Multi-size compatible large-surface pressurizing device
By designing a large-face pressurization device that is compatible with multiple sizes, it solves the inconvenience and high cost problems caused by different product models, and realizes efficient clamping and energy-saving handling of the same device to suit multiple product sizes.
Patent Information
- Application Number
- CN202421932198.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-08-12
AI Technical Summary
In the prior art, due to different product models during the production process, a variety of large-sided pressurization devices of specific models need to be equipped, which leads to inconvenient disassembly and high cost.
A large-face pressurization device that is compatible with multiple sizes is designed, including a translation drive device, a slide rail slide structure, a pressurized strip and a wire trough assembly. The pressure bar is translated through the translation drive device, and the clamping distance is adjusted in real time using auxiliary pressurization devices and product in-position sensors to adapt to different product sizes.
The same device is realized to adapt to multiple product sizes, reducing disassembly and assembly costs, improving clamping work efficiency and energy utilization, and reducing product handling costs.
Smart Images

Figure CN223291811U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pressurized material taking, in particular to a large-surface pressurizing device compatible with multiple sizes. Background Art
[0002] During the production and delivery of products, finished products / semi-finished products need to be transferred or packed. There are various ways to pick up materials, such as clamping-type picking up materials, suction-type picking up materials, and sometimes even superimposed picking up materials are required (for example, first clamp the side of the product with a clamping structure, and then use a negative pressure device to adsorb the top surface of the product) to complete the grabbing and transfer of the product. The large-surface pressure structure is a type of clamping structure that moves horizontally from both sides of the product to clamp the product in the middle. Due to different product models and corresponding different sizes, during batch production, a clamping device that matches the product size will be selected to reduce the moving stroke of the material picking, reduce the probability of material picking interference, and improve the efficiency of the material picking. Multi-model products need to be equipped with a variety of specific large-surface pressure devices, which are inconvenient to disassemble and assemble and have high costs.
[0003] The utility model provides a large-surface pressurizing device compatible with multiple sizes to solve the above technical problems. Utility Model Content
[0004] A large-surface pressure device compatible with multiple sizes includes: a translation drive device, a translation drive device mounting plate, a first slide rail slider structure, a pressure strip, and a wire trough assembly. The first slide rail slider structure is directly or indirectly fixed to the output end mounting plate of the mobile coordinate system. The translation drive device is fixedly installed through the translation drive device mounting plate. The output end of the translation drive device mounting plate is fixedly connected to the pressure strip. The translation drive device mounting plate / and the pressure strip are fixedly connected to the slider of the first slide rail slider structure. The wire trough assembly is directly or indirectly fixed to the translation drive device mounting plate. The wire trough assembly is used for routing electrical circuits.
[0005] Preferably, in the multi-size compatible large-surface pressure device, the pressure strip and / or the translation drive device mounting plate are hollow square tube structures.
[0006] Preferably, the multi-size compatible large-surface pressure device further includes an auxiliary pressure device and a floating pressure bar, wherein the auxiliary pressure device is installed on the plate surface of the pressure bar and the output end is fixedly connected to the floating pressure bar.
[0007] Preferably, the multi-size compatible large-surface pressurizing device also includes a product in-position sensor, a sensor position driving device, and a second slide rail slider structure. The product in-position sensor is fixedly installed with the slider of the second slide rail slider structure through a mounting plate. The second slide rail slider structure is installed on the upper plate surface of the pressurizing strip. The sensor position driving device is fixed to the upper plate surface of the pressurizing strip through a mounting plate. The power output shaft of the sensor position driving device is connected to the mounting plate of the product in-position sensor.
[0008] Preferably, in the multi-size compatible large-surface pressurizing device, the extension direction of the second slide rail and slider structure is perpendicular to the extension direction of the first slide rail and slider structure.
[0009] Preferably, the multi-size compatible large-surface pressurizing device, the wire trough assembly includes a wire trough fixing cylinder, a wire trough cylinder fixing plate, a mounting block assembly, and a wire trough plug-in plate, the cylinder body of the wire trough fixing cylinder is fixed to the wire trough cylinder fixing plate, the piston shaft of the wire trough fixing cylinder passes through the wire trough cylinder fixing plate and the mounting block assembly in sequence and is inserted into the positioning hole of the wire trough plug-in plate, the wire trough plug-in plate is located above the mounting block assembly and the plate surface of the wire trough plug-in plate is processed with multiple positioning holes, the mounting block assembly is directly or indirectly fixedly connected to the slider in the first slide rail slider structure or to the mounting plate of the translation drive device, the wire trough cylinder fixing plate is connected to the mounting block assembly, and the wire trough is fixed to the side plate surface of the wire trough cylinder fixing plate; in the locked positioning state, the piston shaft of the wire trough fixing cylinder is lifted and inserted into the positioning hole of the wire trough plug-in plate above to fix the position of the wire trough assembly.
[0010] Preferably, the large-surface pressure device compatible with multiple sizes, the mounting block assembly includes an intermediate adapter plate, a floating mounting block, a fixed mounting block, and a floating locking plate, the fixed mounting block and the wire groove cylinder fixing plate are respectively fixed to the upper and lower plate surfaces of the floating mounting block, and the piston shaft outlet holes of the fixed mounting block, the wire groove cylinder fixing plate, and the floating mounting block plate surface are arranged in a centering manner, the piston shaft is connected to the inner wall of the plate hole of the fixed mounting block through a linear bearing; the intermediate adapter plate is fixedly connected to the mounting plate of the translation drive device and the slider of the first slide rail slider structure, respectively; the plate surface of the floating mounting block is machined with a waist-shaped hole and a screw passes through the waist-shaped hole to float the floating mounting block and the intermediate adapter plate, the plate surface of the floating locking plate is machined with a circular threaded hole and a waist-shaped hole, the floating locking plate is fixedly connected to the intermediate adapter plate through the circular threaded hole, and is floatingly connected to the floating mounting block through the waist-shaped hole, the waist-shaped holes in the floating mounting block and the floating locking plate are perpendicular, and assist the floating mounting block to complete the position floating in two vertical directions.
[0011] Preferably, in the multi-size compatible large-surface pressurizing device, the mounting block assembly further comprises a gasket, and the plate surface of the gasket is processed with a screw avoidance groove communicating with the plate edge.
[0012] Preferably, in the multi-size compatible large-surface pressurizing device, the intermediate transfer plate includes a first intermediate transfer plate and a second intermediate transfer plate, the second intermediate transfer plate is fixed to the upper surface of the translation drive device mounting plate, the upper surface of the second intermediate transfer plate is processed with a mounting groove connected to the edge of the plate, the lower surface of the first intermediate transfer plate is provided with a sliding block, the sliding block of the first intermediate transfer plate slides into place along the mounting groove of the second intermediate transfer plate, and then the first intermediate transfer plate and the second intermediate transfer plate are locked, wherein the first intermediate transfer plate is fixedly connected to the slider of the first slide rail slider structure, and the floating mounting block is floatingly connected to the side plate surface of the first intermediate transfer plate.
[0013] Preferably, in the large-surface pressurizing device compatible with multiple sizes, the surface of the wire slot cylinder fixing plate is processed with a sensor plate groove, the sensor plate passes through the sensor plate groove and is fixedly connected to the piston shaft of the wire slot fixing cylinder, and the sensor body is fixedly connected to the side plate surface of the wire slot cylinder fixing plate.
[0014] Here's how it works:
[0015] After the translation drive device drives the pressure bar to translate, the auxiliary pressure devices on both sides push the floating pressure bar to translate and press on the product surface. The symmetrical auxiliary pressure structures on both sides can avoid the process offset due to the long moving distance during the large-surface pressure translation, so that the large-surface pressure device can fit the product surface tightly. Of course, according to the different structures, materials and requirements of the product clamping surface, local profiling structures or anti-scratch protection devices can be fixed at the floating pressure bar; when the clamped product is changed, the translation drive device, the translation drive device mounting plate and the wire trough assembly are pushed along the slide rail of the first slide rail slider structure according to the size of the changed product. After the clamping structures at both ends are adjusted to the appropriate spacing, the position of the wire trough assembly is fixed. The product presence sensor detects whether the product is in place in real time, and the position of the product presence sensor can also be adjusted according to the specific size of the product.
[0016] The large-surface pressure device structure involved in the utility model has high product size compatibility, can be used for multiple purposes, and can meet the clamping and transportation needs of various products without disassembly, greatly reducing product transportation costs. At the same time, the clamping stroke can be flexibly adjusted according to the product size, thereby improving clamping work efficiency, saving clamping energy input, and further reducing product transportation costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The specific implementation is further described below with reference to the accompanying drawings, wherein:
[0018] Figure 1 This is a schematic structural diagram of a multi-size compatible large-surface pressurizing device involved in the utility model;
[0019] Figure 2 This is a schematic diagram of the installation of a large-surface pressurizing device with multiple sizes compatible with the present invention at the mobile end of the coordinate system (the coordinate system structure is not drawn, only the mounting frame at the mobile end of the coordinate system is shown);
[0020] Figure 3 yes Figure 2 Schematic diagram of the structure from different perspectives;
[0021] Figure 4 yes Figure 2 Partial enlarged view;
[0022] Figure 5 This is a schematic diagram of the gasket structure involved in the utility model.
[0023] The specific structure corresponding to the number is as follows:
[0024] Translation drive device 1, translation drive device mounting plate 2, first slide rail slider structure 3, pressure strip 4, auxiliary pressure device 5, floating pressure strip 6, threading tube 7, wire trough fixing cylinder 8, wire trough cylinder fixing plate 9, position sensor stroke groove 91, mounting block assembly 10, intermediate adapter plate 101, first intermediate adapter plate 1011, second intermediate adapter plate 1012, floating mounting block 102, fixed mounting block 103, floating locking plate 104, gasket 105, screw avoidance groove 1051, wire trough plug-in plate 11, product in-position sensor 12, sensor position drive device 13, second slide rail slider structure 14,
[0025] The following specific embodiments will further illustrate the present invention in conjunction with the above-mentioned drawings. DETAILED DESCRIPTION
[0026] Specific implementation case 1:
[0027] A multi-size compatible large-surface pressure device, comprising: a translation drive device 1, a translation drive device mounting plate 2, a first slide rail slider structure 3, a pressure strip 4, and a wire trough assembly, wherein the first slide rail slider structure 3 is directly or indirectly fixed to the mounting plate at the output end of the coordinate system (such as Figure 2 、 Figure 3As shown, the first slide rail slider structure 3 is fixedly connected to the mounting frame bottom plate of the coordinate system output end), the translation drive device 1 is fixedly installed through the translation drive device mounting plate 2, the output end of the translation drive device mounting plate 2 is fixedly connected to the pressure strip 4, the translation drive device mounting plate 2, the pressure strip 4 are fixedly connected to the slider of the first slide rail slider structure 3 (connected to different sliders on the slide rail, so that the translation drive device mounting plate 2 and the pressure strip 4 can be translated along the slide rail separately); the wire trough assembly is directly or indirectly fixed to the translation drive device mounting plate 2, the wire trough assembly is used for routing electrical circuits, the translation drive device 1 and the translation drive device mounting plate 2 change the clamping spacing by translating along the slide rail, and are adapted for use with products of different sizes.
[0028] The large-surface pressure device needs to be installed at the output end of the mobile coordinate system. The coordinate system drives the large-surface pressure device to move between the product pick-up and placement positions, and places the product after clamping it to the designated position. The large-surface pressure device and the mobile coordinate system are fixed directly or indirectly through the slide rail and the mounting plate at the output end of the coordinate system. Of course, other mounting auxiliary parts can also be used for reinforcement installation. The coordinate system can be a one-dimensional coordinate system, a two-dimensional coordinate system, or a three-dimensional coordinate system. The installation of the coordinate system and the large-surface pressure device can adopt existing technology. Figure 2 、 Figure 3 The coordinate system is not shown.
[0029] Further, such as Figure 1 As shown, the large-surface pressure device also includes an auxiliary pressure device 5 and a floating pressure strip 6. The auxiliary pressure device 5 is installed on the plate surface of the pressure strip 4 and the output end is fixedly connected to the floating pressure strip 6. Optionally, according to the different shapes or materials of the product pressure position, a local contour-matching, avoidance, or anti-compression and scratching structure can be installed on the floating pressure strip 4 to ensure that the pressure is applied to achieve product picking, placement, and clamping without causing damage to the product.
[0030] Optionally, the auxiliary pressurizing devices 5 are provided on both sides of the translation drive device 1 and are symmetrically arranged.
[0031] During the large-surface pressurization process, the translation drive device 1 first drives the pressure bar 4 to translate, and is guided by the slide rail during the translation process; the auxiliary pressure devices 5 on both sides drive the floating pressure bar 6 to move toward the product clamping surface, which can ensure that no tilting occurs during the large-surface pressurization translation process.
[0032] Specifically, such as Figure 1 、 Figure 4As shown, the wire trough assembly includes a threading tube 7, a wire trough fixing cylinder 8, a wire trough cylinder fixing plate 9, a mounting block assembly 10, and a wire trough plug-in plate 11. The cylinder body of the wire trough fixing cylinder 8 is fixed to the wire trough cylinder fixing plate 9. The piston shaft of the wire trough fixing cylinder 8 passes through the wire trough cylinder fixing plate 9 and the mounting block assembly 10 in sequence and is inserted into the positioning hole of the wire trough plug-in plate 11. The wire trough plug-in plate 11 is located above the mounting block assembly 10 and a plurality of positioning holes are processed on the plate surface of the wire trough plug-in plate 11. The mounting block assembly 10 is in the first slide rail slider structure 3. The slider or the translation drive device mounting plate 2 is directly or indirectly fixedly connected, the wire trough cylinder fixing plate 9 is connected to the mounting block assembly 10, and the threading pipe 7 is fixed to the side panel surface of the wire trough cylinder fixing plate 9; in the locked and positioned state, the piston shaft of the wire trough fixing cylinder 8 is lifted and inserted into the positioning hole of the wire trough plug plate 11 above to fix the position of the wire trough assembly, ensuring that when the spacing between the translation drive device mounting plates 2 and the pressure strips 4 at both ends is adjusted according to the product size, the wire trough assembly for the electrical / gas pipelines can be translated to a suitable position to avoid line breaking.
[0033] Specific implementation case 2:
[0034] Based on the specific implementation case 1, the large-surface pressurizing device may also adopt one or more of the following preferred technical solutions:
[0035] Optional, such as Figure 4 As shown, the mounting block assembly 10 includes an intermediate adapter plate 101, a floating mounting block 102, a fixed mounting block 103, and a floating locking plate 104. The fixed mounting block 103 and the wire trough cylinder fixing plate 9 are respectively fixed to the upper and lower plate surfaces of the floating mounting block 102, and the piston shaft outlet holes of the fixed mounting block 103, the wire trough cylinder fixing plate 9, and the floating mounting block 102 are arranged in a central manner. The piston shaft is connected to the inner wall of the plate hole of the fixed mounting block 103 through a linear bearing; the intermediate adapter plate 101 is fixedly connected to the sliding block of the translation drive device mounting plate 2 and the first slide rail slider structure 3, respectively, and the floating mounting block The plate surface of 102 is processed with waist-shaped holes and screws pass through the waist-shaped holes to float the floating mounting block 102 and the intermediate adapter plate 101. The plate surface of the floating locking plate 104 is processed with circular threaded holes and waist-shaped holes. The floating locking plate 104 is fixedly connected to the intermediate adapter plate 101 through the circular threaded holes and is floated with the floating mounting block 102 through the waist-shaped holes. The waist-shaped holes in the floating mounting block 102 and the floating locking plate 104 are perpendicular to each other, which assists the floating mounting block 102 to complete the position floating in two vertical directions, ensuring the position centering accuracy of the piston shaft of the wire trough fixing cylinder 8 and the positioning hole of its wire trough plug plate 11.
[0036] Optionally, by adjusting the relative position of the screw in the waist-shaped hole, the piston shaft of the wire trough fixing cylinder 8 is adjusted to a position aligned with the positioning hole in the wire trough plug plate 11.
[0037] Optionally, the mounting block assembly 10 also includes a gasket 105, and the plate surface of the gasket 105 is processed with a screw avoidance groove 1051 connected to the edge of the plate. The gasket 105 is avoidance installed between the floating locking plate 104 and the plate surface of the floating mounting block 102 or / and the gasket 105 is avoidance installed between the intermediate adapter plate 101 and the plate surface of the floating mounting block 102 (the specific position of the gasket used and the gasket thickness and the number of gaskets are determined according to the gap size required for floating compensation). During the installation process, the gap can be inserted from the side, and the bolt is avoidance installed in the screw avoidance groove 1051. After the gasket is installed, the installation stability of the gasket is improved by tightening the bolt.
[0038] Optionally, the intermediate adapter plate 101 includes a first intermediate adapter plate 1011 and a second intermediate adapter plate 1012, the second intermediate adapter plate 1012 is fixed to the upper plate surface of the translation drive device mounting plate 2, the upper plate surface of the second intermediate adapter plate 1012 is processed with a mounting groove connected to the edge of a side plate, the lower plate surface of the first intermediate adapter plate 1011 is provided with a sliding block, and the sliding block of the first intermediate adapter plate 1011 slides into place along the mounting groove of the second intermediate adapter plate 1012, and then the first intermediate adapter plate 1011 and the second intermediate adapter plate 1012 are locked, wherein the first intermediate adapter plate 1011 is fixedly connected to the slider of the first slide rail slider structure 3, and the floating mounting block 102 is floatingly connected to the side plate surface of the first intermediate adapter plate 1011.
[0039] Specific implementation case 3:
[0040] Based on Specific Implementation Case 1 or Specific Implementation Case 2, the large-surface pressurizing device may also adopt one or more of the following preferred technical solutions:
[0041] Optional, such as Figure 1 As shown, it also includes a product presence sensor 12, a sensor position driving device 13, and a second slide rail slider structure 14. The product presence sensor 12 is fixedly installed with the slider of the second slide rail slider structure 14 through a mounting plate. The second slide rail slider structure 14 is installed on the upper plate surface of the pressure bar 4. The sensor position driving device 13 is fixed on the upper plate surface of the pressure bar 4 through a mounting plate. The power output shaft of the sensor position driving device 13 is connected to the mounting plate of the product presence sensor 12.
[0042] Optionally, the extension direction of the second slide rail slider structure 14 is perpendicular to the extension direction of the first slide rail slider structure 3. The first slide rail slider structure 3 is used to adapt to the large-surface pressurization needs of products of different widths. The second slide rail slider structure 14 is used to move the product in-position sensor 12 to a suitable length position to sense the presence or absence of the product.
[0043] Optionally, the pressure strip 4 and / or the translation drive device mounting plate 2 are hollow square tube structures.
[0044] Optional, such as Figure 4 As shown, the surface of the wire trough cylinder fixing plate 9 is machined with a sensor plate slot 91. The sensor plate passes through the sensor plate slot 91 and is fixedly connected to the piston shaft of the wire trough fixing cylinder 8. The sensor body is fixedly connected to the side surface of the wire trough cylinder fixing plate 9. The position sensor senses whether the wire trough assembly is in a movable / locked position.
[0045] In summary, in specific implementation case 1 or specific implementation case 2 or specific implementation case 3, the translation drive device 1, the auxiliary pressurizing device 5, and the sensor position drive device 13 are cylinders, electric cylinders, servo motor-screws or servo electric cylinders.
[0046] The above-described embodiments merely represent several implementation methods of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. A large-surface pressurizing device compatible with multiple sizes, characterized by: It includes a translation drive device, a translation drive device mounting plate, a first slide rail slider structure, a pressure strip, and a wire trough assembly. The first slide rail slider structure is directly or indirectly fixed to the output end mounting plate of the mobile coordinate system. The translation drive device is fixedly installed through the translation drive device mounting plate. The output end of the translation drive device mounting plate is fixedly connected to the pressure strip. The translation drive device mounting plate / and the pressure strip are fixedly connected to the slider of the first slide rail slider structure. The wire trough assembly is directly or indirectly fixed to the translation drive device mounting plate. The wire trough assembly is used for routing electrical circuits.
2. A multi-size compatible large-surface pressurizing device as claimed in claim 1, characterized in that: The pressure strip and / or the translation drive device mounting plate are hollow square tube structures.
3. The multi-size compatible large-surface pressurizing device according to claim 1, characterized in that: It also includes an auxiliary pressurizing device and a floating pressurizing bar. The auxiliary pressurizing device is installed on the plate surface of the pressurizing bar and the output end is fixedly connected to the floating pressurizing bar.
4. The multi-size compatible large-surface pressurizing device according to claim 1, characterized in that: It also includes a product presence sensor, a sensor position drive device, and a second slide rail slider structure. The product presence sensor is fixedly installed with the slider of the second slide rail slider structure through a mounting plate. The second slide rail slider structure is installed on the upper plate surface of the pressure strip. The sensor position drive device is fixed to the upper plate surface of the pressure strip through a mounting plate. The power output shaft of the sensor position drive device is connected to the mounting plate of the product presence sensor.
5. A multi-size compatible large-surface pressurizing device as claimed in claim 4, characterized in that: An extension direction of the second slide rail and slider structure is perpendicular to an extension direction of the first slide rail and slider structure.
6. A multi-size compatible large-surface pressurizing device as claimed in any one of claims 1 to 5, characterized in that: The wire trough assembly includes a wire threading pipe, a wire trough fixing cylinder, a wire trough cylinder fixing plate, a mounting block assembly, and a wire trough plug-in plate. The cylinder body of the wire trough fixing cylinder is fixed to the wire trough cylinder fixing plate. The piston shaft of the wire trough fixing cylinder passes through the wire trough cylinder fixing plate and the mounting block assembly in sequence and is inserted into the positioning hole of the wire trough plug-in plate. The wire trough plug-in plate is located above the mounting block assembly and the plate surface of the wire trough plug-in plate is processed with multiple positioning holes. The mounting block assembly is directly or indirectly fixedly connected to the slider in the first slide rail slider structure or to the mounting plate of the translation drive device. The wire trough cylinder fixing plate is connected to the mounting block assembly, and the wire threading pipe is fixed to the side plate surface of the wire trough cylinder fixing plate; in the locked positioning state, the piston shaft of the wire trough fixing cylinder is lifted and inserted into the positioning hole of the wire trough plug-in plate above to fix the position of the wire trough assembly.
7. A multi-size compatible large-surface pressurizing device as claimed in claim 6, characterized in that: The cam-shaped hole is connected with the upper and lower surfaces of the floating mounting block by means of the fixed mounting block, the wire trough cylinder fixing plate and the floating mounting block, and the piston shaft outlet holes of the fixed mounting block, the wire trough cylinder fixing plate and the floating mounting block are arranged in a central manner. The piston shaft is connected to the inner wall of the plate hole of the fixed mounting block through a linear bearing; the intermediate adapter plate is fixedly connected to the mounting plate of the translation drive device and the slider of the first slide rail slider structure, respectively. The plate surface of the floating mounting block is processed with a waist-shaped hole and the screw passes through the waist-shaped hole to float the floating mounting block and the intermediate adapter plate. The plate surface of the floating locking plate is processed with a circular threaded hole and a waist-shaped hole. The floating locking plate is fixedly connected to the intermediate adapter plate through the circular threaded hole and is floated with the floating mounting block through the waist-shaped hole. The waist-shaped holes in the floating mounting block and the floating locking plate are perpendicular to each other, assisting the floating mounting block to complete the position floating in two vertical directions.
8. A multi-size compatible large-surface pressurizing device as claimed in claim 7, characterized in that: The mounting block assembly further comprises a gasket, the plate surface of which is processed with a screw avoidance groove communicating with the edge of the plate.
9. The multi-size compatible large-surface pressurizing device according to claim 7, characterized in that: The intermediate transfer plate includes a first intermediate transfer plate and a second intermediate transfer plate, the second intermediate transfer plate is fixed to the upper surface of the translation drive device mounting plate, the upper surface of the second intermediate transfer plate is processed with a mounting groove connected to the edge of the plate, the lower surface of the first intermediate transfer plate is provided with a sliding block, the sliding block of the first intermediate transfer plate slides into place along the mounting groove of the second intermediate transfer plate, and then the first intermediate transfer plate and the second intermediate transfer plate are locked, wherein the first intermediate transfer plate is fixedly connected to the slider of the first slide rail slider structure, and the floating mounting block is floatingly connected to the side plate surface of the first intermediate transfer plate.
10. The multi-size compatible large-surface pressurizing device according to claim 6, characterized in that: The plate surface of the wire slot cylinder fixing plate is processed with an induction plate groove, the induction plate passes through the induction plate groove and is fixedly connected to the piston shaft of the wire slot fixing cylinder, and the induction body is fixedly connected to the side plate surface of the wire slot cylinder fixing plate.