Rod-shaped body feeding and cutting all-in-one machine
By introducing fixed and movable clamping mechanisms, pressing mechanisms, and material collection and detection mechanisms into the rod-shaped feeding and cutting integrated machine, the problems of clamping stability and residual material monitoring have been solved, achieving efficient and stable rod-shaped cutting and screening, and improving product quality and production efficiency.
Patent Information
- Application Number
- CN202520317696.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-02-25
AI Technical Summary
Existing rod-shaped cutting devices suffer from low stability of the clamping mechanism during the feeding process, making it impossible to effectively monitor the length of the remaining material, resulting in unsatisfactory product quality and low production efficiency.
Design a rod-shaped material feeding and cutting integrated machine, including a fixed feeding clamping mechanism, a moving feeding clamping mechanism and a pressing mechanism, combined with a detection and collection mechanism, to achieve stable feeding, automatic screening and cutting of rod-shaped materials.
It improves the stability and precision of the rod-shaped cutting process, ensures product quality, reduces the generation of defective products, avoids equipment idling, and improves production efficiency.
Smart Images

Figure CN223776033U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of mechanical processing equipment, and relates to a rod-shaped body feeding and cutting device, specifically a rod-shaped body feeding and cutting integrated machine. Background Technology
[0002] Rods are a common raw material for processing metal parts. The cutting of metal rods is generally done by lathe or cutting machine. During the cutting process, the rods are mainly held by clamps and fed manually, which results in low work efficiency.
[0003] In the prior art, utility model patent with publication number CN203565981U discloses an automatic copper rod cutting machine, which consists of a cutting device, a feeding device, and a base plate. The cutting device consists of a support base, a motor, a belt, a saw blade seat, a saw blade, and a four-bar linkage mechanism, which is fixed on the saw blade seat. The feeding device consists of a fixed guide wheel, a movable guide wheel, a limit switch, and an adjusting bolt. The cutting device and the feeding device are fixed on the base plate. The motor drives the saw blade to rotate at high speed through the belt pulley, and the limit switch controls the feed amount of the rod to achieve automatic cutting.
[0004] This cutting device has achieved automated cutting and feeding to a certain extent, but there are still problems such as low stability of the clamping mechanism during the feeding process, some cut products not meeting the required length, affecting product quality, and the inability to monitor the length of the remaining rod-shaped material, which can lead to failure to feed in time, causing the machine to run idle and affecting production efficiency. Utility Model Content
[0005] The purpose of this invention is to overcome the technical problems in the prior art, such as the low stability of the clamping device and the inability to monitor the residual material of the rod, and to provide a rod feeding and cutting integrated machine that can stably convey rods and automatically screen waste materials.
[0006] To solve the above-mentioned technical problems, this utility model provides a rod-shaped body feeding and cutting integrated machine, including a frame, a feeding device, a clamping mechanism and a cutting mechanism are arranged on the frame. The feeding device includes a fixed feeding clamping mechanism, a movable feeding clamping mechanism and a conveying mechanism that drives the movable feeding clamping mechanism to reciprocate between the cutting mechanism and the fixed feeding clamping mechanism. The cutting mechanism, clamping mechanism, movable feeding clamping mechanism and fixed feeding clamping mechanism are arranged in sequence. The fixed feeding clamping mechanism is fixedly arranged on the frame. The fixed feeding clamping mechanism is provided with a clamping station one, the movable feeding clamping mechanism is provided with a clamping station two and the clamping mechanism is provided with a clamping station three. The clamping points of clamping station one, clamping station two and clamping station three are located on the same straight line.
[0007] During the rod-shaped body processing, the rod-shaped body is conveyed to the cutting mechanism by the feeding device. The rod-shaped body is first clamped by the fixed feeding clamping mechanism. The moving feeding clamping mechanism moves towards the fixed feeding clamping mechanism. After the moving feeding clamping mechanism clamps the rod-shaped body, the fixed feeding clamping mechanism releases the rod-shaped body. The rod-shaped body is then moved from clamping station one to clamping station three. The clamping mechanism at clamping station three clamps the rod-shaped body. The moving feeding clamping mechanism releases the rod-shaped body, while the fixed feeding clamping mechanism clamps the rod-shaped body again. This achieves simultaneous fixation at clamping station one and clamping station three, significantly improving the stability of the rod-shaped body. After clamping, the cutting mechanism cuts the rod-shaped body, and the rod-shaped body is screened by the collecting mechanism.
[0008] As a further improvement of this utility model, the above-mentioned rod-shaped body feeding and cutting integrated machine includes a moving feeding clamping mechanism comprising a fixed frame, a feeding seat, a pressing block, and a driving component for controlling the pressing block to move toward the feeding seat. The fixed frame and the feeding seat are mounted on the conveying mechanism. The feeding seat is provided with a feeding groove. One end of the pressing block is opposite to the feeding groove, and the other end is connected to the driving component. The driving component and the pressing block are mounted on the fixed frame.
[0009] During the clamping process, the drive component drives the pressure block and the material discharge trough to move in one direction. The clamping point between the material discharge seat and the pressure block is the second clamping station. The rod-shaped body is placed in the material discharge trough. The lower surface of the pressure block presses the rod-shaped body onto the material discharge seat. The pressure block and the material discharge trough are provided with a pressure groove on their opposite surfaces. The cross-sections of the material discharge trough and the pressure groove can be triangular or arc-shaped. When the cross-section is triangular, an arc-shaped groove is provided at the bottom of the triangle. This design can accommodate rod-shaped bodies of different sizes.
[0010] As a further improvement of this utility model, the above-mentioned rod-shaped feeding and cutting integrated machine includes a driving component 1 comprising a cylinder 1, a slide rail 1, and a height adjustment plate 1. The fixed plate 1 is inclinedly arranged on the fixed frame 1. The height adjustment plate 1 and the fixed plate 1 are connected by a connector 1. The slide rail 1 and the cylinder 1 are arranged on the height adjustment plate 1. The pressing block 1 is connected to the cylinder shaft of the cylinder 1 and is slidably connected to the slide rail 1.
[0011] The first connecting component is a bolt. The positions of the first fixing groove and the first fixing hole are not unique. Alternatively, the first fixing groove can be set on the first height adjustment plate, and the first fixing hole can be set on the first fixing plate. The bolt passes through the first fixing hole and the first fixing groove to fix the first height adjustment plate to the first fixing plate.
[0012] As a further improvement of this utility model, the above-mentioned rod-shaped feeding and cutting integrated machine includes a conveying mechanism comprising a drive component, a lead screw, a second slide rail, and a slider. The second slide rail is arranged parallel to the lead screw. A movable feeding clamping mechanism is mounted on the slider. The slider is slidably connected to the slide rail and threadedly connected to the lead screw. The drive component drives the lead screw to rotate. The drive component is a motor, with its shaft connected to the lead screw, driving the lead screw to rotate. Simultaneously, the slider slides left and right on the lead screw, driving the movable feeding clamping mechanism to reciprocate in the frame direction.
[0013] As a further improvement of this utility model, the above-mentioned rod-shaped body feeding and cutting integrated machine includes a fixed feeding clamping mechanism comprising a fixed frame 2, a feeding seat 2, a pressing block 2, and a driving component 2 for controlling the pressing block 2 to move towards the feeding seat 2. The fixed frame 2 and the feeding seat 2 are mounted on the machine frame. The feeding seat 2 is provided with a feeding groove 2. One end of the pressing block 2 is positioned opposite to the feeding groove 2, and the other end is connected to the driving component 2. The driving component 2 and the pressing block 2 are mounted on the fixed frame 2.
[0014] The structure of the fixed feeding clamping mechanism is similar to that of the moving feeding clamping mechanism. It is also driven by the second driving component to move the second pressing block towards the second feeding seat. The rod-shaped body is set on the second feeding seat. The clamping point between the second feeding seat and the second pressing block is the first clamping and pressing station. The lower surface of the second pressing block presses the rod-shaped body into the second feeding groove. The second pressing groove is provided on the opposite surface of the second pressing block and the second feeding groove. The cross-section of the second feeding groove and the second pressing groove can be triangular or arc-shaped. When the cross-section is triangular, an arc-shaped groove is provided at the bottom of the triangle. This design can accommodate rod-shaped bodies of different sizes.
[0015] As a further improvement of this utility model, the above-mentioned rod-shaped feeding and cutting integrated machine includes a second driving component, which includes a second cylinder, a third slide rail, and a second height adjustment plate. The second fixed plate is inclinedly arranged on the second fixed frame. The second height adjustment plate and the second fixed plate are connected by a second connector. The third slide rail and the second cylinder are arranged on the second height adjustment plate. The second pressing block is connected to the cylinder shaft of the second cylinder and is slidably connected to the third slide rail. The connection structure of the second driving component is similar to that of the first driving component.
[0016] As a further improvement of this utility model, the above-mentioned rod-shaped body feeding and cutting integrated machine includes a clamping mechanism comprising a feeding seat three, a pressing block three, a fixing frame three, and a driving component three for clamping and releasing the pressing block three. The feeding seat three is provided with a feeding groove three. The pressing block three is Z-shaped and is provided with a pressing part with an inclined surface, a connecting part located in the middle, and a driving part. The pressing part is arranged opposite to the feeding groove three. The connecting part is rotatably connected to the fixing frame three. The driving part is connected to the driving component three. During the clamping process of the clamping mechanism, the rod-shaped body is placed in the feeding groove three. The driving component three can be a cylinder. The cylinder pushes the driving part upward. Since the connecting part is rotatably connected to the fixing frame three, the pressing part will be pressed towards the feeding seat three. The clamping point between the pressing part and the feeding seat three is the clamping and pressing station three.
[0017] As a further improvement of this utility model, the above-mentioned rod-shaped feeding and cutting integrated machine includes a cutting mechanism comprising a cutting blade, a cutting shaft, a fixed base, a connecting seat, a rotating shaft disk, a driving component four for driving the cutting blade to rotate, and a driving component five for controlling the movement of the cutting blade. The cutting blade is mounted on the cutting shaft, the cutting shaft is mounted on the connecting seat, one end of the connecting seat is connected to the fixed base and the other end is connected to the rotating shaft disk, the connection point is located at the eccentricity of the rotating shaft disk, the rotating shaft disk is mounted on the frame through a fixed frame, and the driving component five drives the rotating shaft disk to rotate.
[0018] Drive components four and five are motors. Drive component four drives the cutter shaft through a pulley, thereby driving the cutting tool to rotate. In order for the cutting tool to complete the cutting action, the cutting tool is fixed on the connecting seat. One end of the connecting seat is connected to the fixed base, and the other end is connected to the eccentric part of the rotating shaft disk. The rotating shaft disk rotates under the drive of drive component five, thereby driving the cutting tool to move up and down reciprocally, which can achieve the effect of automatic cutting.
[0019] As a further improvement of this utility model, the above-mentioned rod-shaped feeding and cutting integrated machine is further provided with a material collection mechanism. The material collection mechanism includes a positive material collection port and a waste material collection component. The positive material collection port is located below the cutting mechanism. The waste material collection component includes a waste hopper, a connecting frame, and a driving component six that drives the connecting frame to move downwards towards the cutting mechanism. The waste hopper is inclinedly arranged on the connecting frame, and the connecting frame is connected to the driving component six.
[0020] Before cutting, the inspection mechanism checks the length of the rod. When the length meets the requirements, the cut rod falls into the positive product collection port and into the collection box. When the length of the rod is found to be insufficient, the drive unit moves the waste hopper downwards from the cutting mechanism, and the waste falls into the waste hopper for recycling. This setup can automatically detect and collect defective products, which helps improve product quality.
[0021] As a further improvement of this utility model, the aforementioned rod-shaped feeding and cutting integrated machine includes a stop seat between the clamping mechanism and the moving feeding clamping mechanism, and a detection mechanism is installed on the stop seat. The detection mechanism is used to detect the extension length of the rod-shaped body to ensure that the cutting length of the rod-shaped body remains the same.
[0022] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. It is equipped with a fixed feeding clamping mechanism, a movable feeding clamping mechanism and a pressing mechanism to ensure dual-station pressing during the cutting process, improve the stability of the rod-shaped body during the cutting process, and ensure cutting accuracy and product quality. 2. It is equipped with a detection mechanism and a material collection mechanism to detect and classify the rod-shaped body, recycle products that do not meet the requirements, and monitor the residual material to avoid the equipment running idle and improve production efficiency. Attached Figure Description
[0023] Figure 1 This is a front view of a rod-shaped feeding and cutting integrated machine according to this utility model.
[0024] Figure 2 This is a top view of a rod-shaped feeding and cutting integrated machine according to this utility model.
[0025] Figure 3 This utility model relates to a three-dimensional rod-shaped feeding and cutting integrated machine. Figure 1 .
[0026] Figure 4 This utility model relates to a three-dimensional rod-shaped feeding and cutting integrated machine. Figure 2 .
[0027] Figure 5 This is the front view of the mobile feeding and clamping mechanism of this utility model.
[0028] Figure 6 This is a bottom view of the mobile feeding and clamping mechanism of this utility model.
[0029] Figure 7 This is a perspective view of the mobile feeding and clamping mechanism of this utility model.
[0030] Figure 8 This is the front view of the fixed feeding clamping mechanism of this utility model.
[0031] Figure 9 This is a perspective view of the fixed feeding clamping mechanism of this utility model.
[0032] Figure 10 This is a perspective view of the cutting mechanism of this utility model.
[0033] Figure 11 This is a front view of the material collection mechanism and the clamping mechanism of this utility model.
[0034] Figure 12 This is a perspective view of the material collection mechanism and the pressing mechanism of this utility model.
[0035] Explanation of reference numerals: 1. Frame; 2. Clamping mechanism; 3. Detection mechanism; 4. Material stop; 5. Cutting mechanism; 6. Material collection mechanism; 7. Fixed feeding clamping mechanism; 8. Moving feeding clamping mechanism; 9. Conveying mechanism; 10. Fixed frame one; 11. Discharge seat one; 12. Pressure block one; 13. Cylinder one; 14. Slide rail one; 15. Height adjustment plate one; 16. Drive component; 17. Lead screw; 18. Slide rail two; 19. Slider; 20. Fixed frame two; 21. Discharge seat two; 22. Pressure block two; 23. Cylinder two; 24. Slide rail three; 5. Height Adjustment Plate II; 26. Feeding Seat III; 27. Pressure Block III; 28. Fixing Frame III; 29. Drive Component III; 30. Cutting Tool; 31. Cutting Shaft; 32. Fixing Base; 33. Connecting Seat; 34. Drive Component IV; 35. Drive Component V; 36. Authentic Material Collection Port; 37. Waste Hopper; 38. Connecting Frame; 39. Drive Component VI; 40. Feeding Slot I; 41. Feeding Slot II; 42. Feeding Slot III; 43. Fixing Plate I; 44. Fixing Plate II; 45. Pressing Part; 46. Connecting Part; 47. Rotating Shaft; 48. Drive Part. Detailed Implementation
[0036] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0037] Conversely, this utility model encompasses any substitutions, modifications, equivalent methods, and solutions made within the spirit and scope of this utility model as defined in the claims. Furthermore, to provide the public with a better understanding of this utility model, certain specific details are described in detail in the following description. However, those skilled in the art will fully understand this utility model even without these detailed descriptions.
[0038] like Figure 1 , Figure 2 , Figure 3 and Figure 4The illustrated rod-shaped feeding and cutting integrated machine includes a frame 1, on which a feeding device, a clamping mechanism 2, and a cutting mechanism 5 are mounted. The feeding device includes a fixed feeding clamping mechanism 7, a movable feeding clamping mechanism 8, and a conveying mechanism 9 that drives the movable feeding clamping mechanism 8 to reciprocate between the cutting mechanism 5 and the fixed feeding clamping mechanism 7. The cutting mechanism 5, the clamping mechanism 2, the movable feeding clamping mechanism 8, and the fixed feeding clamping mechanism 7 are arranged sequentially. The fixed feeding clamping mechanism 7 is fixedly mounted on the frame 1 and has a clamping station one. The movable feeding clamping mechanism 8 has a clamping station two, and the clamping mechanism 2 has a clamping station three. The clamping points of the clamping stations one, two, and three are located on the same straight line.
[0039] like Figure 5 , Figure 6 and Figure 7 As shown, the movable feeding clamping mechanism 8 includes a fixed frame 10, a feeding seat 11, a pressing block 12, and a driving component 1 for controlling the pressing block 12 to move towards the feeding groove 40. The driving component 1 includes a cylinder 13, a slide rail 14, and a height adjusting plate 15. The fixed plate 43 is inclinedly arranged on the fixed frame 10, and a longitudinal fixing groove is provided on the fixed plate 43. The height adjusting plate 15 is provided with a fixing hole. The height adjusting plate 15 and the fixed plate 43 are connected by bolts, and the bolts are provided in the fixing hole and the fixing groove. The slide rail 14 and the cylinder 13 are arranged on the height adjusting plate 15. The pressing block 12 is connected to the cylinder shaft of the cylinder 13 and is slidably connected to the slide rail 14.
[0040] During the clamping process, cylinder 13 drives the pressing block 12 to move in the direction of the discharge groove 40. The rod-shaped body is placed in the discharge groove 40. The lower surface of the pressing block 12 presses the rod-shaped body on the discharge seat. The pressing block 12 and the discharge groove 40 are provided with a pressing groove. The cross-section of the discharge groove 40 and the pressing groove can be triangular. The bottom of the triangle is provided with an arc-shaped groove. This design can accommodate rod-shaped bodies of different sizes.
[0041] like Figure 6 and Figure 7 As shown, the conveying mechanism 9 includes a drive component 16, a lead screw 17, a second slide rail 18, and a slider 19. The second slide rail 18 is arranged parallel to the lead screw 17. The movable feeding clamping mechanism 8 is arranged on the slider 19. The slider 19 is slidably connected to the slide rail and threadedly connected to the lead screw 17. The drive component 16 drives the lead screw 17 to rotate. The drive component 16 can be a motor. The motor shaft is connected to the lead screw 17 to drive the lead screw 17 to rotate. At the same time, the slider 19 slides left and right on the lead screw 17, driving the movable feeding clamping mechanism 8 to reciprocate on the frame 1.
[0042] like Figure 8 and Figure 9As shown, the fixed feeding clamping mechanism 7 includes a fixed frame 20, a feeding seat 21, a pressing block 22, and a driving component 2 for controlling the pressing block 22 to move towards the feeding trough 41. The fixed frame 20 and the feeding seat 21 are mounted on the frame 1. The feeding seat 21 is provided with a feeding trough 41. One end of the pressing block 22 is positioned opposite to the feeding trough 41, and the other end is connected to the driving component 2. The driving component 2 and the pressing block 22 are mounted on the fixed frame 20.
[0043] During the clamping process, the second driving component drives the second pressing block 22 to move towards the second feeding seat 21. The rod-shaped body is set on the second feeding seat 21, and the lower surface of the second pressing block 22 presses the rod-shaped body into the second feeding groove 41. The second pressing groove is provided on the opposite surface of the second pressing block 22 and the second feeding groove 41. The cross-section of the second feeding groove 41 and the second pressing groove can be triangular or arc-shaped. When the cross-section is triangular, an arc-shaped groove is provided at the bottom of the triangle. This design can accommodate rod-shaped bodies of different sizes.
[0044] The second drive component includes a second cylinder 23, a third slide rail 24, and a second height adjustment plate 25. A second fixed plate 44 is inclinedly arranged on a second fixed frame 20. A second longitudinal fixed groove is provided on the second fixed plate 44. A second fixed hole is provided on the second height adjustment plate 25. The second height adjustment plate 25 and the second fixed plate 44 are connected by a second connector. The second connector is arranged in the second fixed hole and the second fixed groove. The third slide rail 24 and the second cylinder 23 are arranged on the second height adjustment plate 25. The second pressure block 22 is connected to the cylinder shaft of the second cylinder 23 and is slidably connected to the third slide rail 24.
[0045] like Figure 11 and Figure 12 As shown, the clamping mechanism 2 includes a feeding seat 326, a pressing block 327, a fixing frame 328, and a driving component 329 for clamping and releasing the pressing block 327. The feeding seat 326 is provided with a feeding groove 342. The pressing block 327 is Z-shaped and is provided with a pressing part 45 with an inclined surface, a connecting part 46 located in the middle, and a driving part 48. The pressing part 45 is arranged opposite to the feeding groove 342. The connecting part 46 is rotatably connected to the fixing frame 328. The driving part 48 is connected to the driving component 329. During the clamping process of the clamping mechanism 2, the rod-shaped body is placed in the feeding groove 342. The driving component 329 can be a cylinder. The cylinder pushes the driving part 48 upward. Since the connecting part 46 is rotatably connected to the fixing frame 328, the pressing part 45 will be pressed towards the feeding seat 326.
[0046] like Figure 10As shown, the cutting mechanism 5 includes a cutting tool 30, a cutting shaft 31, a fixed base 32, a connecting seat 33, a rotating shaft disk 47, a driving component 4 34 for driving the cutting tool 30 to rotate, and a driving component 5 35 for controlling the movement of the cutting tool 30. The cutting tool 30 is mounted on the cutting shaft, which is mounted on the connecting seat 33. One end of the connecting seat 33 is connected to the fixed base 32, and the other end is connected to the rotating shaft disk 47. The connection point is located at the eccentric part of the rotating shaft disk 47. The rotating shaft disk 47 is mounted on the frame 1 through a fixed frame, and the driving component 5 35 drives the rotating shaft disk 47 to rotate. Drive component 4 34 and drive component 5 35 are motors. Drive component 4 34 drives the cutter shaft 31 through a pulley, thereby driving the cutting tool 30 to rotate. In order for the cutting tool 30 to complete the cutting action, the cutting tool 30 is fixed on the connecting seat 33. One end of the connecting seat 33 is connected to the fixed base 32, and the other end is connected to the eccentric part of the rotating shaft disk 47. The rotating shaft disk 47 rotates under the drive of drive component 5 35, thereby driving the cutting tool 30 to move up and down reciprocally, which can achieve the effect of automatic cutting.
[0047] like Figure 3 Figure 4 and Figure 12 The material collection mechanism 6 shown includes a positive material collection port 36 and a waste material collection assembly. The positive material collection port 36 is located below the cutting mechanism 5. The waste material collection assembly includes a waste hopper 37, a connecting frame 38, and a driving component 6 39 that drives the connecting frame 38 to move downwards from the cutting mechanism 5. The waste hopper 37 is inclinedly arranged on the connecting frame 38, and the connecting frame 38 is connected to the driving component 6 39.
[0048] Before cutting, the inspection mechanism 3 checks the length of the rod. When the length meets the requirements, the cut rod falls into the positive product collection port 36 and into the collection box. When the length of the rod is found to be insufficient, the drive component 6 39 drives the waste hopper 37 to move downwards from the cutting mechanism 5, and the waste will fall into the waste hopper 37 for recycling. This setting can automatically detect defective products, improve product quality, and increase work efficiency.
[0049] During the rod-shaped body processing, the rod-shaped body is conveyed to the cutting mechanism 5 via a feeding device. The rod-shaped body is first clamped by the pressure block 22 of the fixed feeding clamping mechanism 7 and the discharge trough 41. The moving feeding clamping mechanism 8 moves towards the fixed feeding clamping mechanism 7 under the drive of the conveying mechanism 9. After the pressure block 12 and discharge block 1 of the moving feeding clamping mechanism 8 clamp the rod-shaped body, the fixed feeding clamping mechanism 7 releases the rod-shaped body. Driven by the conveying mechanism 9, the rod-shaped body is moved from the first clamping station to the third clamping station. The detection mechanism 3 detects the extension length of the rod-shaped body. After confirming that the requirements are met, the clamping mechanism 2 at the third clamping station clamps the rod-shaped body. The moving feeding clamping mechanism... 8. Loosen the rod-shaped body, and at the same time, fix the feeding clamping mechanism 7 to clamp the rod-shaped body, so that the clamping station one and clamping station three are fixed at the same time, which greatly improves the stability of the rod-shaped body. After clamping, the cutting mechanism 5 cuts the rod-shaped body. The rod-shaped body is screened by the collecting mechanism 6. By setting the fixed feeding clamping mechanism 7, the moving feeding clamping mechanism 8 and the clamping mechanism 2, the dual-station clamping is ensured during the cutting process, which improves the stability of the rod-shaped body during the cutting process and ensures the cutting accuracy and product quality. By setting the detection mechanism 3 and the collecting mechanism 6, the rod-shaped body is detected and classified, and products that do not meet the requirements are recycled. At the same time, the residual material is monitored to avoid the equipment running idle and improve production efficiency.
[0050] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. For those skilled in the art, several modifications and improvements can be made without departing from the present utility model, and these should also be considered to fall within the protection scope of the present utility model.
Claims
1. A rod-shaped body feeding and cutting integrated machine, comprising a frame (1), characterized in that: A feeding device, a clamping mechanism (2), and a cutting mechanism (5) are provided on the frame (1). The feeding device includes a fixed feeding clamping mechanism (7), a movable feeding clamping mechanism (8), and a conveying mechanism (9) that drives the movable feeding clamping mechanism (8) to reciprocate between the cutting mechanism (5) and the fixed feeding clamping mechanism (7). The cutting mechanism (5), the clamping mechanism (2), the movable feeding clamping mechanism (8), and the fixed feeding clamping mechanism (7) are arranged in sequence. The fixed feeding clamping mechanism (7) is fixedly installed on the frame (1). The fixed feeding clamping mechanism (7) is provided with a clamping station one, the movable feeding clamping mechanism (8) is provided with a clamping station two, and the clamping mechanism (2) is provided with a clamping station three. The clamping points of the clamping station one, the clamping station two, and the clamping station three are located on the same straight line.
2. The rod-shaped body feeding and cutting integrated machine according to claim 1, characterized in that, The mobile feeding clamping mechanism (8) includes a fixed frame (10), a feeding seat (11), a pressing block (12), and a drive component that controls the pressing block (12) to move toward the feeding seat (11). The fixed frame (10) and the feeding seat (11) are mounted on the conveying mechanism (9). The feeding seat (11) is provided with a feeding trough (40). One end of the pressing block (12) is opposite to the feeding trough (40), and the other end is connected to the drive component. The drive component and the pressing block (12) are mounted on the fixed frame (10).
3. The rod-shaped body feeding and cutting integrated machine according to claim 2, characterized in that, The drive component includes a cylinder (13), a slide rail (14), and a height adjustment plate (15). A fixed plate (43) is inclinedly arranged on a fixed frame (10). The height adjustment plate (15) and the fixed plate (43) are connected by a connector. The slide rail (14) and the cylinder (13) are arranged on the height adjustment plate (15). The pressure block (12) is connected to the cylinder shaft of the cylinder (13) and is slidably connected to the slide rail (14).
4. The rod-shaped body feeding and cutting integrated machine according to claim 3, characterized in that, The conveying mechanism (9) includes a drive unit (16), a lead screw (17), a slide rail (18), and a slider (19). The slide rail (18) is arranged parallel to the lead screw (17). The moving feeding clamping mechanism (8) is set on the slider (19). The slider (19) is slidably connected to the slide rail. The slider (19) is threadedly connected to the lead screw (17). The drive unit (16) drives the lead screw (17) to rotate.
5. The rod-shaped body feeding and cutting integrated machine according to claim 4, characterized in that, The fixed feeding clamping mechanism (7) includes a fixed frame (20), a feeding seat (21), a pressing block (22), and a driving component (2) for controlling the pressing block (22) to move towards the feeding seat (21). The fixed frame (20) and the feeding seat (21) are mounted on the frame (1). The feeding seat (21) is provided with a feeding groove (41). One end of the pressing block (22) is opposite to the feeding groove (41), and the other end is connected to the driving component (2). The driving component (2) and the pressing block (22) are mounted on the fixed frame (20).
6. The rod-shaped body feeding and cutting integrated machine according to claim 5, characterized in that, The second drive component includes a second cylinder (23), a third slide rail (24), and a second height adjustment plate (25). The second fixed plate (44) is inclinedly arranged on the second fixed frame (20). The second height adjustment plate (25) and the second fixed plate (44) are connected by a second connector. The third slide rail (24) and the second cylinder (23) are arranged on the second height adjustment plate (25). The second pressing block (22) is connected to the cylinder shaft of the second cylinder (23) and is slidably connected to the third slide rail (24).
7. The rod-shaped body feeding and cutting integrated machine according to claim 6, characterized in that, The clamping mechanism (2) includes a feeding seat (26), a pressing block (27), a fixing frame (28), and a driving component (29) for clamping and releasing the pressing block (27). The feeding seat (26) is provided with a feeding groove (42). The pressing block (27) is Z-shaped and is provided with a clamping part (45) with an inclined surface, a connecting part (46) located in the middle, and a driving part (48). The clamping part (45) is arranged opposite to the feeding groove (42). The connecting part (46) is rotatably connected to the fixing frame (28). The driving part (48) is connected to the driving component (29).
8. The rod-shaped body feeding and cutting integrated machine according to claim 7, characterized in that, The cutting mechanism (5) includes a cutting tool (30), a cutting shaft (31), a fixed base (32), a connecting seat (33), a rotating shaft disk (47), a driving component four (34) for driving the cutting tool (30) to rotate, and a driving component five (35) for controlling the movement of the cutting tool (30). The cutting tool (30) is mounted on the cutting shaft (31), and the cutting shaft (31) is mounted on the connecting seat (33). One end of the connecting seat (33) is connected to the fixed base (32), and the other end is connected to the rotating shaft disk (47). The connection point is located at the eccentric part of the rotating shaft disk (47). The rotating shaft disk (47) is mounted on the frame (1) through a fixed frame. The driving component five (35) drives the rotating shaft disk (47) to rotate.
9. A rod-shaped body feeding and cutting integrated machine according to any one of claims 1-8, characterized in that, The rod-shaped feeding and cutting integrated machine is also provided with a material collection mechanism (6). The material collection mechanism (6) includes a positive material collection port (36) and a waste material collection component. The positive material collection port (36) is located below the cutting mechanism (5). The waste material collection component includes a waste hopper (37), a connecting frame (38), and a driving component six (39) that drives the connecting frame (38) to move downwards towards the cutting mechanism (5). The waste hopper (37) is inclinedly arranged on the connecting frame (38), and the connecting frame (38) is connected to the driving component six (39).
10. A rod-shaped body feeding and cutting integrated machine according to claim 9, characterized in that, A stop seat (4) is provided between the clamping mechanism (2) and the moving feeding clamping mechanism (8), and a detection mechanism (3) is provided on the stop seat (4).
Citation Information
Patent Citations
Automatic copper bar blanking machine
CN203565981U