Batch transfer device for stamping parts
The transfer device adjusts to accommodate parts of varying sizes using a dual motor-driven mechanism and locking mechanisms, enhancing efficiency and security during transport.
Patent Information
- Application Number
- CN202422198240.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-09
AI Technical Summary
In the prior art, the transport space of the flatbed truck is of a fixed size, and stamping parts of different sizes cannot be transported according to production needs, resulting in low transport efficiency, which is not conducive to long-term use and promotion.
A stamping parts mass transfer device is designed, which drives the screw to move the slider and the U-shaped frame through a bidirectional motor, expands the storage space, and limits the stamping parts of different sizes and heights through structures such as limit columns, slots and fixed columns to ensure stability during transportation.
The transport of stamped parts that are adapted to different sizes and heights is achieved, which improves the transport efficiency, prevents stamped parts from falling during transportation, and improves the flexibility and efficiency of the device.
Smart Images

Figure CN223100754U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of stamping part transportation, in particular to a device for batch transportation of stamping parts. Background Technique
[0002] Automobile stamping parts are metal stamping parts that make up automobile components. Among automobile stamping parts, some directly become automobile components after stamping, and some need to go through processes such as welding, machining, or painting after stamping before becoming automobile components. When moving automobile stamping parts to the next process, transfer tools such as flatbed trucks are needed to transport the workpieces.
[0003] For example, Chinese Patent Publication No. CN215097693U includes a shipping device body, and a movable protection door is connected to the outer surface of the shipping device body, and a support mechanism is connected to the shipping device body. The above-mentioned published document aims to fix the position of the fixed shipping device when loading and unloading stamping parts to avoid the problem that the device displacement is not convenient for workers to borrow force to disassemble stamping parts. However, when this patent is in use, since the transfer space of the flatbed truck is of a fixed size and cannot transport stamping parts of different sizes according to production requirements, the transfer efficiency is low, which is not conducive to long-term use and promotion. For this reason, technical personnel in this field have provided a device for batch transportation of stamping parts to solve the problems raised in the above background technique. Content of the Utility Model
[0004] Aiming at the deficiencies of the prior art, the utility model provides a device for batch transportation of stamping parts, which solves the problems raised in the above background technique that since the transfer space of the flatbed truck is of a fixed size and cannot transport stamping parts of different sizes according to production requirements, the transfer efficiency is low, which is not conducive to long-term use and promotion.
[0005] To achieve the above purposes, the utility model is realized through the following technical solutions: A device for batch transportation of stamping parts includes a base, first side plates are provided at both ends of the outer top of the base, and baffles are provided on the outer top of the first side plates in a vertical equal-spacing manner. At the same time, a pressing component is arranged on the top of the inner side wall corresponding to the baffle.
[0006] Second side plates are provided on the outer side walls on both sides of the base, and through first slots are opened at both ends of the outer top of the two second side plates. A limiting column is clamped on the outer top of the first slot and located on the outer top of the second side plate. At the same time, connecting columns are provided on the outer top of the limiting column in a vertical equal-spacing manner. A driving component capable of simultaneously pushing the first side plate and the second side plate to move relatively is arranged inside the base.
[0007] As a further technical solution of the present utility model, the driving assembly includes a bidirectional motor fixedly installed at the middle position of the inner bottom surface of the base. Both output ends of the bidirectional motor are fixedly installed with lead screws. The opposite ends of the two lead screws are respectively rotatably connected to the inner side walls of both sides of the base. At the same time, sliders are threadedly sleeved on the outer peripheral surfaces of the two lead screws. Through holes are symmetrically formed at both ends of the outer top of the base. The outer tops of the two sliders are fixedly installed with U-shaped frames. At the same time, both ends of the two groups of U-shaped frames extend along the through holes to the outer top of the base and are fixedly connected to the outer bottoms of the two first side plates. The corresponding inner side walls of the two second side plates are slidably connected to the connecting blocks fixedly installed at both ends of the inner bottom surface of the base through guide rods.
[0008] As a further technical solution of the present utility model, second chutes are formed at both ends of the inner bottom surface of the base. A cross plate is slidably connected in the inner sides of the two groups of second chutes. One outer side wall of the two cross plates is fixedly connected to one end of the guide rod. At the same time, first ear plates are symmetrically installed on the other outer side walls of the two cross plates. Second ear plates are fixedly installed on both outer side walls of the two sliders. The first ear plates and the second ear plates are rotatably connected to each other through a connecting plate.
[0009] As a further technical solution of the present utility model, second card slots are formed at both ends of the outer top of the two first side plates. A fixing column that matches the second card slot is fixedly installed on the outer bottom of the baffle. At the same time, the fixing column is fixedly inserted into the inner side of the second card slot. Secondly, a fixing groove that matches the fixing column is formed on the outer top of the baffle.
[0010] As a further technical solution of the present utility model, a first card hole is formed on the outer top of the limiting column. A clamping column that matches the first card hole is fixedly installed on the outer bottom of the connecting column. At the same time, the clamping column is fixedly inserted into the inner side of the first card hole. Secondly, a second card hole that matches the clamping column is formed on the outer top of the connecting column.
[0011] As a further technical solution of the present utility model, the pressing assembly includes a mounting plate fixedly installed on the inner side wall of the baffle. Pressing plates are arranged at the outer bottoms of the two mounting plates. A threaded rod is fixedly installed at the middle position of the outer tops of the two pressing plates through a rotating sleeve. At the same time, sliding rods are fixedly installed on the outer tops of the two pressing plates and at the outer two ends of the two threaded rods. One ends of the threaded rod and the sliding rod both penetrate through the mounting plate and extend to the outer top of the mounting plate.
[0012] The present utility model provides a stamping part batch transfer device, which has the following beneficial effects compared with the prior art:
[0013] 1. A batch transfer device for stamping parts. When in use, with the bidirectional motor set as the power source, it drives the screw rod to drive the slider to move back and forth, enabling the U-shaped frame to drive the first side plate to move relatively on the base. At the same time, synchronously through the connecting plate, it drives the cross plate to drive the second side plate to move relatively, thereby expanding the storage space for placing stamping parts on the base, so as to adapt to stamping parts of different sizes and improve the transfer efficiency of the device.
[0014] 2. A batch transfer device for stamping parts of this design limits and fixes the limit post and the baffle through the first card slot and the second card slot. Then, through the mutual cooperation of the fixed post and the fixed slot, as well as the clamping post and the second card hole, it can be added according to the height of different stamping parts and be limited and fixed during its transportation, thus preventing the stamping parts from falling during transportation and further improving the transfer efficiency of the device.
[0015] 3. A batch transfer device for stamping parts of this design drives the pressing plate to move downward through the threaded rod, so as to abut against the outer surface of the stamping part and extrude the stamping part, further improving the limit and fixing effect. Description of the Drawings
[0016] Figure 1 It is a three-dimensional structure schematic diagram of a batch transfer device for stamping parts;
[0017] Figure 2 It is a sectional three-dimensional structure schematic diagram of a batch transfer device for stamping parts;
[0018] Figure 3 It is a first three-dimensional structure decomposition schematic diagram of a batch transfer device for stamping parts;
[0019] Figure 4 It is a second three-dimensional structure decomposition schematic diagram of a batch transfer device for stamping parts.
[0020] In the figure: 1. Base; 2. First side plate; 3. Baffle; 4. Second side plate; 5. First card slot; 6. Limit post; 7. Connecting post; 8. Bidirectional motor; 9. Screw rod; 10. Slider; 11. First sliding groove; 12. U-shaped frame; 13. Guide rod; 14. Connecting block; 15. Second sliding groove; 16. Cross plate; 17. First ear plate; 18. Second ear plate; 19. Connecting plate; 20. Second card slot; 21. Fixed post; 22. Fixed slot; 23. First card hole; 24. Clamping post; 25. Second card hole; 26. Mounting plate; 27. Pressing plate; 28. Threaded rod; 29. Sliding rod. Detailed Embodiments
[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0022] Please refer to Figures 1-4 , the present invention provides a technical solution for a stamping part batch transfer device: including a base 1, first side plates 2 are provided at both ends of the outer top of the base 1, and baffles 3 are provided on the outer top of the first side plates 2 in a vertical and equally spaced manner. At the same time, a pressing component is arranged on the top of the inner side wall corresponding to the baffle 3. The pressing component includes a mounting plate 26 fixedly installed on the inner side wall of the baffle 3. Pressing plates 27 are provided at the outer bottoms of the two mounting plates 26. A threaded rod 28 is fixedly installed at the middle position of the outer tops of the two pressing plates 27 through a rotating sleeve. At the same time, sliding rods 29 are fixedly installed on the outer tops of the two pressing plates 27 and at the outer ends of the two threaded rods 28. One ends of the threaded rod 28 and the sliding rod 29 both penetrate through the mounting plate 26 and extend to the outer top of the mounting plate 26. By turning the threaded rod 28 to rotate inside the rotating sleeve, the pressing plate 27 is driven to move downward, so that the pressing plate 27 abuts against the outer surface of the stamping part, thereby extruding and fixing the stamping part to prevent the stamping part from slipping.
[0023] On the outer side walls of both sides of the base 1, there are second side plates 4. At both ends of the outer top of the two second side plates 4, there are through first card slots 5. Inside the first card slots 5 and on the outer top of the second side plates 4, there are snap-fit limit posts 6. At the outer top of the limit posts 6, there are connecting posts 7 arranged in a vertical and equally spaced manner. Inside the base 1, there is a driving assembly capable of simultaneously pushing the first side plate 2 and the second side plate 4 to move relatively. The driving assembly includes a bidirectional motor 8 fixedly installed at the middle position of the inner bottom surface of the base 1. At both output ends of the bidirectional motor 8, there are screw rods 9 fixedly installed. The opposite ends of the two screw rods 9 are respectively rotatably connected to the inner side walls of both sides of the base 1. At the outer peripheral surfaces of the two screw rods 9, there are sliding blocks 10 threadedly sleeved. At both ends of the outer top of the base 1, there are symmetrically arranged through first sliding grooves 11. At the outer top of the two sliding blocks 10, there is a U-shaped frame 12 fixedly installed. At the same time, the two ends of the two U-shaped frames 12 extend along the first sliding grooves 11 to the outer top of the base 1 and are fixedly connected to the outer bottom of the two first side plates 2. The corresponding inner side walls of the two second side plates 4 are slidably connected to the connecting blocks 14 fixedly installed at both ends of the inner bottom surface of the base 1 through guide rods 13. At both ends of the inner bottom surface of the base 1, there are second sliding grooves 15. Inside the two second sliding grooves 15, there is a cross plate 16 slidably connected. One side outer wall of the two cross plates 16 is fixedly connected to one end of the guide rod 13. At the same time, on the other side outer wall of the two cross plates 16, there are symmetrically installed first ear plates 17. At the two side outer walls of the two sliding blocks 10, there are second ear plates 18 fixedly installed. The first ear plates 17 and the second ear plates 18 are rotatably connected to each other through a connecting plate 19. By starting the bidirectional motor 8 to drive the screw rods 9 to drive the sliding blocks 10 to move back and forth when rotating, and then driving the U-shaped frame 12 to drive the first side plate 2 to move closer to or away from each other on the base 1 along the first sliding grooves 11, to limit and fix the outer side walls of two sides of the stamping part. And when the sliding blocks 10 move back and forth, the connecting plate 19 on the second ear plates 18 drives the first ear plates 17 to move, and then drives the cross plate 16 to move back and forth along the second sliding grooves 15, so that the cross plate 16 pushes the second side plate 4 to move back and forth on the outer side walls of both sides of the base 1 through the guide rod 13, to limit and fix the outer side walls of the other two sides of the stamping part. At the same time, it can expand the storage space of the stamping parts placed on the base 1, and can also adapt to stamping parts of different sizes, thereby improving the transfer efficiency of the device.
[0024] At both ends of the outer top of the two first side plates 2, second card slots 20 are opened, and a fixing post 21 that matches the second card slot 20 is fixedly installed on the outer bottom of the baffle 3. At the same time, the fixing post 21 is fixedly inserted into the inner side of the second card slot 20. Secondly, a fixing groove 22 that matches the fixing post 21 is opened on the outer top of the baffle 3. A first card hole 23 is opened on the outer top of the limit post 6, and a clamping post 24 that matches the first card hole 23 is fixedly installed on the outer bottom of the connecting post 7. At the same time, the clamping post 24 is fixedly inserted into the inner side of the first card hole 23. Secondly, a second card hole 25 that matches the clamping post 24 is opened on the outer top of the connecting post 7. After determining the number of stamping parts to be transported at one time according to production requirements, insert the fixing post 21 below the baffle 3 into the second card slot 20 for fixed connection. Then, the additional baffle 3 is fixed by inserting the fixing post 21 into the lower fixing groove 22. Fix multiple baffles 3 in this order in turn. At the same time, insert the clamping post 24 into the first card hole 23 so that the connecting post 7 is fixed on the limit post 6. Then, the additional connecting post 7 is fixed by inserting the clamping post 24 into the second card hole 25. Fix multiple connecting posts 7 in this order in turn. Thus, different-height stamping parts can be limited and fixed by multiple baffles 3 and connecting posts 7. The structure is simple and easy to use. When transported to the next processing location, remove the connecting post 7 and the limit post 6 in turn, and then take out the stamping parts.
[0025] The working principle of the present utility model is as follows: When in use, first place the stamping parts to be transported on the outer surface of the base 1 in turn. Then, according to the number of stamping parts, first adjust the number of baffles 3 and insert the fixing post 21 below the first baffle 3 into the second card slot 20 of the first side plate 2 for fixation. The subsequent additional baffles 3 are fixed by inserting them into the lower fixing groove 22 and fixed in this order in turn.
[0026] At the same time, fixedly insert the limit post 6 into the first card slot 5 on the second side plate 4 for fixation. Then, fixedly insert the clamping post 24 below the first connecting post 7 into the first card hole 23 on the limit post 6 for fixation. The subsequent additional connecting posts 7 are fixed by inserting the clamping post 24 into the lower second card hole 25 and fixed in this order in turn.
[0027] At the same time, start the bidirectional motor 8 to drive the lead screw 9 to drive the slider 10 to move back and forth when rotating, and then drive the U-shaped frame 12 to drive the first side plate 2 to move closer to or away from each other on the base 1 along the first chute 11, so as to limit and fix the outer side walls of two sides of the stamping part. And while the slider 10 moves back and forth, drive the first ear plate 17 to move through the connecting plate 19 on the second ear plate 18, and then drive the cross plate 16 to move back and forth along the second chute 15, so that the cross plate 16 pushes the second side plate 4 to move back and forth on the outer side walls on both sides of the base 1 through the guide rod 13, so as to limit and fix the outer side wall of the stamping part, and at the same time expand the storage space of the stamping parts placed on the base 1, so as to adapt to stamping parts of different sizes.
[0028] Secondly, turn the threaded rod 28 to rotate inside the rotating sleeve to drive the pressing plate 27 to move downward, so that the pressing plate 27 abuts against the outer surface of the stamping part, and then press and fix the stamping part.
[0029] Finally, when it is transported to the next processing location, remove the connecting column 7 and the limiting column 6 in sequence, and then the stamping part can be taken out.
[0030] The above is only the preferred embodiment of the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements and retouches can be made, and these improvements and retouches should also be regarded as the protection scope of the present utility model. The structures, devices and operation methods not specifically described and explained in the present utility model, unless otherwise specified and limited, are implemented according to the conventional means in the art.
Claims
1. A batch transfer device for stamping parts, characterized in that, It includes a base (1), on both ends of the outer top of the base (1), there are first side plates (2), and on the outer top of the first side plates (2), there are baffles (3) arranged in a vertical and equally spaced manner. At the same time, a pressing component is arranged on the top of the inner side wall corresponding to the baffle (3). On the outer side walls on both sides of the base (1), there are second side plates (4). At both ends of the outer top of the two second side plates (4), there are through first clamping grooves (5). And inside the first clamping grooves (5) and on the outer top of the second side plates (4), there are clamping columns (6) clamped. At the same time, on the outer top of the clamping columns (6), there are connecting columns (7) arranged in a vertical and equally spaced manner. Inside the base (1), there is a driving component that can simultaneously push the first side plates (2) and the second side plates (4) to move relatively.
2. The batch transfer device for stamping parts according to claim 1, characterized in that, The driving component includes a bidirectional motor (8) fixedly installed at the middle position of the inner bottom surface of the base (1). On both output ends of the bidirectional motor (8), there are screw rods (9) fixedly installed. The opposite ends of the two screw rods (9) are respectively rotationally connected to the inner side walls on both sides of the base (1). At the same time, on the outer peripheral surfaces of the two screw rods (9), there are sliders (10) threadedly sleeved. On both ends of the outer top of the base (1), there are symmetrically arranged through first sliding grooves (11). On the outer top of the two sliders (10), there are U-shaped frames (12) fixedly installed. At the same time, the two ends of the two groups of U-shaped frames (12) extend along the first sliding grooves (11) to the outer top of the base (1) and are fixedly connected to the outer bottoms of the two first side plates (2). The inner side walls corresponding to the two second side plates (4) are slidably connected to the connecting blocks (14) fixedly installed at both ends of the inner bottom surface of the base (1) through guide rods (13).
3. The batch transfer device for stamping parts according to claim 2, characterized in that, On both ends of the inner bottom surface of the base (1), there are second sliding grooves (15). Inside the two second sliding grooves (15), there is a cross plate (16) slidably connected. One side outer wall of the two cross plates (16) is fixedly connected to one end of the guide rod (13). At the same time, on the other side outer walls of the two cross plates (16), there are first ear plates (17) symmetrically installed. On the two side outer walls of the two sliders (10), there are second ear plates (18) fixedly installed. The first ear plates (17) and the second ear plates (18) are rotatably connected to each other through a connecting plate (19).
4. A batch transfer device for stamping parts according to claim 1, characterized in that, On both ends of the outer top of the two first side plates (2), there are second clamping grooves (20). And on the outer bottom of the baffle (3), there is a fixing column (21) fixedly installed that fits with the second clamping groove (20). At the same time, the fixing column (21) is fixedly inserted into the inside of the second clamping groove (20). Secondly, on the outer top of the baffle (3), there is a fixing groove (22) that fits with the fixing column (21).
5. A batch transfer device for stamping parts according to claim 1, characterized in that, A first clamping hole (23) is formed in the outer top of the limiting column (6), a clamping column (24) that matches the first clamping hole (23) is fixedly installed on the outer bottom of the connecting column (7), and at the same time, the clamping column (24) is fixedly inserted into the inner side of the first clamping hole (23). Secondly, a second clamping hole (25) that matches the clamping column (24) is formed in the outer top of the connecting column (7).
6. The batch transfer device for stamping parts according to claim 1, wherein, The pressing assembly includes a mounting plate (26) fixedly installed on the inner side wall of the baffle (3). A pressing plate (27) is provided at the outer bottom of the two mounting plates (26). A threaded rod (28) is fixedly installed through a rotating sleeve at the middle position of the outer top of the two pressing plates (27). At the same time, sliding rods (29) are fixedly installed at the outer top of the two pressing plates (27) and at the outer ends of the two threaded rods (28). One ends of the threaded rod (28) and the sliding rod (29) both penetrate through the mounting plate (26) and extend to the outer top of the mounting plate (26).