A press system for controlling board production and method of use thereof

By designing the pressing support part, control plate support assembly, and linkage pressing fixture of the pressing system, the problems of low energy utilization and single-temperature pressing of existing pressing devices are solved, and efficient, stable and rapid pressing of multiple control plates is achieved.

CN120583591BActive Publication Date: 2026-01-09中山市三晶电子科技有限公司
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Patent Information

Application Number
CN202510734007.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-04
Publication Date
2026-01-09
Estimated Expiration
2045-06-04

AI Technical Summary

Technical Problem

Existing pressing devices cannot achieve alternating feeding and pressing, resulting in low energy utilization. They can only perform hot pressing at a single temperature, which cannot meet the different temperature pressing requirements of large batches of control boards, leading to low work efficiency.

Method used

A pressing system was designed, including a pressing support part, multiple control plate support components, a pressing drive mechanism, and a linkage pressing fixture. The system achieves alternating support of multiple control plates and pressing at different temperatures through an adaptive clamping part and a spiral heating coil. The pressing drive mechanism and linkage pressing fixture are used to achieve a fast and stable pressing process.

Benefits of technology

It improves pressing efficiency, ensures the hot melting time of the resin on the control plate surface, realizes efficient alternating pressing of multiple control plates, meets the rapid pressing requirements under different temperature conditions, avoids detachment or tilting during the pressing process, and simplifies the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a pressing system for controlling plate production and a use method thereof, and solves the problem that the existing device cannot alternately realize feeding and pressing of the pressing plate when the pressing plate is running, and the energy utilization rate is low. The system comprises a pressing supporting part, a control plate supporting assembly and a pressing driving mechanism. The pressing supporting part comprises a supporting base, a pressing limiting seat and a detection supporting arm. The pressing driving mechanism comprises a driving motor, a pressing driving part and a supporting adjusting part. The control plate supporting assembly comprises a control plate supporting seat, a self-adapting clamping part and a spiral heating ring. The control plate supporting assembly is provided in multiple groups, can alternately realize supporting and limiting of the control plate to be pressed, can improve the pressing efficiency, can make the resin on the surface of the control plate to be pressed retain enough melting time, and can guarantee the pressing effect of the control plate to be pressed and the pressing part.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of control panel production, and particularly relates to a pressing system for control panel production and a use method thereof. BACKGROUND

[0002] A control panel is a kind of circuit board, which has a wide range of applications, not limited to automatic production equipment, toys such as remote control cars for children, etc. In electronic equipment, the power control panel is responsible for providing current to the equipment, which is called a power controller, and the current required by all components is controlled by it. In the automotive industry, there are many special control panels, such as vehicle refrigerator control panel, automobile LED tail lamp control panel, automobile audio control panel, vehicle GPS positioning control panel, automobile tire pressure monitoring control panel, automobile reversing radar control panel, automobile electronic burglar alarm control panel, automobile ABS controller, etc. Control panel pressing is one of the important processes in PCB manufacturing. In the pressing process, the inner layer board, prepreg (semi-cured sheet) and outer layer board are stacked together in a predetermined order, and then placed in a vacuum hot press for pressing. In the pressing process, the resin in the prepreg will melt and adhere to the copper foil together to form a reliable electrical connection.

[0003] Chinese patent CN113207230A discloses a pressing device for control panel production, which comprises a cavity pressing seat, one side of the cavity pressing seat is provided with a suction structure capable of suction from the upper surface of the cavity pressing seat, the upper side of the cavity pressing seat is provided with a mounting plate, the lower surface of the mounting plate is fixedly connected with a pressing plate in the middle, and the outer frame is fixedly connected around the edge of the lower surface of the mounting plate, the lower surface of the outer frame is provided with a scraper through a reset hinge, and the side away from the reset hinge of the scraper is flat. In the process of realizing the present application, the inventors found that the existing device cannot realize the alternate feeding and pressing of the pressing plate when controlling the corresponding pressing plate to operate, the energy utilization rate is low, and the existing pressing device can only press the control panel at a single temperature using glue, which cannot realize different temperature pressing of the pressing plate and the control panel in one device. For large quantities of control panel pressing, the work efficiency is low. In order to solve the above problems, we propose a pressing system for control panel production and a use method thereof. SUMMARY

[0004] The present application aims at the deficiencies of the prior art, and provides a pressing system for control panel production and a use method thereof, which solves the problems that the existing device cannot realize the alternate feeding and pressing of the pressing plate when controlling the corresponding pressing plate to operate, the energy utilization rate is low, and the existing pressing device can only press the control panel at a single temperature using glue, which cannot realize different temperature pressing of the pressing plate and the control panel in one device.

[0005] The present application is achieved, a press system for control board production, comprising:

[0006] Press bearing part, the press bearing part comprises a bearing base, a press limiting seat and a detection support arm, the press limiting seat and the detection support arm are installed on the bearing base;

[0007] A plurality of control board bearing assemblies distributed in sequence from top to bottom, the control board bearing assemblies are used for bearing and fixing the control board to be pressed, and assisting the surface resin melting of the control board to be pressed;

[0008] A press driving mechanism for adjusting the position of the control board bearing assembly;

[0009] The press driving mechanism comprises:

[0010] A driving motor fixedly installed on the bearing base;

[0011] A press driving part fixedly connected with the output end of the driving motor;

[0012] A bearing adjusting part provided on the bearing base, the bearing adjusting part is connected with the press driving part, and the bearing adjusting part is used for adjusting the position of the plurality of control board bearing assemblies and assisting the feeding and pressing of the control board to be pressed;

[0013] The control board bearing assembly comprises:

[0014] A control board bearing seat connected with the bearing adjusting part, and a control board bearing groove is formed in the control board bearing seat;

[0015] An adaptive clamping part provided in the control board bearing groove, the adaptive clamping part is used for clamping the control board to be pressed;

[0016] A spiral heating coil installed in the adaptive clamping part, the spiral heating coil is electrically connected with a storage battery, and the storage battery is also provided in the adaptive clamping part, and the spiral heating coil is used for preheating the surface resin of the control board to be pressed.

[0017] The adaptive clamping part comprises:

[0018] A clamping motor fixedly installed in the control board bearing seat;

[0019] A clamping adjusting disc fixedly connected with the output end of the clamping motor, the clamping adjusting disc is rotatably installed in the control board bearing groove;

[0020] At least one clamping adjusting groove is formed in the clamping adjusting disc.

[0021] A clamping slider slidingly installed in the clamping adjusting groove.

[0022] The self-adapting clamping part further comprises:

[0023] A plate clamping seat fixedly connected with the clamping slider, the plate clamping seat being used for clamping and fixing the control panel to be pressed;

[0024] At least one set of guide sliding rails are circumferentially distributed on the control panel supporting seat, the guide sliding rails being fixedly installed on the control panel supporting seat, and the clamping slider being slidingly connected with the guide sliding rails.

[0025] The pressing limiting seat is provided with:

[0026] A controller, the controller being in communication connection with the driving motor, the clamping motor and the battery respectively, and the controller being used for controlling the driving motor, the clamping motor and the battery to open and close;

[0027] A linkage pressing jig slidingly installed in the pressing limiting seat, the linkage pressing jig being used for adsorbing the pressing part and driving the pressing part to be attached to the control panel to be pressed, and the linkage pressing jig being connected with the pressing driving part.

[0028] The pressing driving part comprises:

[0029] A first gear, the first gear being arranged outside the driving motor, and the first gear being fixedly connected with the output end of the driving motor;

[0030] A translation gear seat, the translation gear seat being sleeved outside the first gear, and the translation gear seat being in meshing transmission with the first gear;

[0031] A pressing driving rod fixedly connected with the translation gear seat, the pressing driving rod being connected with the linkage pressing jig;

[0032] A gear seat guide table fixedly installed on the supporting base, the gear seat guide table being slidingly connected with the connecting block at the bottom of the translation gear seat.

[0033] The linkage pressing jig comprises:

[0034] A pressing jig seat;

[0035] A guide lifting seat fixedly connected with the pressing jig seat, the guide lifting seat being slidingly installed in the pressing limiting seat;

[0036] An inclined pushing rod, the inclined pushing rod being arranged between the guide lifting seat and the pressing driving rod, and both ends of the inclined pushing rod being hingedly connected with the guide lifting seat and the pressing driving rod respectively;

[0037] The pressing execution part is arranged in the pressing jig seat, and is used for adsorbing a pressing piece and performing pressing of the pressing piece and a control panel to be pressed.

[0038] The pressing execution part comprises:

[0039] A pressing oil cylinder is fixedly installed in the pressing jig seat.

[0040] A pressing execution disc is fixedly connected with the telescopic end of the pressing oil cylinder, and is slidingly installed in the pressing jig seat.

[0041] A negative pressure air pump is installed on the pressing execution disc, and is electrically connected with the controller.

[0042] The supporting adjusting part comprises:

[0043] At least one set of first rotating wheels is arranged on one side of the first gear, and the first rotating wheels are fixedly connected with the first gear.

[0044] A second rotating wheel is arranged on one side of the first rotating wheel, and the second rotating wheel is rotatably connected with the first rotating wheel through a transmission belt.

[0045] A rotating wheel linkage shaft is used for connecting a plurality of sets of the first rotating wheels, and two ends of the rotating wheel linkage shaft are fixedly connected with the first rotating wheels, respectively.

[0046] A second gear is arranged on one side of the second rotating wheel, and the second gear is fixedly connected with the second rotating wheel through a connecting rod.

[0047] The supporting adjusting part further comprises:

[0048] A third gear is arranged on one side of the second gear, and the third gear is meshingly connected with the second gear.

[0049] A linkage swing arm is fixedly connected with the third gear.

[0050] A first adjusting block is installed on one end of the linkage swing arm, and the first adjusting block is rotatably connected with the linkage swing arm, and is fixedly connected with one set of the clamping adjusting discs through a supporting linkage rod.

[0051] A second adjusting block is rotatably connected with the other end of the linkage swing arm, and is fixedly connected with another set of the clamping adjusting discs through a supporting linkage rod.

[0052] The adjusting guide frame is fixedly installed on the supporting base, and a transverse sliding groove and a longitudinal sliding groove are arranged in the adjusting guide frame respectively, the first adjusting block is slidingly installed in the longitudinal sliding groove, and the second adjusting block is slidingly installed in the transverse sliding groove.

[0053] In another aspect, the embodiment of the present application provides a use method of the pressing system for control board production, which comprises the following steps:

[0054] In step S10, in operation, a worker or a transfer mechanical arm places a control board to be pressed on the clamping sliding block, the clamping sliding block supports the control board to be pressed, then the controller controls the clamping motor to be started, the clamping motor drives the clamping adjusting disc and the clamping adjusting groove to rotate, the clamping adjusting groove drives the clamping sliding block and the plate clamping seat to slide along the guide sliding rail when the clamping adjusting groove rotates, so that the plate clamping seat clamps and fixes the control board to be pressed.

[0055] In step S20, after the plate clamping seat clamps and fixes the control board to be pressed, the storage battery is started, the storage battery supplies power to the spiral heating coil, the spiral heating coil heats the control board to be pressed, so that the semi-cured resin pre-impregnated on the surface of the control board to be pressed is melted, and the control board to be pressed is conveniently attached to the pressing part.

[0056] In step S30, the pressing part is placed below the pressing execution disc by using a transfer mechanical hand or manual operation, then the controller controls the negative pressure air pump to be started, the negative pressure air pump pumps out air in the negative pressure adsorption groove, so that the negative pressure adsorption groove forms negative pressure in the contact area with the pressing part, and negative pressure adsorption of the pressing part is realized.

[0057] In step S40, the controller controls the driving motor to be started, the driving motor drives the first gear to rotate, the first gear drives the horizontal movement of the translation gear seat, the translation gear seat drives the movement of the pressing driving rod, so that the pressing driving rod drives the downward movement of the inclined pushing rod and the guide lifting seat, the downward movement of the guide lifting seat drives the downward movement of the pressing execution disc, the negative pressure air pump, the negative pressure adsorption disc and the pressing part to the pressing station.

[0058] Step S50, when the controller controls the driving motor to start, the first gear can drive the first runner and the runner linkage shaft to rotate, so that the first runner drives the second gear and the third gear to rotate, when the third gear rotates, it can drive the linkage swing arm to swing, and when the linkage swing arm swings, it pulls the first adjusting block and the second adjusting block to slide along the longitudinal sliding groove and the transverse sliding groove respectively, so that the first adjusting block and the second adjusting block drive two groups of clamping adjusting discs to move alternately, when one group of clamping adjusting discs drives the to-be-pressed control panel to move to the pressing station, the controller controls the pressing oil cylinder to start, so that the piston rod of the pressing oil cylinder drives the pressing execution disc, the negative pressure adsorption disc and the pressing piece to press the to-be-pressed control panel.

[0059] Step S60, after pressing, the controller controls the negative pressure air pump to close, and then the pressing piece is separated from the negative pressure adsorption seat, and the controller controls the driving motor to start, the first gear can drive the first runner and the runner linkage shaft to rotate, so that the first runner drives the second gear and the third gear to rotate, when the third gear rotates, it can drive the linkage swing arm to swing, and when the linkage swing arm swings, it pulls the first adjusting block and the second adjusting block to slide along the longitudinal sliding groove and the transverse sliding groove respectively, so that the first adjusting block and the second adjusting block drive two groups of clamping adjusting discs to move alternately, realize the pressing of another group of to-be-pressed control panel and pressing piece, when two groups of to-be-pressed control panel are pressed, the to-be-pressed control panel is taken out by using the transfer manipulator or manual operation.

[0060] Compared with the prior art, the embodiment of the application has the following beneficial effects:

[0061] The control panel supporting assembly is provided with a plurality of groups, which can alternately support and limit the to-be-pressed control panel, thereby improving the pressing efficiency, and ensuring that the surface resin of the to-be-pressed control panel has enough hot melting time, thereby ensuring the pressing effect of the to-be-pressed control panel and the pressing piece. Meanwhile, the plurality of control panel supporting assemblies ensure efficient alternating pressing operation of the to-be-pressed control panel, and the spiral heating ring can assist in heating the surface resin of the to-be-pressed control panel, so that the surface resin of the to-be-pressed control panel meets the demand of fast pressing of the to-be-pressed control panel and the pressing piece under different temperature conditions. The control panel supporting assembly is composed of an adaptive clamping part and a spiral heating ring, and the adaptive clamping part and the spiral heating ring work together to avoid the to-be-pressed control panel from falling off or tilting during pressing, and can assist in heating the surface resin of the to-be-pressed control panel when the to-be-pressed control panel is stably clamped, which is beneficial to the pressing of the to-be-pressed control panel and the pressing piece.

[0062] The linkage pressing jig can work in cooperation with the self-adaptive clamping part, so that the multiple groups of to-be-pressed control plates and pressing pieces are attached, and the linkage pressing jig is driven by the pressing driving part, so that the position adjustment is convenient, and the operation is simpler than the prior art.

[0063] The pressing driving mechanism is composed of a pressing driving part and a supporting adjusting part, and the pressing driving part and the supporting adjusting part work in cooperation to drive the linkage pressing jig and the self-adaptive clamping part respectively, so that the multiple groups of to-be-pressed control plates and pressing pieces are quickly pressed, the supporting adjusting part is arranged to facilitate switching of the pressing station, and the pressing efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0064] Figure 1 is a structural schematic view of a pressing system for control plate production provided by the application.

[0065] Figure 2 is a front view of the pressing system for control plate production provided by the application.

[0066] Figure 3 is a side view of the pressing system for control plate production provided by the application.

[0067] Figure 4 is a top view of the pressing system for control plate production provided by the application.

[0068] Figure 5 is a structural schematic view of a control plate supporting assembly provided by the application.

[0069] Figure 6 is an isometric view of the control plate supporting assembly provided by the application.

[0070] Figure 7 is a front view of the control plate supporting assembly provided by the application.

[0071] Figure 8 is a top view of the control plate supporting assembly provided by the application.

[0072] Figure 9 is a structural schematic view of a linkage pressing jig provided by the application.

[0073] Figure 10 is a front view of the linkage pressing jig provided by the application.

[0074] Figure 11 is Figure 10 an A-A sectional view.

[0075] Figure 12 is a structural schematic view of a pressing execution part provided by the application.

[0076] Figure 13 is the bottom view of the pressing execution part provided by the present application.

[0077] Figure 14 is the structural schematic view of the pressing driving mechanism provided by the present application.

[0078] Figure 15 is the axonometric view of the pressing driving mechanism provided by the present application.

[0079] Figure 16 is the front view of the pressing driving mechanism provided by the present application.

[0080] Figure 17 is the side view of the pressing driving mechanism provided by the present application.

[0081] In the figure: 1-pressing support part, 11-support base, 12-pressing limiting seat, 13-detection support arm, 2-pressing driving mechanism, 21-driving motor, 22-pressing driving part, 221-first gear, 222-translation gear seat, 223-pressing driving rod, 224-gear seat guide table, 23-support adjusting part, 231-first rotating wheel, 232-second rotating wheel, 233-rotating wheel linkage shaft, 234-second gear, 235-third gear, 236-adjusting guide frame, 237-linkage swing arm, 238-first adjusting block, 239-second adjusting block, 24-support linkage rod, 3-linkage pressing fixture, 31-pressing fixture seat, 32-guide lifting seat, 33-inclined pushing rod, 34-pressing execution part, 341-pressing oil cylinder, 342-pressing execution disc, 4-control panel support assembly, 41-control panel support seat, 42-control panel support slot, 43-self-adapting clamping part, 431-clamping motor, 432-clamping adjusting disc, 433-clamping adjusting slot, 434-guide slide rail, 435-clamping slide block, 436-panel clamping seat, 44-spiral heating ring, 5-controller, 6-control panel to be pressed, 7-pressing part, 8-against light photoelectric sensor. DETAILED DESCRIPTION

[0082] The prior device cannot alternately realize feeding and pressing of the pressing plate when controlling the corresponding pressing plate to operate, the energy utilization rate is low, and the pressing device using glue pressing can only heat press the control plate at a single temperature, cannot realize pressing of the control plate and the pressing plate at different temperatures in one equipment, and the working efficiency is low for large batch control plate pressing. In order to solve the above problems, the present application provides a pressing system for control plate production and a use method thereof. Briefly, the pressing system comprises a pressing support part 1, a plurality of control plate support assemblies 4 distributed in sequence from top to bottom, and a pressing driving mechanism 2 for adjusting the position of the control plate support assembly 4. The pressing support part 1 comprises a support base 11, a pressing limiting seat 12 and a detection support arm 13. The pressing driving mechanism 2 comprises a driving motor 21, a pressing driving part 22 and a support adjusting part 23. The control plate support assembly 4 comprises a control plate support seat 41, a self-adaptive clamping part 43 and a spiral heating coil 44.

[0083] The embodiment of the present application provides a pressing system for control plate production. Figures 1-4 As shown in the figure, the pressing system for control plate production comprises:

[0084] The pressing support part 1 comprises a support base 11, a pressing limiting seat 12 and a detection support arm 13. The pressing limiting seat 12 and the detection support arm 13 are both mounted on the support base 11.

[0085] In the embodiment, one side of the support base 11 is fixedly connected with the pressing limiting seat 12 in a tenon joint or rivet joint mode, the other side of the support base 11 is fixedly connected with the detection support arm 13 in a clamping or fastening bolt connection mode, the support base 11 is specifically a rectangular seat or a circular seat, in order to conveniently judge whether the to-be-pressed control plate 6 is fixedly clamped by the control plate support assembly 4, a plurality of pairs of photoelectric sensors 8 are mounted on the detection support arm 13, the pairs of photoelectric sensors 8 are used for detecting whether the to-be-pressed control plate 6 exists in the control plate support assembly 4, and the pairs of photoelectric sensors 8 are electrically connected with the controller 5.

[0086] A plurality of control plate support assemblies 4 distributed in sequence from top to bottom, the control plate support assembly 4 is used for supporting and fixing the to-be-pressed control plate 6 and assisting in melting the resin on the surface of the to-be-pressed control plate 6.

[0087] In the embodiment, the to-be-pressed control plate 6 is a medium-frequency power supply control plate, a high-frequency power supply control plate, an RFID wireless curtain control plate, a cabinet type cooling and heating air conditioner control plate, an electric water heater control plate, a household range hood control plate, a washing machine control plate, a humidifier control plate, a dishwasher control plate, a commercial soybean milk machine control plate or a ceramic stove control plate.

[0088] A pressing driving mechanism 2 for adjusting the position of the control board supporting assembly 4;

[0089] The pressing driving mechanism 2 comprises:

[0090] A driving motor 21 fixedly installed on the supporting base 11, which is fixedly installed on the supporting base 11 by fastening bolts or clamps;

[0091] A pressing driving part 22 fixedly connected with the output end of the driving motor 21;

[0092] A supporting adjusting part 23 arranged on the supporting base 11, which is connected with the pressing driving part 22 and used for adjusting the position of a plurality of control board supporting assemblies 4 and assisting the feeding and pressing of the control board to be pressed.

[0093] As shown in Figures 5-8 The control board supporting assembly 4 comprises:

[0094] A control board supporting seat 41 connected with the supporting adjusting part 23, which is internally provided with a control board supporting groove 42;

[0095] An adaptive clamping part 43 arranged in the control board supporting groove 42, which is used for clamping the control board to be pressed;

[0096] A spiral heating coil 44 installed in the adaptive clamping part 43, which is electrically connected with a storage battery arranged in the adaptive clamping part 43, and used for preheating the surface resin of the control board to be pressed.

[0097] The control plate supporting assembly 4 is provided with multiple groups, which can alternately support and limit the to-be-pressed control plate 6, thereby improving the pressing efficiency, reserving sufficient hot melting time for the surface resin of the to-be-pressed control plate 6, and guaranteeing the pressing effect of the to-be-pressed control plate 6 and the pressing piece 7. Meanwhile, the setting of multiple control plate supporting assemblies 4 guarantees the efficient and alternating pressing operation of the to-be-pressed control plate 6. The spiral heating ring 44 can also assist in heating the surface resin of the to-be-pressed control plate 6, so that the surface resin of the to-be-pressed control plate 6 meets the requirement of fast pressing of the to-be-pressed control plate 6 and the pressing piece 7 under different temperature conditions. The control plate supporting assembly 4 is composed of the self-adaptive clamping part 43 and the spiral heating ring 44. The cooperation of the self-adaptive clamping part and the spiral heating ring 44 can avoid the falling or tilting of the to-be-pressed control plate 6 during pressing, and can also assist in heating the surface resin of the to-be-pressed control plate 6 when the to-be-pressed control plate 6 is stably clamped, which is beneficial to the pressing of the to-be-pressed control plate 6 and the pressing piece 7.

[0098] In the further preferred embodiment of the present application, as shown in the figure, Figures 5-8 The self-adaptive clamping part 43 comprises:

[0099] The clamping motor 431 is fixedly installed in the control plate supporting seat 41. In the embodiment, the clamping motor 431 is a single-phase asynchronous motor. The clamping motor 431 and the controller 5 are connected through Bluetooth or DTU communication.

[0100] The clamping adjusting disc 432 is fixedly connected with the output end of the clamping motor 431 and is rotatably installed in the control plate supporting groove 42. The clamping adjusting disc 432 is a hollow disc or a rectangular disc. One side of the clamping adjusting disc 432 is fixedly connected with the output end of the clamping motor 431 through interference fit.

[0101] In the embodiment, the spiral heating ring 44 is embedded in the middle of the clamping adjusting disc 432 in the form of a worm gear. A storage battery for supplying power to the spiral heating ring 44 is also embedded in the clamping adjusting disc 432. The storage battery is electrically connected with the spiral heating ring 44. The spiral heating ring 44 is embedded with a resistance wire. The outer part of the spiral heating ring 44 is sleeved with a stainless steel or high manganese steel layer. The resistance wire is made of high-resistance electric heating alloy wire. In order to facilitate heat dissipation, multiple heat dissipation fins are arranged on the guide sliding rail 434.

[0102] At least one clamping adjusting groove 433 is arranged in the clamping adjusting disc 432.

[0103] The clamping sliding block 435 is slidably installed in the clamping adjusting groove 433.

[0104] In the embodiment, the clamping adjusting grooves 433 are circumferentially arranged on the upper surface of the clamping adjusting disc 432, and the clamping adjusting grooves 433 are arc grooves or rectangular grooves, and the clamping sliding blocks 435 are circular sliding blocks, and the inner walls of the clamping adjusting grooves 433 are polished, and the number of the clamping adjusting grooves 433 is three, four or six.

[0105] The plate clamping seat 436 fixedly connected with the clamping sliding block 435 is used for clamping and fixing the control panel 6 to be pressed.

[0106] At least one set of guide sliding rails 434 is circumferentially arranged on the control panel supporting seat 41, the guide sliding rails 434 are fixedly installed on the control panel supporting seat 41, and the clamping sliding block 435 is in sliding connection with the guide sliding rails 434.

[0107] In the embodiment, the plate clamping seat 436 is fixedly connected with the clamping sliding block 435 in a threaded or buckling manner, the plate clamping seat 436 is an arc seat or a rectangular seat, the number of the guide sliding rails 434 is consistent with the number of the clamping adjusting grooves 433, the guide sliding rails 434 are rectangular sliding rails, and the guide sliding rails 434 are fixedly installed on the control panel supporting seat 41 in a tenon joint or riveting manner.

[0108] In work, the worker or the transfer mechanical arm places the control panel 6 to be pressed in the control panel supporting groove 42, then the controller 5 controls the clamping motor 431 to be started, the clamping motor 431 is started to drive the clamping adjusting disc 432 and the clamping adjusting grooves 433 to rotate, the clamping adjusting grooves 433 push the clamping sliding block 435 and the plate clamping seat 436 to slide along the guide sliding rails 434 when rotating, so that the plate clamping seat 436 clamps and fixes the control panel 6 to be pressed.

[0109] After the plate clamping seat 436 clamps and fixes the control panel 6 to be pressed, the battery is turned on, the battery supplies power to the spiral heating coil 44, the spiral heating coil 44 heats the control panel 6 to be pressed, so that the semi-cured resin pre-impregnated on the surface of the control panel 6 to be pressed is melted, and the control panel 6 to be pressed is conveniently attached to the pressing part 7.

[0110] In further preferable embodiments of the present application, as shown in Figures 1-2 The pressing limiting seat 12 is provided with:

[0111] The controller 5 is in communication connection with the driving motor 21, the clamping motor 431 and the battery respectively, and is used for controlling the driving motor 21, the clamping motor 431 and the battery to be opened and closed.

[0112] In the embodiment, the controller 5 is fixedly installed on the side wall of the pressing limiting seat 12 by means of fastening bolts or buckles, and the controller 5 is specifically a PLC controller.

[0113] The linkage pressing jig 3 is slidably installed in the pressing limiting seat 12, and is used for adsorbing the pressing part 7 and driving the pressing part 7 to be attached to the control panel 6 to be pressed.

[0114] The linkage pressing jig 3 can work in cooperation with the self-adaptive clamping part 43, so that the attachment of the multiple groups of control panels 6 to be pressed and the pressing part 7 is realized, and the linkage pressing jig 3 is driven by the pressing driving part 22, so that the position adjustment is convenient and the operation is simpler than that of the prior art.

[0115] In the further preferred embodiment of the present application, as shown in Figures 14-17 The pressing driving part 22 comprises:

[0116] The first gear 221 is arranged on the outside of the driving motor 21, and the first gear 221 is fixedly connected with the output end of the driving motor 21, and the first gear 221 is specifically a one-half, one-third or one-fourth incomplete gear, and one side of the first gear 221 is fixedly connected with the output end of the driving motor 21 in a way of tenon joint or interference fit;

[0117] The translation gear seat 222 is sleeved on the outside of the first gear 221, and the translation gear seat 222 is in meshing transmission with the first gear 221, and the translation gear seat 222 is specifically a rectangular gear seat with an internal hollow, and the inner wall of the translation gear seat 222 is symmetrically inclined with two groups of teeth, and the teeth are in meshing transmission with the first gear 221;

[0118] The pressing driving rod 223 is fixedly connected with the translation gear seat 222, and the pressing driving rod 223 is connected with the linkage pressing jig 3;

[0119] The gear seat guide table 224 is fixedly installed on the supporting base 11, and the gear seat guide table 224 is slidably connected with the connecting block at the bottom of the translation gear seat 222.

[0120] In the embodiment, one end of the pressing driving rod 223 is welded or riveted with the translation gear seat 222, the gear seat guide table 224 is a rectangular seat or a T-shaped seat, the gear seat guide table 224 is fixedly installed on the upper surface of the bearing base 11 in a tenon joint or riveting manner, the bottom of the translation gear seat 222 is fixedly connected with a connecting block in a fastening bolt or welding manner, the lower side of the connecting block extends into the gear seat guide table 224 and is in sliding connection with the gear seat guide table 224, and the gear seat guide table 224 is arranged to guide and limit the translation gear seat 222.

[0121] The embodiment of the present application is provided with the pressing driving mechanism 2, which is composed of the pressing driving part 22 and the bearing adjusting part 23, and the pressing driving part 22 and the bearing adjusting part 23 work in cooperation to drive the linkage pressing jig 3 and the self-adaptive clamping part 43 respectively, so that the rapid pressing of the plurality of groups of control boards 6 to be pressed and the pressing parts 7 is realized, the setting of the bearing adjusting part 23 facilitates the switching of the pressing stations and improves the pressing efficiency.

[0122] In the further preferred embodiment of the present application, as shown in the figure, Figures 9-11 The linkage pressing jig 3 comprises:

[0123] The pressing jig seat 31 is a hollow circular seat or a rectangular seat, and a plurality of electric heating rods are arranged on the inner wall of the pressing jig seat 31, so that the pressing part 7 can be conveniently preheated, thereby facilitating the adhesion of the resin and the pressing part 7;

[0124] The guide lifting seat 32 is fixedly connected with the pressing jig seat 31 and is slidingly installed in the pressing limiting seat 12;

[0125] The inclined push rod 33 is arranged between the guide lifting seat 32 and the pressing driving rod 223, and the two ends of the inclined push rod 33 are hingedly connected with the guide lifting seat 32 and the pressing driving rod 223, respectively;

[0126] The pressing execution part 34 is arranged in the pressing jig seat 31 and is used for adsorbing the pressing part 7 and performing the adhesion of the pressing part 7 and the control board 6 to be pressed.

[0127] The embodiment of the present application is provided with the pressing execution part 34, and the setting of the pressing execution part 34 realizes the fast adsorption of the pressing part 7, thereby facilitating the hot pressing of the pressing part 7 and the control board 6 to be pressed.

[0128] In the embodiment, the guide lifting seat 32 is a T-shaped seat or an L-shaped seat structure, and is in sliding connection with the pressing limiting seat 12.

[0129] In the further preferable embodiment of the present application, as shown in Figures 12-13 The pressing execution part 34 comprises:

[0130] The pressing oil cylinder 341 is fixedly installed in the pressing jig seat 31, and is electrically connected with the controller 5.

[0131] The pressing execution disc 342 is fixedly connected with the telescopic end of the pressing oil cylinder 341, and is slidingly installed in the pressing jig seat 31. The pressing execution disc 342 is a hollow rectangular disc or a circular disc, and the side wall of the pressing execution disc 342 is slidingly connected with the inner wall of the pressing jig seat 31.

[0132] The negative pressure air pump is installed on the pressing execution disc 342, and is electrically connected with the controller 5. The negative pressure air pump is fixedly installed on the upper wall of the pressing execution disc 342 by means of tenon joint or clamping.

[0133] It should be noted that the pressing piece 7 is a lens card, a resistor, a capacitor or a control chip, and the shape of the pressing piece 7 is circular or rectangular structure.

[0134] In work, the pressing piece 7 is placed below the pressing execution disc 342 by using a transfer manipulator or manual operation, and then the controller 5 controls the negative pressure air pump to be opened. The negative pressure air pump extracts the air in the negative pressure adsorption groove, so that the negative pressure is formed in the contact area between the negative pressure adsorption groove and the pressing piece 7, thereby realizing the negative pressure adsorption of the pressing piece 7.

[0135] Then the controller 5 controls the driving motor 21 to be opened, and the driving motor 21 is started to drive the first gear 221 to rotate, so that the horizontal movement of the translation gear seat 222 is driven by the rotation of the first gear 221. The translation gear seat 222 drives the pressing driving rod 223 to move, so that the pressing driving rod 223 pulls the inclined push rod 33 and the guide lifting seat 32 to move downward. When the guide lifting seat 32 moves downward, the pressing execution disc 342, the negative pressure air pump, the negative pressure adsorption disc and the pressing piece 7 are pulled to move downward to the pressing station.

[0136] In the further preferable embodiment of the present application, as shown in Figures 14-17 The supporting adjusting part 23 comprises:

[0137] The first rotating wheel 231 is arranged on one side of the first gear 221, and is fixedly connected with the first gear 221.

[0138] The second rotating wheel 232 is arranged on one side of the first rotating wheel 231, and is rotatably connected with the first rotating wheel 231 by means of a transmission belt.

[0139] Rotary linkage shaft 233 is used to connect multiple sets of the first rotating wheel 231, and the two ends of the rotary linkage shaft 233 are respectively fixedly connected to the first rotating wheel 231.

[0140] In this embodiment, the first rotating wheel 231 and the side wall of the first gear 221 are fixedly connected by a connecting rod or a rotating shaft. There are two sets of the first rotating wheel 231 and the second rotating wheel 232, and the first rotating wheel 231 and the second rotating wheel 232 are symmetrically arranged about the support base 11. The two ends of the rotating wheel linkage shaft 233 are fixedly connected by a plug or tenon joint.

[0141] The second gear 234 is disposed on one side of the second rotating wheel 232, and the second gear 234 and the second rotating wheel 232 are fixedly connected by a connecting rod.

[0142] The third gear 235 is disposed on one side of the second gear 234, and the third gear 235 meshes with the second gear 234 for transmission.

[0143] Linkage swing arm 237 is fixedly connected to the third gear 235.

[0144] It should be noted that the second gear 234 is fixedly connected to the side wall of the second rotating wheel 232 by a connecting rod or a rotating shaft, while the center of the third gear 235 is riveted or snapped to the middle of the linkage swing arm 237.

[0145] A first adjusting block 238 is installed at one end of the linkage swing arm 237. The first adjusting block 238 is rotatably connected to the linkage swing arm 237, and the first adjusting block 238 is fixedly connected to a set of clamping adjusting discs 432 through the supporting linkage rod 24.

[0146] The second adjusting block 239 is rotatably connected to the other end of the linkage swing arm 237, and the second adjusting block 239 is also fixedly connected to another set of clamping adjusting discs 432 via the supporting linkage rod 24.

[0147] The adjustable guide frame 236 is fixedly installed on the support base 11, and the adjustable guide frame 236 is provided with a transverse slide groove and a longitudinal slide groove respectively. The first adjusting block 238 is slidably installed in the longitudinal slide groove, and the second adjusting block 239 is slidably installed in the transverse slide groove.

[0148] In the embodiment, the first adjusting block 238 and the second adjusting block 239 are rectangular blocks or rectangular seats, the first adjusting block 238 and the second adjusting block 239 are rotatably connected with both ends of the linkage swing arm 237 by bearings or rollers respectively, the first adjusting block 238 and the second adjusting block 239 are symmetrically arranged relative to the linkage swing arm 237, the adjusting guide frame 236 is specifically a cross-shaped frame structure, the bottom of the adjusting guide frame 236 is fixedly installed on the supporting base 11 in a clamping or tenon connection manner, the first adjusting block 238 moves along the longitudinal sliding slot, the second adjusting block 239 moves along the transverse sliding slot, the adjusting guide frame 236 is arranged to guide and limit the first adjusting block 238 and the second adjusting block 239, and also to ensure that the first adjusting block 238 and the second adjusting block 239 respectively drive two groups of the clamping adjusting discs 432 to alternately move up and down, so that the two groups of the control plates 6 to be pressed and combined alternately press and combine, the sidewalls of the first adjusting block 238 and the second adjusting block 239 are connected with the supporting linkage rods 24 in a plug-in or threaded connection manner, one end of the supporting linkage rod 24 away from the first adjusting block 238 and the second adjusting block 239 is plug-in connected with the clamping adjusting disc 432.

[0149] In work, when the controller 5 controls the driving motor 21 to start, the driving motor 21 starts to drive the first gear 221 to rotate, the first gear 221 can drive the first rotating wheel 231 and the rotating wheel linkage shaft 233 to rotate, so that the first rotating wheel 231 drives the second gear 234 and the third gear 235 to rotate, when the third gear 235 rotates, the linkage swing arm 237 swings, the first adjusting block 238 and the second adjusting block 239 are respectively pulled to slide along the longitudinal sliding slot and the transverse sliding slot, so that the first adjusting block 238 and the second adjusting block 239 respectively drive two groups of the clamping adjusting discs 432 to alternately move up and down, when one group of the clamping adjusting discs 432 drives the control plate 6 to be pressed and combined to move to the pressing and combining position, the controller 5 controls the pressing and combining oil cylinder 341 to start, so that the piston rod of the pressing and combining oil cylinder 341 drives the pressing and combining executing disc 342, the negative pressure adsorption disc and the pressing and combining part 7 to press and combine with the control plate 6 to be pressed and combined;

[0150] After the pressing is completed, the controller 5 controls the negative pressure air pump to be closed, and then the pressing part 7 is separated from the negative pressure adsorption seat, and the controller 5 controls the driving motor 21 to be started, the driving motor 21 drives the first gear 221 to rotate, the first gear 221 drives the first rotating wheel 231, the rotating wheel linkage shaft 233, the second gear 234 and the third gear 235 to rotate, when the third gear 235 rotates, the linkage swing arm 237 swings, the first adjusting block 238 and the second adjusting block 239 are pulled to slide along the longitudinal sliding groove and the transverse sliding groove respectively, the two groups of clamping adjusting discs 432 are alternately moved, the pressing of the other group of the to-be-pressed control panel 6 and the pressing part 7 is realized, and when the two groups of the to-be-pressed control panel 6 are pressed, the to-be-pressed control panel 6 that is pressed is taken out by using a transfer manipulator or manual operation.

[0151] In addition, the embodiment of the present application also provides a use method of the pressing system for control panel production.

[0152] In step S10, during work, a worker or a transfer manipulator places the to-be-pressed control panel 6 above the clamping sliding block 435, the clamping sliding block 435 supports the to-be-pressed control panel 6, and then the controller 5 controls the clamping motor 431 to be started, the clamping motor 431 drives the clamping adjusting disc 432 and the clamping adjusting groove 433 to rotate, the clamping adjusting groove 433 drives the clamping sliding block 435 and the panel clamping seat 436 to slide along the guide sliding rail 434, so that the panel clamping seat 436 clamps and fixes the to-be-pressed control panel 6.

[0153] In step S20, after the panel clamping seat 436 clamps and fixes the to-be-pressed control panel 6, the storage battery is opened, the storage battery supplies power to the spiral heating coil 436, the spiral heating coil 44 heats the to-be-pressed control panel 6, the semi-cured resin on the surface of the to-be-pressed control panel 6 is melted by heat, and the to-be-pressed control panel 6 is conveniently attached to the pressing part 7.

[0154] In step S30, the transfer manipulator or manual operation is used to place the pressing part 7 below the pressing execution disc 342, and then the controller 5 controls the negative pressure air pump to be started, the negative pressure air pump pumps out air in the negative pressure adsorption groove, so that a negative pressure is formed in the contact area between the negative pressure adsorption groove and the pressing part 7, and the negative pressure adsorption of the pressing part 7 is realized.

[0155] Step S40, then the controller 5 controls the drive motor 21 open, drive motor 21 start can drive the first gear 221 rotation, the first gear 221 rotation can drive the horizontal movement of the translation gear seat 222, translation gear seat 222 drive the compression drive rod 223 moves, so that the compression drive rod 223 pull the inclined push rod 33 and guide lifting seat 32 down, the guide lifting seat 32 down pull compression execution disk 342, negative pressure air pump, negative pressure adsorption disk and compression piece 7 down to the compression station.

[0156] Step S50, in work, when the controller 5 controls the drive motor 21 open, drive motor 21 start drive the first gear 221 rotation, the first gear 221 can drive the first runner 231, runner linkage shaft 233 rotation, so that the first runner 231 drive the second gear 234 and the third gear 235 rotation, when the third gear 235 rotation can drive linkage swing arm 237 swing, linkage swing arm 237 swing pull the first adjusting block 238 and the second adjusting block 239 along the longitudinal slot and transverse slot respectively, so that the first adjusting block 238, the second adjusting block 239 respectively drive two groups of the clamping adjusting disc 432 alternately up and down, when a group of clamping adjusting disc 432 drive the to be compressed control board 6 to the compression station, the controller 5 controls the compression oil cylinder 341 start, so that the compression oil cylinder 341 piston rod drive compression execution disk 342, negative pressure adsorption disk and compression piece 7 and to be compressed control board 6 compression.

[0157] Step S60, after compression, the controller 5 controls the negative pressure air pump to close, then make the compression piece 7 and negative pressure adsorption seat separation, at the same time the controller 5 control drive motor 21 open, drive motor 21 start drive the first gear 221 rotation, the first gear 221 can drive the first runner 231, runner linkage shaft 233 rotation, so that the first runner 231 drive the second gear 234 and the third gear 235 rotation, when the third gear 235 rotation can drive linkage swing arm 237 swing, linkage swing arm 237 swing pull the first adjusting block 238 and the second adjusting block 239 along the longitudinal slot and transverse slot respectively, realize two groups of the clamping adjusting disc 432 alternately move, realize the compression of another group of to be compressed control board 6 and compression piece 7, when two groups of the to be compressed control board 6 compression, use the transfer manipulator or artificial operation mode to take out the to be compressed control board 6 compression finished.

[0158] In summary, the present application provides a press system for control plate production and a method for using the same. The control plate production press system comprises a control plate supporting assembly 4, which is provided in multiple sets and can alternately support and position the control plate 6 to be pressed. The control plate production press system can improve the pressing efficiency and ensure that the surface resin of the control plate 6 to be pressed has enough melting time, thereby ensuring the pressing effect of the control plate 6 to be pressed and the pressing member 7. The control plate supporting assembly 4 comprises an adaptive clamping part 43 and a spiral heating coil 44. The adaptive clamping part and the spiral heating coil 44 work together to avoid the control plate 6 to be pressed from falling off or tilting during pressing. In addition, the adaptive clamping part and the spiral heating coil 44 can assist in heating the surface resin of the control plate 6 to be pressed when the control plate 6 to be pressed is stably clamped, which is beneficial to the pressing of the control plate 6 to be pressed and the pressing member 7.

[0159] It should be noted that, for the foregoing embodiments, in order to simply describe, they are all expressed as a series of action combinations, but those skilled in the art should know that the present application is not limited by the action sequence described, because according to the present application, certain steps can be performed in other sequences or simultaneously. Secondly, those skilled in the art should know that the embodiments described in the specification all belong to preferred embodiments, and the actions and modules involved are not necessarily necessary for the present application.

Claims

1. A pressing system for controlling the production of plates, comprising: a pressing support part (1), the pressing support part (1) comprising a support base (11), a pressing limiting seat (12) and a detection support arm (13), the pressing limiting seat (12) and the detection support arm (13) being installed on the support base (11); characterized in that a plurality of control plate support assemblies (4) are sequentially distributed from top to bottom, the control plate support assemblies (4) being used for supporting and fixing the to-be-pressed control plate (6) and assisting in melting the surface resin of the to-be-pressed control plate (6); a pressing driving mechanism (2) for adjusting the position of the control plate support assembly (4); wherein the pressing driving mechanism (2) comprises: a driving motor (21) fixedly installed on the support base (11); a pressing driving part (22) fixedly connected with the output end of the driving motor (21); a support adjusting part (23) provided on the support base (11), the support adjusting part (23) being connected with the pressing driving part (22), the support adjusting part (23) being used for adjusting the position of a plurality of control plate support assemblies (4) and assisting in loading and pressing the to-be-pressed control plate (6); the control plate support assembly (4) comprises: a control plate support seat (41) connected with the support adjusting part (23), the control plate support seat (41) being provided with a control plate support groove (42) therein; an adaptive clamping part (43) provided in the control plate support groove (42), the adaptive clamping part (43) being used for clamping the to-be-pressed control plate (6); a spiral heating coil (44) installed in the adaptive clamping part (43), the spiral heating coil (44) being electrically connected with a storage battery, the storage battery also being provided in the adaptive clamping part (43), the spiral heating coil (44) being used for preheating the surface resin of the to-be-pressed control plate (6); a linkage pressing jig (3) slidingly installed in the pressing limiting seat (12); the pressing driving part (22) comprises: a first gear (221) provided on the outer side of the driving motor (21) and fixedly connected with the output end of the driving motor (21); a translation gear seat (222) sleeved on the outer side of the first gear (221) and in meshing transmission with the first gear (221); a pressing driving rod (223) fixedly connected with the translation gear seat (222) and connected with the linkage pressing jig (3); a gear seat guide table (224) fixedly installed on the support base (11) and slidingly connected with the connecting block at the bottom of the translation gear seat (222).

2. The press system for control board production of claim 1, wherein: the adaptive clamping part (43) comprises: a clamping motor (431) fixedly installed in the control plate support seat (41). A clamping adjusting disc (432) is fixedly connected with the output end of the clamping motor (431), and is rotationally installed in the control plate bearing groove (42); At least one set of clamping adjusting grooves (433) are formed in the clamping adjusting disc (432); A clamping sliding block (435) is slidingly installed in the clamping adjusting groove (433).

3. The press system for control board production according to claim 2, characterized in that: The self-adaptive clamping part (43) further comprises: A plate clamping seat (436) is fixedly connected with the clamping sliding block (435), and is used for clamping and fixing the control plate (6) to be pressed; At least one set of guide sliding rails (434) are circumferentially distributed on the control plate bearing seat (41), and are fixedly installed on the control plate bearing seat (41). The clamping sliding block (435) is slidingly connected with the guide sliding rails (434).

4. The press system for control board production of claim 3, wherein: The pressing limiting seat (12) is provided with: A controller (5) is connected with the driving motor (21) and the clamping motor (431), and is used for controlling the driving motor (21), the clamping motor (431) and the screw heating coil (44) to be opened and closed; The linkage pressing jig (3) is used for adsorbing the pressing part (7), and driving the pressing part (7) to be attached to the control plate (6) to be pressed. The linkage pressing jig (3) is connected with the pressing driving part (22).

5. The press system for control board production according to claim 4, characterized in that: The linkage pressing jig (3) comprises: A pressing jig seat (31); A guide lifting seat (32) is fixedly connected with the pressing jig seat (31), and is slidingly installed in the pressing limiting seat (12); An inclined push rod (33) is arranged between the guide lifting seat (32) and the driving rod (223), and two ends of the inclined push rod (33) are respectively hinged to the guide lifting seat (32) and the pressing driving rod (223); A pressing execution part (34) is arranged in the pressing jig seat (31), and is used for adsorbing the pressing part (7) and executing the pressing part (7) to be attached to the control plate (6) to be pressed.

6. The press system for control board production of claim 5, wherein: The pressing execution part (34) comprises: A pressing oil cylinder (341) is fixedly installed in the pressing jig seat (31); A pressing execution disc (342) is fixedly connected with the telescopic end of the pressing oil cylinder (341), and is slidingly installed in the pressing jig seat (31); A negative pressure air pump is installed on the pressing execution disc (342), and is connected with the pressing execution disc (342). The negative pressure air pump is electrically connected with the controller (5).

7. The press system for control board production according to claim 6, characterized in that: The bearing adjusting part (23) comprises: At least one set of first rotating wheels (231) are arranged on one side of the first gear (221), and are fixedly connected with the first gear (221); A second rotating wheel (232) is arranged on one side of the first rotating wheel (231), and the second rotating wheel (232) is rotationally connected with the first rotating wheel (231) through a transmission belt; A rotating wheel linkage shaft (233) is used for connecting a plurality of groups of the first rotating wheel (231), and two ends of the rotating wheel linkage shaft (233) are fixedly connected with the first rotating wheel (231) respectively; A second gear (234) is arranged on one side of the second rotating wheel (232), and the second gear (234) is fixedly connected with the second rotating wheel (232) through a connecting rod.

8. The press system for control board production according to claim 7, characterized in that: The supporting adjusting part (23) further comprises: A third gear (235) is arranged on one side of the second gear (234), and the third gear (235) is in meshing transmission with the second gear (234); A linkage swing arm (237) is fixedly connected with the third gear (235); A first adjusting block (238) is arranged at one end of the linkage swing arm (237), the first adjusting block (238) is rotationally connected with the linkage swing arm (237), and the first adjusting block (238) is fixedly connected with one group of the clamping adjusting disc (432) through a supporting linkage rod (24); A second adjusting block (239) is rotationally connected with the other end of the linkage swing arm (237), and the second adjusting block (239) is also fixedly connected with another group of the clamping adjusting disc (432) through the supporting linkage rod (24); An adjusting guide frame (236) is fixedly arranged on the supporting base (11), and the adjusting guide frame (236) is provided with a transverse sliding groove and a longitudinal sliding groove respectively, the first adjusting block (238) is slidingly arranged in the longitudinal sliding groove, and the second adjusting block (239) is slidingly arranged in the transverse sliding groove.

9. A method of using a press system for control panel production, implemented using the press system for control panel production according to claim 8, characterized in that: It comprises: In step S10, in operation, a worker or a transfer mechanical arm places a to-be-pressed control panel (6) above a clamping sliding block (435), the clamping sliding block (435) supports the to-be-pressed control panel (6), then a controller (5) controls a clamping motor (431) to start, the clamping motor (431) drives a clamping adjusting disc (432) and a clamping adjusting groove (433) to rotate, the clamping adjusting groove (433) drives the clamping sliding block (435) and a panel clamping seat (436) to slide along a guide sliding rail (434) when the clamping adjusting groove (433) rotates, so that the panel clamping seat (436) clamps and fixes the to-be-pressed control panel (6); In step S20, after the panel clamping seat (436) clamps and fixes the to-be-pressed control panel (6), a power supply is turned on, the power supply supplies power to a spiral heating coil (44), the spiral heating coil (44) heats the to-be-pressed control panel (6), so that the semi-cured resin pre-impregnated on the surface of the to-be-pressed control panel (6) is melted, and the to-be-pressed control panel (6) is conveniently attached to a pressing part (7); In step S20, after the panel clamping seat (436) clamps and fixes the to-be-pressed control panel (6), a power supply is turned on, the power supply supplies power to a spiral heating coil (44), the spiral heating coil (44) heats the to-be-pressed control panel (6), so that the semi-cured resin pre-impregnated on the surface of the to-be-pressed control panel (6) is melted, and the to-be-pressed control panel (6) is conveniently attached to a pressing part (7); Step S30, the pressing piece (7) is placed below the pressing execution disc (342) by using a transfer manipulator or manual operation, and then the controller (5) controls the negative pressure air pump to be turned on. The negative pressure air pump extracts air in the negative pressure suction groove, so that a negative pressure is formed in the contact area between the negative pressure suction groove and the pressing piece (7), and the negative pressure suction of the pressing piece (7) is realized. Step S40, then the controller (5) controls the driving motor (21) to be turned on. The driving motor (21) starts to drive the first gear (221) to rotate, the first gear (221) drives the translation gear seat (222) to move horizontally, the translation gear seat (222) drives the pressing driving rod (223) to move, so that the pressing driving rod (223) pulls the inclined push rod (33) and the guide lifting seat (32) to move downward. When the guide lifting seat (32) moves downward, the pressing execution disc (342), the negative pressure air pump, the negative pressure suction disc and the pressing piece (7) are pulled to move downward to the pressing station. Step S50, when the controller (5) controls the driving motor (21) to be turned on and the driving motor (21) starts to drive the first gear (221) to rotate, the first gear (221) drives the first rotating wheel (231) and the rotating wheel linkage shaft (233) to rotate, so that the first rotating wheel (231) drives the second gear (234) and the third gear (235) to rotate. When the third gear (235) rotates, it can drive the linkage swing arm (237) to swing. When the linkage swing arm (237) swings, it pulls the first adjusting block (238) and the second adjusting block (239) to slide along the longitudinal sliding groove and the transverse sliding groove respectively, so that the first adjusting block (238) and the second adjusting block (239) drive two groups of the clamping adjusting disc (432) to move up and down alternately. When one group of the clamping adjusting disc (432) drives the to-be-pressed control panel (6) to move to the pressing station, the controller (5) controls the pressing oil cylinder (341) to be started, so that the piston rod of the pressing oil cylinder (341) drives the pressing execution disc (342), the negative pressure suction disc and the pressing piece (7) to press the to-be-pressed control panel (6). Step S60, after the pressing is completed, the controller (5) controls the negative pressure air pump to close, and then makes the pressing part (7) separate from the negative pressure adsorption seat, and the controller (5) controls the driving motor (21) to open, the driving motor (21) drives the first gear (221) to rotate, the first gear (221) can drive the first rotating wheel (231) and the rotating wheel linkage shaft (233) to rotate, so that the first rotating wheel (231) drives the second gear (234) and the third gear (235) to rotate, when the third gear (235) rotates, it can drive the linkage swing arm (237) to swing, when the linkage swing arm (237) swings, it pulls the first adjusting block (238) and the second adjusting block (239) to slide along the longitudinal sliding groove and the transverse sliding groove respectively, realizes the alternate movement of the two groups of clamping adjusting discs (432), realizes the pressing of the other group of to-be-pressed control plates (6) and the pressing part (7), when the two groups of to-be-pressed control plates (6) are pressed, the to-be-pressed control plates (6) that have been pressed are taken out by using a transfer manipulator or manual operation.

Citation Information

Patent Citations

  • Press-fit device for control panel production

    CN113207230A

  • Positioning device for convex joint production and using method thereof

    CN118163051A

  • Circuit board electromagnetic hot melting pressing device with upper and lower double-station feeding

    CN212992701U