An operating table with a buffer installation

CN117506816BActive Publication Date: 2026-09-18浙江钜信科技股份有限公司
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Patent Information

Application Number
CN202311470120.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-07
Publication Date
2026-09-18
Estimated Expiration
2043-11-07

AI Technical Summary

Technical Problem

[0007]本发明的目的在于提供一种将缓冲器安装的操作台,通过设置旋转放置部件和裁切部件,解决了目前操作台对于缓冲器的裁切效率低的问题

Benefits of technology

[0030] In the scheme of this application:

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Abstract

The application provides an operation platform for mounting a bumper, relates to metal processing, and comprises a frame and a buffer groove arranged on the surface of the frame for mounting the bumper, further comprises two parallel connecting seats, mounting seats arranged on the two sides of the connecting seats and fixedly matched with the connecting seats, and a stabilizing seat arranged between the two mounting seats and fixedly matched with the connecting seats, and the surface of the mounting seat is fixedly provided with an inner plate. The application places multiple frames on the bearing plate through the arranged rotating placing component, can realize the limiting of the frames through the cooperation of the limiting pieces, is favorable for the placement and assembly of the bumper, pushes the sliding plate to make the vertical plate drive the transmission plate to slide, makes the driven gear and the driving gear drive the bearing plate to overturn by 180 degrees, so that the end face of the assembled bumper can face downward, is favorable for the subsequent unified cutting operation, and avoids the need for the workers to turn over the frames one by one.
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Description

Technical Field

[0001] This invention relates to the field of metal processing, and more specifically, to an operating table in which a buffer is mounted. Background Technology

[0002] Metalworking, or metal processing for short, refers to the production activities of humans processing materials with metallic properties that are composed of metallic elements or mainly composed of metallic elements. It is a process technology that processes metal materials into items, parts, and components, including large parts such as bridges and ships, as well as small components such as engines, jewelry, and watches.

[0003] In the manufacturing process of slide drawers, the slide rails installed on both sides are assembled by processing frame materials. In order to achieve better buffering and shock absorption during the sliding drawer's operation, a damper is installed on the surface of the frame material.

[0004] Currently, most methods for installing buffers involve first placing the frame material on a fixed fixture to fix its position, then manually inserting one end of the buffer into a pre-drilled assembly slot on the frame material, and finally using a cutting component to cut off the excess portion of the buffer on the frame material so that the buffer and the frame form an integral planar state. However, the above methods have the following drawbacks.

[0005] When cutting the buffer, multiple frame materials need to be picked up, cut, and placed manually in sequence. Compared with batch frame manufacturing, the component cutting effect is lower. At the same time, because the picking and cutting operations are done manually, there are certain safety hazards.

[0006] Therefore, we have made improvements by proposing an operating table that mounts the buffer. Summary of the Invention

[0007] The purpose of this invention is to provide an operating table for mounting buffers, which solves the problem of low cutting efficiency of current operating tables for buffers by setting up a rotating placement component and a cutting component.

[0008] To achieve the above-mentioned objectives, the present invention provides the following technical solution:

[0009] An operating table for mounting a buffer includes a frame and a buffer groove on the surface of the frame for mounting the buffer. It also includes two parallel connecting seats, mounting seats respectively located on both sides of the connecting seats and fixedly engaged with the connecting seats, and a stabilizing seat located between the two mounting seats and fixedly engaged with the connecting seats. The surface of the mounting seat is fixedly provided with an inner plate.

[0010] Rotatable placement components: The tops of the two connecting seats are provided with multiple equally spaced rotating placement components;

[0011] The rotating placement component includes a bearing plate that is movably engaged with the opposite sides of the two connecting seats via a rotating shaft, a drive gear fixed to both ends of the bearing plate, a driven gear meshing with the surface of the drive gear and movably engaged with the side wall of the connecting seat via a bearing, and a transmission plate that is slidably disposed inside the connecting seat and engages with the driven gear.

[0012] Among them, the surface of the transmission plate is provided with meshing teeth near the corresponding driven gear, and the transmission plate meshes with the driven gear through the meshing teeth for transmission;

[0013] The surface of the stabilizing seat is provided with a pushing component that cooperates with the rotating placement component;

[0014] Both the cutting component and the surface of the pushing component, which are close to the rotating placement component, are equipped with cutting components for cutting the buffer.

[0015] As a preferred technical solution of this application, the rotating placement component further includes auxiliary components disposed on both sides of the surface of the rotating placement component;

[0016] The auxiliary components include a guide cylinder fixed to the surface of the bearing plate, a guide rod slidably disposed inside the guide cylinder, abutment cavities formed on both sides of the guide cylinder, abutment members rotatably disposed in the abutment cavities, a fixed seat fixed to the surface of the guide cylinder, and a swing arm movably assembled on both sides of the fixed seat via a pin and rotatably cooperating with the corresponding abutment members.

[0017] The guide tube has an anti-slip rubber ring fitted on its surface near the contact cavity.

[0018] As a preferred technical solution of this application, the rotating placement component further includes a limiting member;

[0019] The limiting component includes a limiting cylinder fixed to the bottom of the bearing plate and corresponding to and communicating with the guide cylinder, a limiting ring sleeved on the surface of the guide rod, and a pushing handle slidably disposed on the inner wall of the limiting cylinder;

[0020] One end of the push handle is fixedly engaged with one side of the limiting ring, and springs that are fixedly engaged with the guide cylinder are fixedly provided on both sides of the push handle.

[0021] As a preferred technical solution of this application, the limiting member further includes a male limiting block fixed to one side wall of the limiting ring and a female limiting block fixed to the end of the guide rod and corresponding to and adapted to the male limiting block.

[0022] As a preferred technical solution of this application, the auxiliary component further includes an abutment rod, which is disposed on the surface of the mounting base and close to the bearing plate;

[0023] As the limiting member rotates 180 degrees with the bearing plate, it comes into contact with the abutment rod and the abutment rod abuts against the guide rod, causing the abutment member to open outward and form an abutment state.

[0024] As a preferred technical solution of this application, the pushing component includes a sliding plate slidably disposed on the stabilizing seat, upright plates fixed on both sides of the upper surface of the sliding plate, and a feeding box fixedly disposed at the bottom of the sliding plate and aligned with the position of the cutting component for collecting the waste material after the buffer is cut.

[0025] The upright plate extends into the mounting base and is eventually fixedly engaged with the bottom of the corresponding transmission plate.

[0026] As a preferred technical solution of this application, the cutting component includes a feeding groove formed on both sides of the upper surface of the sliding plate, and a cutting blade fixed to the surface of the sliding plate near the feeding groove and corresponding to the position of the bearing plate.

[0027] As a preferred technical solution of this application, the cutting component further includes a guide box fixed to the inside of the cutting blade, a guide plate slidably disposed on both sides of the guide box, and an abutment spring fixed inside the guide box and fixedly engaged with the guide plate.

[0028] As a preferred technical solution of this application, the top two sides of the guide plate are formed with a platform that is flush with the height of the upper frame material after the support plate is flipped over, and a protrusion higher than the platform is formed on the upper surface of the guide plate near the platform.

[0029] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0030] In the scheme of this application:

[0031] 1. By using the rotating placement component, multiple frame materials are placed on the support plate. The frame materials can be limited by the cooperation of the limiting component, which is conducive to the insertion and assembly of the buffer. Pushing the sliding plate causes the upright plate to slide, which in turn causes the driven gear and the driving gear to rotate the support plate 180 degrees. This allows the end face of the buffer to face down after assembly, which is convenient for subsequent uniform cutting operations and avoids the need for workers to rotate them one by one.

[0032] 2. Through the rotating placement component, after the support plate is flipped, the guide rod and the abutting rod collide, so that the guide rod can slide in the guide cylinder to drive the abutting parts on both sides. The abutting parts indirectly abut against the inner wall of the frame through the anti-slip abutting rubber ring to further fix the frame, which is conducive to more stable cutting operations in the future.

[0033] 3. Through the set cutting components, the guide plate will abut against one side of the frame material during the continuous pushing of the sliding plate. As the sliding plate moves, the abutment between the guide plate and the frame material increases. Combined with the abutment between the boss and one side of the frame material, and the cooperation between the table and the bottom of the frame, the stability of the frame material during the cutting process is further ensured. This prevents the frame material from deflecting at an angle during the cutting process when it is abutted by the cutting blade, and ensures the assembly of the buffer and the integral plane of the frame after cutting.

[0034] 4. By setting up multiple cutting components, when the cutting blade is pushed and finally contacts the buffer, the buffers on multiple frames can be cut synchronously, improving the assembly and cutting effect of the buffers. At the same time, the setting of the guide box, guide plate and discharge chute can collect the cut buffers and drop them into the bottom of the support platform, which is convenient for subsequent unified collection and processing. Since only the sliding plate needs to be pushed manually during the cutting process, close contact between the operator and the cutting blade is avoided, which helps to reduce safety hazards during operation. Attached Figure Description

[0035] Figure 1 This application provides a schematic diagram of the structure of an operating table for mounting a buffer;

[0036] Figure 2 This application provides a partial structural diagram of an operating table for mounting a buffer;

[0037] Figure 3 This application provides a partial disassembly diagram of an operating table for mounting a buffer;

[0038] Figure 4 A schematic diagram of a second-morphological structure of an operating table in which a buffer is installed, provided in this application;

[0039] Figure 5 A schematic diagram of a third-form structure of an operating table with a buffer installed, provided in this application;

[0040] Figure 6 A top view of an operating table for mounting a buffer, provided in this application;

[0041] Figure 7 This application provides an operating table for mounting a buffer. Figure 6 Enlarged structural diagram at point A in the middle;

[0042] Figure 8 A cross-sectional view of a pusher component for mounting a buffer on an operating table, as provided in this application;

[0043] Figure 9This application provides an operating table for mounting a buffer. Figure 8 Enlarged structural diagram at point B;

[0044] Figure 10 A cross-sectional view of an auxiliary component for mounting a buffer on an operating table, as provided in this application;

[0045] Figure 11 This application provides an operating table for mounting a buffer. Figure 10 Enlarged structural diagram at point C.

[0046] The image shows:

[0047] 100. Connector; 101. Mounting base; 102. Stabilizer; 103. Inner plate;

[0048] 200. Rotatable component; 201. Support plate; 202. Drive gear; 203. Driven gear; 204. Transmission plate; 205. Meshing teeth;

[0049] 210. Auxiliary component; 211. Guide cylinder; 212. Guide rod; 213. Abutment cavity; 214. Abutment component; 215. Fixing base; 217. Swing arm; 216. Anti-slip abutment rubber ring;

[0050] 220. Limiting component; 221. Limiting cylinder; 222. Limiting ring; 223. Push handle; 224. Spring; 225. Male limiting block; 226. Female limiting block;

[0051] 230. Abutment rod;

[0052] 300. Pushing component; 301. Sliding plate; 302. Vertical plate; 303. Feed box;

[0053] 400. Cutting component; 401. Feed chute; 402. Guide box; 403. Guide plate; 404. Tabletop; 405. Boss; 406. Contact spring; 407. Cutting blade;

[0054] 500, frame material; 501, buffer groove. Detailed Implementation

[0055] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0056] Therefore, the following detailed description of embodiments of the present invention is not intended to limit the scope of the claimed invention, but merely illustrates some embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.

[0057] It should be noted that, unless otherwise specified, the embodiments and features and technical solutions in the present invention can be combined with each other.

[0058] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

[0059] In the description of this invention, it should be noted that the terms "upper," "lower," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product of this invention is in use, or the orientation or positional relationship commonly understood by those skilled in the art. These terms are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention. In addition, the terms "first," "second," etc., are only used to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0060] Please see Figures 1 to 11 The present invention provides a technical solution: an operating table for installing a buffer, including a frame 500 and a buffer groove 501 provided on the surface of the frame 500 for installing the buffer, and two parallel connecting seats 100, mounting seats 101 respectively provided on both sides of the connecting seats 100 and fixedly engaged with the connecting seats 100, and a stabilizing seat 102 provided between the two mounting seats 101 and fixedly engaged with the connecting seats 100. An inner plate 103 is fixedly provided on the surface of the mounting seat 101, and the table also includes a rotating placement component 200, a pushing component 300 and a cutting component 400.

[0061] Rotary placement component 200, the top of the two connecting seats 100 is provided with a plurality of equally spaced rotary placement components 200;

[0062] The rotating placement component 200 includes a support plate 201 that is movably engaged with the two connecting seats 100 on opposite sides via a rotating shaft, a drive gear 202 fixed to both ends of the support plate 201, a driven gear 203 that meshes with the surface of the drive gear 202 and is movably engaged with the side wall of the connecting seat 100 via a bearing, and a transmission plate 204 that is slidably disposed inside the connecting seat 100 and engages with the driven gear 203.

[0063] Among them, the surface of the transmission plate 204 is provided with meshing teeth 205 near the corresponding driven gear 203, and the transmission plate 204 meshes with the driven gear 203 through the meshing teeth 205 for transmission.

[0064] The rotating placement component 200 also includes auxiliary components 210 disposed on both sides of the surface of the rotating placement component 200;

[0065] The auxiliary component 210 includes a guide cylinder 211 fixed to the surface of the bearing plate 201, a guide rod 212 slidably disposed inside the guide cylinder 211, abutment cavities 213 formed on both sides of the guide cylinder 211, abutment members 214 rotatably disposed in the abutment cavities 213, a fixed seat 215 fixed to the surface of the guide cylinder 211, and a swing arm 217 movably assembled on both sides of the fixed seat 215 via a pin and rotatably engaged with the corresponding abutment members 214.

[0066] Among them, an anti-slip contact rubber ring 216 is fitted on the surface of the guide cylinder 211 near the contact cavity 213;

[0067] Specifically, such as Figure 1 As shown, multiple frame members 500 are placed sequentially on the support plate 201. Then, one end of the buffer is inserted into the buffer groove 501 on the frame member 500 to complete the initial installation of the buffer. Then, the cutting member 400 is moved by pushing the pushing component 300.

[0068] During the pushing process of the pushing component 300, the transmission plate 204 will slide inside the mounting base 101. During the sliding process, the transmission plate 204 will synchronously drive the meshing teeth 205 to move. During the movement of the meshing teeth 205, they will mesh with the corresponding driven gear 203. The driven gear 203 will drive the bearing plate 201 and the frame 500 on it to rotate by meshing with the driving gear 202. After the frame 500 rotates 180 degrees, the meshing teeth 205 on the transmission plate 204 will disengage from the corresponding driven gear 203. At this time, when the pushing component 300 continues to move to carry out the subsequent cutting operation, the bearing plate 201 will not rotate and will remain in a horizontal position.

[0069] As a further optimization of this embodiment, the rotating placement component 200 also includes a limiting member 220;

[0070] The limiting component 220 includes a limiting cylinder 221 fixed to the bottom of the bearing plate 201 and corresponding to and communicating with the guide cylinder 211, a limiting ring 222 sleeved on the surface of the guide rod 212, and a pushing handle 223 slidably disposed on the inner wall of the limiting cylinder 221;

[0071] One end of the push handle 223 is fixedly engaged with one side of the limiting ring 222, and springs 224 that are fixedly engaged with the guide cylinder 211 are fixedly provided on both sides of the push handle 223. With the setting of the guide cylinder 211, the positioning operation can be formed more quickly during the placement of the frame material 500, so as to meet the rapid placement of multiple frame materials.

[0072] The auxiliary component 210 also includes an abutment rod 230, which is disposed on the surface of the mounting base 101 and near the support plate 201;

[0073] During the aforementioned process of "flipping the frame material 500 by 180 degrees," the guide rod 212 inside the guide cylinder 211 will contact the end of the abutment rod 230 and gradually form contact with it (since the end of the guide cylinder 211 is open, the abutment between the guide rod 212 and the abutment rod 230 during the flipping process can be satisfied, without creating any obstruction to movement). Figure 10 As shown, the guide rod 212 moves into the interior of the support plate 201 during the process of being resisted. During the movement, the guide rod 212 drives the swing arms 217 on both sides through the fixed seat 215, which in turn drives the resisting parts 214 to move. One end of the two resisting parts 214 abuts against the inner side of the anti-slip rubber ring 216. The continuously moving end of the resisting parts 214 will continuously abut against the inner side of the anti-slip rubber ring 216, so that it indirectly forms a resisting engagement with the inner side of the frame 500, ensuring the stability of the frame 500 and the support plate 201. After the frame 500 is flipped, the resisting parts 214 and the frame 500 complete the resisting engagement.

[0074] The limiting component 220 also includes a male limiting block 225 fixed to one side wall of the limiting ring 222 and a female limiting block 226 fixed to the end of the guide rod 212 and corresponding to and adapted to the male limiting block 225;

[0075] During the sliding process of the guide rod 212, the female limiting block 226 will slide and form a snap-fit ​​with the corresponding male limiting block 225, thereby satisfying the position limitation after the contacting member 214 contacts, and ensuring the stable placement of the frame 500.

[0076] like Figure 3 As shown, before the frame 500 is flipped, the push handle 223 is in a state of contact with the inner plate 103. That is, the push handle 22 is subjected to the contact force with the inner plate 103, causing the male limit block 225 and the female limit block 226 in the limit ring 222 on it to separate from each other, so that the limit member 220 after the cut and flipping reset can automatically unlock the frame 500, making it easy to remove the frame 500.

[0077] The surface of the stabilizing base 102 is provided with a pushing component 300 that cooperates with the rotating placement component 200;

[0078] The pushing component 300 includes a sliding plate 301 slidably disposed on the stabilizing seat 102, upright plates 302 fixed on both sides of the upper surface of the sliding plate 301, and a feeding box 303 fixedly disposed at the bottom of the sliding plate 301 and aligned with the position of the cutting component 400 for collecting waste material after the buffer is cut.

[0079] The upright plate 302 extends into the mounting base 101 and is eventually fixedly engaged with the bottom of the corresponding transmission plate 204.

[0080] The aforementioned "pushing the pushing component 300" specifically refers to pushing the sliding plate 301 to slide inside the stable seat 102, so that the sliding plate 301 drives the upright plate 302 on it to slide inside the mounting seat 101. When the upright plate 302 slides, it drives the transmission plate 204 on it to slide, thereby satisfying the flipping requirement of the rotating placement component 200.

[0081] Both the cutting component 400 and the surface of the pushing component 300 near the rotating placement component 200 are provided with a cutting component 400 for cutting the buffer;

[0082] The cutting component 400 includes a feeding groove 401 formed on both sides of the upper surface of the sliding plate 301, and a cutting blade 407 fixed to the surface of the sliding plate 301 near the feeding groove 401 and corresponding to the position of the support plate 201.

[0083] The cutting component 400 also includes a guide box 402 disposed on the inside of the cutting blade 407, a guide plate 403 slidably disposed on both sides of the guide box 402, and an abutment spring 406 fixed inside the guide box 402 and fixedly engaged with the guide plate 403.

[0084] The top two sides of the guide plate 403 have a platform 404 that is flush with the height of the upper frame material after the support plate 201 is flipped over, and a boss 405 that is higher than the platform 404 is formed on the upper surface of the guide plate 403 near the platform 404.

[0085] Specifically, after the frame 500 is rotated 180 degrees, the sliding plate 301 continues to slide. At this time, the guide plate 403 will abut against one side of the rotated frame 500. Then, the sliding plate 301 continues to be pushed, and the contact force between the guide plate 403 and the frame 500 continuously increases. Through the contact force and the adhesion between the table surface 404 and the bottom of the frame 500, the stability of the frame 500 is further ensured when the cutting blade 407 contacts the buffer. Finally, during the sliding process... The sliding plate 301 will drive the cutting blade 407 to abut against the side of the buffer exposed outside the frame 500 and perform sliding cutting. After cutting, the buffer falls to the bottom of the operating table through the cooperation of the guide plate 403, the guide box 402 and the unloading box 303, which facilitates subsequent unified collection and processing. Then, the sliding plate 301 is pulled to reset, so that the bearing plate 201 is flipped and reset, and the limiting member 220 is unlocked from the contact with the inner plate 103, which facilitates the subsequent production and use of the frame.

[0086] By sliding 301, multiple buffers on multiple frame materials 500 can be simultaneously cut, ensuring the manufacturing efficiency of the frame materials on the operating table, while avoiding close contact between the operator and the cutting blade, which helps to reduce safety hazards during operation.

[0087] The above embodiments are only used to illustrate the present invention and are not intended to limit the technical solutions described herein. Although the present invention has been described in detail with reference to the above embodiments, the present invention is not limited to the specific embodiments described above. Therefore, any modifications or equivalent substitutions to the present invention, as well as all technical solutions and improvements that do not depart from the spirit and scope of the invention, are covered within the scope of the claims of the present invention.

Claims

1. An operating table for mounting a buffer, comprising a frame (500) and a buffer groove (501) disposed on the surface of the frame (500) for mounting the buffer, characterized in that, It also includes two parallel connecting seats (100), mounting seats (101) respectively disposed on both sides of the connecting seats (100) and fixedly engaged with the connecting seats (100), and a stabilizing seat (102) disposed between the two mounting seats (101) and fixedly engaged with the connecting seats (100), wherein an inner plate (103) is fixedly provided on the surface of the mounting seat (101); and also includes; Rotary placement component (200): Multiple rotary placement components (200) are arranged at equal intervals on the top of the two connecting seats (100). The rotating placement component (200) includes a support plate (201) that is movably engaged with the opposite sides of the two connecting seats (100) via a rotating shaft, a drive gear (202) fixed to both ends of the support plate (201), a driven gear (203) that meshes with the surface of the drive gear (202) and is movably engaged with the side wall of the connecting seat (100) via a bearing, and a transmission plate (204) that is slidably disposed inside the connecting seat (100) and engages with the driven gear (203). Among them, the surface of the transmission plate (204) is provided with meshing teeth (205) at intervals near the corresponding driven gear (203), and the transmission plate (204) meshes with the driven gear (203) through the meshing teeth (205) for transmission; The surface of the stabilizing base (102) is provided with a pushing component (300) that cooperates with the rotating placement component (200). The surfaces of the cutting component (400) and the pushing component (300) near the rotating placement component (200) are both provided with cutting components (400) for cutting the buffer. The rotating placement component (200) also includes auxiliary components (210) disposed on both sides of the surface of the rotating placement component (200). The auxiliary component (210) includes a guide cylinder (211) fixed to the surface of the bearing plate (201), a guide rod (212) slidably disposed inside the guide cylinder (211), abutment cavities (213) formed on both sides of the guide cylinder (211), abutment members (214) rotatably disposed in the abutment cavities (213), a fixed seat (215) fixed to the surface of the guide cylinder (211), and a swing arm (217) movably assembled on both sides of the fixed seat (215) via a pin and rotatably cooperating with the corresponding abutment members (214). Among them, the surface of the guide tube (211) is fitted with an anti-slip contact rubber ring (216) near the contact cavity (213). The rotating placement component (200) also includes a limiting component (220); The limiting component (220) includes a limiting cylinder (221) fixed to the bottom of the bearing plate (201) and corresponding to and communicating with the guide cylinder (211), a limiting ring (222) sleeved on the surface of the guide rod (212), and a push handle (223) slidably disposed on the inner wall of the limiting cylinder (221). One end of the push handle (223) is fixedly engaged with one side of the limiting ring (222), and springs (224) that are fixedly engaged with the guide cylinder (211) are fixedly provided on both sides of the push handle (223). The limiting member (220) further includes a male limiting block (225) fixed to one side wall of the limiting ring (222) and a female limiting block (226) fixed to the end of the guide rod (212) and corresponding to and adapted to the male limiting block (225). The auxiliary component (210) also includes an abutment rod (230), which is disposed on the surface of the mounting base (101) and close to the support plate (201); As the limiting member (220) rotates 180 degrees with the bearing plate (201), it will come into contact with the abutment rod (230) and abut against the guide rod (212) through the abutment rod (230), causing the abutment member (214) to open outward and form an abutment state.

2. The operating table for mounting a buffer according to claim 1, characterized in that, The pushing component (300) includes a sliding plate (301) slidably disposed on the stabilizing seat (102), upright plates (302) fixed on both sides of the upper surface of the sliding plate (301), and a feeding box (303) fixed on the bottom of the sliding plate (301) and aligned with the position of the cutting component (400) for collecting waste material after the buffer is cut. The upright plate (302) extends into the mounting base (101) and is eventually fixedly engaged with the bottom of the corresponding transmission plate (204).

3. The operating table for mounting a buffer according to claim 2, characterized in that, The cutting component (400) includes a feeding groove (401) opened on both sides of the upper surface of the sliding plate (301) and a cutting blade (407) fixed on the surface of the sliding plate (301) near the feeding groove (401) and corresponding to the position of the support plate (201).

4. The operating table for mounting a buffer according to claim 3, characterized in that, The cutting component (400) also includes a guide box (402) fixed inside the cutting blade (407), a guide plate (403) slidably disposed on both sides of the guide box (402), and an abutment spring (406) fixed inside the guide box (402) and fixedly engaged with the guide plate (403).

5. An operating table for mounting a buffer according to claim 4, characterized in that, The top two sides of the guide plate (403) are formed with a platform (404) that is flush with the height of the upper frame material after the bearing plate (201) is flipped, and a boss (405) higher than the platform (404) is formed on the upper surface of the guide plate (403) near the platform (404).

Citation Information

Patent Citations

  • Turning mechanism used after cutting of cold-formed section steel for photovoltaic support

    CN218696441U