Drilling and tapping integrated device based on capacity grading cabinet connecting bar machining
By designing a drilling and tapping integrated device for connecting and dispatching processing of the volume cabinet, the suction and filtration system are used to clean the debris during the drilling and tapping process, the rotten teeth or slippery wire problems caused by the debris stuck in the threaded alveolar are solved, ensuring the stability of the screw hole dimensionality and detection accuracy.
Patent Information
- Application Number
- CN202510675225.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-23
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2045-05-23
AI Technical Summary
The debris generated during the drilling and attack process are easily stuck in the threaded alveolar, causing the threaded surface to be scratched when the screw is screwed in, causing rotten teeth or slippery wires. At the same time, the accumulation of metal debris changes the actual size of the screw hole, resulting in failure of the detection of the shut-off gauge or loose screws.
A drilling and tapping integrated device based on the connection and discharge processing of the volume cabinet is designed, including a processing table, a filter mesh, a suction cover, a pumping machine and an electric push rod. Debris are cleaned through the suction and filter mesh system, and debris in the hole are used to clean the debris in the hole with magnets and sponges to avoid debris drifting and accumulation.
Effectively clean the debris generated during drilling and attack, prevent the screw from scratching the thread surface and the size of the screw holes when screwing in, ensure the accuracy of detection and screw stability, and avoid rotten teeth or slippery wires.
Smart Images

Figure CN120422005A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of processing a volumetric cabinet, and in particular to a drilling and tapping integrated device for processing a connecting row of a volumetric cabinet. Background Art
[0002] The capacity distribution cabinet is a capacitor combination device used in power systems. It is suitable for the chemical composition and testing of lithium polymer, lithium ion, nickel metal hydride, and nickel cadmium batteries, and can be used for cycle life testing. The main function of the capacity distribution cabinet connection bar is to ensure stable and reliable current transmission between the components inside the battery capacity distribution cabinet. It connects the battery, control system, load module and other components through the conductive bar to form a complete circuit system, thereby realizing battery charge and discharge testing and performance evaluation. The capacity distribution cabinet connection bar is a conductive component of the battery testing system and needs to be drilled and tapped to accurately connect with the battery module electrodes.
[0003] After searching, the prior art (Announcement No.: CN222626872U) is a multi-station hydraulic slide drilling and tapping device, which proposes "including an operating table, four legs for fixed support are fixedly installed at the four corners of the bottom of the operating table, a moving component for moving the workpiece to be processed is fixedly installed on the top of the operating table, and a blanking component for blanking the workpiece after processing is completed is fixedly installed on the side of the right end of the moving component on the top of the operating table". However, the prior art will generate a large amount of debris during the drilling and tapping process, and the debris may be stuck in the thread groove, causing the thread surface to be scratched when the subsequent screws are screwed in, resulting in rotten teeth or stripping. At the same time, the accumulation of metal debris will change the actual size of the screw hole, resulting in failure of the go / no-go gauge detection or loosening of the screw. Therefore, it is necessary to design a drilling and tapping device for processing based on the connection row of the capacity cabinet. Summary of the Invention
[0004] The purpose of the present invention is to solve the problem that the existing design generates a large amount of debris during the drilling and tapping process. The debris may get stuck in the thread groove, causing the thread surface to be scratched when the screw is subsequently screwed in, resulting in tooth rot or thread slippage. At the same time, the accumulation of metal debris will change the actual size of the screw hole, resulting in failure of the go / no-go gauge detection or loosening of the screw.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] The drilling and tapping integrated device for processing based on the connection row of volume cabinets includes a processing table, a waste port is provided at the top center of the processing table, and a first filter is screwed in the waste port, a support is welded at the top center of the first filter, a discharge pipe is screwed at the bottom of the waste port, and a second filter is screwed inside the discharge pipe, a suction hood is sleeved at the bottom of the discharge pipe, an air pump is screwed inside the processing table, and the output end of the air pump is connected to the bottom of the suction hood by plugging, a movable groove is provided on one side of the top of the processing table, and a dust removal hood is slidably installed inside the movable groove, a plurality of suction pipes are equidistantly plugged into the dust removal hood, and a plurality of suction holes are provided on the suction pipe, a limiting plate is welded at one end of the suction pipe, and the top and bottom of the limiting plate are both screwed with the second filter. A spring, the other end of the first spring is screwed and fixed to the outer wall of the dust collector, a connecting pipe is plugged into the center of the limit plate, a connecting head is provided on the outside of the dust collector, and the other end of the connecting pipe is plugged and connected with the connecting head, the output end of the connecting head is installed with a filter cartridge through a thread, and the other end of the filter cartridge is plugged with a connecting pipe, the other end of the connecting pipe passes through the processing table and is plugged and connected with the output end of the air pump, a first slide groove is provided on the other side of the top of the processing table, and a support plate is slidably installed inside the first slide groove, a first electric push rod is screwed into the interior of the first slide groove, and the telescopic end of the first electric push rod is screwed and fixed to the support plate, a number of metal rods are screwed on the support plate, and sponges are glued to the metal rods, and a magnet is welded to the other end of the suction pipe.
[0007] Preferably, the support is trapezoidal, the metal rod is made of martensitic stainless steel, and the metal rod can be magnetically connected to a magnet.
[0008] Preferably, a second spring is screwed into the interior of the movable groove, and the other end of the second spring is screwed and fixed to the dust cover, a filter element is inserted into the interior of the filter cartridge, a ventilation hole is opened on the outer wall of the processing table, and a controller is screwed into the top end face of the processing table.
[0009] Preferably, a second slide groove is provided on one side of the top of the processing table, and a processing plate is slidably installed inside the second slide groove, a second electric push rod is screwed inside the second slide groove, and the telescopic end of the second electric push rod is screwed and fixed to the processing plate, a first motor is screwed on the processing plate, and a tapping drill bit is welded to the output end of the first motor, a number of probes are screwed equidistantly on the processing plate, and a bracket is welded and screwed on the top of the processing table.
[0010] Preferably, a display is mounted on the top end face of the bracket via a rotating shaft, a decoder is screwed onto the top end face of the bracket, the display is connected to the decoder via a wire, and the probe is connected to the decoder via a wire.
[0011] Preferably, a guide rail is welded to the inner top of the bracket, and a moving block is slidably installed inside the guide rail, an electric telescopic rod is screwed to one end of the bottom of the moving block, a first screw is inserted into the inside of the guide rail, and the first screw is connected to the moving block through a thread, a second motor is screwed to one side of the bracket, and the output end of the second motor is welded and fixed to one end of the first screw.
[0012] Preferably, the telescopic end of the electric telescopic rod is screwed with a horizontal plate, and the bottom two sides of the horizontal plate are screwed with a cylinder, the telescopic end of the cylinder is welded with a connecting rod, and the other end of the connecting rod is screwed with a movable rail, a first splint is welded at one end of the bottom of the movable rail, a second splint is slidably installed inside the movable rail, a second screw is inserted into the inside of the movable rail, and one end of the second screw passes through the movable rail and is welded with a twist block, and the second screw is connected to the movable block by a thread.
[0013] Preferably, the first and second plywood have the same size, and the outer walls of the first and second plywood are both glued with anti-slip pads made of nitrile rubber.
[0014] Compared with the prior art, the present invention provides a drilling and tapping device for processing the connection row of the sub-capacity cabinet, which has the following beneficial effects:
[0015] 1. The present invention controls the first electric push rod through a controller to push the support plate to move along the trajectory of the first slide groove, and the metal rod can be used to send the sponge into the hole connected to the sub-capacity cabinet to clean the debris in the hole. As the support plate continues to move, the metal rod can be made to contact the magnet and be magnetically connected. The first electric push rod is contracted to pull the suction pipe to move into the hole, and the connecting pipe is used to generate negative pressure in the connecting head, so that suction can be generated at the suction hole on the suction pipe. The suction force can be used to suck out the debris remaining in the hole, further improving the cleaning effect. The air containing debris can pass through the connecting head and enter the filter cartridge through the connecting pipe, and the filter element can be used to filter the debris. When the first electric push rod is used, the suction pipe can be pulled into the hole. As the push rod continues to contract, the metal rod and the magnet will separate. The tension of the first spring and the second spring can be used to reset the limit plate and the dust cover respectively. Suction can also be generated in the suction cover by suction from the vacuum pump, so that the debris dropped during the drilling process can be adsorbed on the first filter to prevent the debris from floating in the air. The second filter can be used for secondary filtration to prevent the debris from passing through the suction cover. This method can clean the debris left in the hole by drilling and tapping, and prevent the debris from being stuck in the thread groove, so as to prevent the thread surface from being scratched when the screw is screwed in, causing tooth rot or thread slippage. At the same time, it can prevent the accumulation of metal debris from changing the actual size of the screw hole, resulting in failure of the go / no-go gauge detection or loosening of the screw.
[0016] 2. The use of anti-slip pads can improve the clamping effect and avoid damage to the connecting row of the sub-capacity cabinet during the clamping process. The height position of the cross plate can be adjusted by using an electric telescopic rod. The second motor drives the second screw to move the connecting row of the sub-capacity cabinet. When the connecting row of the sub-capacity cabinet moves to the processing plate, the probe is used to shoot and the decoder is used to transmit the video signal to the monitor to display the picture of the drilling and tapping position, which is convenient for observing the tapping process. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is an overall isometric view of the drilling and tapping device for processing the connection row of the sub-capacity cabinet proposed by the present invention;
[0018] Figure 2 This is a schematic diagram of the back structure of the integrated drilling and tapping device for processing the connection row of the capacity cabinet proposed by the present invention;
[0019] Figure 3 for Figure 2 A magnified view of the structure;
[0020] Figure 4 This is a cross-sectional view of the filter cartridge based on the drilling and tapping integrated device for processing the connection row of the volumetric cabinet proposed by the present invention;
[0021] Figure 5 This is an overall cross-sectional view of the integrated drilling and tapping device for processing the connection row of the capacity cabinet proposed by the present invention;
[0022] Figure 6 This is a schematic diagram of the overall structure of the drilling and tapping device for processing the connection row of the capacity cabinet proposed by the present invention;
[0023] Figure 7 This is an overall vertical cross-sectional view of the integrated drilling and tapping device for processing the connection row of the capacity cabinet proposed by the present invention.
[0024] Explanation of the figure numbers: 1. Processing table; 2. Waste outlet; 3. First filter; 4. Support platform; 5. Discharge pipe; 6. Second filter; 7. Suction hood; 8. Vacuum pump; 9. Movable slot; 10. Dust hood; 11. Suction pipe; 12. Suction hole; 13. Limit plate; 14. First spring; 15. Connecting pipe; 16. Connecting head; 17. Filter cartridge; 18. Connecting pipe; 19. First chute; 20. Support plate; 21. First electric push rod; 22. Metal rod; 23. Sponge; 24. Magnet; 25. Second spring; 26. Filter element ; 27. Ventilation port; 28. Controller; 29. Second slide; 30. Processing plate; 31. Second electric push rod; 32. First motor; 33. Tapping drill bit; 34. Probe; 35. Bracket; 36. Display; 37. Decoder; 38. Guide rail; 39. Moving block; 40. Electric telescopic rod; 41. First screw; 42. Second motor; 43. Cross plate; 44. Cylinder; 45. Connecting rod; 46. Movable rail; 47. First splint; 48. Second splint; 49. Second screw; 50. Twist block; 51. Anti-slip pad. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0026] Example 1:
[0027] See also Figure 1-5, based on the connection of the volume cabinet row processing drilling and tapping integrated device, including a processing table 1, the top center of the processing table 1 is provided with a waste port 2, and the waste port 2 is screwed with a first filter 3, the top center of the first filter 3 is welded with a support platform 4, the bottom of the waste port 2 is screwed with a discharge pipe 5, and the inside of the discharge pipe 5 is screwed with a second filter 6, the bottom of the discharge pipe 5 is sleeved with a suction hood 7, the inside of the processing table 1 is screwed with an exhaust fan 8, and the output end of the exhaust fan 8 is plugged and connected to the bottom of the suction hood 7, and the top side of the processing table 1 is opened. A movable groove 9 is provided, and a dust cover 10 is slidably installed inside the movable groove 9. A plurality of suction pipes 11 are equidistantly plugged into the dust cover 10, and a plurality of suction holes 12 are opened on the suction pipe 11. One end of the suction pipe 11 is welded to a limit plate 13, and the top and bottom of the limit plate 13 are screwed with a first spring 14. The other end of the first spring 14 is screwed and fixed to the outer wall of the dust cover 10. A connecting pipe 15 is plugged into the center of the limit plate 13. A connector 16 is provided on the outside of the dust cover 10, and the other end of the connecting pipe 15 is connected to the The connector 16 is plugged in and connected, and the output end of the connector 16 is threadedly installed with a filter cartridge 17, and the other end of the filter cartridge 17 is plugged with a connecting pipe 18, and the other end of the connecting pipe 18 passes through the processing table 1 and is plugged in and connected with the output end of the vacuum pump 8. A first chute 19 is provided on the other side of the top of the processing table 1, and a support plate 20 is slidably installed inside the first chute 19. A first electric push rod 21 is screwed into the interior of the first chute 19, and the telescopic end of the first electric push rod 21 is screwed and fixed with the support plate 20, and a screw is screwed on the support plate 20. There are several metal rods 22, and sponges 23 are glued to the metal rods 22. A magnet 24 is welded to the other end of the suction tube 11. The support platform 4 is trapezoidal. The metal rods 22 are made of martensitic stainless steel and can be magnetically connected to the magnet 24. A second spring 25 is screwed to the inside of the movable groove 9, and the other end of the second spring 25 is screwed and fixed to the dust cover 10. A filter element 26 is inserted into the inside of the filter cartridge 17. A vent 27 is opened on the outer wall of the processing table 1, and a controller 28 is screwed to the top end face of the processing table 1.
[0028] The controller 28 controls the first electric push rod 21 to push the support plate 20 to move along the trajectory of the first slide groove 19, and the metal rod 22 can be used to send the sponge 23 into the hole connected to the sub-capacity cabinet to clean the debris in the hole. As the support plate 20 continues to move, the metal rod 22 can contact the magnet 24 and be magnetically connected. The first electric push rod 21 is contracted to pull the suction pipe 11 to move into the hole, and the connecting pipe 18 is used to generate negative pressure in the connecting head 16, so that suction can be generated at the suction hole 12 on the suction pipe 11. The suction can be used to suck the debris remaining in the hole, further improving the cleaning effect. Air containing debris passes through the connector 16 and enters the filter cartridge 17. The filter element 26 can filter the debris. When the first electric push rod 21 continues to contract, the metal rod 22 and the magnet 24 will separate. The tension of the first spring 14 and the second spring 25 can be used to reset the limit plate 13 and the dust cover 10 respectively. Suction by the vacuum pump 8 can also generate suction in the suction cover 7, and then the debris dropped during the drilling process can be adsorbed on the first filter 3 to prevent the debris from floating in the air. The second filter 6 can be used for secondary filtration to prevent the debris from passing through the suction cover 7. The support platform 4 can be used to support the connection row of the sub-capacity cabinet.
[0029] Example 2:
[0030] See also Figure 1-2, 4-7, based on embodiment 1, the difference is that a second slide groove 29 is provided on one side of the top of the processing table 1, and a processing plate 30 is slidably installed inside the second slide groove 29, a second electric push rod 31 is screwed inside the second slide groove 29, and the telescopic end of the second electric push rod 31 is screwed and fixed to the processing plate 30, a first motor 32 is screwed on the processing plate 30, and a tapping drill bit 33 is welded to the output end of the first motor 32, a number of probes 34 are screwed equidistantly on the processing plate 30, a bracket 35 is welded and screwed on the top of the processing table 1, a display 36 is installed on the top end face of the bracket 35 through a rotating shaft, a decoder 37 is screwed on the top end face of the bracket 35, and the display 36 is connected to the decoder 37 through a wire, and the probe 34 is connected to the decoder 37 through a wire, a guide rail 38 is welded on the top of the inner side of the bracket 35, and a moving block 39 is slidably installed inside the guide rail 38, and an electric telescopic rod 40 is screwed on the bottom end of the moving block 39, the guide rail A first screw rod 41 is inserted into the interior of 38, and the first screw rod 41 is connected to the moving block 39 by a thread. A second motor 42 is screwed to one side of the bracket 35, and the output end of the second motor 42 is welded and fixed to one end of the first screw 41. The telescopic end of the electric telescopic rod 40 is screwed to a horizontal plate 43, and both sides of the bottom of the horizontal plate 43 are screwed to a cylinder 44. The telescopic end of the cylinder 44 is welded to a connecting rod 45, and the other end of the connecting rod 45 is screwed to a movable rail 46. The movable rail 46 A first clamping plate 47 is welded to one end of the bottom of the movable rail 46, a second clamping plate 48 is slidably installed inside the movable rail 46, a second screw 49 is inserted into the inside of the movable rail 46, and one end of the second screw 49 passes through the movable rail 46 and is welded to a screw block 50, the second screw 49 is connected to the movable block 39 by a thread, the first clamping plate 47 and the second clamping plate 48 have the same size, and the outer walls of the first clamping plate 47 and the second clamping plate 48 are glued with an anti-slip pad 51, and the anti-slip pad 51 is made of nitrile rubber;
[0031] By placing the capacity cabinet connection row between the two movable rails 46, screwing the screw block 50 to drive the second screw 49 to rotate, adjusting the position of the second clamping plate 48 according to the width of the capacity cabinet connection row, and using the cylinder 44 to drive the connecting rod 45 to retract inward, the two first clamping plates 47 and the two second clamping plates 48 can be clamped and fixed to the capacity cabinet connection row. The anti-slip pad 51 can improve the clamping effect and prevent damage to the capacity cabinet connection row during the clamping process. The height position of the cross plate 43 can be adjusted by the electric telescopic rod 40. The second motor 42 drives the second screw 49 to move the capacity cabinet connection row. When the capacity cabinet connection row moves to the processing plate 30, the probe 34 captures the image and the decoder 37 transmits the video signal to the display 36 to display the image of the drilling and tapping. The first motor 32 drives the tapping bit 33 to rotate, and the second electric push rod 31 pushes the processing plate 30 forward. When the tapping bit 33 contacts the capacity cabinet connection row, drilling and tapping can be performed.
[0032] The vacuum pump 8, the first electric push rod 21, the controller 28, the second electric push rod 31, the probe 34, the display 36, the decoder 37, the electric telescopic rod 40 and the cylinder 44 used in the present invention are all existing mature technologies, so they are not described in detail below. When in use, by placing the connecting row of the sub-capacity cabinet between the two movable rails 46, twisting the screw block 50 to drive the second screw 49 to rotate, adjusting the position of the second splint 48 according to the width of the connecting row of the sub-capacity cabinet, and using the cylinder 44 to drive the connecting rod 45 to retract inward, the two first splints 47 and the two second splints 48 can clamp and fix the connecting row of the sub-capacity cabinet, and the anti-slip pad 51 can be used. In order to improve the clamping effect, at the same time, it can avoid damage to the connecting row of the capacity cabinet during the clamping process. The height position of the horizontal plate 43 can be adjusted by using the electric telescopic rod 40. The second screw 49 is driven by the second motor 42 to move the connecting row of the capacity cabinet. When the connecting row of the capacity cabinet moves to the processing plate 30, the probe 34 is used to shoot and the decoder 37 is used to transmit the video signal to the display 36 to display the picture of the drilling and tapping. The tapping drill bit 33 is driven to rotate by the first motor 32, and the processing plate 30 is pushed forward by the second electric push rod 31. When the tapping drill bit 33 contacts the connecting row of the capacity cabinet, drilling and tapping can be performed. The controller 28 controls the first electric push rod 21 to push the support plate 20 to move along the trajectory of the first slide groove 19, and the metal rod 22 can be used to send the sponge 23 into the hole connected to the sub-capacity cabinet to clean the debris in the hole. As the support plate 20 continues to move, the metal rod 22 can be made to contact the magnet 24 and magnetically connected. The first electric push rod 21 is contracted to pull the suction pipe 11 to move into the hole, and the connecting pipe 18 is used to generate negative pressure in the connecting head 16, so that suction can be generated at the suction hole 12 on the suction pipe 11. The suction force can be used to suck the debris remaining in the hole, further improving the cleaning effect. The air containing debris passes through the connector 16 and enters the filter cartridge 17. The filter element 26 can filter the debris. When the first electric push rod 21 continues to contract, the metal rod 22 and the magnet 24 will separate. The tension of the first spring 14 and the second spring 25 can be used to reset the limit plate 13 and the dust cover 10 respectively. The suction by the vacuum pump 8 can also generate suction in the suction cover 7, and the debris dropped during the drilling process can be adsorbed on the first filter 3 to prevent the debris from floating in the air. The second filter 6 can be used for secondary filtration to prevent the debris from passing through the suction cover 7. The support platform 4 can be used to support the connection row of the sub-capacity cabinet.
[0033] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiment. All technical solutions based on the concept of the present invention are within the scope of protection of the present invention. It should be noted that for those skilled in the art, certain improvements and modifications that do not depart from the principles of the present invention should also be considered within the scope of protection of this template.
[0034] In the description of the present invention, it should be understood that the terms "upper", "lower", "left", "right" and the like indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, and a specific direction structure and operation, and therefore, cannot be understood as limiting the present invention. In addition, "first" and "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, unless otherwise specified, "multiple" means two or more.
[0035] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0036] The above is a detailed description of an embodiment of the present invention. However, the content described is only a preferred embodiment of the present invention and should not be considered to limit the scope of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the scope of the patent coverage of the present invention.
Claims
1. A drilling and tapping device for processing a connection row of a capacity distribution cabinet, comprising a processing table (1), characterized in that: A waste opening (2) is provided at the center of the top of the processing table (1), and a first filter (3) is screwed into the waste opening (2), a support (4) is welded to the center of the top of the first filter (3), a discharge pipe (5) is screwed into the bottom of the waste opening (2), and a second filter (6) is screwed into the inside of the discharge pipe (5), a suction hood (7) is sleeved on the bottom of the discharge pipe (5), an exhaust fan (8) is screwed into the inside of the processing table (1), and the output end of the exhaust fan (8) is connected to the suction hood (7). The bottom of the processing table (1) is connected by plugging, a movable groove (9) is provided on one side of the top of the processing table (1), and a dust cover (10) is slidably installed inside the movable groove (9), a plurality of suction pipes (11) are equidistantly plugged on the dust cover (10), and a plurality of suction holes (12) are provided on the suction pipe (11), one end of the suction pipe (11) is welded with a limiting plate (13), and the top and bottom of the limiting plate (13) are both screwed with a first spring (14), and the other end of the first spring (14) is connected to the dust cover The outer wall of the dust cover (10) is screwed and fixed, a connecting pipe (15) is plugged into the center of the limit plate (13), a connector (16) is provided on the outside of the dust cover (10), and the other end of the connecting pipe (15) is plugged into and communicated with the connector (16), the output end of the connector (16) is threadedly mounted with a filter cartridge (17), and the other end of the filter cartridge (17) is plugged into a connecting pipe (18), and the other end of the connecting pipe (18) passes through the processing table (1) and is plugged into and communicated with the output end of the vacuum pump (8) A first slide groove (19) is provided on the other side of the top of the processing table (1), and a support plate (20) is slidably installed inside the first slide groove (19), a first electric push rod (21) is screwed inside the first slide groove (19), and the telescopic end of the first electric push rod (21) is screwed and fixed to the support plate (20), a plurality of metal rods (22) are screwed on the support plate (20), and a sponge (23) is glued on the metal rod (22), and a magnet (24) is welded to the other end of the suction pipe (11).
2. The integrated drilling and tapping device for processing the connection row of the capacity cabinet according to claim 1 is characterized in that: The support platform (4) is trapezoidal in shape, the metal rod (22) is made of martensitic stainless steel, and the metal rod (22) can be magnetically connected to the magnet (24).
3. The integrated drilling and tapping device for processing the connection row of the capacity distribution cabinet according to claim 1 is characterized in that: A second spring (25) is screwed into the interior of the movable groove (9), and the other end of the second spring (25) is screwed and fixed to the dust cover (10). A filter element (26) is inserted into the interior of the filter cartridge (17). A ventilation hole (27) is provided on the outer wall of the processing table (1), and a controller (28) is screwed into the top end face of the processing table (1).
4. The integrated drilling and tapping device for processing the connection row of the capacity cabinet according to claim 1 is characterized in that: A second slide groove (29) is provided on one side of the top of the processing table (1), and a processing plate (30) is slidably installed inside the second slide groove (29), a second electric push rod (31) is screwed inside the second slide groove (29), and the telescopic end of the second electric push rod (31) is screwed and fixed to the processing plate (30), a first motor (32) is screwed on the processing plate (30), and a tapping drill bit (33) is welded to the output end of the first motor (32), a plurality of probes (34) are screwed on the processing plate (30) at equal intervals, and a bracket (35) is welded and screwed on the top of the processing table (1).
5. The integrated drilling and tapping device for processing the connection row of the capacity cabinet according to claim 4 is characterized in that: A display (36) is mounted on the top end surface of the bracket (35) via a rotating shaft, a decoder (37) is screwed onto the top end surface of the bracket (35), and the display (36) is connected to the decoder (37) via a wire, and the probe (34) is connected to the decoder (37) via a wire.
6. The integrated drilling and tapping device for processing the connection row of the capacity cabinet according to claim 4 is characterized in that: A guide rail (38) is welded to the top of the inner side of the bracket (35), and a moving block (39) is slidably installed inside the guide rail (38), and an electric telescopic rod (40) is screwed to one end of the bottom of the moving block (39). A first screw rod (41) is inserted into the inside of the guide rail (38), and the first screw rod (41) is connected to the moving block (39) through a thread. A second motor (42) is screwed to one side of the bracket (35), and the output end of the second motor (42) is welded and fixed to one end of the first screw rod (41).
7. The integrated drilling and tapping device for processing the connection row of the capacity cabinet according to claim 6 is characterized in that: The telescopic end of the electric telescopic rod (40) is screwed with a transverse plate (43), and both sides of the bottom of the transverse plate (43) are screwed with a cylinder (44), the telescopic end of the cylinder (44) is welded with a connecting rod (45), and the other end of the connecting rod (45) is screwed with a movable rail (46), one end of the bottom of the movable rail (46) is welded with a first clamping plate (47), the interior of the movable rail (46) is slidably mounted with a second clamping plate (48), the interior of the movable rail (46) is plugged with a second screw rod (49), and one end of the second screw rod (49) passes through the movable rail (46) and is welded with a twisting block (50), and the second screw rod (49) is connected to the movable block (39) by a thread.
8. The integrated drilling and tapping device for processing the connection row of the capacity cabinet according to claim 7 is characterized in that: The first clamping plate (47) and the second clamping plate (48) have the same size. The outer walls of the first clamping plate (47) and the second clamping plate (48) are both glued with anti-slip pads (51), and the anti-slip pads (51) are made of nitrile rubber.
Citation Information
Patent Citations
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CN210588083U
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CN219665917U