A press-fit device for guide rail slider production with high press-fit efficiency
Patent Information
- Application Number
- CN202311233694.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-22
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2043-09-22
AI Technical Summary
[0004]1、在专利文件KR1020200135144A中,主要考虑如何调节使用时工作台间的间隙,并没有考虑到现有的滑块压合设备在使用时压合效率较低的问题;
[0032]1、本发明通过安装有加工台、卡槽一、推板、卡板、连接块、固定杆、限位杆、滑槽一和挡杆,在使用该滑块压合设备时,首先根据使用需要将需要进行压合的滑块产品主体放置在连接板一内,并通过卡板对滑块产品主体进行限位,接着工人推动拉环,带动推板在卡槽一内移动,接着就能够通过连接块带动挡杆在滑槽一和滑槽二内移动,并在推板移送至最后端时,限位杆在固定杆的表面转动九十度,使得限位杆能够对滑块产品主体限位,接着就可以对滑块产品主体进行压合操作,从而在一定程度上能够提高压合的效率。
Smart Images

Figure CN118181781B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of guide rail slider manufacturing technology, specifically to a pressing equipment for producing guide rail sliders with high pressing efficiency. Background Technology
[0002] In the guide rail slider manufacturing industry, the injection molded parts required for finished sliders have poor processing precision and many problems. Furthermore, when manually pressing individual products with existing slider pressing equipment, due to differences in individual strength and product placement, there are situations where insufficient strength results in incomplete pressing or product loss due to misalignment during pressing. The pressing efficiency is low and there are certain defects.
[0003] The existing slide block pressing equipment has the following drawbacks:
[0004] 1. In patent document KR1020200135144A, the main consideration is how to adjust the gap between the worktables during use, but the problem of low pressing efficiency of existing slider pressing equipment during use is not taken into account.
[0005] 2. In the patent document CN206122602U, the main consideration is how to conveniently adjust and control the clamping force, but it does not take into account that the existing slider pressing equipment is not convenient to flexibly adjust the movement of the pusher block during use, and its convenience is poor.
[0006] 3. In the patent document CN208162458U, the main consideration is to improve the pressing efficiency by pressing multiple sets of parts in a single operation, without taking into account the problem that the existing slider pressing equipment does not have a material pushing structure during use.
[0007] 4. In the patent document CN216966880U, the main consideration is how to improve production efficiency, but it does not take into account that the existing slider pressing equipment is easily affected by the different pressing forces during use. Summary of the Invention
[0008] The purpose of this invention is to provide a pressing device for producing guide rail sliders with high pressing efficiency, so as to solve the problems mentioned in the background art.
[0009] To achieve the above objectives, the present invention provides the following technical solution: a pressing device for producing guide rail sliders with high pressing efficiency, comprising a processing table, a connecting plate 1 installed on the top of the processing table, and a push-pull material blocking module installed on the top of the processing table, wherein the push-pull material blocking module is used to push the product from the feeding area to the pressing area, and the push-pull material blocking module includes a slot 1 disposed on the top of the processing table, and the slot 1 is located on one side of the connecting plate 1;
[0010] A push plate is slidably installed inside the slot one. A card plate is installed on the top of the push plate, and the card plate has a U-shaped structure. The bottom of the card plate is in contact with the top of the connecting plate one. A connecting block is installed on the back of the push plate, and the connecting block has an L-shaped structure. A fixing rod is installed on the top of the connecting plate one. A limit rod is sleeved on the outer surface of the fixing rod. The two ends of the limit rod are connected to form an obtuse triangle shape. The top of the limit rod and the connecting block are both provided with a sliding groove one.
[0011] A stop bar is slidably installed inside the first slide groove, and a second slide groove is provided through the top of the processing table.
[0012] Preferably, the bottom of the processing table is equipped with a synchronous belt misalignment module and a pusher misalignment module, and the synchronous belt misalignment module is used to drive the pusher misalignment module to move. The synchronous belt misalignment module includes a placement plate welded to the inner wall of one side of the push plate. The outer wall of one side of the placement plate is provided with uniformly arranged grooves. The inside of the grooves is meshed with a gear. The bottom wall of the push plate is provided with a sliding groove. The bottom of the gear and the bottom of the processing table are both equipped with connecting rods. The connecting rod at the bottom of the gear is located inside the sliding groove. The bottom ends of the two sets of connecting rods are equipped with sprockets. The outer surfaces of the two sets of sprockets are meshed with chains.
[0013] Preferably, the pusher misalignment module is used to push out the pressed product. The pusher misalignment module includes a slide groove three that runs through the bottom wall of the connecting plate one and the top of the processing table. The bottom of the processing table is provided with a slot two, which is located between slide groove four and slide groove three. A storage plate two is slidably installed inside the slot two, and one outer wall of the storage plate two is connected to the outer surface of the chain. A pusher block is installed on the top of the storage plate two through a shaft, and the pusher block is located inside the slide groove three. The pusher block is inclined, and a spring is installed at the bottom of the pusher block, with the bottom end of the spring connected to the top of the storage plate two.
[0014] Preferably, a lever trigger module and a pressing module are installed on the top of the processing table, and the pressing module is located behind the lever trigger module. The lever trigger module is used to activate the pressing module. The lever trigger module includes a pressure plate installed on the outer wall of one side of the push plate. A storage slot is provided on one side of the outer wall of the processing table. A support plate is installed at the bottom of the processing table and is located in front of the chain. A trigger switch is installed on one side of the outer wall of the support plate and is located in the storage slot. A support plate is installed on the top of the processing table and is located behind the storage slot. A limit block is installed on the front of the support plate. A third storage plate is installed on the back of the processing table. A laser range sensor is installed on the front of the third storage plate to measure the distance from itself to the connecting block. The laser range sensor and the trigger switch are electrically connected.
[0015] Preferably, the connecting plate is U-shaped, the longitudinal section of the stop bar is I-shaped, the top wall of the stop bar is in contact with the top of the limiting bar, the bottom outer surface of the stop bar is located inside the sliding groove II, the sliding groove II and the sliding groove I on the connecting block are on the same horizontal plane, and the connecting block drives the limiting bar to rotate on the surface of the fixed bar during the back and forth movement.
[0016] When the push plate is pulled forward, the groove pushes the gear one to rotate clockwise, which in turn drives the sprocket to rotate clockwise. When the push plate is pushed backward, the groove pushes the gear one to rotate counterclockwise.
[0017] When the chain moves clockwise, it can push the pusher block from the feeding area to the pressing area through the second placement plate. Conversely, when the chain moves counterclockwise, the pusher block moves from the pressing area to the feeding area.
[0018] The second slide is located between the support plate and the first slot. When the back of the pressure plate is in contact with the front of the limit block, the pressure plate will apply downward pressure to the trigger switch.
[0019] Preferably, the pressing module is used to press the product. The pressing module includes baffles symmetrically installed on the top of the processing table. The front of the two sets of baffles is fixed with mounting plates by bolts. The front of the mounting plates is connected to a cylinder, and the cylinder is electrically connected to a trigger switch. A pressure block is installed at the output end of the cylinder. The baffle is located behind the connecting plate. A flow guide plate is installed on the back of the processing table and is located in the middle of the two sets of baffles. The longitudinal section of the flow guide plate has a U-shaped structure.
[0020] Preferably, a connecting plate two is installed on the front of the push plate, and a pull ring is installed on the front of the connecting plate two. The pull ring is used to push the push plate to move. The bottom wall of the connecting plate one is placed with the slider product body, and the front and side outer walls of the slider product body are in contact with the inner surface of the card plate.
[0021] Preferably, a telescopic rod is installed at the bottom of the processing table, and the output end of the telescopic rod is connected to the bottom of the connecting plate two. An infrared ranging sensor is embedded in the front wall of the card plate, and the infrared ranging sensor is used to detect whether the slider product body is placed in the card plate, and to activate the telescopic rod to push the slider product body to move.
[0022] Preferably, the method of using the slider pressing device is as follows:
[0023] S1. Before using the slider pressing equipment, first place the slider product body to be pressed on the connecting plate one according to the usage needs, and limit the slider product body by using the clamping plate.
[0024] S2. During the movement of the push plate, the slider product body can be pushed from the material feeding area at the front end of the connecting plate to the material pressing area at the rear end by the clamping plate. During the movement of the slider product body, the slider product body will apply downward pressure to the push block, so that the push block can retract into the slide groove three under the action of the spring and shaft. After the slider product body moves away, the push block pops out from the slide groove three.
[0025] S3. When the push plate moves to the end, the pressure plate will move accordingly and fit with the limit block on the support plate, so that the pressure plate can apply downward pressure to the trigger switch. At this time, the cylinder is activated, and then the pressure block can be driven to move downward, so that the pressure block can perform a pressing operation on the slider product body placed in the pressing area.
[0026] S4. After pressing is completed, the worker pulls the pull ring forward, which moves the push plate forward. Then, the gear rotates clockwise, allowing the pusher block to move towards the pressing area under the action of the chain. When the push plate is pulled to the front end, the pusher block can push the slider product body into the guide plate and slide out through the guide plate under the action of gravity, improving the convenience of material discharge.
[0027] Preferably, step S1 further includes the following steps:
[0028] S11. Then push the pull ring, and then under the action of the connecting plate two, drive the push plate to move in the slot one, so that the connecting block can move backward. Then the stop rod will be at the front end of the slide groove one on the connecting block, and move in the slide groove two as the connecting block is pushed, so that the stop rod can push the limit rod to rotate on the surface of the fixed rod. When the push plate moves to the end, the limit rod rotates ninety degrees.
[0029] Step S2 further includes the following steps:
[0030] S21. At the same time, as the push plate moves backward, the placement plate moves backward as well, which in turn drives the gear to rotate counterclockwise, so that the sprocket can also rotate counterclockwise under the action of the connecting rod. Then, under the action of the chain, the placement plate moves forward in the slot 2, so that the push block can be located in the discharge area when the slider product body moves to the pressing area.
[0031] Compared with the prior art, the beneficial effects of the present invention are:
[0032] 1. This invention comprises a processing table, a slot 1, a push plate, a clamping plate, a connecting block, a fixing rod, a limiting rod, a slide groove 1, and a stop rod. When using this slider pressing equipment, the slider product body to be pressed is first placed in the connecting plate 1 according to the usage requirements, and the clamping plate limits the slider product body. Then, the worker pushes the pull ring, which moves the push plate in the slot 1. Then, the connecting block moves the stop rod in slide groove 1 and slide groove 2. When the push plate moves to the last end, the limiting rod rotates 90 degrees on the surface of the fixing rod, so that the limiting rod can limit the slider product body. Then, the slider product body can be pressed, thereby improving the pressing efficiency to a certain extent.
[0033] 2. The present invention, by installing a sliding groove three, a groove, a gear one, a sliding groove four, a sprocket and a chain, can drive the placement plate one to move along with the push plate during the movement of the push plate. This allows the gear one to rotate in different directions as the placement plate one moves back and forth. The connecting rod drives the sprocket to rotate in the same direction as the gear one, which in turn drives the chain to move. This allows the synchronous belt misalignment module to drive the pusher misalignment module to move in the opposite direction to the push plate.
[0034] 3. The present invention, by installing a second placement plate, a pusher block and a second slot, can move the second placement plate in the second slot during the movement of the chain driven by the sprocket, and move the pusher block in the third slide groove. This allows the pressed slider product body to be pushed out by the pusher block after pressing, thereby improving the convenience of unloading to a certain extent.
[0035] 4. This invention, by installing a lever trigger module, a pressure plate, a trigger switch, a limit block, and a support plate, allows the pressure plate to move along with the push plate when it reaches its end, and to engage with the limit block on the support plate. This enables the pressure plate to apply downward pressure to the trigger switch, activating the cylinder and driving the pressure block downward. This allows the pressure block to press the slider product body placed in the pressing area, increasing the pressing speed of a single product and reducing operational risks. Attached Figure Description
[0036] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0037] Figure 2 This is a top view of the present invention;
[0038] Figure 3 This is a schematic diagram of the assembly structure of the push-pull stop module of the present invention;
[0039] Figure 4 This is a bottom plan view of the present invention;
[0040] Figure 5This is a plan view of the present invention;
[0041] Figure 6 This is a schematic diagram of the planar assembly structure of the stop bar and the limiting bar of the present invention;
[0042] Figure 7 This is a schematic diagram of the planar assembly structure of the storage plate and the gear of the present invention;
[0043] Figure 8 This is a schematic diagram of the assembly structure of the electrically driven slider of the present invention;
[0044] Figure 9 This is a flowchart of the process of the present invention.
[0045] In the diagram: 1. Processing table; 2. Connecting plate one; 3. Slot one; 4. Push plate; 5. Clamping plate; 6. Connecting block; 7. Fixing rod; 8. Limiting rod; 9. Slide one; 10. Stop bar; 11. Slide two; 12. Connecting plate two; 13. Pull ring; 14. Main body of the slider product; 15. Slide three; 16. Shelf one; 17. Groove; 18. Gear one; 19. Slide four; 20. Connecting rod; 21. Sprocket; 22. Chain; 23. Shelf two; 24. Pushing block; 25. Slot two; 26. Lever trigger module; 27. Pressure plate; 28. Trigger switch; 29. Limiting block; 30. Support plate; 31. Baffle; 32. Cylinder; 33. Pressure block; 34. Drain plate; 35. Shelf three; 36. Laser rangefinder sensor; 37. Infrared rangefinder sensor; 38. Telescopic rod. Detailed Implementation
[0046] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0047] In the description of this invention, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0048] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0049] Please see Figure 1 , Figure 2 , Figure 3 , Figure 6 and Figure 9 This invention provides an embodiment of a pressing device for producing guide rail sliders with high pressing efficiency, comprising a processing table 1 and a slider product body 14. A connecting plate 2 is installed on the top of the processing table 1, and a push-pull blocking module is installed on the top of the processing table 1. The push-pull blocking module is used to push the product from the feeding area to the pressing area. The push-pull blocking module includes a slot 3 set on the top of the processing table 1, and the slot 3 is located on one side of the connecting plate 2. A push plate 4 is slidably installed inside the slot 3. A clamping plate 5 is installed on the top of the push plate 4, and the clamping plate 5 has a U-shaped structure. The bottom of the clamping plate 5 is in contact with the top of the connecting plate 2. A connecting block 6 is installed on the back of the push plate 4, and the connecting block 6 has an L-shaped structure. A fixing rod 7 is installed on the top of the connecting plate 2. A limit rod 8 is sleeved on the outer surface of the fixing rod 7. The two ends of the limit rod 8 are connected in an obtuse-angled triangular shape. The top of both the limiting rod 8 and the connecting block 6 is provided with a sliding groove 9. A stop rod 10 is slidably installed inside the sliding groove 9. The top of the processing table 1 is provided with a sliding groove 11. The connecting plate 2 has a U-shaped structure. The longitudinal section of the stop rod 10 has an I-shaped structure. The top wall of the stop rod 10 is in contact with the top of the limiting rod 8. The bottom outer surface of the stop rod 10 is located inside the sliding groove 11. The sliding groove 11 and the sliding groove 9 on the connecting block 6 are on the same horizontal plane. When the connecting block 6 moves back and forth, it drives the limiting rod 8 to rotate on the surface of the fixed rod 7. The front of the push plate 4 is provided with a connecting plate 12. The front of the connecting plate 12 is provided with a pull ring 13, which is used to push the push plate 4 to move. The bottom wall of the connecting plate 2 is provided with a slider product body 14. The front and side outer walls of the slider product body 14 are in contact with the inner surface of the card plate 5.
[0050] Furthermore, when using this slider pressing equipment, the slider product body 14 is first placed in the connecting plate 1 2 and limited by the clamping plate 5. Then, the worker pushes the pull ring 13, and under the action of the connecting plate 2 12, the push plate 4 moves in the clamping groove 1 3, so that the connecting block 6 can move backward. Then, the stop rod 10 will be located at the front end of the sliding groove 1 9 on the connecting block 6, and the stop rod 10 will move in the sliding groove 2 11 as the connecting block 6 is pushed. During the movement of the connecting block 6, the stop rod 10 can push the limiting rod 8 to rotate on the surface of the fixed rod 7. When the push plate 4 moves to the end, the limiting rod 8 rotates 90 degrees and limits the slider product body 14 that has reached the pressing area, thereby improving the pressing stability, reducing the tedious actions of product picking and pressing, greatly reducing the operation time, and improving the pressing efficiency of the product.
[0051] Please see Figure 4 and Figure 7One embodiment of the present invention provides a pressing device for producing guide rail sliders with high pressing efficiency, comprising a slide groove 15, a slot 25, and a guide plate 34. A synchronous belt misalignment module and a pusher misalignment module are installed at the bottom of the processing table 1. The synchronous belt misalignment module is used to drive the pusher misalignment module to move. The synchronous belt misalignment module includes a placement plate 16 welded to the inner wall of one side of the pusher plate 4. A uniformly arranged groove 17 is provided on the outer wall of one side of the placement plate 16. Gears 18 are meshed inside the grooves 17. A sliding groove 19 is provided through the bottom wall of the push plate 4. Connecting rods 20 are installed at the bottom of both the gear 18 and the processing table 1. The connecting rods 20 at the bottom of the gear 18 are located inside the sliding groove 19. A sprocket 21 is installed at the bottom end of both sets of connecting rods 20. A chain 22 is meshed with the outer surfaces of the two sets of sprockets 21. When the push plate 4 is pulled forward, the groove 17 pushes the gear 18 to rotate clockwise, which drives the sprocket 21 to rotate clockwise. When the push plate 4 is pushed backward, the groove 17 pushes the gear 18 to rotate counterclockwise. The pusher misalignment module is used to push out the pressed product. The pusher misalignment module includes a slide groove 3 15 that runs through the bottom wall of the connecting plate 1 2 and the top of the processing table 1. The bottom of the processing table 1 is provided with a slot 25, which is located between the slide groove 4 19 and the slide groove 3 15. A placement plate 23 is slidably installed inside the slot 25, and one outer wall of the placement plate 23 is connected to the outer surface of the chain 22. A pusher block 24 is installed on the top of the placement plate 23 through a shaft, and the pusher block 24 is located in the slide groove. Inside the third 15, the pusher block 24 is inclined. A spring is installed at the bottom of the pusher block 24, and the bottom end of the spring is connected to the top of the second placement plate 23. When the chain 22 moves clockwise, it can push the pusher block 24 from the feeding area to the pressing area through the second placement plate 23. Conversely, when the chain 22 moves counterclockwise, the pusher block 24 moves from the pressing area to the feeding area. A guide plate 34 is installed on the back of the processing table 1, and the guide plate 34 is located in the middle of the two sets of baffles 31. The longitudinal section of the guide plate 34 has a "U" shaped structure.
[0052] Furthermore, during the backward movement of the push plate 4, the gear 18 meshes with the groove 17, causing the gear 18 to rotate counterclockwise. This causes the connecting rod 20 to rotate the sprocket 21 counterclockwise. Then, the chain 22 drives the second placement plate 23 to move forward within the second slot 25. When the push block 24 encounters the slider product body 14, the push plate 4 pushes the slider product body 14 to press the push block 24, causing the push block 24 to press down on the spring and retract into the third slide groove. Inside the slide 15, when the push plate 4 moves to the rearmost position, the pusher block 24 can also move to the frontmost position of the slide 15, so that the pusher block 24 can move in the opposite direction to the push plate 4 under the action of the synchronous belt misalignment module. After the pressing is completed, the pull ring 13 is pulled forward, which drives the push plate 4 to move forward. Then, the pusher block 24 can move backward, so that the pusher block 24 can push the pressed slider product body 14 into the guide plate 34, thereby improving the convenience of unloading to a certain extent.
[0053] Please see Figure 5 This invention provides an embodiment of a pressing device for producing guide rail sliders with high pressing efficiency, comprising a lever trigger module 26 and a pressure block 33. The lever trigger module 26 and the pressing module are mounted on the top of the processing table 1, with the pressing module located behind the lever trigger module 26. The lever trigger module 26 is used to activate the pressing module. The lever trigger module 26 includes a pressure plate 27 mounted on the outer wall of one side of the push plate 4. A storage groove is provided on one side of the outer wall of the processing table 1. A support plate is mounted on the bottom of the processing table 1, located in front of the chain 22. A trigger switch 28 is mounted on one side of the outer wall of the support plate, located within the storage groove. A support plate 30 is mounted on the top of the processing table 1, located behind the storage groove. A limit block 2 is mounted on the front of the support plate 30. 9. A shelf 35 is installed on the back of the processing table 1. A laser rangefinder 36 is installed on the front of the shelf 35 to measure the distance from itself to the connecting block 6. The laser rangefinder 36 is electrically connected to the trigger switch 28. The slide 21 is located between the support plate 30 and the slot 13. When the back of the pressure plate 27 is in contact with the front of the limit block 29, the pressure plate 27 will apply downward pressure to the trigger switch 28. The pressing module is used to press the product. The pressing module includes baffles 31 symmetrically installed on the top of the processing table 1. The front of the two sets of baffles 31 is fixed with mounting plates by bolts. The front of the mounting plates is connected to cylinders 32, and cylinders 32 are electrically connected to the trigger switch 28. A pressure block 33 is installed at the output end of cylinders 32. The baffles 31 are located behind the connecting plate 12.
[0054] Furthermore, during the movement of the push plate 4, the pressure plate 27 moves accordingly. At this time, the distance between itself and the connecting block 6 can be detected by the laser range sensor 36 on the placement plate 35. When the push plate 4 moves to the last end, the distance between the laser range sensor 36 and the connecting block 6 is the shortest. At this time, the pressure plate 27 will fit against the limit block 29 on the support plate 30, so that the pressure plate 27 can apply downward pressure to the trigger switch 28. Then the cylinder 32 is activated, which can drive the pressure block 33 to move downward, so that the pressure block 33 can perform a pressing operation on the slider product body 14 placed in the pressing area. This can reduce the risk during operation to a certain extent. Conversely, when the laser range sensor 36 does not detect that the distance between itself and the connecting block 6 is the shortest, but the trigger switch 28 responds, the cylinder 32 will not be activated. Similarly, when the distance between the laser range sensor 36 and the connecting block 6 is the shortest, but the trigger switch 28 does not respond, the cylinder 32 will also not be activated and will issue a fault alarm message to remind relevant personnel to perform maintenance.
[0055] Please see Figure 8 An embodiment of the present invention provides a pressing device for producing guide rail sliders with high pressing efficiency, comprising an electrically driven slider product body 14, a telescopic rod 38 installed at the bottom of the processing table 1, and the output end of the telescopic rod 38 being connected to the bottom of the connecting plate 2 12, and an infrared ranging sensor 37 embedded in the front wall of the clamping plate 5, the infrared ranging sensor 37 being used to detect whether the slider product body 14 is placed in the clamping plate 5, and to activate the telescopic rod 38 to push the slider product body 14 to move.
[0056] Furthermore, when using the clamping plate 5 to push the slider product body 14, the infrared ranging sensor 37 can detect whether the slider product body 14 is placed in the clamping plate 5. The telescopic rod 38 at the bottom of the processing table 1 is connected to the bottom of the connecting plate 2 12. Then, when the infrared ranging sensor 37 detects that the slider product body 14 is placed in the clamping plate 5, the telescopic rod 38 is activated. Then, the connecting plate 2 12 can push the connecting block 6 to move the clamping plate 5 until the slider product body 14 is pushed to the pressing area.
[0057] Furthermore, the method of using this slider pressing device is as follows:
[0058] S1. Before using the slider pressing equipment, first place the slider product body 14 to be pressed on the connecting plate 2 according to the usage requirements, and limit the slider product body 14 by the clamping plate 5.
[0059] S2. During the movement of the push plate 4, the slider product body 14 can be pushed from the material feeding area at the front end of the connecting plate 12 to the material pressing area at the rear end through the clamping plate 5. During the movement of the slider product body 14, the slider product body 14 will apply downward pressure to the push block 24, so that the push block 24 can retract into the slide groove 3 15 under the action of the spring and the shaft. After the slider product body 14 is moved away, the push block 24 pops out from the slide groove 3 15.
[0060] S3. When the push plate 4 moves to the end, the pressure plate 27 will move accordingly and fit with the limit block 29 on the support plate 30, so that the pressure plate 27 can apply downward pressure to the trigger switch 28. At this time, the cylinder 32 is started, and then it can drive the pressure block 33 to move downward, so that the pressure block 33 can perform a pressing operation on the slider product body 14 placed in the pressing area.
[0061] S4. After pressing is completed, the worker pulls the pull ring 13 forward, which drives the push plate 4 to move forward. Then, it drives the gear 18 to rotate clockwise, so that the push block 24 can move towards the pressing area under the action of the chain 22. When the push plate 4 is pulled to the front end, the push block 24 can push the slider product body 14 to move into the guide plate 34 and slide out through the guide plate 34 under the action of gravity, improving the convenience of material discharge.
[0062] Step S1 also includes the following steps:
[0063] S11. Then push the pull ring 13, and then drive the push plate 4 to move in the slot 3 under the action of the connecting plate 2 12, so that the connecting block 6 can move backward. Then the stop rod 10 will be located at the front end of the slide groove 9 on the connecting block 6, and move in the slide groove 2 11 as the connecting block 6 is pushed, so that the stop rod 10 can push the limit rod 8 to rotate on the surface of the fixed rod 7. When the push plate 4 moves to the end, the limit rod 8 rotates ninety degrees.
[0064] Step S2 also includes the following steps:
[0065] S21. At the same time, as the push plate 4 moves backward, the placement plate 16 will move backward as well, which will drive the gear 18 to rotate counterclockwise, so that the sprocket 21 can also rotate counterclockwise under the action of the connecting rod 20. Then, under the action of the chain 22, the placement plate 23 can move forward in the slot 25, so that the push block 24 can be located in the discharge area when the slider product body 14 moves to the pressing area.
[0066] Working principle: Before using the slider pressing device, the slider product body 14 placed in the connecting plate 2 is first limited by the clamping plate 5. Then, the pull ring 13 is pushed to drive the push plate 4 to move in the slot 3, so that the connecting block 6 can move backward. During the movement of the push plate 4, the slider product body 14 can be pushed from the material feeding area at the front end of the connecting plate 2 to the material pressing area at the rear end by the clamping plate 5. When the push plate 4 moves to the end, the pressure plate 27 will apply downward pressure to the trigger switch 28. At the same time, the stop rod 10 can push the limit rod 8 to rotate 90 degrees on the surface of the fixed rod 7, so that the limit rod 8 can limit the slider product body 14. At this time, the cylinder 32 is started, driving the pressing block 33 to move downward, so that the pressing block 33 can perform the pressing operation on the slider product body 14 placed in the pressing area.
[0067] After pressing is completed, the worker pulls the pull ring 13 forward, which moves the push plate 4 forward and drives the gear 18 to rotate clockwise. This allows the pusher block 24 to move towards the pressing area under the action of the chain 22. When the push plate 4 is pulled to the front end, the pusher block 24 can push the slider product body 14 to move into the guide plate 34 and slide out through the guide plate 34 under the action of gravity, improving the convenience of material discharge.
[0068] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A pressing device for producing guide rail sliders with high pressing efficiency, comprising a processing table (1), characterized in that: The top of the processing table (1) is equipped with a connecting plate (2), and the top of the processing table (1) is equipped with a push-pull material blocking module. The push-pull material blocking module is used to push the product from the feeding area to the pressing area. The push-pull material blocking module includes a slot (3) set on the top of the processing table (1), and the slot (3) is located on one side of the connecting plate (2). A push plate (4) is slidably installed inside the slot (3). A card plate (5) is installed on the top of the push plate (4), and the card plate (5) has a U-shaped structure. The bottom of the card plate (5) is in contact with the top of the connecting plate (2). A connecting block (6) is installed on the back of the push plate (4), and the connecting block (6) has an L-shaped structure. A fixing rod (7) is installed on the top of the connecting plate (2). A limiting rod (8) is sleeved on the outer surface of the fixing rod (7). The two ends of the limiting rod (8) are connected to form an obtuse triangle shape. A sliding groove (9) is provided through the top of both the limiting rod (8) and the connecting block (6). A stop bar (10) is slidably installed inside the first slide groove (9), and a second slide groove (11) is provided through the top of the processing table (1). The bottom of the processing table (1) is equipped with a synchronous belt misalignment module and a pusher misalignment module. The synchronous belt misalignment module is used to drive the pusher misalignment module to move. The synchronous belt misalignment module includes a placement plate (16) welded to the inner wall of one side of the push plate (4). A groove (17) is evenly arranged on the outer wall of one side of the placement plate (16). A gear (18) is meshed inside the groove (17). A slide groove (19) is provided through the bottom wall of the push plate (4). A connecting rod (20) is installed at the bottom of the gear (18) and the bottom of the processing table (1). The connecting rod (20) at the bottom of the gear (18) is located inside the slide groove (19). A sprocket (21) is installed at the bottom of both sets of connecting rods (20). A chain (22) is meshed on the outer surface of the two sets of sprockets (21). The pusher misalignment module is used to push out the pressed product. The pusher misalignment module includes a slide groove three (15) that runs through the bottom wall of the connecting plate one (2) and the top of the processing table (1). The bottom of the processing table (1) is provided with a slot two (25), and the slot two (25) is located in the middle of the slide groove four (19) and the slide groove three (15). The slot two (23) is slidably installed inside the slot two (25), and one side of the outer wall of the slot two (23) is connected to the outer surface of the chain (22). The top of the slot two (23) is installed with a pusher block (24) through a shaft, and the pusher block (24) is located inside the slide groove three (15). The pusher block (24) is inclined, and the bottom of the pusher block (24) is installed with a spring, and the bottom end of the spring is connected to the top of the slot two (23).
2. The pressing equipment for producing guide rail sliders with high pressing efficiency according to claim 1, characterized in that: The top of the processing table (1) is equipped with a lever trigger module (26) and a pressing module, and the pressing module is located behind the lever trigger module (26). The lever trigger module (26) is used to activate the pressing module. The lever trigger module (26) includes a pressure plate (27) installed on the outer wall of one side of the push plate (4). A storage groove is provided on one side of the outer wall of the processing table (1). A support plate is installed at the bottom of the processing table (1), and the support plate is located in front of the chain (22). A trigger switch is installed on one side of the outer wall of the support plate. (28), and the trigger switch (28) is located in the storage slot. A support plate (30) is installed on the top of the processing table (1), and the support plate (30) is located behind the storage slot. A limit block (29) is installed on the front of the support plate (30). A storage plate three (35) is installed on the back of the processing table (1). A laser range sensor (36) is installed on the front of the storage plate three (35) to measure the distance from itself to the connecting block (6). The laser range sensor (36) and the trigger switch (28) are electrically connected.
3. The pressing equipment for producing guide rail sliders with high pressing efficiency according to claim 1, characterized in that: The connecting plate (2) has a U-shaped structure, the longitudinal section of the stop rod (10) has an I-shaped structure, the top wall of the stop rod (10) is in contact with the top of the limiting rod (8), the bottom outer surface of the stop rod (10) is located inside the sliding groove (11), the sliding groove (11) and the sliding groove (9) on the connecting block (6) are on the same horizontal plane, and the connecting block (6) drives the limiting rod (8) to rotate on the surface of the fixed rod (7) during the back and forth movement. When the push plate (4) is pulled forward, the groove (17) pushes the gear (18) to rotate clockwise, which drives the sprocket (21) to rotate clockwise. When the push plate (4) is pushed backward, the groove (17) pushes the gear (18) to rotate counterclockwise. When the chain (22) moves clockwise, it can push the pusher block (24) from the feeding area to the pressing area through the second placement plate (23). Conversely, when the chain (22) moves counterclockwise, the pusher block (24) moves from the pressing area to the feeding area. The second slide (11) is located between the support plate (30) and the first slot (3). When the back of the pressure plate (27) is in contact with the front of the limit block (29), the pressure plate (27) will apply downward pressure to the trigger switch (28).
4. The pressing equipment for producing guide rail sliders with high pressing efficiency according to claim 2, characterized in that: The pressing module is used to press the product. The pressing module includes baffles (31) symmetrically installed on the top of the processing table (1). The front of the two sets of baffles (31) is fixed with mounting plates by bolts. The front of the mounting plates is connected to cylinders (32), and the cylinders (32) are electrically connected to trigger switches (28). The output end of the cylinders (32) is equipped with pressure blocks (33). The baffles (31) are located behind the connecting plate (2). The back of the processing table (1) is equipped with a flow guide plate (34), and the flow guide plate (34) is located in the middle of the two sets of baffles (31). The longitudinal section of the flow guide plate (34) is in the shape of a "U".
5. The pressing equipment for producing guide rail sliders with high pressing efficiency according to claim 1, characterized in that: The push plate (4) is equipped with a connecting plate two (12) on its front side. A pull ring (13) is installed on the front side of the connecting plate two (12), and the pull ring (13) is used to push the push plate (4) to move. The bottom wall of the connecting plate one (2) is placed with a slider product body (14), and the front and side outer walls of the slider product body (14) are in contact with the inner surface of the card plate (5).
6. The pressing equipment for producing guide rail sliders with high pressing efficiency according to claim 1, characterized in that: The bottom of the processing table (1) is equipped with a telescopic rod (38), and the output end of the telescopic rod (38) is connected to the bottom of the connecting plate (12). An infrared distance sensor (37) is embedded in the front wall of the card plate (5), and the infrared distance sensor (37) is used to detect whether the slider product body (14) is placed in the card plate (5) and to activate the telescopic rod (38) to push the slider product body (14) to move.
7. A method of using a pressing device for producing guide rail sliders with high pressing efficiency according to any one of claims 1-6, characterized in that, The operating method of this slider pressing equipment is as follows: S1. Before using the slider pressing equipment, first place the slider product body (14) to be pressed on the connecting plate (2) according to the usage requirements, and limit the slider product body (14) by the clamping plate (5); S2. During the movement of the push plate (4), the slider product body (14) can be pushed by the clamping plate (5) to move from the material feeding area at the front end of the connecting plate (2) to the material pressing area at the rear end. During the movement of the slider product body (14), the slider product body (14) will apply downward pressure to the push block (24), so that the push block (24) can retract into the slide groove three (15) under the action of the spring and the shaft. After the slider product body (14) is removed, the push block (24) pops out from the slide groove three (15). S3. When the push plate (4) moves to the end, the pressure plate (27) will move accordingly and fit against the limit block (29) on the support plate (30), so that the pressure plate (27) can apply downward pressure to the trigger switch (28). At this time, the cylinder (32) is started, and then it can drive the pressure block (33) to move downward, so that the pressure block (33) can perform a pressing operation on the slider product body (14) placed in the pressing area. S4. After pressing is completed, the worker pulls the pull ring (13) forward, which drives the push plate (4) to move forward. Then, it can drive the gear (18) to rotate clockwise, so that the push block (24) can move towards the pressing area under the action of the chain (22). When the push plate (4) is pulled to the front end, the push block (24) can push the slider product body (14) to move into the guide plate (34) and slide out through the guide plate (34) under the action of gravity, which improves the convenience of material discharge.
8. The method of using the pressing equipment for producing guide rail sliders with high pressing efficiency according to claim 7, characterized in that, Step S1 further includes the following steps: S11. Then push the pull ring (13), and then under the action of the connecting plate two (12), drive the push plate (4) to move in the slot one (3), so that the connecting block (6) can move backward. Then the stop rod (10) will be located at the front end of the slide groove one (9) on the connecting block (6), and move in the slide groove two (11) as the connecting block (6) is pushed, so that the stop rod (10) can push the limit rod (8) to rotate on the surface of the fixed rod (7). When the push plate (4) moves to the end, the limit rod (8) rotates ninety degrees. Step S2 further includes the following steps: S21. At the same time, as the push plate (4) moves backward, the first placement plate (16) will move backward as well, which will drive the first gear (18) to rotate counterclockwise, so that the sprocket (21) can also rotate counterclockwise under the action of the connecting rod (20), and then the second placement plate (23) can move forward in the second slot (25) under the action of the chain (22), so that the push block (24) can be located in the discharge area when the slider product body (14) moves to the pressing area.
Citation Information
Patent Citations
Press fit device
CN206122602U
Press fit device
CN208162458U
Pressing device
CN216966880U
LED module screw press fitting device
KR1020200135144A
Refrigerator cover plate pressing device
CN215791917U