Multi-station combined machining equipment for sliding rail
By designing a multi-station composite processing equipment, the problem of low processing efficiency in traditional slide rails has been solved, and the precise transfer and positioning of guide rail parts between multiple devices has been achieved, significantly improving production efficiency and processing accuracy.
Patent Information
- Application Number
- CN202520584173.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-28
AI Technical Summary
Traditional slide rail processing methods are inefficient, especially when processing multiple holes, which requires frequent transfer and positioning, resulting in longer processing cycles and affecting processing accuracy and efficiency.
Design a multi-station composite processing equipment, including a working platform, punching, flipping, chamfering and tapping devices, combined with a material transfer mechanism and a lifting device, to realize the continuous loading and unloading of guide rail parts between multiple devices. Through the cooperation of the material transfer beam and the lifting device, accurate transfer and positioning are ensured, and manual intervention is reduced.
It significantly improves the production efficiency of slide rails, shortens the processing cycle, ensures the accuracy and consistency of multi-hole machining, and enhances the overall processing efficiency.
Smart Images

Figure CN223947472U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to processing equipment technical field, especially a kind of multi-station compound processing equipment for slide rail. BACKGROUND
[0002] In current mechanical manufacturing industry, slide rail is the key component in many mechanical equipment and device, and the traditional slide rail processing mode is mostly dispersed operation mode, that is, guide rail needs to be completed punch, overturn, chamfer, tapping and a series of processes one by one on multiple independent processing equipment, and this processing mode has significant limitations. First, guide rail needs to be frequently transferred between different equipment, not only increases the cost and time of manual handling, but also can cause the loss of processing accuracy, especially in multiple clamping process, it is difficult to guarantee the consistency of hole position;Second, each equipment works independently, cannot realize seamless connection of processing flow, resulting in low overall processing efficiency. Especially in the face of multi-hole position processing demand, the problem is particularly prominent, because the processing of each hole position needs to repeat the above transfer and positioning process, greatly prolongs the processing cycle of guide rail, and seriously reduces the production efficiency of slide rail. Therefore, an equipment with multi-station compound processing function is needed to realize efficient processing of guide rail with multiple stations and multiple hole positions. SUMMARY
[0003] The utility model aims at providing a kind of multi-station compound processing equipment for slide rail, solve the problem of low efficiency of traditional slide rail processing mode.
[0004] The utility model provides technical scheme as follows: a kind of multi-station compound processing equipment for slide rail, including operation platform, punch device, overturning device, chamfering device, tapping device on the operation platform, the operation platform is equipped with transfer mechanism, the transfer mechanism includes the material moving track that is oppositely arranged along the length direction of the operation platform, the material moving beam that is reciprocatingly active between the opposite material moving track along the length direction of the operation platform, and the elevator that is along the height direction between the material moving track and the operation platform, the material moving beam is equipped with the material gripper for clamping guide rail material piece, the punch device, the overturning device, the chamfering device, the tapping device are sequentially arranged between the opposite material moving track, when the activity of the material moving beam drives the material gripper sequentially through the punch device, the overturning device, the chamfering device and the tapping device, the elevator drives the material moving track to rise or drop, to drive the material gripper rises or drops, so that guide rail material is sequentially loaded or separated from the punch device, the overturning device, the chamfering device and the tapping device.
[0005] The multi-station composite processing equipment for slide rails as described above, the work platform is further provided with a discharging mechanism, the discharging mechanism comprises a discharging table and a discharging track, the discharging table is arranged obliquely, the discharging track is arranged along the length direction of the work platform, the lifter is movably connected to the discharging track along the extension direction of the discharging track, when the lifter moves towards the direction close to the discharging table, the material clamping hand is driven by the material moving track to be close to the discharging table to unload the guide rail material.
[0006] The multi-station composite processing equipment for slide rails as described above, the work platform is further provided with a feeding mechanism, the feeding mechanism comprises a feeding table and a feeding belt arranged on the feeding table, the feeding table is located on the side of the work platform away from the discharging table, and the feeding belt is used for arranging a plurality of guide rail materials on the side of the feeding table close to the material clamping hand.
[0007] The multi-station composite processing equipment for slide rails as described above, the feeding mechanism further comprises an alignment baffle, the alignment baffle is arranged on the feeding belt along the width direction of the work platform and is adjustable, so as to simultaneously press against the end portions of the plurality of guide rail materials.
[0008] The multi-station composite processing equipment for slide rails as described above, the punching device comprises a punching and blanking die movably arranged along the width direction of the work platform, when the guide rail material is transferred to the punching device, the punching and blanking die sequentially passes through the corresponding processing stations on the guide rail material.
[0009] The multi-station composite processing equipment for slide rails as described above, the turnover device comprises oppositely arranged rotary sleeve heads, when the guide rail material is transferred to the turnover device, the rotary sleeve heads are oppositely sleeved on the two ends of the guide rail material and rotate to drive the guide rail material to be turned around the shaft.
[0010] The multi-station composite processing equipment for slide rails as described above, the chamfering device comprises a plurality of chamfering processing heads arranged along the width direction of the work platform, and the chamfering processing heads are arranged along the width direction of the work platform and are adjustable.
[0011] The multi-station composite processing equipment for slide rails as described above, the tapping device comprises a plurality of tapping processing heads arranged along the width direction of the work platform, and the tapping processing heads are arranged along the width direction of the work platform and are adjustable.
[0012] The multi-station composite processing equipment for slide rails as described above, further comprising a drilling device arranged on the work platform, the drilling device comprises a plurality of drilling processing heads arranged along the width direction of the work platform, and the drilling processing heads are arranged along the width direction of the work platform and are adjustable.
[0013] The multi-station composite machining equipment for slide rails has three chamfering machining heads, three tapping machining heads and three drilling machining heads.
[0014] Compared with the prior art, the multi-station composite machining equipment for slide rails has the following advantages:
[0015] The multi-station composite machining equipment for slide rails is characterized in that the punching device, the turnover device, the chamfering device and the tapping device are arranged on the work platform, the material moving mechanism is used to realize the continuous loading and taking out of the guide rail material between the devices, specifically, the material moving mechanism adopts the material moving beam capable of reciprocating on the material moving track, the material clamping hand is arranged on the material moving beam, the lifter is arranged between the material moving track and the work platform, the material clamping hand clamping the guide rail material can accurately load the guide rail material when passing through each device through the translation of the material moving beam and the lifting of the lifter, and the guide rail material is clamped and taken out after the device completes the corresponding process of the guide rail material, so that the accurate transfer and positioning of the guide rail material between adjacent devices are ensured, manual intervention is not needed, especially for the machining of the guide rail multi-hole position, the machining period of the guide rail material is greatly shortened, and the production efficiency of the slide rail is significantly improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a three-dimensional schematic view of the multi-station composite machining equipment.
[0017] Figure 2 It is a three-dimensional schematic view of the multi-station composite machining equipment.
[0018] Figure 3 It is a three-dimensional schematic view of the multi-station composite machining equipment.
[0019] Figure 4 It is a three-dimensional schematic view of the multi-station composite machining equipment.
[0020] Figure 5 It is a three-dimensional schematic view of the multi-station composite machining equipment.
[0021] Explanation of reference signs: 1, work platform; 2, punching device; 3, turnover device; 4, chamfering device; 5, tapping device; 6, drilling device; 11, transfer mechanism; 12, unloading mechanism; 13, feeding mechanism; 21, punching blanking die; 31, rotating sleeve head; 41, chamfering processing head; 51, tapping processing head; 61, drilling processing head; 111, material moving track; 112, material moving beam; 113, lifter; 121, unloading table; 122, unloading track; 131, feeding table; 132, material conveying belt; 133, alignment baffle; 1121, material clamping hand. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.
[0023] Embodiment 1: Please refer to the drawings in the following Figure 1 to the drawings in the following Figure 5The embodiment provides a multi-station composite processing equipment for slide rails, which comprises a work platform 1, a punching device 2, a turnover device 3, a chamfering device 4 and a tapping device 5 arranged on the work platform 1 in sequence, and a transfer mechanism 11 arranged on the work platform 1, wherein the transfer mechanism 11 comprises a material moving track 111 arranged oppositely along the length direction of the work platform 1, a material moving beam 112 reciprocally movable along the length direction of the work platform 1 between the opposite material moving tracks 111, and a lifter 113 arranged between the material moving track 111 and the work platform 1 along the height direction, the material moving beam 112 is provided with a material clamp 1121 for clamping a guide rail material, and the punching device 2, the turnover device 3, the chamfering device 4 and the tapping device 5 are arranged between the opposite material moving tracks 111 in sequence, when the material clamp 1121 with the guide rail material moves through the punching device 2, the turnover device 3, the chamfering device 4 and the tapping device 5 in sequence, the lifter 113 drives the material moving track 111 to be raised or lowered, so that the material clamp 1121 with the guide rail material is raised or lowered, thereby making the guide rail material be loaded or separated from the punching device 2, the turnover device 3, the chamfering device 4 and the tapping device 5 in sequence. The multi-station composite processing equipment for slide rails of the embodiment arranges the punching device 2, the turnover device 3, the chamfering device 4 and the tapping device 5 on the work platform 1, and then uses the material moving mechanism 11 to realize the continuous loading and taking out of the guide rail material between the devices, specifically, the material moving mechanism 11 uses the material moving beam 112 which can reciprocally move on the material moving track 111, and the material clamp 1121 is arranged on the material moving beam 112, and the lifter 113 is arranged between the material moving track 111 and the work platform 1, through the cooperation of the translation of the material moving beam 112 and the lifting of the lifter 113, the material clamp 1121 clamping the guide rail material can accurately load the guide rail material when passing through each device, and the guide rail material can be clamped and taken out after the device completes the corresponding process of the guide rail material, thereby ensuring the accurate transfer and positioning of the guide rail material when the guide rail material is transferred between adjacent devices, without manual intervention, especially for the processing of the guide rail multi-hole position, the processing period of the guide rail material can be greatly shortened, and the production efficiency of the slide rail is significantly improved.
[0024] The work platform 1 is further provided with a discharging mechanism 12, which comprises a discharging table 121 and a discharging track 122. The discharging table 121 is arranged obliquely, and the discharging track 122 extends along the length direction of the work platform 1. The lifter 113 is movably connected to the discharging track 122 along the extension direction of the discharging track 122. When the lifter 113 moves towards the discharging table 121, the material clamping hand 1121 is moved to the discharging table 121 to discharge the guide rail material. After the guide rail material passes through the last machining process, the movement of the lifter 113 on the discharging track 122 can directly drive the movement of the material moving track 111, so that the material clamping hand 1121 continues to move to the outside of the work platform 1. At this time, the material clamping hand 1121 releases the finished guide rail material, and the guide rail material falls on the obliquely arranged discharging table 121 and slides out of the work platform 1, thereby completing the discharging action.
[0025] The work platform 1 is further provided with a feeding mechanism 13, which comprises a feeding table 131 and a conveying belt 132 arranged on the feeding table 131. The feeding table 131 is located on the side of the work platform 1 away from the discharging table 121, and the conveying belt 132 is used to convey and arrange a plurality of guide rail materials on the side of the feeding table 131 close to the material clamping hand 1121. After the material clamping hand 1121 clamps and conveys the guide rail material located at the edge of the feeding table 131, due to the continuous conveying action of the conveying belt 132, the next guide rail material arranged behind the guide rail material will move to the clamping position to prepare for the next clamping of the material clamping hand 1121.
[0026] The feeding mechanism 13 further comprises an alignment baffle 133, which is adjustably arranged on the conveying belt 132 along the width direction of the work platform 1 to simultaneously press against the end portions of the plurality of guide rail materials. The arrangement of the alignment baffle 133 can make the plurality of guide rail materials arranged in order when passing through the conveying belt 132.
[0027] The punching device 2 comprises a punching and blanking die 21 movably arranged along the width direction of the work platform 1. When the guide rail material is transferred to the punching device 2, the punching and blanking die 21 sequentially passes through the corresponding machining positions on the guide rail material. According to the preset value, the center distance of each punching on the guide rail material can be ensured according to the distance of each movement of the punching and blanking die 21, so that the punching and blanking die 21 continuously punches a plurality of punchings on the guide rail material.
[0028] The turnover device 3 comprises oppositely arranged rotary sleeve heads 31. When the guide rail material is transferred to the turnover device 3, the rotary sleeve heads 31 are oppositely sleeved on the two ends of the guide rail material and rotate to drive the guide rail material to rotate around the shaft. Preferably, the rotary sleeve heads 31 rotate the guide rail material by 180° to facilitate the subsequent chamfering process of the guide rail material.
[0029] Preferably, the chamfering device 4 comprises a plurality of chamfering heads 41 arranged along the width direction of the workbench 1, and the chamfering heads 41 are adjustably arranged along the width direction of the workbench 1.
[0030] Preferably, the tapping device 5 comprises a plurality of tapping heads 51 arranged along the width direction of the workbench 1, and the tapping heads 51 are adjustably arranged along the width direction of the workbench 1.
[0031] Preferably, the multi-station composite machining equipment further comprises a drilling device 6 arranged on the workbench 1, and the drilling device 6 comprises a plurality of drilling heads 61 arranged along the width direction of the workbench 1, and the drilling heads 61 are adjustably arranged along the width direction of the workbench 1. The purpose of the drilling device 6 is to process a clearance hole on the guide rail material, and the clearance hole has a avoiding effect on the installation of the screw when the screw is fastened in the assembly of the slide rail.
[0032] Preferably, the number of the chamfering heads 41, the tapping heads 51 and the drilling heads 61 is three respectively.
[0033] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A multi-station composite processing equipment for slide rails, characterized in that: The system includes a working platform (1), a punching device (2), a flipping device (3), a chamfering device (4), and a tapping device (5) mounted on the working platform (1). The working platform (1) is equipped with a transfer mechanism (11). The transfer mechanism (11) includes material transfer tracks (111) arranged opposite each other along the length direction of the working platform (1), a material transfer beam (112) that reciprocates between the opposite material transfer tracks (111) along the length direction of the working platform (1), and a lifter (113) arranged between the material transfer tracks (111) and the working platform (1) along the height direction. The material transfer beam (112) is equipped with a material gripper (1121) for gripping guide rail materials. The punching device (2), the flipping device (3), the chamfering device (4), and the tapping device (5) are arranged sequentially between the opposite material transfer track (111). When the movement of the material transfer beam (112) causes the material gripper (1121) to pass sequentially through the punching device (2), the flipping device (3), the chamfering device (4), and the tapping device (5), the lifting device (113) drives the material transfer track (111) to rise or fall, thereby causing the material gripper (1121) to rise or fall, so that the guide rail material is sequentially loaded or unloaded from the punching device (2), the flipping device (3), the chamfering device (4), and the tapping device (5).
2. The multi-station composite processing equipment for slide rails according to claim 1, characterized in that: The work platform (1) is also provided with a unloading mechanism (12), which includes an unloading platform (121) and an unloading track (122). The unloading platform (121) is inclined, and the unloading track (122) extends along the length of the work platform (1). The lifting device (113) is movably connected to the unloading track (122) along the extension direction of the unloading track (122). When the lifting device (113) moves toward the unloading platform (121), the material transfer track (111) drives the material clamp (1121) to approach the unloading platform (121) to unload the guide rail material.
3. The multi-station composite processing equipment for slide rails according to claim 2, characterized in that: The work platform (1) is also provided with a feeding mechanism (13), which includes a feeding platform (131) and a conveyor belt (132) on the feeding platform (131). The feeding platform (131) is located on the side of the work platform (1) away from the unloading platform (121). The conveyor belt (132) is used to transport and arrange multiple guide rail materials on the side of the feeding platform (131) near the material clamp (1121).
4. A multi-station composite processing equipment for slide rails according to claim 3, characterized in that: The feeding mechanism (13) also includes an alignment baffle (133), which is adjustablely disposed on the conveyor belt (132) along the width direction of the working platform (1) to simultaneously press against the ends of multiple guide rail materials.
5. A multi-station composite processing equipment for slide rails according to claim 3, characterized in that: The punching device (2) includes a punching blanking die (21) that is movably arranged along the width direction of the working platform (1). When the guide rail material is transferred to the punching device (2), the punching blanking die (21) passes through the corresponding processing station on the guide rail material in sequence.
6. A multi-station composite processing equipment for slide rails according to claim 5, characterized in that: The flipping device (3) includes a rotating sleeve (31) arranged opposite to each other. When the guide rail material is transferred to the flipping device (3), the rotating sleeve (31) is sleeved on both ends of the guide rail material and rotates to drive the guide rail material to flip around the axis.
7. A multi-station composite processing equipment for slide rails according to claim 6, characterized in that: The chamfering device (4) includes a plurality of chamfering heads (41) arranged along the width direction of the work platform (1), and the chamfering heads (41) are adjustable along the width direction of the work platform (1).
8. A multi-station composite processing equipment for slide rails according to claim 7, characterized in that: The tapping device (5) includes a plurality of tapping heads (51) arranged along the width direction of the working platform (1), and the tapping heads (51) are adjustable along the width direction of the working platform (1).
9. A multi-station composite processing equipment for slide rails according to claim 8, characterized in that: It also includes a drilling device (6) disposed on the work platform (1), the drilling device (6) including a plurality of drilling heads (61) arranged along the width direction of the work platform (1), the drilling heads (61) being adjustable along the width direction of the work platform (1).
10. A multi-station composite processing equipment for slide rails according to claim 9, characterized in that: The number of the chamfering head (41), the tapping head (51) and the drilling head (61) are each three.