Aluminum arm processing device
By designing an aluminum cantilever processing device that integrates drilling, cutting, and printing functions, the problem of insufficient processing precision and efficiency in existing aluminum cantilever technologies has been solved, realizing automated production and high-precision processing of aluminum cantilever arms and improving product quality.
Patent Information
- Application Number
- CN202510007954.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2045-01-03
AI Technical Summary
Existing aluminum cantilever processing devices cannot achieve one-stop drilling, cutting and printing, and the processing accuracy and efficiency are insufficient, which cannot meet the high precision requirements of high-speed railway catenary.
An aluminum cantilever processing device integrating drilling, cutting, and printing functions was designed. It includes a support platform, a traction drilling device, a sawing device, and a printing device. The cantilever is fixed by a clamping device, and the drilling and printing are performed by moving it using the traction device. The sawing device performs cutting, realizing automated production.
The automated production of aluminum cantilever arms has been achieved, improving processing accuracy and efficiency, increasing product qualification rate, and meeting the high-precision requirements of high-speed railway catenary.
Smart Images

Figure CN119609668B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of aluminum cantilever arms for overhead contact lines, and more particularly to an aluminum cantilever arm processing device. Background Technology
[0002] With the rapid development of railway construction in my country, new requirements have been placed on the process quality standards of related components in the railway industry, and the precision requirements for the construction and maintenance of railway lines are becoming increasingly stringent. In railway lines, the overhead contact system is a crucial component ensuring normal railway operation. Connected to the electrified railway power supply lines, it directly undertakes the primary task of supplying energy to electric trains. The cantilever arm is the support device for the overhead contact system, and its pre-assembly is an important aspect of electrified railway construction. High-speed railways have extremely high precision requirements for overhead contact system installation. Since most components of high-speed railway overhead contact system projects cannot be repeatedly disassembled and reassembled, the cantilever arm support device must be precisely assembled in one go after accurate calculations. Due to constraints such as high altitude conditions on site, a pre-fabrication method based on ground batches is necessary. The quality of this one-time installation of the entire contact suspension directly affects the quality, progress, and efficiency of subsequent construction. The aluminum cantilever arm includes a cantilever tube and a single-ear connector. After the single-ear connector is installed at one end of the cantilever tube, it is necessary to drill a hole at its end, print a code on the outer periphery of the cantilever tube, and cut the cantilever tube to a certain length. Therefore, there is an urgent need for a processing device for drilling, printing, and cutting aluminum cantilever arms.
[0003] In view of this, the present invention provides an aluminum bracket processing device that integrates the functions of punching, cutting and printing on the bracket, realizing one-stop processing of punching, cutting and printing on the bracket, and the processing accuracy is controllable, realizing the automated production of aluminum brackets, improving work efficiency and product qualification rate. Summary of the Invention
[0004] The present invention aims to provide an aluminum wrist arm processing device to overcome the shortcomings of the prior art. The technical problem to be solved by the present invention is achieved through the following technical solution.
[0005] An aluminum cantilever arm processing device includes a support platform, a traction drilling device, a sawing device, and a printing device. The traction drilling device includes a traction base plate and a clamping device, a traction device, and a drilling device mounted on the traction base plate. The traction base plate is mounted on the support platform and can move horizontally relative to the support platform. The clamping device is used to clamp and fix the cantilever arm. The clamping device includes a clamping bracket I, a clamping cylinder I, a clamping block I, and a traction support. The clamping bracket I is mounted on the traction base plate. Above, the clamping cylinder I is installed on the upper end of the clamping bracket I with its output end facing downwards. The output end of the clamping cylinder I is fixedly connected to the clamping block I. The bottom end face of the clamping block I is provided with a V-shaped groove. The traction support is installed on the traction base plate and its position corresponds to the position of the clamping block I. The upper end face of the traction support is provided with an arc-shaped groove, which matches the wrist arm. The traction support includes a traction support block I and a traction support block II. The traction support block I and the... A gap is provided between the traction support blocks II. A support block mounting plate is installed on the traction base plate. The traction support blocks I and II are mounted on the support block mounting plate. Both the traction base plate and the support block mounting plate are provided with through slots, which match the gaps between the traction support blocks I and II. A chip box is installed at the bottom of the traction base plate, and the size of the chip box at least covers the through slots. The traction device is connected to the traction base plate and the support platform respectively, and is used to drive the traction base plate to move left and right along the support platform, thereby driving the wrist arm to move left and right along the support platform. The drilling device is located on the side of the clamping device and is used to drill holes in the wrist arm. The sawing device is located on the left side of the traction drilling device and is used to further support and cut the wrist arm. The printing device is located between the traction drilling device and the sawing device and is located on the side of the wrist arm, and is used to print on the outer peripheral wall of the wrist arm.
[0006] Preferably, the clamping device further includes a tube tail support and a fixing handle. The wrist arm includes a wrist arm tube and a single-ear connector. The single-ear connector is provided with a round hole. After the end of the wrist arm is placed on the arc-shaped groove on the traction support, the round hole of the single-ear connector matches the position of the fixing hole on the tube tail support. The fixing handle is used to pass through the round hole of the single-ear connector and insert into the fixing hole of the tube tail support to fix the wrist arm.
[0007] Preferably, the traction device includes a traction motor, a gear, and a rack. The traction motor is mounted on the traction base plate and its output end extends downward through the traction base plate. The gear is mounted at the lower end of the output end of the traction motor, and the rack is mounted on the support platform. The gear and the rack mesh with each other.
[0008] Preferably, a guide device is provided between the traction base plate and the support platform. The guide device includes sliders I installed on both sides of the lower end face of the traction base plate and guide rails installed on both sides of the upper end face of the support platform. The sliders I and the guide rails are connected to each other.
[0009] Preferably, the sawing device includes a sawing mounting plate, a sawing clamping device, a saw blade, and a sawing driving device. The sawing mounting plate is fixedly installed on the support platform and located on the left side of the traction base plate. The sawing clamping device is used to clamp and fix the arm. The sawing driving device is installed on the sawing mounting plate and connected to the saw blade. The initial position of the saw blade is located to the side of the arm and the sawing surface is perpendicular to the axis of the arm. The sawing driving device is used to drive the saw blade to move back and forth and to drive the saw blade to rotate, so as to cut the arm.
[0010] Preferably, the sawing clamping device includes a clamping bracket II, a clamping cylinder II, a clamping block II, and a sawing support base. The clamping bracket II is mounted on the sawing mounting plate. The clamping cylinder II is mounted on the upper end of the clamping bracket II with its output end facing downward. The output end of the clamping cylinder II is fixedly connected to the clamping block II. The bottom end face of the clamping block II is provided with a V-shaped groove. The sawing support base is mounted on the sawing mounting plate and its position corresponds to the position of the clamping block II. The upper end face of the sawing support base is L-shaped, and its L-shaped bend faces the saw blade.
[0011] Preferably, the sawing support base includes a sawing support block I and a sawing support block II, with a gap between the sawing support block I and the sawing support block II. The sawing mounting plate is provided with a sawing plate groove, which matches the gap between the sawing support block I and the sawing support block II. The support platform has a sawing chip box built in, and the sawing plate groove is located above the sawing chip box.
[0012] Preferably, the sawing drive device includes a sawing motor, the output end of which is fixedly connected to the saw blade and is used to drive the saw blade to rotate; the sawing motor is mounted on the sawing mounting plate and can move back and forth relative to the sawing mounting plate.
[0013] Preferably, a sawing motor support plate is mounted on the sawing mounting plate, and a sawing telescopic cylinder is mounted on the sawing motor support plate. The output end of the sawing telescopic cylinder is fixedly connected to the sawing motor and is used to drive the sawing motor to move back and forth.
[0014] Preferably, the printing device includes a printing bracket, a printhead, and a printing controller. The printing bracket is installed between the traction punching device and the sawing device. The printhead is installed on one side of the upper end of the printing bracket with the nozzle facing the wrist arm fixed on the traction punching device. The printing controller is installed on the other side of the upper end of the printing bracket and is used to control the printing operation of the printhead and display printing information.
[0015] In this invention, when processing the wrist arm, the right end of the wrist arm is first clamped and fixed by the clamping device of the traction punching device, while the sawing device further supports the left or middle part of the wrist arm. Then, a hole is punched at the right end of the wrist arm by the punching device. The right end of the wrist arm is pulled to the right by the traction device to move to the first target position so that the printing device can print at the corresponding position of the wrist arm. After printing is completed, the wrist arm is pulled horizontally along the support platform to the second target position by the traction device. The wrist arm is further clamped and fixed by the sawing device, and then the wrist arm is cut by the sawing device.
[0016] The present invention provides an aluminum bracket processing device that integrates the functions of punching, cutting and printing on brackets, realizing one-stop processing of brackets, and the processing accuracy is precise and controllable, realizing the automated production of aluminum brackets, improving work efficiency and product qualification rate. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of the present invention;
[0018] Figure 2 This is a schematic diagram of the traction drilling device in this invention;
[0019] Figure 3 This is a schematic diagram of the clamping device in this invention;
[0020] Figure 4 This is a schematic diagram of the sawing device in this invention;
[0021] Figure 5 This is a schematic diagram of the sawing and clamping device in this invention;
[0022] Figure 6 This is a schematic diagram of the printing device in this invention;
[0023] Figure 7 This is a schematic diagram of the wrist arm structure in this invention;
[0024] The reference numerals in the attached figures are as follows: 11. Traction platform; 12. Sawing platform; 2. Traction drilling device; 21. Traction base plate; 221. Clamping bracket I; 222. Clamping cylinder I; 223. Clamping block mounting seat I; 224. Clamping block I; 225. Support block mounting plate; 2251. Through slot; 226. Traction support block I; 227. Traction support block II; 228. Pipe tail support seat; 229. Fixed handle; 231. Traction motor; 232. Rack; 233. Slider I; 234. Guide rail; 24. Drilling device; 25. Drilling baffle; 26. Cutting box; 3. Sawing device; 31. Sawing. Mounting plate, 311. Saw slot, 321. Clamping bracket II, 322. Clamping cylinder II, 323. Clamping block mounting seat II, 324. Clamping block II, 325. Saw support block I, 326. Saw support block II, 331. Saw motor support plate, 332. Saw telescopic cylinder, 333. Motor sliding plate, 334. Saw motor, 335. Saw blade, 336. Saw blade protective cover, 337. Slider II, 338. Slide rail, 4. Printing device, 41. Printing bracket, 42. Printhead, 43. Printing controller, 5. Wrist arm, 51. Wrist arm tube, 52. Single ear connector, 521. Round hole. Detailed Implementation
[0025] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0026] The front, back, left, and right directions described in this invention are... Figure 1 The directions shown are front, back, left, and right.
[0027] Example 1:
[0028] Reference Figure 1As shown, an aluminum wrist arm processing device is improved in that it includes a support platform, a traction punching device 2, a sawing device 3, and a printing device 4. The traction punching device 2 includes a traction base plate 21 and a clamping device, a traction device, and a punching device mounted on the traction base plate 21. The traction base plate 21 is mounted on the support platform and can move horizontally relative to the support platform. The clamping device is used to press and fix the wrist arm 5. The traction device is connected to the traction base plate 21 and the support platform respectively, and is used to drive the traction base plate 21 to move left and right along the support platform, thereby driving the wrist arm 5 to move left and right along the support platform. The punching device is located to the side of the clamping device and is used to punch holes in the wrist arm 5. The sawing device 3 is located to the left of the traction punching device 2 and is used to further support and cut the wrist arm 5. The printing device 4 is located between the traction punching device 2 and the sawing device 3 and is located to the side of the wrist arm 5, and is used to print on the outer peripheral wall of the wrist arm 5.
[0029] In this embodiment, when processing the wrist arm 5, the right end of the wrist arm 5 is first clamped and fixed by the clamping device of the traction punching device 2. At the same time, the sawing device 3 further supports the left or middle part of the wrist arm 5. Then, the punching device punches a hole at the right end of the wrist arm 5. The traction device pulls the right end of the wrist arm 5 to move to the first target position so that the printing device 4 can print at the corresponding position of the wrist arm 5. After printing is completed, the traction device continues to pull the wrist arm 5 to move horizontally along the support platform to the second target position. The sawing device 3 further clamps and fixes the wrist arm 5. Then, the sawing device 3 cuts the wrist arm 5.
[0030] This embodiment provides an aluminum cantilever processing device that integrates drilling, cutting, and printing functions for the cantilever, realizing one-stop processing of drilling, cutting, and printing for the cantilever. The processing accuracy is precise and controllable, realizing automated production of aluminum cantilever, improving work efficiency and product qualification rate.
[0031] Furthermore, the drilling device includes a drill bit for drilling holes in the wrist arm.
[0032] Furthermore, the printing device 4 includes a printing bracket 41, a printhead 42, and a printing controller 43. The printing bracket 41 is installed between the traction punching device 2 and the sawing device 3. The printhead 42 is installed on one side of the upper end of the printing bracket 41 with the nozzle facing the wrist arm 5 fixed on the traction punching device 2. The printing controller 43 is installed on the other side of the upper end of the printing bracket 41 and is used to control the printing operation of the printhead 42 and display the printing information.
[0033] Example 2:
[0034] Based on Example 1, referring to Figure 2 and Figure 3 As shown, the clamping device includes a clamping bracket I221, a clamping cylinder I222, a clamping block I224, and a traction support. The clamping bracket I221 is mounted on the traction base plate 21. The clamping cylinder I222 is mounted on the upper end of the clamping bracket I221 with its output end facing downward. The output end of the clamping cylinder I222 is fixedly connected to the clamping block I224. The bottom end face of the clamping block I224 is provided with a V-shaped groove. The traction support is mounted on the traction base plate 21 and its position corresponds to the position of the clamping block I224. The upper end face of the traction support is provided with an arc-shaped groove, which matches the wrist arm 5.
[0035] In this embodiment, when the clamping device clamps the right end of the wrist arm 5, it first places the right end of the wrist arm 5 on the arc-shaped groove of the traction support, activates the clamping cylinder I222, and causes the output end of the clamping cylinder I222 to extend downward, driving the clamping block I224 to move downward, thereby pressing the clamping block I against the wrist arm 5 downward. The arc-shaped groove on the traction support and the V-shaped groove at the bottom of the clamping block I224 limit the front and rear positions of the wrist arm 5, thereby clamping and fixing the right end of the wrist arm 5.
[0036] Furthermore, the output end of the clamping cylinder I222 is fixedly connected to the clamping block mounting base I223, and the clamping block I224 is installed at the bottom end of the clamping block mounting base I223.
[0037] Furthermore, the traction support includes a traction support block I226 and a traction support block II227, with a gap provided between the traction support block I226 and the traction support block II227.
[0038] Furthermore, a support block mounting plate 225 is installed on the traction base plate 21, and the traction support block I 226 and the traction support block II 227 are installed on the support block mounting plate 225.
[0039] Furthermore, both the traction base plate 21 and the support block mounting plate 225 are provided with through grooves 2251, and the through grooves 2251 are matched with the gaps between the traction support block I226 and the traction support block II227.
[0040] Furthermore, a chip box 26 is installed at the bottom of the traction base plate 21, and the size of the chip box 26 at least covers the through slot 2251.
[0041] Furthermore, drilling baffles 25 are respectively provided on the front and rear sides of the gap of the traction support.
[0042] In this embodiment, when the right end of the wrist arm 5 is drilled by the drilling device, the chips fall into the gap below under the obstruction of the drilling baffle 25 and fall into the chip box 26 below the traction base plate 21, which avoids the chips generated during drilling from polluting the surrounding environment and makes the worktable cleaner.
[0043] Furthermore, the support platform includes a traction platform 11 and a sawing platform 12 located to the left of the traction platform 11.
[0044] Furthermore, the traction base plate 21 is mounted on the traction platform 11 and can move left and right along with the traction platform 11.
[0045] Furthermore, the clamping device also includes a tube tail support 228 and a fixed handle 229, as shown in the reference. Figure 7 As shown, the wrist arm 5 includes a wrist arm tube 51 and a single-ear connector 52. The single-ear connector 52 is provided with a round hole. After the end of the wrist arm 5 is placed on the arc-shaped groove on the traction support, the round hole of the single-ear connector 52 matches the position of the fixing hole on the tube tail support 228. The fixing handle 229 is used to pass through the round hole of the single-ear connector 52 and insert into the fixing hole of the tube tail support 228 to fix the wrist arm 5.
[0046] In this embodiment, after the wrist arm 5 is placed on the traction support, the axis of the circular hole of the single-ear connector 52 is made perpendicular and corresponds to the fixing hole of the tube tail support 228. Then, the fixing handle 229 is inserted into the fixing hole of the tube tail support 228 through the circular hole, thereby further limiting the position of the wrist arm 5 and avoiding slight movement of the wrist arm 5 during processing, so as to make the punching, printing and cutting processing position of the wrist arm 5 more accurate.
[0047] Furthermore, the traction device includes a traction motor 231, a gear, and a rack 232. The traction motor 231 is mounted on the traction base plate 21 and its output end extends downward through the traction base plate 21. The gear is mounted at the lower end of the output end of the traction motor 231. The rack 232 is mounted on the support platform, and the gear and the rack 232 mesh with each other.
[0048] In this embodiment, when the traction device is working, the traction motor 231 rotates forward and backward, driving the gear to rotate forward and backward, thereby driving the traction base plate 21 to move left and right along the rack 232.
[0049] Furthermore, a guide device is provided between the traction base plate 21 and the support platform. The guide device includes sliders I233 installed on both sides of the lower end face of the traction base plate 21 and guide rails 234 installed on both sides of the upper end face of the support platform. The sliders I233 and the guide rails 234 are connected to each other.
[0050] In this embodiment, the guide device makes the movement of the traction base plate 21 along the support platform more stable and smooth.
[0051] Example 3:
[0052] Based on Example 1, referring to Figure 4 and Figure 5 As shown, the sawing device 3 includes a sawing mounting plate 31, a sawing clamping device, a saw blade 335, and a sawing driving device. The sawing mounting plate 31 is fixedly installed on the support platform and located on the left side of the traction base plate 21. The sawing clamping device is used to clamp and fix the arm 5. The sawing driving device is installed on the sawing mounting plate 31 and connected to the saw blade 335. The initial position of the saw blade 335 is located on the side of the arm 5 and the sawing surface is perpendicular to the axis of the arm 5. The sawing driving device is used to drive the saw blade 335 to move back and forth and to drive the saw blade 335 to rotate, so as to cut the arm 5.
[0053] In this embodiment, when the sawing device 3 is working, the traction device first pulls the wrist arm 5 to the target position, then the sawing clamping device further clamps and fixes the wrist arm 5, and then the sawing drive device drives the saw blade 335 to rotate and move back and forth to cut the wrist arm 5.
[0054] Furthermore, the sawing mounting plate 31 is mounted on the sawing platform 12.
[0055] Furthermore, the sawing and clamping device includes a clamping bracket II321, a clamping cylinder II322, a clamping block II324, and a sawing support. The clamping bracket II321 is mounted on the sawing mounting plate 31. The clamping cylinder II332 is mounted on the upper end of the clamping bracket II321 with its output end facing downward. The output end of the clamping cylinder II332 is fixedly connected to the clamping block II324. The bottom end face of the clamping block II324 is provided with a V-shaped groove. The sawing support is mounted on the sawing mounting plate 31 and its position corresponds to the position of the clamping block II324. The upper end face of the sawing support is L-shaped, and its L-shaped bend faces the saw blade 335.
[0056] Furthermore, the output end of the clamping cylinder II322 is fixedly connected to the clamping block mounting base II323, and the clamping block II324 is installed at the bottom end of the clamping block mounting base II323.
[0057] Furthermore, the sawing support base includes sawing support block I325 and sawing support block II326, and a gap is provided between sawing support block I325 and sawing support block II326.
[0058] Furthermore, the sawing mounting plate 31 is provided with a sawing plate groove 311, and the gap between the sawing plate groove 311 and the sawing support block I 325 and the sawing support block II 326 is matched with each other.
[0059] Furthermore, the sawing platform 12 has a built-in saw chip box, and the sawing plate groove 311 is located above the saw chip box.
[0060] Furthermore, the sawing drive device includes a sawing motor 334, the output end of which is fixedly connected to the saw blade 335 and is used to drive the saw blade 335 to rotate; the sawing motor 334 is mounted on the sawing mounting plate 31 and can move back and forth relative to the sawing mounting plate 31.
[0061] Furthermore, a sawing motor support plate 331 is installed on the sawing mounting plate 31, and a sawing telescopic cylinder 332 is installed on the sawing motor support plate 331. The output end of the sawing telescopic cylinder 332 is fixedly connected to the sawing motor 334 and is used to drive the sawing motor 334 to move back and forth.
[0062] In this embodiment, when the sawing and clamping device is working, the wrist arm 5 is placed on the L-shaped bend of the sawing support base. The clamping cylinder II322 is activated, causing the output end of the clamping cylinder II322 to extend downward, driving the clamping block II324 to move downward, thereby pressing the wrist arm downward and further fixing the middle or left end of the wrist arm 5. The sawing motor 334 is activated, the electric saw blade 335 rotates, and then the sawing telescopic cylinder 332 is activated, causing the output end of the sawing telescopic cylinder 332 to extend backward, driving the sawing motor 334 to move backward, thereby driving the saw blade 335 to move backward to cut the wrist arm 5.
[0063] Furthermore, a motor sliding plate 333 is movably mounted on the sawing motor support plate 331, and the sawing motor is mounted on the motor sliding plate 333.
[0064] Furthermore, slide rails 338 are provided on the left and right sides of the upper end face of the sawing motor support plate 331, and sliders II 337 are respectively installed on the left and right sides of the bottom end of the motor sliding plate 333. The sliders II 337 and the slide rails 338 are connected to each other.
[0065] Furthermore, a saw blade protective cover 336 is provided on the outside of the saw blade 335.
[0066] Furthermore, the printing bracket 41 is installed between the traction base plate 21 and the sawing mounting plate 31.
[0067] It should be noted that the above detailed descriptions are exemplary and intended to provide further explanation of this application. Unless otherwise specified, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.
[0068] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments described in this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0069] It should be noted that the terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such terms can be used interchangeably where appropriate so that the embodiments of this application described herein can be implemented in sequences other than those illustrated or described herein.
[0070] Furthermore, the terms “comprising” and “having”, and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or apparatus that includes a series of steps or units is not necessarily limited to those steps or units that are explicitly listed, but may include other steps or units that are not explicitly listed or that are inherent to such process, method, product, or apparatus.
[0071] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways, such as rotated 90 degrees or in other orientations, and the spatial relative descriptions used herein will be interpreted accordingly.
[0072] In the detailed description above, reference has been made to the accompanying drawings, which form part of this document. In the drawings, similar symbols typically identify similar parts unless the context otherwise indicates otherwise. The illustrated embodiments described in the detailed specification, drawings, and claims are not intended to be limiting. Other embodiments may be used and other changes may be made without departing from the spirit or scope of the subject matter presented herein.
[0073] The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. An aluminum wrist arm processing device, characterized in that: The device includes a support platform, a traction punching device (2), a sawing device (3), and a printing device (4). The traction punching device (2) includes a traction base plate (21) and a clamping device, a traction device, and a punching device mounted on the traction base plate (21). The traction base plate (21) is mounted on the support platform and can move horizontally relative to the support platform. The clamping device is used to press and fix the wrist arm (5). The clamping device includes a clamping bracket I (221), a clamping cylinder I (222), a clamping block I (224), and a traction support. The clamping bracket I (221) is mounted on the support platform. Mounted on the traction base plate (21), the clamping cylinder I (222) is mounted on the upper end of the clamping bracket I (221) with its output end facing downwards. The output end of the clamping cylinder I (222) is fixedly connected to the clamping block I (224). The bottom end face of the clamping block I (224) is provided with a V-shaped groove. The traction support is mounted on the traction base plate (21) and its position corresponds to the position of the clamping block I (224). The upper end face of the traction support is provided with an arc-shaped groove. The arc-shaped groove matches the wrist arm (5). The traction support includes a traction support block I. (226) and traction support block II (227), a gap is provided between the traction support block I (226) and the traction support block II (227), a support block mounting plate (225) is installed on the traction base plate (21), the traction support block I (226) and the traction support block II (227) are installed on the support block mounting plate (225), and a through groove (2251) is provided on both the traction base plate (21) and the support block mounting plate (225), the through groove (2251) and the traction support block I (226) and the traction support block II (227) are connected. The gaps between the traction support and the traction base are matched. Drilling baffles (25) are provided on the front and rear sides of the gap. A chip box (26) is installed at the bottom of the traction base plate (21). The size of the chip box (26) covers at least the through slot (2251). The traction device is connected to the traction base plate (21) and the support platform respectively. It is used to drive the traction base plate (21) to move left and right along the support platform, thereby driving the wrist arm (5) to move left and right along the support platform. The drilling device is set on the side of the clamping device and is used to drill holes in the wrist arm (5).The clamping device further includes a tube tail support (228) and a fixing handle (229). The wrist arm (5) includes a wrist arm tube (51) and a single-ear connector (52). The single-ear connector (52) has a round hole. After the end of the wrist arm (5) is placed on the arc-shaped groove on the traction support, the round hole of the single-ear connector (52) matches the position of the fixing hole on the tube tail support (228). The fixing handle (229) is used to pass through the single-ear connector (51). 2) The round hole is inserted into the fixing hole of the tube tail support (228) to fix the wrist arm (5); the sawing device (3) is set on the left side of the traction punching device (2), and the sawing device (3) is used to further support and cut the wrist arm (5); the printing device (4) is set between the traction punching device (2) and the sawing device (3) and is located on the side of the wrist arm (5), and is used to print on the outer peripheral wall of the wrist arm (5).
2. The aluminum wrist arm processing device according to claim 1, characterized in that: The traction device includes a traction motor (231), a gear, and a rack (232). The traction motor (231) is mounted on the traction base plate (21) and its output end extends downward through the traction base plate (21). The gear is mounted at the lower end of the output end of the traction motor (231). The rack (232) is mounted on the support platform, and the gear and the rack (232) mesh with each other.
3. The aluminum wrist arm processing device according to claim 2, characterized in that: A guide device is provided between the traction base plate (21) and the support platform. The guide device includes sliders I (233) installed on both sides of the lower end face of the traction base plate (21) and guide rails (234) installed on both sides of the upper end face of the support platform. The sliders I (233) and the guide rails (234) are connected to each other.
4. The aluminum wrist arm processing device according to claim 1, characterized in that: The sawing device (3) includes a sawing mounting plate (31), a sawing clamping device, a saw blade (335), and a sawing driving device. The sawing mounting plate (31) is fixedly installed on the support platform and located on the left side of the traction base plate (21). The sawing clamping device is used to clamp and fix the arm (5). The sawing driving device is installed on the sawing mounting plate (31) and connected to the saw blade (335). The initial position of the saw blade (335) is located on the side of the arm (5) and the sawing surface is perpendicular to the axis of the arm (5). The sawing driving device is used to drive the saw blade (335) to move back and forth and to drive the saw blade (335) to rotate, so as to cut the arm (5).
5. The aluminum wrist arm processing device according to claim 4, characterized in that: The sawing clamping device includes a clamping bracket II (321), a clamping cylinder II (322), a clamping block II (324), and a sawing support. The clamping bracket II (321) is mounted on the sawing mounting plate (31). The clamping cylinder II (322) is mounted on the upper end of the clamping bracket II (321) with its output end facing downward. The output end of the clamping cylinder II (322) is fixedly connected to the clamping block II (324). The bottom end face of the clamping block II (324) is provided with a V-shaped groove. The sawing support is mounted on the sawing mounting plate (31) and its position corresponds to the position of the clamping block II (324). The upper end face of the sawing support is L-shaped, and its L-shaped bend faces the saw blade (335).
6. The aluminum wrist arm processing device according to claim 5, characterized in that: The sawing support base includes sawing support block I (325) and sawing support block II (326), with a gap between sawing support block I (325) and sawing support block II (326). The sawing mounting plate (31) is provided with a sawing plate groove (311), and the gap between the sawing plate groove (311) and the sawing support block I (325) and the sawing support block II (326) matches each other. The support platform has a sawing chip box built in, and the sawing plate groove (311) is located above the sawing chip box.
7. The aluminum wrist arm processing device according to claim 4, characterized in that: The sawing drive device includes a sawing motor (334), the output end of which is fixedly connected to the saw blade (335) and is used to drive the saw blade (335) to rotate; the sawing motor (334) is mounted on the sawing mounting plate (31) and can move back and forth relative to the sawing mounting plate (31).
8. The aluminum wrist arm processing device according to claim 7, characterized in that: A sawing motor support plate (331) is installed on the sawing mounting plate (31), and a sawing telescopic cylinder (332) is installed on the sawing motor support plate (331). The output end of the sawing telescopic cylinder (332) is fixedly connected to the sawing motor (334) and is used to drive the sawing motor (334) to move back and forth.
9. The aluminum wrist arm processing device according to claim 1, characterized in that: The printing device (4) includes a printing bracket (41), a printhead (42), and a printing controller (43). The printing bracket (41) is installed between the traction punching device (2) and the sawing device (3). The printhead (42) is installed on one side of the upper end of the printing bracket (41) with the nozzle facing the wrist arm (5) fixed on the traction punching device (2). The printing controller (43) is installed on the other side of the upper end of the printing bracket (41) and is used to control the printing operation of the printhead (42) and display the printing information.
Citation Information
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High-iron cantilever front end production device
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Aluminum cantilever machining device
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