WO2007022702A1 - Cylindre de serrure et son dispositif d'actionnement - Google Patents

Cylindre de serrure et son dispositif d'actionnement Download PDF

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Publication number
WO2007022702A1
WO2007022702A1 PCT/CN2006/002112 CN2006002112W WO2007022702A1 WO 2007022702 A1 WO2007022702 A1 WO 2007022702A1 CN 2006002112 W CN2006002112 W CN 2006002112W WO 2007022702 A1 WO2007022702 A1 WO 2007022702A1
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WO
WIPO (PCT)
Prior art keywords
movable member
output shaft
hole
clutch
driving
Prior art date
Application number
PCT/CN2006/002112
Other languages
English (en)
Chinese (zh)
Inventor
Wenxiang Xu
Original Assignee
Wenxiang Xu
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 Wenxiang Xu filed Critical Wenxiang Xu
Publication of WO2007022702A1 publication Critical patent/WO2007022702A1/fr

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B47/00Operating or controlling locks or other fastening devices by electric or magnetic means
    • E05B47/06Controlling mechanically-operated bolts by electro-magnetically-operated detents
    • E05B47/0611Cylinder locks with electromagnetic control

Definitions

  • the invention relates to a lock cylinder structure and a driving device thereof.
  • the electronic lock is a new type of lock that is more and more widely used, and it is a new generation of traditional mechanical locks.
  • the object of the present invention is to provide a lock cylinder and a driving device thereof which are simple in structure, reliable in reliability, and suitable for intelligent vacancy.
  • the present invention provides a lock cylinder, including a first movable member 1, a second movable member 2 and a housing 3, a clutch mechanism, and a reset mechanism; the first movable member and the second movable member are juxtaposed in the same Or the second movable member is sleeved in the first movable member, the first movable member is sleeved in the casing; and has the first movable member, the second movable member and the shell a guiding hole of the body, the bottom of the guiding hole starts from the inner wall of the first movable member 1 or the second movable member 2 or the housing 3, and the mouth portion is disposed on the housing; the clutch mechanism includes a driving device and is reset The driving output shaft of the driving device is in contact with the clutch member, the reset device is built in the bottom of the guiding hole, and the clutch member is built in the guiding hole, and is located in the driving device Between the drive output shaft and the reset device; the drive output shaft of the drive device
  • the guide holes are two or more, and each of the guide holes cooperates with a clutch mechanism.
  • the resetting device is an elastic member
  • the clutch member is composed of a first clutch pin and a second clutch pin
  • the guide hole is a blind hole; the bottom of the blind hole is located on the inner wall of the second movable member Opening the first movable member and opening the housing;
  • the elastic member is disposed in the pin hole of the second movable member, and the upper end surface of the elastic member and the second movable member are in an unstressed state
  • the outer surface of the first movable member is placed in the through hole of the first movable member, and the length thereof is not greater than the length of the first movable member through hole, and the second clutch pin is placed in the a length of the through hole of the first movable member is smaller than a length of the through hole of the first movable member, and a sum of lengths of
  • the resetting device is an elastic member
  • the clutch member is composed of a first clutch pin and a second clutch pin
  • the guide hole is a blind hole
  • the bottom of the blind hole is located on the inner wall of the second movable member Opening the first movable member, opening to the housing;
  • the elastic member is placed at the bottom of the blind hole, and the elastic member partially protrudes into the through hole of the first movable member in an unstressed state
  • the first clutch pin is disposed in the through hole of the first movable member
  • the second clutch pin is disposed in the through hole of the housing; the length of the first clutch pin and the second clutch pin And not less than a length of the through hole of the first movable member;
  • the driving device is disposed on the housing, and the driving output shaft abuts the second clutch pin; the driving output shaft extends in the axial direction Driving the second clutch pin into the through hole of the first movable member, the second clutch pin driving the first clutch pin in the through hole, the first
  • the reset device is an elastic member
  • the clutch member is a clutch pin
  • the guide hole is a blind hole
  • the bottom of the blind hole is located at an inner wall of the second movable member, and penetrates the first movable member Opening the housing
  • the elastic member is placed at the bottom of the blind hole, and the upper end surface of the elastic member coincides with the outer surface of the first movable member in an unstressed state, and the clutch pin passes through a through hole of the first movable member, and a length thereof is greater than a length of the first movable member through hole, the clutch pin portion is disposed in the through hole of the housing
  • the driving device is disposed on the housing a driving output shaft abutting the clutch pin, and when the driving output shaft extends in the axial direction, driving the clutch pin out of the housing through hole and partially entering the pin hole of the second movable member
  • the first movable member and the second movable member are relatively locked, and one of the two movable members is
  • the reset device is an elastic member
  • the guide hole is a blind hole
  • the bottom of the blind hole is disposed on the housing.
  • One side of the housing is disposed on the other side of the housing, and penetrates the first movable member and the second movable member.
  • the elastic member is disposed at the bottom of the blind hole.
  • the resetting device is an elastic member, and one end of the first movable member and the second movable member are sleeved in the housing, and outer walls of the first movable member and the second movable member are respectively
  • the inner wall of the casing is connected to each other, the guide hole is L-shaped, the bottom portion is disposed on the first movable member or the second movable member, the elastic member is disposed at the bottom of the guide hole, and the clutch member is installed at the bottom Said inside the guide hole.
  • the driving device includes a micro motor, a swing member, a bracket, and a driving output shaft, and the swinging member and the micromotor output shaft are fixed to an eccentric point, and the bracket abuts the swinging member, the driving The output shaft is fixed to the bracket; the micro-motor drives the swinging member to drive the bracket, and drives the driving output to axially apply or stop the biasing force in the through-hole of the housing through-hole.
  • the bracket has two or more branches, each of which abuts one or more ornaments, each of which is driven by a micromotor.
  • the driving device further includes an output shaft resetting member integrated on the driving output shaft, or one end of the resetting member is connected to the bracket, and the other end is relatively fixed; the resetting member is configured to stop when the driving output shaft is stopped When a force is applied to the clutch member, a force in the opposite direction is applied to the drive output shaft to return to the initial state.
  • the present invention provides a driving device for a lock cylinder, including a micro motor, a swing member, a bracket, and a drive output shaft, wherein the swing member and the micro motor output shaft are fixed to an eccentric point, and the bracket and the bracket The driving output shaft is abutted with the bracket; the micro motor drives the swinging member to drive the bracket to drive the driving output shaft to move.
  • the bracket has two or more branches, each of which abuts one or more ornaments, and each of the ornaments is driven by a micromotor.
  • the brackets are in a grid shape, and each of the grids is provided with a pendulum member abutting against an inner wall of the grid, and each of the ornaments is connected to an output shaft of a micromotor.
  • the driving device further includes an output shaft resetting member integrated on the driving output shaft, or one end of the resetting member is connected to the bracket, and the other end is relatively fixed; when the micromotor stops driving the swinging piece When a force is applied to the drive output shaft, the output shaft return member applies a reverse force to the drive output shaft to return to the initial state.
  • the bracket is in the shape of "day” and is fixed to the driving output shaft.
  • a pendulum member is placed on the inner wall of the supporting frame, and the output of each pendulum and a micromotor is arranged. Axis connection.
  • the above driving device further includes a support member, the bracket being defined in the support member, and the movement of the drive output shaft is guided by the support member in the axial direction.
  • a second drive output shaft is also included, opposite the direction in which the drive output shaft is disposed, which is opposite to the direction of motion of the drive output shaft.
  • the pendulum is an eccentric block.
  • the utility model has the advantages of simple structure, convenient backup, easy formation of multiple independent backup components and no increase in volume; the failure rate of the lock of the application body is greatly reduced, the reliability is greatly improved, and the invention can be directly integrated into the door, the home security door, Safes, etc., are directly compatible with various electronic control systems, simple in application and wide in application range.
  • the lock core of the invention can perform backup of the multi-clutch mechanism.
  • the drive device of the invention has a simple structure and can perform backup functions of multiple drives. Therefore, the entire lock core can perform multi-level backup, thereby further improving the reliability of the lock cylinder.
  • three sets of clutch mechanisms are used, and each set of clutch mechanisms has a double backup motor driven lock cylinder of the present invention. Assuming a single motor failure rate of 1%, the failure rate of the entire clutch mechanism is reduced to (1%). The improvement allows the electronic lock to completely abandon the mechanical part that is manually driven by the key.
  • the power unit does not directly drive the bolt and is only used to drive the clutch of the clutch mechanism, the driving stroke of the power unit is small, the required force can be small, and valuable electric power is saved; and the battery capacity per unit capacity is longer. There is no need to change the battery frequently, making the lock cylinder more suitable for integration into an electronic lock. Moreover, the power unit is not directly impacted by the reaction force of the bolt, which reduces the failure rate and improves the reliability and service life.
  • FIG. 1 and 2 are schematic views showing the structure of a lock cylinder according to Embodiment 1 of the present invention.
  • FIG. 3 and FIG. 4 are schematic diagrams showing the structure of a lock cylinder according to a second embodiment of the present invention.
  • FIG. 5 and FIG. 6 are schematic structural views of a lock cylinder according to a third embodiment of the present invention.
  • FIG. 7 and FIG. 8 are schematic diagrams showing the structure of a lock cylinder according to Embodiment 4 of the present invention.
  • FIG. 9 and FIG. 10 are schematic diagrams showing the structure of a lock cylinder according to Embodiment 5 of the present invention.
  • FIG. 11 and FIG. 12 are schematic diagrams showing the structure of a lock cylinder according to Embodiment 6 of the present invention.
  • FIG. 13 and FIG. 14 are schematic diagrams showing the structure of a lock cylinder according to Embodiment 7 of the present invention.
  • FIG. 15 and FIG. 16 are schematic diagrams showing the structure of a lock cylinder according to Embodiment 8 of the present invention.
  • Figure 17 is a schematic structural view of a dual backup drive device of the present invention.
  • FIG. 18 is a schematic structural view of a driving device of a dual backup dual drive output shaft of the present invention.
  • FIG. 19 is a schematic structural view of another dual backup driving device of the present invention.
  • 20 is a schematic structural view of a single driving device having a reset function according to the present invention.
  • 21 is a schematic structural view of a dual backup drive device having a reset function of the present invention.
  • FIG. 22 is a schematic structural view of a single-combination multi-way backup lock core of the present invention.
  • 23 is a schematic view showing the structure of a lock core of the dual combined multi-path backup of the present invention.
  • Figure 24 is a schematic diagram of the application of the lock core of the multi-path backup function of Figure 22;
  • 25 is a second schematic diagram of the application of the lock core of the multi-path backup function of FIG. 22;
  • Figure 26 is a schematic view showing the deformation of the first movable member, the second movable member and the housing of the present invention.
  • Figure 27 is a schematic structural view of a resilient pin
  • Figure 28 is a schematic view showing the cooperation application of the lock cylinder and the control system of the present invention
  • Figure 29 is a schematic view showing the structure of a lock cylinder according to a ninth embodiment of the present invention.
  • first movable component 2 second movable component, 27 lock core output shaft, 3 housing, 4 reset mechanism, 50 elastic pin, 501 spring, 502 pin, 51 first clutch pin, 52 second clutch pin , 53 third clutch pin, 54 fourth clutch pin, 55 spring, 56 ball, 6 drive, 61 drive output shaft, 62 bracket, 63 swing, 64 second drive output shaft, 65 support, 69 motor, 7 lock She.
  • the lock cylinder includes a first movable member 1, a second movable member 2 and a housing 3, a clutch mechanism, and a reset mechanism; the first movable member and the second movable member are juxtaposed in the housing; or the first activity
  • the sleeve is sleeved in the second movable member, and the second movable member is sleeved in the housing; and has a guide hole connecting the first movable member, the second movable member and the housing, the bottom of the guide hole starts from the first movable member 1 or the second movable member 2 or the inner wall of the casing 3, the mouth portion is disposed on the casing;
  • the clutch mechanism comprises a driving device, a reset device and a clutching member; the driving device is mounted on the casing, and the driving output shaft and the clutch member are resisted
  • the reset device is built in the bottom of the guide hole, and the clutch member is built in the guide hole, and is located between the drive output shaft of the drive device and
  • Embodiment 1 The first movable member 1 and the second movable member 2 are juxtaposed in the casing 3; the clutch member is composed of a first clutch pin 51 and a second clutch pin 52, and the guide hole is a blind hole; The inner wall of the second movable member penetrates the first movable member and is opened to the casing; the elastic member is disposed in the pin hole of the first movable member.
  • FIG. 1 and FIG. 2 the first movable member 1 and the second movable member 2 are respectively separated and locked, and the first movable member 1, the second movable member 2 and the housing 3 are relatively moved as shown in FIG. 1. The direction of the arrow in Figure 2 is shown.
  • the first clutch pin 51 is equal to the thickness of the first movable member 1.
  • the length of the second clutch pin 52 is equal to the axial displacement of the drive output shaft.
  • the housing 3 may be the same or may be two components.
  • the length of the first clutch pin 51 is equal to the thickness of the first movable member 1.
  • Embodiment 2 As shown in FIG. 3 and FIG. 4 , for the modification of the first embodiment, the bottom of the blind hole is located on one side wall of the housing 3 .
  • the first movable member 1 and the second movable member 2 are open to the other side wall of the casing.
  • the clutch member includes a first clutch pin 51, a second clutch pin 52, a third clutch pin 53, a fourth clutch pin 54, and a spring 55.
  • the first movable member 1, the second movable member 2, and the housing 3 are in a non-interference and relatively independent state; the first clutch pin 51 is completely in the through hole of the first movable member, and the length thereof is equal to the first activity.
  • the third clutch pin 53 and the fourth clutch pin 54 are completely in the through hole of the second movable member 2, and the sum of the lengths thereof is equal to the through hole length of the second movable member 2, the first clutch pin 51 and the second clutch pin 52.
  • the sum of the lengths of the third clutch pins 53 is equal to the sum of the thicknesses of the first movable member 1 and the second movable member 2, and the length of the second clutch pin 52 is equal to the axial displacement of the drive output shaft.
  • the driving output shaft of the driving device 6 is extended, driving the second clutch pin 52 into the through hole of the first movable member 1, and then pressing the first clutch pin 51 into the second movable member 2, so that the first clutch
  • the pin 51 is located between the first movable member 1 and the second movable member 2 and locks the two to each other, and the two are in a freely movable state with respect to the housing.
  • the length of the second clutch pin 52 is equal to the axial displacement of the drive output shaft.
  • FIG. 5 is a state in which the elastic pin 50 is naturally extended, and the elastic member 50 is located between the second movable member 2 and the first movable member 1 and is locked to each other.
  • the person is in a freely movable state with respect to the housing 3.
  • the driving output shaft of the driving device 6 is extended, driving the second clutch pin 52 into the through hole of the first movable member 1, and then pressing the first clutch pin 51, and the first clutch pin 51 compresses the elastic pin 50, so that The first movable member 1, the second movable member 2, and the casing 3 are in a state of being unrelated and freely movable.
  • the length of the first clutch pin 51 plus the second clutch pin 52 is equal to the thickness of the first movable member 1, and the length of the second clutch pin is equal to the axial displacement of the drive output shaft of the drive unit 6.
  • Embodiment 4 As shown in FIG. 7 and FIG. 8, in the deformed state of Embodiments 2 and 3, the bottom of the blind hole is located on a side wall of the casing 3, and penetrates the first movable member 1 and the second movable member 2, and the opening is located. The other side wall of the housing. Different from the second embodiment, the length of the third clutch pin 53 is equal to the length of the through hole of the second movable member 2, that is, the thickness of the second movable member. In the natural state, the length of the spring is equal to the bottom of the side wall of the housing.
  • the height of the partial hole, the sum of the lengths of the first clutch pin 51, the third clutch pin 53, and the fourth clutch pin 54 is equal to the sum of the lengths of the through holes of the first movable member 1 and the second movable member 2, and is completely at the first In the through hole of the movable member 1 and the second movable member 2, the third clutch pin 53 is partially in the through hole of the first movable member, and the portion is in the through hole of the second movable member.
  • the first movable member 1 is The second movable member 2 is in a relatively locked state and is in a state of non-interference with respect to the housing.
  • the sum of the lengths of the first clutch pin 51 and the second clutch pin 52 is equal to the length of the first movable member through hole, and when the driving output shaft of the driving device 6 is extended, the second clutch pin 52 is driven to enter the through hole of the first movable member 1. Then, the first clutch pin 51, the third clutch pin 53, the fourth clutch pin 54, and the spring 55 are pressed, so that the third clutch pin 53 is completely located in the through hole of the second movable member 2, so that the first movable member 1 and the first movable member The two movable members 2 are unlocked from each other, and both are in a freely movable state with respect to the housing.
  • the length of the second clutch pin 52 is equal to the axial displacement of the drive output shaft.
  • Embodiment 5 As shown in FIG. 9 and FIG. 10, different from the first embodiment, in the unstressed state, the upper end surface of the elastic member 50 coincides with the outer surface of the second movable member 2, and the clutch pin 51 penetrates the first a through hole of the movable member, and a length thereof is larger than a length of the first movable member through hole, that is, the clutch pin portion is disposed in the through hole of the housing, and the first movable member 1 is relatively locked with the housing 3; the drive output shaft is axially When extended, the driving clutch pin 51 is disengaged from the through hole of the housing and partially enters the second movable member.
  • the first movable member and the second movable member are relatively locked, and one of the two movable members can be interlocked; when the driving output shaft is axially contracted, the elastic member drives the clutch pin to return to the initial position, and the first movable member is The second movable member is separated.
  • Embodiment 6 As shown in FIG. 11 and FIG. 12, it is a modification of Embodiment 5.
  • 11 is a state in which the first clutch pin 51 is located between the first movable member 1 and the second movable member 2 in the extended state of the spring 50 and is locked to each other, and the two are freely movable with respect to the casing 3.
  • the first clutch pin 51 since the spring 50 is compressed, the first clutch pin 51 is located between the first movable member 1 and the housing 3 such that the two are relatively locked, and the two are not related to each other and are opposite to each other. Free activity status.
  • the sum of the lengths of the third clutch pin 53 and the first clutch pin 51 is equal to the sum of the through hole lengths of the first movable member 1 and the second movable member 2.
  • Embodiment 7 As shown in FIG. 13 and FIG. 14, the elastic member is placed at the bottom of the blind hole. In the unstressed state, the elastic member partially protrudes into the through hole of the first movable member 1, and the first clutch pin 51 is placed.
  • the second clutch pin 52 is disposed in the through hole of the first movable member 1; the sum of the lengths of the first clutch pin 51 and the second clutch pin 52 is equal to the length of the through hole of the first movable member;
  • the driving output shaft is abutted against the second clutch pin; when the driving output shaft extends in the axial direction, the second clutch pin 52 is driven into the through hole of the first movable member 1, and the second clutch pin 52 is driven.
  • the first clutch pin compresses the elastic member 50, and the elastic member contracts into the pin hole of the second movable member to separate the first movable member from the second movable member; the drive output shaft is axially
  • the elastic member drives the first clutch pin and the second clutch pin to return to the initial position, and the first movable member and the second movable member are relatively locked.
  • Embodiment 8 As shown in FIG. 15 and FIG. 16, for the combination of Embodiments 6 and 7, the bottom of the blind hole is located at a side wall of the casing 3, and penetrates the first movable member 1 and the second movable member 2, and the opening is located. The other side wall of the housing. In the natural state, the spring 50 is completely in the bottom hole, and the sum of the lengths of the first clutch pin 51, the third clutch pin 53, and the fourth clutch pin 54 is equal to the sum of the through hole lengths of the first movable member 1 and the second movable member 2.
  • the third clutch pin 53 is partially in the through hole of the first movable member 1 and partially in the through hole of the second movable member 2, so that the first movable member 1 and the second movable member 2 are relatively locked, and are not mutually opposed to the housing 3. put one's oar in.
  • the sum of the lengths of the first clutch pin 51 and the second clutch pin 52 is equal to the length of the through hole of the first movable member 1, and the driving output shaft of the driving device 6 drives the second clutch pin 52 to make the first clutch pin 51 and the second clutch
  • the pin 52 is completely in the through hole of the first movable member 1, and the first movable member 1, the second movable member 2, and the housing 3 do not interfere with each other.
  • Embodiment 9 As shown in FIG. 29, the principle of the clutch is the same as the above-mentioned examples.
  • the first movable member 1 and the second movable member 2 are end-fitted in the housing 3, and the first The outer wall of the movable member and the second movable member are respectively connected to the inner wall of the casing, the guide hole is L-shaped, the bottom portion is disposed on the first movable member or the second movable member, the elastic member 50 is disposed at the bottom of the guide hole, and the clutch member is mounted on the guide
  • the hole includes a first clutch pin 51, a second clutch pin 52, a third clutch pin 53, and a ball 56.
  • the first clutch pin 51, the ball 56, and the third clutch pin 53 are completely in the L-shaped through hole of the first movable member, and the elastic member 50 is just completely in the bottom hole, the first movable member 1, the second activity
  • the two parts of the housing 2 and the housing 3 are in a state of non-interference with each other.
  • the second clutch pin 52 is driven by the driving output shaft, enters the L-shaped through hole of the first movable member, so that the third clutch pin 53 presses the elastic member 50, and partially enters the bottom hole, so that the first movable member 1 is Second movable part 2 phase Right lock.
  • the driving function of the driving device is to generate an axial driving force to drive the clutch member in the guide hole.
  • the driving device comprises a micro motor, a pendulum, a bracket, a driving output shaft, the output shaft of the pendulum and the micro motor is fixed at an eccentric point, the bracket abuts the pendulum, and the driving output shaft is fixed with the bracket; the micro motor drives the swing of the swing, drives the bracket, drives The driving output axial force is applied to the clutch in the through hole of the axial direction of the housing.
  • FIG. 17 it is a schematic diagram of a pair of backup driving devices.
  • the bracket 62 has a "day" shape and is fixedly connected to the driving output shaft 61.
  • a bracket 63 abuts against the inner wall of the supporting frame.
  • the pendulum is connected to the output shaft of the micromotor.
  • the shape of the pendulum is not limited. As long as the micromotor is driven, the bracket can be pressed, so that the drive output shaft 61 can be axially moved under the guidance of the through hole or under the guidance of other members. .
  • a second drive output shaft 64 is disposed in the opposite direction of the drive output shaft, which is opposite to the direction of movement of the drive output shaft 61.
  • one drive command produces two opposites.
  • the drive output action this mechanism can be applied to the system shown in Figure 23, to meet special control requirements, such as an instruction simultaneously: a locking action, a separation action; or two locking actions; or two separations action.
  • the driving principle of the pendulum of another shape is the same as that of the driving device shown in Fig. 17.
  • FIG. 20 shows a driving device of a single motor, and a reset member 66 is integrated on the drive output shaft 61.
  • the bracket is limited to the support member, and the drive output is The axial movement of the shaft is guided by the support.
  • the actuator 62 is driven by the reset member 66 to reset and retract the output shaft, thereby releasing the biasing force to the clutch member.
  • Figure 21 shows the dual motor backup unit, the principle is the same as the single motor drive unit of Figure 20.
  • FIG. 22 and FIG. 23 a schematic diagram of a multi-way backup using a driving device is provided, which is provided with a multi-way clutch mechanism and a multi-way drive device backup.
  • the lock core applies the same structure.
  • the three-way clutch mechanism has a two-way drive device for each clutch mechanism. In this way, it completes the 3 X 2 multi-path backup function, which greatly improves the reliability and greatly reduces the probability of failure. Assuming a single motor failure rate of 1%, the failure rate of the entire clutch mechanism is reduced to (1%)
  • the first movable member 1 is used as an active component
  • the second movable member 2 is used as a driven component
  • the output shaft 21 of the second movable member 2 is connected to the lock housing 7,
  • the lockhouse 7 is provided with two-way drive, a route is completed by the lock cylinder as shown in FIG. 22, and one route is executed by other power devices; System integration application.
  • the first movable member and the second movable member are coupled with a reset mechanism 4, which can be restored when the external force disappears. Start state. It may be a potential energy storage device integrated thereon, or a potential energy storage device integrated on the housing, such as a spring, a spring leaf or the like.
  • a potential energy storage device integrated thereon, or a potential energy storage device integrated on the housing, such as a spring, a spring leaf or the like.
  • the lock cylinder of the present invention can also be designed as a special-shaped structural component, and the basic principle is the same, and the purpose is to complete the target function.
  • the first movable member 1, the second movable member 2 are sleeved together, and the casing 3 is composed of other shapes having a fixed function.
  • the goal is to complete the fixed function while the inner movable part and the second movable part are not falling out during operation, and the clutch can be returned to the original position when resetting.
  • the first movable member and the second movable member have the following two connection methods: a.
  • the intermediate tube is provided as a first movable member for unlocking force (such as a handle, etc.), and the innermost solid column or hollow tube is used as the second activity.
  • the piece is connected to the driving device of the lock, and the driving device for transmitting the unlocking force to the lock is opened by the driving device; or the locking pin is directly driven; b.
  • the intermediate tube is connected to the driving device of the lock as the second movable member, and the locking device is unlocked.
  • the drive device that transmits the force to the lock is opened by the drive device; or the lock pin is directly driven, and the innermost solid column or hollow tube is provided as the first movable member for unlocking force (such as a handle, etc.).
  • the relationship between the control device and the lock cylinder may be: 1.
  • the control device is integrated with the lock cylinder; 2.
  • the control device is connected to the lock cylinder through the interface circuit.
  • the control device may be partially or fully integrated on the lock cylinder.
  • a large circuit board is split into a plurality of small boards, and the plurality of small boards are longitudinally through the interface circuit (relative to
  • the lock cylinder is either laterally or vertically and laterally distributed on the lock cylinder, or a flexible circuit is used to fold or bend the circuit board onto the lock cylinder. It can also be set separately from the lock cylinder.
  • the advantage is that you can take advantage of space or control separation from the power source to increase safety.

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  • Electromagnetism (AREA)
  • Lock And Its Accessories (AREA)
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Abstract

Ce cylindre de serrure comprend une première partie mobile, une seconde partie mobile, une enveloppe, un élément d'assemblage et un élément de repositionnement (4). L'enveloppe est disposée dans les première et deuxième pièces mobiles. Le déplacement des deux pièces et de l'enveloppe et de tout autre élément placé entre les deux pièces s'effectue par l'élément d'assemblage, d'où l'obtention d'un verrouillage mutuel ou d'une relation de non interférence. L'élément de repositionnement, quant à lui, est destiné à replacer les deux pièces mobiles dans leur position de départ. La structure est simple, le fonctionnement est pratique et il est facile d'obtenir un agencement indépendant sans en augmenter le poids. Cette serrure est fiable et peut, donc, s'utiliser sur les portières de véhicules, les portes blindées de domiciles, les coffres forts et les systèmes de commande électronique.
PCT/CN2006/002112 2005-08-21 2006-08-18 Cylindre de serrure et son dispositif d'actionnement WO2007022702A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN200510021543.2 2005-08-21
CNB2005100215432A CN100410481C (zh) 2005-08-21 2005-08-21 锁芯

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Publication Number Publication Date
WO2007022702A1 true WO2007022702A1 (fr) 2007-03-01

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PCT/CN2006/002112 WO2007022702A1 (fr) 2005-08-21 2006-08-18 Cylindre de serrure et son dispositif d'actionnement

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WO (1) WO2007022702A1 (fr)

Cited By (1)

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CN102587736B (zh) * 2012-03-31 2014-12-17 深圳宝嘉电子设备有限公司 指纹加密电子锁及其锁舌驱动机构
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