Linear sliding table device with auxiliary linear guide rail for feeding and conveying
By designing auxiliary linear guides and quick-stop mechanisms, the problem of traditional linear sliding devices being difficult to stop quickly during high-speed operation has been solved, achieving efficient and precise material conveying and positioning, and improving production efficiency and equipment stability.
Patent Information
- Application Number
- CN202520086531.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-15
AI Technical Summary
Traditional linear sliding devices are difficult to stop quickly at high speeds, resulting in inaccurate positioning and affecting production efficiency and equipment stability.
A linear slide table device for feeding and conveying with an auxiliary linear guide rail was designed. The combination of auxiliary slide rail, slide base and plate enhances the stability and load-bearing capacity of the conveyor frame. The combination of quick stop mechanism, push spring and locking block realizes fast braking and precise positioning.
It achieves efficient material conveying and precise positioning, reduces mechanical vibration and displacement overshoot, and improves production efficiency and equipment lifespan.
Smart Images

Figure CN223779222U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to industrial production automation technical field more specifically, it relates to a kind of linear slide platform device for feeding and conveying with auxiliary linear guide rail. BACKGROUND
[0002] In the industrial production automation process, conveying system is the important link for realizing material handling and accurate positioning, is widely used in assembly, machining and packaging and other fields, in order to meet the needs of high efficiency and accurate feeding of assembly line operation, linear sliding device gradually becomes the important component of conveying system, although the traditional linear sliding device can realize the conveying and position adjustment of material, but in high-speed operation, it is often difficult to realize quick stop at specified position, especially in the scene involving high-precision operation, it is difficult to realize accurate positioning control, resulting in production efficiency is affected to a certain extent, while increasing the debugging and operation difficulty of device;
[0003] In addition, in some occasions that need frequent start and stop or have higher requirements on position accuracy, due to the inertia of the sliding device designed by the prior art is large, it is difficult to realize rapid braking, and mechanical vibration or displacement overshoot is easy to cause, this defect not only will affect product processing quality, but also may have adverse effects on the stability and service life of equipment, therefore, aiming at the speed stop requirement of linear sliding device in conveying process, design a kind of sliding device that can not only efficiently complete material conveying, but also has rapid and stable braking performance, become the important direction of current technical improvement. CONTENT OF UTILITY MODEL
[0004] (I) technical problem solved
[0005] In view of the problems existing in the prior art, the utility model provides a kind of linear slide platform device for feeding and conveying with auxiliary linear guide rail, to solve the technical problem that the traditional linear sliding device mentioned in background art can realize the conveying and position adjustment of material, but in high-speed operation, it is often difficult to realize quick stop at specified position.
[0006] (II) technical scheme
[0007] In order to achieve the above object, the utility model provides the following technical scheme: a linear sliding table device for feeding and conveying with auxiliary linear guide rail, including base, the base is provided with conveying mechanism, the conveying mechanism includes support frame, main slide rail, main slide, conveying frame, motor, rotating rod, gear and rack, the support frame is installed on the base, the main slide rail is installed on the support frame, the main slide is slid on the main slide rail, the conveying frame is installed on the main slide, the motor is installed on the conveying frame, the rotating rod is installed on the motor, the gear is installed on the rotating rod top, the rack is installed on the conveying frame and is engaged with the gear, the motor is provided with the quick stop mechanism between the rotating rod, the quick stop mechanism includes connecting sleeve, limit ring, abutment rod, pressing plate, tension spring, clamping block, clamping groove, unlocking sleeve and push frame, the connecting sleeve is installed on the motor output, the limit ring is installed on the connecting sleeve bottom and is rotatably connected with the rotating rod, the abutment rod is provided with a plurality of groups and is slid on the connecting sleeve outer wall, the pressing plate is installed on the top of a plurality of groups of abutment rods, the tension spring is provided with a plurality of groups and is installed on the connecting sleeve inner wall, the clamping block is installed on the bottom of a plurality of groups of tension springs, the clamping groove is arranged on the rotating rod outer wall, the unlocking sleeve is slid on the connecting sleeve outer wall, and the push frame is installed on the support frame through the setting of the positioning mechanism.
[0008] The utility model further sets up, the base is provided with auxiliary mechanism, the auxiliary mechanism includes support platform, auxiliary slide rail, auxiliary slide and auxiliary plate, the support platform is installed on the base, the auxiliary slide rail is installed on the support platform outside, the auxiliary slide rail is slid on two groups of the auxiliary slide rail, and the auxiliary plate is installed on two groups of the auxiliary slide and is connected with the conveying frame, which provides a stable support base through the support platform, the setting of the auxiliary slide rail enables the auxiliary slide to slide stably along the slide rail, thereby providing additional support and guidance for the operation of the conveying frame, the existence of the auxiliary plate further enhances the overall rigidity and carrying capacity of the conveying frame, while effectively reducing the vibration and deviation of the conveying frame during operation, significantly improving the operation stability and service life of the device.
[0009] The utility model further sets up, the plurality of the pressing plate inboard and connecting sleeve are all connected with push spring, the push spring is provided with a plurality of groups, under the design of a plurality of groups, the push spring forms the rebound force between the pressing plate and the connecting sleeve through the elastic action, so as to ensure that the pressing plate can reset quickly and effectively limit and lock the rotating rod, the design of a plurality of groups of push spring improves the mechanical uniformity and reliability of the device at different parts, so that the quick stop function of the whole device is more efficient and stable, especially in the high-speed operation process, which can effectively prevent the separation or loosening of mechanical parts.
[0010] The utility model further sets up, a plurality of groups the card block outside all is equipped with slide bar, the slide bar is equipped with a plurality of groups and all with the connecting sleeve sliding connection, a plurality of groups of slide bar design makes every card block in the sliding process can realize more stable and accurate movement along the connecting sleeve, thereby avoid the problem of jamming of card block in operation because of friction or uneven stress, the design of slide bar further improves the motion smoothness and transmission efficiency of card block, ensures the timeliness and sensitivity of device speed stop function, slows down and absorbs the mechanical vibration at the same time.
[0011] The utility model further sets up, a plurality of groups the card block inside wall all is set up as arc, the round angle design of card slot outside can effectively reduce the friction resistance of card block and card slot in the contact process, reduces mechanical wear at the same time, prolongs the service life of device, the arc structure design of card block inside wall further strengthens the smoothness of card block when sliding into or sliding out of card slot, thereby make the whole locking and unlocking process more stable and efficient, the round angle and arc design also avoid the material fatigue or damage caused by too sharp edge, enhance the reliability of device.
[0012] The utility model further sets up, the return spring is equipped between the unlocking sleeve and the connecting sleeve, the return spring is equipped with a plurality of groups, and the return spring passes through its elastic reset characteristic, so that the unlocking sleeve can return to the original position rapidly after the pushing frame force disappears, and the plurality of return springs are further enhanced the resilience speed and stability of the unlocking sleeve, so as to ensure the timeliness and accuracy of the unlocking mechanism, especially in high frequency start and stop operation can significantly improve the reliability of device, and the uniform distribution of return spring also reduces the uneven stress problem of unlocking sleeve, improves the durability of overall structure.
[0013] The utility model further sets up, a plurality of groups the pressure plate outer wall all is equipped with arc block, the arc block is equipped with a plurality of groups, and the arc block provides greater contact area and more stable sliding support for the device by cooperating with the pressure plate, thereby effectively reducing the friction resistance of pressure plate and other components when sliding, improving the motion smoothness and stability of the whole device, and the design of a plurality of arc blocks can also disperse the stress generated during the operation of the device, avoid the deformation or damage of components caused by local stress concentration, and improve the vibration resistance and durability of the device.
[0014] The utility model further sets up, the positioning mechanism includes adjusting lever, transmission frame, clamping plate, adjusting groove, connecting plate, guide plate and bolt, adjusting lever installs on support frame, transmission frame installs on push frame and is connected with adjusting lever sliding, clamping plate slides on transmission frame, adjusting groove is provided with multiple groups distribution in adjusting lever outer wall, guide plate installs on adjusting lever outer wall and is connected with transmission frame sliding, bolt rotation installs on connecting plate and is connected with transmission frame thread, adjusting lever passes through the sliding connection with transmission frame, provides the stable guide function for the adjustment of push frame, transmission frame can be accurately positioned in different positions under the multiple distribution of adjusting groove, the cooperation of clamping plate and adjusting groove provides reliable fixed function, avoids the position deviation of push frame because of vibration, guide plate further enhances the stability of transmission frame sliding, the threaded connection of bolt makes the adjustment process more convenient and reliable, and the design of multiple adjusting grooves expands the adjustable range of push frame, improves the applicability and flexibility of device under different working conditions.
[0015] (Three) beneficial effects
[0016] Compared with the prior art, the utility model provides a linear sliding table device for feeding and conveying with auxiliary linear guide rails, which has the following beneficial effects:
[0017] 1. In the linear sliding table device for feeding and conveying, the combination of the support frame, the main slide rail, the main slide seat and the conveying frame on the base realizes efficient conveying and accurate positioning of the material. The motor is installed on the conveying frame, and the meshing transmission of the rotating rod, the gear and the rack enables the conveying frame to slide smoothly along the main slide rail, ensuring the stability and precision of the conveying process. In addition, the quick stop mechanism arranged between the motor and the rotating rod enables the device to stop quickly at the specified position. This design not only improves the response speed and braking performance of the device, but also effectively reduces mechanical vibration and displacement overshoot, improving production efficiency and product quality.
[0018] 2. The combination of the support table, the auxiliary slide rail, the auxiliary slide seat and the auxiliary plate on the base further enhances the stability and carrying capacity of the conveying frame. The auxiliary slide rail is installed on the outer side of the support table, the auxiliary slide seat slides on the auxiliary slide rail, and the auxiliary plate is installed on the auxiliary slide seat and connected with the conveying frame. This design enables the auxiliary slide rail and the auxiliary slide seat to provide additional support and guidance when the conveying frame slides on the main slide rail, reducing the load on the main slide rail and improving the running stability and service life of the device. In addition, the push spring arranged between the inner side of the multiple pressure plates and the connecting sleeve, and the slide rod arranged on the outer side of the clamping block, make the clamping and disengagement of the clamping block in the clamping groove more smooth, improving the reliability and response speed of the quick stop mechanism. The round corner on the outer side of the clamping groove and the arc structure on the inner wall of the clamping block reduce the friction when the clamping block slides in the clamping groove, further improving the running efficiency of the device.
[0019] 3. The positioning mechanism, through the combination of adjusting rods, transmission frames, clamping plates, adjusting grooves, connecting plates, guide plates, and bolts on the support frame, achieves precise adjustment and fixation of the push frame position. When the position of the push frame needs to be adjusted, the bolts are rotated along the threaded engagement of the transmission frame, causing the screw to move outward, which in turn moves the connecting plate outward. The clamping plate disengages from the adjusting groove, and the transmission frame slides along the adjusting rod, completing the position movement of the push frame. Once it reaches the designated position, the bolts are rotated in the opposite direction to engage with the threaded engagement of the transmission frame. The connecting plate then drives the clamping plate to engage in the adjusting groove, fixing the position of the transmission frame. This design not only simplifies operation but also ensures the accuracy and stability of the push frame position, providing a reliable guarantee for the efficient operation of the device. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of a linear slide table device for feeding and conveying materials, including an auxiliary linear guide rail, according to this utility model.
[0021] Figure 2 This is a schematic diagram of the support frame in this utility model;
[0022] Figure 3 This is a schematic diagram of the gear and rack in this utility model;
[0023] Figure 4 This is a cross-sectional structural schematic diagram of the medium-speed stopping mechanism of this utility model;
[0024] Figure 5 This is a cross-sectional view of the positioning mechanism in this utility model.
[0025] Figure 6 This is a schematic diagram of a partial mating structure between the card block and the card slot in this utility model.
[0026] In the diagram: 1. Base; 2. Support frame; 3. Main slide rail; 4. Main slide block; 5. Conveyor frame; 6. Motor; 7. Rotating rod; 8. Gear; 9. Rack; 10. Connecting sleeve; 11. Limiting ring; 12. Abutment rod; 13. Pressure plate; 14. Tension spring; 15. Locking block; 16. Locking groove; 17. Unlocking sleeve; 18. Push frame; 19. Support platform; 20. Auxiliary slide rail; 21. Auxiliary slide block; 22. Auxiliary plate; 23. Push spring; 24. Slide rod; 25. Return spring; 26. Arc block; 27. Adjusting rod; 28. Transmission frame; 29. Locking plate; 30. Adjusting groove; 31. Connecting plate; 32. Guide plate; 33. Bolt. Detailed Implementation
[0027] 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.
[0028] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.
[0029] In this utility model, unless otherwise stated, the orientations used, such as "up" and "down", usually refer to the direction shown in the accompanying drawings, or to the vertical, perpendicular, or gravitational direction; similarly, for ease of understanding and description, "left" and "right" usually refer to the left and right shown in the accompanying drawings; "inner" and "outer" refer to the inner and outer contours of each component itself, but the above directional terms are not used to limit this utility model.
[0030] Please see Figures 1-6 A linear slide table device for feeding and conveying materials, including an auxiliary linear guide rail, comprises a base 1, on which a conveying mechanism is mounted. The conveying mechanism includes a support frame 2, a main slide rail 3, a main slide block 4, a conveying frame 5, a motor 6, a rotating rod 7, a gear 8, and a rack 9. The support frame 2 is mounted on the base 1, the main slide rail 3 is mounted on the support frame 2, the main slide block 4 slides on the main slide rail 3, the conveying frame 5 is mounted on the main slide block 4, the motor 6 is mounted on the conveying frame 5, the rotating rod 7 is mounted on the motor 6, the gear 8 is mounted on the top of the rotating rod 7, and the rack 9 is mounted on the conveying frame 5 and meshes with the gear 8. A quick-stop mechanism is provided between the motor 6 and the rotating rod 7. The quick-stop mechanism includes... The assembly includes a connecting sleeve 10, a limiting ring 11, a stop rod 12, a pressure plate 13, a tension spring 14, a locking block 15, a locking groove 16, an unlocking sleeve 17, and a pusher 18. The connecting sleeve 10 is installed at the output end of the motor 6. The limiting ring 11 is installed at the bottom end of the connecting sleeve 10 and is rotatably connected to the rotating rod 7. Multiple sets of the stop rod are provided and slide on the outer wall of the connecting sleeve 10. The pressure plate 13 is installed at the top of multiple sets of the stop rod 12. Multiple sets of the tension spring 14 are provided and installed on the inner wall of the connecting sleeve 10. The locking block 15 is installed at the bottom end of multiple sets of the tension spring 14. The locking groove 16 is located on the outer wall of the rotating rod 7. The unlocking sleeve 17 slides on the outer wall of the connecting sleeve 10. The pusher 18 is installed on the support frame 2 by means of a positioning mechanism.
[0031] An auxiliary mechanism is provided on the base 1. The auxiliary mechanism includes a support platform 19, an auxiliary slide rail 20, an auxiliary slide block 21, and an auxiliary plate 22. The support platform 19 is installed on the base 1. The auxiliary slide rail 20 is installed on the outside of the support platform 19. The auxiliary slide rail 20 slides on two sets of auxiliary slide rails 20. The auxiliary plate 22 is installed on two sets of auxiliary slide blocks 21 and is connected to the conveyor frame 5.
[0032] Multiple sets of push springs 23 are provided between the inner side of the pressure plate 13 and the connecting sleeve 10.
[0033] Multiple sets of locking blocks 15 are provided with sliding rods 24 on their outer sides. There are multiple sets of sliding rods 24, and they are all slidably connected to the connecting sleeve 10.
[0034] The outer sides of the multiple card slots 16 are all rounded, and the inner walls of the multiple card blocks 15 are all arc-shaped.
[0035] A return spring 25 is provided between the unlocking sleeve 17 and the connecting sleeve 10, and multiple sets of return springs 25 are provided.
[0036] The outer walls of multiple pressure plates 13 are provided with arc-shaped blocks 26, and there are multiple sets of arc-shaped blocks 26.
[0037] In this embodiment, the starting motor 6 drives the connecting sleeve 10 to rotate. The return spring 25 pushes the unlocking sleeve 17 so that its inner wall abuts against the arc-shaped blocks 26 set on the outer wall of the multiple pressure plates 13 and applies downward pressure. The abutment rod 12 pushes the locking block 15 to engage in the locking groove 16. Thus, the rotation of the connecting sleeve 10 drives the rotating rod 7 to rotate. The rotating rod 7 drives the gear 8 to rotate and mesh with the rack 9, so that the gear 8 moves along the rack 9. This drives the motor 6 and the conveying frame 5 to slide along the main slide rail 3 via the main slide seat 4. The conveying frame 5 slides along the auxiliary slide rail 20 via the auxiliary slide seat 21 on the auxiliary plate 22. The position of the pusher 18 is adjusted by the positioning mechanism. When the connecting sleeve 10 moves to the preset position of the pusher 18, the pusher 18 abuts against and pushes the unlocking sleeve 17, so that the unlocking sleeve 17 slides along the connecting sleeve 10 and squeezes the multiple return springs 25. Then the unlocking sleeve 17 releases its abutment against the multiple pressure plates 13. Subsequently, the elastic reset of the multiple push springs 23 pushes the pressure plate 17 to move downward pressure. As plate 13 moves outward, the compression spring causes the abutment rod 12 to slide outward, releasing the bottom ends of the multiple abutment rods 12 from contact with the locking block 15. The elastic reset of the multiple tension springs 14 pulls the locking block 15 outward along the connecting sleeve 10 via the slide rod 24. Simultaneously, the side wall of the slot 16 presses against the inner wall of the locking block 15. The side wall of the slot 16 and the inner side of the locking block 15 have rounded corners. The locking block 15 gradually slides out of the slot 16, causing the motor 6 to drive the connecting sleeve 10 to rotate freely. The motor 6 can be turned off, so that the motor 6 no longer drives the connecting sleeve 10 to rotate, and thus no longer drives the rotating rod 7 and gear 8 to rotate, thereby quickly stopping the movement of the conveyor frame 5. Then, the position of the push frame 18 is adjusted again to release the abutment of the unlocking sleeve 17. The elasticity of multiple sets of return springs 25 pushes the unlocking sleeve 17 to abut against multiple sets of pressure plates 13, so that the abutment pushes the locking block 15 to engage again in the slot 16 to connect the connecting sleeve 10 and the rotating rod 7.
[0038] Please see Figure 5As one embodiment of the positioning mechanism: the positioning mechanism includes an adjusting rod 27, a transmission frame 28, a clamping plate 29, an adjusting groove 30, a connecting plate 31, a guide plate 32, and a bolt 33. The adjusting rod 27 is mounted on the support frame 2, the transmission frame 28 is mounted on the push frame 18 and is slidably connected to the adjusting rod 27, the clamping plate 29 slides on the transmission frame 28, the adjusting groove 30 is provided with multiple sets distributed on the outer wall of the adjusting rod 27, the guide plate 32 is mounted on the outer wall of the adjusting rod 27 and is slidably connected to the transmission frame 28, and the bolt 33 is rotatably mounted on the connecting plate 31 and threadedly connected to the transmission frame 28.
[0039] More specifically, when the position of the push frame 18 needs to be adjusted, the screw 33 is rotated along the transmission frame 28 to engage with the thread, causing the screw to move outward and simultaneously driving the connecting plate 31 to move outward, causing the clamping plate 29 to disengage from the adjustment groove 30. Then, the transmission frame 28 slides along the adjusting rod 27 to move the position of the push frame 18. When it moves to the designated position, the screw 33 is rotated in the opposite direction to engage with the transmission frame 28, thereby causing the clamping plate 29 to engage in the adjustment groove 30 through the connecting plate 31, thus fixing the position of the transmission frame 28 and completing the position fixing of the push frame 18.
[0040] In summary, during the use or operation of the overall equipment: the starting motor 6 drives the connecting sleeve 10 to rotate, and the return spring 25 pushes the unlocking sleeve 17 so that its inner wall abuts against the arc-shaped blocks 26 set on the outer wall of the multiple pressure plates 13 and applies downward pressure. The abutment rod 12 pushes the locking block 15 to engage in the locking groove 16, thereby driving the rotating rod 7 to rotate through the rotation of the connecting sleeve 10. The rotating rod 7 drives the gear 8 to rotate and mesh with the rack 9, so that the gear 8 moves along the rack 9, driving the motor 6 and the conveyor frame 5 to slide along the main slide rail 3 through the main slide seat 4. The conveyor frame 5 slides along the auxiliary slide rail 20 through the auxiliary slide seat 21 on the auxiliary plate 22. The position of the pusher 18 is adjusted by the positioning mechanism. When the connecting sleeve 10 moves to the preset position of the pusher 18, the pusher 18 abuts against and pushes the unlocking sleeve 17, so that the unlocking sleeve 17 slides along the connecting sleeve 10 and squeezes the multiple return springs 25. Then the unlocking sleeve 17 releases its abutment against the multiple pressure plates 13, and then the elasticity of the multiple push springs 23 is released. The reset pushes the pressure plate 13 outward, and the pressure spring drives the abutment rod 12 to slide outward, causing the bottom ends of the multiple sets of abutment rods 12 to release their contact with the locking block 15. The elastic reset of the multiple sets of tension springs 14 pulls the locking block 15 outward along the connecting sleeve 10 via the slide rod 24. Simultaneously, the side wall of the locking groove 16 presses against the inner wall of the locking block 15. The side wall of the locking groove 16 and the inner side of the locking block 15 have a rounded corner design. The locking block 15 gradually slides out of the locking groove 16, causing the motor 6 to drive the connecting sleeve 10 to rotate freely. Then the motor 6 can be turned off, so that the motor 6 no longer drives the connecting sleeve 10 to rotate, and thus no longer drives the rotating rod 7 and gear 8 to rotate, thereby quickly stopping the movement of the conveyor frame 5. Then the position of the push frame 18 is adjusted again to release the abutment of the unlocking sleeve 17. The elasticity of multiple sets of return springs 25 pushes the unlocking sleeve 17 to abut against multiple sets of pressure plates 13, so that the abutment pushes the locking block 15 to engage again in the slot 16 to connect the connecting sleeve 10 and the rotating rod 7.
[0041] When the position of the push frame 18 needs to be adjusted, the screw 33 is rotated along the transmission frame 28 to engage with the thread, causing the screw to move outward. At the same time, the connecting plate 31 is moved outward, causing the clamping plate 29 to disengage from the adjustment groove 30. Then, the transmission frame 28 slides along the adjustment rod 27 to move the position of the push frame 18. When it moves to the designated position, the screw 33 is rotated in the opposite direction to engage with the transmission frame 28. This causes the clamping plate 29 to engage in the adjustment groove 30 through the connecting plate 31, thus fixing the position of the transmission frame 28. This completes the position fixing of the push frame 18.
[0042] Of all the solutions mentioned above, those involving the connection between two components can be selected according to the actual situation, such as welding, bolt and nut connection, bolt or screw connection, or other known connection methods, which will not be elaborated here. For all the fixed connections mentioned above, welding is preferred. Although embodiments of this utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this utility model. The scope of this utility model is defined by the appended claims and their equivalents.
Claims
1. A linear slide device for feeding and conveying materials with an auxiliary linear guide rail, comprising a base (1), characterized in that: A conveying mechanism is provided on the base (1). The conveying mechanism includes a support frame (2), a main slide rail (3), a main slide block (4), a conveying frame (5), a motor (6), a rotating rod (7), a gear (8), and a rack (9). The support frame (2) is installed on the base (1), the main slide rail (3) is installed on the support frame (2), the main slide block (4) slides on the main slide rail (3), the conveying frame (5) is installed on the main slide block (4), the motor (6) is installed on the conveying frame (5), the rotating rod (7) is installed on the motor (6), the gear (8) is installed at the top of the rotating rod (7), and the rack (9) is installed on the conveying frame (5) and meshes with the gear (8). A quick stop mechanism is provided between the motor (6) and the rotating rod (7). The quick stop mechanism includes a connecting sleeve (10). The components include a limiting ring (11), a stop rod (12), a pressure plate (13), a tension spring (14), a locking block (15), a slot (16), an unlocking sleeve (17), and a pusher (18). The connecting sleeve (10) is installed at the output end of the motor (6). The limiting ring (11) is installed at the bottom end of the connecting sleeve (10) and is rotatably connected to the rotating rod (7). The stop block is provided with multiple sets that slide on the outer wall of the connecting sleeve (10). The pressure plate (13) is installed at the top of multiple sets of stop rods (12). The tension spring (14) is provided with multiple sets that are installed on the inner wall of the connecting sleeve (10). The locking block (15) is installed at the bottom end of multiple sets of tension springs (14). The slot (16) is provided on the outer wall of the rotating rod (7). The unlocking sleeve (17) slides on the outer wall of the connecting sleeve (10). The pusher (18) is installed on the support frame (2) by means of a positioning mechanism.
2. The linear slide device for feeding and conveying materials with an auxiliary linear guide rail as described in claim 1, characterized in that: An auxiliary mechanism is provided on the base (1). The auxiliary mechanism includes a support platform (19), an auxiliary slide rail (20), an auxiliary slide block (21), and an auxiliary plate (22). The support platform (19) is installed on the base (1). The auxiliary slide rail (20) is installed on the outside of the support platform (19). The auxiliary slide rail (20) slides on two sets of the auxiliary slide rails (20). The auxiliary plate (22) is installed on two sets of the auxiliary slide blocks (21) and is connected to the conveyor frame (5).
3. A linear slide device for feeding and conveying materials with auxiliary linear guides according to claim 2, characterized in that: multiple sets of... Push springs (23) are connected between the inner side of the pressure plate (13) and the connecting sleeve (10), and multiple sets of push springs (23) are provided.
4. A linear slide device for feeding and conveying materials with auxiliary linear guides according to claim 3, characterized in that: multiple sets of... Each of the card blocks (15) is provided with a slide bar (24) on its outer side. The slide bar (24) is provided in multiple sets and is slidably connected to the connecting sleeve (10).
5. A linear slide device for feeding and conveying materials with auxiliary linear guides according to claim 4, characterized in that: multiple sets of... The outer side of each slot (16) is provided with rounded corners, and the inner walls of each set of card blocks (15) are all set with arc shape.
6. A linear slide device for feeding and conveying materials with an auxiliary linear guide rail as described in claim 5, characterized in that: A return spring (25) is provided between the unlocking sleeve (17) and the connecting sleeve (10), and multiple sets of the return spring (25) are provided.
7. A linear slide device for feeding and conveying materials with auxiliary linear guides according to claim 6, characterized in that: multiple sets of... The outer wall of the pressure plate (13) is provided with arc-shaped blocks (26), and there are multiple sets of arc-shaped blocks (26).
8. A linear slide device for feeding and conveying materials with an auxiliary linear guide rail as described in claim 7, characterized in that: The positioning mechanism includes an adjusting rod (27), a transmission frame (28), a clamping plate (29), an adjusting groove (30), a connecting plate (31), a guide plate (32), and a bolt (33). The adjusting rod (27) is mounted on the support frame (2), the transmission frame (28) is mounted on the push frame (18) and is slidably connected to the adjusting rod (27), the clamping plate (29) slides on the transmission frame (28), the adjusting groove (30) is provided with multiple sets distributed on the outer wall of the adjusting rod (27), the guide plate (32) is mounted on the outer wall of the adjusting rod (27) and is slidably connected to the transmission frame (28), and the bolt (33) is rotatably mounted on the connecting plate (31) and threadedly connected to the transmission frame (28).