Sliding rail tablet planing equipment
By designing a slide rail sheet planing equipment that integrates chip blowing, chip compaction, and automatic separation of finished products, the problem of low automation in chip cleaning and finished product separation has been solved, achieving a highly efficient and stable processing process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- WUXI NO FAILURE HIGH-TECH CO LTD
- Filing Date
- 2026-04-02
- Publication Date
- 2026-05-12
AI Technical Summary
Existing slide rail sheet planing equipment has a low degree of automation in chip cleaning and finished product separation, resulting in low processing efficiency, unstable quality, and frequent manual intervention.
A slide rail sheet planing device integrating chip blowing, chip compaction, and automatic separation of finished product was designed. It achieves automatic cleaning and collection of chips through mechanical synchronization, and automatically separates finished product from waste chips during equipment operation.
It achieves simultaneous cleaning of debris and automatic separation of finished products, improving processing quality and efficiency, reducing the difficulty of manual operation, and ensuring the continuity and stability of the processing process.
Smart Images

Figure CN122007488A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of planing equipment technology, and in particular to a planing equipment for slide rail sheet. Background Technology
[0002] As a common component in the mechanical field, slide rails are widely used in drawer slides, equipment guides, and other applications. Their surface flatness and dimensional accuracy significantly impact the performance and lifespan of the slide rails. During the processing of slide rails, planing is a commonly used surface treatment process. Planing removes burrs, oxide layers, or uneven areas from the surface of the slide rail to obtain a smooth and flat surface.
[0003] Traditional planing of slide rail sheet metal often involves manual operation or semi-mechanized equipment. Operators must manually clamp the sheet metal and control the planing depth, which is not only labor-intensive but also makes it difficult to guarantee processing efficiency and accuracy. Furthermore, the planing process generates a large amount of metal shavings. If not cleaned up promptly, these shavings can accumulate in the processing area, obstructing visibility and hindering equipment operation, and may even scratch the processed surface, reducing the quality of the finished product. Additionally, after processing, the finished sheet metal is mixed with shavings, requiring manual sorting and cleaning, increasing process time and labor costs.
[0004] To address the aforementioned issues, some existing equipment has attempted to be fitted with simple air-blowing devices or dust collection structures, but these typically suffer from the following shortcomings: air-blowing devices are mostly independently controlled and cannot be synchronized with the planing action, resulting in poor cleaning performance; dust collection structures are relatively simple, making it easy for debris to accumulate, requiring frequent machine shutdowns for cleaning, which affects the continuity of processing; and the separation of finished products from debris still requires manual intervention, resulting in a low degree of automation.
[0005] Therefore, how to achieve synchronous cleaning and effective collection of debris during the planing process of slide rail sheet, and improve the separation efficiency of finished product and debris, has become a technical problem that urgently needs to be solved by those skilled in the art. Summary of the Invention
[0006] To address the aforementioned technical problems, this invention provides an integrated slide rail sheet planing device capable of simultaneously performing planing, chip blowing, chip compaction, and automatic separation of finished products. The technical solution adopted by this invention is as follows: a slide rail sheet planing device, comprising a processing mechanism for clamping and planing the slide rail sheet, the processing mechanism comprising a fixed main board, a blowing mechanism for blowing away the chips cut off by planing, and a collection mechanism for collecting the chips and finished products; The processing mechanism includes a track frame fixedly mounted on a fixed main board, a movable processing frame slidably mounted on the fixed main board, and a side extension plate fixedly mounted on the side of the movable processing frame.
[0007] Furthermore, the processing mechanism also includes a side electric cylinder frame fixedly mounted on the fixed main board, a clamping electric cylinder fixedly mounted on the side electric cylinder frame, a telescopic column fixedly mounted on the output end of the clamping electric cylinder, and a side clamping plate rotatably mounted on the end of the telescopic column.
[0008] Furthermore, the processing mechanism also includes a horizontal guide column fixedly mounted on the fixed main board, a movable processing frame slidably mounted on the horizontal guide column, a side protective plate fixedly mounted on the fixed main board, a rotating motor fixedly mounted on the other end of the fixed main board, a rotating column rotatably mounted inside the fixed main board, the rotating column being fixedly mounted to the motor shaft of the rotating motor, and a fixing clamp fixedly mounted on the rotating column.
[0009] Furthermore, the processing mechanism also includes a lifting electric cylinder fixedly installed on the moving processing frame, a planer fixedly installed on the output end of the lifting electric cylinder, a main housing fixedly installed outside the main board, and an upper protective shell fixedly installed on the main housing.
[0010] In use, the slide rail material to be processed is placed between the fixed clamping plate and the side clamping plate. The clamping electric cylinder extends, causing the telescopic column and the side clamping plate to move inward. The side clamping plate and the fixed clamping plate clamp both ends of the slide rail material. By rotating the motor, the rotating column and the fixed clamping plate can be rotated, thereby causing the slide rail material to rotate. The side clamping plate rotates relative to the telescopic column, thereby adjusting the processing angle of the slide rail material.
[0011] As the moving processing frame and the side extension plate slide back and forth along the horizontal guide column, the surface of the slide rail material is planed by the planer. As the planing proceeds, the lifting electric cylinder extends, causing the planer to descend, so as to continuously adjust the planing depth and realize the planing of the slide rail material.
[0012] Furthermore, the blower mechanism includes an outer turntable rotatably mounted on a fixed main board, an eccentric rotating column eccentrically mounted on the outer turntable, a drive motor fixedly mounted on the fixed main board, the outer turntable being fixedly mounted to the motor shaft of the drive motor, an outer rotating rod rotatably mounted on the eccentric rotating column, and an inner rotating shaft rotatably mounted on the side extension plate, with the outer rotating rod and the inner rotating shaft rotatably mounted together.
[0013] Furthermore, the blower mechanism also includes a movable housing that is slidably mounted on the track frame. An inner rotating shaft is rotatably connected to the bottom of the movable housing. An inner rotating gear and an inner rotating disk are fixedly mounted on the inner rotating shaft. The inner rotating gear and the inner rotating disk are located inside the movable housing. A fixed rack is fixedly mounted on the fixed main board. The inner rotating gear meshes with the fixed rack. An inner eccentric column is eccentrically fixedly mounted on the inner rotating disk. An inner rotating rod is rotatably mounted on the inner eccentric column.
[0014] Furthermore, the blower mechanism also includes a piston chamber fixedly mounted on the moving processing frame, a piston rod slidably mounted inside the piston chamber, the piston rod being rotatably mounted with an inner rotating rod, an inner thrust vane fixedly mounted on the piston rod, the inner thrust vane sliding inside the piston chamber, two blowing terminals fixedly mounted on the moving processing frame, and an air pipe fixedly mounted on the piston chamber, the air pipe being fixedly mounted with the blowing terminals.
[0015] After the slide rail material is clamped, the drive motor drives the outer turntable to rotate. The outer turntable drives the outer rotating rod to move through the eccentric rotating column. The outer rotating rod drives the side extension plate and the moving processing frame to slide back and forth along the horizontal guide column. At the same time, the side extension plate carries the movable box to slide along the track frame. When the movable box slides along the track frame, under the action of the fixed rack and the inner rotating gear meshing, the fixed rack drives the inner rotating gear and the inner rotating disk to rotate. The inner rotating disk drives the inner rotating rod to rotate through the inner eccentric column. The inner rotating rod drives the piston rod and the inner thrust vane to slide back and forth in the piston chamber. When the inner thrust vane moves outward, it pushes air into the air blowing terminal through the air pipe. Then the air is sprayed out through the air blowing terminal, blowing the planing residue downward into the lower collection box. With the continuous reciprocating motion of the moving processing frame and the side extension plate, the inner thrust vane continuously reciprocates in the piston chamber, realizing that when the slide rail material is planed, the residue is continuously blown into the lower collection box simultaneously.
[0016] Furthermore, the collection mechanism includes a lower collection box fixedly installed below the fixed main board, a lower connecting rod rotatably installed below the moving processing frame, a lower rolling frame rotatably installed below the lower connecting rod, a plurality of lower rollers rotatably installed on the lower rolling frame, a transverse sliding groove provided on the side of the lower collection box, and the lower rolling frame sliding along the transverse sliding groove.
[0017] Furthermore, the collection mechanism also includes a collection rack that is slidably installed in the lower collection box, the collection rack being provided with multiple crossbars, and the lower collection box being provided with a detachable disassembly plate.
[0018] When the moving processing frame reciprocates, the lower connecting rod drives the lower rolling frame to reciprocate along the transverse slide groove. The lower roller compacts the residue collected in the lower collection box, preventing local accumulation of residue and allowing the lower collection box to hold more residue, thus reducing the frequency of cleaning. After the slide rail material is processed, the clamping electric cylinder retracts, causing the telescopic column and side clamping plates to move outward. This causes the side clamping plates and fixed clamping plates to no longer clamp the slide rail material, and the slide rail material falls into the lower collection box. Subsequently, the slide rail material falls onto the crossbar, allowing the collection frame to be pulled out. Then, the processed slide rail material is removed. The residue in the lower collection box can be removed by disassembling the disassembly plate.
[0019] The beneficial effects of this invention compared with the prior art are: (1) This invention drives the outer turntable to rotate by a drive motor. The outer turntable transmits power to the side extension plate through the eccentric rotating column and the outer rotating rod, thereby driving the moving processing frame to slide back and forth along the horizontal guide column to realize the planing process. At the same time, the movement of the side extension plate drives the movable box to slide along the track frame. Under the meshing action of the fixed rack and the inner rotating gear, the inner rotating gear drives the inner rotating disk to rotate, and then drives the piston rod to reciprocate in the piston cavity through the inner eccentric column and the inner rotating rod, and presses the air into the air blowing terminal through the air pipe to form an airflow sprayed towards the processing area, thus realizing the planing action of the planer and the air blowing terminal. The mechanical hard synchronization of the jet action can blow the debris away from the processing surface after it is generated, effectively preventing the accumulation of debris, ensuring the flatness and smoothness of the processing surface, and improving the processing quality of the slide rail material; (2) The present invention is provided with a dynamic compaction structure in the lower collection box. When the moving processing frame reciprocates, the moving processing frame drives the lower rolling frame to slide back and forth along the transverse sliding groove on the side of the lower collection box through the lower connecting rod. Multiple lower rollers installed on the lower rolling frame roll back and forth inside the lower collection box, repeatedly crushing the debris that falls into the collection box. It can automatically compact the loose metal debris during normal operation of the equipment, greatly improving the effective volume utilization of the lower collection box. The efficiency is improved, allowing the same volume of collection box to hold more debris, extending the usage time of a single cleaning, and ensuring that the equipment can operate continuously and stably for a longer period of time; (3) The present invention has a collection frame with crossbars slidably installed in the lower collection box to form a screen-like structure. After the slide rail material is processed, the finished material automatically falls into the lower collection box by gravity and lands on the crossbars of the collection frame, while the fine debris falls into the bottom of the lower collection box through the gaps between the crossbars. The operator does not need to search for the finished product in the debris. He only needs to pull out the collection frame to take away all the processed slide rail material at once, realizing the automatic physical isolation of finished product and waste, and simplifying the finished product separation. The sorting process reduces the difficulty of manual operation; (4) The present invention drives the rotating column and fixed clamping plate to rotate by rotating motor, and the side clamping plate can rotate freely relative to the telescopic column, realizing stepless adjustment of the clamping angle of the slide rail material. It can flexibly adjust the relative angle between the slide rail material and the planer according to the processing requirements, meet the planing requirements of different inclined surfaces, arc surfaces or special shaped surfaces, expand the processing range and applicability of the equipment. At the same time, the equipment integrates functions such as automatic clamping, reciprocating planing, synchronous chip blowing, chip compaction and finished product separation, realizing the full-process automated operation from material clamping to finished product collection, ensuring the consistency and stability of the processing process. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of the present invention.
[0021] Figure 2 This is a schematic diagram of the overall structure of the present invention (internal).
[0022] Figure 3 This is a schematic diagram of the processing mechanism structure of the present invention. Figure 1 .
[0023] Figure 4 This is a schematic diagram of the processing mechanism structure of the present invention. Figure 2 .
[0024] Figure 5 This is a schematic diagram of the processing mechanism structure of the present invention. Figure 3 .
[0025] Figure 6 This is a schematic diagram of the hair dryer structure of the present invention. Figure 1 .
[0026] Figure 7 This is a schematic diagram of the hair dryer structure of the present invention. Figure 2 .
[0027] Figure 8 This is a schematic diagram of the hair dryer structure of the present invention. Figure 3 .
[0028] Figure 9 This is a schematic diagram of the collection mechanism structure of the present invention. Figure 1 .
[0029] Figure 10 This is a schematic diagram of the collection mechanism structure of the present invention. Figure 2 .
[0030] Reference numerals: 101-Fixed mainboard; 102-Side electric cylinder frame; 103-Trajectory frame; 104-Moving machining frame; 105-Side extension plate; 106-Clamping electric cylinder; 107-Lifting electric cylinder; 108-Planer blade; 109-Horizontal guide column; 110-Side protective plate; 111-Rotating motor; 112-Side clamping plate; 113-Telescopic column; 114-Rotating column; 115-Fixed clamping plate; 201-Outer turntable; 202-Drive motor; 203-Eccentric rotating column; 204-Outer rotating rod; 205-Fixed rack; 206-Moving housing; 207-Inner rotating shaft; 208-Inner rotating gear; 209-Inner rotating disk; 210-Inner eccentric column; 211-Inner rotating rod; 212-Piston rod; 213-Piston chamber; 214-Inner thrust plate; 215-Air pipe; 216-Blowing terminal; 301-Lower collection box; 302-Horizontal slide groove; 303-Lower connecting rod; 304-Lower rolling frame; 305-Lower roller; 306-Disassembly plate; 307-Collection rack; 308-Horizontal bar; 4-Slide rail material; 5-Main housing; 6-Upper protective shell. Detailed Implementation
[0031] The specific embodiments of the present invention will be further described below with reference to the accompanying drawings.
[0032] Example: Reference Figures 1-10A slide rail sheet planing device includes a processing mechanism for clamping and planing the slide rail sheet 4. The processing mechanism includes a fixed main board 101, a blower mechanism for blowing away the planed debris, and a collection mechanism for collecting the debris and finished product. The processing mechanism includes a track frame 103 fixedly mounted on a fixed main board 101, a movable processing frame 104 slidably mounted on the fixed main board 101, and a side extension plate 105 fixedly mounted on the side of the movable processing frame 104.
[0033] like Figures 3-5 As shown, the processing mechanism also includes a side electric cylinder frame 102 fixedly mounted on the fixed main board 101. A clamping electric cylinder 106 is fixedly mounted on the side electric cylinder frame 102. A telescopic column 113 is fixedly mounted on the output end of the clamping electric cylinder 106. A side clamping plate 112 is rotatably mounted on the end of the telescopic column 113.
[0034] like Figures 3-5 As shown, the processing mechanism also includes a horizontal guide column 109 fixedly installed on the fixed main board 101, a movable processing frame 104 slidably installed with the horizontal guide column 109, a side protective plate 110 fixedly installed on the fixed main board 101, a rotary motor 111 fixedly installed at the other end of the fixed main board 101, a rotating column 114 rotatably installed inside the fixed main board 101, the rotating column 114 is fixedly installed with the motor shaft of the rotary motor 111, and a fixing clamp 115 is fixedly installed on the rotating column 114.
[0035] like Figures 3-5 As shown, the processing mechanism also includes a lifting electric cylinder 107 fixedly installed on the moving processing frame 104. A planer 108 is fixedly installed on the output end of the lifting electric cylinder 107. A main housing 5 is fixedly installed outside the fixed main board 101. An upper protective shell 6 is fixedly installed on the main housing 5.
[0036] In use, the operator manually places the slide rail material 4 to be processed between the fixed clamping plate 115 and the side clamping plate 112. The clamping electric cylinder 106 extends, causing the telescopic column 113 and the side clamping plate 112 to move inward. The two ends of the slide rail material 4 are clamped by the side clamping plate 112 and the fixed clamping plate 115. After the slide rail material 4 is clamped, the operator releases the slide rail material 4. By rotating the motor 111, the rotating column 114 and the fixed clamping plate 115 can be driven to rotate, thereby driving the slide rail material 4 to rotate. The side clamping plate 112 rotates relative to the telescopic column 113, thereby adjusting the processing angle of the slide rail material 4.
[0037] When the moving processing frame 104 and the side extension plate 105 slide back and forth along the horizontal guide column 109, the surface of the slide rail material 4 is planed by the planer 108. As the planing proceeds, the lifting electric cylinder 107 extends, causing the planer 108 to descend, so as to continuously adjust the planing depth and realize the planing of the slide rail material 4.
[0038] like Figures 6-8 As shown, the blower mechanism includes an outer turntable 201 rotatably mounted on a fixed main board 101, an eccentric rotating column 203 eccentrically fixedly mounted on the outer turntable 201, a drive motor 202 fixedly mounted on the fixed main board 101, the outer turntable 201 and the motor shaft of the drive motor 202 being fixedly mounted, an outer rotating rod 204 rotatably mounted on the eccentric rotating column 203, and an inner rotating shaft 207 rotatably mounted on the side extension plate 105, the outer rotating rod 204 and the inner rotating shaft 207 being rotatably mounted.
[0039] like Figures 6-8 As shown, the blower mechanism also includes a movable housing 206 that is slidably mounted on the track frame 103. An inner rotating shaft 207 is rotatably connected to the bottom of the movable housing 206. An inner rotating gear 208 and an inner rotating disk 209 are fixedly mounted on the inner rotating shaft 207. The inner rotating gear 208 and the inner rotating disk 209 are located inside the movable housing 206. A fixed rack 205 is fixedly mounted on the fixed main plate 101. The inner rotating gear 208 meshes with the fixed rack 205. An inner eccentric column 210 is eccentrically fixedly mounted on the inner rotating disk 209. An inner rotating rod 211 is rotatably mounted on the inner eccentric column 210.
[0040] like Figures 6-8 As shown, the blower mechanism also includes a piston chamber 213 fixedly mounted on the moving processing frame 104. A piston rod 212 is slidably mounted in the piston chamber 213. The piston rod 212 is rotatably mounted with the inner rotating rod 211. An inner thrust vane 214 is fixedly mounted on the piston rod 212. The inner thrust vane 214 slides in the piston chamber 213. Two blowing terminals 216 are fixedly mounted on the moving processing frame 104. An air pipe 215 is fixedly mounted on the piston chamber 213. The air pipe 215 is fixedly mounted with the blowing terminals 216.
[0041] After the slide rail material 4 is clamped, the drive motor 202 drives the outer turntable 201 to rotate. The outer turntable 201 drives the outer rotating rod 204 to move through the eccentric rotating column 203. The outer rotating rod 204 drives the side extension plate 105 and the moving processing frame 104 to slide back and forth along the horizontal guide column 109. At the same time, the side extension plate 105 drives the movable box 206 to slide along the track frame 103 through the inner rotating shaft 207. When the movable box 206 slides along the track frame 103, under the action of the fixed rack 205 meshing with the inner rotating gear 208, the fixed rack 205 drives the inner rotating gear 208 and the inner rotating disk 209 to rotate. 09 The inner eccentric column 210 drives the inner rotating rod 211 to rotate. The inner rotating rod 211 drives the piston rod 212 and the inner air pusher 214 to slide back and forth in the piston chamber 213. When the inner air pusher 214 moves outward, it pushes air into the air blowing terminal 216 through the air pipe 215. Then the air is ejected through the air blowing terminal 216, blowing the planing residue downward into the lower collection box 301. As the moving processing frame 104 and the side extension plate 105 continue to reciprocate, the inner air pusher 214 continues to reciprocate in the piston chamber 213, so that when the slide rail material 4 is planed, the residue is simultaneously and continuously blown into the lower collection box 301.
[0042] like Figure 9 , Figure 10 As shown, the collection mechanism includes a lower collection box 301 fixedly installed below the fixed main board 101, a lower connecting rod 303 rotatably installed below the moving processing frame 104, a lower rolling frame 304 rotatably installed below the lower connecting rod 303, a plurality of lower rollers 305 rotatably installed on the lower rolling frame 304, a transverse sliding groove 302 is provided on the side of the lower collection box 301, and the lower rolling frame 304 slides along the transverse sliding groove 302.
[0043] like Figure 9 , Figure 10 As shown, the collection mechanism also includes a collection rack 307 that is slidably installed in the lower collection box 301. The collection rack 307 is provided with a plurality of crossbars 308, and the lower collection box 301 is provided with a detachable disassembly plate 306.
[0044] When the moving processing frame 104 reciprocates, the lower connecting rod 303 drives the lower rolling frame 304 to reciprocate along the transverse sliding groove 302. The lower roller 305 compacts the residue collected in the lower collection box 301, preventing local accumulation of residue in the lower collection box 301. This allows the lower collection box 301 to hold more residue and reduces the frequency of cleaning. After the slide rail piece 4 is processed, the clamping electric cylinder 106 retracts, causing the telescopic column 113 and the side clamping piece 112 to move outward. This causes the side clamping piece 112 and the fixed clamping piece 115 to no longer clamp the slide rail piece 4, and the slide rail piece 4 falls into the lower collection box 301. Then, the slide rail piece 4 falls onto the crossbar 308, allowing the collection frame 307 to be pulled out. The processed slide rail piece 4 can then be removed. The residue in the lower collection box 301 can be removed by disassembling the disassembly plate 306.
[0045] Working principle: During use, the operator manually places the slide rail material 4 to be processed between the fixed clamping plate 115 and the side clamping plate 112. The clamping electric cylinder 106 extends, causing the telescopic column 113 and the side clamping plate 112 to move inward. The side clamping plate 112 and the fixed clamping plate 115 clamp both ends of the slide rail material 4. After the slide rail material 4 is clamped, the operator releases the slide rail material 4. By rotating the motor 111, the rotating column 114 and the fixed clamping plate 115 can be driven to rotate, thereby driving the slide rail material 4 to rotate. The side clamping plate 112 rotates relative to the telescopic column 113, thereby adjusting the processing angle of the slide rail material 4.
[0046] After the slide rail material 4 is clamped, the drive motor 202 drives the outer turntable 201 to rotate. The outer turntable 201 drives the outer rotating rod 204 to move through the eccentric rotating column 203. The outer rotating rod 204 drives the side extension plate 105 and the moving processing frame 104 to slide back and forth along the horizontal guide column 109. When the moving processing frame 104 and the side extension plate 105 slide back and forth along the horizontal guide column 109, the surface of the slide rail material 4 is planed by the planer 108. As the planing proceeds, the lifting electric cylinder 107 extends, causing the planer 108 to descend, so as to continuously adjust the planing depth and realize the planing of the slide rail material 4.
[0047] Simultaneously, the side extension plate 105 slides along the track frame 103 with the movable housing 206. When the movable housing 206 slides along the track frame 103, under the action of the fixed rack 205 meshing with the inner rotating gear 208, the fixed rack 205 drives the inner rotating gear 208 and the inner rotating disk 209 to rotate. The inner rotating disk 209 drives the inner rotating rod 211 to rotate through the inner eccentric column 210. The inner rotating rod 211 drives the piston rod 212 and the inner thrust vane 214 in the piston chamber 213. The inner pusher 214 moves outward, pushing air through the air pipe 215 into the air blowing terminal 216. Then, the air is ejected through the air blowing terminal 216, blowing the planing residue downward into the lower collection box 301. As the moving processing frame 104 and the side extension plate 105 move back and forth continuously, the inner pusher 214 moves back and forth continuously in the piston chamber 213, so that when the slide rail material 4 is planed, the residue is blown into the lower collection box 301 simultaneously.
[0048] When the moving processing frame 104 reciprocates, the lower connecting rod 303 drives the lower rolling frame 304 to reciprocate along the transverse sliding groove 302. The lower roller 305 compacts the residue collected in the lower collection box 301, preventing local accumulation of residue in the lower collection box 301. This allows the lower collection box 301 to hold more residue and reduces the frequency of cleaning. After the slide rail piece 4 is processed, the clamping electric cylinder 106 retracts, causing the telescopic column 113 and the side clamping piece 112 to move outward. This causes the side clamping piece 112 and the fixed clamping piece 115 to no longer clamp the slide rail piece 4, and the slide rail piece 4 falls into the lower collection box 301. Then, the slide rail piece 4 falls onto the crossbar 308, allowing the collection frame 307 to be pulled out. The processed slide rail piece 4 can then be removed. The residue in the lower collection box 301 can be removed by disassembling the disassembly plate 306.
[0049] 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 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 slide rail sheet planing device, comprising a processing mechanism for clamping and planing slide rail sheets (4), characterized in that: The processing mechanism includes a fixed main board (101), and the processing mechanism is provided with a blower mechanism and a collection mechanism; A movable processing frame (104) is slidably mounted on the fixed main board (101), and a side extension plate (105) is fixedly mounted on the side of the movable processing frame (104).
2. The slide rail sheet planing equipment according to claim 1, characterized in that: The processing mechanism also includes a clamping electric cylinder (106) fixedly installed at one end of the fixed main board (101), a telescopic column (113) fixedly installed on the output end of the clamping electric cylinder (106), and a side clamping piece (112) rotatably installed at the end of the telescopic column (113).
3. The slide rail sheet planing equipment according to claim 2, characterized in that: The processing mechanism also includes a horizontal guide column (109) fixedly installed on the fixed main board (101), the moving processing frame (104) is slidably installed with the horizontal guide column (109), a rotating motor (111) is fixedly installed at the other end of the fixed main board (101), a rotating column (114) is rotatably installed inside the fixed main board (101), the rotating column (114) is fixedly installed with the motor shaft of the rotating motor (111), and a fixing clamp (115) is fixedly installed on the rotating column (114).
4. The slide rail sheet planing equipment according to claim 3, characterized in that: The processing mechanism also includes a lifting electric cylinder (107) fixedly installed on the moving processing frame (104), and a planer (108) is fixedly installed on the output end of the lifting electric cylinder (107).
5. The slide rail sheet planing equipment according to claim 1, characterized in that: The blower mechanism includes an outer turntable (201) rotatably mounted on the fixed main plate (101), an eccentric rotating column (203) eccentrically fixedly mounted on the outer turntable (201), a drive motor (202) fixedly mounted on the fixed main plate (101), the outer turntable (201) being fixedly mounted to the motor shaft of the drive motor (202), an outer rotating rod (204) rotatably mounted on the eccentric rotating column (203), and an inner rotating shaft (207) rotatably mounted on the side extension plate (105), the outer rotating rod (204) being rotatably mounted to the inner rotating shaft (207).
6. The slide rail sheet planing equipment according to claim 5, characterized in that: The processing mechanism includes a track frame (103) fixedly mounted on the fixed main board (101), and the blower mechanism also includes a movable housing (206) slidably mounted on the track frame (103). The inner rotating shaft (207) is rotatably connected to the bottom of the movable housing (206). An inner rotating gear (208) and an inner rotating disk (209) are fixedly mounted on the inner rotating shaft (207). The inner rotating gear (208) and the inner rotating disk (209) are located inside the movable housing (206). A fixed rack (205) is fixedly mounted on the fixed main board (101). The inner rotating gear (208) meshes with the fixed rack (205). An inner eccentric column (210) is eccentrically fixedly mounted on the inner rotating disk (209). An inner rotating rod (211) is rotatably mounted on the inner eccentric column (210).
7. The slide rail sheet planing equipment according to claim 6, characterized in that: The blower mechanism further includes a piston chamber (213) fixedly installed on the moving processing frame (104). A piston rod (212) is slidably installed in the piston chamber (213). The piston rod (212) is rotatably installed with the inner rotating rod (211). An inner thrust vane (214) is fixedly installed on the piston rod (212). The inner thrust vane (214) slides in the piston chamber (213). At least one blower (216) is fixedly installed on the moving processing frame (104). An air pipe (215) is fixedly installed on the piston chamber (213). The air pipe (215) is fixedly installed with the blower terminal (216).
8. The slide rail sheet planing equipment according to claim 1, characterized in that: The collection mechanism includes a lower collection box (301) fixedly installed below the fixed main board (101), a lower connecting rod (303) rotatably installed below the moving processing frame (104), a lower rolling frame (304) rotatably installed below the lower connecting rod (303), a plurality of lower rollers (305) rotatably installed on the lower rolling frame (304), a transverse sliding groove (302) is provided on the side of the lower collection box (301), and the lower rolling frame (304) slides along the transverse sliding groove (302).
9. A slide rail sheet planing device according to claim 8, characterized in that: The collection mechanism also includes a collection rack (307) that is slidably installed in the lower collection box (301), the collection rack (307) being provided with a plurality of crossbars (308), and the lower collection box (301) being provided with a detachable disassembly plate (306).