2018068698 A1 WO 2018068698A1
Authority
WO
WIPO (PCT)
Prior art keywords
volt
electromagnet
power supply
power
self
Prior art date
Application number
PCT/CN2017/105523
Other languages
English (en)
French (fr)
Inventor
吴裕龙
Original Assignee
赵芬
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 赵芬 filed Critical 赵芬
Priority to US17/263,377 priority Critical patent/US20210340802A1/en
Publication of WO2018068698A1 publication Critical patent/WO2018068698A1/zh

Links

Images

Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F1/00Closers or openers for wings, not otherwise provided for in this subclass
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R16/00Electric or fluid circuits specially adapted for vehicles and not otherwise provided for; Arrangement of elements of electric or fluid circuits specially adapted for vehicles and not otherwise provided for
    • B60R16/02Electric or fluid circuits specially adapted for vehicles and not otherwise provided for; Arrangement of elements of electric or fluid circuits specially adapted for vehicles and not otherwise provided for electric constitutive elements
    • B60R16/03Electric or fluid circuits specially adapted for vehicles and not otherwise provided for; Arrangement of elements of electric or fluid circuits specially adapted for vehicles and not otherwise provided for electric constitutive elements for supply of electrical power to vehicle subsystems or for
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D11/00Additional features or accessories of hinges
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D11/00Additional features or accessories of hinges
    • E05D11/10Devices for preventing movement between relatively-movable hinge parts
    • E05D11/1028Devices for preventing movement between relatively-movable hinge parts for maintaining the hinge in two or more positions, e.g. intermediate or fully open
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D3/00Hinges with pins
    • E05D3/02Hinges with pins with one pin
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F1/00Closers or openers for wings, not otherwise provided for in this subclass
    • E05F1/002Closers or openers for wings, not otherwise provided for in this subclass controlled by automatically acting means
    • E05F1/008Closers or openers for wings, not otherwise provided for in this subclass controlled by automatically acting means by time control
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F1/00Closers or openers for wings, not otherwise provided for in this subclass
    • E05F1/08Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings
    • E05F1/10Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings for swinging wings, e.g. counterbalance
    • E05F1/12Mechanisms in the shape of hinges or pivots, operated by springs
    • E05F1/1207Mechanisms in the shape of hinges or pivots, operated by springs with a coil spring parallel with the pivot axis
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F1/00Closers or openers for wings, not otherwise provided for in this subclass
    • E05F1/08Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings
    • E05F1/10Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings for swinging wings, e.g. counterbalance
    • E05F1/12Mechanisms in the shape of hinges or pivots, operated by springs
    • E05F1/1207Mechanisms in the shape of hinges or pivots, operated by springs with a coil spring parallel with the pivot axis
    • E05F1/1223Mechanisms in the shape of hinges or pivots, operated by springs with a coil spring parallel with the pivot axis with a compression or traction spring
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • E05D7/04Hinges adjustable relative to the wing or the frame
    • E05D2007/0461Hinges adjustable relative to the wing or the frame in angular arrangement to the wing or the frame
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D7/00Hinges or pivots of special construction
    • E05D7/0009Adjustable hinges
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F1/00Closers or openers for wings, not otherwise provided for in this subclass
    • E05F1/02Closers or openers for wings, not otherwise provided for in this subclass gravity-actuated, e.g. by use of counterweights
    • E05F1/04Closers or openers for wings, not otherwise provided for in this subclass gravity-actuated, e.g. by use of counterweights for wings which lift during movement, operated by their own weight
    • E05F1/06Mechanisms in the shape of hinges or pivots, operated by the weight of the wing
    • E05F1/061Mechanisms in the shape of hinges or pivots, operated by the weight of the wing with cams or helical tracks
    • E05F1/066Helical grooves, slots, threads or the like
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/40Motors; Magnets; Springs; Weights; Accessories therefor
    • E05Y2201/46Magnets
    • E05Y2201/462Electromagnets
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/60Suspension or transmission members; Accessories therefor
    • E05Y2201/622Suspension or transmission members elements
    • E05Y2201/696Screw mechanisms
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2400/00Electronic control; Electrical power; Power supply; Power or signal transmission; User interfaces
    • E05Y2400/10Electronic control
    • E05Y2400/44Sensors not directly associated with the wing movement
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2400/00Electronic control; Electrical power; Power supply; Power or signal transmission; User interfaces
    • E05Y2400/61Power supply
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/50Application of doors, windows, wings or fittings thereof for vehicles
    • E05Y2900/53Type of wing
    • E05Y2900/531Doors

Definitions

  • the invention relates to a length and a short point which can preset the self-positioning time so that the hinge can automatically close the hinge structure by itself.
  • the Chinese Patent Database has announced the invention of the utility model name "A Lifting and Closing Device", Patent No. 2013208356551. It includes a top hinge, a lower hinge, a drive base and a drive rod.
  • the upper hinge comprises an upper sleeve and an upper joint blade fixed to the upper sleeve;
  • the lower hinge comprises a lower sleeve and a lower joint blade fixed to the lower sleeve;
  • the transmission seat is fixed to the upper sleeve, and the bottom end of the transmission seat is concave
  • a transmission cavity is provided, and the inner spiral surface of the transmission cavity is provided with a first spiral portion.
  • the transmission rod is fixed to the lower sleeve, and the rotating surface of the transmission rod is provided with a second spiral portion, the transmission rod is connected to the transmission cavity, and the first spiral portion and the second spiral portion are adapted to engage, wherein: pushing the upper hinge The upper hinge is rotated relative to the lower hinge, and the upper hinge is raised by the cooperation of the first spiral portion and the second spiral portion; the release of the upper hinge is lowered by gravity, and the first spiral portion and the second spiral portion are passed. The cooperation can make the upper hinge automatically reset and return to close.
  • the lifting hinge device cannot realize self-positioning at a predetermined angular position, self-closing under a predetermined angular position, and cannot adjust the predetermined angle of self-positioning, nor can the self-positioning time be set, nor can the hinge automatically close itself. .
  • the invention provides a self-closing structure capable of presetting a self-positioning time and a short point, which overcomes the deficiencies of the lifting hinge device in the background art.
  • the self-closing structure can be preset according to the length and time of the self-positioning time, and is characterized by: two hinges, a screw sleeve, a solid rod, a first spring, an electromagnet sucker, a power electromagnet, a power timing controller, a plug And the adjusting seat, the two hinges are relatively rotatable, each of the hinges comprises a sleeve and a blade fixed outside the sleeve, the fixing rod has a screw, the screw sleeve has a transmission rod, and the transmission rod is fixed In the sleeve of the hinge, the plug is fixed in the sleeve of the hinge, and the screw sleeve and the plug are spaced apart; the screw sleeve and the plug in the sleeve of the two hinges are provided with a solid rod, first a spring, an electromagnet suction cup, a power supply electromagnet, a bearing and an adjustment seat, and the screw of the fixed
  • the hinge blade of the timing controller can self-position the self-positioning time and the short preset button at a predetermined positioning angle position, so as to preset the time length of the power electromagnet and the electromagnet chuck together with each magnet attraction.
  • the power timing controller is also synchronously matched with the preset self-positioning time of the self-positioning time of the preset hinge leaf at a predetermined positioning angle position, so that the hinge is self-positioning after a predetermined positioning angle position;
  • the page can be synchronously matched with the degaussing time point of the power supply electromagnet, and at the same time, the energy storage of the first spring is changed and released, so that the energy storage elastic force of one end of the first spring can be abutted against the convex ring, and the other end is abutted against the cup.
  • the self-closing structure can be preset by the length and time of the self-positioning time, and is characterized by: a hinge, a connecting sleeve, a screw sleeve, a fixed rod, a first spring, an electromagnet sucker, a 12-volt DC power electromagnet, A 220-volt AC power transformer capable of transforming into a 12-volt DC power supply, a 12-volt DC power supply timing controller, a wireless remote controller, a plug, and an adjustment seat, the two hinges being relatively rotatable, each of which Each of the pages includes a sleeve and a blade fixed to the outside of the sleeve, the fixed rod has a screw; the connecting sleeve is sleeved in the sleeve of the two hinges, and the screw sleeve is rotatably and non-movably disposed in one end of the connecting sleeve The plug can not be rotated or moved in the other end of the connecting sleeve,
  • the spacing position is such that the twelve-volt DC power electromagnet and the electromagnet chuck can be magnetized together to be positioned in the inner ring of the cup, and the adjusting seat can also synchronously adjust the hinge to enable a predetermined positioning.
  • Angle position self-positioning the one end of the 220-volt AC power transformer that can be transformed into a 12-volt DC power supply is a 220-volt AC power transformer AC power cord plug, and the red line of the 220-volt AC power cord plug that can be transformed into a 12-volt DC power supply is an input adapter of a 220-volt AC power supply to be connected to the transformer, and
  • the blue line of the 220-volt AC power line plug that can be transformed into a 12-volt DC power supply is an input zero-connector of the 220-volt AC power supply to which the transformer is connected, and the energy can be transformed.
  • the 220-volt AC power cord plug for the 12-volt DC power supply is to be plugged into a 220-volt AC power socket, and the 220-volt AC power transformer can be transformed into a 12-volt DC power supply.
  • the output voltage of the other end is a positive terminal that has been transformed into a 12 volt DC power supply
  • the output voltage of the other end of the 220 volt AC power transformer is a negative terminal that has been transformed into a 12 volt DC power supply
  • the The positive DC power line connector of the 12-volt DC power supply timing controller is the other end of the 220-volt AC power transformer that can be transformed into a 12-volt DC power supply.
  • the output voltage is converted to a 12-volt DC power supply.
  • the positive terminal is connected together, and the negative DC power line connector of the 12 volt DC power supply timing controller is to be connected to the other end of the 220 volt AC power transformer.
  • the output voltage is the negative terminal that has been transformed into a 12 volt DC power supply.
  • the positive line of the 12 volt DC power supply electromagnet is connected with the positive terminal of the other end of the 12 volt DC power supply timing controller, which is transformed into a 12 volt DC power supply, and the ten
  • the negative line of the two-volt DC power supply electromagnet is to be connected with one of the leads of the magnetic switch of the magnetic switch, and the other lead of the sensor with the lead switch of the magnetic switch is to be timed with a 12 volt DC power supply.
  • the output voltage of the other end of the controller is connected to the negative terminal of the 12V DC power supply, so that the 12V DC power electromagnet and the electromagnet suction cup can be matched with the 12V DC power supply timing controller and twelve.
  • Volt-magnetic switch with leaded sensor and magnetic body to enable 12-volt DC power supply timing controller via mobile phone remote control via voice control via wireless
  • the remote control of the controller is controlled by an electronic intelligent control or a preset button of the hinge positioning time of the human-powered 12-volt DC power supply timing controller, so that the 12-volt DC power supply electromagnet and the electromagnet suction cup can be preset each time.
  • the time of suction together is long and short, and the self-positioning time of the hinge vane can be self-positioning at a predetermined positioning angle position every time; when the hinge vane reaches the 12 volt DC power supply timing controller
  • the self-positioning time point of the preset hinge vane is preset, the degaussing time point of the 12-volt DC power supply electromagnet and the electromagnet sucker magnet pre-set by the 12-volt DC power supply timing controller is relatively
  • the energy storage state of the first spring can change and release, so that one end of the first spring
  • the energy storage elastic force can be applied to the other end of the convex ring to store the elastic force against the pad on the front end surface of the cup body, so that the hinge blade can automatically rotate and close the door page.
  • the hinged blade is pushed to open in the leftward direction of rotation, so that the first sleeve of the hinged blade can drive the transmission rod in the first sleeve and the screw sleeve in the second sleeve to rotate, so as to make the second
  • the solid rod in the sleeve has a screw capable of sliding downward along the axial direction of the screw sleeve in the second sleeve to strongly compress the energy storage elastic force of the first spring, so that the solid rod has a front ring of the convex ring
  • the surface can slide down in the axial direction to compress the spring of the energy storage elastic force at the other end of the energy storage elastic force against the gasket on the front end plane of the cup body, and at the same time the solid rod has a screw Large and small data sets of the straight-inclined pitch of six convex straight-line pitch teeth between two or more, and six straight straight slopes between two or more of the threaded screw sleeves The large and small data of the pitch pitch of
  • the adjusting seat can be adjusted and rotated to match the plug of the plug and the electromagnet and the cup bottom of the cup body and the 12-volt DC power electromagnet to adjust the 12-volt DC power electromagnet.
  • the distance between the electromagnet and the electromagnet is required to position the twelve-volt DC power electromagnet and the electromagnet suction cup together in the inner ring of the cup.
  • the adjustment seat can also adjust the hinge to adjust the hinge.
  • the 12-volt DC power supply timing controller is remotely controlled by the mobile phone via voice control via a wireless remote control via electronic intelligent control or the like
  • the hinge vane of the 12-volt power supply timing controller can self-position the self-positioning time and a short preset button at a predetermined positioning angle position, so that the 12-volt DC power supply electromagnet and the electromagnet suction cup can be preset.
  • the time of each magnetic attraction is long and short, and the 12-volt DC power supply timing controller can also synchronize with the pre-set hinges.
  • the self-positioning time is long and short at a predetermined angular position.
  • the page can be self-positioning after a predetermined angular position; when the hinged blade reaches the self-positioning time point of the self-positioning of the pre-set hinge of the 12 volt DC power supply timing controller at a predetermined positioning angle position
  • the hinge can synchronize the degaussing time point corresponding to the magnetic force of the 12V DC power supply solenoid and the electromagnet suction cup, so that the 12V DC power electromagnet can be matched with the 12V DC power supply timing controller.
  • the fixed rod has a screw which can be set to a data size setting of a straight oblique pitch of two or more reverse straight pitch pitches, and a set of convex spiral teeth of a reverse straight pitch pitch a numerical structure, a data size setting of a straight pitch pitch of a concave spiral rod tooth set to two or more reverse straight pitch pitches, and a convex spiral rod tooth of a reverse straight pitch pitch
  • the strip number structure is arranged such that the vane of the hinge is pushed to open to the right direction of rotation; the hinge vane is self-closing to the leftward direction of rotation, and the screw can slide axially downward and upward relative to the sleeve. The movement is within a predetermined set angle of the hinge rotation.
  • 1 is a perspective view showing the dissection of the door hinge of the first embodiment.
  • 1-1 is a perspective view of the second hinge of the first embodiment.
  • FIG. 1-2 are schematic perspective views of a first hinge of the first embodiment.
  • FIG. 1-3 are schematic perspective views of the screw sleeve of the first embodiment.
  • 1-4 are schematic perspective views of the solid rod of the first embodiment.
  • FIG 1-5 are schematic perspective views of the fixed slider of the first embodiment.
  • 1-6 are schematic perspective views of the first bearing of the first embodiment.
  • 1-7 are schematic perspective views of a sliding sleeve of the first embodiment.
  • 1-8 illustrate a perspective view of a first spacer of the first embodiment.
  • 1-9 are schematic perspective views of a second spacer of the first embodiment.
  • 1-10 are schematic perspective views of a third spacer of the first embodiment.
  • 1-11 are schematic perspective views of a twelve volt DC power electromagnet of the first embodiment.
  • 1-12 are schematic perspective views of the fixing screw of the cap of the first embodiment.
  • FIG 1-13 are schematic perspective views of the cap of the first embodiment.
  • 1-14 are schematic perspective views of an electromagnet chuck of the first embodiment.
  • 1-15 are schematic perspective views of a rubber column of the first embodiment.
  • 1-16 illustrate a perspective view of a plug of the first embodiment.
  • 1-17 illustrate a perspective view of an adjustment seat of the first embodiment.
  • FIG 1-18 are schematic perspective views of the fixing screw of the electromagnet of the first embodiment.
  • FIGS. 1-19 are schematic perspective views of a spring of the first embodiment.
  • FIGS. 1-20 are schematic perspective views of a 12-volt DC power supply base of a vehicle body according to Embodiment 1.
  • 1-21 illustrates a perspective view of a twelve volt DC power supply timing controller of the first embodiment.
  • 1 to 2 are schematic perspective views of the wireless remote controller of the DC timing controller of the first embodiment.
  • FIG. 2 is a perspective view showing the dissection of the door hinge of the second embodiment.
  • FIG 3 is a perspective view showing the dissection of the door hinge of the third embodiment.
  • 3-1 is a perspective view of a twenty-four volt timing controller of a DC power supply of the third embodiment.
  • 3-2 is a perspective view of the DC power transformer of the third embodiment.
  • 3-3 is a perspective view of the wireless remote controller of the DC timing controller of the third embodiment.
  • 3-4 are schematic perspective views showing the side surface of the power cord of the cup of the third embodiment through the through hole.
  • 3-5 are schematic perspective views of the leaded sensor of the door magnetic switch of the third embodiment.
  • FIGS. 3-6 are schematic perspective views of a magnetic body without a lead of the magnetic switch of the third embodiment.
  • FIG. 4 is a perspective view showing the dissection of the hinge of the fourth embodiment.
  • 4-1 is a perspective view showing the second hinge of the fourth embodiment.
  • 4-2 is a perspective view showing the first hinge of the fourth embodiment.
  • 4-3 is a perspective view of the swivel of the fourth embodiment.
  • 4-4 is a perspective view showing the first bearing of the fourth embodiment.
  • FIG. 4-5 are schematic perspective views of the spiral ring of the fourth embodiment.
  • FIGS. 4-6 are schematic perspective views showing the assembly of the connecting sleeve of the fourth embodiment.
  • 4-7 are schematic perspective views of the fourth plug of the embodiment.
  • 4-8 are schematic perspective views of the screw sleeve of the fourth embodiment.
  • 4-9 are schematic perspective views of the solid rod of the fourth embodiment.
  • 4-10 illustrate a perspective view of a sealing apron of the fourth embodiment.
  • 4-11 illustrate a perspective view of a third bearing of the fourth embodiment.
  • 4-12 are schematic perspective views of a 220-volt AC timing controller of Embodiment 4.
  • 4-13 are schematic perspective views of a 220 volt AC power transformer of Embodiment 4.
  • FIG. 5 is a perspective view showing the dissection of the hinge of the fifth embodiment.
  • 5-1 is a perspective view of the first hinge of the fifth embodiment.
  • FIG. 5-2 is a perspective view showing the side through hole of the power cord of the second bushing of the fifth embodiment.
  • 5-3 is a perspective view showing the side surface of the power cord of the connecting sleeve of the fifth embodiment through the through hole.
  • the instinct preset self-positioning time is such that the hinge can be self-closing structure, such as can be fit in any shape of the door folding hinge, the door hinge, the hinge of the door hinge, such as butterfly hinge, H Type hinges, child-shaped hinges, flag hinges, etc.
  • the hinge can preset the length of the self-positioning time so that the hinge can be self-closing structure, such as the door page of the indoor and outdoor door of any shape, the door page of the door and window, the door page of the door, the door page of the door of the car, and the like.
  • the hinge can be set to a predetermined set positioning angle set to 180 degrees from a positional positioning position position of a predetermined setting positioning angle, and a predetermined angular position starting point between a predetermined angular position of 10 degrees and a predetermined angle of 180 degrees.
  • the hinged blade can realize self-positioning; the hinged blade needs to be closed, and can be remotely controlled by the mobile phone through the 12V DC power supply timing controller 125 via voice control ⁇ via wireless remote control Remote control ⁇ Electronic intelligent control, etc.
  • the 12 volt DC power supply timing controller 125 hinge blade can be positioned at a predetermined positioning angle position for a long time and a short preset button, can be preset 12
  • the volt-current power supply electromagnet 80 and the electromagnet suction cup 90 are magnetically attracted together for a long time and a short time, and the 12 volt DC power supply timing controller 125 can also synchronize the preset hinge position to a self-positioning time at a predetermined positioning angle position.
  • the hinge is at the self-positioning time point of the 12 volt DC power supply timing controller 125 that has been scheduled to be set, relative to the degaussing time point of the 12 volt DC power supply electromagnet and the electromagnet suction cup magnetic attraction, and At the same time, the stored spring force of the first spring is released, so that the energy storage elastic force of one end of the first spring 91 can strongly abut against the front cylindrical surface of the convex ring, and the other end of the energy storage elastic force can strongly abut against the front end of the cup body.
  • the spacer 86 on the plane enables the first spring 91 to return the first blade of the first hinge to the hinge so that the hinge can achieve its own automatic rightward rotation.
  • the hinge includes a first hinge 10, a second hinge 20, a first bearing 100, a screw sleeve 40, a fixed rod 30, a first spring 91, an electromagnet suction cup 90, 12 volt DC power supply electromagnet 80, 12 volt DC power supply timing controller 125, wireless remote control 168, plug 60 and adjustment seat 70;
  • the first hinge 10 is provided with a first blade 12 and two spacers fixed at the first Two first sleeves 11 of the blade, and the first blade 12 of the first hinge 10 is disposed in a folded shape (may not be disposed in a folded shape);
  • the second hinge 20 includes a hinged hinge Two spaced second blades 22 of the fixing base 190, the two spaced second blades 22 are fixed with the second bushing 21, and the wheelbase of the second bushing 21 and the spacing between the two first bushings 11 are suitable.
  • the second bushing 21 is adapted to be located between the two first bushings 11; through the screw through hole of the hinge fixing bracket 190 through the fixing screw 98, and then through the screw through hole of the door frame, so that The hinge mount 190 and the door frame can be fixed together.
  • the upper end of the inner ring through hole of the second sleeve 21 is recessed with a groove platform 101, and the first spacer 95 is sleeved and laid flat on the groove platform 101, and is located on the first sleeve 11 and the second shaft Between the sleeves 21; the bottom portion of the inner ring through hole of the second sleeve 21 is also recessed with a groove platform 201, and the second gasket 85 is sleeved and laid flat on the groove platform 201, and is located on the first shaft Set of 11 and second Between the sleeves 21, the first spacer 95 and the second spacer 85 can assist in enhancing the smoothness of the first blade 12 when it is opened and closed.
  • the nut 40 is rotatably and slidably coupled to the inner ring of the second sleeve 21.
  • the upper portion of the nut 40 is convexly disposed with a transmission rod 42 rotatably passing through the first bearing 100.
  • the groove platform 101 passing through the second sleeve 21 penetrates into the inner ring through hole of the first sleeve 11, and the transmission rod 42 is fitted in the inner through hole of the first sleeve 11, and is provided with a fixing screw 98. Screwing through the first sleeve 11 and the rotating rod 42 to fix the first sleeve 11 and the portion of the transmission rod 42 extending outside the second sleeve 21, so that the upper first sleeve 11 and the rotating rod 42 are fixed.
  • a fixing rod 30, a first spring 91, a 12 volt DC power electromagnet 80, an electromagnet chuck 90, a rubber column 59, a cup 56, and a plug are disposed between the screw sleeve 40 and the plug 60 in the second bushing 21. 60 and adjustment seat 70.
  • the optical rod segment of the capping screw 98 of the cap passes through the inner ring through hole of the cap 92 of the suction cup, and then continues through the inner ring through hole of the rubber post 59, and the threaded section 983 of the fixing screw 98 of the cap is screwed Connected to the screw hole of the connecting rod 311 of the fixed rod 30, and the screw head 982 of the fixing screw 98 of the cap is supported at the inner ring through hole step 981 of the cap 92 of the suction cup, and the thread segment 983
  • the screw is locked in the screw hole of the connecting rod 311 of the fixed rod 30, so that the electromagnet suction cup 90, the rubber column 59 and the connecting rod 311 of the fixed rod 30 are connected together, the cap 92 of the suction cup is screwed Engaged in the inner ring screw hole 920 of the suction cup cylinder, the suction cup cap 92 and the electromagnet suction cup 90 are connected together, so that the electromagnet suction cup 90, the rubber column 59
  • the polished rod section of the electromagnet fixing screw 700 passes through the inner ring through hole of the adjusting seat 70, and continues to pass through the through hole of the cup bottom of the cup body 56, and the threaded section 703 of the electromagnet fixing screw 700
  • the screw is locked into the screw hole of the 12 volt DC power supply electromagnet 80, and the screw head 702 of the fixing screw 700 of the electromagnet is supported
  • the adjusting base 70, the fixing screw 700 of the electromagnet and the 12-volt DC power electromagnet 80 can be connected together, so that the adjusting seat 70 is adjusted and rotated, so as to be correspondingly blocked.
  • the head 60, the fixed screw 700 of the electromagnet, the cup bottom of the cup 56 and the 12 volt DC power supply electromagnet 80 can adjust the position of the required spacing between the 12 volt DC power supply electromagnet 80 and the electromagnet suction cup 90.
  • the twelve-volt DC power electromagnet and the electromagnet chuck can be magnetically positioned together in the inner ring of the cup body, and the adjusting seat can synchronously adjust the hinge of the matching hinge between the predetermined positioning angles required.
  • a predetermined angular position is self-aligning; and the electromagnet securing screw 700 in turn limits the 12 volt DC power electromagnet 80 from the securing screw 700 of the electromagnet in the adjustment block 70.
  • the first blade 12 of the first hinge 10 is pushed open to the left direction of rotation, so that the first sleeve 11 can drive the transmission rod 42 in the first sleeve 11 and the screw sleeve 40 in the second sleeve 21 to Sliding axially downward compresses the energy storage elastic force of the first spring 91 so as to enable the screw 31 in the second sleeve 21 to rotate relative to the screw sleeve 40 in the second sleeve 21, so that the fixed rod 30 has
  • the front cylindrical surface of the convex ring 32 can slide downward in the axial direction to compress the energy storage elastic force of the first spring 91, and at the same time, two or more (such as six) positive straight slopes of the screw 31 of the solid rod 30
  • the pitch and pitch of the helical helical teeth 39 are large and small data sets, and the two or more (eg, six) of the helical threaded sleeves 40 are aligned with the straight helical pitch of the concave heli
  • the large and small data of the pitch pitch are set so as to pre-set the position of the distance between the screw and the wheelbase of the relative movement of the screw under the axis, and the energy storage of the first spring 91 can be preset and limited in synchronization with each other.
  • the strong and weak release of the top elastic force, and the relative synchronization of the first blade 12 of the first hinge 10 in advance can be automatically turned to the right in the right direction.
  • the speed is fast and slow, so that the screw 31 can be rotated relative to the upper portion of the screw sleeve 40 in the axial direction at a predetermined angle of rotation of the hinge (at this time, the solid rod 30 has between the two or more of the screw 31)
  • the six straight forward pitch pitches of the convex spiral rod teeth 39 have large straight and small data sets, and can be obtained from two or more of the six forward straight pitch pitches of the convex spiral rod teeth 39 of 15
  • the straight pitch pitch is set to a straight pitch pitch that can be set to about 129 degrees, and the two or more
  • the larger and smaller data of the straight pitch pitch of the six forward straight pitch pitches of the six forward straight pitch pitches are larger or larger, and the screw 31 slides axially downward and upward with respect to the screw sleeve 40.
  • the spacing dimension of the moving axial and wheelbase will be larger or larger, and the positioning angle position of the predetermined setting of the first blade 12 of the first hinge 10 that generates the hinge will be relatively larger or larger.
  • the reinforcing rod 32 has the convex ring 32 sliding downward in the axial direction and moving the compression energy of the spring 91 to be relatively larger or larger, and the fixing rod 30 has six strips between two or more of the screw 31.
  • the large and small data of the straight-inclined pitch of the convex spiral rod teeth 39 of the forward straight-inclined pitch are relatively adapted to the concave of the six forward straight-inclined pitches between the two or more of the screw-threaded sleeves.
  • the straight pitch pitch of the helical rod teeth 46 is the forward straight slope pitch set by the small data; and the six forward straight slope pitches between the two or more of the threaded sleeves are the concave spiral rod teeth 46
  • the large and small data of the straight pitch pitch can be set from six forward straight pitch pitch concave spirals between two or more
  • the 15 degree straight pitch pitch of the tooth 46 is predetermined to be set to a straight pitch pitch which can be set to about 129 degrees, and the axial and wheelbase of the screw 31 in the axial direction downward and upward relative to the screw sleeve 40
  • the spacing dimension will be larger or larger, and the positioning angle position of the predetermined setting of the first blade 12 of the first hinge 10 that generates the hinge will be relatively larger or larger, and the convex ring of the fixing rod 30 will be relatively large.
  • the front cylindrical surface slides down along the axial direction and moves the compression energy of the spring 91 to be relatively larger or larger, and the six forward straight oblique pitch snails between the two or more of the screw sleeve
  • the large and small data of the straight pitch pitch of the wire rod 46 is also adapted to the six spiral straight pitch pitch convex spiral teeth between the two or more of the screw 31 of the screw rod 30.
  • the top force is balanced so that the first blade 12 of the first hinge 10 can be self-aligned in rotation In the set positioning angle, it is convenient to use; at the same time, the adjusting seat 70 in the plug 60 is adjusted and rotated to correspond to the plug screw 60 and the electromagnet fixing screw 700 and the cup bottom of the cup 56 and the 12 volt DC power supply.
  • Electromagnet 80 to adjust 12 VDC power supply solenoid 80 and electromagnetic The spacing position of the iron chuck 90 is required so that the 12 volt DC power electromagnet 80 and the electromagnet chuck 90 can be magnetized together to be positioned in the inner ring of the cup 56, and the adjusting seat 70 can also adjust the first fit in synchronization.
  • the first blade 12 of the page 10 can be self-positioned at a desired angular position, while the 12 volt DC power supply timing controller 125 is remotely controlled by the mobile phone via voice control via a wireless remote control via electronic intelligent control or the like.
  • the hinge button of the human button 12 volt DC power supply timing controller 125 can self-position a long time and a short preset button at a predetermined positioning angle position, so that the 12 volt DC power electromagnet and the electromagnet can be preset.
  • the time of the magnetic attraction of the suction cup is long and short, and the 12-volt DC power supply timing controller 125 can also synchronize the self-positioning time length of the first blade 12 corresponding to the preset first hinge 10 to be self-positioning at a predetermined angular position.
  • the first blade 12 of the first hinge 10 can be self-positioned at a predetermined angular position; the first blade of the first hinge 10 is pre-set at the arrival of the 12 volt DC power supply timing controller 125.
  • the degaussing time point of the 12 volt DC power supply electromagnet 80 and the electromagnet chuck magnet is also relatively, while the first spring 91 is convex by the fixed rod 30.
  • the front surface of the ring 32 compresses the energy storage state of the first spring 91 by a strong high pressure from top to bottom, causing the energy storage state of the first spring 91 to change and release, so that the energy storage at one end of the first spring 91 is made.
  • the elastic force can strongly abut against the other end of the front cylindrical surface of the convex ring 32 to store the elastic force against the spacer 86 on the front end plane of the cup 56, so as to make the first hinge 10 first.
  • the blade 12 can automatically close the door page in the right direction of rotation.
  • the first blade 12 of the first hinge 10 needs to be self-positioned at a 90-degree positioning angle position in a predetermined set positioning angle, the first blade 12 of the first hinge 10 is opened by an external force to open in a left-direction rotation direction.
  • the first blade 12 is driven to rotate the transmission rod 42 and the screw sleeve 40, so that the screw 31 can slide downward along the axial direction of the screw sleeve 40 to compress the first position.
  • the energy storage spring of the spring 91 is such that the screw 31 moves relative to the screw sleeve 40 while the first spring 91 is a state in which the front cylindrical surface of the annular convex ring 32 of the fixed rod 30 compresses the elastic state of the first spring 91 by the high-pressure of the top-down strength, and at the same time, the fixed rod 30 has the screw 31 and the electromagnetic
  • the iron cup 90 will be correspondingly engaged with the first blade 12 of the first hinge 10 and moved to the first hinge.
  • the first blade 12 is opened to a predetermined angular position of 90 degrees, which is opposite to the first hinge 10.
  • the iron 80 and the electromagnet are fixed to the screw 700 and the cup bottom of the cup 56 to adjust the required spacing position between the 12 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 to make the 12 volt DC power supply electromagnet 80
  • the electromagnet chuck 90 can be magnetically positioned together in the cup 56
  • the adjusting seat 70 can synchronously adjust the predetermined angular position of 90 degrees required for adjusting the first blade 12 of the first hinge 10, so that the first blade 12 of the first hinge 10 can be set at a predetermined positioning angle of 30 degrees to
  • the 90 degree positioning angle position between 180 degrees is self-position
  • the first spring 91 is a state in which the first cylindrical spring 91 is compressed by the high pressure of the top edge of the solid rod 30 having the convex ring 32 compressed by the high pressure of the top to bottom.
  • the energy storage state is changed and released, so that the energy storage end of the first spring 91 can strongly force the other end of the convex ring 32 to store the elastic force against the spacer 86 on the front end surface of the cup 56.
  • the rubber post 59 is a state in which the convex ring 32 of the fixed rod 30 cooperates with the first magnet cap 92 to compress the elastic force of the high-pressure compression rubber column 59 from top to bottom, so that the rubber column is made.
  • the state of the storage elastic force of 59 is changed to make the energy storage elasticity of the rubber column 59
  • the force is released so that the energy storage elastic force at one end of the rubber post 59 is strong against the annular collar 32
  • the front edge of the cylindrical surface, and the other end of the rubber post 59 is elastically elastic against the suction cup cap 92 so that the first spring 91 and the rubber post 59 can urge the first hinge 10
  • the blade 12 can be rotated to the right to return to the first blade 12 of the first hinge 10 to be rotated rightward to return to the 90 degree predetermined positioning position position that has been adjusted by the adjustment seat 70 in the plug 60.
  • the first blade 12 of the first hinge 10 needs to be closed, and is controlled by a 12 volt DC power supply timing controller 125 via a mobile phone remotely controlled by a voice remote control via a wireless remote control via electronic intelligent control or by a human button 12 volt DC power supply.
  • the hinge vane of the timing controller 125 can self-position the self-positioning time and the short preset button at a predetermined positioning angle position, so that the preset 12 volt DC power supply solenoid 80 and the electromagnet suction cup 90 can be magnetically attracted.
  • the positioning time of the first blade 12 of the first hinge 10 positioned at the positioning angle position reaches the first blade of the first hinge 10 that has been preset by the 12 volt DC power supply timing controller 125 12 self-positioning
  • the first spring is the front side cylindrical surface of the fixed rod 30 having the convex ring 32, and the high-pressure of the top-down strength compresses the energy storage elastic state of the first spring 91 to make the first spring
  • the energy storage state of 91 is changed and released, so that the energy storage elastic force at one end of the first spring 91 can strongly abut against the energy storage elastic force at the other end of the front cylindrical surface of the convex ring 32.
  • the elastomeric rubber column 59 can also be replaced by a colored metal spring of a non-ferrous metal elastomer.
  • the cup body 56 is provided with a through hole 561 of a power cord on the side of the cup body 56 along the axial and axial spacing positions of the inner and outer rings, and the axial dimension of the second bushing 21 along the axial and axial spacing of the inner and outer rings
  • the through hole 568 of the power cord on the side of the second sleeve 21 is also disposed, and the through hole 561 of the power cord on the side of the cup and the side of the power cord of the second sleeve penetrate through the through hole 568, together along the inside and outside
  • the axial position of the ring and the spacing of the wheelbase are set to be aligned so that the power line of the 12 volt DC power solenoid 80 can be traversed.
  • the power line connectors 198 that pass through the through holes 561, through the through holes 568, and the 12 volt DC power supply timing controller 125 are connected together.
  • One end of the 12 volt DC power supply timing controller 125 is input with a 12 volt positive DC power line connector 198, and is connected to a DC power line connector 198 of the positive DC power supply base of the vehicle body 12 volt so that the 12 volt DC power supply timing controller 125 can Connected to the 12 volt DC power supply base of the vehicle body, and the other end of the 12 volt DC power supply timing controller 125 outputs a 12 volt negative DC power line connector 198, which is connected to a 12 volt load negative pole connected to a 12 volt load negative DC power supply electromagnet 80.
  • the DC power line connector 198 enables the 12 volt DC power supply solenoid 80 to be coupled with the 12 volt DC power supply timing controller 125 to enable the 12 volt DC power supply timing controller 125 to be remotely controlled via a mobile phone via voice control via a wireless remote control.
  • Electronic intelligent control or the like, or the hinged blade of the 12-volt DC power supply timing controller 125 can be self-positioning time and short preset button at a predetermined positioning angle position, so that 12 VDC can be preset.
  • the power electromagnet 80 and the electromagnet suction cup 90 are magnetically attracted together for a short time, and the 12 volt DC power supply timing controller 125 can also cooperate with each other.
  • the self-positioning time of the first blade 12 of the first hinge 10 is self-positioning at a predetermined positioning angle position for each time, so that the 12-volt DC power supply timing controller 125 can preset a 12-volt DC power supply.
  • the electromagnet 80 and the electromagnet chuck 90 are fixed in advance for a fixed time of one second, and can be set to any time between 24 hours, and can be preset to be a 12 volt DC power source.
  • the electromagnet 80 and the electromagnet chuck 90 are fixed and magnetized together for a long time and a short time, and the 12 volt DC power supply timing controller 125 can also synchronize the self-positioning of the first blade 12 of the first hinge 10 in advance.
  • the time length is set to one second in advance, and can be set to any time point between 24 hours, and the first blade 12 which is preset to be the first hinge 10 can be fixed at a predetermined positioning angle each time.
  • the position is self-positioning for a short period of time so that the 12 volt DC power supply timing controller 125 can fix the preset 12 volt DC power supply solenoid 80 and the electromagnet suction cup 90 magnetic each time.
  • the length of time of suction together is preset for one second, and can be set to 8 seconds between 24 hours, and becomes a preset voltage of 12 volt DC power electromagnet 80 and electromagnet chuck 90 each time.
  • the 8 second time point is set so that the 12 volt DC power supply timing controller 125 is remotely controlled by the mobile phone via the mobile phone, and the hinged blade of the 12 volt DC power supply timing controller 125 is remotely controlled by the wireless remote control via the electronic remote control.
  • the self-positioning time can be self-positioning at a predetermined positioning angle position and a short preset button, so that the 12 volt DC power supply timing controller 125 can preset the 12 volt DC power supply solenoid 80 and the electromagnet suction cup 90 each time. Together with the fixed magnetic attraction, the fixed magnetic attraction can be together for 8 seconds at a time, and the 12 volt DC power supply timing controller 125 can also synchronize the first blade 12 of the first hinge 10 to be fixed at a time.
  • the predetermined positioning angle position is self-positioning, and the self-positioning time is 8 seconds; when the first blade of the first hinge 10 reaches the 12 volt DC power supply timing controller 125, the preset 12 volt DC power electromagnet is preset. 8 0 and the electromagnet chuck magnetic attraction together with the degaussing time point of 8 seconds each time, and the first blade of the first hinge 10 which is also preset by the 12 volt DC power supply timing controller 125 is fixed at a predetermined position each time.
  • the first spring is the front side cylindrical surface of the fixed rod 30 having the convex ring 32, and the upper spring 91 is compressed by the high pressure from top to bottom.
  • the elastic state can be changed to release and release the energy storage state of the first spring 91, so that the energy storage elastic force of one end of the first spring 91 can strongly abut against the energy storage elastic force at the other end of the convex ring 32.
  • the abutment abuts the spacer 86 on the front end plane of the cup 56 to enable the first blade 12 of the first hinge 10 to automatically turn right to close the door leaf.
  • the 12 volt DC power supply timing controller 125 can be remotely controlled by the mobile phone in advance via a voice control via a wireless remote control remotely via electronic intelligent control or by a human button 12 volt DC power supply timing controller 125 hinge blade can be at a predetermined positioning angle
  • the position self-positioning self-positioning time is long and the short preset button, so that the 12 volt DC power supply timing controller 125 can release the 12 volt DC power supply timing controller 125 in advance.
  • the preset 12 volt DC power supply electromagnet 80 can be used as a 12 volt DC for the first 7 seconds of the degaussing time point or the first 5 seconds of the degaussing time point or the first 3 seconds of the degaussing time point.
  • the power electromagnet 80 can demagnetize the time point in advance, and the 12 volt DC power supply timing controller 125 can pre-set the button in advance by the external force button 12 volt DC power supply timing controller 125, so that the 12 volt DC power supply timing controller 125 can Synchronous early release 12 volt DC power supply timing controller 125 has preset the first blade 12 of the first hinge 10 to self-position at a predetermined angular position, each fixed self-positioning for the first 7 seconds of the 8 second time point Or the first 5 seconds or the first 3 seconds, etc., may advance into the first self-closing automatic closing time point of the first blade 12 of the first hinge 10, so that the first blade 12 of the first hinge 10 can correspond in advance.
  • the DC power timing controller 125 has preset the first blade of the first hinge 10 to be self-positioning at a predetermined angular position, each fixed self-positioning for the first 7 seconds or the first 5 seconds of the 8 second time point or In the first 3 seconds, etc., the first blade 12, which can be the first hinge 10 in advance, can automatically close the time point in advance, while the first spring 91 is the front cylindrical surface of the fixed rod 30 having the convex ring 32.
  • the upper and lower strong high pressure compresses the energy storage elastic state of the first spring 91 to cause the energy storage state of the first spring 91 to change and release, so that the energy storage elastic force at one end of the first spring 91 can be strong.
  • the energy storage against the other end of the leading edge cylindrical surface of the collar 32 is capable of strongly striking the spacer 86 on the front end plane of the cup 56 to advance the first blade 12 of the first hinge 10 In the first few seconds before 8 seconds, it can automatically turn itself off in the right direction.
  • the wireless remote controller 168 of the 12 volt DC power supply timing controller 125 can pre-set the button by the external force button wireless remote control 168 in advance, so that the wireless remote controller 168 can remotely remotely release the 12 volt DC power supply timing controller 125.
  • the preset 12 volt DC power supply electromagnet 80 is fixed for 8 seconds before the degaussing time point 7 seconds degaussing time point or the first 5 seconds degaussing time point or the first 3 seconds degaussing time point, etc., can be advanced into 12 volt DC power electromagnet 80 can demagnetize time point in advance, while wireless remote control 168 can be externally pressed by external force button
  • the time of the remote controller 168 is preset to enable the wireless remote controller 168 to synchronously advance the wireless remote control to release the first blade 12 of the first hinge 10 that has been preset by the 12 volt DC power supply timing controller 125 at a predetermined angle.
  • the first blade 12 which can be the first hinge 10 in advance can automatically turn right and turn off in advance.
  • the first blade 12 of the first hinge can be advanced in advance to cooperate with the 12 volt DC power electromagnet 80 in advance of the first 7 seconds before 8 seconds before the degaussing time point or the first 5 seconds degaussing time point or the first 3 seconds degaussing time point And so on, it can be turned into a 12 volt DC power supply electromagnet 80 in advance, after the degaussing time point, at the same time, the first spring 91 is the strong pressure of the front side cylindrical surface of the fixed rod 30 having the convex ring 32 from top to bottom.
  • the energy storage bomb that compresses the first spring 91
  • the state of force causes the energy storage state of the first spring 91 to change and release, so that the energy storage elastic force at one end of the first spring 91 can strongly abut against the energy storage elastic force at the other end of the front cylindrical surface of the convex ring 32.
  • the spacer 86 can be strongly urged against the front end plane of the cup 56 so that the first blade 12 of the first hinge 10 can be automatically turned to the right by 8 seconds before the automatic closing.
  • the first portion of the 12 volt DC power source magnetic switch 555, the magnetic body 537 without the lead 538, can also be mounted on the door lock or door page and the mounting position is aligned with the lead 538 sensor 535 on the door frame, and the The second portion of the 12 volt DC power gate switch 555 has a sensor 535 with a lead 538 that is mounted on the door frame and that is mounted to align the door lock and the magnetic switch 555 on the door page without the lead 538.
  • Body 537, and one of the positive leads of the magnetic switch 555 with the lead 538 of the sensor 535 is connected to the other sensor 535 of the 12 volt DC power supply timing controller 125.
  • the negative lead 538 is connected to the 12 volt DC power supply electromagnet 80.
  • the sensor 535 of the first portion of the magnetic switch 555 with the lead 538 can also be mounted on the door lock or the door page.
  • the magnetic part 537 of the two-part magnetic switch 555 without the lead 538 can also be mounted on the door frame and the mounting position is to be aligned with the door lock or the door magnetic switch 555 on the door page with the lead 538 sensor 535; when the door lock
  • the electronic smart lock of the door page is electronically intelligently sensed and the door lock is swiped by the card.
  • the door page is opened to the first hinge 10
  • a blade 12 and a door leaf page have been predetermined to adjust the set positioning angle position to self-position, and the synchronous door page will drive the 12 volt DC power door magnetic switch 555 on the door lock or door page without the magnetic body 537 and the door frame of the lead 538.
  • the sensor 535 with the lead 538 is disengaged, and once the magnetic door 537 of the door lock and the door magnetic switch 555 without the lead 538 is separated from the magnetic switch 555 of the door frame, the sensor 535 with the lead 538 is displaced more than ten. In millimeters, that is, the door frame has just been opened with a slight gap.
  • the 12-volt DC power supply timing controller 125 and the 12-volt DC power supply electromagnet 80 will start to be energized.
  • the 12-volt DC power supply solenoid 80 is only The start time of the 12 volt DC power supply timing controller can be started.
  • the electromagnet and the electromagnet suction cup have a predetermined length of time and a short time together, and the door leaf is opened to the first blade 12 of the first hinge 10 at this time.
  • the door page has been scheduled to adjust the set positioning angle position self-positioning; when the first blade 12 of the first hinge 10 and the door page reach the 12 volt DC power supply timing controller 125 has a preset 12 volt DC power supply electromagnetic
  • the iron 80 and the electromagnet chuck 90 are magnetically attracted together at each degaussing time point, and the first blade of the first hinge 10 which is also preset by the 12 volt DC power supply timing controller 125 is fixed at a predetermined positioning angle each time.
  • the first spring is the front side cylindrical surface of the fixed rod 30 having the convex ring 32, and the upper and lower strong high pressure compresses the energy storage elastic force of the first spring 91.
  • the 12 volt DC power timing controller 125 can cooperate with the wireless remote controller 168 to enable the wireless remote controller 168 to self-align the self-positioning time of the hinged blade of the wireless remote controller 168 at a predetermined positioning angle.
  • the preset button is capable of wirelessly controlling the 12 volt DC power supply timing controller 125 so that the wireless remote controller 168 can preset the length of time for the 12 volt DC power supply solenoid 80 and the electromagnet suction cup 90 to be magnetized together, such as Each time the hinged blade of the wireless remote control 168 can be pressed, the self-positioning time of the self-positioning time and the short preset button can be self-positioned at a predetermined positioning angle position, and the wireless remote control preset can be preset from one second time.
  • the wireless remote control can be set to any time between 24 hours, and the wireless remote control can be preset to become the time and length of the 12 volt DC power electromagnet 80 and the electromagnet suction cup 90 together with each fixed magnetic attraction.
  • the remote controller 168 can also synchronize the self-positioning time and the short preset button which can be self-positioned by the external force button hinge blade at a predetermined positioning angle position, so as to be able to synchronize the wireless remote
  • the self-positioning time of the first blade 12 of the first hinge 10 pre-positioning at a predetermined angular position is preset to be long and short, for example, the hinge blade of the wireless remote controller 168 can be pressed by the wireless remote controller 168 each time.
  • a self-positioning time length and a short preset button that can be self-positioning at a predetermined positioning angle position, so that the wireless remote controller 168 can wirelessly control the pre-set hinge blade to self-position self-positioning at a predetermined positioning angle position.
  • the time can be preset from one second time, and the wireless remote control can be set to any time point between 24 hours, and the wireless remote control can preset the self-positioning time of the first blade 12 which becomes the first hinge. .
  • the end of the screw 31 has a fixed convex ring 32, and the convex ring 32 is fixed with a connecting rod 33.
  • the outer ring of the convex ring 32 is concavely provided with a convex ring sliding track groove 332.
  • the fixed sliding rod passes through the screw through hole of the second bushing 21 and slides into the convex ring sliding track groove 332, so that the fixed sliding bar 339 can correspondingly engage the convex ring sliding track groove 332, and To position and limit the solid rod
  • the axial and wheelbase and circumferential dimensions of the sliding and moving of the opposing nut 30 along the axis are not varied.
  • the fixed sliding rod 339 is sleeved to the sliding sliding sleeve 333, so that the fixed sliding rod 339 of the sleeve sliding sliding sleeve 333 can abut against the convex ring sliding track groove 332,
  • the movement of the auxiliary reinforcing reinforced rod in the relative sliding and moving along the axis of the screw sleeve is smoother, so that the first 12 blades of the first hinge 10 can be opened more smoothly and self-closing.
  • the first bearing 100 is rotatably sleeved in the second bushing 21 at the transmission rod 42 and located between the screw sleeve 40 and the groove platform 101 of the second sleeve 21, the first bearing 100 can
  • the movement of the auxiliary reinforcing bar to slide and move relative to the upper sleeve along the axis can be smoother, so that the first blade 12 of the first hinge 10 can be more smoothly opened and closed.
  • the plug 60 is rotatably coupled to the second bushing 21, and a portion extending beyond the second bushing 21 is screwed into the screw through hole of the first bushing 11 by the fixing screw 98, and is locked in After the plug 60 is passed through the plug 60, the fixing adjuster 70 is locked and locked.
  • the fixing screw 98 is not locked with the first bushing 11 and the plug 60 to lock the adjusting seat 70, waiting for the adjusting seat 70 to pass through. Adjusting the rotation so that the adjusting base 70 can be matched with the plug and the 12 volt DC power electromagnet 80 and the electromagnet fixing screw 700 and the cup bottom of the cup 56 to adjust the 12 volt DC power supply electromagnet 80 and the electromagnet
  • the required spacing position between the suction cups 90 is such that the electromagnet 80 and the electromagnet suction cup 90 can be magnetically positioned together in the cup 56, and the adjustment seat can synchronously adjust the first blade 12 of the first hinge 10
  • the predetermined angular position is required such that the first blade 12 of the first hinge 10 can be self-positioned at a desired positioning angle position of the predetermined positioning angle, and then the locking screw is fixed by the waiting screw 98. Adjusting the seat 70 to prevent the adjustment seat 70 from loosening, but the first hinge 10 Blade 12 may be opened to a first angle of 180 degrees the first hinge leaf 10 is
  • the second hinge 20 includes a second sleeve. 21 and a second blade 22
  • the first hinge 10 includes a first sleeve 11 and a first blade 12
  • the first sleeve 11 is disposed on the upper half of the first blade 22, and the first blade 12 It is in the shape of a fold;
  • the screw through hole of the first sleeve 11 is screwed through the fixing screw 98, and then locked through the swivel 41, and then locked into the fixed transmission rod 42 to make the first sleeve 11.
  • the swivel 41 and the transmission rod 42 are fixed together.
  • a second flange 52 is disposed in the connecting sleeve 50, and can be abutted in the annular groove 520 of the plug 60 through the second flange 52 so that the second flange 52 can be disposed in the connecting sleeve 50.
  • the annular groove 520 of the fixing seat 60 is inserted to enable the plug 60 and the second flange 52 to be fixed in the connecting sleeve 50.
  • the plug 60 extends out of the outer portion of the connecting sleeve and is screwed through the fixing screw 98.
  • the screw through hole of the second bushing 21 is locked into the fixing plug 60 to fix the second bushing 21 and the plug 60 together.
  • the screw sleeve 40 and the plug 60 are spaced apart; a screw 30, a first spring 91, a 12 volt DC power electromagnet 80, an electromagnet chuck 90, and a rubber column are disposed between the screw sleeve 40 and the plug 60 in the connecting sleeve 50. 59. Cup 56, plug 60 and adjustment seat 70.
  • the transmission rod 42 is rotatably and non-movably connected in the connecting sleeve 50 in the first sleeve 11, and the rotating ring 41 and the portion of the transmission rod 42 extending outside the connecting sleeve 50 are fixed, and the connection is provided with a rotation.
  • the outer ring side of the transmission rod 42 is flattened to fit the inner ring of the inner ring through hole of the rotating ring 41, and the rotating ring 41 is fitted to the upper part of the first bushing 11, and is matched with
  • the fixing screw 98 is provided to fix the sleeve 11, the rotating ring 41 and the transmission rod 42 together, so that the rotating ring 41 and the first sleeve 11 can also restrict the axial movement of the screw sleeve 40, so as to be able to position the fixing rod.
  • the position of the spacing between the axial direction and the wheelbase of the sliding and moving of the opposite nut along the axis does not change, so that the screw can be axially downward with respect to the screw sleeve when the two hinges are rotated relative to each other.
  • the upper sliding and moving are within a predetermined set rotation angle at which the first blade 12 rotates.
  • the connecting sleeve 50 is connected in the second sleeve 21 and the first sleeve 11, and the first sleeve 11 and the second sleeve 21 are arranged side by side so that the hinges can rotate relative to each other; the third bearing 300
  • the sleeve can also be rotatably sleeved outside the connecting sleeve 50.
  • the third bearing 300 is rotatably connected between the circumferential plane of one end of the second sleeve 21 and the circumferential plane of the rotating sleeve at one end of the first sleeve 11 so as to be First hinge 10 in phase
  • the second hinge 20 is rotated more smoothly in the axial direction.
  • a third flange 53 is disposed in the connecting sleeve 50, and can be abutted in the annular groove 530 of the first bearing 100 through the third flange 53 so that the third flange 53 is in the connecting sleeve 50.
  • the annular groove 530 of the first bearing 100 can be embedded so that the first bearing 100 and the third flange 53 cannot be movably connected to the connecting sleeve in the upper and lower directions (by providing a third flange in the connecting sleeve) 53 such that the third flange 53 can be fitted with the annular groove 530 of the first bearing 100 in the connecting sleeve 50 to axially limit the displacement of the first bearing 100), the first bearing 100 is an auxiliary hinge 10 blade 12
  • the rotation between opening and closing can be smoother.
  • the fixing rod 30 has a screw 31 end having a fixed convex ring 32, and the convex ring 32 is fixed with a connecting rod 33.
  • the spring 91 is sleeved on the connecting rod 33, and one end of the spring 91 can be abutted against the convex portion.
  • the ring 32, and the other end of the spring 91 can abut against the circumferential plane of the front end of the auxiliary adjustment spring washer 80.
  • a first flange 51 is disposed in the connecting sleeve 50, and the first flange 51 can abut against the annular groove 403 of the screw ring 43 in the connecting sleeve 50, so that the first flange 51 is in the connecting sleeve.
  • the inner ring 50 can be inlaid with a spiral ring groove 403, so that the screw ring 43, the first flange 51 and the connecting sleeve 50 are connected and fixed together in the connecting sleeve 50, so that the screw ring 43 cannot rotate and cannot slide and move.
  • the ground connection is fixed in the connection sleeve 50.
  • the spiral ring 43 is recessed through the through hole, and the circumferential edge of the inner ring of the spiral ring 43 penetrating through hole is convexly provided with a spiral inner ring flange 433, and the inner ring flange 433 of the spiral ring Can be abutted in the groove of the convex ring sliding track, so that the inner ring flange 433 of the screw ring can correspond to the convex ring sliding track groove 332 of the convex ring 32 of the fixed rod 30, so as to be able to position and restrain the fixed rod
  • the size of the pitch of the axial and wheelbase of the sliding and moving along the axial direction of the opposite nut sleeve does not vary.
  • the screw ring 43 is located under the screw sleeve and the screw thread 31 passes through the screw ring 43 and then the screw sleeve 40 is screwed so that the screw ring 43 can restrain and control the sliding of the screw rod 31 along the axis and the relative screw sleeve 40.
  • the axial and wheelbase spacing dimensions of the movement do not change.
  • the fixing rod 30 has a screw 31 fixed at its end with a convex ring 32, and a convex surface is concavely formed at the circumferential side of the outer ring of the convex ring 32.
  • the ring slides the groove 332, and the outer ring of the end of the ring 32 is circumferentially recessed with an annular mounting groove 321, a sealing rubber ring 322 is sleeved in the annular mounting groove 321, and the sealing ring 322 is also extended to the ring.
  • the groove 321 is externally disposed so that the convex ring 32 can be sealingly and slidably abutted in the second sleeve 21, so that the sealing rubber ring in the annular mounting groove 321 of the convex ring 32 can limit the inside of the second sleeve 21.
  • the sliding and moving of the screw 31 along the axis and the upper portion of the screw sleeve 40 can exert the effect of damping force and resistance force, so that the sealing rubber ring in the annular mounting groove 321 of the convex ring 32 can limit the storage of the spring 91.
  • the six forward straight-inclined pitch-spiral rod teeth 39 between the two or more are arranged around the outer ring of the screw 31 of the fixed rod 30 and the pitch of the upper and lower pitches of the outer ring of the screw 31,
  • the concave spiral rod teeth 46 corresponding to the six forward straight oblique pitches between the two or more of the matching screw sleeves 40 are wound around the inner ring of the groove through holes of the screw sleeve 40. Set the full pitch dimension of the inner and lower pitch of the inner ring.
  • FIG. 3 to FIG. 3-1 to FIG. 3-6 the first hinge 10 is provided with a first blade 12 and a first sleeve 11; the second hinge 20 The two spaced apart second blades 22, which are fixed to the hinge mount 90, and the second sleeve 21 are included.
  • the second sleeve 21 is recessed with a groove platform 101, and the fourth bearing 95 is sleeved and connected to the inner ring of the second sleeve 21 and lies on the groove platform 101 of the second sleeve 21, and is located at Between the first sleeve 11 and the second sleeve, the fourth bearing 95 can assist in reinforcing the first 12 blades of the first hinge 10 to be smoother when opened and closed.
  • the magnetic switch 555 has a sensor 835 with a lead 838 and a magnetic 837 with a lead without a lead.
  • the threaded sleeve 40 is rotatably and non-slidably and movably connected in the inner ring of the second sleeve 21, and the first sleeve 11 and the portion of the transmission rod 42 extending beyond the second sleeve 21 are fixed;
  • the upper portion of the 40 is convexly provided with a transmission rod 42, and the transmission rod 42 can rotatably pass through the first bearing 100, pass through the groove platform 101, and wear
  • the fourth bearing 95 is further inserted into the first sleeve 11 , and the transmission rod 42 is fitted to the first sleeve 11 , and the upper first sleeve 11 and the transmission rod 42 are fixed together by the fixing screw 98 .
  • the relative position of the fixing rod 70 can be correspondingly matched to the fixing rod 30.
  • the data of the straight pitch pitch of the six reverse straight pitch pitch convex spiral teeth 39 between two or more of the screw 31 is large or small, and between the two or more of the screw socket 40
  • the data of the straight pitch pitch of the six reverse straight pitch pitch concave spiral teeth 46 is set to be large and small, so that the screw 31 can be preset and limited in the axial direction of the opposite screw sleeve 40.
  • the adjusting seat 70 is adjusted and rotated so that the adjusting base 70 can correspond to the plug and the 12-volt DC power electromagnet 80 and the fixing screw 700 of the electromagnet and the cup bottom of the cup 58 and the screw 31 of the fixed rod 30,
  • the position of the spacing position required for the electromagnet 80 and the electromagnet chuck 90 can be adjusted, so that the electromagnet 80 and the electromagnet chuck 90 can be magnetically attracted together in the cup body 58, and the adjusting seat can synchronously adjust the first combination.
  • the predetermined angular position required by the first blade 12 of the page 10, while the adjustment seat is also relatively strong and weakly released with respect to the top elastic force capable of adjusting the energy storage of the first spring 91, so that the adjustment seat 70 can be correspondingly matched.
  • the speed of the first blade 12 of the first hinge 10 is adjusted to be fast and slow when it is automatically turned to the left.
  • the 12 volt power line of the power line connector 198 of the 12 volt circuit board of the 12 volt DC power socket 199 of the vehicle body is connected to the voltage of the 12 volt positive DC power source and the boost conversion connector through the circuit board connected to the DC power transformer 127. 105, so that the DC power transformer 127 can input one end of the circuit board of the DC power transformer 127 into the voltage of the 12V load positive DC power supply, the boost conversion connector 105, and further
  • the output voltage of the other end of the conversion to the board is the voltage of the power line that has been set to convert the boost to the positive of the 24 volt load, the boost converter 102, and the 24 volt load positive DC power line through the 24 VDC power supply timing controller 225.
  • the other end of the circuit board capable of and the DC power transformer 127 is a voltage that has been set to convert the boost to a 24 volt positive output power line, and the boost converter 102 can be connected together, and the body 12 volt DC power socket 199 of 12
  • the 12 volt power line of the power line connector 198 of the volt circuit board is connected to the voltage of the 12 volt negative DC power source and the boost conversion connector 105 through the other end of the circuit board connected to the DC power transformer 127, so that the DC power transformer 127 can
  • One end of the circuit board of the DC power transformer 127 is a voltage of a 12 volt load negative DC power supply, a boost conversion connector 105, and then the other end of the output circuit is converted to a power supply line that is converted to a negative voltage of 24 volts.
  • the output of the other end of the circuit board of 127 is a voltage that has been set to convert the boost to a negative output power line of 24 volts, and the boost converter 102 can be connected together so that the 24 volt DC power supply timing controller 225 can be matched with the DC power transformer 127.
  • the 24 VDC power line through the 24 VDC power supply timing controller 225 can be connected to the 24 VDC power line of the 24 VDC power supply solenoid so that the 24 VDC power supply timing controller 225 is remotely controlled via the handset.
  • Controlling the remote control via the wireless remote control via electronic intelligent control or the manual button 24 volt DC power supply timing controller 225 can be self-positioning time and short preset button at a predetermined positioning angle position to The time difference between the 24 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 can be preset in advance, and the synchronous 24 VDC power supply timing controller 225 can also be synchronized to match the preset first combination.
  • the self-positioning time of the first blade 12 of the page 10 can be self-positioning at a predetermined angular position each time, so that the 24 volt DC power supply timing controller 225 can be pre- Electromagnet set 24 volt DC power supply 80 and the electromagnet magnetic chuck 90 fixed duration each time point with a one second from the preset, It can be preset to any time between 24 hours, and can be preset to be 24 VDC power solenoid 80 and electromagnet chuck 90 each time the fixed magnetic magnet is together for a long time and short, while 24 VDC power supply timing
  • the controller 225 remotely controls the remote control via the mobile phone via the wireless remote control via the electronic remote control or via the manual button 24 volt DC power supply timing controller 225.
  • the self-positioning time of the self-positioning of the self-positioning at a predetermined positioning angle position is long.
  • the first blade 12 that presets the first hinge 10 can be self-positioned at a predetermined positioning angle position each time, and the self-positioning time and length can be fixed for one second each time.
  • it can be preset to any time point between 24 hours, and the length and time of self-positioning of the first blade 12 which becomes the first hinge 10 at a predetermined angular position each time can be preset.
  • the 24 volt DC power supply timing controller 225 can preset the 24 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 each time to fix the magnetic attraction together with each time the fixed magnetic attraction is together for one second.
  • the controller 225 presets the 8 second time point, and the 24 volt DC power supply timing controller 225 can also synchronize the first blade 12 corresponding to the preset first hinge 10 to be fixed at a predetermined positioning angle position each time. Self-positioning, it can be fixed at a predetermined positioning angle position for 8 seconds at a time, so that the 24 volt DC power supply timing controller 225 is remotely controlled by the mobile phone via voice control via a wireless remote control via electronic intelligent control or the like.
  • the human button 24 volt DC power supply timing controller 225 pre-sets the hinge leaf positioning time button, so that the 24 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 can be preset each time the fixed magnetic attraction can be fixed together. Together, the 8 second time point, while the 24 volt DC power supply timing controller 225 can also synchronize the first blade 12 corresponding to the preset first hinge 10, and can be self-positioned at a predetermined positioning angle position each time.
  • the first blade of the first hinge 10 which is preset in advance by the 24 volt DC power source timing controller 225 is also
  • the second fixed position is self-positioning at a predetermined angular position, and can only be reached when the 8 second time point is reached.
  • the first spring is compressed by the fixed rod 32 with the convex ring 32 being pressed from the top to the bottom.
  • the energy storage state of the 91 is such that the energy storage state of the first spring 91 is changed and released, so that the energy storage elastic force at one end of the first spring 91 can strongly abut against the energy storage elastic force at the other end of the convex ring 32.
  • a spacer 86 that can strongly abut against the front end plane of the cup 56 is provided so that the first blade 12 of the first hinge 10 can automatically turn left to close the door leaf.
  • the 24 volt DC power supply timing controller 225 can be remotely controlled by a mobile phone remotely via a voice control via a wireless remote control via an electronic intelligent control or by a human button 24 VDC power supply timing controller for a preset time button to enable 24 volts
  • the DC power timing controller 225 can release the 24 VDC power supply timing controller 225 in advance.
  • the preset 24 VDC power supply solenoid 225 is degaussed for the first 7 seconds of the degaussing time point or the first 5 seconds of the degaussing time point.
  • the time point or the first 3 seconds degaussing time point, etc. can be the pre-degaussing time point of the 24 volt DC power supply electromagnet 80, and the 24 volt DC power supply timing controller 225 can be externally pressed by the external force button 24 volt DC power supply timing controller 225.
  • Remote control via mobile phone remote control via wireless remote control via electronic remote control or by human button 12 volt DC power supply timing controller 125 can be self-positioning time long and short at a predetermined positioning angle position The button is preset to enable the 24 volt DC power supply timing controller 225 to synchronously release the 24 volt DC power supply timing controller 225 that has been preset.
  • the first blade 12 of the hinge 10 is self-positioning at a predetermined angular position, and each time the fixed self-positioning is 8 seconds or the first 5 seconds or the first 3 seconds, etc.
  • the first blade 12 of the hinge 10 automatically turns left to close the time point in advance so that the first blade 12 of the first hinge 10 can advance in advance to match the 24 volt DC power supply electromagnet 80 ahead of the first 7 seconds before 8 seconds Second degaussing time point or the first 5 seconds degaussing time point or The demagnetization time point of the first 3 seconds, etc., can be advanced to the pre-degaussing time point of the 24 volt DC power electromagnet 80, while the first spring 91 is fixed by the fixed rod 30 with the convex ring 32 from top to bottom.
  • the high pressure compresses the energy storage state of the first spring 91 to cause the energy storage state of the first spring 91 to change and release, so that the energy storage elastic force of one end of the first spring 91 can strongly abut against the convex ring 32.
  • the energy storage at the other end of the front cylindrical surface is elastically biased against the spacer 86 on the front end plane of the cup 56 so that the first blade 12 of the first hinge 10 can automatically advance itself before 8 seconds. Turn left to close.
  • the wireless remote controller 168 of the 24 volt DC power supply timing controller 225 can be advanced by the external force button.
  • the hinge blade of the wireless remote controller 168 can self-position the self-positioning time and the short preset button at a predetermined positioning angle position.
  • the wireless remote controller 168 can remotely remotely release the 24 volt DC power supply timing controller 225.
  • the preset 24 volt DC power supply electromagnet 80 is fixed for 8 seconds.
  • the first 7 seconds of the degaussing time point is the degaussing time point or the first 5 seconds.
  • the degaussing time point or the first 3 seconds degaussing time point, etc. can be the pre-degaussing time point of the 24 volt DC power electromagnet 80, and the wireless remote control 168 can advance the external hinge button 168 of the hinge vane in one
  • the predetermined positioning angle position self-positioning self-positioning time is long and the short preset button is, so that the wireless remote controller 168 can synchronize the wireless remote control release 24 VDC power supply timing controller 225 has preset the first hinge 10
  • the first blade 12 is self-positioned at a predetermined positioning angle position, and each time the first 7 seconds or the first 5 seconds time or the first 3 seconds time point of the self-positioning 8 seconds is fixed, etc.
  • the first blade 12 of the hinge 10 automatically turns left to close the time point in advance so that the first blade 10 of the first hinge 10 can be degaussed ahead of the 24 volt DC power electromagnet 80 in advance of the first 7 seconds before 8 seconds. After the degaussing time point of the time point or the first 5 seconds degaussing time point or the first 3 seconds degaussing time point, etc., so that the first blade 12 of the first hinge 10 can turn off automatically by itself in the leftward direction before 8 seconds. .
  • the 24 volt DC power supply timing controller 225 can be adapted to cooperate with the wireless remote control 168 so that the wireless remote control 168 can be rotated by a hinged blade of the externally pressed wireless remote control 168.
  • the positioning angle position is self-positioning and the self-positioning time is long and the short preset button is used to wirelessly control the 24 volt DC power supply timing controller 225 so that the wireless remote controller 168 can preset the 24 volt DC power supply solenoid 80 and
  • the electromagnet chuck 90 has a long and short time for each fixed magnetic attraction.
  • the self-positioning time of the self-positioning time of the hinge vane of the wireless remote control 168 can be self-positioning at a predetermined positioning angle, and the wireless remote control can be wirelessly controlled.
  • the self-positioning time for pre-setting the hinge vane to be self-positioning at a predetermined positioning angle position can be preset from one second time, and the wireless remote control can be set to any time point between 24 hours and above, and can be wirelessly remotely controlled.
  • the time difference between the 24 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 is pre-set, and the synchronous wireless remote controller 168 can also synchronize the self-alignment by the external force button hinge blade at a predetermined positioning angle position.
  • the positioning time is long and short, so that the first hinge 10 can be pre-set by the wireless remote control.
  • the self-positioning time of the first blade 12 self-positioning at a predetermined angular position is long and short.
  • the remote controller 168 presets the button each time by the external force button time, so that the wireless remote controller 168 can pre-set the self-positioning time of the hinge blade to be self-positioning at a predetermined positioning angle position, which can be preset from one second.
  • the wireless remote control can be set to any time point between 24 hours and above, and the self-positioning time and length of the first blade 12 which becomes the first hinge 10 can be preset by wireless remote control.
  • the preset self-positioning time and length can make the hinge self-closing structure, such as a sleeve that can be arranged on any door hinge and any door and window hinge, such as a butterfly hinge, H-shaped combination.
  • the self-closing structure function can be made by setting the length of the self-positioning time.
  • the second hinge 20 includes a second sleeve 21 and a second blade 22, and the second sleeve 21
  • the first hinge 10 includes a first sleeve 11 and a first blade 12, and the first sleeve 11 is disposed on the upper half of the first blade 12;
  • the screw through hole of the screw 98 threaded through the first sleeve 11 is locked into the fixed transmission rod 42 when locked through the swivel 41, so that the first sleeve 11, the swivel 41 and the transmission rod 42 fixed together.
  • a second flange 52 is disposed in the connecting sleeve 50, and can be abutted in the annular groove 520 of the plug 60 through the second flange 52 so that the second flange 52 can be disposed in the connecting sleeve 50.
  • the annular groove 520 of the plug 60 is inserted to enable the plug 60 and the second flange 52 to be fixed in the connecting sleeve 50.
  • the plug 60 extends out of the outer portion of the connecting sleeve and is threaded through the fixing screw 98.
  • the screw through hole of the second bushing 21 is locked in the fixing plug 60 to fix the second bushing 21 and the plug 60 together.
  • the hinge further includes a connecting sleeve 50, a fixing rod 30, a screw sleeve 40, a first spring 91, a 24 volt DC power electromagnet 80, an electromagnet chuck 90, a 220 volt AC power timing controller 125, and a 12 volt DC power supply.
  • the connecting sleeve 50 is connected in the second sleeve 21 and the first sleeve 11, and the first sleeve 11 and the second sleeve 21 are arranged side by side so that the hinges can rotate relative to each other; the third bearing 300
  • the sleeve can also be rotatably sleeved outside the connecting sleeve 50.
  • the third bearing 300 is rotatably connected between the circumferential plane of one end of the second sleeve 21 and the circumferential plane of the rotating sleeve at one end of the first sleeve 11 so as to be
  • the first hinge 10 is more smoothly rotated relative to the second hinge 20 along the axis.
  • the transmission rod 42 is rotatably and non-movably connected in the connecting sleeve 50.
  • the connection is provided with a rotating ring 41, and the rotating ring 41 and the portion of the driving rod 42 extending beyond the connecting sleeve 50 are fixed.
  • the end of the screw 31 is fixed with a convex ring 32, and a convex ring sliding track groove 332 is recessed at a circumferential side of the outer ring of the convex ring 32, and an annular mounting groove is circumferentially recessed at the end outer ring of the convex ring 32.
  • the sealing ring 322 is sleeved in the annular mounting groove 321 , and the sealing ring 322 extends out of the annular mounting groove 321 , so that the protruding ring 32 can be sealed and slidably abutted in the connecting sleeve 50 .
  • the sealing rubber ring in the annular mounting groove 321 of the convex ring 32 can limit the sliding and movement of the screw 31 in the connecting sleeve 50 under the axis and the upper portion of the screw sleeve 40 to generate strong damping force and strong resistance.
  • the effect of strength Relatively so that the sealing rubber ring in the annular mounting groove 321 of the convex ring 32 can limit the strong and weak release of the energy storage top elastic force of the spring 91, so that the sealing rubber ring in the annular mounting groove 321 of the convex ring 32
  • the first blade 12 of the first hinge 10 can be restrained from achieving a safe and cushioned autism when self-closing.
  • the threaded sleeve 40 is rotatably and non-movably coupled in the connecting sleeve 50, and the first sleeve 11, the rotating ring 41 and the transmission rod 42 are fixed together to position and restrain the fixed rod along the axis and the opposite threaded sleeve.
  • the swivel 41 and the first bushing 11 can also limit and control the axial movement of the nut 40.
  • a second flange 52 is disposed in the connecting sleeve 50.
  • the second flange 52 can be embedded with the annular groove 520 of the plug 60 in the connecting sleeve 50, so that the plug 60 and the second flange 52 can be connected and fixed to the connecting sleeve.
  • the plug 60 extends out of the outer portion of the sleeve 50, and the second sleeve 21, the plug 60 and the fixed adjustment seat 70 are fixed by the fixing screw 98.
  • a first flange 51 is disposed in the connecting sleeve 50, and the first flange 51 can abut against the annular groove 403 of the screw ring 43 in the connecting sleeve 50, so that the first flange 51 is in the connecting sleeve.
  • the inner ring 50 can be inlaid with a spiral ring groove 403, so that the screw ring 43 and the first flange 51 and the connecting sleeve 50 can be connected and fixed together in the connecting sleeve 50, so that the screw ring 43 cannot rotate or slide.
  • the connecting ring 50 is movably connected to the connecting sleeve 50.
  • the spiral ring 43 is recessed through the through hole, and the circumferential edge of the inner ring of the through hole 43 of the spiral ring 43 is convexly provided with a ring inner ring flange 433.
  • the fixing rod 30 has a convex ring 32, and a convex ring sliding track groove 332 is recessed in the outer ring circumferential direction of the convex ring, so that the inner ring flange 433 of the spiral ring 43 can slide against the convex ring.
  • the inner ring flange 433 of the screw ring can be correspondingly matched with the convex ring sliding track groove 332 of the convex ring 32 of the fixed rod 30, so as to be able to position and restrain the fixed rod along the opposite threaded sleeve.
  • the axial and downward sliding and moving axial and wheelbase spacing dimensions do not vary.
  • a third flange 53 is disposed in the connecting sleeve 50, and can be abutted in the annular groove 530 of the first bearing through the third flange 53 so that the third flange 53 is in the connecting sleeve 50.
  • the annular groove 530 of the first bearing can be embedded therein so that the first bearing 44 and the third flange 53 cannot be moved relative to the lower and upper sides.
  • the ground connection is fixed in the connecting sleeve (by providing a third flange 53 in the connecting sleeve so that the third flange can be fitted with the annular groove 530 of the first bearing in the connecting sleeve 50, so as to be axially constrained
  • the first bearing 44 is displaced; the first spring 91 is sleeved on the connecting rod 311, one end abuts against the convex ring 32, and the other end abuts against the spacer 86.
  • the cup body 56 is provided with a through-hole 561 of a power cord on the side of the cup 56 along the axial and axial spacing of the inner and outer rings.
  • the sleeve 50 is disposed along the axial and axial spacing of the inner and outer rings. There is a through hole 567 of the power cord of the side of the connecting sleeve 50.
  • the second bushing 21 is also provided with a side surface of the power cord of the second bushing 21 through the through hole 568 along the axial and axial spacing of the inner and outer rings.
  • the pitch position setting of the wheelbase is aligned so that the power line of the 12 volt DC power solenoid 80 can pass through the through hole 561, the through hole 567, the through hole 568, and the 220 volt AC power transformer 128.
  • the output voltage of the other end of the board is transformed into a 12 volt DC power supply voltage conversion connector 102 that can be connected together.
  • the first blade 12 of the first hinge 10 needs to be self-positioned at a 90 degree positioning angle position in a predetermined set positioning angle, the first blade 12 is opened to a desired 90 degree predetermined angle in the rightward turning direction by pushing open.
  • the first spring blade 12 can drive the transmission rod 42 and the screw sleeve 40 to slide downward in the axial direction to strongly compress the energy storage elastic force of the first spring 91, so that the screw 31 can be relatively screwed 40.
  • the transmission rod 42 slides down and moves along the axis, and at the same time, the first spring 91 is an energy storage elastic state of the first spring 91 which is compressed by the high pressure of the annular convex ring 32 of the fixed rod 30 from top to bottom.
  • the screw 31 and the electromagnet chuck 90 will correspondingly cooperate with the first blade 12 to slide down and move to a predetermined positioning angle position at which the first blade 12 is opened to 90 degrees, which is a predetermined requirement of the first blade 12.
  • the 90 degree positioning angle position in the positioning angle while the first blade 12 has no positioning function, while the first blade 12 needs to be positioned at a 90 degree positioning angle between predetermined angles.
  • the bottom of the cup 56 can adjust the position of the required spacing between the 12 volt DC power electromagnet 80 and the electromagnet chuck 90 so that the 12 volt DC power electromagnet 80 and the electromagnet chuck 90 can be magnetically positioned together in the cup.
  • the adjusting seat 70 can synchronously adjust the position of the predetermined positioning angle of 90 degrees required for adjusting the first blade 12 so that the first blade 12 can be positioned at 90 degrees between 30 degrees and 180 degrees of the predetermined positioning angle.
  • the angular position is self-positioning, but the first blade 12 can also be opened to a 180 degree angle of the predetermined maximum limit point of the first blade 12, while the first spring 91 is fixed by the fixed bar 30 with the convex ring 32
  • the high pressure of the lower strength compresses the state of energy storage of the first spring 91, causing the energy storage state of the first spring 91 to change and release, while the rubber post 59 is engaged with the first magnet sleeve by the convex ring 32.
  • the cap 92 has a high pressure from top to bottom.
  • the state of the stored elastic force of the rubber post 59 is such that the state of the stored elastic force of the rubber post 59 is changed to release the stored elastic force of the rubber post 59 so that the elastic storage of one end of the rubber post 59 is elastic.
  • the top end of the rubber post 59 is elastically biased against the suction cup cap 92 so that the first spring 91 and the rubber post 59 can urge the first A blade 12 can be turned back so that the first blade 12 will rotate rightwardly and return to the 90 degree predetermined angular position that has been adjusted in place by the adjustment seat 70 in the plug 60; the first blade 12 needs Turn off, the 12 volt DC power supply timing controller 125 has a preset 12 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 each time the magnetic demagnetization time is fixed together, and also the first blade 12 is at the positioning angle position.
  • the positioning time of the positioning reaches the pre-set first blade self-positioning time point of the 12 volt DC power supply timing controller 125, while the first spring is fixed by the fixed rod 30 with the convex ring 32 from top to bottom.
  • the high pressure of the compression compresses the first bomb Elastic state storage 91, so that the storage state of the first spring 91 and the release of a difference, so that the end of the first spring 91
  • the energy storage elastic force can strongly abut against the energy storage elastic force at the other end of the cylindrical surface of the front edge of the convex ring 32 to strongly resist the spacer 86 on the front end surface of the cup 56, so that the first spring 91 can
  • the first blade 12 is rotated leftward to the back to enable the first blade to automatically turn itself off in the left direction.
  • the elastomeric rubber column 59 can also be replaced by a non-ferrous metal elastomer or spring.
  • One end of the 220 volt AC power transformer 128 that can be transformed into a 12 volt DC power supply is a 220 volt AC power line plug 158, and the AC power line plug of the 220 volt AC power transformer 128 that can be transformed into a 12 volt DC power supply
  • the red line of 158 is the electric fire line which is the input adapter 198 of the 220 volt AC power supply to be connected to the transformer, and the blue line of the 220 volt AC power line plug 158 which can be transformed into a 12 volt DC power supply is the electric zero line and is also connected.
  • the transformer's 220 volt AC power input adapter is 298, and the 220 volt AC power cord plug 158 that can be transformed into a 12 volt DC power supply is to be plugged into a 220 volt AC power outlet 109, and the energy can be transformed into 12
  • the other end of the 220 volt AC power transformer 128 of the VDC power supply is a positive terminal 102 that has been transformed into a 12 volt DC power supply, and the other end of the 220 volt AC power transformer 128 that can be transformed into a 12 volt DC power supply
  • the voltage is a negative terminal 102 that has been transformed into a 12 volt DC power supply, and the positive DC power line connector 198 of the 12 volt DC power supply timing controller 125 is 220 volts to be converted to a 12 volt DC power supply.
  • the output voltage of the other end of the source transformer is connected to the positive terminal 102 which has been transformed into a 12 volt DC power supply, and the negative DC power line connector 198 of the 12 volt DC power supply timing controller 125 is capable of converting and converting to 12 VDC.
  • the output voltage of the other end of the 220 volt AC power transformer 128 of the power supply is a negative connection 102 that has been transformed into a 12 volt DC power supply, and the positive line of the 12 volt DC power supply electromagnet 80 is controlled by a 12 volt DC power supply.
  • the output voltage of the other end of the device 125 is a positive terminal 298 that has been transformed into a 12 volt DC power supply, and the negative line of the 12 volt DC power supply solenoid 80 is one of the sensors 535 with the lead switch of the magnetic switch 555.
  • the leads are to be connected together, and the lead switch of the magnetic switch 555 is sensed
  • the other lead of the 535 is to be connected with the negative terminal 298 of the other end of the 12 volt DC power supply timing controller 125, which has been transformed into a 12 volt DC power supply, so that the twelve volt DC power supply solenoid 80 and the electromagnetic
  • the iron cup 90 can be matched with the leaded sensor 535 and the magnetic body 537 of the 12 volt DC power supply timing controller 125 and the 12 volt magnetic switch 555, so that the 12 volt DC power supply timing controller 125 is remotely controlled by the mobile phone via voice control.
  • the remote control remote control via electronic intelligent control or the manual button 12 volt DC power supply timing controller 125 can be self-positioning time and short preset button at a predetermined positioning angle position to enable
  • the 12 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 are set to be long and short together for each fixed magnetic attraction, and at the same time, the first blade 12 can be self-aligned at a predetermined positioning angle position in synchronization with the corresponding matching.
  • the self-positioning time is long and short, so that the 12-volt DC power supply timing controller 125 can preset the 12-volt DC power supply electromagnet 80 and the electromagnet suction cup 90 each time the fixed magnetic attraction is together.
  • the length and the short point are preset in one second, and can be set to any time between 24 hours, and can be preset to be the time when the 12 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 are fixed together for each time.
  • the long and short points, while the 12 volt DC power supply timing controller 125 can also synchronously preset the first blade 12 to be self-positioning at a predetermined positioning angle position, and can preset the self-positioning time and length for one second each time.
  • Any time point that can be set to between 24 hours can be preset to be the length of time that the first blade 12 can be fixed at a predetermined positioning angle each time to be self-positioning, so that 12
  • the volt-current power supply timing controller 125 can preset the 12 volt DC power supply solenoid 80 and the electromagnet suction cup 90 each time to fix the magnetic attraction together, and the fixed magnetic attraction time can be preset for one second each time.
  • the hinged blade can self-position a long time and a short preset button at a predetermined positioning angle position, so that the 12 volt DC power electromagnet 80 and the electromagnet chuck 90 can be preset with each fixed magnetic attraction.
  • the fixed magnetic attraction can be 8 seconds at a time
  • the 12 volt DC power supply timing controller 125 can also synchronously preset the first blade 12 to be self-positioning at a predetermined positioning angle position each time, thereby enabling self-positioning time. It is an 8 second time point; when the first blade 12 reaches the 12 volt DC power supply timing controller 125, the preset 12 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 are fixed magnetically together, each time When it is fixed to the demagnetization time point of 8 seconds, the first blade 12 which is pre-set by the 12 volt DC power supply timing controller 125 can be fixed at a predetermined positioning angle position and can be self-positioned and can be self-aligned for 8 seconds.
  • the first spring 91 is in the state of energy storage of the first spring 91 by the solid rod 30 having the convex ring 32 in a strong downward pressure from the top to the bottom, so that the energy storage state of the first spring 91 is generated.
  • Change and release to The first vane 12 itself can be rotated automatically closes the door to the left page.
  • the 12 volt DC power supply timing controller 125 can be remotely controlled by the mobile phone in advance via a voice control via a wireless remote control remotely via electronic intelligent control or by a human button 12 volt DC power supply timing controller 125 hinge blade can be at a predetermined positioning angle Position self-positioning self-positioning time is long and short preset button, so that 12 volt DC power supply timing controller 125 can release 12 volt DC power supply timing controller 125 has preset 12 volt DC power supply electromagnet 80 Each time the electromagnet chuck 90 is fixedly magnetized together, the demagnetization time point of the first 7 seconds of the degaussing time point or the degaussing time point of the first 5 seconds or the degaussing time point of the first 3 seconds can be fixed every time for 8 seconds.
  • the pre-demagnetization time point of the volt-current power supply electromagnet 80, and the 12-volt DC power supply timing controller 125 can be remotely controlled by the mobile phone in advance via voice control via a wireless remote control via electronic intelligent control or by human button 12 volt DC power supply timing control
  • the hinge vane of the 125 can be self-aligned at a predetermined positioning angle position for a long and short pre-set button to enable a 12 volt DC power timing controller 125 can synchronously release the 12 volt DC power supply timing controller 125.
  • the pre-set first blade 12 is self-positioned at a predetermined positioning angle position, and can be fixedly self-positioned each time.
  • the first 7 seconds time or the first 5 seconds time or the first 3 seconds time point of the 8 second time point, etc. may be advanced to the time point of the first blade 12 to automatically close the door page in advance, so that the first blade 12 can be advanced
  • Corresponding to the 12 volt DC power supply electromagnet 80 in advance of the first 7 seconds before 8 seconds before the degaussing time point or the first 5 seconds degaussing time point or the first 3 seconds degaussing time point, etc. can be the advance of the 12 volt DC power supply solenoid 80 After the degaussing time point, at the same time, the first spring 91 is locked by the solid rod 30 with the convex ring 32.
  • the front cylindrical surface is compressed by the high pressure from top to bottom to compress the elastic state of the first spring 91 to make the first spring
  • the energy storage state of the 91 changes and is released so that the energy storage elastic force at one end of the first spring 91 can strongly abut against the energy storage elastic force at the other end of the convex ring 32 to strongly abut against the front end of the cup 56.
  • the spacer 86 on the plane enables the first blade 12 to be automatically turned left and closed by itself 8 seconds before advance.
  • the wireless remote controller 168 of the 12 volt DC power supply timing controller 125 can advance the externally pressed button.
  • the hinge blade of the wireless remote controller 168 can self-position the self-positioning time and the short preset button at a predetermined positioning angle position.
  • the wireless remote controller 168 can remotely remotely release the 12 volt DC power supply timing controller 125.
  • the preset 12 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 are magnetized together, and the degaussing time point can be fixed for 8 seconds at a time.
  • the first 7 seconds degaussing time point or the first 5 seconds degaussing time point or the first 3 seconds degaussing time point, etc. can be the pre-degaussing time point of the 12 volt DC power electromagnet 80, and the wireless remote controller 168 can be externally advanced.
  • the hinge vane of the button wireless remote controller 168 can self-position the self-positioning time and the short preset button at a predetermined positioning angle position, so that the wireless remote controller 168 can synchronously advance the wireless remote control to release the 12 volt DC power supply timing controller.
  • the pre-set first blade 12 is self-positioned at a predetermined angular position, and can fix the first 7 seconds or the first 5 seconds or the first 3 seconds, etc. of the self-positioning 8 seconds each time.
  • Degaussing time point or degaussing time point of the first 3 seconds, etc. can be 12 VDC
  • the source electromagnet 80 and the electromagnet chuck 90 are magnetized together, and can be advanced in advance after the demagnetization time point of 8 seconds, while the first spring 91 is fixed by the solid rod 30 having the convex ring 32, the front surface of the cylindrical surface is top to bottom.
  • the high pressure compresses the energy storage state of the first spring 91 to cause the energy storage state of the first spring 91 to change and release, so that the first blade 12 of the first hinge 10 can advance itself by 8 seconds in advance.
  • the automatic left turn is turned off.
  • the magnetic portion 537 of the first portion of the 12 volt DC power source magnetic switch 555 without the lead 538 can also be mounted on the door lock or door page and the mounting position is to align the lead 538 sensor of the magnetic switch 555 on the door frame.
  • the second part of the 535, and 12 volt DC power supply magnetic switch, the sensor 535 of the magnetic switch 555 with the lead 538 is mounted on the door frame and the mounting position is to align the door lock and the magnetic switch 555 on the door page.
  • the magnetic body 537 without the lead 538, and one end of the sensor 535 of the magnetic switch 555 with the lead 538 is connected to the other end of the circuit board of the 220 volt AC power transformer 128. The output voltage is converted to 12 VDC.
  • the power supply voltage conversion connector 102 can be connected together, the sensor 535 lead 538 of the other magnetic switch 555 is connected to the 12 volt DC power supply electromagnet 80, and the first portion of the magnetic switch 555 can be connected with the lead 538.
  • the sensor 535 can also be mounted on the door lock or the door page.
  • the second portion of the magnetic body 537 without the lead 538 can also be mounted on the door frame and the mounting position is to be aligned with the door 538 with the lead 538 sensor 535; Lock and door page
  • the electronic smart lock is electronically cryptographically intelligently sensed and the door lock is swiped and sensed. After the fingerprint is sensed, the door lock is opened to the first blade 12 and the door page is adjusted by the traditional key or the like.
  • the set positioning angle position is self-positioning, and the synchronous door page drives the door lock and the magnetic switch 555 on the door page.
  • the magnetic body 537 without lead wire is separated from the leaded sensor 535 on the door frame, once the door lock and the door are locked.
  • the magnetic core 537 of the magnetic switch 555 on the page and the sensor 535 of the magnetic switch 555 with the lead on the door frame are separated by more than 10 mm, that is, the door page is opened with a slight gap, at this time 12 VDC
  • the power timing controller 125 and the 12 volt DC power solenoid 80 can start to start the power-on state, at this time the 12 volts
  • the DC power supply timing controller 125 can start to start the hinge.
  • the preset 12 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 are together for a long time and a short time together, and the synchronization is also the first blade 12 and the door page.
  • the self-positioning time that can be self-positioning at a predetermined positioning angle position required is long and short; when the first blade 12 reaches the 12 volt DC power supply timing controller 125, the preset 12 volt DC power supply electromagnet 80 is preset.
  • the degaussing time point is also the self-positioning time point of the self-positioning of the first blade fixed by the 12 volt DC power supply timing controller 125 at a predetermined positioning angle position
  • the first spring is the state of energy storage of the first spring 91 by the solid rod 30 having the convex ring 32 with a strong high pressure from top to bottom, so that the energy storage state of the first spring 91 is made. Changes and releases are generated to enable the first blade 12 to automatically rotate itself to close the door leaf.
  • the self-positioning time is long and short, and the last time the power supply timing controller has set the hinge leaf and the door page can be at a predetermined positioning angle.
  • the self-positioning time of the position self-positioning is long and short.
  • the magnetic switch with no lead on the door lock and door page 555 and the magnetic switch of the door switch on the door frame 555 with the lead sensor separated by more than 10 milliseconds will cause the 12 volt DC power supply solenoid 80 and 12 VDC
  • the power timing controller 325 initiates a power on state.
  • the non-lead magnetic body of the door magnetic switch 555 on the door lock and the door page is aligned with the magnetic switch 555 leaded sensor on the door frame to promote the 12 volt DC power electromagnet 80 and 12 volt DC power timing controller
  • the 325 starts the power down mode.
  • the 12 volt DC power supply timing controller 125 can be configured to cooperate with the wireless remote controller 168 so that the self-positioning time of the wireless remote controller 168 via the manual button wireless remote control 168 can be self-positioning at a predetermined positioning angle position.
  • the preset button is configured to enable the wireless remote controller 168 to remotely control the self-positioning time of the hinged blade of the 12 volt DC power supply timing controller 125 to be self-positioning at a predetermined positioning angle position, so that the wireless remote controller 168 It is possible to pre-set the 12 volt DC power electromagnet 80 and the electromagnet suction cup 90 together for a fixed time and a short time, such as a hinge of the button wireless remote control 168
  • the self-positioning time of the self-positioning time of the film can be self-positioning at a predetermined positioning angle position and the short preset button, and the self-positioning time of the self-positioning of the preset hingeable blade of the wireless remote control can be from one second at a predetermined positioning angle
  • the time can be preset, and the wireless remote control can be set to any time between 24 hours and above.
  • the wireless remote control can preset the time and length of the 12 volt DC power supply solenoid 80 and the electromagnet suction cup 90 magnetic attraction together.
  • the wireless remote controller 168 can also synchronize the self-positioning time of the hinged blade of the manual button wireless remote control 168 to be self-positioning at a predetermined positioning angle position and the short preset button, so that the wireless remote control can be preset.
  • the self-positioning time of the self-positioning of the first blade 12 of a hinge at a predetermined angular position is long and short, as can be self-aligned at a predetermined positioning angle position by the external button of the wireless remote control 168.
  • Self-positioning time is long and short preset buttons, so that the wireless remote controller 168 can wirelessly control the self-positioning of the pre-set hinge blades at a predetermined positioning angle position.
  • the time can be set from one second in advance, and the wireless remote control can be set to any time point between 24 hours and above, and the wireless remote control can be preset to be the self-positioning time and length of the first blade.
  • the fixed rod 30 has a data size of a straight-inclined pitch of six reverse-straight-pitch convex spiral rod teeth 39 of two or more of the screws 31, and two or more of the screw-threaded sleeves 40 are fitted.
  • the data of the straight pitch pitch of the concave spiral rod teeth 46 between the six reverse straight pitch pitches is set to be able to preset the axial direction of the sliding and moving of the screw in the axial direction with respect to the upper sleeve. And the distance between the wheelbase and the position of the wheelbase, and the front cylindrical surface of the convex ring can slide down in the axial direction to compress the energy storage elastic force of the spring at the other end of the energy storage elastic force.
  • the spacer 86 on the front end plane of the body 56 is capable of restricting the release of the stored elastic force of the spring 91, and is faster and slower than the speed at which the blade which can preset and limit the hinge is automatically turned to the left in the left direction.
  • the first blade 12 is pushed to open in a rightward direction of rotation, so that the first blade 12 can drive the transmission rod 42 and the screw sleeve 40 to rotate, so that the screw 31 can slide axially downward with respect to the screw sleeve 40.
  • the six reverse convex spiral rod teeth 39 of the screw 31 can be adapted to the six reverse concave spiral rod teeth 46 of the screw sleeve 40 so that the screw 31 Six inverted convex spiral rod teeth 39, which are capable of opposing six reverse concave snails of the threaded sleeve 40
  • the wire rod 46 slides and moves downward in the axial direction, so that the screw 31 can be subjected to a predetermined angle of rotation of the screw sleeve 40 in the axial direction downward and upward, and the solid rod 30 is subjected to a 12 volt DC power supply.
  • the electromagnetic force of the electromagnet 80 and the electromagnet chuck 90 magnetically attracts the top end of the first spring 91 to be self-aligned in the predetermined set position of the rotation. It is convenient to use; at the same time, the adjustment seat can be adjusted and rotated to match the 12 volt DC power supply electromagnet and the plug screw of the plug and the electromagnet and the cup bottom of the cup body, so as to adjust the 12 volt DC power supply electromagnet and the electromagnet suction cup.
  • the angular position is self-positioning, and at the same time, the 12 volt DC power supply timing controller 125 is pre-set by the time button of the human power button 12 volt DC power supply timing controller 125, so that the 12 volt DC power supply electromagnet and the electromagnet can be preset.
  • the magnetic attraction time is long and short, and the 12 volt DC power supply timing controller 125 can also synchronize the self-positioning time and length of the pre-set hinge at a predetermined angular position for self-positioning, so that the hinge can be needed.
  • a predetermined angular position self-positioning when the first blade reaches the self-positioning time point of the first blade 12 that has been scheduled to be set by the 12 volt DC power supply timing controller 125, the first blade 12 can be correspondingly matched with a 12 volt DC power supply electromagnetic
  • the degaussing time of the magnet 80 and the electromagnet chuck 90 are magnetically attracted so that the 12 volt DC power electromagnet 80 can be matched with the degaussing time of the 12 volt DC power electromagnet 80 which is scheduled to be set by the 12 volt DC power supply timing controller 125.
  • the first spring 91 is a state in which the first cylindrical spring 91 is compressed by the high pressure of the top-down strength of the front cylindrical surface of the fixed rod 30 having the convex ring 32 to compress the first spring 91.
  • the state of energy storage is varied and released, relative to the closing of the first vane of the first hinge to automatically rotate leftward.
  • the preset self-positioning time and length can make the hinge self-closing structure, such as a high-sealing flat door or a hinged hinge bushing suitable for any shape, so as to make the high-sealed flat door and the convex door relatively
  • the hinge can be installed in any freezer, refrigerator, cold storage, oven, oven experiment equipment door, experiment box door, simulation environment experiment equipment Doors, mechanical equipment doors, drying equipment doors, soundproof doors, special doors, fresh storage doors, tea storage doors, civil engineering doors and door pages of any ship door, etc., so that high-sealing flat doors and convex door hinges can be exercised
  • the preset self-positioning time and length can make the hinge function self-closing structure.
  • the hinge includes a first hinge 10, a fixed seat 20, a fixed rod 30, a screw sleeve 40, a screw ring 43, and a connecting sleeve. 50, 24 volt DC power supply electromagnet 80, electromagnet suction cup 90, 24 volt DC power supply timing controller 225, 220 volt AC power transformer 128 capable of transforming to 24 volt DC power supply, wireless remote control 168, plug 60 and adjustment Block 70.
  • the first hinge 10 includes a first sleeve 11 and a first blade 12, and the fixing base 20 includes a fixing plate 25, a vertical bottom plate 22 and a protrusion 23 fixed on the bottom plate 22, the protrusion 23
  • a second sleeve 21 is recessed in the end surface of the vertical bottom plate 22.
  • the vertical base plate 22 can be formed as a second hinge 20
  • the second hinge 20 can be formed as a second blade 22
  • the fixed base 20 can be formed as a second hinge 20 .
  • the connecting sleeve 50 is connected between the first sleeve 11 and the second sleeve 21; the third bearing 300 is rotatably connected between the first sleeve 11 and the second sleeve 21 of the boss 23, the third bearing 300
  • the sleeve can also be connected to the outside of the connecting sleeve 50 to make the hinge 10 rotate more smoothly with respect to the axis of the fixed seat 20.
  • the first sleeve 11 and the second sleeve 21 of the boss 23 are arranged side by side, so that the first
  • the hinge 10 has a first blade 12 that is rotatable relative to the second sleeve 21 of the boss 23 such that the hinge can form a high-sealed boss and a flat door hinge structure.
  • the threaded sleeve 40 is rotatably and non-movably coupled in the connecting sleeve 50 in the sleeve 11.
  • the hinge 10 has a swivel 41 in the sleeve 11 and a threaded sleeve 42 of the threaded sleeve 40 extending out of the connecting sleeve 50.
  • the outer portion is fixedly connected, and the fixing portion is provided with a rotating ring 41.
  • the upper end of the screw sleeve 40 is convexly provided with a transmission rod 42, and the transmission rod 42 is rotatably passed through the inner ring through hole of the first bearing 100 and then penetrates.
  • the inner ring of the swivel ring 41 has a through hole, and the outer ring side of the transmission rod 42 is flattened to fit the inner ring of the inner ring through hole of the swivel 41, and the swivel 41 is fitted to the first bushing.
  • the upper part of the 11 is screwed into the fixed transmission rod 42 by the screw through hole which is screwed through the sleeve 11 by the fixing screw 98, so that the sleeve 11 and the swivel 41 are locked.
  • the transmission rod 42 is fixed together, so that the rotating ring 41 and the first sleeve 11 can also limit the axial movement of the threaded sleeve 40, so as to be able to position the sliding rod and the sliding movement of the fixed rod under the axis along the axis.
  • the axial and the wheelbase spacing dimension position does not change, so that when the two hinges are rotated relative to each other, the screw can also slide and move relative to the screw sleeve in the axial direction downward and upward at the first of the first hinge 10
  • the blade 12 is rotated within a predetermined set rotation angle.
  • One end of the 220 volt AC power transformer 128 that can be transformed into a 24 volt DC power supply is a 220 volt AC power line plug 158, and the AC power line plug of the 220 volt AC power transformer 128 that can be transformed into a 24 volt DC power supply
  • the red line of 158 is the electric fire line which is the input adapter 198 of the 220 volt AC power supply to be connected to the transformer, and the blue line of the 220 volt AC power line plug 158 which can be transformed into a 24 volt DC power supply is the electric zero line and is also connected.
  • the transformer's 220 volt AC power input adapter is 298, and the 220 volt AC power cord plug 158 that can be transformed into a 24 volt DC power supply is plugged into a 220 volt AC power outlet 109, and the energy can be transformed into 24
  • the other end of the 220 volt AC power transformer 128 of the VDC power supply is a positive terminal 102 that has been transformed into a 24 volt DC power supply, and the other end of the 220 volt AC power transformer 128 that can be transformed into a 24 volt DC power supply
  • the voltage is a negative terminal 102 that has been transformed into a 24 volt DC power supply, and the positive DC power line connector 198 of the 24 volt DC power supply timing controller 225 is a 220 volt AC that can be converted to a 24 volt DC power supply.
  • the output voltage of the other end of the source transformer is connected to the positive terminal 102 of the 24 volt DC power supply, and the negative DC power line connector 198 of the 24 VDC power supply timing controller 225 is capable of converting and converting to 24 VDC.
  • the output voltage of the other end of the 220 volt AC power transformer 128 of the power supply is connected to the negative terminal 102 which has been transformed into a 24 volt DC power supply, and the positive line of the 24 volt DC power supply electromagnet 80 is to be controlled with a 24 volt DC power supply.
  • the output voltage of the other end of the 225 is a positive terminal 298 which has been transformed into a 24 volt DC power supply, and the negative line of the 24 volt DC power supply solenoid 80 is one of the sensors 535 with the lead switch of the magnetic switch 555.
  • the leads are to be connected together, and the other lead of the leaded sensor 535 of the magnetic switch 555 is to be output to the other end of the 24 volt DC power supply timing controller 225.
  • the negative terminal 298, which has been transformed into a 24 volt DC power supply, is connected together so that the 12 volt DC power supply solenoid 80 and the electromagnet suction cup 90 can be matched with the 24 volt DC power supply timing controller 225 and the 24 volt magnetic switch 555.
  • the sensor 535 of the lead wire and the magnetic body 537 so that the 24 volt DC power supply timing controller 225 is remotely controlled by the mobile phone via the mobile phone, and is remotely controlled by the wireless remote controller 168 via electronic remote control or the human button 24 VDC power supply timing controller 225.
  • the hinge vane can self-position a long time and a short preset button at a predetermined positioning angle position, so that the time of each fixed magnetic attraction of the 24 volt DC power electromagnet 80 and the electromagnet chuck 90 can be preset.
  • the relative self-positioning time of the first blade 12 corresponding to the preset first hinge 10 is self-positioning at a predetermined positioning angle position, so that the self-positioning time is short and short, so that the 24 volt DC power timing controller 225, if the 24 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 can be preset in advance for each fixed magnetic attraction for a second, the predetermined time can be set to 24 hours. At a time, it can be preset to be the time and length of the 24 volt DC power electromagnet 80 and the electromagnet chuck 90 each time the fixed magnetic attraction is together, and the 24 volt DC power supply timing controller 225 can also be synchronized to preset the first time.
  • the first blade 12 of the hinge 10 can be self-positioned at a predetermined positioning angle position each time, and can be preset for each fixed self-positioning time of one second, and can be preset to any time between 24 hours.
  • the point can be preset as the first blade 10 of the first hinge 10 can be fixed at a predetermined positioning angle position each time can be fixed for self-positioning time, so that the 24 volt DC power supply timing controller 225 can Each time the preset 24 volt DC power supply electromagnet 80 and the electromagnet suction cup 90 are fixed together for each time, the fixed magnetic attraction time can be set in advance for one second, and can be preset to 24 hours.
  • the 24 volt DC power electromagnet 80 and the electromagnet suction cup 90 are fixed magnetically together for a preset 8 second time point, so that the 24 volt DC power supply timing controller 225 is remotely controlled by the mobile phone.
  • Voice controlled Remote line 168 via the remote control or the electronic intelligence through the human 24 volt DC power supply timing of the key blade 225 of the controller can hinge in a predetermined Positioning angle position Self-positioning self-positioning time is long and short preset button, so that 24 VDC power supply solenoid 80 and electromagnet suction cup 90 can be preset each time together with fixed magnetic attraction
  • the 24 volt DC power supply timing controller 225 can also synchronize the pre-set first hinge 10 of the first blade 10 to be self-positioning at a predetermined positioning angle position, and the self-positioning time can be 8 seconds time point; when the first blade 12 of the first hinge reaches the 24 volt DC power supply timing controller 225, the preset 24 volt DC power supply electromagnet 80 and the
  • the positioning can be self-positioning when the 8 second time point is reached, and at the same time, the first spring 91 is compressed by the solid rod 30 having the convex ring 32 in a strong downward pressure from the top to the bottom, and the energy storage state of the first spring 91 is compressed.
  • the energy storage state of the first spring 91 is generated And releasing, so that the energy storage elastic force of one end of the first spring 91 can strongly abut against the energy storage elastic force at the other end of the cylindrical surface of the front end of the convex ring 32.
  • the pad can be strongly pressed against the front end surface of the cup body 56.
  • the sheet 86 is such that the first blade 12 of the first hinge 10 can automatically rotate the door to the right by itself.
  • the invention can preset the self-closing structure of the hinge by the length of the self-positioning time, and when the hinge reaches the preset self-positioning time point of the timing controller, the hinge can be synchronously matched with the DC power supply electromagnetic The degaussing time of the iron, while the stored energy of the first spring is released.
  • the invention has wide application range and good industrial utility.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closing And Opening Devices For Wings, And Checks For Wings (AREA)
  • Pivots And Pivotal Connections (AREA)

Abstract

能预设自定位时间长短点使合页自闭的结构,包括两合页(10,20)、螺套(40)、固杆(30)、第一弹簧(91)、电磁铁吸盘(90)、直流电源电磁铁(80)、直流电源定时控制器(125)、无线遥控器(168)、堵头(60)和调节座(70),该每一合页(10,20)都包括轴套(11,21)和固接在轴套(11,21)外的叶片(12,22),固杆(30)具有螺杆(98);螺套(40)具有的传动杆(42)连接在合页(10,20)的一轴套(11,21)内,堵头(60)固接在合页(10,20)的一轴套(11,21)内,螺套(40)和堵头(60)间隔;两轴套(11,21)内的螺套(40)和堵头(60)间设有固杆(30)、第一弹簧(91)、电磁铁吸盘(90)、直流电源电磁铁(80)、杯体(56)和调节座(70)。当合页(10,20)在到达直流电源定时控制器(125)已预先设定好的叶片(12,22)自定位时间点时,使合页(10,20)能同步对应配合直流电源电磁铁(80)的消磁时间,与此同时第一弹簧(91)的储能产生释放。

Description

能预设自定位时间长短点使合页能自闭结构 技术领域
本发明涉及一种能预先设定自定位时间的长短点使合页能自身自动关闭铰链结构。
背景技术
中国专利数据库公告了实用新型名称为《一种升降合页装置》,专利号为2013208356551的发明。它包括上合页、下合页、传动座和传动杆。上合页包括上轴套和固接上轴套的上合叶片;下合页包括下轴套和固接下轴套的下合叶片;传动座固接上轴套,该传动座底端面凹设有传动腔,该传动腔之内回转面设有第一螺旋部分。传动杆固接下轴套,该传动杆之外回转面设有第二螺旋部分,该传动杆连接传动腔,该第一螺旋部分和第二螺旋部分适配啮合,其中:推动上合页使上合页相对下合页转动,通过第一螺旋部分和第二螺旋部分配合能使上合页上升;松释推动使上合页在重力作用下下降,通过第一螺旋部分和第二螺旋部分配合能使上合页自动复位回归闭合。该升降合页装置无法实现在一预定角度位置自定位,在一预定角度位置以下自闭,也无法调整自定位的预定角度,也无法设定自定位时间,也无法使合页能自身自动关闭。
发明内容
本发明提供了能预设自定位时间长短点使合页能自闭结构,其克服了背景技术中升降合页装置所存在的不足。
本发明解决其技术问题的所采用的技术方案之一是:
能预设自定位时间长短点使合页能自闭结构,其特征在于:包括两合页、螺套、固杆、第一弹簧、电磁铁吸盘、电源电磁铁、电源定时控制器、堵头和调节座,该两合页能相对转动,该每一合页都包括轴套和固接在轴套外的叶片,该固杆具有螺杆,该螺套具有传动杆,该传动杆固接在合页的轴套内,该堵头固接在合页的轴套内,该螺套和堵头间隔;该两合页的轴套内之螺套和堵头间设有固杆、第一弹簧、电磁铁吸盘、电源电磁铁、轴承和调节座,且该固杆的螺杆适配螺接螺套;该调节座经调整转动,以能调整电磁铁和电磁铁吸盘间所需要的间距尺寸 位置,以使电源电磁铁和电磁铁吸盘能磁吸定位在杯体的内环,同时调节座也能同步对应配合调整合页能在所需要的一预定定位角度位置自定位;该电源定时控制器的一端连接电源座的电源线接头,另一端连接电源电磁铁的电源线接头,以使电源定时控制器经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键电源定时控制器的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定电源电磁铁和电磁铁吸盘每次磁吸一起的时间长与短,同时电源定时控制器也是同步对应配合预先设定合页叶片每次在一预定定位角度位置自定位的自定位时间长与短,以使合页在一预定定位角度位置自定位后;当合页在到达电源定时控制器已预先设定好的电源电磁铁和电磁铁吸盘磁吸一起的消磁时间点时,使合页能同步对应配合电源电磁铁的消磁时间点,与此同时第一弹簧的储能产生变化和释放,以使第一弹簧的一端储能弹力能顶抵在凸环,另一端顶抵在杯体的前端平面上的垫片,以使合页能实现自身自转动的关闭门页。
本发明解决其技术问题的所采用的技术方案之二是:
能预设自定位时间长短点使合页能自闭结构,其特征在于:包括两合页、连接套、螺套、固杆、第一弹簧、电磁铁吸盘、十二伏直流电源电磁铁、能变压为十二伏直流电源的二百二十伏交流电源变压器、十二伏直流电源定时控制器、无线遥控器、堵头和调节座,该两合页能相对转动,该每一合页都包括轴套和固接在轴套外的叶片,该固杆具有螺杆;该连接套套接在两合页的轴套内,该螺套能转动且不能移动地设在连接套的一端内,该堵头不能转动也不能移动地设在连接套的另一端内,该螺套和堵头间隔,该连接套内之螺套和堵头间设有固杆、第一弹簧、电磁铁吸盘、十二伏直流电源电磁铁、轴承和调节座,且该固杆具有螺杆的两条以上之间的六条反向直斜度螺距凸螺线啮齿牙,对应适配螺接螺套的两条以上之间的六条反向直斜度螺距凹螺线啮齿牙;该调节座经调整转动以能配合堵头和电磁铁的固接螺杆和杯体的杯底和十二伏直流电源电磁铁,以能调整十二伏直流电源电磁铁和电磁铁吸盘间所需要的间距尺寸位置,以使十二伏直流电源电磁铁和电磁铁吸盘能磁吸一起定位在杯体的内环,同时调节座也能同步对应配合调整合页叶片能在所需要的一预定定位角度位置自定位;该能变压为十二伏直流电源的二百二十伏交流电源变压器的一端输入是二百二十伏交流电源变压器的 交流电源线插头,且该能变压为十二伏直流电源的二百二十伏交流电源线插头的红线是电火线是要连接变压器的二百二十伏交流电源的输入转换接头一,且该能变压为十二伏直流电源的二百二十伏交流电源线插头的蓝线是电零线也是要连接变压器的二百二十伏交流电源的输入转换接头二,且该能变压为十二伏直流电源的二百二十伏交流电源线插头是要插在二百二十伏交流电源插座上,且该能变压为十二伏直流电源的二百二十伏交流电源变压器的另一端输出电压是已变压为十二伏直流电源的正极接头,且该二百二十伏交流电源变压器的另一端输出电压是已变压为十二伏直流电源的负极接头,且该十二伏直流电源定时控制器的正极直流电源线接头是要和能变压为十二伏直流电源的二百二十伏交流电源变压器的另一端输出电压是已变压为十二伏直流电源的正极接头连接一起,且该十二伏直流电源定时控制器的负极直流电源线接头是要和二百二十伏交流电源变压器的另一端输出电压是已变压为十二伏直流电源的负极接头连接一起,且该十二伏直流电源电磁铁的正极线是要和十二伏直流电源定时控制器的另一端输出电压是已变压为十二伏直流电源的正极接头连接一起,且该十二伏直流电源电磁铁的负极线是要和门磁开关之带引线的传感器其中一条引线要连接一起,且该门磁开关之带引线的传感器的另一条引线是要和十二伏直流电源定时控制器的另一端输出电压是已变压为十二伏直流电源的负极接头连接一起,以使十二伏直流电源电磁铁和电磁铁吸盘能对应配合十二伏直流电源定时控制器和十二伏门磁开关之带引线的传感器和磁性体,以使十二伏直流电源定时控制器经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键十二伏直流电源定时控制器的合页定位时间的预先设定按键,以能预先设定十二伏直流电源电磁铁和电磁铁吸盘每次磁吸一起的时间长与短,相对也是合页叶片每次能在所需要的一预定定位角度位置自定位的自定位时间长与短;当合页叶片在到达十二伏直流电源定时控制器已预先设定好的合页叶片的自定位时间点时,相对是十二伏直流电源定时控制器已预先设定好的十二伏直流电源电磁铁和电磁铁吸盘磁吸一起的消磁时间点,以使合页叶片能对应配合十二伏直流电源电磁铁和电磁铁吸盘磁吸一起的消磁时间点,与此同时第一弹簧的储能状态能产生变化和释放,以使第一弹簧的一端储能弹力能顶抵在凸环的另一端储能弹力着能强力的顶抵在杯体的前端平面上的垫片,使合页叶片能自身自动转动关闭门页。
本技术方案与背景技术相比,它具有如下优点:
合页的叶片经推动打开为左向转动方向,以使合页的叶片的第一轴套能带动第一轴套内的传动杆和第二轴套内的螺套转动,相对以使第二轴套内的固杆具有的螺杆能相对第二轴套内的螺套能沿轴向往下滑动强力压缩着第一弹簧的储能弹力度,以使该固杆具有的凸环的前沿圆柱面能沿轴向往下滑动强力压缩着弹簧的储能弹力度的另一端储能弹力着能强力的顶抵在杯体的前端平面上的垫片,与此同时该固杆具有的螺杆的两条以上之间的六条正向直斜度螺距的凸螺线啮齿牙的直斜度螺距的大与小数据设置,适配螺接螺套的两条以上之间的六条正向直斜度螺距的凹螺线啮齿牙的直斜度螺距的大与小数据设置,以能预先设定螺杆在相对螺套沿轴下与上的移动的轴距间距尺寸位置,相对以能预先设定和限制弹簧的储能顶弹力度强与弱的释放,也相对以能同步预先设定合页叶片在右向转动自闭时的速度快与慢,相对以使该螺杆能相对螺套沿轴向下与上的滑动在合页转动的预定角度内;该固杆所承受十二伏直流电源电磁铁和电磁铁吸盘磁吸一起的电磁力及第一弹簧的储能弹力所转变的顶抵力相平衡,以使合页叶片能自定位在转动的的预定设置的定位角度里,方便使用;同时利用调节座经调整转动,以能配合堵头和电磁铁的固接螺杆和杯体的杯底和十二伏直流电源电磁铁,以能调整十二伏直流电源电磁铁和电磁铁吸盘间所需要的间距尺寸位置,以使十二伏直流电源电磁铁和电磁铁吸盘能磁吸一起定位在杯体的内环,同时调节座也能同步对应配合调整合页叶片能在所需要的一预定定位角度位置自定位,与此同时十二伏直流电源定时控制器经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键十二伏电源定时控制器的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定十二伏直流电源电磁铁和电磁铁吸盘每次磁吸一起的时间长与短,同时十二伏直流电源定时控制器也能同步对应配合预先设定合页叶片每次在一预定角度位置自定位的自定位时间长与短,使合页能在一预定角度位置自定位后;当合页的叶片在到达十二伏直流电源定时控制器已预先设定好的合页在一预定定位角度位置自定位的自定位时间点时,使合页能同步对应配合十二伏直流电源电磁铁和电磁铁吸盘磁吸一起的消磁时间点,以使十二伏直流电源电磁铁能对应配合十二伏直流电源定时控制器已预先设定好的十二伏直流电源电磁铁和电磁铁吸盘磁吸一起的消磁时间点,与 此同时第一弹簧的储能弹力产生变化和释放,以使第一弹簧的一端储能弹力能强力的顶抵在凸环的前沿圆柱面的另一端储能弹力着能强力的顶抵在杯体的前端平面上的垫片,以使合页能自身自动右向转动的关闭。该固杆具有的螺杆可设置为两条以上反向直斜度螺距的凸螺线啮齿牙的直斜度螺距的数据大小设置,和反向直斜度螺距的凸螺线啮齿牙的设置条数结构,适配螺接螺套设置为两条以上反向直斜度螺距的凹螺线啮齿牙的直斜度螺距的数据大小设置,和反向直斜度螺距的凸螺线啮齿牙的设置条数结构,相对以使合页的叶片经推动打开为右向转动方向;合页叶片经自闭为左向转动方向,同时螺杆能相对螺套沿轴向往下与往上的滑动和移动在合页转动的预定设置角度内。
附图说明
下面结合附图和实施例对本发明作进一步说明。
图1绘示了实施例一的车门铰链的剖析的立体示意图。
图1-1绘示了实施例一的第二合页的立体示意图。
图1-2绘示了实施例一的第一合页的立体示意图。
图1-3绘示了实施例一的螺套的立体示意图。
图1-4绘示了实施例一的固杆的立体示意图。
图1-5绘示了实施例一的固定滑杆的立体示意图。
图1-6绘示了实施例一的第一轴承的立体示意图。
图1-7绘示了实施例一的滑转套管的立体示意图。
图1-8绘示了实施例一的第一垫片的立体示意图。
图1-9绘示了实施例一的第二垫片的立体示意图。
图1-10绘示了实施例一第三垫片的的立体示意图。
图1-11绘示了实施例一的十二伏直流电源电磁铁的立体示意图。
图1-12绘示了实施例一的套帽的固接螺杆的立体示意图。
图1-13绘示了实施例一的套帽的立体示意图。
图1-14绘示了实施例一的电磁铁吸盘的立体示意图。
图1-15绘示了实施例一的橡胶柱的立体示意图。
图1-16绘示了实施例一的堵头的立体示意图。
图1-17绘示了实施例一的调节座的立体示意图。
图1-18绘示了实施例一的电磁铁的固接螺杆的立体示意图。
图1-19绘示了实施例一的弹簧的立体示意图。
图1-20绘示了实施例一的车体十二伏直流电源座的立体示意图。
图1-21绘示了实施例一的十二伏直流电源定时控制器的立体示意图。
图1-22绘示了实施例一的直流定时控制器的无线遥控器的立体示意图。
图2绘示了实施例二的车门铰链的剖析的立体示意图。
图3绘示了实施例三的车门铰链的剖析的立体示意图。
图3-1绘示了实施例三的直流电源二十四伏定时控制器的立体示意图。
图3-2绘示了实施例三的直流电源变压器的立体示意图。
图3-3绘示了实施例三的直流定时控制器的无线遥控器的立体示意图。
图3-4绘示了实施例三的杯体的电源线的侧面贯穿通孔的立体示意图。
图3-5绘示了实施例三的门磁开关之带引线的传感器的立体示意图。
图3-6绘示了实施例三的门磁开关之不带引线的磁性体的立体示意图。
图4绘示了实施例四的铰链的剖析的立体示意图。
图4-1绘示了实施例四的第二合页的立体示意图。
图4-2绘示了实施例四的第一合页的立体示意图。
图4-3绘示了实施例四的转环的立体示意图。
图4-4绘示了实施例四第一轴承的立体示意图。
图4-5绘示了实施例四的螺环的立体示意图。
图4-6绘示了实施例四的连接套的装配的立体示意图。
图4-7绘示了实施例四堵头的立体示意图。
图4-8绘示了实施例四的螺套的立体示意图。
图4-9绘示了实施例四的固杆的立体示意图。
图4-10绘示了实施例四的密封胶圈的立体示意图。
图4-11绘示了实施例四的第三轴承的立体示意图。
图4-12绘示了实施例四的二百二十伏交流电定时控制器的立体示意图。
图4-13绘示了实施例四的二百二十伏交流电源变压器的立体示意图。
图5绘示了实施例五的铰链的剖析的立体示意图。
图5-1绘示了实施例五的第一合页的立体示意图。
图5-2绘示了实施例五的第二轴套的电源线的侧面贯穿通孔立体示意图。
图5-3绘示了实施例五的连接套的电源线的侧面贯穿通孔的立体示意图。
具体实施方式
实施例一
本能预设自定位时间长短点使合页能自闭结构,如可适合设置于任何形状的车门折页合页、车门合页、车厢门合页的轴套内,如蝶形合页、H型合页、子母形合页、旗形合页等。该铰链能预设自定位时间长短点使合页能自闭结构,如可适合安装于任何形状的室内外门的门页、门窗的门页、车门的门页、车厢门的门页等。该铰链能从预定设置定位角度的10度定位角度位置设置起设置至180度的预定设置定位角度,且在预定角度的10度定位角度位置至180度预定角度间,之任一预定角度位置起点,合页的叶片能实现自定位后;合页的叶片需要关闭,可通过12伏直流电源定时控制器125经手机远程控制\经语音控制\经无线遥控 器遥控\经电子智能控制等或经人力按键12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置定位的定位时间长与短的预先设定按键,以能预先设定12伏直流电源电磁铁80和电磁铁吸盘90磁吸一起的时间长与短,同时12伏直流电源定时控制器125也能同步预先设定合页能在一预定定位角度位置自定位时间的长与短;合页在到达12伏直流电源定时控制器125已预定设置好的合页的自定位时间点时,相对是12伏直流电源电磁铁和电磁铁吸盘磁吸一起的消磁时间点,与此同时第一弹簧的储能弹力产生释放,使第一弹簧91的一端储能弹力能强力的顶抵在凸环的前沿圆柱面,另一端储能弹力着能强力的顶抵在杯体的前端平面上的垫片86,使第一弹簧91能使第一合页的第一叶片往回关,以使合页能实现自身自动右向转动的关闭。
该铰链,请查阅图1至图1-22,铰链包括第一合页10、第二合页20、第一轴承100、螺套40、固杆30、第一弹簧91、电磁铁吸盘90、12伏直流电源电磁铁80、12伏直流电源定时控制器125、无线遥控器168、堵头60和调节座70;该第一合页10设一第一叶片12和两间隔固接在第一叶片的两第一轴套11,且该第一合页10的第一叶片12是呈折页形状设置(也可不用呈折页形状设置);该第二合页20包括固接在合页固定座190的两间隔的第二叶片22,该两间隔的第二叶片22固接有第二轴套21,且该第二轴套21的轴距和两第一轴套11的间隔间距适配,该第二轴套21适配位于两第一轴套11间;通过配设固接螺杆98穿过合页固定座190的螺杆通孔,再穿过车门框的螺杆通孔,以使合页固定座190和车门框能固接在一起。该第二轴套21的内环通孔上部凹设有凹槽平台101,且该第一垫片95套接连接地平放在凹槽平台101上,且位于第一轴套11和第二轴套21之间;该第二轴套21的内环通孔下部也凹设有凹槽平台201,且该第二垫片85套接连接地平放在凹槽平台201上,且位于第一轴套11和第二 轴套21之间,该第一垫片95和第二垫片85能起到辅助加强第一叶片12经打开与自闭时能更加顺畅。该螺套40能转动且不能滑动和移动地连接在第二轴套21的内环内,该螺套40上部凸设有传动杆42,该传动杆42能转动地穿过第一轴承100,穿过第二轴套21的凹槽平台101,穿入第一轴套11的内环通孔,该传动杆42适配位于第一轴套11内环通孔,通过配设固接螺杆98螺进穿过第一轴套11和转动杆42以使第一轴套11和传动杆42伸出第二轴套21外的部分固接,以使上第一轴套11和转动杆42固接一起,相对以能定位和限制固杆30在相对螺套40沿轴线下与上的滑动和移动的轴向和轴距不会变动。该第二轴套21内之螺套40和堵头60间设有固杆30、第一弹簧91、12伏直流电源电磁铁80、电磁铁吸盘90、橡胶柱59、杯体56、堵头60和调节座70。
该套帽的固接螺杆98的光杆段穿过吸盘的套帽92的内环通孔,再继续穿过橡胶柱59的内环通孔,且套帽的固接螺杆98的螺纹段983螺接在固杆30具有的连接杆311的螺啮齿牙孔内,且该套帽的固接螺杆98的螺杆头982支撑在吸盘的套帽92的内环通孔台阶981处,且螺纹段983螺接锁入在固杆30具有的连接杆311的螺啮齿牙孔内,以使电磁铁吸盘90、橡胶柱59和固杆30的连接杆311连接一起后,该吸盘的套帽92在螺接锁入吸盘圆柱的内环螺啮齿牙孔920内,使吸盘的套帽92和电磁铁吸盘90连接一起,以使电磁铁吸盘90、橡胶柱59和连接杆311能一起下与上的滑动和移动,且该套帽的固接螺杆98又能限制电磁铁吸盘90和橡胶柱59从套帽的固接螺杆98处脱离。该电磁铁的固接螺杆700的光杆段穿过调节座70的内环通孔,再继续穿过杯体56的杯底的螺杆贯穿通孔,且电磁铁的固接螺杆700的螺纹段703螺接锁入12伏直流电源电磁铁80的螺啮齿牙孔内,且该电磁铁的固接螺杆700的螺杆头702支撑在调 节座70的内环通孔台阶701处,使调节座70、电磁铁的固接螺杆700和12伏直流电源电磁铁80能连接一起,以使调节座70经调整转动,以能对应配合堵头60、电磁铁的固接螺杆700、杯体56的杯底和12伏直流电源电磁铁80,以能调整12伏直流电源电磁铁80和电磁铁吸盘90间所需要的间距尺寸位置,以使十二伏直流电源电磁铁和电磁铁吸盘能磁吸一起定位在杯体的内环,同时该调节座能同步对应配合调整合页的叶片能在所需要的一预定设置定位角度之间的一预定角度位置自定位;且电磁铁的固接螺杆700又能限制12伏直流电源电磁铁80从调节座70内的电磁铁的固接螺杆700处脱离。
第一合页10的第一叶片12经推动打开为左向转动方向,以使第一轴套11能带动第一轴套11内的传动杆42和第二轴套21内的螺套40能沿轴向往下滑动压缩着第一弹簧91的储能弹力度,相对以使第二轴套21内的螺杆31能相对第二轴套21内的螺套40转动,使该固杆30具有的凸环32的前沿圆柱面能沿轴向往下滑动压缩着第一弹簧91的储能弹力度,与此同时该固杆30的螺杆31的两条以上(如六条)正向直斜度螺距的凸螺线啮齿牙39的直斜度螺距的大与小数据设置,适配螺接螺套40的两条以上(如六条)正向直斜度螺距的凹螺线啮齿牙46的直斜度螺距的大与小数据设置,以能预先设定螺杆在相对螺套沿轴下与上的移动的轴距间距尺寸位置,相对以能同步预先设定和限制第一弹簧91的储能顶弹力度强与弱的释放,也相对能同步预先设定第一合页10的第一叶片12在自身自动右向转动关闭时的速度快与慢,相对以使该螺杆31能相对螺套40沿轴向下与上的活动在合页转动的预定角度内(此时固杆30具有的螺杆31的两条以上之间的六条正向直斜度螺距的凸螺线啮齿牙39的直斜度螺距的大与小数据设置,可从两条以上之间的六条正向直斜度螺距的凸螺线啮齿牙39的15度直斜度螺距预定设置起可设置至129度左右的直斜度螺距,且该两条以上之 间的六条正向直斜度螺距的凸螺线啮齿牙39的直斜度螺距的大与小数据设置越大或较大,其螺杆31在相对螺套40沿轴向下与上的滑动和移动的轴向和轴距的间距尺寸会越大或较大,相对会造成产生合页的第一合页10的第一叶片12的预定设置的定位角度位置相对会越大或较大,同时固杆30具有的凸环32沿轴向往下滑动和移动压缩着弹簧91的储能弹力度就会相对越大或较大,其固杆30具有的螺杆31的两条以上之间的六条正向直斜度螺距的凸螺线啮齿牙39的直斜度螺距的大与小数据设置,相对也要适配螺接螺套的两条以上之间的六条正向直斜度螺距的凹螺线啮齿牙46的直斜度螺距的大与小数据设置的正向直斜度螺距;且该螺套的两条以上之间的六条正向直斜度螺距的凹螺线啮齿牙46的直斜度螺距的大与小数据设置可从两条以上之间的六条正向直斜度螺距的凹螺线啮齿牙46的的15度直斜度螺距预定设置起可设置至129度左右的直斜度螺距,其螺杆31在相对螺套40沿轴向下与上的滑动和移动的轴向和轴距的间距尺寸会越大或较大,相对会造成产生合页的第一合页10的第一叶片12的预定设置的定位角度位置相对会越大或较大,同时固杆30具有的凸环32前沿圆柱面沿轴向往下滑动和移动压缩着弹簧91的储能弹力度就会相对越大或较大,其螺套的两条以上之间的六条正向直斜度螺距的凹螺线啮齿牙46的直斜度螺距的大与小数据设置,相对也要适配螺接固杆30具有的螺杆31的两条以上之间的六条正向直斜度螺距的凸螺线啮齿牙39的直斜度螺距的大与小数据设置);该固杆30所承受12伏直流电源电磁铁80和电磁铁吸盘磁90磁吸一起的电磁力及第一弹簧91的储能弹力所转变的顶抵力相平衡,以使第一合页10的第一叶片12能自定位在转动的的预定设置的定位角度里,方便使用;同时利用堵头60内的调节座70经调整转动以能对应配合堵头60和电磁铁的固接螺杆700和杯体56的杯底和12伏直流电源电磁铁80,以能调整12伏直流电源电磁铁80和电磁 铁吸盘90所需要的间距尺寸位置,以使12伏直流电源电磁铁80和电磁铁吸盘90能磁吸一起定位在杯体56的内环,同时调节座70也能同步对应配合调整第一合页10的第一叶片12能在所需要的一预定角度位置自定位,与此同时该12伏直流电源定时控制器125经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定12伏直流电源电磁铁和电磁铁吸盘磁吸一起的时间长与短,同时12伏直流电源定时控制器125也能同步对应预先设定第一合页10的第一叶片12能在一预定角度位置自定位的自定位时间长与短,使第一合页10的第一叶片12能在一预定角度位置自定位;第一合页10的第一叶片在到达12伏直流电源定时控制器125已预先设定好的第一合页10的第一叶片12的自定位时间点时,相对也是12伏直流电源电磁铁80和电磁铁吸盘磁吸一起的消磁时间点,与此同时第一弹簧91是被固杆30具有凸环32前沿圆柱面呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,使第一弹簧91的储能状态产生变化和释放,使第一弹簧91的一端的储能弹力能强力的顶抵在凸环32的前沿圆柱面的另一端储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,相对以使第一合页10的第一叶片12能自身自动右向转动方向的关闭车门页。
如该第一合页10的第一叶片12需要在预定设置定位角度中的90度定位角度位置自定位,该第一合页10的第一叶片12在经外力推动打开为左向转动方向打开至需要的90度预定角度位置时,相对以使该第一叶片12会带动传动杆42和螺套40转动,相对以使螺杆31能相对螺套40能沿轴向往下滑动压缩着第一弹簧91的储能弹力度,以使螺杆31相对螺套40活动,与此同时第一弹簧 91是被固杆30具有的环形凸环32的前沿圆柱面呈由上至下的强力度的高压压缩第一弹簧91的储能弹力状态,与此同时该固杆30具有的螺杆31和电磁铁吸盘90会对应配合第一合页10的第一叶片12往下滑动和移动至第一合页的第一叶片12被打开至90度的一预定角度位置,相对是第一合页10的第一叶片12所需要的预定定位角度中的90度定位角度位置,与此同时该第一合页10的第一叶片12是没有定位功能,与此同时该第一合页10的第一叶片12需要在预定角度之间的90度定位角度位置定位时,一定要通过堵头60内的调节座70经调整转动调节座70,以使调节座70能对应配合堵头和12伏直流电源电磁铁80和电磁铁的固接螺杆700和杯体56的杯底,以能调整12伏直流电源电磁铁80和电磁铁吸盘90间所需要的间距尺寸位置,以使12伏直流电源电磁铁80和电磁铁吸盘90能磁吸一起定位在杯体56内,同时调节座70能同步对应配合调整第一合页10的第一叶片12所需要的90度预定角度位置,以使第一合页10的第一叶片12能在预定设置定位角度的30度至180度之间的90度定位角度位置起点自定位,但该第一合页10的第一叶片12也可以打开至第一合页10的第一叶片12的预定转动最大极限点的180度角度后,与此同时第一弹簧91是被固杆30具有凸环32的前沿圆柱面呈由上至下的强力度的高压压缩着第一弹簧91的储能弹力状态,使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端储能弹力能强力的顶抵凸环32的另一端储能弹力着能强力的顶抵杯体56的前端平面上的垫片86,与此同时该橡胶柱59是被固杆30具有的凸环32配合第一磁铁套帽92呈由上至下的强力度高压压缩橡胶柱59的储能弹性力状态,以使该橡胶柱59的储能弹性力状态产生变化,以使橡胶柱59的储能弹性力产生释放,以使该橡胶柱59的一端的储能弹性力度能强力度的顶抵在环形凸环32 的前沿圆柱面,且该橡胶柱59的另一端的储能弹性力度着能强力度的顶抵吸盘套帽92,以使第一弹簧91和橡胶柱59能促使第一合页10的第一叶片12能右向转动往回关,以使第一合页10的第一叶片12会右向转动返回原本已通过堵头60内的调节座70已调整到位的90度预定定位角度位置自定位后;第一合页10的第一叶片12需要关闭,要通过12伏直流电源定时控制器125经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定的12伏直流电源电磁铁80和电磁铁吸盘90磁吸一起的消磁时间点,相对也是第一合页10的第一叶片12在定位角度位置定位的定位时间到达12伏直流电源定时控制器125已预先设定好的第一合页10的第一叶片12自定位时间点时,与此同时第一弹簧是被固杆30具有凸环32的前沿圆柱面呈由上至下的强力度的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端的储能弹力能强力的顶抵在凸环32的前沿圆柱面的另一端的储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,以使第一弹簧91能使第一合页10的第一叶片12右向转动往回关,以使第一合页10的第一叶片能实现自身自动右向转动的关闭。该弹性体橡胶柱59也可以由有色金属弹性体的有色金属弹簧取而代之。该杯体56沿内外环的轴向和轴距的间距尺寸位置设有杯体56侧面的电源线的贯穿通孔561,该第二轴套21沿内外环的轴向和轴距的间距尺寸位置也设有第二轴套21侧面的电源线的贯穿通孔568,且该杯体侧面的电源线的贯穿通孔561和第二轴套的电源线的侧面贯穿通孔568,一起沿内外环的轴向和轴距的间距尺寸位置设置是对齐接通的,以使12伏直流电源电磁铁80的电源线能贯 穿过去贯穿通孔561、贯穿通孔568和12伏直流电源定时控制器125的电源线接头198连接一起。
该12伏直流电源定时控制器125的一端输入12伏正极直流电源线接头198,通过连接车体12伏负载正极直流电源座的直流电源线接头198,以使12伏直流电源定时控制器125能和车体12伏直流电源座连接一起,且该12伏直流电源定时控制器125的另一端输出12伏负极直流电源线接头198,通过连接12伏负载负极直流电源电磁铁80的12伏负载负极直流电源线接头198,使12伏直流电源电磁铁80能和12伏直流电源定时控制器125连接一起,以使12伏直流电源定时控制器125经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定12伏直流电源电磁铁80和电磁铁吸盘90每次磁吸一起的时间长短点,同时12伏直流电源定时控制器125也能同步对应配合预先设定第一合页10的第一叶片12每次在一预定定位角度位置自定位的自定位时间长与短,以使12伏直流电源定时控制器125如可预先设定12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长短点为一秒预先设定起,可预定设置至24小时之间的任一时间点,皆可预先设定成为12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长与短,同时12伏直流电源定时控制器125也能同步预先设定第一合页10的第一叶片12每次的自定位时间长短点为一秒预先设定起,可预定设置至24小时之间的任一时间点,皆可预先设定成为第一合页10的第一叶片12每次能固定在一预定定位角度位置自定位的时间长短点,以使12伏直流电源定时控制器125能每次固定预先设定12伏直流电源电磁铁80和电磁铁吸盘90磁 吸一起的时间长短点为一秒预先设定起,可预定设置至24小时之间的8秒时间点,成为12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起为预先设定的8秒时间点,以使12伏直流电源定时控制器125经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使12伏直流电源定时控制器125能预先设定12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起,就能每次固定磁吸一起为8秒时间点,同时12伏直流电源定时控制器125也能同步预先设定第一合页10的第一叶片12每次能固定在一预定定位角度位置自定位,就能自定位时间为8秒时间点;当第一合页10的第一叶片在到达12伏直流电源定时控制器125已预先设定好的12伏直流电源电磁铁80和电磁铁吸盘磁吸一起每次固定8秒消磁时间点时,同时也是12伏直流电源定时控制器125已预先设定好的第一合页10的第一叶片每次固定在一预定定位角度位置自定位的自定位8秒时间点到达时,与此同时第一弹簧是被固杆30具有凸环32的前沿圆柱面呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端的储能弹力能强力的顶抵在凸环32的另一端的储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,以使第一合页10的第一叶片12能自身自动右向转动关闭车门页。
该12伏直流电源定时控制器125可提前经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使12伏直流电源定时控制器125能提前解除12伏直流电源定时控制器125已 预先设定好的12伏直流电源电磁铁80每次固定8秒消磁时间点的前7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等,皆可成为12伏直流电源电磁铁80能提前消磁时间点,同时12伏直流电源定时控制器125可提前经外力按键12伏直流电源定时控制器125的时间预先设定按键,以使12伏直流电源定时控制器125能同步提前解除12伏直流电源定时控制器125已预先设定好的第一合页10的第一叶片12在一预定角度位置自定位,每次固定自定位为8秒时间点的前7秒时间或前5秒时间或前3秒时间等等,皆可提前成为第一合页10的第一叶片12的提前自身自动关闭时间点,以使第一合页10的第一叶片12能提前对应配合12伏直流电源电磁铁80提前在8秒之前的前7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等,皆可成为12伏直流电源电磁铁80的提前消磁时间点后,相对也是12伏直流电源定时控制器125已预先设定好的第一合页10的第一叶片在一预定角度位置自定位,每次固定自定位为8秒时间点的前7秒时间或前5秒时间或前3秒时间等等,皆可提前成为第一合页10的第一叶片12能提前自身自动关闭时间点,与此同时第一弹簧91是被固杆30具有凸环32的前沿圆柱面呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端的储能弹力能强力的顶抵在凸环32的前沿圆柱面的另一端的储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,以使第一合页10的第一叶片12能提前在8秒之前的前几秒就能自身自动右向转动的关闭。该12伏直流电源定时控制器125的无线遥控器168可提前经外力按键无线遥控器168的时间预先设定按键,以使无线遥控器168能提前无线遥控解除12伏直流电源定时控制器125已预先设定好的12伏直流电源电磁铁80每次固定8秒消磁时间点的前 7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等,皆可提前成为12伏直流电源电磁铁80能提前消磁时间点,同时无线遥控器168可提前经外力按键无线遥控器168的时间预先设定按键,以使无线遥控器168能同步提前无线遥控解除12伏直流电源定时控制器125已预先设定好的第一合页10的第一叶片12在一预定角度位置自定位,每次固定自定位8秒时间的前7秒或前5秒或前3秒点等等,皆可提前成为第一合页10的第一叶片12能提前自身自动右向转动关闭时间,以使第一合页的第一叶片12能提前对应配合12伏直流电源电磁铁80提前在8秒之前的前7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等,皆可提前成为12伏直流电源电磁铁80能提前消磁时间点后,与此同时第一弹簧91是被固杆30具有凸环32的前沿圆柱面呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端的储能弹力能强力的顶抵在凸环32的前沿圆柱面的另一端的储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,以使第一合页10的第一叶片12能提前在8秒之前就能自身自动右向转动关闭。
该12伏直流电源门磁开关555的第一部分不带引线538的磁性体537也可按装在车门锁或车门页上且按装位置是要对齐吻合车门框上的引线538传感器535,且该12伏直流电源门磁开关555的第二部分带引线538的传感器535是按装在车门框上且按装位置是要对齐吻合车门锁及车门页上的门磁开关555不带引线538的磁性体537,且该门磁开关555带引线538的传感器535的其中一条正极引线要连接12伏直流电源定时控制器125的另一条传感器535负极引线538要连接12伏直流电源电磁铁80,在此也可以另一种按装方式该门磁开关555的第一部分带引线538的传感器535也可按装在车门锁或车门页上,第 二部分门磁开关555不带引线538的磁性体537也可按装在车门框上且按装位置是要对齐吻合车门锁或车门页上的门磁开关555带引线538传感器535;当门锁和门页的电子智能锁经电子密码智能感应和门锁经刷卡感应经按指纹感应经传统钥匙等打开门锁和门页的电子智能锁后,门页经打开至第一合页10的第一叶片12和车门页已预定调整设置好的定位角度位置自定位,同时同步车门页会带动车门锁或车门页上的12伏直流电源门磁开关555不带引线538的磁性体537与车门框上带引线538的传感器535移位分离,一旦车门锁及车门页上的门磁开关555不带引线538的磁性体537与门框上的门磁开关555带引线538的传感器535移位分离超过十毫米,也就是车门框刚被打开一丁点缝隙,此时12伏直流电源定时控制器125和12伏直流电源电磁铁80才会开始启动通电状态,此时12伏直流电源电磁铁80才能开始启动12伏直流电源定时控制器已预先设定好的电磁铁和电磁铁吸盘每次磁吸一起的时间长与短,此时车门页被打开至第一合页10的第一叶片12和车门页已预定调整设置好的定位角度位置自定位;当第一合页10的第一叶片12和车门页在到达12伏直流电源定时控制器125已预先设定好的12伏直流电源电磁铁80和电磁铁吸盘90磁吸一起每次消磁时间点时,同时也是12伏直流电源定时控制器125已预先设定好的第一合页10的第一叶片每次固定在一预定定位角度位置自定位的自定位时间点的到达时,与此同时第一弹簧是被固杆30具有凸环32的前沿圆柱面呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端的储能弹力能强力的顶抵在凸环32的另一端的储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,以使第一合页10的第一叶片12能自身自动转动关闭车门页。且每次第一合页10的第一叶片12和车门页打开至一预定定位角度位置自定位的定位的时间长与短,都会循环 重复上次12伏电源定时控制器125已设定好的第一合页10的第一叶片12和车门页每次能在所需要的一预定定位角度位置自定位的自定位时间长与短时间。
该12伏直流电源定时控制器125能对应配合无线遥控器168,以使无线遥控器168经外力按键无线遥控器168的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能无线遥控12伏直流电源定时控制器125,以使无线遥控器168能预先设定12伏直流电源电磁铁80和电磁铁吸盘90磁吸一起的时间长短点,如可每次按键无线遥控器168的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,可无线遥控预先设定能从一秒时间预先设定起,可无线遥控预定设置至24小时之间的任一时间点,皆可无线遥控预先设定成为12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长短点,同时同步无线遥控器168也能同步经外力按键合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能同步无线遥控预先设定第一合页10的第一叶片12每次在一预定角度位置自定位的自定位时间长与短,如可从无线遥控器168每次经外力按键无线遥控器168的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使无线遥控器168能无线遥控的预先设定合页叶片能在一预定定位角度位置自定位的自定位时间能从一秒时间预先设定起,可无线遥控预定设置至24小时之间的任一时间点,皆可无线遥控预先设定成为第一合页的第一叶片12的自定位时间长短点。
一具体结构中,该螺杆31的末端有一固接的凸环32,且该凸环32固接有连接杆33,该凸环32的外环周向处凹设有凸环滑动轨道凹槽332。其中:该固定滑杆穿过第二轴套21的螺钉通孔在滑进抵靠在凸环滑动轨道凹槽内332,以使该固定滑杆339能对应配合凸环滑动轨道凹槽332,相对以能定位和限制固杆 30在相对螺套30沿轴线往下与往上的滑动和移动的轴向和轴距和周向的尺寸不会变动。其中:该固定滑杆339套接滑接滑转套管333,以使套接滑接有滑转套管333的固定滑杆339能抵靠在凸环滑动轨道凹槽332内,相对以能起到辅助加强固杆在相对螺套沿轴线下与上的滑动和移动的运动更加顺畅,相对以使第一合页10的第一12叶片经打开与自闭时能更加顺畅。该第一轴承100在第二轴套21内能转动地套接连接在传动杆42处,且位于螺套40和第二轴套21的凹槽平台101之间,该第一轴承100能起到辅助加强固杆在相对螺套沿轴线下与上的滑动和移动的运动能更加顺畅,相对以使第一合页10的第一叶片12经打开与自闭时能更加顺畅。该堵头60能转动地连接在第二轴套21内,且伸出第二轴套21外的部分,通过固接螺钉98螺进穿过第一轴套11的螺钉通孔,在锁进穿过堵头60后在螺进锁接固定调节座70,与此同时该固接螺钉98先不用配合第一轴套11及堵头60一起锁接固定调节座70,等待该调节座70经调节转动,以使调节座70能对应配合堵头和12伏直流电源电磁铁80和电磁铁的固接螺杆700和杯体56的杯底,以能调整12伏直流电源电磁铁80和电磁铁吸盘90间所需要的间距尺寸位置,以使电磁铁80和电磁铁吸盘90能磁吸一起定位在杯体56内,同时调节座能同步对应配合调整第一合页10的第一叶片12所需要的预定角度位置,以使第一合页10的第一叶片12能在预定定位角度中的一需要的定位角度位置起点自定位,再通过等待中的固定螺钉98再启动锁接螺进固定调节座70,以防止调节座70松动,但该第一合页10的第一叶片12也可以打开至第一合页10的第一叶片12的预定转动预定角度最大极限点的180度角度。
实施例二
它与实施例一不同之处在于:请查阅图2,该第二合页20包括一第二轴套 21和一第二叶片22,该第一合页10包括一第一轴套11和一第一叶片12,该第一轴套11设在第一叶片22上半部分,且该第一叶片12是呈折页形状;通过该固接螺钉98螺进穿过第一轴套11的螺钉通孔,再锁入穿过转环41,再锁进固接传动杆42,以使第一轴套11、转环41和传动杆42固接一起。在连接套50内设第二凸缘52,通过第二凸缘52在连接套50内能抵靠在堵头60的环形凹槽520内,以使第二凸缘52在连接套50内能镶嵌固座60的环形凹槽520,以使堵头60和第二凸缘52能固接在连接套50内,该堵头60伸出连接套外部分,通过固定螺钉98螺进穿过第二轴套21的螺杆通孔,再锁进固接堵头60以使第二轴套21和堵头60固接一起。该螺套40和堵头60间隔;该连接套50内之螺套40和堵头60间设有固杆30、第一弹簧91、12伏直流电源电磁铁80、电磁铁吸盘90、橡胶柱59、杯体56、堵头60和调节座70。
该传动杆42能转动且不能移动地连接在第一轴套11内的连接套50内,且该转环41和传动杆42伸出连接套50外的部分固接,该连接配设有一转环41;该传动杆42的外环侧面切平边适配转环41的内环通孔的内环切平边,且该转环41适配位于第一轴套11内的上部,通过配设的固接螺钉98使轴套11、转环41和传动杆42固接一起,以使该转环41和第一轴套11还能限制螺套40的轴向活动,以能定位固杆在相对螺套沿轴线下与上的滑动和移动的轴向和轴距的间距尺寸位置不会变动,相对以使两合页在相对转动时,螺杆还能相对螺套沿轴向的下与上的滑动和移动在第一叶片12转动的预定设置转动角度内。
该连接套50连接在第二轴套21内和第一轴套11内,该第一轴套11和第二轴套21下上并排设置,使得两合页能相对转动;该第三轴承300也能转动套接在连接套50外,该第三轴承300转动连接在第二轴套21的一端圆周向平面及转动连接套接在第一轴套11一端的圆周向平面之间,以使第一合页10在相 对第二合页20沿轴向转动更加顺畅。在连接套50内设第三凸缘53,通过第三凸缘53在连接套50内能抵靠在第一轴承100的环形凹槽530内,以使第三凸缘53在连接套50内能镶嵌第一轴承100的环形凹槽530,以使第一轴承100和第三凸缘53不能相对上与下的移动地连接固接在连接套内(通过在连接套内设第三凸缘53,以使第三凸缘53在连接套50内能镶嵌第一轴承100的环形凹槽530,以能轴向限制第一轴承100移位),该第一轴承100是辅助合页10叶片12经打开和关闭间的转动能更加顺畅。该固杆30具有的螺杆31的末端有一固接的凸环32,且该凸环32固接有连接杆33,该弹簧91套接在连接杆33,且弹簧91的一端能顶抵在凸环32,且该弹簧91的另一端能顶抵在辅助调节弹簧垫片80前端周向平面。
最好:在连接套50内设第一凸缘51,通过第一凸缘51在连接套50内能抵靠在螺环43的环形凹槽403内,以使第一凸缘51在连接套50内能镶嵌螺环环形凹槽403,以使螺环43、第一凸缘51和连接套50一起连接固接在连接套50内,相对以使该螺环43不能转动也不能滑动和移动地连接固接在连接套50内。该螺环43凹设有贯穿通孔,且该螺环43的贯穿通孔的内环周向的前缘凸设置有螺环的内环凸缘433,且该螺环的内环凸缘433能抵靠在凸环滑动轨道凹槽内,相对以使螺环的内环凸缘433能对应配合固杆30具有的凸环32的凸环滑动轨道凹槽332,以能定位和限制固杆在相对螺套沿轴向往下与往上的滑动和移动的轴向和轴距的间距尺寸不会变动。该螺环43位于螺套下且该螺杆31穿过螺环43再螺接螺套40,以使该螺环43能限制和控制该螺杆31在相对螺套40沿轴线下与上的滑动和移动的轴向和轴距的间距尺寸不会变动。该固杆30具有的螺杆31的末端固接有一凸环32,在该凸环32的外环周向侧面处凹设有凸 环滑动轨道凹槽332,且该凸环32的末端外环周向凹设有环形安装槽321,在该环形安装槽321内套接有密封胶圈322,且该密封胶圈322还伸出环形安装凹槽321外,以使该凸环32能密封滑接靠接在第二轴套21内,使该凸环32的环形安装凹槽321内的密封胶圈能限制第二轴套21内的螺杆31在相对螺套40沿轴线下与上的滑动和移动能产生阻尼力度和阻力力度的效果作用,相对以使凸环32的环形安装凹槽321内的密封胶圈能限制弹簧91的储能顶弹力度的强与弱的释放,以使凸环32的环形安装凹槽321内的密封胶圈能限制第一合页10的第一叶片12在自闭时能实现安全和缓冲的自闭。该两条以上之间的六条正向直斜度螺距的凸螺线啮齿牙39绕固杆30具有的螺杆31的外环上下螺啮齿向和螺杆31的外环上下螺距的全部间距尺寸行程,是相对要对应适配螺接螺套40的两条以上之间的六条正向直斜度螺距的凹螺线啮齿牙46绕螺套40的凹槽通孔的内环上下螺啮齿向和螺套内环上下螺距的全部间距尺寸行程。
实施例三
它与实施例二不同之处在于:请查阅图3至图3-1至图3-6,该第一合页10设一第一叶片12和第一轴套11;该第二合页20包括两间隔固接在合页固定座90的两间隔的第二叶片22,和第二轴套21。该第二轴套21凹设有凹槽平台101,且该第四轴承95套接连接在第二轴套21的内环且平放在第二轴套21的凹槽平台101上,且位于第一轴套11和第二轴套之间,该第四轴承95能起到辅助加强第一合页10的第一12叶片经打开与自闭时能更加顺畅。门磁开关555之带引线838的传感器835,门磁开关之不带引线的磁性体837。
该螺套40能转动且不能滑动和移动地连接在第二轴套21的内环内,该第一轴套11和传动杆42伸出第二轴套21外的部分固接;该螺套40上部凸设有传动杆42,且该传动杆42能转动地穿过第一轴承100、穿过凹槽平台101、穿 过第四轴承95再穿入第一轴套11,且该传动杆42适配位于第一轴套11,通过配设固接螺杆98使上第一轴套11和传动杆42固接一起,相对以能定位和限制和定位固杆30在相对螺套40沿轴线下与上的滑动和移动的轴向和轴距的间距尺寸位置,相对以使该调节座70能对应配合固杆30具有的螺杆31的两条以上之间的六条反向直斜度螺距的凸螺线啮齿牙39的直斜度螺距的数据大与小的设置,适配螺接螺套40的两条以上之间的六条反向直斜度螺距的凹螺线啮齿牙46的直斜度螺距的数据大与小的设置,相对以能预先设定和限制螺杆31在相对螺套40沿轴向下与上的滑动和移动的轴向和轴距的间距尺寸位置,同时该固杆具有的凸环的前沿圆柱面能沿轴向往下滑动压缩着弹簧的储能弹力度的另一端的储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,相对以能预先设定和限制弹簧91的储能顶弹力度的强与弱的释放,也相对能同步预先设定合页的叶片在左向转动自闭时的速度快与慢。利用调节座70经调节转动,以使调节座70能对应配合堵头和12伏直流电源电磁铁80和电磁铁的固接螺杆700和杯体58的杯底和固杆30具有的螺杆31,以能调整电磁铁80和电磁铁吸盘90所需要的间距尺寸位置,以使电磁铁80和电磁铁吸盘90能磁吸一起定位在杯体58内,同时调节座能同步对应配合调整第一合页10的第一叶片12所需要的预定角度位置,同时调节座也相对以能调节第一弹簧91的储能的顶弹力度的强与弱的释放,相对以使该调节座70能对应配合调整第一合页10的第一叶片12在自身自动左向转动关闭时的速度快与慢。
该车体12伏直流电源座199的12伏电路板的电源线接头198的12伏电源线,通过连接在直流电源变压器127的电路板一端输入是12伏正极直流电源的电压、升压转换接头105,以使直流电源变压器127能将直流电源变压器127的电路板一端输入是12伏负载正极直流电源的电压、升压转换接头105,进而 设置转换为电路板的另一端输出电压是已设置转换升压为24伏负载正极的电源线的电压、升压转换接头102,通过24伏直流电源定时控制器225的24伏负载正极直流电源线能和直流电源变压器127的电路板的另一端输出是已设置转换升压为24伏正极输出电源线的电压、升压转换接头102能连接一起,且该车体12伏直流电源座199的12伏电路板的电源线接头198的12伏电源线,通过连接在直流电源变压器127的电路板另一端输入是12伏负极直流电源的电压、升压转换接头105,以使直流电源变压器127能将直流电源变压器127的电路板一端输入是12伏负载负极直流电源的电压、升压转换接头105,进而设置转换为电路板的另一端输出电压是已设置转换升压为24伏负载负极的电源线的电压、升压转换接头102,通过24伏直流电源定时控制器225的24伏负载负极直流电源线能和直流电源变压器127的电路板的另一端输出是已设置转换升压为24伏负极输出电源线的电压、升压转换接头102能连接一起,以使24伏直流电源定时控制器225能对应配合直流电源变压器127;通过24伏直流电源定时控制器225的24伏直流电源线能和24伏直流电源电磁铁的24伏直流电源线能连接一起,以使24伏直流电源定时控制器225经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键24伏直流电源定时控制器225的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长与短,同时同步24伏直流电源定时控制器225相对也能同步对应配合预先设定第一合页10的第一叶片12每次能在一预定角度位置自定位的自定位时间长与短,以使24伏直流电源定时控制器225如可预先设定24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长短点为一秒预先设定起, 可预定设置至24小时之间的任一时间点,皆可预先设定成为24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长与短,同时24伏直流电源定时控制器225经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键24伏直流电源定时控制器225的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,也能同步预先设定第一合页10的第一叶片12每次能在一预定定位角度位置自定位,就能每次固定自定位时间长短点为一秒预先设定起,可预定设置至24小时之间的任一时间点,皆可预先设定成为第一合页10的第一叶片12每次在一预定角度位置自定位的时间长与短,以使24伏直流电源定时控制器225能每次预先设定24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起就能每次固定磁吸一起的时间长短点为一秒预先设定起,可预定设置至24小时之间的8秒时间点,以能成为24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起为8秒时间点,也为24伏直流电源定时控制器225预先设定好的8秒时间点,同时24伏直流电源定时控制器225也能同步对应配合预先设定第一合页10的第一叶片12能每次固定在一预定定位角度位置自定位,就能每次固定在一预定定位角度位置自定位8秒时间点,以使24伏直流电源定时控制器225经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键24伏直流电源定时控制器225预先设定合页叶片定位时间按键,以能预先设定24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起就能每次固定磁吸一起为8秒时间点,同时24伏直流电源定时控制器225也能同步对应预先设定第一合页10的第一叶片12能每次固定在一预定定位角度位置自定位就能自定位时间为8秒时间点;当第一合页10的第一叶片在到达24伏直流电源定时控制器225已预先设定好的24伏直 流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起为8秒消磁时间点时,相对也是24伏直流电源定时控制器225已预先设定好的第一合页10的第一叶片每次固定在一预定角度位置自定位,只能自定位8秒时间点到达时,与此同时第一弹簧是被固杆30具有凸环32呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端的储能弹力能强力的顶抵在凸环32的另一端的储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,以使第一合页10的第一叶片12能自身自动左向转动的关闭门页。该24伏直流电源定时控制器225可提前经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键24伏直流电源定时控制器的时间预先设定按键,以使24伏直流电源定时控制器225能提前解除24伏直流电源定时控制器225已预先设定好的24伏直流电源电磁铁80每次固定8秒消磁时间点的前7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等,皆可成为24伏直流电源电磁铁80的提前消磁时间点,同时24伏直流电源定时控制器225可提前经外力按键24伏直流电源定时控制器225经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使24伏直流电源定时控制器225能同步提前解除24伏直流电源定时控制器225已预先设定好的第一合页10的第一叶片12在一预定角度位置自定位,每次固定自定位为8秒时间的前7秒时间或前5秒时间或前3秒时间点等等,皆可提前成为第一合页10的第一叶片12的提前自身自动左向转动关闭时间点,以使第一合页10的第一叶片12能提前对应配合24伏直流电源电磁铁80提前在8秒之前的前7秒消磁时间点或前5秒消磁时间点或 前3秒消磁时间点等等,皆可提前成为24伏直流电源电磁铁80的提前消磁时间点后,与此同时第一弹簧91是被固杆30具有凸环32呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端的储能弹力能强力的顶抵在凸环32前沿圆柱面的另一端的储能弹力着能强力的顶抵杯体56的前端平面上的垫片86,以使第一合页10的第一叶片12能提前在8秒之前就能自身自动左向转动的关闭。该24伏直流电源定时控制器225的无线遥控器168可提前经外力按键无线遥控器168的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使无线遥控器168能提前无线遥控解除24伏直流电源定时控制器225已预先设定好的24伏直流电源电磁铁80每次固定8秒消磁时间点的前7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等,皆可成为24伏直流电源电磁铁80的提前消磁时间点,同时无线遥控器168可提前经外力按键无线遥控器168的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使无线遥控器168能同步提前无线遥控解除24伏直流电源定时控制器225已预先设定好的第一合页10的第一叶片12在一预定定位角度位置自定位,每次固定自定位8秒时间的前7秒时间或前5秒时间或前3秒时间点等等,皆可提前成为第一合页10第一叶片12的提前自身自动左向转动关闭时间点,以使第一合页10第一叶片12能提前对应配合24伏直流电源电磁铁80提前在8秒之前的前7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等消磁时间点后,以使第一合页10的第一叶片12能提前在8秒之前就能自身自动左向转动的关闭。该24伏直流电源定时控制器225能对应配合无线遥控器168,以使无线遥控器168经外力按键无线遥控器168的合页叶片能在一预 定定位角度位置自定位的自定位时间长与短的预先设定按键,以能无线遥控24伏直流电源定时控制器225,以使无线遥控器168能预先设定24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长与短,如可每次按键无线遥控器168的合页叶片能在一预定定位角度位置自定位的自定位时间长与短,可无线遥控的预先设定合页叶片能在一预定定位角度位置自定位的自定位时间能从一秒时间预先设定起,可无线遥控预定设置至24小时以上之间的任一时间点,皆可无线遥控预先设定成为24伏直流电源电磁铁80和电磁铁吸盘90磁吸一起的时间长短点,同时同步无线遥控器168也能同步经外力按键合页叶片能在一预定定位角度位置自定位的自定位时间长与短,以能无线遥控预先设定第一合页10第一叶片12每次在一预定角度位置自定位的自定位时间长与短,如可从无线遥控器168每次经外力按键时间预先设定按键,以使无线遥控器168能预先设定合页叶片能在一预定定位角度位置自定位的自定位时间能从一秒时间预先设定起,可无线遥控预定设置至24小时以上之间的任一时间点,皆可无线遥控预先设定成为第一合页10的第一叶片12的自定位时间长短点。
实施例四
该能预设自定位时间长短点使合页能自闭结构,如可适合设置于任何门合页及任何门窗的合页的轴套内,如可适合设置于蝶形合页、H型合页、子母形合页、旗形合页、任何奇特合页的轴套内等,相对以使合页能按装于任何门页及任何门窗的门页等等,能使合页能预设自定位时间长短点使合页能自闭结构功能。
它与实施例三不同之处在于:请查阅图4至图4-1至4-13,该第二合页20包括一第二轴套21和一第二叶片22,该第二轴套21设在第二叶片22下半部分;该第一合页10包括一第一轴套11和一第一叶片12,该第一轴套11设在第一叶片12上半部分;通过该固接螺钉98螺进穿过第一轴套11的螺钉通孔在锁入穿过转环41在锁进固接传动杆42,以使第一轴套11、转环41和传动杆 42固接一起。在连接套50内设第二凸缘52,通过第二凸缘52在连接套50内能抵靠在堵头60的环形凹槽520内,以使第二凸缘52在连接套50内能镶嵌堵头60的环形凹槽520,以使堵头60和第二凸缘52能固接在连接套50内,该堵头60伸出连接套外部分,通过固接螺杆98螺进穿过第二轴套21的螺杆通孔,在锁进固接堵头60以使第二轴套21和堵头60固接一起。
铰链还包括连接套50、固杆30、螺套40、第一弹簧91、24伏直流电源电磁铁80、电磁铁吸盘90、220伏交流电源定时控制器125、能变压为12伏直流电源的220伏交流电源变压器128、无线遥控器168、堵头60和调节座70。该连接套50连接在第二轴套21内和第一轴套11内,该第一轴套11和第二轴套21下上并排设置,使得两合页能相对转动;该第三轴承300也能转动套接在连接套50外,该第三轴承300转动连接在第二轴套21的一端圆周向平面及转动连接套接在第一轴套11一端的圆周向平面之间,以使第一合页10在相对第二合页20沿轴线转动时能更加顺畅。该第一弹簧91一端套接在连接杆311处,且该弹簧91一端套接有套帽92,以使第一弹簧91一端顶抵凸环32,另一端顶抵垫片86。该传动杆42能转动且不能移动地连接在连接套50内,该连接配设有一转环41,且该转环41和传动杆42伸出连接套50外的部分固接。
该螺杆31的末端固接有一凸环32,在该凸环32的外环周向侧面处凹设有凸环滑动轨道凹槽332,且该凸环32的末端外环周向凹设有环形安装槽321,在该环形安装槽321内套接有密封胶圈322,且该密封胶圈322还伸出环形安装凹槽321外,以使该凸环32能密封滑接靠接在连接套50内,使该凸环32的环形安装凹槽321内的密封胶圈能限制连接套50内的螺杆31在相对螺套40沿轴线下与上的滑动和移动能产生强力的阻尼力度和强力的阻力力度的效果作用, 相对以使凸环32的环形安装凹槽321内的密封胶圈能限制弹簧91的储能顶弹力度的强与弱的释放,以使凸环32的环形安装凹槽321内的密封胶圈能限制第一合页10的第一叶片12在自闭时能实现安全和缓冲的自闭。
该螺套40能转动且不能移动地连接在连接套50内,第一轴套11、转环41和传动杆42固接一起,以能定位和限制固杆在相对螺套沿轴线下与上的滑动和移动的轴向和轴距的间距尺寸位置。该转环41和第一轴套11还能限制和控制螺套40的轴向活动。在连接套50内设第二凸缘52,第二凸缘52在连接套50内能镶嵌堵头60的环形凹槽520,使堵头60和第二凸缘52能连接固接在连接套内,该堵头60伸出连接套50外部分,通过固接螺杆98固接第二轴套21、堵头60和固定调节座70。最好:在连接套50内设第一凸缘51,通过第一凸缘51在连接套50内能抵靠在螺环43的环形凹槽403内,以使第一凸缘51在连接套50内能镶嵌螺环环形凹槽403,以使螺环43和第一凸缘51和连接套50能一起连接固接在连接套50内,相对以使该螺环43不能转动也不能滑动和移动地连接固接在连接套50内,该螺环43凹设有贯穿通孔,且该螺环43的贯穿通孔的内环周向的前沿凸设置有螺环的内环凸缘433,该固杆30具有的凸环32,且该凸环的外环周向处凹设有凸环滑动轨道凹槽332,以使该螺环43的内环凸缘433能抵靠在凸环滑动轨道凹槽332内,相对以使该螺环的内环凸缘433能对应配合固杆30具有的凸环32的凸环滑动轨道凹槽332,以能定位和限制固杆在相对螺套沿轴向往下与往上的滑动和移动的轴向和轴距的间距尺寸不会变动。其中:在连接套50内设第三凸缘53,通过第三凸缘53在连接套50内能抵靠在第一轴承的环形凹槽530内,以使第三凸缘53在连接套50内能镶嵌第一轴承的环形凹槽530,以使第一轴承44和第三凸缘53不能相对下与上的移 动地连接固接在连接套内(通过在连接套内设第三凸缘53,以使第三凸缘在连接套50内能镶嵌第一轴承的环形凹槽530,,以能轴向限制第一轴承44移位);该第一弹簧91套接在连接杆311,一端顶抵凸环32,另一端顶抵垫片86。该杯体56沿内外环的轴向和轴距的间距尺寸位置设有杯体56侧面的电源线的贯穿通孔561,该连接套50沿内外环的轴向和轴距的间距尺寸位置设有连接套50侧面的电源线的贯穿通孔567,该第二轴套21沿内外环的轴向和轴距的间距尺寸位置也设有第二轴套21的电源线的侧面贯穿通孔568,且该杯体侧面的电源线的贯穿通孔561和连接套50侧面的电源线的贯穿通孔567和第二轴套的侧面的电源线贯穿通孔568,一起沿内外环的轴向和轴距的间距尺寸位置设置是对齐接通的,以使12伏直流电源电磁铁80的电源线能贯穿过去贯穿通孔561、贯穿通孔567、贯穿通孔568和220伏交流电源变压器128的电路板的另一端输出电压是已变压为12伏直流电源电压转换接头102能连接一起。
如该第一合页10的第一叶片12需要在预定设置定位角度中的90度定位角度位置自定位,该第一叶片12在经推动打开为右向转动方向打开至需要的90度预定角度位置时,相对以使该第一叶片12会带动传动杆42和螺套40能沿轴向往下滑动强力压缩着第一弹簧91的储能弹力度,相对以使螺杆31能相对螺套40和传动杆42沿轴线往下滑动和移动,与此同时第一弹簧91是被固杆30具有的环形凸环32呈由上至下的强力度的高压压缩第一弹簧91的储能弹力状态,与此同时该螺杆31和电磁铁吸盘90会对应配合第一叶片12往下滑动和移动至第一叶片12被打开至90度的一预定定位角度位置,相对是第一叶片12需要的预定定位角度中的90度定位角度位置,与此同时该第一叶片12是没有定位功能,与此同时该第一叶片12需要在预定角度之间的90度定位角度位置定 位时,一定要通过堵头60内的调节座70经调整转动调节座70,以使调节座70能对应配合堵头和12伏直流电源电磁铁80和电磁铁的固接螺杆700和杯体56的杯底,以能调整12伏直流电源电磁铁80和电磁铁吸盘90间所需要的间距尺寸位置,以使12伏直流电源电磁铁80和电磁铁吸盘90能磁吸一起定位在杯体58内,同时调节座70能同步对应配合调整第一叶片12所需要的90度预定定位角度位置,以使第一叶片12能在预定设置定位角度的30度至180度之间的90度定位角度位置自定位,但该第一叶片12也可以打开至第一叶片12的预定转动最大极限点的180度角度后,与此同时第一弹簧91是被固杆30具有凸环32呈由上至下的强力度的高压压缩着第一弹簧91的储能弹力状态,使第一弹簧91的储能状态产生变化和释放,与此同时该橡胶柱59是被凸环32配合第一磁铁套帽92呈由上至下的强力度高压压缩橡胶柱59的储能弹性力状态,以使该橡胶柱59的储能弹性力状态产生变化,以使橡胶柱59的储能弹性力产生释放,以使该橡胶柱59的一端的储能弹性力度能强力度的顶抵环形凸环32,且该橡胶柱59的另一端的储能弹性力度着能强力度的顶抵吸盘套帽92,以使第一弹簧91和橡胶柱59能促使第一叶片12能往回关,以使第一叶片12会右向转动自闭返回原本已通过堵头60内的调节座70已调整到位的90度预定角度位置自定位后;第一叶片12需要关闭,要通过12伏直流电源定时控制器125已预先设定的12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的消磁时间点,同时也是第一叶片12在定位角度位置定位的定位时间到达12伏直流电源定时控制器125已预先设定好的第一叶片自定位时间点时,与此同时第一弹簧是被固杆30具有凸环32呈由上至下的强力度的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端 的储能弹力能强力的顶抵在凸环32前沿圆柱面的另一端的储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,以使第一弹簧91能使第一叶片12呈左向转动往回关,以使第一叶片能实现自身自动呈左向转动关闭。该弹性体橡胶柱59也可以由有色金属弹性体或弹簧取而代之。
该能变压为12伏直流电源的220伏交流电源变压器128的一端输入是220伏交流电源线插头158,且该能变压为12伏直流电源的220伏交流电源变压器128的交流电源线插头158的红线是电火线是要连接变压器的220伏交流电源的输入转换接头一198,且该能变压为12伏直流电源的220伏交流电源线插头158的蓝线是电零线也是要连接变压器的220伏交流电源的输入转换接头二298,且该能变压为12伏直流电源的220伏交流电源线插头158是要插在220伏交流电源插座上109,且该能变压为12伏直流电源的220伏交流电源变压器128的另一端输出电压是已变压为12伏直流电源的正极接头102,且该能变压为12伏直流电源的220伏交流电源变压器128的另一端输出电压是已变压为12伏直流电源的负极接头102,且该12伏直流电源定时控制器125的正极直流电源线接头198是要和能变压为12伏直流电源的220伏交流电源变压器的另一端输出电压是已变压为12伏直流电源的正极接头102连接一起,且该12伏直流电源定时控制器125的负极直流电源线接头198是要和能变压为12伏直流电源的220伏交流电源变压器128的另一端输出电压是已变压为12伏直流电源的负极接头102连接一起,且该12伏直流电源电磁铁80的正极线是要和12伏直流电源定时控制器125的另一端输出电压是已变压为12伏直流电源的正极接头298连接一起,且该12伏直流电源电磁铁80的负极线是要和门磁开关555之带引线的传感器535其中一条引线要连接一起,且该门磁开关555之带引线的传感 器535的另一条引线是要和12伏直流电源定时控制器125的另一端输出电压是已变压为12伏直流电源的负极接头298连接一起,以使十二伏直流电源电磁铁80和电磁铁吸盘90能对应配合12伏直流电源定时控制器125和12伏门磁开关555之带引线的传感器535和磁性体537,以使12伏直流电源定时控制器125经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长与短,同时也能同步对应配合预先设定第一叶片12每次在一预定定位角度位置自定位的自定位时间长与短,以使12伏直流电源定时控制器125如可预先设定12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长短点为一秒预先设定起,可预定设置至24小时之间的任一时间点,皆可预先设定成为12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长短点,同时12伏直流电源定时控制器125也能同步预先设定第一叶片12能每次在一预定定位角度位置自定位,就能每次固定自定位时间长短点为一秒预先设定起,可预定设置至24小时之间的任一时间点,皆可预先设定成为第一叶片12每次能固定在一预定定位角度位置每次能固定自定位的时间长短点,以使12伏直流电源定时控制器125能每次预先设定12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起就能每次固定磁吸一起的时间长短点为一秒预先设定起,可预定设置至24小时之间的8秒时间点,成为12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起为预先设定的8秒时间点,以使12伏直流电源定时控制器125经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键12伏直流电源定时控制器125 的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起就能每次固定磁吸一起为8秒时间点,同时12伏直流电源定时控制器125也能同步预先设定第一叶片12能每次固定在一预定定位角度位置自定位,就能自定位时间为8秒时间点;当第一叶片12在到达12伏直流电源定时控制器125已预先设定好的12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起,就能每次固定为8秒消磁时间点时,相对也是12伏直流电源定时控制器125已预先设定好的第一叶片12每次能固定在一预定定位角度位置自定位就能自定位8秒时间点到达时,与此同时第一弹簧91是被固杆30具有凸环32呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一叶片12能自身自动左向转动的关闭门页。
该12伏直流电源定时控制器125可提前经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使12伏直流电源定时控制器125能提前解除12伏直流电源定时控制器125已预先设定好的12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起,就能每次固定8秒消磁时间点的前7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等,皆可成为12伏直流电源电磁铁80的提前消磁时间点,同时12伏直流电源定时控制器125可提前经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使12伏直流电源定时控制器125能同步提前解除12伏直流电源定时控制器125已预先设定好的第一叶片12在一预定定位角度位置自定位,就能每次固定自定位为 8秒时间点的前7秒时间或前5秒时间或前3秒时间点等等,皆可提前成为第一叶片12的提前自身自动关闭门页的时间点,以使第一叶片12能提前对应配合12伏直流电源电磁铁80提前在8秒之前的前7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等,皆可成为12伏直流电源电磁铁80的提前消磁时间点后,与此同时第一弹簧91是被固杆30具有凸环32前沿圆柱面呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端的储能弹力能强力的顶抵在凸环32的另一端的储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,以使第一叶片12能提前在8秒之前就能自身自动左向转动关闭。该12伏直流电源定时控制器125的无线遥控器168可提前经外力按键无线遥控器168的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使无线遥控器168能提前无线遥控解除12伏直流电源定时控制器125已预先设定好的12伏直流电源电磁铁80和电磁铁吸盘90磁吸一起,就能每次固定8秒消磁时间点的前7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等,皆可成为12伏直流电源电磁铁80的提前消磁时间点后,同时无线遥控器168可提前经外力按键无线遥控器168的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使无线遥控器168能同步提前无线遥控解除12伏直流电源定时控制器125已预先设定好的第一叶片12在一预定角度位置自定位,每次就能固定自定位8秒时间的前7秒时间或前5秒时间或前3秒时间点等等,皆可提前成为第一叶片12的提前自身自动关闭时间点,以使第一叶片12能提前对应配合12伏直流电源电磁铁80提前在8秒之前的前7秒消磁时间点或前5秒消磁时间点或前3秒消磁时间点等等,皆可成为12伏直流电 源电磁铁80和电磁铁吸盘90磁吸一起,就能提前在8秒消磁时间点后,与此同时第一弹簧91是被固杆30具有凸环32前沿圆柱面呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一合页10的第一叶片12能提前在8秒之前就能自身自动左向转动关闭。
该12伏直流电源门磁开关555的第一部分不带引线538的磁性体537也可按装在门锁或门页上且按装位置是要对齐吻合门框上的门磁开关555的引线538传感器535,且12伏直流电源门磁开关的第二部分带引线538的门磁开关555的传感器535是按装在门框上且按装位置是要对齐吻合门锁及门页上的门磁开关555的不带引线538的磁性体537,且该门磁开关555带引线538的传感器535的其中一条引线要连接220伏交流电源变压器128的电路板的另一端输出电压是已变压为12伏直流电源电压转换接头102能连接一起,另一条门磁开关555的传感器535引线538要连接12伏直流电源电磁铁80,也可以另一种按装方式该门磁开关555的第一部分带引线538的传感器535也可按装在门锁或门页上,第二部分不带引线538的磁性体537也可按装在门框上且按装位置是要对齐吻合门框上带引线538传感器535;当门锁和门页的电子智能锁经电子密码智能感应和门锁经刷卡感应经按指纹感应经传统钥匙等打开门锁和门页的电子智能锁后,门页经打开至第一叶片12和门页已预定调整设置好的定位角度位置自定位,同时同步门页会带动门锁及门页上的门磁开关555不带引线的磁性体537与门框上带引线的传感器535移位分离,一旦门锁及门页上的门磁开关555的不带引线的磁性体537与门框上的门磁开关555带引线的传感器535移位分离超过10毫米,也就是门页被打开一丁点缝隙,此时12伏直流电源定时控制器125和12伏直流电源电磁铁80才能开始启动通电状态,此时该12伏 直流电源定时控制器125才能开始启动合页已预先设定好的12伏直流电源电磁铁80和电磁铁吸盘90每次磁吸一起的时间长与短,同时同步也是第一叶片12和门页每次能在所需要的一预定定位角度位置自定位的自定位时间长与短;当第一叶片12在到达12伏直流电源定时控制器125已预先设定好的12伏直流电源电磁铁80和电磁铁吸盘90磁吸一起每次消磁时间点时,同时也是12伏直流电源定时控制器125已预先设定好的第一叶片每次固定在一预定定位角度位置自定位的自定位时间点的到达时,与此同时第一弹簧是被固杆30具有凸环32呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一叶片12能自身自动转动关闭门页。且每次门页打开至一预定定位角度位置自定位的时间长与短都会循环重复上次电源定时控制器已设定好的合页叶片和门页每次能在所需要的一预定定位角度位置自定位的自定位时间长与短。在此门锁及门页上的门磁开关555不带引线的磁性体与门框上的门磁开关555带引线的传感器移位分离超过10毫会促使12伏直流电源电磁铁80和12伏直流电源定时控制器325启动通电状态。在此门锁及门页上的门磁开关555不带引线的磁性体与门框上的门磁开关555带引线的传感器对齐吻合会促使12伏直流电源电磁铁80和12伏直流电源定时控制器325启动断电模式。
该12伏直流电源定时控制器125能对应配合无线遥控器168,以使无线遥控器168经人力按键无线遥控器168的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使无线遥控器168能无线遥控12伏直流电源定时控制器125的合页叶片能在一预定定位角度位置自定位的自定位时间长与短,以使无线遥控器168能预先设定12伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长与短,如可按键无线遥控器168的合页叶 片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,可无线遥控的预先设定合页叶片能在一预定定位角度位置自定位的自定位时间能从一秒时间预先设定起,可无线遥控预定设置至24小时以上之间的任一时间点,皆可无线遥控预先设定成为12伏直流电源电磁铁80和电磁铁吸盘90磁吸一起的时间长短点,同时无线遥控器168也能同步经人力按键无线遥控器168的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能无线遥控预先设定第一合页的第一叶片12每次在一预定角度位置自定位的自定位时间长与短,如可从无线遥控器168每次经外力按键合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以使无线遥控器168能无线遥控预先设定合页叶片能在一预定定位角度位置自定位的自定位时间能从一秒时间预先设定起,可无线遥控预定设置至24小时以上之间的任一时间点,皆可无线遥控预先设定成为第一叶片的自定位时间长短点。
该固杆30具有的螺杆31的两条以上之中的六条反向直斜度螺距的凸螺线啮齿牙39的直斜度螺距的数据大小设置,适配螺接螺套40的两条以上之间的六条反向直斜度螺距的凹螺线啮齿牙46的直斜度螺距的数据大小设置,以能预先设定螺杆在相对螺套沿轴向下与上的滑动和移动的轴向和轴距的间距尺寸位置,同时该固杆具有的凸环的前沿圆柱面能沿轴向往下滑动压缩着弹簧的储能弹力度的另一端的储能弹力着能强力的顶抵在杯体56的前端平面上的垫片86,以能限制弹簧91的储能弹力的释放,相对以能预先设定和限制合页的叶片在自身自动左向转动关闭时的速度快与慢。第一叶片12经推动打开为右向转动方向,以使该第一叶片12能带动传动杆42和螺套40转动,相对以使螺杆31能相对螺套40能沿轴向往下滑动压缩着第一弹簧91的储能弹力度,与此同时该螺杆31的六条反向凸螺线啮齿牙39,能适配螺接螺套40的六条反向凹螺线啮齿牙46,以使螺杆31的六条反向凸螺线啮齿牙39,能相对螺套40的六条反向凹螺 线啮齿牙46沿轴向往下滑动和移动,相对以使螺杆31能相对螺套40沿轴向下与上的活动在合页转动的预定角度内,该固杆30所承受12伏直流电源电磁铁80和电磁铁吸盘90磁吸一起的电磁力、第一弹簧91的储能弹力所转变的顶抵力相平衡,使第一叶片12能自定位在转动的的预定设置的定位角度里,方便使用;同时利用调节座经调整转动以能配合12伏直流电源电磁铁和堵头和电磁铁的固接螺杆和杯体的杯底,以能调整12伏直流电源电磁铁和电磁铁吸盘间所需要的间距尺寸位置,以使12伏直流电源电磁铁和电磁铁吸盘能磁吸一起定位在杯体的内环,同时调节座也能同步对应配合调整合页能在所需要的一预定角度位置自定位,与此同时12伏直流电源定时控制器125经人力按键12伏直流电源定时控制器125的时间预先设定按键,以能预先设定12伏直流电源电磁铁和电磁铁吸盘磁吸一起的时间长与短,同时12伏直流电源定时控制器125也能同步对应预先设定合页在一预定角度位置自定位的自定位时间长与短,使合页能在所需要的一预定角度位置自定位;在第一叶片在到达12伏直流电源定时控制器125已预定设置好的第一叶片12的自定位时间点时,使第一叶片12能对应配合12伏直流电源电磁铁80和电磁铁吸盘90磁吸一起的消磁时间点,以使12伏直流电源电磁铁80能对应配合12伏直流电源定时控制器125已预定设置好的12伏直流电源电磁铁80的消磁时间点,与此同时第一弹簧91是被固杆30具有凸环32的前沿圆柱面呈由上至下的强力度的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,相对以使第一合页的第一叶片能自身自动左向转动的关闭。
实施例五
该能预设自定位时间长短点使合页能自闭结构,如可适合设置于任何形状的高密封式平门、凸门铰链的轴套内,相对以使高密封式平门、凸门铰链能按装于任何冰柜、冰箱、冷库、烤箱、烘箱实验设备门、实验箱门、模拟环境实验设备 门、机械设备门、干燥设备门、隔音门、特种门、保鲜库门、茶叶库门、土建库门及任何船舶门的门页等等,以使高密封式平门、凸门铰链能行使能预设自定位时间长短点使合页能自闭结构功能。
它与实施例四不同之处在于:请查阅图5至图5-1至5-3,铰链包括第一合页10、固座20、固杆30、螺套40、螺环43、连接套50、24伏直流电源电磁铁80、电磁铁吸盘90、24伏直流电源定时控制器225、能变压为24伏直流电源的220伏交流电源变压器128、无线遥控器168、堵头60和调节座70。该第一合页10包括第一轴套11和第一叶片12,该固座20包括一固定板25、一垂直底板22和一固接在底板22之上的凸座23,该凸座23之垂直底板22的端面凹设有一第二轴套21。该垂直底板22能构成为第二合页20,且该第二合页20能构成为第二叶片22,且该固座20能构成为第二合页20。该连接套50连接在第一轴套11和第二轴套21内;该第三轴承300转动连接在第一轴套11和凸座23的第二轴套21之间,该第三轴承300也能转动套接连接在连接套50外,以使合页10相对固座20的轴线转动能更加顺畅,该第一轴套11和凸座23的第二轴套21并排设置,使得第一合页10具有的第一叶片12能相对凸座23的第二轴套21转动,使得铰链能构成高密封式凸门、平门铰链结构。
该螺套40能转动且不能移动地连接在轴套11内的连接套50内,该合页10具有的轴套11内的转环41和螺套40具有的传动杆42伸出连接套50外的部分固接,该固接配设有一转环41,该螺套40上部凸设有传动杆42,且该传动杆42能转动地穿过第一轴承100的内环通孔再穿入转环41的内环通孔,且该传动杆42的外环侧面切平边适配转环41的内环通孔的内环切平边,且该转环41适配位于第一轴套11内的上部,通过配设固接螺钉98螺进穿过轴套11的螺钉通孔在锁进穿过转环41再锁入固接传动杆42,以使轴套11和转环41 和传动杆42固接一起,以使该转环41和第一轴套11还能限制螺套40的轴向活动,以能定位固杆在相对螺套沿轴线下与上的滑动和移动的轴向和轴距的间距尺寸位置不会变动,相对以使两合页在相对转动时,螺杆还能相对螺套沿轴向的下与上的滑动和移动在第一合页10的第一叶片12转动的预定设置转动角度内。
该能变压为24伏直流电源的220伏交流电源变压器128的一端输入是220伏交流电源线插头158,且该能变压为24伏直流电源的220伏交流电源变压器128的交流电源线插头158的红线是电火线是要连接变压器的220伏交流电源的输入转换接头一198,且该能变压为24伏直流电源的220伏交流电源线插头158的蓝线是电零线也是要连接变压器的220伏交流电源的输入转换接头二298,且该能变压为24伏直流电源的220伏交流电源线插头158是要插在220伏交流电源插座上109,且该能变压为24伏直流电源的220伏交流电源变压器128的另一端输出电压是已变压为24伏直流电源的正极接头102,且该能变压为24伏直流电源的220伏交流电源变压器128的另一端输出电压是已变压为24伏直流电源的负极接头102,且该24伏直流电源定时控制器225的正极直流电源线接头198是要和能变压为24伏直流电源的220伏交流电源变压器的另一端输出电压是已变压为24伏直流电源的正极接头102连接一起,且该24伏直流电源定时控制器225的负极直流电源线接头198是要和能变压为24伏直流电源的220伏交流电源变压器128的另一端输出电压是已变压为24伏直流电源的负极接头102连接一起,且该24伏直流电源电磁铁80的正极线是要和24伏直流电源定时控制器225的另一端输出电压是已变压为24伏直流电源的正极接头298连接一起,且该24伏直流电源电磁铁80的负极线是要和门磁开关555之带引线的传感器535其中一条引线要连接一起,且该门磁开关555之带引线的传感器535的另一条引线是要和24伏直流电源定时控制器225的另一端输出电压是 已变压为24伏直流电源的负极接头298连接一起,以使十二伏直流电源电磁铁80和电磁铁吸盘90能对应配合24伏直流电源定时控制器225和24伏门磁开关555之带引线的传感器535和磁性体537,以使24伏直流电源定时控制器225经手机远程控制经语音控制经无线遥控器168遥控经电子智能控制等或经人力按键24伏直流电源定时控制器225的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长与短,相对也能同步对应配合预先设定第一合页10的第一叶片12每次在一预定定位角度位置自定位的自定位时间长与短,以使24伏直流电源定时控制器225如可预先设定24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长短点为一秒预先设定起,可预定设置至24小时之间的任一时间点,皆可预先设定成为24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起的时间长短点,同时24伏直流电源定时控制器225也能同步预先设定第一合页10的第一叶片12能每次在一预定定位角度位置自定位,就能每次固定自定位时间长短点为一秒预先设定起,可预定设置至24小时之间的任一时间点,皆可预先设定成为第一合页10的第一叶片12每次能固定在一预定定位角度位置每次能固定自定位的时间长短点,以使24伏直流电源定时控制器225能每次预先设定24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起就能每次固定磁吸一起的时间长短点为一秒预先设定起,可预定设置至24小时之间的8秒时间点,成为24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起为预先设定的8秒时间点,以使24伏直流电源定时控制器225经手机远程控制经语音控制经无线遥控器168遥控经电子智能控制等或经人力按键24伏直流电源定时控制器225的合页叶片能在一预定 定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起就能每次固定磁吸一起为8秒时间点,同时该24伏直流电源定时控制器225也能同步预先设定第一合页10的第一叶片12能每次固定在一预定定位角度位置自定位,就能自定位时间为8秒时间点;当第一合页的第一叶片12在到达24伏直流电源定时控制器225已预先设定好的24伏直流电源电磁铁80和电磁铁吸盘90每次固定磁吸一起,就能每次固定为8秒消磁时间点时,相对也是24伏直流电源定时控制器225已预先设定好的第一合页10的第一叶片12每次能固定在一预定定位角度位置自定位就能自定位8秒时间点到达时,与此同时第一弹簧91是被固杆30具有凸环32呈由上至下的强力的高压压缩着第一弹簧91的储能弹力状态,以使第一弹簧91的储能状态产生变化和释放,以使第一弹簧91的一端的储能弹力能强力的顶抵在凸环32前沿圆柱面的另一端的储能弹力着能强力的顶抵杯体56的前端平面上的垫片86,以使第一合页10的第一叶片12能自身自动右向转动的关闭门页。
以上所述,仅为本发明较佳实施例而已,故不能依此限定本发明实施的范围,即依本发明专利范围及说明书内容所作的等效变化与修饰,皆应仍属本发明涵盖的范围内。
工业实用性
本发明能预设自定位时间长短点使合页能自闭结构,当合页在到达定时控制器已预先设定好的页片自定位时间点时,使合页能同步对应配合直流电源电磁铁的消磁时间,与此同时第一弹簧的储能产生释放。本发明适用范围广,具有良好的工业实用。

Claims (10)

  1. 能预设自定位时间长短点使合页能自闭结构,其特征在于:包括两合页、螺套、固杆、第一弹簧、电磁铁吸盘、电源电磁铁、电源定时控制器、堵头和调节座,该两合页能相对转动,该每一合页都包括轴套和固接在轴套外的叶片,该固杆具有螺杆,该螺套具有传动杆,该传动杆固接在合页的轴套内,该堵头固接在合页的轴套内,该螺套和堵头间隔;该两合页的轴套内之螺套和堵头间设有固杆、第一弹簧、电磁铁吸盘、电源电磁铁、轴承和调节座,且该固杆的螺杆适配螺接螺套;该调节座经调整转动,以能调整电磁铁和电磁铁吸盘间所需要的间距尺寸位置,以使电源电磁铁和电磁铁吸盘能磁吸定位在杯体的内环,同时调节座也能同步对应配合调整合页能在所需要的一预定定位角度位置自定位;该电源定时控制器的一端连接电源座的电源线接头,另一端连接电源电磁铁的电源线接头,以使电源定时控制器经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键电源定时控制器的合页叶片能在一预定定位角度位置自定位的自定位时间长与短的预先设定按键,以能预先设定电源电磁铁和电磁铁吸盘每次磁吸一起的时间长与短,同时电源定时控制器也是同步对应配合预先设定合页叶片每次在一预定定位角度位置自定位的自定位时间长与短,以使合页在一预定定位角度位置自定位后;当合页在到达电源定时控制器已预先设定好的电源电磁铁和电磁铁吸盘磁吸一起的消磁时间点时,使合页能同步对应配合电源电磁铁的消磁时间点,与此同时第一弹簧的储能产生变化和释放,以使第一弹簧的一端储能弹力能顶抵在凸环,另一端顶抵在杯体的前端平面上的垫片,以使合页能实现自身自转动的关闭门页。
  2. 根据权利要求1所述的能预设自定位时间长短点使合页能自闭结构,其特征在于:该电源电磁铁能调节地设在杯体内,该电磁铁吸盘能和固杆一起下与上的移动地设在杯体内,该电源电磁铁能相对堵头移动,且该电源电磁铁能和电磁铁吸盘磁吸一起定位在杯体的内环。
  3. 根据权利要求1所述的能预设自定位时间长短点使合页能自闭结构,其特征在于:该第二合页包括一第二轴套和一固接在第二轴套外的第二叶片,且该第 二合页的第二轴套的第二叶片和合页固定固接一起;该第一合页包括一第一轴套和一固接在第一轴套外的第一叶片,该第一轴套设在第一叶片上半部分。
  4. 根据权利要求1所述的能预定设置自定位时间的长短点使合页能自身自动关闭结构,其特征在于:该固杆具有的螺杆的两条以上反向直斜度螺距的凸螺线啮齿牙的直斜度螺距的数据大与小的设置,适配螺接螺套的两条以上反向直斜度螺距的凹螺线啮齿牙的直斜度螺距的数据大与小的设置,以能预先设定螺杆在相对螺套沿轴向下与上的滑动和移动的轴向和轴距的间距尺寸位置。
  5. 根据权利要求2所述的能预设自定位时间长短点使合页能自闭结构,其特征在于:还包括直流电源变压器,该车体一端十二伏正极直流电源座的十二伏正极直流电源线接头,通过连接车体直流电源变压器的电路板一端输入电压是十二伏负载正极直流电源线转换接头,以使直流电源变压器能将直流电源变压器的电路板一端输入电压是十二伏正极直流电源线转换接头,设置转换为电路板的另一端输出电压是已转换为二十四伏负载正极直流电源电路板的二十四伏正极直流电源线接头,以使二十四伏直流电源电磁铁的二十四伏正极直流电源线能和直流电源变压器的电路板一端输出电压是已变压为二十四伏正极直流电源线接头连接一起,且该车体另一端十二伏负极直流电源座的十二伏负极直流电源线接头,通过连接车体直流电源变压器的电路板一端输入电压是十二伏负载负极直流电源线转换接头,以使直流电源变压器能将直流电源变压器的电路板一端输入电压是十二伏负极直流电源线转换接头,设置转换为电路板的另一端输出电压是已转换为二十四伏负载负极直流电源电路板的二十四伏负极直流电源线接头,以使二十四伏直流电源电磁铁的二十四伏负极直流电源线能和直流电源变压器的电路板一端输出电压是已变压为二十四伏负极直流电源线接头连接一起。
  6. 能预设自定位时间长短点使合页能自闭结构,其特征在于:包括两合页、连接套、螺套、固杆、第一弹簧、电磁铁吸盘、十二伏直流电源电磁铁、能变压为十二伏直流电源的二百二十伏交流电源变压器、十二伏直流电源定时控制器、无线遥控器、堵头和调节座,该两合页能相对转动,该每一合页都包括轴套和固接在轴套外的叶片,该固杆具有螺杆;该连接套套接在两合页的轴套内,该螺套能转动且不能移动地设在连接套的一端内,该堵头不能转动也不能移动地设在连接套的另一端内,该螺套和堵头间隔,该连接套内之螺套和堵头间设有固杆、第 一弹簧、电磁铁吸盘、十二伏直流电源电磁铁、轴承和调节座,且该固杆具有螺杆的两条以上之间的六条反向直斜度螺距凸螺线啮齿牙,对应适配螺接螺套的两条以上之间的六条反向直斜度螺距凹螺线啮齿牙;该调节座经调整转动以能配合堵头和电磁铁的固接螺杆和杯体的杯底和十二伏直流电源电磁铁,以能调整十二伏直流电源电磁铁和电磁铁吸盘间所需要的间距尺寸位置,以使十二伏直流电源电磁铁和电磁铁吸盘能磁吸一起定位在杯体的内环,同时调节座也能同步对应配合调整合页叶片能在所需要的一预定定位角度位置自定位;该能变压为十二伏直流电源的二百二十伏交流电源变压器的一端输入是二百二十伏交流电源变压器的交流电源线插头,且该能变压为十二伏直流电源的二百二十伏交流电源线插头的红线是电火线是要连接变压器的二百二十伏交流电源的输入转换接头一,且该能变压为十二伏直流电源的二百二十伏交流电源线插头的蓝线是电零线也是要连接变压器的二百二十伏交流电源的输入转换接头二,且该能变压为十二伏直流电源的二百二十伏交流电源线插头是要插在二百二十伏交流电源插座上,且该能变压为十二伏直流电源的二百二十伏交流电源变压器的另一端输出电压是已变压为十二伏直流电源的正极接头,且该二百二十伏交流电源变压器的另一端输出电压是已变压为十二伏直流电源的负极接头,且该十二伏直流电源定时控制器的正极直流电源线接头是要和能变压为十二伏直流电源的二百二十伏交流电源变压器的另一端输出电压是已变压为十二伏直流电源的正极接头连接一起,且该十二伏直流电源定时控制器的负极直流电源线接头是要和二百二十伏交流电源变压器的另一端输出电压是已变压为十二伏直流电源的负极接头连接一起,且该十二伏直流电源电磁铁的正极线是要和十二伏直流电源定时控制器的另一端输出电压是已变压为十二伏直流电源的正极接头连接一起,且该十二伏直流电源电磁铁的负极线是要和门磁开关之带引线的传感器其中一条引线要连接一起,且该门磁开关之带引线的传感器的另一条引线是要和十二伏直流电源定时控制器的另一端输出电压是已变压为十二伏直流电源的负极接头连接一起,以使十二伏直流电源电磁铁和电磁铁吸盘能对应配合十二伏直流电源定时控制器和十二伏门磁开关之带引线的传感器和磁性体,以使十二伏直流电源定时控制器经手机远程控制经语音控制经无线遥控器遥控经电子智能控制等或经人力按键十二伏直流电源定时控制器的合页定位时间的预先设定按键,以能预先设定十二伏直流电源电磁铁和电磁铁吸盘每次磁吸一起的时间长与短,相对也是合页叶片每次能在所需 要的一预定定位角度位置自定位的自定位时间长与短;当合页叶片在到达十二伏直流电源定时控制器已预先设定好的合页叶片的自定位时间点时,相对是十二伏直流电源定时控制器已预先设定好的十二伏直流电源电磁铁和电磁铁吸盘磁吸一起的消磁时间点,以使合页叶片能对应配合十二伏直流电源电磁铁和电磁铁吸盘磁吸一起的消磁时间点,与此同时第一弹簧的储能状态能产生变化和释放,以使第一弹簧的一端储能弹力能顶抵在凸环的另一端储能弹力着能强力的顶抵在杯体的前端平面上的垫片,使合页叶片能自身自动转动关闭门页。
  7. 根据权利要求6所述的能预设自定位时间长短点使合页能自闭结构,其特征在于:该两条以上直斜度螺距的凸螺线啮齿牙绕固杆具有的螺杆的外环上下螺啮齿向和螺杆的外环上下螺距的全部间距尺寸行程,是相对要对应适配螺接螺套的两条以上直斜度螺距的凹螺线啮齿牙绕螺套的凹槽通孔的内环上下螺啮齿向,和螺套内环上下螺距的全部间距尺寸行程。
  8. 根据权利要求6所述的能预设自定位时间长短点使合页能自闭结构,其特征在于:还包括一杯体,该电磁铁能调节地设在杯体内,该电磁铁吸盘能和固杆具有的连接杆一起往下和往上的移动地设在杯体内。
  9. 根据权利要求6所述的能预设自定位时间长短点使合页能自闭结构,其特征在于:该门磁开关的第一部分不带引线的磁性体也可按装在门锁或门页上且按装位置是要对齐吻合门框上的引线传感器,且该门磁开关第二部分带引线的传感器是按装在门框上且按装位置是要对齐吻合门锁及门页上的磁性体,且该门磁开关带引线的传感器其中一条负极引线是要和十二伏直流电源定时控制器的负极直流电源线接头连接一起,且该门磁开关带引线的传感器另一条正极引线是要和直流电源电磁铁的正极线连接一起,也可另一种按装方式该门磁开关的第一部分带引线的传感器也可按装在门锁或门页上,门磁开关的第二部分不带引线磁性体也可按装在门框上且按装位置是要对齐吻合门锁或门页上带引线传感器;当门锁和门页的电子智能锁经电子密码智能感应和门锁经刷卡感应经按指纹感应经传统钥匙等打开门锁和门页的电子智能锁后,门页经打开至合页叶片和门页已预定调整设置好的定位角度位置自定位,同时同步门页会带动门锁及门页上的门磁开关不带引线的磁性体与门框上带引线的传感器移位分离,一旦门锁及门页上不带 引线的磁性体与门框上带引线的传感器移位分离超过十毫米,也就是门页被打开一丁点缝隙,此时该直流电源定时控制器才能开始启动合页已预先设定好的直流电磁铁和电磁铁吸盘每次磁吸一起的时间长与短,同时同步十二伏直流电磁铁才能开始启动十二伏直流电源定时控制器已预先设定好的直流电磁铁和电磁铁吸盘每次磁吸一起的时间长与短,同时同步也是合页叶片和门页每次能在所需要的一预定定位角度位置自定位的自定位时间长与短。
  10. 根据权利要求7所述的能预设自定位时间长短点使合页能自闭结构,其特征在于:该调节座能相对活动和可调节地设在堵头内,该调节座螺接穿入堵头且顶抵在杯体的杯底,且该电磁铁的固接螺杆的光杆段穿过调节座的内环通孔,再继续穿过杯体的杯底的螺杆贯穿通孔,且电磁铁的固接螺杆的螺纹段螺接锁入在二十四伏直流电源电磁铁的螺啮齿牙孔内,使该电磁铁的固接螺杆的螺杆头支撑在调节座的内环通孔台阶处,以使调节座和电磁铁的固接螺杆和二十四伏直流电源电磁铁能连接一起,以使调节座经调整转动以能调整二十四伏直流电源电磁铁和电磁铁吸盘所需要的间距尺寸位置。
PCT/CN2017/105523 2016-10-10 2017-10-10 能预设自定位时间长短点使合页能自闭结构 WO2018068698A1 (zh)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US17/263,377 US20210340802A1 (en) 2016-10-10 2017-10-10 Structure capable of pre-setting long and short self-positioning time points to enable hinge leaves to close by themselves

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201610883060.1A CN107916862B (zh) 2016-10-10 2016-10-10 能预设自定位时间长短点使合页能自闭结构
CN201610883060.1 2016-10-10

Publications (1)

Publication Number Publication Date
WO2018068698A1 true WO2018068698A1 (zh) 2018-04-19

Family

ID=61892455

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/105523 WO2018068698A1 (zh) 2016-10-10 2017-10-10 能预设自定位时间长短点使合页能自闭结构

Country Status (3)

Country Link
US (1) US20210340802A1 (zh)
CN (1) CN107916862B (zh)
WO (1) WO2018068698A1 (zh)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110714672A (zh) * 2018-07-23 2020-01-21 赵芬 能调节铰链叶片全程定位力度的结构

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020237580A1 (zh) * 2019-05-30 2020-12-03 哈尔滨工业大学(深圳) 旋转关节电磁锁紧装置及旋转关节
US11719035B2 (en) * 2020-09-09 2023-08-08 Joseph M. Schulz Non-contact, automatic door hinge operator system
CN112647798B (zh) * 2020-12-30 2022-03-22 浙江鼎立实业有限公司 一种新型电动驻停门合页的控制电路
US20230056621A1 (en) * 2021-08-18 2023-02-23 United States Bullet Proofing, Inc. Hinge assembly for a security door
CN113669358B (zh) * 2021-08-30 2022-08-30 腾壶科技(东莞)有限公司 一种活动铰接结构及其展开和折叠方法

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7310911B1 (en) * 2000-09-13 2007-12-25 Power Access Corporation Automatic door opener with magnetic clutch
CN101117872A (zh) * 2006-03-13 2008-02-06 Dt工程株式会社 带关门器的门用延迟装置、带延迟装置的关门器以及带具备延迟装置的关门器的门
CN205243255U (zh) * 2015-08-31 2016-05-18 赵芬 一种高密封式门升降定位和自闭铰链
CN206530194U (zh) * 2016-10-10 2017-09-29 赵芬 一种能预设自定位时间长短点使合页能自闭结构

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19506220C2 (de) * 1995-02-22 1996-12-12 Dorma Gmbh & Co Kg Türschließer
JP3181807B2 (ja) * 1995-03-31 2001-07-03 オーリス株式会社 折れ戸
DE19527258A1 (de) * 1995-07-26 1997-02-06 Bernd Stenzel Scharnier für ein selbstschließendes Verschlußelement, insbesondere für eine selbstschließende Tür
KR100202260B1 (ko) * 1997-03-04 1999-06-15 우생윤 자동도어 클로우저 유니트
ES2228667T3 (es) * 2000-01-12 2005-04-16 Asecos Gmbh, Sicherheit Und Umweltschutz Armario, en especial armario para productos peligrosos.
JP4491158B2 (ja) * 2001-03-07 2010-06-30 静岡沖電気株式会社 沿線電話機
CN201778593U (zh) * 2010-08-07 2011-03-30 许姜德 带弹簧调节装置的平趟门用轨道滑动架
DE102012111611A1 (de) * 2012-11-29 2014-06-05 Efaflex Inzeniring D.O.O. Rolltor mit einem Torblatt in Gestalt eines flexiblen Behangs

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7310911B1 (en) * 2000-09-13 2007-12-25 Power Access Corporation Automatic door opener with magnetic clutch
CN101117872A (zh) * 2006-03-13 2008-02-06 Dt工程株式会社 带关门器的门用延迟装置、带延迟装置的关门器以及带具备延迟装置的关门器的门
CN205243255U (zh) * 2015-08-31 2016-05-18 赵芬 一种高密封式门升降定位和自闭铰链
CN206530194U (zh) * 2016-10-10 2017-09-29 赵芬 一种能预设自定位时间长短点使合页能自闭结构

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110714672A (zh) * 2018-07-23 2020-01-21 赵芬 能调节铰链叶片全程定位力度的结构
CN110714672B (zh) * 2018-07-23 2023-08-11 赵芬 能调节铰链叶片全程定位力度的结构

Also Published As

Publication number Publication date
CN107916862A (zh) 2018-04-17
US20210340802A1 (en) 2021-11-04
CN107916862B (zh) 2023-08-11

Similar Documents

Publication Publication Date Title
WO2018068698A1 (zh) 能预设自定位时间长短点使合页能自闭结构
CN107780740B (zh) 高密封式门能调节角度定位及自闭铰链
CA3006262C (en) Adjustable-angle positioning and self-closing hinge
WO2017054728A1 (zh) 高密封式门能调节角度定位及自闭铰链
CN110924776B (zh) 一种双向开合铰链及双向开合门
CN101054878A (zh) 永电磁控门器
CN109695406B (zh) 一种可内外开关、手电两用的平置防护密闭门
CN206530194U (zh) 一种能预设自定位时间长短点使合页能自闭结构
WO2017054727A1 (zh) 能调节角度定位及自闭铰链
CN204126532U (zh) 一种太阳能自动控制遮阳装置
CN112343433B (zh) 一种智能物联式防盗门密码锁结构
KR20150104694A (ko) 래크와 피니언을 이용한 창짝 자동 개폐장치 및 이를 포함하는 창호
CN203431279U (zh) 电动阀门
CN203271411U (zh) 一种遥控自动关门器
CN103643852B (zh) 一种电动窗户自动开闭装置
CN204571570U (zh) 电动门自锁防风防盗装置
CN217269614U (zh) 一种仿古建筑用的感应门轴
WO2013170606A1 (zh) 一种胀紧式电动门窗开闭器
WO2018068697A1 (zh) 能下降和可预先设定铰链自闭快慢的结构
CN217514465U (zh) 一种注塑机专用机械手装置
CN203947890U (zh) 一种无源电子锁
CN103147637A (zh) 一种带有控制器的电动卷帘门锁
CN216698171U (zh) 一种智能控制装置
CN209293657U (zh) 一种智能数码安防装置
CN202509966U (zh) 一种纱网门

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17860047

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 17860047

Country of ref document: EP

Kind code of ref document: A1

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 23/09/2019)