CN103395116A - Working method of automatic feeding machine in full-automatic hydraulic forming machine - Google Patents

Working method of automatic feeding machine in full-automatic hydraulic forming machine Download PDF

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Publication number
CN103395116A
CN103395116A CN2013103222254A CN201310322225A CN103395116A CN 103395116 A CN103395116 A CN 103395116A CN 2013103222254 A CN2013103222254 A CN 2013103222254A CN 201310322225 A CN201310322225 A CN 201310322225A CN 103395116 A CN103395116 A CN 103395116A
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China
Prior art keywords
piston body
medium
buffer
cylinder
piston
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CN2013103222254A
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Chinese (zh)
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CN103395116B (en
Inventor
史喜婷
其他发明人请求不公开姓名
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Linshu Jicai Human Resources Service Co ltd
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Suzhou Shihao Building Materials New Technology Engineering Co Ltd
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Priority to CN201510638394.8A priority Critical patent/CN105292960A/en
Priority to CN201510642906.8A priority patent/CN105253557A/en
Priority to CN201310322225.4A priority patent/CN103395116B/en
Priority to CN201510641662.1A priority patent/CN105217323A/en
Priority to CN201510637606.0A priority patent/CN105253556A/en
Application filed by Suzhou Shihao Building Materials New Technology Engineering Co Ltd filed Critical Suzhou Shihao Building Materials New Technology Engineering Co Ltd
Priority to CN201510638746.XA priority patent/CN105366298A/en
Priority to CN201510638581.6A priority patent/CN105236093A/en
Publication of CN103395116A publication Critical patent/CN103395116A/en
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Publication of CN103395116B publication Critical patent/CN103395116B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G35/00Mechanical conveyors not otherwise provided for
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B11/00Apparatus or processes for treating or working the shaped or preshaped articles
    • B28B11/24Apparatus or processes for treating or working the shaped or preshaped articles for curing, setting or hardening
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G57/00Stacking of articles
    • B65G57/02Stacking of articles by adding to the top of the stack
    • B65G57/16Stacking of articles of particular shape
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G2201/00Indexing codes relating to handling devices, e.g. conveyors, characterised by the type of product or load being conveyed or handled
    • B65G2201/02Articles
    • B65G2201/0214Articles of special size, shape or weigh

Abstract

The invention relates to a working method of an automatic feeding machine in a full-automatic hydraulic forming machine for hollow blocks and bricks. The automatic feeding machine comprises a feeding car used for hanging and conveying a steam-curing car to a stacking area and a positioner used for limiting the steam-curing car in the stacking area. The positioner comprises a support arm and a cylinder used for supporting or putting down the support arm. The positioner is fixed on the upper end face of a slider in sliding fit with a guide rail, and a cushioning device is arranged at the left end of the slide rail and used for cushioning slider impact force produced when the steam-curing car impacts on the positioner. The working method of the automatic feeder includes that when the steam-curing car impacts on the supported support arm, the cushioning device cushions the slider impact force so as to relieve pressure on the cylinder due to impact of the steam-curing car. The cushioning device cushions the impact force of the steam-curing car on the cylinder when the steam-curing car impacts on the supported support arm, so that the impact force on the cylinder can be relieved effectively, and service life of the cylinder is prolonged effectively.

Description

The method of work of the automatic feed machine in a kind of Full-automatic hydraulic forming machine
Technical field
The present invention relates to a kind of method of work of automatic feed machine, relate in particular to a kind of method of work of automatic feed machine of the Full-automatic hydraulic forming machine for building-block, brick.
Background technology
The code that relates to adobe in building-block, the compressing process of brick hydraulic pressure is stamped operation, for example: Chinese patent literature CN 101574833 B disclose a kind of fully automatic hydroform and smart code of brick and have stamped device, a kind of automatic feeding machine is also disclosed, it comprises: feeding car, locator and feed drive unit and realize the location to steaming maintaining vehicle, to complete code, stamp work.
But there is certain defect in this scheme, because this invention has improved production efficiency, necessary frequent, the continuous firing of locator, cylinder in locator is due to the impulsive force that is subject to frequently steaming maintaining vehicle and brings, and because cylinder is not horizontal positioned, when it props up support arm, there is certain angle, therefore while being subject to impulsive force, its buffering effect is poor, and be easy to damage, cause the direct matching loose of support arm and cylinder, steaming maintaining vehicle can't accurately be located, cause code to stamp the position that steaming maintaining vehicle can't accurately be located by robot, that is, can't complete code and stamp work.
Summary of the invention
The technical problem to be solved in the present invention is to provide a kind of method of work of automatic feed machine of the Full-automatic hydraulic forming machine for building-block, brick, this method of work has solved adobe when palletizing operation, and locator is owing to receiving the flimsy technical problem of steaming maintaining vehicle impulsive force appearance.
The invention provides a kind of method of work of automatic feed machine of the Full-automatic hydraulic forming machine for building-block, brick, this automatic feed machine comprises: for extension, sent steaming maintaining vehicle to code to stamp the car that feeds in district, for this steaming maintaining vehicle to stamping in district at described code, carry out spacing locator, this locator comprises: support arm, an end are connected to the cylinder on this support arm left surface; The other end of described cylinder and the bottom of support arm are connected to the two ends, left and right of a slide block, this slide block and a guide rail are slidably matched, the left end of described guide rail is provided with buffer unit, the impulsive force that this buffer unit produces while clashing into the support arm right flank for buffering by described steaming maintaining vehicle, and the right side of this buffer unit and described slide block left side are suitable for keeping close contact.
Further, described buffer unit is hydraulic pressure or pneumatic cushion.
Described hydraulic draft gear is the two-stage buffer, and described two-stage buffer comprises: chopped-off head buffer, final stage buffer; Described chopped-off head buffer, final stage buffer comprise respectively: cylindrical, and be used to filling the cylinder body of buffer medium, openend sealing at this cylinder body is provided with cylinder cap, in the central through hole of described cylinder cap, air-tight movable is combined with a piston rod, the right-hand member of this piston rod is provided be used to regulating the piston body assembly of medium toward regurgitation volume, this piston body assembly is suitable for doing the piston motion in described cylinder body, and coordinates with the inwall movable sealing of described cylinder body; Wherein, the cylinder body of described chopped-off head buffer forms the piston rod of described final stage buffer; In buffering during work, the cylinder body right side of described final stage buffer is as the contact-making surface that collides with slide block; In the sidewall of the cylinder body of described final stage buffer, be arranged with solenoid; The right side of the piston body assembly of described final stage buffer is provided with the pressure sensor for detection of pressure medium, and this pressure sensor is connected with a processor module; When described slide block clashes into the right side of described cylinder body, described processor module is suitable for according to the pressure medium value, control the output of current drives module and the electric current that this pressure medium value is complementary, make described solenoid produce corresponding magnetic field, with the described slide block of adhesive; Until described processor module records the pressure medium value while being equilibrium value, control described current drives module and close output current, described magnetic field is disappeared, to discharge described slide block; Wherein, the piston body assembly of buffers at different levels is suitable for when doing the piston motion, the pressure medium that described processor detects according to described pressure sensor, control described piston body assembly and regulate or close the past regurgitation volume of medium in corresponding cylinder body, to regulate this piston body assembly movement velocity or buffering progression.
Further, too high for fear of medium temperature, the buffer life-span is impacted, on the right side of the piston body assembly of described chopped-off head buffer, final stage buffer, be respectively equipped with the temperature sensor that is suitable for detecting medium temperature, described temperature sensor is connected with described processor module respectively; Described processor module be suitable for the prestoring ceiling temperature of medium work; When the piston body assembly of buffers at different levels is suitable for when doing the piston motion, the medium temperature that described processor module detects according to described temperature sensor, regulate the past regurgitation volume of medium in corresponding cylinder body, namely, when described processor module reaches described ceiling temperature when described medium temperature, control described piston body assembly and reduce or close described medium toward regurgitation volume, with the speed of regulating piston motion or close respective buffer.
Further, described piston body assembly comprises: the coaxial left and right piston body that arranges, on this left and right piston body, be arranged with several through holes for the medium axial flow, being sealed and matched between the adjacent face of left and right piston body, so that do piston when motion, medium is only realized coming and going by each through hole on described left and right piston body and is flowed; In described left piston body, be provided be used to placing the cavity of motor, this motor is controlled by described processor module, the end of its rotor is fixedly connected on described right piston body, for according to pressure medium, driving this right piston body rotation, to control the relative position relation of each through hole on left and right piston body, and then control medium flow, i.e. control piston movement velocity.
Compared with prior art, the present invention has following advantage: (1) the present invention is when making described steaming maintaining vehicle clash into the support arm of propping up at buffer unit, cushion the impulsive force of the steaming maintaining vehicle that described cylinder is subject to, can effectively alleviate the impulsive force that cylinder is subject to, effectively extended the life-span of cylinder; (2) the present invention produces the magnetic field that is complementary with surge with the adhesive slide block by processor, current drives module, makes can fit tightly between slide block and buffer; (3) the present invention has overcome due to the impact energy fluctuation, and cause the technical problem that buffer can't co-ordination, the present invention detects impact energy by pressure sensor, and the medium of suitable adjusting buffers at different levels is toward regurgitation volume, to control the movement velocity of each piston body assembly, make buffer co-ordinations at different levels, avoided certain one-level buffer that may occur because impact energy is excessive, all the other buffers have little time compression, and cause the long-term work of this grade buffer under high pressure conditions, easily cause damage; (4) by each through hole in left and right piston body, coordinate, to control the past regurgitation volume of medium in corresponding cylinder body, thereby change the shuttle speed of respective pistons, to alleviate the cavity pressure of cylinder bodies at different levels, extend the buffer life-span; (5) this two-stage buffer is without considering the medium difference, and application place is extensive, without regulating in addition the buffer job order.
The accompanying drawing explanation
For content of the present invention is more likely to be clearly understood, below the specific embodiment by reference to the accompanying drawings of basis, the present invention is further detailed explanation, wherein
The structural representation of locator in Fig. 1 automatic feed machine of the present invention;
The structural representation one of Fig. 2 two-stage buffer of the present invention;
The structural representation two of Fig. 3 two-stage buffer of the present invention;
The structural representation of the piston body assembly in Fig. 4 two-stage buffer of the present invention;
The work schematic diagram of Fig. 5 piston body assembly of the present invention;
Fig. 6 control circuit structured flowchart of the present invention.
Wherein, 1-1 buffer unit, 1-2 steaming maintaining vehicle, 1-3 feed piston rod, the piston rod of 6-1 final stage buffer, 7 piston body assemblies, 8 urceolus, 9 pressure sensors, 7-1 left piston body, the right piston body of 7-2,7-3 through hole, 7-4 motor, the 7-5 rotor of car, 1-4 locator, 1-5 support arm, 1-6 cylinder, 1-7 slide block, 1-8 guide rail, 1 chopped-off head buffer, 2 final stage buffers, 4 cylinder bodies, 4-1 solenoid, 5 cylinder caps, 6 chopped-off head buffers.
The specific embodiment
The present invention is described in detail below in conjunction with drawings and Examples:
See Fig. 1, a kind of method of work of automatic feed machine of the Full-automatic hydraulic forming machine for building-block, brick, described automatic feed machine comprises: for extension, sent steaming maintaining vehicle 1-2 to feed car 1-3 to what code was stamped district, for this steaming maintaining vehicle 1-2 to stamping in district at described code, carry out spacing locator 1-4, this locator comprises: support arm 1-5, one end is connected to the cylinder 1-6 on this support arm 1-5 left surface, and this cylinder 1-6 is for propping up or put down support arm; It is upper that described locator 1-4 is fixed in a slide block 1-7, and namely the bottom of the other end of described cylinder 1-6 and support arm 1-5 is connected to the two ends, left and right of this slide block 1-7; This slide block 1-7 and a guide rail 1-8 are slidably matched, the left end of described guide rail 1-8 is provided with buffer unit 1-1, this buffer unit 1-1 clashes into locator 1-4 for buffering by described steaming maintaining vehicle 1-2, the slide block impulsive force that produces while being support arm 1-5 right flank, and the right side of this buffer unit 1-1 and described slide block left side are suitable for keeping close contact; The method of work of described automatic feed machine comprises: when described buffer unit 1-1 clashes at described steaming maintaining vehicle 1-2 the support arm 1-5 that props up, cushion described slide block impulsive force, with the pressure that is caused by described steaming maintaining vehicle 1-2 shock of alleviating that described cylinder 1-6 is subject to.
As can see from Figure 1, slide block 1-7 length long enough, the upper surface fixed locator, buffering occurs with the right side of buffer unit 1-1 and coordinates in the left side of slide block 1-7.
Wherein, code is stamped robot, is fed car 1-3, steaming maintaining vehicle 1-2, support arm 1-5, can be referring to the specification of Chinese patent literature CN 101574833 B for the dependency structures such as cylinder 1-6 of propping up or put down support arm, and accompanying drawing 1,2 and 8.
Because generally believing cylinder, those skilled in the art have certain buffering effect, but ignored impulsive force due to suffered steaming maintaining vehicle 1-2 and be not same direction with respect to cylinder, according to mechanical analysis, after decomposition, can find, cylinder will bear the power larger than steaming maintaining vehicle 1-2 impulsive force just can withstand support arm 1-5, the efficiency of stamping device due to smart code is very high, the live load of support arm 1-5 is very big, so as easy as rolling off a logly cause damage, therefore by the present invention, can effectively alleviate the impulsive force of steaming maintaining vehicle 1-2, the life-span of having improved cylinder.
Described buffer unit 1-1 is hydraulic pressure or pneumatic cushion.
See Fig. 2, Fig. 3 and Fig. 6, described hydraulic draft gear is the two-stage buffer, and this two-stage buffer comprises: chopped-off head buffer 1, final stage buffer 2; Described chopped-off head buffer 1, final stage buffer 2 comprise respectively: cylindrical, and be used to the cylinder body 4 of filling buffer medium, openend sealing at this cylinder body 4 is provided with cylinder cap 5, in the central through hole of described cylinder cap 5, air-tight movable is combined with a piston rod 6, the right-hand member of this piston rod 6 is provided be used to regulating the piston body assembly 7 of medium toward regurgitation volume, this piston body assembly 7 is suitable for doing the piston motion in described cylinder body 4, and coordinates with the inwall movable sealing of described cylinder body 4; Wherein, the cylinder body 4 of described chopped-off head buffer 1 forms the piston rod 6-1 of described final stage buffer 2; In buffering during work, cylinder body 4 right sides of described final stage buffer 2 are as the contact-making surface that collides with slide block 1-7; In the sidewall of the cylinder body 4 of described final stage buffer 2, be arranged with solenoid 4-1; The right side of the piston body assembly 7 of described final stage buffer 2 is provided with the pressure sensor 9 for detection of pressure medium, and this pressure sensor is connected with a processor module; When described slide block 1-7 clashes into the right side of described cylinder body, described processor module is suitable for according to the pressure medium value, control the output of current drives module and the electric current that this pressure medium value is complementary, make described solenoid 4-1 produce corresponding magnetic field, with the described slide block 1-7 of adhesive; Until described processor module records the pressure medium value while being equilibrium value, control described current drives module and close output current, described magnetic field is disappeared, to discharge described slide block 1-7; Wherein, the piston body assembly 7 of buffers at different levels is suitable for when doing the piston motion, the pressure medium that described processor detects according to described pressure sensor 9, control described piston body assembly and regulate or close the past regurgitation volume of medium in corresponding cylinder body 4, with speed or the buffering progression of regulating these piston body assembly 7 motions.(in order clearly to represent the structure of buffer, the slide block in Fig. 2 and Fig. 3 adopts the mode of simplifying.)
Its right end face of urceolus 8 is fixed in piston rod 6 bottoms of described chopped-off head buffer 1.It is upper that urceolus 8 is fixed on guide rail 1-8, and cylinder body 4 right sides and the slide block 11 of described final stage buffer 2 are oppositely arranged.
when described slide block 1-7 clashes into the right side of described cylinder body 4, described cylinder body 4 is moved to the left, piston body assembly 7 moves right with respect to described cylinder body 4, the interior right side of cylinder body 4 buffer medium is subject to larger pressure, when buffer medium flows toward piston body assembly 7 left sides, the pressure that the interior right side of cylinder body 4 buffer medium is subject to reduces gradually, until the left and right sides pressure medium of described piston body assembly 7 equates, be that described pressure medium value is while being equilibrium value (being the hydraulic pressure value of the left and right sides of piston body assembly 4 force value while equating), when piston body assembly 7 quits work, slide block 1-7 also stops mobile.While particularly having adopted pressure sensor accurately to detect slide block 1-7 to clash into during the right side of cylinder body 4, the impulsive force of slide block 1-7, without the Media density difference in each cylinder body according to the two-stage buffer, control the order of two-stage buffering, and can more reasonably regulate buffering rhythm according to force value, extend the life-span of buffer.
Wherein, described processor module adopts single-chip microcomputer, embedded-type ARM module; Pressure sensor 9, for example can adopt the gloomy P499VBS-404C in river; Described current drives module can adopt the alternating current output unit, and slide block 1-7 adopts the irony slide block.
On the right side of the piston body assembly of described chopped-off head buffer 1, final stage buffer 2, be respectively equipped with the temperature sensor that is suitable for detecting medium temperature, described temperature sensor is connected with described processor module respectively; Described processor module be suitable for the prestoring ceiling temperature of medium work; When the piston body assembly of buffers at different levels is suitable for when doing the piston motion, the medium temperature that described processor module detects according to described temperature sensor, regulate the past regurgitation volume of medium in corresponding cylinder body, namely, when described processor module reaches described ceiling temperature when described medium temperature, control described piston body assembly 7 and reduce or close described medium toward regurgitation volume, with the speed of regulating piston motion or close respective buffer.(in figure, temperature sensor does not draw)
See Fig. 4-5, described piston body assembly 7 comprises: coaxial left piston body 7-1, the right piston body 7-2 that arranges, on this left piston body 7-1, right piston body 7-2, be arranged with several through holes for medium axial flow 7-3, being sealed and matched between the adjacent face of described left and right piston body, so that do piston when motion, medium is only realized coming and going by each through hole 7-3 on described left and right piston body and is flowed; In described left piston body 7-1, be provided be used to placing the cavity of motor 7-4, this motor 7-4 is controlled by described processor module, its rotor 7-5 is connected in described right piston body 7-2, for according to pressure medium, driving this right piston body 7-2 rotation, to control the relative position relation of each through hole 7-3 on left and right piston body, and then control medium flow, i.e. control piston movement velocity.
In Fig. 5, dotted line through hole 7-3 represents it is the through hole 7-3 in left piston body 7-1, solid line through hole 7-3 represents the through hole 7-3 in right piston body 7-2, arrow represents motor 7-4 rotation direction, this Fig. 4 is illustrated in respective through hole 7-3 docking operation on the mating surface of left and right piston body 7-2, to control the rate-of flow in through hole.
described right piston body 7-2 is with respect to the coaxial deflection of right piston body 7-2, its slewing area is no more than the diameter of through hole 7-3, also can be called deflection angle, be that motor 7-4 drives right piston body 7-2 in this diameter range according to pressure medium, do to come and go and rotate, to reach the purpose of control medium flow, thereby play the piston movement speed of controlling respective pistons body assembly 7, and then the interior pressure medium of alleviation cylinder body 4, play the purpose that extends the buffer life-span, and each buffer can take turns to operate, under non-stop-machine prerequisite, allow the higher buffer of temperature obtain cooling, extended service life.
Power pack can adopt powered battery.Battery can be installed in left or right piston body 7-2.
See Fig. 5, if described through hole 7-3 has several, its distribution can be concentric circles with left and right piston body 7-2 and distribute, and through hole also can a variety of shapes certainly, such as: cross section is the through hole of kidney-shaped, the through hole of cross section ovalize etc.; The signal data line can be placed in cylinder body 4 walls of buffers at different levels, or directly is placed in medium.
Obviously, above-described embodiment is only for example of the present invention clearly is described, and is not the restriction to embodiments of the present invention.For those of ordinary skill in the field, can also make other changes in different forms on the basis of the above description.Here exhaustive without also giving all embodiments.And these belong to apparent variation or the change that spirit of the present invention extended out and still are among protection scope of the present invention.

Claims (5)

1. the method for work of the machine of the automatic feed for the Full-automatic hydraulic forming machine of building-block, brick, is characterized in that,
Described automatic feed machine comprises: for extension, sent steaming maintaining vehicle to code to stamp the car that feeds in district, for this steaming maintaining vehicle to stamping in district at described code, carried out spacing locator, this locator comprises: support arm, an end are connected to the cylinder on this support arm left surface; The other end of described cylinder and the bottom of support arm are connected to the two ends, left and right of a slide block, this slide block and a guide rail are slidably matched, the left end of described guide rail is provided with buffer unit, the impulsive force that this buffer unit produces while clashing into the support arm right flank for buffering by described steaming maintaining vehicle, and the right side of this buffer unit and described slide block left side are suitable for keeping close contact;
The method of work of described automatic feed machine comprises: when described buffer unit clashes at described steaming maintaining vehicle the support arm of propping up, cushion described slide block impulsive force, with the pressure that is caused by described steaming maintaining vehicle shock of alleviating that described cylinder is subject to.
2. the method for work of automatic feed machine according to claim 1, is characterized in that, described buffer unit is hydraulic pressure or pneumatic cushion.
3. the method for work of automatic feed machine according to claim 2, is characterized in that, described hydraulic draft gear is the two-stage buffer, and this two-stage buffer comprises: chopped-off head buffer, final stage buffer;
Described chopped-off head buffer, final stage buffer comprise respectively:
Cylindrical, and be used to filling the cylinder body of buffer medium, openend sealing at this cylinder body is provided with cylinder cap, in the central through hole of described cylinder cap, air-tight movable is combined with a piston rod, the right-hand member of this piston rod is provided be used to regulating the piston body assembly of medium toward regurgitation volume, this piston body assembly is suitable for doing the piston motion in described cylinder body, and coordinates with the inwall movable sealing of described cylinder body;
Wherein, the cylinder body of described chopped-off head buffer forms the piston rod of described final stage buffer;
In buffering during work, the cylinder body right side of described final stage buffer is as the contact-making surface that collides with slide block;
In the sidewall of the cylinder body of described final stage buffer, be arranged with solenoid;
The right side of the piston body assembly of described final stage buffer is provided with the pressure sensor for detection of pressure medium, and this pressure sensor is connected with a processor module;
When described slide block clashes into the right side of described cylinder body, described processor module is suitable for according to the pressure medium value, control the output of current drives module and the electric current that this pressure medium value is complementary, make described solenoid produce corresponding magnetic field, with the described slide block of adhesive; Until described processor module records the pressure medium value while being equilibrium value, control described current drives module and close output current, described magnetic field is disappeared, to discharge described slide block;
Wherein, the piston body assembly of buffers at different levels is suitable for when doing the piston motion, the pressure medium that described processor detects according to described pressure sensor, control described piston body assembly and regulate or close the past regurgitation volume of medium in corresponding cylinder body, to regulate this piston body assembly movement velocity or buffering progression.
4. the method for work of automatic feed machine according to claim 3, it is characterized in that, on the right side of the piston body assembly of described chopped-off head buffer, final stage buffer, be respectively equipped with the temperature sensor that is suitable for detecting medium temperature, described temperature sensor is connected with described processor module respectively;
Described processor module be suitable for the prestoring ceiling temperature of medium work;
When the piston body assembly of buffers at different levels is suitable for when doing the piston motion, the medium temperature that described processor module detects according to described temperature sensor, regulate the past regurgitation volume of medium in corresponding cylinder body, namely, when described processor module reaches described ceiling temperature when described medium temperature, control described piston body assembly and reduce or close described medium toward regurgitation volume, with the speed of regulating piston motion or close respective buffer.
5. the method for work of according to claim 3 or 4 described automatic feed machines, it is characterized in that, described piston body assembly comprises: the coaxial left and right piston body that arranges, on this left and right piston body, be arranged with several through holes for the medium axial flow, being sealed and matched between the adjacent face of left and right piston body, so that do piston when motion, medium is only realized coming and going by each through hole on described left and right piston body and is flowed;
In described left piston body, be provided be used to placing the cavity of motor, this motor is controlled by described processor module, the end of its rotor is fixedly connected on described right piston body, for according to pressure medium, driving this right piston body rotation, to control the relative position relation of each through hole on left and right piston body, and then control medium flow, i.e. control piston movement velocity.
CN201310322225.4A 2013-07-29 2013-07-29 The method of work of the automatic feed machine in a kind of Full-automatic hydraulic forming machine Active CN103395116B (en)

Priority Applications (7)

Application Number Priority Date Filing Date Title
CN201510642906.8A CN105253557A (en) 2013-07-29 2013-07-29 Automatic feeding machine controlled through processor for full-automatic hydraulic forming machine
CN201310322225.4A CN103395116B (en) 2013-07-29 2013-07-29 The method of work of the automatic feed machine in a kind of Full-automatic hydraulic forming machine
CN201510641662.1A CN105217323A (en) 2013-07-29 2013-07-29 The automatic feed machine of the treater control of Full-automatic hydraulic forming machine
CN201510637606.0A CN105253556A (en) 2013-07-29 2013-07-29 Automatic feeding machine of full-automatic hydraulic forming machine
CN201510638394.8A CN105292960A (en) 2013-07-29 2013-07-29 Automatic feeder controlled by processor of hydraulic molding machine
CN201510638746.XA CN105366298A (en) 2013-07-29 2013-07-29 Automatic feeder of hydraulic molding machine controlled by processor
CN201510638581.6A CN105236093A (en) 2013-07-29 2013-07-29 Automatic feeding machine for full-automatic hydraulic forming machine for hollow blocks and bricks

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310322225.4A CN103395116B (en) 2013-07-29 2013-07-29 The method of work of the automatic feed machine in a kind of Full-automatic hydraulic forming machine

Related Child Applications (6)

Application Number Title Priority Date Filing Date
CN201510638581.6A Division CN105236093A (en) 2013-07-29 2013-07-29 Automatic feeding machine for full-automatic hydraulic forming machine for hollow blocks and bricks
CN201510641662.1A Division CN105217323A (en) 2013-07-29 2013-07-29 The automatic feed machine of the treater control of Full-automatic hydraulic forming machine
CN201510642906.8A Division CN105253557A (en) 2013-07-29 2013-07-29 Automatic feeding machine controlled through processor for full-automatic hydraulic forming machine
CN201510637606.0A Division CN105253556A (en) 2013-07-29 2013-07-29 Automatic feeding machine of full-automatic hydraulic forming machine
CN201510638746.XA Division CN105366298A (en) 2013-07-29 2013-07-29 Automatic feeder of hydraulic molding machine controlled by processor
CN201510638394.8A Division CN105292960A (en) 2013-07-29 2013-07-29 Automatic feeder controlled by processor of hydraulic molding machine

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CN103395116A true CN103395116A (en) 2013-11-20
CN103395116B CN103395116B (en) 2015-08-26

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Application Number Title Priority Date Filing Date
CN201510638746.XA Pending CN105366298A (en) 2013-07-29 2013-07-29 Automatic feeder of hydraulic molding machine controlled by processor
CN201510642906.8A Withdrawn CN105253557A (en) 2013-07-29 2013-07-29 Automatic feeding machine controlled through processor for full-automatic hydraulic forming machine
CN201510641662.1A Pending CN105217323A (en) 2013-07-29 2013-07-29 The automatic feed machine of the treater control of Full-automatic hydraulic forming machine
CN201510638394.8A Withdrawn CN105292960A (en) 2013-07-29 2013-07-29 Automatic feeder controlled by processor of hydraulic molding machine
CN201510637606.0A Withdrawn CN105253556A (en) 2013-07-29 2013-07-29 Automatic feeding machine of full-automatic hydraulic forming machine
CN201310322225.4A Active CN103395116B (en) 2013-07-29 2013-07-29 The method of work of the automatic feed machine in a kind of Full-automatic hydraulic forming machine
CN201510638581.6A Withdrawn CN105236093A (en) 2013-07-29 2013-07-29 Automatic feeding machine for full-automatic hydraulic forming machine for hollow blocks and bricks

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CN201510641662.1A Pending CN105217323A (en) 2013-07-29 2013-07-29 The automatic feed machine of the treater control of Full-automatic hydraulic forming machine
CN201510638394.8A Withdrawn CN105292960A (en) 2013-07-29 2013-07-29 Automatic feeder controlled by processor of hydraulic molding machine
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CN105253557A (en) 2016-01-20
CN105292960A (en) 2016-02-03
CN105236093A (en) 2016-01-13
CN103395116B (en) 2015-08-26
CN105253556A (en) 2016-01-20
CN105217323A (en) 2016-01-06
CN105366298A (en) 2016-03-02

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