A multi-section merging and splicing auxiliary device for operating platform
By designing a multi-segment merging and splicing auxiliary device for the operating platform, and utilizing structures such as connecting plates, support plates, and fixing components, the stability problem of the operating platforms when arranged side by side is solved, achieving stable connection and fixation of the operating platforms and improving the overall splicing stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-12
- Publication Date
- 2026-03-27
AI Technical Summary
The existing control panels have poor stability when arranged side by side, and are prone to displacement and tilting, which affects long-term use.
The system employs a multi-segment merging and splicing auxiliary device for the control panel. Through the connecting plates, support plates, guide blocks, and fixing components in the splicing parts, it achieves stable connection and fixation of the control panel body, preventing tilting.
It improves the stability of the control panel, prevents displacement and skewing between adjacent control panels, and enhances the overall stability of the control panel assembly.
Smart Images

Figure CN116709696B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of operation platform, and in particular to a multi-section combined and spliced auxiliary device for operation platform. BACKGROUND
[0002] The operation platform is a professional office table for weak current equipment controller, all equipment is enclosed in the operation platform, the internal frame is deepened to provide the possibility of placing special options, a large number of computer mainframes or other equipment, and a multifunctional cable management system is arranged in the internal frame to separate strong current and weak current and to be more functional.
[0003] At present, the operation platform mainly comprises a platform and a containing box below the platform, in the prior art, the number of operation platforms in a large space is also large. The workers realize the daily work on the operation platforms, and generally arrange the operation platforms in parallel abutment to form one or several operation areas.
[0004] In view of the above related technology, the inventors consider that directly arranging the operation platforms in parallel abutment to form one or several operation areas, there is a gap between the operation platforms, which makes the operation platforms prone to displacement in use, the adjacent operation platforms are prone to skew, the stability of the operation platforms is poor, and the operation platforms are not conducive to long-term use. SUMMARY
[0005] In order to improve the stability of the spliced operation platform, the present application provides a multi-section combined and spliced auxiliary device for operation platform.
[0006] The multi-section combined and spliced auxiliary device for operation platform provided by the present application adopts the following technical scheme:
[0007] The multi-section combined and spliced auxiliary device for operation platform comprises an operation platform body, a splicing piece arranged between adjacent operation platform bodies, a connecting plate arranged between the adjacent operation platform bodies, a support plate fixedly connected to the connecting plate, both ends of the support plate abutting against the operation platform bodies, both ends of the operation platform body close to the support plate being fixedly connected with guide blocks, a guide sliding slot being formed in the connecting plate and used for sliding cooperation with the guide blocks, a guide insertion slot being formed in the support plate and used for insertion cooperation with the guide blocks, and a fixing assembly arranged on the support plate and used for fixing the guide blocks.
[0008] By adopting the technical scheme, the operator places the splicing piece between the adjacent operation table bodies, inserts the guide block of the operation table body into the guide sliding groove, then pushes the operation table body, the guide block enters the guide insertion slot along the guide sliding groove, the guide block is inserted and matched with the guide insertion slot, so that the connecting plate is attached to the operation table body, the operator inserts the guide block of the adjacent operation table into the guide insertion slot, so that the connecting plate and the supporting plate are attached to the operation table body, then the operator fixes the guide block by using the fixing assembly, thereby fixing the adjacent operation table bodies and the splicing piece, and preventing the adjacent operation table bodies from being inclined, and improving the stability of the operation table body.
[0009] Preferably, the fixing assembly comprises a fixing block mounted on the supporting plate, a fixing spring fixedly connected to the fixing block, a moving plate slidably arranged on the supporting plate, the fixing block being arranged on the moving plate, a fixing sliding groove being formed on the moving plate and used for slidingly matching with the fixing block, an end portion of the fixing spring away from the fixing block being fixedly connected to an inner end surface of the fixing sliding groove, a fixing insertion slot being formed on the guide block and used for being inserted and matched with the fixing block, an inclined surface being arranged on an end portion of the fixing block close to the guide block, and a driving assembly being arranged on the supporting plate and used for driving the moving plate to move.
[0010] By adopting the technical scheme, the operator inserts the guide block into the guide insertion slot, the fixing block is in the compressed state under the action of the inclined surface, the operator continues to insert the guide block, the fixing block slides on the side wall of the guide block, when the fixing block moves to the position of the fixing insertion slot, the fixing block is inserted into the fixing insertion slot under the action of the fixing spring, thereby fixing the guide block, the operator drives the moving plate to move by using the driving assembly, the moving plate drives the fixing block to move, the fixing block is away from the fixing insertion slot, thereby releasing the fixing state of the guide block, then the operator pulls out the guide block, thereby disassembling the operation table body, and facilitating the operator to use.
[0011] Preferably, the driving assembly comprises a driving rack mounted on the moving plate, and a driving gear rotatably mounted on the supporting plate and engaged with the driving rack.
[0012] By adopting the technical scheme, the operator rotates the driving gear, the driving gear drives the driving rack to move, the driving rack drives the moving plate to move, the moving plate moves to drive the fixing block to move, thereby facilitating the operator to fix and disassemble the guide block.
[0013] Preferably, a push rod is slidably arranged on the supporting plate, the driving gear is slidably sleeved on the push rod, a protrusion is arranged on the driving gear, a helical groove is formed on the end portion of the push rod and used for slidingly matching with the protrusion on the driving gear, and a driving disc is mounted on the end portion of the push rod penetrating out of the supporting plate.
[0014] By adopting the technical scheme, the operator presses the driving disc, the driving disc drives the push rod to move, the push rod drives the protrusion on the driving gear to slide in the helical groove on the push rod, thereby driving the driving gear to rotate, the driving gear drives the driving rack to rotate, thereby driving the fixed block to move away from the fixed slot, and the operator is facilitated to unlock the guide block.
[0015] Preferably, a driving rod is arranged on the end of the push rod away from the driving disc, the end of the driving rod away from the push rod is arranged in the guide slot, the end of the driving rod in the guide slot can abut against the guide block, a driving sliding groove for sliding cooperation with the driving rod is arranged on the push rod, a driving spring is fixedly connected to the driving rod, and the end of the driving spring away from the driving rod is fixedly connected to the inner end surface of the driving sliding groove.
[0016] By adopting the technical scheme, the operator inserts the guide block into the guide slot, the guide block abuts against the driving rod, then the operator continues to insert the guide block, the guide block drives the driving rod to move, the driving rod drives the push rod to move, the push rod drives the moving plate to move close to the guide block, the fixed block abuts against the guide block, the fixed spring is in a compressed state, the operator continues to insert the guide block, when the fixed block moves to the position of the fixed slot, the fixed block is inserted into the fixed slot under the action of the driving spring, thereby fixing the guide plate, the operator presses the driving disc, the driving disc drives the push rod to move, the push rod drives the driving spring to be in a compressed state, when the push rod drives the fixed block to move away from the fixed slot, the driving rod drives the guide block to move away from the guide slot under the action of the driving spring, thereby facilitating the operator to disassemble the operation table body.
[0017] Preferably, a positioning block is arranged on the connecting plate, a positioning hole for plug-in cooperation with the positioning block is arranged on the operation table body, a positioning sliding groove for sliding cooperation with the positioning block is arranged on the connecting plate, a positioning plate is arranged on the connecting plate, the positioning plate passes through the connecting plate and is fixedly connected to the positioning block, and a rectangular groove for sliding cooperation with the positioning plate is arranged on the inner wall of the positioning sliding groove.
[0018] By adopting the technical scheme, the operator drives the positioning plate, the positioning plate slides in the rectangular groove, drives the positioning block to move, the positioning block is inserted into the positioning hole, and the positioning block cooperates with the guide block, thereby fixing the operation table body, and facilitating the operator to splice the operation table body.
[0019] Preferably, a positioning spring is fixedly connected to the positioning block, the end of the positioning spring away from the positioning block is fixedly connected to the inner end surface of the positioning sliding groove, and an inclined surface is arranged on the end of the positioning block away from the positioning spring.
[0020] By adopting the above technical scheme, the operator inserts the guide block into the guide slot, at this time the positioning block abuts against the operation table body and the positioning spring is in a compressed state, the operator pushes the operation table body, the operation table body drives the guide block to be inserted into the guide slot, at this time the positioning block slides on the operation table body, when the positioning block moves to the position of the positioning hole, the positioning block is inserted into the positioning hole under the action of the positioning spring, thereby the adjacent operation table bodies are spliced and fixed in cooperation with the guide block, which is convenient for the operator to use.
[0021] Preferably, a locking plate is provided on the connecting plate, a ratchet plate is provided on the locking plate, a ratchet is provided on the positioning block, the ratchet on the positioning block is engaged with the ratchet plate, a locking sliding slot is formed in the locking plate for sliding cooperation with the ratchet plate, a locking spring is fixedly connected to the ratchet plate, and an end of the locking spring away from the ratchet plate is fixedly connected to an inner end surface of the locking sliding slot.
[0022] By adopting the above technical scheme, the operator inserts the positioning block into the positioning hole, then the operator moves the locking plate by using the control assembly, the locking plate moves to drive the ratchet plate to move, the ratchet plate is engaged with the positioning block, at this time the locking spring is in a compressed state, and the ratchet plate is abutted against the positioning block under the action of the locking spring, thereby the positioning block is locked, the operation table body is prevented from loosening due to the accidental touch of the operator, and the stability of the adjacent operation table bodies is improved.
[0023] Preferably, the control assembly comprises a control rod mounted on the locking plate, a control disc fixedly sleeved on the control rod, and a control spring fixedly connected to the control disc, a control sliding slot is formed in the connecting plate for sliding cooperation with the control disc, an end of the control spring away from the control disc is fixedly connected to the control sliding slot, a limiting plate is mounted on the operation table body, a limiting slot is formed in the connecting plate for sliding cooperation with the limiting plate, and an end of the control rod penetrating out of an inner wall of the limiting slot can abut against the limiting plate.
[0024] By adopting the above technical scheme, the operator pushes the operation table body, the operation table body moves to drive the limiting plate to move, the limiting plate enters the limiting slot to push the control rod, the control rod moves to drive the locking plate to move, thereby the ratchet plate is abutted against the positioning block, and the operator is prevented from accidentally touching the positioning plate, the operator moves the control rod, the control rod moves to drive the control disc to move, the control disc moves to make the control spring be in a compressed state, the control rod is conveniently reset, and thereby the operator is facilitated to repeatedly use.
[0025] Preferably, the locking plate is fixedly connected with a first connecting rod, the end of the first connecting rod away from the locking plate is fixedly connected with a second connecting rod, the second connecting rod is fixedly connected with the push rod, the locking plate is fixedly connected with an adjusting rod, the adjusting rod penetrates the control rod, the end of the adjusting rod penetrating the control rod is fixedly connected with an adjusting disc, the adjusting disc is fixedly connected with an adjusting spring, and the adjusting spring is fixedly connected with the adjusting spring at the end of the adjusting disc away from the adjusting disc.
[0026] By adopting the technical scheme, the operator pushes the push rod, the push rod moves to drive the second connecting rod to move, the second connecting rod moves to drive the first connecting rod to move, the first connecting rod moves to drive the locking plate to move, the locking plate moves to make the ratchet plate move away from the positioning block, so that the locking state of the positioning block is released; the locking plate moves to drive the adjusting rod to move, the adjusting rod moves to drive the adjusting disc to move, and the adjusting spring is in a compressed state under the action of the adjusting disc, which is convenient for the operator to use cyclically; the operator moves the positioning plate, and at this time, the control rod is pushed out of the limiting plate under the actions of the control spring and the adjusting spring, which is convenient for the operator to disassemble the operation table body.
[0027] To sum up, the present application has at least one of the following beneficial technical effects:
[0028] 1. The operator places the splicing piece between the adjacent operation table bodies, inserts the guide block of the operation table body into the guide sliding groove, then pushes the operation table body, the guide block enters the guide insertion slot along the guide sliding groove, the guide block is inserted and matched with the guide insertion slot, so that the connecting plate is attached to the operation table body; the operator inserts the guide block of the adjacent operation table into the guide insertion slot to make the connecting plate and the supporting plate attached to the operation table body, and then the operator fixes the guide block by using the fixing assembly, so as to fix the adjacent operation table bodies and the splicing piece, thereby preventing the adjacent operation table bodies from being skewed, and improving the stability of the operation table body;
[0029] 2. The operator pushes the operation table body, the operation table body moves to drive the limiting plate to move, the limiting plate enters the limiting slot to push the control rod, the control rod moves to drive the locking plate to move, so that the ratchet plate is tightly abutted with the positioning block, preventing the operator from accidentally touching the positioning plate; the operator moves the control rod, the control rod moves to drive the control disc to move, the control disc moves to make the control spring in a compressed state, which is convenient for the control rod to reset, thereby facilitating the operator to use the body repeatedly;
[0030] 3. The operator pushes the push rod, the push rod moves to drive the second connecting rod to move, the second connecting rod moves to drive the first connecting rod to move, the first connecting rod moves to drive the locking plate to move, the locking plate moves to make the ratchet plate away from the positioning block, so as to release the locking state of the positioning block; the locking plate moves to drive the adjusting rod to move, the adjusting rod moves to drive the adjusting disc to move, the adjusting spring is in the compressed state under the action of the adjusting disc, which is convenient for the operator to use circularly; the operator moves the positioning plate, at this time the control rod is pushed out of the limiting plate under the action of the control spring and the adjusting spring, which is convenient for the operator to disassemble the operation table body. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 is a structural schematic diagram of an operation table multi-section type merging and splicing auxiliary device.
[0032] Figure 2 is a structural schematic diagram of a splicing piece.
[0033] Figure 3 is a structural schematic diagram of an operation table multi-section type merging and splicing auxiliary device.
[0034] Figure 4 is Figure 3 is an enlarged schematic view of A in FIG.
[0035] Figure 5 is a structural schematic diagram of a splicing piece.
[0036] Figure 6 is Figure 5 is an enlarged schematic view of B in FIG.
[0037] Mark explanation:
[0038] 1, operating table body; 11, splicing piece; 111, connecting plate; 112, support plate; 12, guide block; 13, guide sliding groove; 14, guide slot; 15, positioning block; 151, positioning hole; 152, positioning sliding groove; 153, positioning plate; 154, rectangular groove; 155, positioning spring; 16, locking plate; 161, ratchet plate; 162, locking sliding groove; 163, locking spring; 164, first connecting rod; 165, second connecting rod; 166, adjusting rod; 167, adjusting disc; 168, adjusting spring; 169, adjusting sliding groove; 2, fixing assembly; 21, fixing block; 22, fixing spring; 23, moving plate; 24, fixing sliding groove; 25, fixing slot; 3, driving assembly; 31, driving rack; 32, driving gear; 33, push rod; 34, driving disc; 35, driving rod; 36, driving sliding groove; 37, driving spring; 4, control assembly; 41, control rod; 42, control disc; 43, control spring; 44, control sliding groove; 45, limiting plate; 46, limiting groove. DETAILED DESCRIPTION
[0039] The following description will be made in conjunction with the accompanying drawings. Figures 1-6 The application is further described in detail.
[0040] The embodiment of the application discloses a multi-section combined splicing auxiliary device for an operating table. Figure 1 The splicing auxiliary device comprises a splicing piece 11, which comprises a connecting plate 111 and a support plate 112. The connecting plate 111 is in a rectangular plate shape and is vertically arranged. The connecting plate 111 is provided with the operating table body 1 on both sides. The support plate 112 is in a rectangular plate shape and is vertically arranged. The plane where the support plate 112 is located is perpendicular to the plane where the connecting plate 111 is located. The support plate 112 is fixedly connected with the connecting plate 111. The two ends of the support plate 112 are respectively abutted with adjacent operating table bodies 1.
[0041] Referring to Figure 1 , Figure 2 The two sides of the operating table body 1 are provided with limiting plates 45, which are in a rectangular plate shape and are vertically arranged. A plurality of limiting grooves 46 are formed in the connecting plate 111. The limiting grooves 46 correspond to the limiting plates 45 in a one-to-one manner. The inner side wall of the limiting groove 46 is in sliding fit with the outer side wall of the limiting plate 45. The limiting plate 45 reduces the impact force of the operating table on the support plate 112, and facilitates the splicing operation of the operating table body 1 by the operator.
[0042] Referring to Figure 2 , Figure 3The operating platform body 1 is provided with guide blocks 12, which are rectangular plates. There are two guide blocks 12, one on each side of the operating platform body 1. A guide groove 13 is provided on the connecting plate 111, located on both sides of the connecting plate 111. The guide grooves 13 are horizontally oriented, and the sidewalls of the guide blocks 12 slide against the inner walls of the guide grooves 13. A guide slot 14 is provided on the support plate 112, horizontally oriented. The inner wall of the guide slot 14 slides against the outer wall of the guide blocks 12, and the inner wall of the guide slot 14 communicates with the inner wall of the guide groove 13.
[0043] Reference Figure 3 , Figure 4 A movable plate 23 is mounted on the support plate 112. The movable plate 23 is rectangular and horizontally positioned. There are two movable plates 23, each corresponding to a guide block 12. A fixing component 2 for fixing the guide block 12 is mounted on the movable plate 23. The fixing component 2 includes a fixing block 21 and a fixing spring 22. The fixing block 21 is horizontally positioned and passes through the movable plate 23. A fixing slot 25 is provided on the guide block 12. The outer side wall of the fixing block 21 slides and engages with the inner side wall of the fixing slot 25. An inclined surface is provided on the end of the fixing block 21 that protrudes from the movable plate 23.
[0044] Reference Figure 4 The movable plate 23 is provided with a fixed slide groove 24, and the inner side wall of the fixed slide groove 24 slides and engages with the outer side wall of the fixed block 21. The fixed spring 22 is horizontally set and is set on the inner wall of the fixed slide groove 24. One end of the fixed spring 22 is fixedly connected to the fixed block 21, and the other end of the fixed spring 22 is fixedly connected to the inner end face of the fixed slide groove 24.
[0045] Reference Figure 3 , Figure 4 A drive assembly 3 for moving the movable plate 23 is provided on the support plate 112. The drive assembly 3 includes a drive rack 31 and a drive gear 32. The drive rack 31 is horizontally arranged and passes through the support plate 112. There are two drive racks 31, each corresponding to one of the movable plates 23, and they are fixedly connected. The drive gear 32 is vertically arranged. There are two drive gears 32, each corresponding to one of the drive racks 31. The drive gears 32 are rotatably mounted on the support plate 112 and mesh with the drive racks 31. A push rod 33 is provided on the drive gear 32.
[0046] Reference Figure 3 , Figure 4The push rod 33 is horizontally arranged, the push rod 33 is arranged through the support plate 112, the push rod 33 is arranged through the drive gear 32, and the axis of the push rod 33 coincides with the axis of the drive gear 32. A spiral groove is arranged on the push rod 33, a protrusion is arranged on the drive gear 32, and the protrusion on the drive gear 32 is in sliding fit with the spiral groove on the push rod 33. The end of the push rod 33 that penetrates out of the support plate 112 is fixedly connected with the drive disc 34, and the end of the push rod 33 that is away from the drive disc 34 is arranged with the drive rod 35.
[0047] With reference to Figure 4 The drive rod 35 is horizontally arranged, the drive rod 35 is arranged through the push rod 33, the end of the drive rod 35 that penetrates out of the push rod 33 penetrates into the guide slot 14, and the end of the drive rod 35 that is located in the guide slot 14 can abut against the guide block 12. A drive sliding groove 36 is arranged on the push rod 33, the inner side wall of the drive sliding groove 36 is in sliding fit with the outer side wall of the drive rod 35, and the end of the drive rod 35 that is located in the drive sliding groove 36 is arranged with the drive spring 37.
[0048] With reference to Figure 4 The drive spring 37 is horizontally arranged, the drive spring 37 is arranged in the drive sliding groove 36, one end of the drive spring 37 is fixedly connected with the drive rod 35, and the other end of the drive spring 37 is fixedly connected with the inner end face of the drive sliding groove 36. The operator inserts the guide block 12 on the adjacent operation table body 1 into the guide sliding groove 13, then pushes the operation table body 1 to make the guide block 12 enter the guide slot 14, the guide block 12 drives the push rod 33 to move through the drive rod 35, the push rod 33 drives the drive rack 31 to move through the drive gear 32, the drive rack 31 drives the fixed block 21 to move close to the guide block 12 through the moving plate 23, so that the adjacent operation table body 1 and the splicing piece 11 are fixed, and then the adjacent operation table body 1 is prevented from being skewed, and the stability of the operation table body 1 is improved.
[0049] The operator continues to push the operation table body 1, the guide block 12 slides on the inclined surface of the fixed block 21 to make the fixed block 21 enter the fixed sliding groove 24, and the fixed spring 22 is in a compressed state, when the fixed block 21 moves to the position of the fixed slot 25, the fixed block 21 enters the fixed slot 25 to fix the guide block 12 under the action of the fixed spring 22. The operator presses the drive disc 34, the drive disc 34 drives the fixed block 21 to move through the push rod 33, at this time, the drive spring 37 is in a compressed state, when the fixed block 21 is away from the fixed slot 25, the drive rod 35 pushes the guide block 12 away from the guide slot 14 under the action of the drive spring 37, so that the fixed state of the operation table body 1 and the support plate 112 is released, and the operator is convenient to install and disassemble multiple operation table bodies 1.
[0050] With reference to Figure 5A positioning block 15 is provided on the connecting plate 111. The positioning block 15 is horizontally arranged, and there are two positioning blocks 15. The positioning blocks 15 are located on the side of the connecting plate 111 near the operating table body 1. The end of the positioning block 15 protruding from the connecting plate 111 enters the operating table body 1. The end of the positioning block 15 protruding from the connecting plate 111 is provided with an inclined surface. The operating table body 1 has two positioning holes 151. The positioning blocks 15 are located on both sides of the operating table body 1. The positioning holes 151 and positioning blocks 15 correspond one-to-one. The outer side wall of the positioning block 15 slides and engages with the inner side wall of the positioning hole 151.
[0051] Reference Figure 5 , Figure 6 The connecting plate 111 has two positioning grooves 152, each corresponding to a positioning block 15. The inner wall of the positioning groove 152 slides in cooperation with the outer wall of the positioning block 15. A positioning spring 155 is fixedly connected to the positioning block 15. The positioning spring 155 is horizontally positioned and located within the positioning groove 152. One end of the positioning spring 155 is fixedly connected to the inner end face of the positioning groove 152, and the other end is fixedly connected to the positioning block 15.
[0052] Reference Figure 2 , Figure 6 A positioning plate 153 is provided on the positioning block 15. The positioning plate 153 is vertically arranged and passes through the connecting plate 111. The positioning plate 153 passes through the connecting plate 111 and is fixedly connected to the positioning block 15. A rectangular groove 154 is formed on the inner wall of the positioning slide groove 152. The rectangular groove 154 is formed along the length direction of the positioning block 15. The inner side wall of the rectangular groove 154 slides and engages with the outer side wall of the positioning plate 153. The rectangular groove 154 is connected to the top surface of the connecting plate 111.
[0053] The operator pushes the operating table body 1, and the moving operating table body 1 causes the positioning block 15 to enter the positioning groove 152 under the action of the inclined surface. The operator continues to push the operating table body 1, and when the fixing block 21 is inserted into the fixing slot 25, the positioning block 15 moves to the position of the positioning hole 151. Under the action of the positioning spring 155, the positioning block 15 enters the positioning hole 151, thereby cooperating with the guide block 12 to fix the operating table body 1. The operator moves the positioning plate 153, and the moving positioning plate 153 causes the positioning block 15 to move away from the positioning hole 151, thereby releasing the fixed state of the operating table body 1.
[0054] Reference Figure 3 , Figure 6A locking plate 16 is provided on the support plate 112. The locking plate 16 is rectangular and horizontally positioned. The locking plate 16 slides through the support plate 112 and is provided with a ratchet plate 161. The ratchet plate 161 is horizontally positioned and passes through the locking plate 16. A locking groove 162 is provided on the locking plate 16. The outer side wall of the ratchet plate 161 slides and engages with the inner side wall of the locking groove 162. A ratchet is provided on the positioning block 15, and the ratchet plate 161 engages with the ratchet on the positioning block 15.
[0055] Reference Figure 3 , Figure 6 A locking spring 163 is provided on the ratchet plate 161. The locking spring 163 is horizontally positioned and located within the locking groove 162. One end of the locking spring 163 is fixedly connected to the ratchet plate 161, and the other end is fixedly connected to the inner end face of the locking groove 162. A second connecting rod 165 is provided on the support plate 112. The second connecting rod 165 is horizontally positioned and passes through the support plate 112. The second connecting rod 165 is fixedly connected to the locking plate 16.
[0056] Reference Figure 3 , Figure 4 The second connecting rod 165 is provided with a first connecting rod 164. The first connecting rod 164 is horizontally arranged and passes through the support plate 112. The first connecting rod 164 is fixedly connected to the second connecting rod 165. The end of the first connecting rod 164 away from the second connecting rod 165 is fixedly connected to the push rod 33.
[0057] Reference Figure 5 , Figure 6 A control assembly 4 for moving the locking plate 16 is provided on the connecting plate 111. The control assembly 4 includes a control rod 41, a control disc 42, and a control spring 43. The control rod 41 is horizontally positioned and passes through the connecting plate 111. The end of the control rod 41 extending out of the connecting plate 111 can abut against the limiting plate 45. An adjusting rod 166 is provided on the end of the control rod 41 near the locking plate 16. The adjusting rod 166 is horizontally positioned and passes through the control rod 41. An adjusting disc 167 is provided on the adjusting rod 166.
[0058] Reference Figure 6The adjusting disc 167 is vertically arranged and arranged on the end of the adjusting rod 166 penetrating the control rod 41, the control rod 41 is provided with an adjusting sliding groove 169, and the outer circumferential surface of the adjusting disc 167 is in sliding fit with the inner wall of the adjusting sliding groove 169. The adjusting disc 167 is provided with an adjusting spring 168, the adjusting spring 168 is horizontally arranged, the adjusting spring 168 is arranged in the adjusting sliding groove 169, one end of the adjusting spring 168 is fixedly connected with the adjusting disc 167, and the other end of the adjusting spring 168 is fixedly connected with the inner end surface of the adjusting sliding groove 169.
[0059] The operator pushes the workbench body, the operation table body 1 drives the control rod 41 to move through the limiting plate 45, the control rod 41 drives the adjusting rod 166 to move through the adjusting spring 168, the adjusting rod 166 drives the ratchet plate 161 to mesh with the positioning block 15 through the locking plate 16, and the ratchet plate 161 is tightly pressed against the positioning block 15 under the action of the locking spring 163, so that the operator cannot move the positioning plate 153, and the operator is prevented from accidentally touching the positioning plate 153 to release the fixing state of the positioning block 15 on the operation table body 1.
[0060] Referring to Figure 5 The control disc 42 is vertically arranged and arranged on the control rod 41, the control disc 42 is sleeved on the control rod 41, the control disc 42 is fixedly connected with the control rod 41, the connecting plate 111 is provided with a control sliding groove 44, and the outer side wall of the control disc 42 is fixedly connected with the inner end surface of the control sliding groove 44. The control spring 43 is horizontally arranged, the control spring 43 is arranged in the control sliding groove 44, one end of the control spring 43 is fixedly connected with the control disc 42, and the other end of the control spring 43 is fixedly connected with the inner end surface of the control sliding groove 44.
[0061] The operator pushes the workbench body, the operation table body 1 is locked through the fixing block 21 and the positioning block 15, the operation table body 1 drives the control rod 41 to move through the limiting plate 45, the control rod 41 drives the control spring 43 to be in a compressed state through the control disc 42, the operator pushes the driving disc 34, the driving disc 34 drives the first connecting rod 164 to move through the push rod 33, the first connecting rod 164 drives the locking plate 16 to move through the second connecting rod 165, the locking plate 16 moves to drive the ratchet plate 161 to move away from the positioning block 15, at this time, the fixing block 21 moves away from the fixing slot 25, then the operator moves the positioning plate 153, the driving rod 35 drives the guide block 12 to move under the action of the driving spring 37, the control rod 41 drives the limiting plate 45 to move under the action of the control spring 43, so as to drive the operation table to move, thereby facilitating the operator to disassemble the adjacent operation table body 1.
[0062] The implementation principle of the embodiment of the multi-section combined splicing auxiliary device of the operation table is as follows: the operator inserts the guide block 12 of the adjacent operation table body 1 into the guide sliding groove 13, then the operator pushes the adjacent operation table body 1, the operation table body 1 is attached to the connecting plate 111 under the action of the guide block 12, the guide block 12 is inserted into the guide insertion groove 14, the fixing block 21 is inserted into the fixing insertion groove 25, and the positioning block 15 is inserted into the positioning hole 151, so as to fix the adjacent operation table body 1 and the splicing piece 11, and further prevent the adjacent operation table body 1 from being skewed, thereby improving the stability of the operation table body 1.
[0063] The operator pushes the driving disc 34, the driving disc 34 drives the fixing block 21 to move away from the fixing insertion groove 25, the driving disc 34 releases the fixing state of the positioning block 15 through the locking plate 16, then the operator moves the positioning plate 153, and the adjacent operation table body 1 is popped out under the action of the driving rod 35 and the control rod 41, so as to facilitate the operator to disassemble the adjacent operation table body 1.
[0064] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application, so that: equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.
Claims
1. A multi-segment merging and splicing auxiliary device for an operating console, comprising an operating console body (1), characterized in that: A splicing component (11) is provided between adjacent operating table bodies (1). The splicing component (11) includes a connecting plate (111) disposed between adjacent operating table bodies (1) and a support plate (112) fixedly connected to the connecting plate (111). Both ends of the support plate (112) abut against the operating table body (1). Guide blocks (12) are fixedly connected to both ends of the operating table body (1) near the support plate (112). A guide groove (13) is provided on the connecting plate (111) for sliding cooperation with the guide block (12). A guide slot (14) is provided on the support plate (112) for insertion cooperation with the guide block (12). A fixing component (2) for fixing the guide block (12) is provided on the support plate (112). The fixing component (2) includes a fixing block (21) mounted on the support plate (112) and a fixing spring (22) fixedly connected to the fixing block (21). A movable plate (23) is provided on the support plate (112), and the fixing block (21) is provided on the movable plate (23). A fixing groove (24) is provided on the movable plate (23) for sliding cooperation with the fixing block (21). The end of the fixing spring (22) away from the fixing block (21) is fixedly connected to the inner end face of the fixing groove (24). A fixing slot (25) is provided on the guide block (12) for insertion cooperation with the fixing block (21). An inclined surface is provided on the end of the fixing block (21) near the guide block (12). A driving component (3) for driving the movable plate (23) to move is provided on the support plate (112).
2. The multi-segment merging and splicing auxiliary device for operating console according to claim 1, characterized in that: The drive assembly (3) includes a drive rack (31) mounted on the movable plate (23) and a drive gear (32) rotatably mounted on the support plate (112), wherein the drive rack (31) meshes with the drive gear (32).
3. The multi-segment merging and splicing auxiliary device for operating console according to claim 2, characterized in that: A push rod (33) is slidably passed through the support plate (112), and the drive gear (32) is slidably sleeved on the push rod (33). The drive gear (32) is provided with a protrusion, and the push rod (33) is provided with a spiral groove for sliding cooperation with the protrusion on the drive gear (32). A drive disc (34) is installed on the end of the push rod (33) that protrudes from the support plate (112).
4. The multi-segment merging and splicing auxiliary device for operating console according to claim 3, characterized in that: A drive rod (35) is provided on the end of the push rod (33) away from the drive disk (34). The end of the drive rod (35) away from the push rod (33) is inserted into the guide slot (14). The end of the drive rod (35) located in the guide slot (14) can abut against the guide block (12). A drive groove (36) is provided on the push rod (33) for sliding cooperation with the drive rod (35). A drive spring (37) is fixedly connected to the drive rod (35). The end of the drive spring (37) away from the drive rod (35) is fixedly connected to the inner end face of the drive groove (36).
5. The multi-segment merging and splicing auxiliary device for operating console according to claim 3, characterized in that: A positioning block (15) is provided on the connecting plate (111), and a positioning hole (151) is provided on the operating table body (1) for inserting and cooperating with the positioning block (15). A positioning groove (152) is provided on the connecting plate (111) for sliding and cooperating with the positioning block (15). A positioning plate (153) is provided on the connecting plate (111), and the positioning plate (153) passes through the connecting plate (111) and is fixedly connected to the positioning block (15). A rectangular groove (154) is provided on the inner wall of the positioning groove (152) for sliding and cooperating with the positioning plate (153).
6. The multi-segment merging and splicing auxiliary device for operating console according to claim 5, characterized in that: A positioning spring (155) is fixedly connected to the positioning block (15). The end of the positioning spring (155) away from the positioning block (15) is fixedly connected to the inner end face of the positioning groove (152). An inclined surface is provided on the end of the positioning block (15) away from the positioning spring (155).
7. The multi-segment merging and splicing auxiliary device for operating console according to claim 5, characterized in that: A locking plate (16) is provided on the connecting plate (111), and a ratchet plate (161) is provided on the locking plate (16). A ratchet is provided on the positioning block (15), and the ratchet on the positioning block (15) engages with the ratchet plate (161). A locking groove (162) is provided on the locking plate (16) for sliding cooperation with the ratchet plate (161). A locking spring (163) is fixedly connected to the ratchet plate (161), and the end of the locking spring (163) away from the ratchet plate (161) is fixedly connected to the inner end face of the locking groove (162). A control component (4) for moving the locking plate (16) is provided on the connecting plate (111).
8. The multi-segment merging and splicing auxiliary device for operating console according to claim 7, characterized in that: The control assembly (4) includes a control rod (41) mounted on the locking plate (16), a control disc (42) fixedly sleeved on the control rod (41), and a control spring (43) fixedly connected to the control disc (42). The connecting plate (111) has a control groove (44) for sliding cooperation with the control disc (42). The end of the control spring (43) away from the control disc (42) is fixedly connected to the control groove (44). The operating table body (1) is equipped with a limit plate (45). The connecting plate (111) has a limit groove (46) for sliding cooperation with the limit plate (45). The end of the control rod (41) that protrudes from the inner wall of the limit groove (46) can abut against the limit plate (45).
9. The multi-segment merging and splicing auxiliary device for operating console according to claim 8, characterized in that: A first connecting rod (164) is fixedly connected to the locking plate (16). A second connecting rod (165) is fixedly connected to the end of the first connecting rod (164) away from the locking plate (16). The second connecting rod (165) is fixedly connected to the push rod (33). An adjusting rod (166) is fixedly connected to the locking plate (16). The adjusting rod (166) passes through the control rod (41). An adjusting disc (167) is fixedly connected to the end of the adjusting rod (166) that passes through the control rod (41). An adjusting spring (168) is fixedly connected to the adjusting disc (167). An adjusting groove (169) is provided on the control rod (41) for sliding cooperation with the adjusting disc (167). The end of the adjusting spring (168) away from the adjusting disc (167) is fixedly connected to the adjusting spring (168).
Citation Information
Patent Citations
Assembling type building board and assembling method
CN116290632A