A high-efficiency grinding device for artificial intelligence computer chassis
By designing an electric telescopic rod and a reciprocating screw-driven grinding device within the frame, the problem of single-sided grinding of the casing of an artificial intelligence computer host in the prior art has been solved, realizing automated double-sided grinding, improving grinding efficiency and device convenience.
Patent Information
- Application Number
- CN202210520682.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-12
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2042-05-12
AI Technical Summary
In the existing technology, the polishing device for the casing of artificial intelligence computer host requires the operator to hand polish it and can only polish one side, which is not very practical.
A high-efficiency grinding device was designed, comprising a frame, a telescopic mechanism, a reciprocating lead screw, a lifting plate, and a grinding roller. Through the combination of the electric telescopic rod, the reciprocating lead screw, and the grinding roller, the automated double-sided grinding of computer casing panels is achieved.
It enables automated double-sided sanding of computer casings, improving sanding efficiency and device convenience, and expanding its applicability.
Smart Images

Figure CN115555940B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of polishing equipment technology, and in particular to a high-efficiency polishing device for an artificial intelligence computer chassis. Background Technology
[0002] Artificial intelligence, also known as machine intelligence or artificial intelligence, refers to the intelligence exhibited by machines created by humans. Generally, artificial intelligence refers to the technology of presenting human intelligence through ordinary computer programs. Artificial intelligence is the study of enabling computers to simulate certain human thought processes and intelligent behaviors. It mainly includes the principles of computer intelligence, the creation of computers similar to human brain intelligence, and enabling computers to achieve higher-level applications. Artificial intelligence involves disciplines such as computer science, psychology, philosophy, and linguistics.
[0003] The casing of an AI computer host is assembled from multiple plates through bending, grinding, and assembly processes. Grinding is crucial for ensuring the smoothness of the casing surface, preventing burrs and other defects that could compromise product quality, and avoiding injuries to operators during handling. Current casing grinding typically involves operators stepping on the plates and using a grinding device. Some factories use a fixing device to secure the casing plates, allowing operators to hold the grinding device in their hands for stability during grinding. This fixing device, often composed of a hydraulic cylinder and a pressure plate, only allows grinding one side at a time, and the device still requires manual handling, resulting in poor overall practicality. Therefore, a new, highly efficient grinding device for AI computer host casings needs to be designed to address this issue. Summary of the Invention
[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing an efficient grinding device for artificial intelligence computer chassis.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A high-efficiency grinding device for an artificial intelligence computer chassis includes a frame 1. U-shaped frames 4 are provided on both sides of the frame 1 via telescopic mechanisms. Each telescopic mechanism includes an electrically operated telescopic rod 5 fixedly mounted on the outer wall of the frame 1. The telescopic end of the electric telescopic rod 5 is fixedly connected to the outer wall of the U-shaped frame 4. A reciprocating screw 25 is rotatably mounted inside the U-shaped frame 4. Lifting plates 6 are provided on both sides of the frame 1. The lifting plates 6 are connected to the reciprocating screw 25 via reciprocating mechanisms. Grinding grooves are provided on the side walls of the lifting plates 6. A grinding roller 7 is provided. Multiple fixing plates 2 are located inside the frame 1. Each fixing plate 2 is fixedly connected to the upper and lower inner walls of the frame 1 via fixing rods. Two clamping plates 20 are provided between corresponding pairs of fixing plates 2. A trapezoidal plate 19 is fixed to the end of each clamping plate 20. The inner walls of each fixing plate 2 have inclined surfaces corresponding to the trapezoidal plate 19. Each clamping plate 20 has a storage groove 21 on its side wall. An extension plate 22 slides within the storage groove 21. The side wall of the extension plate 22 has two extrusion grooves. Each groove has a fixing block 24 installed within it via a pressing mechanism. The pressing mechanism includes a pressing spring installed within the pressing groove, with both ends of the spring elastically connected to the bottom wall of the pressing groove and the bottom wall of the fixing block 24, respectively. The outer wall of the clamping plate 20 on the other side has multiple fixing holes 23 corresponding to the fixing blocks 24 and communicating with the receiving groove 21. The two trapezoidal plates 19 are connected by a reset mechanism, which includes a reset slide rod 17 that slides through both trapezoidal plates 19. A reset spring 18 is sleeved on the outside of the reset slide rod 17. The two ends of the return spring 18 are elastically connected to the outer walls of the two trapezoidal plates 19 respectively. A connecting frame 12 is provided on the upper part of the two trapezoidal plates 19. A connecting groove 14 is provided on the bottom wall of the connecting frame 12. A connecting slide rod 15 is fixedly provided in the connecting groove 14. Both trapezoidal plates 19 are connected to the connecting slide rod 15 through a connecting mechanism. The upper and lower inner walls of the frame 1 are respectively provided with a moving groove 8 and a waste discharge channel 10. The connecting frame 12 is connected to the moving groove 8 through a moving mechanism. The connecting frame 12 is connected to the waste discharge channel 10 through a stabilizing mechanism.
[0007] Preferably, the reciprocating mechanism includes a screw sleeve 26 sleeved on the outer wall of the reciprocating screw 25. The screw sleeve 26 is rectangular, and the outer wall of the screw sleeve 26 is slidably connected to the inner wall of the U-shaped frame 4. The lifting plate 6 is fixedly installed on the outer wall of the screw sleeve 26.
[0008] Preferably, the connecting mechanism includes a support rod 16 fixedly disposed at the upper end of the trapezoidal plate 19, and the support rod 16 is slidably sleeved on the outside of the connecting slide rod 15.
[0009] Preferably, the moving mechanism includes a movable threaded rod 9 rotatably disposed in the moving groove 8, and a first connecting rod 13 fixed on the outer wall of the connecting frame 12 located above. The first connecting rod 13 is threadedly sleeved on the outer wall of the movable threaded rod 9. The first connecting rod 13 is a rectangular prism, and the outer walls on both sides of the first connecting rod 13 are in sliding contact with the inner walls on both sides of the moving groove 8.
[0010] Preferably, the stabilizing mechanism includes a stabilizing threaded rod 11 fixedly disposed in the waste discharge channel 10, and a second connecting rod fixedly disposed on the outer wall of the connecting frame 12 located below. The second connecting rod is threadedly sleeved on the outside of the stabilizing threaded rod 11. The second connecting rod is a rectangular column, and the outer walls on both sides of the second connecting rod are in sliding contact with the inner walls on both sides of the waste discharge channel 10.
[0011] The beneficial effects of this invention are:
[0012] 1. By setting up a fixed plate, clamping plate, trapezoidal plate, connecting frame, movable threaded rod and first connecting rod, the clamping plate used to hold and fix the computer shell plate moves with the movable threaded rod, and uses the trapezoidal plate and fixed plate to get close to the computer shell plate and squeeze it. It can also automatically loosen during the resetting process of moving with the movable threaded rod. The overall device is very convenient to use.
[0013] 2. By setting up storage slots, extension plates, extrusion slots, fixing blocks and extrusion mechanisms, the extension plates can change their distance from the fixing plates with the help of fixing blocks and fixing holes, which can increase the length of computer shell plates that the device can clamp and fix, thereby improving the overall applicability of the device.
[0014] 3. By setting up components such as a frame, U-shaped frame, lifting plate, reciprocating screw and screw sleeve, and setting lifting plates and grinding rollers on both sides of the frame, automatic grinding of both sides of the computer shell can be achieved, which can improve the automation level of the device. Attached Figure Description
[0015] Figure 1 This is a bottom view of the structure of an efficient grinding device for an artificial intelligence computer chassis proposed in this invention;
[0016] Figure 2 for Figure 1 Enlarged schematic diagram of the structure at point A;
[0017] Figure 3 This is a top view of the efficient grinding device for an artificial intelligence computer chassis proposed in this invention.
[0018] Figure 4 This is a side cross-sectional schematic diagram of an efficient grinding device for an artificial intelligence computer chassis proposed in this invention.
[0019] In the diagram: 1. Frame, 2. Fixing plate, 3. Inlet / outlet, 4. U-shaped frame, 5. Electric telescopic rod, 6. Lifting plate, 7. Grinding roller, 8. Moving groove, 9. Moving threaded rod, 10. Waste removal channel, 11. Stabilizing threaded rod, 12. Connecting frame, 13. First connecting rod, 14. Connecting groove, 15. Connecting slide rod, 16. Support rod, 17. Reset slide rod, 18. Reset spring, 19. Trapezoidal plate, 20. Clamping plate, 21. Storage groove, 22. Extension plate, 23. Fixing hole, 24. Fixing block, 25. Reciprocating screw, 26. Screw sleeve. Detailed Implementation
[0020] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0021] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They 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. Therefore, they should not be construed as limitations on this invention.
[0022] Reference Figure 1-4 An efficient polishing device for an artificial intelligence computer chassis includes a frame 1. Both sides of the frame 1 are provided with U-shaped frames 4 via telescopic mechanisms. The telescopic mechanism includes an electric telescopic rod 5 fixedly installed on the outer wall of the frame 1. The telescopic end of the electric telescopic rod 5 is fixedly connected to the outer wall of the U-shaped frame 4. The electric telescopic rod 5 drives the U-shaped frame 4 to approach the frame 1, thereby driving the lifting plate 6 and the polishing roller 7 to move and make the polishing roller 7 fit against the surface of the computer chassis.
[0023] A reciprocating screw 25 is rotatably installed inside the U-shaped frame 4. Lifting plates 6 are provided on both sides of the frame 1. The lifting plates 6 are connected to the reciprocating screw 25 through a reciprocating mechanism. The mechanism includes a screw sleeve 26 sleeved on the outer wall of the reciprocating screw 25. The screw sleeve 26 is rectangular. The outer wall of the screw sleeve 26 is slidably connected to the inner wall of the U-shaped frame 4. The lifting plates 6 are fixedly installed on the outer wall of the screw sleeve 26. The power device of the reciprocating screw 25 and the power device of the grinding roller 7 are started. The grinding roller 7 rotates to achieve grinding. The rotation of the reciprocating screw 25, with the help of the screw sleeve 26, realizes the up-and-down reciprocating movement of the lifting plates 6 and the grinding roller 7, thereby realizing the large-area grinding processing of the surface of the computer shell.
[0024] The lifting plate 6 has a grinding groove on its side wall, and a grinding roller 7 is installed in the grinding groove. The frame 1 has multiple fixing plates 2 inside, and the fixing plates 2 are fixedly connected to the upper and lower inner walls of the frame 1 by fixing rods. Two clamping plates 20 are provided between corresponding two fixing plates 2. A trapezoidal plate 19 is fixed to the end of each clamping plate 20. The inner wall of each fixing plate 2 has an inclined surface corresponding to the trapezoidal plate 19. The side wall of each clamping plate 20 has a storage groove 21. An extension plate 22 is slidably provided in the storage groove 21. The side wall of the extension plate 22 has two extrusion grooves. A fixing block 24 is provided in each of the two extrusion grooves through an extrusion mechanism. The extrusion mechanism includes an extrusion spring installed in the extrusion groove. The two ends of the extrusion spring are elastically connected to the bottom wall of the extrusion groove and the bottom wall of the fixing block 24, respectively. The elastic potential energy provided by the extrusion spring can extrude the fixing block 24, thereby ensuring that it is stably placed in the fixing hole 23.
[0025] The outer wall of the clamping plate 20 on the other side is provided with a plurality of fixing holes 23 corresponding to the fixing block 24 and communicating with the storage groove 21. The two trapezoidal plates 19 are connected by a reset mechanism. The reset mechanism includes a reset slide rod 17 that slides through the two trapezoidal plates 19. A reset spring 18 is sleeved on the outside of the reset slide rod 17. The two ends of the reset spring 18 are elastically connected to the outer wall of the two trapezoidal plates 19 respectively. When the trapezoidal plate 19 is separated from the fixing plate 2, the reset spring 18 will squeeze the trapezoidal plate 19, causing the clamping plate 20 to lose its squeezing and fixing of the computer shell, thereby completing the loosening.
[0026] A connecting frame 12 is provided above the two trapezoidal plates 19. A connecting groove 14 is provided on the bottom wall of the connecting frame 12. A connecting slide rod 15 is fixedly provided in the connecting groove 14. Both trapezoidal plates 19 are connected to the connecting slide rod 15 through a connecting mechanism. The connecting mechanism includes a support rod 16 fixedly provided at the upper end of the trapezoidal plate 19. The support rod 16 is slidably sleeved on the outside of the connecting slide rod 15. The connecting frame 12 plays a connecting role.
[0027] The upper and lower inner walls of the frame 1 are respectively provided with a moving groove 8 and a waste discharge channel 10. The connecting frame 12 is connected to the moving groove 8 through a moving mechanism. The moving mechanism includes a moving threaded rod 9 rotatably disposed in the moving groove 8. A first connecting rod 13 is fixed on the outer wall of the upper connecting frame 12. The first connecting rod 13 is threaded onto the outer wall of the moving threaded rod 9. The first connecting rod 13 is a rectangular prism. Both outer walls of the first connecting rod 13 slide in contact with the inner walls of both sides of the moving groove 8. The connecting frame 12 is connected to the waste discharge channel 10 through a stabilizing mechanism. The stabilizing mechanism includes a stabilizing threaded rod 11 fixedly disposed in the waste discharge channel 10. A second connecting rod is fixed on the outer wall of the lower connecting frame 12. The second connecting rod is threaded onto the outside of the stabilizing threaded rod 11. The second connecting rod is a rectangular prism. Both outer walls of the second connecting rod slide in contact with the inner walls of both sides of the waste discharge channel 10. The moving threaded rod 9 and the stabilizing threaded rod 11 are key devices for driving the movement of the clamping plate 20.
[0028] In use, the computer casing plate enters through the inlet / outlet 3 on the left side of the frame 1 and is positioned between the two clamping plates 20. Then, a power device drives the moving threaded rod 9 and the stabilizing threaded rod 11 to rotate synchronously (this power device, as well as other subsequent power devices, are described in the figures and text because they are existing products in the prior art). When the moving threaded rod 9 and the stabilizing threaded rod 11 rotate synchronously, the first connecting rod 13 and the second connecting rod can drive the connecting frame 12 to move. The connecting frame 12 can then drive the trapezoidal plate 19 to move inwards towards the two fixed plates 2 via the connecting slide rod 15 and the support rod 16. The trapezoidal plate 19 can then drive the clamping plates 20 to move synchronously, ensuring that the computer casing plate moves synchronously with the two clamping plates 20. Once the trapezoidal plate 19 tilts... When one side corresponds to the inclined surface on the inner wall of the fixed plate 2, the two clamping plates 20 will approach each other under the influence of the trapezoidal plate 19 and achieve the squeezing and fixing of the computer shell plate. At this time, the computer shell plate is released and moved until the center line coincides with the center line of the grinding roller 7. Then, multiple electric telescopic rods 5 are started simultaneously. With the help of the electric telescopic rods 5, the U-shaped frame 4 is moved closer to the frame 1, which then drives the lifting plate 6 and the grinding roller 7 to move and make the grinding roller 7 fit against the surface of the computer shell plate. Then, the power device of the reciprocating screw 25 and the power device of the grinding roller 7 are started. The grinding roller 7 rotates to achieve grinding. The reciprocating screw 25 rotates to achieve the up and down reciprocating movement of the lifting plate 6 and the grinding roller 7 with the help of the screw sleeve 26, thereby achieving large-area grinding processing on the surface of the computer shell plate.
[0029] The computer casing can be moved and reset by rotating the movable threaded rod 9 and the stable threaded rod 11 in opposite directions. At this time, the operator should be careful that the computer casing will not fall off due to the squeezing and fixing force of the clamping plate 20. After the trapezoidal plate 19 is separated from the fixed plate 2, the return spring 18 will squeeze the trapezoidal plate 19, causing the clamping plate 20 to lose its squeezing and fixing force on the computer casing, thus completing the loosening.
[0030] The pressing and fixing block 24 can disengage it from the current fixing hole 23. Then, after the extension plate 22 is pulled to adjust the overall length of the extension plate 22 and the clamping plate 20, and the fixing block 24 is aligned with the other fixing holes 23, it can be re-engaged into the fixing hole 23 under the action of the compression spring, thereby re-fixing the position of the extension plate 22. It is worth noting that the side wall of the extension plate 22 is flush with the side wall of the clamping plate 20. The limiting blocks on the other side walls of the extension plate 22 and the limiting groove on the inner wall of the storage groove 21 can ensure that the extension plate 22 can only move horizontally relative to the clamping plate 20 and will not disengage laterally from it.
[0031] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A high-efficiency polishing device for an artificial intelligence computer chassis, comprising a frame (1), characterized in that, The frame (1) has U-shaped frames (4) on both sides via telescopic mechanisms. The telescopic mechanism includes an electric telescopic rod (5) fixedly installed on the outer wall of the frame (1). The telescopic end of the electric telescopic rod (5) is fixedly connected to the outer wall of the U-shaped frame (4). A reciprocating screw (25) is rotatably installed inside the U-shaped frame (4). The frame (1) has lifting plates (6) on both sides. The lifting plates (6) are connected to the reciprocating screw (25) via a reciprocating mechanism. The side wall of the lifting plates (6) has a grinding groove. A grinding roller (7) is installed in the grinding groove. The frame (1) has multiple pieces of grinding rollers inside. Fixed plates (2), multiple fixed plates (2) are fixedly connected to the upper and lower inner walls of the frame (1) by fixed rods. Two clamping plates (20) are provided between corresponding two fixed plates (2). Trapezoidal plates (19) are fixed to the ends of both clamping plates (20). The inner walls of both fixed plates (2) are provided with inclined surfaces corresponding to the trapezoidal plates (19). The side walls of both clamping plates (20) are provided with storage grooves (21). An extension plate (22) is slidably provided in the storage groove (21). The side walls of the extension plate (22) are provided with two extrusion grooves. The two extrusion grooves are provided with a fixed plate by an extrusion mechanism. The compression mechanism includes a compression spring disposed in the compression groove. The two ends of the compression spring are elastically connected to the bottom wall of the compression groove and the bottom wall of the compression block (24), respectively. The outer wall of the clamping plate (20) on the other side is provided with a plurality of fixing holes (23) corresponding to the compression block (24) and communicating with the storage groove (21). The two trapezoidal plates (19) are connected by a reset mechanism. The reset mechanism includes a reset slide rod (17) that slides through the two trapezoidal plates (19). A reset spring (18) is sleeved on the outside of the reset slide rod (17). The two ends of the reset spring (18) are respectively The frame (1) is elastically connected to the outer wall of two trapezoidal plates (19). A connecting frame (12) is provided on the top of the two trapezoidal plates (19). A connecting groove (14) is provided on the bottom wall of the connecting frame (12). A connecting slide rod (15) is fixedly provided in the connecting groove (14). The two trapezoidal plates (19) are connected to the connecting slide rod (15) through the connecting mechanism. The upper and lower inner walls of the frame (1) are respectively provided with a moving groove (8) and a waste discharge channel (10). The connecting frame (12) is connected to the moving groove (8) through the moving mechanism. The connecting frame (12) is connected to the waste discharge channel (10) through the stabilizing mechanism.
2. The high-efficiency polishing device for an artificial intelligence computer chassis according to claim 1, characterized in that, The reciprocating mechanism includes a screw sleeve (26) sleeved on the outer wall of the reciprocating screw (25). The screw sleeve (26) is rectangular. The outer wall of the screw sleeve (26) is slidably connected to the inner wall of the U-shaped frame (4). The lifting plate (6) is fixedly installed on the outer wall of the screw sleeve (26).
3. The high-efficiency polishing device for an artificial intelligence computer chassis according to claim 2, characterized in that, The connecting mechanism includes a support rod (16) fixedly installed at the end of the trapezoidal plate (19), and the support rod (16) is slidably sleeved on the outside of the connecting slide rod (15).
4. The high-efficiency polishing device for an artificial intelligence computer chassis according to claim 3, characterized in that, The moving mechanism includes a movable threaded rod (9) rotatably disposed in the moving groove (8), and a first connecting rod (13) fixed on the outer wall of the connecting frame (12) located above. The first connecting rod (13) is threadedly sleeved on the outer wall of the movable threaded rod (9). The first connecting rod (13) is a rectangular prism, and the outer walls on both sides of the first connecting rod (13) are in sliding contact with the inner walls on both sides of the moving groove (8).
5. The high-efficiency polishing device for an artificial intelligence computer chassis according to claim 4, characterized in that, The stabilizing mechanism includes a stabilizing threaded rod (11) fixedly installed in the waste discharge channel (10). A second connecting rod is fixed on the outer wall of the connecting frame (12) located below. The second connecting rod is threaded on the outside of the stabilizing threaded rod (11). The second connecting rod is a rectangular column. The outer walls on both sides of the second connecting rod are in sliding contact with the inner walls on both sides of the waste discharge channel (10).
Citation Information
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