Pressing device for processing medical carbon crystal plate

By setting up dual processing positions and a semi-automatic clamping device, the problem of low processing efficiency of carbon crystal plates was solved, and automatic positioning and clamping of carbon crystal plates were achieved, thereby improving processing efficiency and reducing labor intensity.

CN223735194UActive Publication Date: 2025-12-30SHANXI HENGSHENG CHENLONG NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202520158015.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-12-30
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

The existing carbon crystal plate processing efficiency is low, requiring manual positioning and manual clamping, resulting in high labor intensity and long loading and unloading time.

Method used

Design a clamping device for processing carbon crystal plates for medical use. It has two processing positions and adopts a semi-automatic clamping method. It includes a lifting cylinder, an adjusting motor and an adjusting screw to realize the automatic positioning and clamping of carbon crystal plates. It is suitable for carbon crystal plates of different sizes.

Benefits of technology

It improves the processing efficiency of carbon crystal plates, reduces manual operation, simplifies the pressing process, and reduces labor intensity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of carbon crystal plates, in particular to a pressing device for processing a medical carbon crystal plate, which comprises a mounting plate, a plurality of support columns; the bottom of the working plate is connected with the multiple supporting columns, and a lifting hole is formed in the center of the working plate; an adjusting block; a first positioning block; the first pressing part comprises a lifting air cylinder, a lifting rod, a lifting block, pressing pieces and a plurality of hinge plates, the lifting air cylinder is arranged on the mounting plate, the output end of the lifting air cylinder is connected with one end of the lifting rod, the other end of the lifting rod is provided with the lifting block, the lifting block is provided with a lifting groove, the pressing pieces are symmetrically hinged in the lifting groove, and the hinge plates are arranged on the lifting groove. The two sides of the pressing piece are hinged to the two sides of the first positioning block through hinge plates, and the other end of the lifting rod penetrates through the lifting hole. And the second pressing parts are symmetrically arranged at the top of the adjusting block. Double machining positions are arranged, the single-time machining efficiency is improved, the labor intensity of workers is relieved, the pressing procedure is simplified, and the overall machining efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to carbon crystal board technical field especially relates to a medical carbon crystal board processing is with pressure device. BACKGROUND

[0002] Carbon crystal board is a kind of high-tech material, it is made of carbon fiber and resin composite, with light weight, high strength, corrosion resistance and other advantages.

[0003] In the construction industry, carbon crystal board is popular because of its many advantages. First, it has high sealing property and mute effect, is ideal wall sound insulation material, at the same time, carbon crystal board also has waterproof and moisture-proof, insect-proof and moth-proof function, can ensure the long-term use effect of building, therefore, select part carbon crystal board as decorative board material in existing medical facilities.

[0004] In prior art, factory processes carbon crystal board all adopts single piece processing, makes that processing efficiency is low, and the pressure device on cutting equipment usually needs manual positioning, then manual pressure again, makes manual operation procedure too much, thereby increasing feeding and discharging time. UTILITY MODEL CONTENTS

[0005] The utility model provides a medical carbon crystal board processing is with pressure device, sets up double processing position, increases single processing efficiency, is suitable for processing carbon crystal board of different sizes simultaneously, and pressure adopts semi-automation, reduces personnel labor intensity, simplifies pressure procedure, improves overall processing efficiency.

[0006] To realize the above-mentioned purpose, the utility model provides a medical carbon crystal board processing is with pressure device, it includes:

[0007] Mounting plate, mobile sliding slot is set on the mounting plate;

[0008] Support column, one end of multiple support columns is symmetrically set on the two sides of mobile sliding slot;

[0009] Work plate, the bottom of work plate is connected with the other end of multiple support columns, the center of work plate is equipped with hoisting hole, the two sides of hoisting hole are symmetrically equipped with adjusting groove, adjusting groove is located directly above mobile sliding slot, and the opposite inner side walls in adjusting groove are equipped with transverse slot;

[0010] Adjusting block, mobile block is arranged on the bottom of adjusting block, transverse block is arranged on the two side walls of adjusting block, one end of mobile block slides in mobile sliding slot, and one end of transverse block slides in transverse slot;

[0011] First positioning block, the first positioning block is symmetrically set in one end of adjusting groove close to hoisting hole;

[0012] The first pressing part comprises a lifting cylinder, a lifting rod, a lifting block, pressing pieces and a plurality of hinged plates, the lifting cylinder is arranged on the mounting plate and located directly below the lifting hole, the output end of the lifting cylinder is connected with one end of the lifting rod, the other end of the lifting rod is provided with the lifting block, the lifting block is provided with a lifting groove, a plurality of the pressing pieces are symmetrically hinged in the lifting groove, the two sides of the pressing pieces are hinged with one end of the hinged plates, the two sides of the first positioning block are hinged with the other end of the hinged plates, and the other end of the lifting rod penetrates through the lifting hole.

[0013] The second pressing part is symmetrically arranged on the top of the adjusting block.

[0014] Preferably, the medical carbon crystal plate processing pressing device further comprises an adjusting part comprising an adjusting motor and an adjusting lead screw, the adjusting motor is arranged on the mounting plate and located at one end of the moving sliding groove close to the center of the mounting plate, the output end of the adjusting motor is connected with one end of the adjusting lead screw, and the adjusting block is threadedly matched with the adjusting lead screw.

[0015] Further, the pressing piece comprises a pressing rod, a pressing spring, a pressing column and a contraction column, one end of the pressing rod is hinged with the lifting block, the side wall of the other end of the pressing rod is connected with one end of the contraction column, the pressing column is provided with a pressing cavity, the other end of the contraction column extends into the pressing cavity, the pressing spring is sleeved on the contraction column, one end of the pressing spring is connected with the side wall of the other end of the pressing rod, and the other end of the pressing spring is connected with one end of the pressing column.

[0016] Further, the second pressing part comprises a pressing plate, a displacement piece, a stretching spring, a fixing column, a locking piece, a pressing plate and a control shaft sleeve, one end of the pressing plate is provided with a pressing groove, one end of the displacement piece is slidingly arranged in the pressing groove, the fixing column is arranged on the pressing plate and located on one side of the pressing groove, one end of the stretching spring is hooked on one end of the displacement piece, the other end of the stretching spring is hooked on the fixing column, the locking piece is arranged on the pressing plate and located on one side of the fixing column away from the pressing groove, one end of the pressing plate is slidingly arranged on the other end of the displacement piece, the other end of the pressing plate is provided with a locking sliding groove, the bottom surface of the other end of the pressing plate is provided with a pressing surface, the locking piece penetrates through the locking sliding groove, one end of the locking piece is matched with the control shaft sleeve, and a limiting block is arranged on the pressing plate and located on one side of the control shaft sleeve away from the other end of the displacement piece.

[0017] Further, the displacement member comprises a displacement column, a receiving column, a sliding column and a limiting column, one end of the displacement column is slidably arranged in the pressing groove, the other end of the displacement column is provided with the receiving column, the top of the receiving column is provided with the sliding column, one end of the sliding column penetrates the pressing plate, and the top of the sliding column is provided with the limiting column for limiting the movement of the pressing plate.

[0018] Further, the locking member comprises a locking stud and a locking spring, one end of the locking stud is fixed on the pressing plate, the other end of the locking stud penetrates the pressing plate, the other end of the locking stud penetrates the locking sliding groove, the other end of the locking stud is provided with a thread, and the locking spring is sleeved on the locking stud and located between the pressing plate and the pressing plate.

[0019] Further, the bottom outer wall of the control shaft sleeve is provided with a displacement plate, the outer wall close to the top of the control shaft sleeve is provided with a control rod, the control shaft sleeve is matched with the thread at the other end of the locking stud, and the displacement plate is matched with the limiting block.

[0020] Preferably, the medical carbon crystal plate processing pressing device further comprises a second positioning block, which is arranged on the pressing plate and located away from the fixed column on one side of the locking member.

[0021] Compared with the prior art, the medical carbon crystal plate processing pressing device according to the embodiment of the utility model, through setting up the lifting hole in the center of the work plate, symmetrically setting the adjusting groove on both sides of the lifting hole, slidingly arranging the adjusting block in the adjusting groove, symmetrically arranging the first positioning block close to the lifting hole at one end of the adjusting groove, arranging the first pressing part in the lifting hole, arranging the second pressing part on the adjusting block, wherein the symmetrically arranged adjusting groove, adjusting block and first positioning block form double stations, the original single piece station mode is changed, thereby increasing the cutting efficiency in the later stage, the first pressing part can simultaneously press the carbon crystal plates to be processed in the two side stations, the adjusting block can position the carbon crystal plates of different sizes through horizontal movement, and the second pressing part can further press the carbon crystal plates to be processed which are pressed by the first pressing part, thereby facilitating subsequent cutting of the carbon crystal plates to be processed. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is an overall structural schematic view of the medical carbon crystal plate processing pressing device of the utility model for installing the carbon crystal plate to be processed;

[0023] Figure 2 It is a structural schematic view of the medical carbon crystal plate processing pressing device of the utility model without installing the carbon crystal plate to be processed;

[0024] Figure 3 It is Figure 2A local enlarged structural schematic view of the middle A area;

[0025] Figure 4 A side view structural schematic view of the medical carbon crystal plate processing compression device;

[0026] Figure 5 A second compression part structural schematic view in the medical carbon crystal plate processing compression device;

[0027] Figure 6 A side view structural schematic view of the second compression part in the medical carbon crystal plate processing compression device in a compression state; and

[0028] Figure 7 A side view structural schematic view of the second compression part in the medical carbon crystal plate processing compression device in a non-compression state.

[0029] Reference signs:

[0030] 1000. mounting plate; 1100. moving sliding groove; 1200. supporting column;

[0031] 2000. working plate; 2100. lifting hole; 2200. adjusting groove; 2210. transverse moving groove;

[0032] 3000. adjusting block; 3100. moving block; 3200. transverse moving block;

[0033] 4000. first positioning block;

[0034] 5000. first compression part; 5100. lifting air cylinder; 5200. lifting rod; 5300. lifting block; 5310. lifting groove; 5400. compression piece; 5410. compression rod; 5420. compression spring; 5430. compression column; 5440. contraction column; 5500. hinged plate;

[0035] 6000. second compression part; 6100. compression plate; 6110. lower compression groove; 6200. displacement piece; 6210. displacement column; 6220. receiving column; 6230. sliding column; 6240. limiting column; 6300. tensile spring; 6400. fixed column; 6510. locking stud; 6520. locking spring; 6600. compression plate; 6610. compression surface; 6620. limiting block; 6630. locking sliding groove; 6700. control shaft sleeve; 6710. displacement plate; 6720. control rod;

[0036] 7000. adjusting part; 7100. adjusting motor; 7200. adjusting lead screw;

[0037] 8000. second positioning block;

[0038] 9000. Carbon crystal plate to be processed. DETAILED DESCRIPTION

[0039] In order to make the purpose, structure, characteristics and functions of the utility model have further understanding, detailed description is as follows with example.

[0040] As Figures 1-7 shown, according to the utility model embodiment provides a kind of medical carbon crystal plate processing with pressing device, including:

[0041] mounting plate 1000, support column 1200, work plate 2000, adjusting block 3000, first locating block 4000, first pressing part 5000 and second pressing part 6000;

[0042] mobile chute 1100 is provided on mounting plate 1000;

[0043] the one end of multiple support columns 1200 is symmetrically arranged on the two sides of mobile chute 1100;The other end of multiple support columns 1200 is connected with the bottom of work plate 2000, hoist hole 2100 is set in the center of work plate 2000, adjusting groove 2200 is symmetrically set on the two sides of hoist hole 2100, and adjusting groove 2200 is located directly above mobile chute 1100, while horizontal shift groove 2210 is set on the opposite inner side wall in adjusting groove 2200;

[0044] adjusting block 3000 bottom is provided with moving block 3100, and horizontal shift block 3200 is arranged on the two side walls of adjusting block 3000, wherein one end of moving block 3100 slides in mobile chute 1100, and one end of horizontal shift block 3200 slides in horizontal shift groove 2210;

[0045] first locating block 4000 is symmetrically arranged at one end of adjusting groove 2200 close to hoist hole 2100;

[0046] first pressing part 5000 includes hoist cylinder 5100, hoist rod 5200, hoist block 5300, pressing piece 5400 and multiple hinged plates 5500, hoist cylinder 5100 is arranged on mounting plate 1000, and hoist cylinder 5100 is located directly below hoist hole 2100, the output end of hoist cylinder 5100 is connected with the one end of hoist rod 5200, the other end of hoist rod 5200 is provided with hoist block 5300, hoist groove 5310 is set on hoist block 5300, multiple pressing pieces 5400 are symmetrically hinged in hoist groove 5310, the two sides of pressing piece 5400 are hinged with the one end of hinged plate 5500, the two sides of first locating block 4000 are hinged with the other end of hinged plate 5500, and the other end of hoist rod 5200 passes through hoist hole 2100;

[0047] The second pressing part 6000 is symmetrically arranged at the top of the adjusting block 3000;

[0048] Wherein, the user clamps the carbon crystal plate 9000 to be processed by using the utility model discloses a kind of medical carbon crystal plate processing is pressed tightly to device, user places two carbon crystal plates 9000 to be processed on work plate 2000, ensure that the end of carbon crystal plate abuts first positioning block 4000, at this time, user controls the adjusting block 3000 on the two sides of hoisting hole 2100 simultaneously to the direction of hoisting hole 2100 movement, so that the second pressing part 6000 on the adjusting block 3000 abuts with the other end of carbon crystal plate 9000 to be processed, complete the transverse positioning of two carbon crystal plates 9000 to be processed, wherein the adjusting block 3000 can satisfy the positioning of carbon crystal plate of different sizes, after positioning, user starts hoisting cylinder 5100 to rise, hoisting cylinder 5100 output end drives hoisting rod 5200 to rise, so that hoisting rod 5200 and hoisting block 5300 extend hoisting hole 2100, at this time, the pressing piece 5400 symmetrically hinged on hoisting block 5300 simultaneously rotates to the direction of adjusting block 3000, so that the pressing piece 5400 contacts with the upper surface of the end of carbon crystal plate 9000 to be processed, so that first pressing piece 5400 completes the pressing of the end of carbon crystal plate 9000 to be processed, at this time, user only needs to rotate second pressing part 6000 simply manually, to realize the pressing of the other end of carbon crystal plate 9000 to be processed, to realize the positioning and pressing of two carbon crystal plates 9000 to be processed, in subsequent cutting operation, user can set mounting hole on mounting plate 1000, so that mounting plate 1000 is installed to the platform of cutting equipment by fixed bolt passing through mounting hole.

[0049] Further, as Figure 1 , Figure 2 and Figure 4As shown, the medical carbon crystal plate processing compression device further comprises an adjusting part 7000, which comprises an adjusting motor 7100 and an adjusting screw 7200. The adjusting motor 7100 is arranged on the mounting plate 1000 and located at one end of the moving sliding groove 1100 close to the center of the mounting plate 1000. The output end of the adjusting motor 7100 is connected with one end of the adjusting screw 7200, and the adjusting block 3000 is threadedly connected with the adjusting screw 7200. The positioning of the carbon crystal plate 9000 to be processed requires a long time by manually controlling the adjusting block 3000 by the user. Therefore, the mechanical control is adopted instead of manual control by arranging the adjusting part 7000. When the user turns on the positioning switch, the positioning switch controls the work of the adjusting motor 7100 on both sides of the lifting hole 2100. The adjusting motor 7100 drives the adjusting screw 7200 to rotate, controls the adjusting block 3000 on both sides to move on the adjusting screw 7200 towards the lifting hole 2100, so that the second compression part 6000 approaches the carbon crystal plate 9000 to be processed and clamps the carbon crystal plate 9000 to be processed between the first positioning block 4000 and the second compression part 6000.

[0050] Further, as shown in Figure 3 and Figure 4 , the compression part 5400 comprises a compression rod 5410, a compression spring 5420, a compression column 5430 and a contraction column 5440. One end of the compression rod 5410 is hingedly connected with the lifting block 5300, and the side wall of the other end of the compression rod 5410 is connected with one end of the contraction column 5440. The compression column 5430 is provided with a compression cavity, and the other end of the contraction column 5440 extends into the compression cavity. The compression spring 5420 is sleeved on the contraction column 5440, one end of the compression spring 5420 is connected with the side wall of the other end of the compression rod 5410, and the other end of the compression spring 5420 is connected with one end of the compression column 5430. The compression part 5400 is used for compressing the carbon crystal plate to be processed. When the lifting cylinder 5100 reaches the maximum lifting position, at this time, the compression rod 5410 is perpendicular to the lifting block 5300, the compression column 5430 is in contact with the surface of the carbon crystal plate 9000 to be processed, and at this time, the compression spring 5420 will hinder all the contraction column 5440 from entering the compression cavity according to the thickness of the carbon crystal plate 9000 to be processed, so as to complete the elastic compression.

[0051] Further, as shown in Figure 5 , Figure 6 , and Figure 7As shown, the second pressing part 6000 comprises a pressing plate 6100, a displacement piece 6200, a tension spring 6300, a fixing column 6400, a locking piece, a pressing plate 6600 and a control shaft sleeve 6700. One end of the pressing plate 6100 is provided with a pressing groove 6110, one end of the displacement piece 6200 is slidingly arranged in the pressing groove 6110, the fixing column 6400 is arranged on the pressing plate 6100 at one side of the pressing groove 6110, one end of the tension spring 6300 is hooked on one end of the displacement piece 6200, the other end of the tension spring 6300 is hooked on the fixing column 6400, the locking piece is arranged on the pressing plate 6100, the locking piece is located at one side of the fixing column 6400 away from the pressing groove 6110, one end of the pressing plate 6600 is slidingly arranged on the other end of the displacement piece 6200, the other end of the pressing plate 6600 is provided with a locking sliding groove 6630, the bottom surface of the other end of the pressing plate 6600 is provided with a pressing surface 6610, the locking piece penetrates through the locking sliding groove 6630, the locking piece cooperates with the control shaft sleeve 6700, a limiting block 6620 is arranged on the pressing plate 6600, the locking sliding groove 6630 is located between the limiting block 6620 and the pressing surface 6610, and the limiting block 6620 is located at one side of the control shaft sleeve 6700 away from the other end of the displacement piece 6200. After the first pressing piece 5400 presses the surface of the carbon crystal plate 9000 close to the first positioning block 4000, the user only needs to rotate the control shaft sleeve 6700 to make the pressing plate 6600 move downward, so as to press the surface of the carbon crystal plate 9000 close to the adjusting block 3000.

[0052] Further, as shown in Figure 5 , Figure 6 and Figure 7 , the displacement piece 6200 comprises a displacement column 6210, a bearing column 6220, a sliding column 6230 and a limiting column 6240. One end of the displacement column 6210 is slidingly arranged in the pressing groove 6110, the other end of the displacement column 6210 is provided with the bearing column 6220, the top of the bearing column 6220 is provided with the sliding column 6230, the sliding column 6230 penetrates through one end of the pressing plate 6600, and the top of the sliding column 6230 is provided with the limiting column 6240 for limiting the movement of the pressing plate 6600. When the second pressing part 6000 is in a non-working state, the locking spring 6520 lifts the pressing plate 6600, so that the pressing plate 6600 moves upward along the sliding column 6230, and at this time, one end of the pressing plate 6600 is in contact with the limiting column 6240. When the second pressing part 6000 is in a working state, the pressing plate 6600 will descend with the control shaft sleeve 6700, and at this time, one end of the pressing plate 6600 slides downward on the sliding column 6230, wherein when the pressing plate 6600 is at the lowest position, one end of the pressing plate 6600 is in contact with the bearing column 6220.

[0053] Further, as shown in Figure 5 , Figure 6 and Figure 7As shown, the locking member includes a locking stud 6510 and a locking spring 6520, one end of the locking stud 6510 is fixed on the pressing plate 6100, the other end of the locking stud 6510 penetrates the locking sliding groove 6630, the other end of the locking stud 6510 penetrates the pressing plate 6600, the other end of the locking stud 6510 is provided with a thread, the locking spring 6520 is sleeved on the locking stud 6510, and the locking spring 6520 is located between the pressing plate 6600 and the pressing plate 6100. The thread at the other end of the locking stud 6510 facilitates the lifting or lowering of the control shaft sleeve 6700, while the locking spring 6520 is used to limit the pressing strength of the pressing plate 6600, and the locking sliding groove 6630 is used to assist the left and right movement of the pressing plate 6600.

[0054] Further, as shown in Figure 5 、 Figure 6 and Figure 7 , the bottom outer wall of the control shaft sleeve 6700 is provided with a displacement plate 6710, the outer wall near the top of the control shaft sleeve 6700 is provided with a control rod 6720, the control shaft sleeve 6700 cooperates with the thread at the other end of the locking stud 6510, and the displacement plate 6710 cooperates with the limiting block 6620. The displacement plate 6710 cooperates with the limiting block 6620, so that the pressing plate 6600 extends out of the pressing plate 6100 in the working state.

[0055] Further, as shown in Figure 5 、 Figure 6 and Figure 7 Figure 5 Figure 6 Figure 7 , the medical carbon crystal plate processing pressing device further comprises a second positioning block 8000, the second positioning block 8000 is arranged on the pressing plate 6100, and the second positioning block 8000 is located on one side of the locking member away from the fixed column 6400. When the adjusting block 3000 advances to the center of the lifting, the second positioning block 8000 will contact the other end of the carbon crystal plate 9000 to be processed, so as to transversely block the carbon crystal plate 9000 to be processed between the first positioning block 4000 and the second positioning block 8000.

[0056] The working principle of the second pressing part 6000 is as follows: when the second pressing part 6000 is in the initial state, the displacement plate 6710 of the control shaft sleeve 6700 abuts against the limiting block 6620 on the pressing plate 6600, so that the displacement part 6200 is away from the fixed column 6400 at one end of the lower pressing groove 6110; at this time, the tension spring 6300 is in a stretched state, and the other end of the locking stud 6510 is located at one end of the locking sliding groove 6630 close to the pressing surface 6610; when it is needed to control the pressing plate 6600 of the second pressing part 6000 to press the carbon crystal plate 9000 to be processed, the user rotates the control shaft sleeve 6700; first, the displacement plate 6710 rotates, and the displacement plate 6710 is no longer in abutment with the limiting block 6620; at this time, the tension spring 6300 returns to the initial state, so that the displacement column 6210 is pulled towards the fixed column 6400, so that the pressing surface 6610 at the other end of the pressing plate 6600 is located directly above the carbon crystal plate 9000 to be processed; at the same time, the control shaft sleeve 6700 is lowered with the other end of the locking stud 6510, so as to press the pressing plate 6600 downwards, so that the pressing plate 6600 presses the surface of the carbon crystal plate 9000 to be processed; at this time, the other end of the locking stud 6510 is located at one end of the locking sliding groove 6630 close to the limiting block 6620, wherein the locking spring 6520 prevents the pressing plate 6600 from pressing the carbon crystal plate 9000 to be processed too much, and prevents the surface of the carbon crystal plate 9000 to be processed from being damaged.

[0057] In the description of the utility model, it should be understood that the terms "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" orientation or position relationship are only for the convenience of describing the utility model and simplifying the description, and are not indicative or suggestive of the devices or elements indicated must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the utility model.

[0058] The utility model has been described by the above related embodiments, however, the above embodiments are only examples for implementing the utility model. It must be pointed out that the disclosed embodiments do not limit the scope of the utility model. On the contrary, changes and decorations made without departing from the spirit and scope of the utility model are all within the scope of patent protection of the utility model.

Claims

1. A clamping device for processing medical carbon crystal plates, characterized in that, The utility model provides a kind of lifting device, including: Mounting plate, mobile sliding groove is arranged on the mounting plate; Support column, one end of multiple support columns is symmetrically arranged on the two sides of the mobile sliding groove; Work plate, the bottom of the work plate is connected with the other end of multiple support columns, a lifting hole is opened in the center of the work plate, adjusting grooves are symmetrically opened on the two sides of the lifting hole, the adjusting grooves are located directly above the mobile sliding groove, horizontal moving grooves are opened on the opposite inner side walls in the adjusting grooves; Adjusting block, mobile block is arranged on the bottom of the adjusting block, horizontal moving blocks are arranged on the two side walls of the adjusting block, one end of the mobile block slides in the mobile sliding groove, one end of the horizontal moving block slides in the horizontal moving groove; First positioning block, the first positioning block is symmetrically arranged at one end of the adjusting groove close to the lifting hole; First compression part, the first compression part includes lifting cylinder, lifting rod, lifting block, compression piece and multiple hinged plates, the lifting cylinder is arranged on the mounting plate, the lifting cylinder is located directly below the lifting hole, the output end of the lifting cylinder is connected with one end of the lifting rod, the other end of the lifting rod is provided with lifting block, the lifting block is provided with lifting groove, multiple compression pieces are symmetrically hinged in the lifting groove, the two sides of the compression piece are hinged with one end of the hinged plate, the two sides of the first positioning block are hinged with the other end of the hinged plate, the other end of the lifting rod passes through the lifting hole; Second compression part, the second compression part is symmetrically arranged on the top of the adjusting block.

2. The medical carbon crystal sheet processing presser according to claim 1, wherein It also includes an adjusting part, the adjusting part includes an adjusting motor and an adjusting lead screw, the adjusting motor is arranged on the mounting plate, the adjusting motor is located at one end of the mobile sliding groove close to the center of the mounting plate, the output end of the adjusting motor is connected with one end of the adjusting lead screw, the adjusting block is threadedly connected with the adjusting lead screw.

3. The medical carbon crystal sheet processing press according to claim 1, wherein The compression piece includes compression rod, compression spring, compression column and contraction column, one end of the compression rod is hinged with the lifting block, the side wall of the other end of the compression rod is connected with one end of the contraction column, the compression column is provided with compression cavity, the other end of the contraction column extends into the compression cavity, the compression spring is sleeved on the contraction column, one end of the compression spring is connected with the side wall of the other end of the compression rod, the other end of the compression spring is connected with one end of the compression column.

4. The medical carbon crystal sheet processing press according to claim 1, wherein The second pressing part comprises a pressing plate, a displacement piece, a tension spring, a fixing column, a locking piece, a pressing plate and a control sleeve, one end of the pressing plate is provided with a pressing groove, one end of the displacement piece is slidably arranged in the pressing groove, the fixing column is arranged on the pressing plate and located on one side of the pressing groove, one end of the tension spring is hooked on one end of the displacement piece, the other end of the tension spring is hooked on the fixing column, the locking piece is arranged on the pressing plate and located on one side of the fixing column away from the pressing groove, one end of the pressing plate is slidably arranged on the other end of the displacement piece, the other end of the pressing plate is provided with a locking sliding groove, the bottom surface of the other end of the pressing plate is provided with a pressing surface, one end of the locking piece penetrates through the locking sliding groove, one end of the locking piece cooperates with the control sleeve, a limiting block is arranged on the pressing plate and located on one side of the control sleeve away from the other end of the displacement piece.

5. The medical carbon crystal sheet processing press according to claim 4, wherein The displacement piece comprises a displacement column, a bearing column, a sliding column and a limiting column, one end of the displacement column is slidably arranged in the pressing groove, the other end of the displacement column is provided with the bearing column, the top of the bearing column is provided with the sliding column, one end of the sliding column penetrates through the pressing plate, and the top of the sliding column is provided with a limiting column for limiting the movement of the pressing plate.

6. The medical carbon crystal sheet processing press according to claim 4, wherein The locking piece comprises a locking stud and a locking spring, one end of the locking stud is fixed on the pressing plate, the other end of the locking stud penetrates through the locking sliding groove, the other end of the locking stud is provided with a thread, and the locking spring is sleeved on the locking stud and located between the pressing plate and the pressing plate.

7. The medical carbon crystal sheet processing press according to claim 6, wherein The bottom outer wall of the control sleeve is provided with a displacement plate, the outer wall close to the top of the control sleeve is provided with a control rod, the control sleeve cooperates with the thread on the other end of the locking stud, and the displacement plate cooperates with the limiting block.

8. The medical carbon crystal sheet processing press according to claim 4, wherein A second positioning block is further arranged on the pressing plate and located on one side of the locking piece away from the fixing column.