Feeding device of aluminum profile extruding machine
By designing the aluminum profile extruder loading device with conveying components, limiting edge barriers and flip mechanisms, the problem of existing devices being unable to continuously load, improve processing efficiency and stability, and adapt to the processing needs of aluminum profiles of different shapes.
Patent Information
- Application Number
- CN202422101851.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-28
AI Technical Summary
The existing aluminum profile extruder loading device cannot realize the continuous loading of multiple aluminum profiles, resulting in low processing efficiency.
A feeding device including a conveying assembly, a limit edge barrier, an anti-slip structure and a flip mechanism is designed to realize the continuous conveying of multiple aluminum profiles through a conveyor belt, and improve stability and safety through a limit edge barrier and an anti-slip structure. The flip mechanism is used to adjust the processing surface of the aluminum profile to adapt to different shapes.
The continuous loading of aluminum profiles is achieved, processing efficiency is improved, stability and safety are enhanced during the conveying process, and the processing needs of aluminum profiles of different shapes is met.
Smart Images

Figure CN223043350U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of aluminum extrusion machines, and more specifically, to a feeding device for an aluminum profile extrusion machine. Background Art
[0002] An aluminum profile extrusion machine is a main device for producing aluminum profiles. It belongs to one of the main devices for producing tubes, rods, and profiles of light alloys (such as aluminum alloys, copper alloys, and magnesium alloys). When the extrusion machine extrudes and forms aluminum profiles, it is necessary to place the aluminum profiles at the extrusion processing location of the aluminum extrusion machine.
[0003] In the prior art, for example, an automatic feeding device for an extrusion machine with the publication number CN214022675U includes a main frame of the extrusion machine, and also includes a feeding manipulator and a feeding gripper installed on the feeding manipulator. The feeding manipulator is fixedly installed on the main frame of the extrusion machine through bolts. The feeding gripper is detachably installed at one end of the feeding manipulator through a fixture head. The feeding manipulator includes a mounting seat, multiple rotating arms, and a lifting cylinder. The feeding gripper includes a gripper seat, a clamping cylinder, and grippers. This feeding device has a simple structure and is easy to use. The multiple rotating arms can be used for feeding in any direction. Its lifting cylinder drives the feeding gripper to descend to pick up materials and ascend and rotate to place materials, with high feeding efficiency and safe use. However, the above feeding device lacks a continuous feeding structure during the processing process, so it is impossible to continuously and automatically transport multiple aluminum profiles to the extrusion location, reducing the processing efficiency. Summary of the Utility Model
[0004] Based on this, in order to solve the problem that the existing feeding device cannot continuously feed multiple aluminum profiles, the utility model provides a feeding device for an aluminum profile extrusion machine, and its specific technical solution is as follows:
[0005] A feeding device for an aluminum profile extrusion machine includes a feeding mechanism and a flipping mechanism; the feeding mechanism includes a conveying component and two limiting edges. The two limiting edges are respectively installed on both sides of the conveying component. A conveyor belt for transporting aluminum profiles is arranged on the conveying component, and an anti-slip structure is arranged on the conveyor belt; the flipping mechanism includes a first transfer component, a flipping component, and a second transfer component. The first transfer component is used to transfer the aluminum profiles on the conveyor belt to the flipping component. The flipping component includes a rotating frame body for flipping the aluminum profiles. The second transfer component is used to transfer the aluminum profiles on the rotating frame body back to the conveyor belt.
[0006] The above-mentioned aluminum profile extruder feeding device, by being provided with a conveyor belt, is convenient for realizing continuous conveying and feeding of multiple aluminum profiles, thereby improving processing efficiency and solving the problem that the existing feeding device cannot continuously feed multiple aluminum profiles; by providing a limiting rib, two limiting ribs can respectively limit the aluminum profile on both sides of the conveyor belt, thereby preventing the aluminum profile from deviating or even falling off, thereby improving the stability of the aluminum profile during the conveying process; by providing an anti-skid structure, the anti-skid effect is improved, thereby preventing the aluminum profile from slipping and falling during the conveying process, thereby improving the safety of the conveyor belt during operation; by providing a rotating frame, the aluminum profile is flipped over to achieve adjustment of the processing surface of the aluminum profile, which is conducive to adapting to aluminum profiles of different shapes.
[0007] Furthermore, the conveying assembly includes a loading rack and a mounting platform installed on the loading rack, the two limiting ribs are respectively mounted on both sides of the mounting platform, the two limiting ribs are used to cooperate with the limiting aluminum profile, and the conveyor belt is assembled on the mounting platform.
[0008] Furthermore, the conveyor belt includes a conveyor belt body and two connecting belts, the conveyor belt body is provided with a feed end and a discharge end, the two connecting belts are respectively connected at the feed end and the discharge end, and the upper surface of the connecting belt is paved with an anti-slip coating.
[0009] Furthermore, the anti-skid structure includes an anti-skid long groove, a first anti-skid inclined groove and a second anti-skid inclined groove. Several of the anti-skid long grooves are arranged at the upper end of the conveyor belt body, several of the first anti-skid inclined grooves are arranged on one side of the anti-skid long groove, and several of the second anti-skid inclined grooves are arranged on the other side of the anti-skid long groove.
[0010] Furthermore, a plurality of anti-skid baffles are provided at the upper end of the conveyor belt body, and elastic members are provided between the anti-skid baffles and the conveyor belt body.
[0011] Furthermore, the elastic member and the conveyor belt body as well as the elastic member and the anti-slip baffle are both connected by adhesive bonding.
[0012] Furthermore, the first transfer assembly includes a support frame, a first sliding seat, a second sliding seat, a first push plate and an adjustment plate, the first sliding seat is slidably assembled on one side of the support frame, the second sliding seat is slidably connected to the other side of the support frame, a first driving cylinder is installed on the first sliding seat, the first driving cylinder is transmission-connected to the first push plate and is used to control the lifting and lowering movement of the first push plate, a second driving cylinder is installed on the second sliding seat, the second driving cylinder is transmission-connected to the adjustment plate and is used to control the lifting and lowering movement of the adjustment plate, the second sliding seat is located on one end of the support frame close to the rotating frame, and the first push plate is used to push the aluminum profile on the conveyor belt onto the rotating frame.
[0013] Further, the flipping mechanism further includes a connecting frame detachably connected to the support frame, and both the flipping assembly and the second transfer assembly are mounted on the connecting frame.
[0014] Further, the flipping assembly includes a driving motor, a rotating shaft, and a positioning structure for locking and fixing the rotating frame body. The driving motor and the positioning structure are both mounted on the connecting frame. The output end of the driving motor is drivingly connected to one end of the rotating shaft, and the other end of the rotating shaft is fixedly connected to the rotating frame body. A plurality of placement frames for placing aluminum profiles are spaced apart on the rotating frame body.
[0015] Further, the second transfer assembly includes a sliding member, a third driving cylinder, a second push plate, and a moving guide rail mounted on the connecting frame. The third driving cylinder is mounted on the moving guide rail and is used to control the sliding of the sliding member on the moving guide rail. The second push plate is arranged on the sliding member, and the second push plate is used to push the aluminum profiles in the placement frame back onto the conveyor belt. Description of the Drawings
[0016] Figure 1 is one of the structural schematic diagrams of the feeding device of the aluminum profile extruder according to an embodiment of the present invention;
[0017] Figure 2 is another structural schematic diagram of the feeding device of the aluminum profile extruder according to an embodiment of the present invention;
[0018] Figure 3 is still another structural schematic diagram of the feeding device of the aluminum profile extruder according to an embodiment of the present invention;
[0019] Figure 4 is the structural schematic diagram of the conveyor belt of the feeding device of the aluminum profile extruder according to an embodiment of the present invention;
[0020] Figure 5 is Figure 4 the partial enlarged structural schematic diagram of A in
[0021] Description of the Reference Numerals:
[0022] 1. Conveyor assembly; 11. Loading rack; 12. Installation table; 13. Conveyor belt body; 131. Anti-slip long groove; 132. First anti-slip inclined groove; 133. Second anti-slip inclined groove; 134. Anti-slip baffle; 135. Elastic member; 14. Connecting belt; 2. Limit edge; 3. First transfer assembly; 31. Support frame; 32. First sliding seat; 33. Second sliding seat; 34. First push plate; 35. Adjusting plate; 36. First driving cylinder; 37. Second driving cylinder; 4. Flipping assembly; 41. Rotating frame; 42. Driving motor; 43. Positioning structure; 5. Second transfer assembly; 51. Sliding member; 52. Second push plate; 53. Moving guide rail; 54. Third driving cylinder; 6. Connecting frame. Detailed implementation manners
[0023] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below in conjunction with its embodiments. It should be understood that the specific implementation manners described herein are only used to explain the present utility model and do not limit the protection scope of the present utility model.
[0024] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for the purpose of illustration and do not represent the only implementation manner.
[0025] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in the description of the present utility model in this specification are only for the purpose of describing specific implementation manners and are not intended to limit the present utility model. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.
[0026] In the present utility model, the "first" and "second" do not represent specific quantities and sequences, but are only used for name distinction.
[0027] Such as Figures 1-3As shown in the figure, a feeding device for an aluminum profile extruder in an embodiment of the present utility model includes a feeding mechanism and a flipping mechanism; the feeding mechanism includes a conveying assembly 1 and two limiting edges 2, the two limiting edges 2 are respectively installed on both sides of the conveying assembly 1, a conveyor belt for transporting aluminum profiles is arranged on the conveying assembly 1, and an anti-slip structure is arranged on the conveyor belt; the flipping mechanism includes a first transfer assembly 3, a flipping assembly 4 and a second transfer assembly 5, the first transfer assembly 3 is used to transfer the aluminum profiles on the conveyor belt to the flipping assembly 4, the flipping assembly 4 includes a rotating frame 41 for flipping the aluminum profiles, and the second transfer assembly 5 is used to transfer the aluminum profiles on the rotating frame 41 back to the conveyor belt.
[0028] For the above-mentioned feeding device for an aluminum profile extruder, by arranging a conveyor belt, it is convenient to realize the continuous feeding of multiple aluminum profiles, improve the processing efficiency, and solve the problem that the existing feeding device cannot continuously feed multiple aluminum profiles; by arranging the limiting edges 2, the two limiting edges 2 can respectively limit the aluminum profiles on both sides of the conveyor belt, avoid the situation of the aluminum profiles shifting or even falling off, and improve the stability of the aluminum profiles during transportation; by arranging an anti-slip structure, the anti-slip effect is improved, avoid the aluminum profiles slipping and falling during transportation, and improve the safety of the conveyor belt during operation; by arranging the rotating frame 41, the aluminum profiles are flipped to adjust the processing surface of the aluminum profiles, which is beneficial to adapt to aluminum profiles of different shapes.
[0029] When processing aluminum profiles with regular dimensions and no need to adjust the processing surface, the aluminum profiles can be directly fed without passing through the flipping mechanism during the conveying process.
[0030] As Figures 1-3 shown, in one of the embodiments, the conveying assembly 1 includes a feeding frame 11 and a mounting table 12 installed on the feeding frame 11, the two limiting edges 2 are respectively erected on both sides of the mounting table 12, the two limiting edges 2 are used to cooperate to limit the aluminum profiles, and the conveyor belt is assembled on the mounting table 12
[0031] As Figure 4 shown, in one of the embodiments, the conveyor belt includes a conveyor belt body 13 and two connecting belts 14, the conveyor belt body 13 is provided with a feeding end and a discharging end, the two connecting belts 14 are respectively connected at the feeding end and the discharging end, and an anti-slip coating is laid on the upper surface of the connecting belt 14. In this way, by arranging the anti-slip coating, the anti-slip effect of the conveyor belt is further improved.
[0032] As Figure 4 and Figure 5As shown, in one embodiment, the anti-skid structure includes an anti-skid long groove 131, a first anti-skid inclined groove 132, and a second anti-skid inclined groove 133. The upper end of the conveyor belt body 13 is provided with a plurality of anti-skid long grooves 131, one side of the anti-skid long groove 131 is provided with a plurality of first anti-skid inclined grooves 132, and the other side of the anti-skid long groove 131 is provided with a plurality of second anti-skid inclined grooves 133. The first anti-skid inclined grooves 132 and the second anti-skid inclined grooves 133 together form an eight-shaped anti-skid groove, which can play a role in anti-skid climbing.
[0033] like Figure 4 and Figure 5 As shown, in one embodiment, a plurality of anti-skid baffles 134 are provided at the upper end of the conveyor belt body 13, and an elastic member 135 is provided between the anti-skid baffles 134 and the conveyor belt body 13. In this way, by providing the anti-skid baffles 134, the anti-skid baffles 134 can exert an external force to block and intercept objects during transportation, thereby improving the anti-skid effect of the conveyor belt body 13 when conveying aluminum profiles; by providing the elastic member 135, the elastic member 135 can be deformed according to the weight and volume of the aluminum profile, thereby changing the angle between the anti-skid baffles 134 and the conveyor belt body 13, thereby improving the flexibility of the conveyor belt body 13.
[0034] like Figure 4 and Figure 5 As shown, in one embodiment, the elastic member 135 and the conveyor belt body 13 as well as the elastic member 135 and the anti-slip baffle 134 are both connected by adhesive bonding.
[0035] like Figures 1-3 As shown, in one embodiment, the first transfer assembly 3 includes a support frame 31, a first sliding seat 32, a second sliding seat 33, a first push plate 34 and an adjustment plate 35. The first sliding seat 32 is slidably assembled on one side of the support frame 31, and the second sliding seat 33 is slidably connected to the other side of the support frame 31. A first driving cylinder 36 is installed on the first sliding seat 32, and the first driving cylinder 36 is transmission-connected to the first push plate 34 and is used to control the lifting movement of the first push plate 34. A second driving cylinder 37 is installed on the second sliding seat 33, and the second driving cylinder 37 is transmission-connected to the adjustment plate 35 and is used to control the lifting movement of the adjustment plate 35. The second sliding seat 33 is located at one end of the support frame 31 close to the rotating frame 41, and the first push plate 34 is used to push the aluminum profile on the conveyor belt onto the rotating frame 41. In this way, by providing a first push plate 34, the first push plate 34 can reciprocate and approach the rotating frame 41 as the first sliding seat 32 slides, thereby pushing the aluminum profile from the conveyor belt into the rotating frame 41; by providing an adjustment plate 35, the lifting movement of the adjustment plate 35 enables it to reciprocate and adjust the distance between it and the aluminum profile in the rotating frame 41, thereby limiting the position of the aluminum profile.
[0036] like Figures 1-3As shown, in one embodiment, the flipping mechanism further includes a connecting frame 6 detachably connected to the support frame 31. Both the flipping assembly 4 and the second transfer assembly 5 are mounted on the connecting frame 6.
[0037] As Figures 1-3 shown, in one embodiment, the flipping assembly 4 includes a driving motor 42, a rotating shaft, and a positioning structure 43 for locking and fixing the rotating frame 41. Both the driving motor 42 and the positioning structure 43 are mounted on the connecting frame 6. The output end of the driving motor 42 is in transmission connection with one end of the rotating shaft, and the other end of the rotating shaft is fixedly connected to the rotating frame 41. A plurality of placing frames for placing aluminum profiles are spaced on the rotating frame 41. By providing the driving motor 42, the driving motor 42 controls the rotation of the rotating frame 41 through the rotating shaft, so as to complete the flipping operation of the aluminum profiles during the rotation of the rotating frame 41.
[0038] As Figures 1-3 shown, in one embodiment, the second transfer assembly 5 includes a sliding member 51, a third driving cylinder 54, a second push plate 52, and a moving guide rail 53 mounted on the connecting frame 6. The third driving cylinder 54 is mounted on the moving guide rail 53 and is used to control the sliding of the sliding member 51 on the moving guide rail 53. The second push plate 52 is arranged on the sliding member 51, and the second push plate 52 is used to push the aluminum profiles in the placing frame back onto the conveyor belt. By providing the third driving cylinder 54, the third driving cylinder 54 drives the movement of the sliding member 51, so that the second push plate 52 can reciprocally approach the conveyor belt, and thus can push the aluminum profiles in the rotating frame 41 back onto the conveyor belt to continue the transportation and loading.
[0039] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope recorded in this specification.
[0040] The above-described embodiments merely represent several implementation manners of the present invention. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the utility model patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the utility model patent shall be subject to the appended claims.
Claims
1. A feeding device for an aluminum profile extruder, characterized in that: include: A feeding mechanism, the feeding mechanism comprises a conveying assembly and two limit ribs, the two limit ribs are respectively installed on both sides of the conveying assembly, the conveying assembly is provided with a conveyor belt for transporting aluminum profiles, and the conveyor belt is provided with an anti-slip structure; The flipping mechanism comprises a first transfer component, a flipping component and a second transfer component, wherein the first transfer component is used to transfer the aluminum profile on the conveyor belt to the flipping component, the flipping component comprises a rotating frame for flipping the aluminum profile, and the second transfer component is used to transfer the aluminum profile on the rotating frame back to the conveyor belt.
2. The aluminum profile extruder feeding device according to claim 1, characterized in that: The conveying assembly includes a loading rack and a mounting platform installed on the loading rack, the two limiting ribs are respectively mounted on both sides of the mounting platform, the two limiting ribs are used to cooperate with the limiting aluminum profile, and the conveyor belt is assembled on the mounting platform.
3. The aluminum profile extruder feeding device according to claim 2, characterized in that: The conveyor belt comprises a conveyor belt body and two connecting belts. The conveyor belt body is provided with a feed end and a discharge end. The two connecting belts are respectively connected at the feed end and the discharge end. The upper surface of the connecting belt is paved with an anti-slip coating.
4. The aluminum profile extruder feeding device according to claim 3, characterized in that: The anti-skid structure includes an anti-skid long groove, a first anti-skid inclined groove and a second anti-skid inclined groove. A plurality of the anti-skid long grooves are arranged at the upper end of the conveyor belt body, a plurality of the first anti-skid inclined grooves are arranged on one side of the anti-skid long groove, and a plurality of the second anti-skid inclined grooves are arranged on the other side of the anti-skid long groove.
5. The aluminum profile extruder feeding device according to claim 4, characterized in that: A plurality of anti-skid baffles are arranged at the upper end of the conveyor belt body, and an elastic member is arranged between the anti-skid baffles and the conveyor belt body.
6. The aluminum profile extruder feeding device according to claim 5, characterized in that: The elastic member and the conveyor belt body as well as the elastic member and the anti-slip baffle are both glued together.
7. The aluminum profile extruder feeding device according to claim 1, characterized in that: The first transfer assembly includes a support frame, a first sliding seat, a second sliding seat, a first push plate and an adjustment plate, the first sliding seat is slidably assembled on one side of the support frame, the second sliding seat is slidably connected to the other side of the support frame, a first driving cylinder is installed on the first sliding seat, the first driving cylinder is transmission-connected to the first push plate and is used to control the lifting and lowering movement of the first push plate, a second driving cylinder is installed on the second sliding seat, the second driving cylinder is transmission-connected to the adjustment plate and is used to control the lifting and lowering movement of the adjustment plate, the second sliding seat is located on one end of the support frame close to the rotating frame, and the first push plate is used to push the aluminum profile on the conveyor belt onto the rotating frame.
8. The aluminum profile extruder feeding device according to claim 7, characterized in that: The flipping mechanism also includes a connecting frame detachably connected to the supporting frame, and the flipping assembly and the second transfer assembly are both mounted on the connecting frame.
9. The aluminum profile extruder feeding device according to claim 8, characterized in that: The flip assembly includes a drive motor, a rotating shaft and a positioning structure for locking and fixing the rotating frame. The drive motor and the positioning structure are both installed on the connecting frame. The output end of the drive motor is transmission-connected to one end of the rotating shaft, and the other end of the rotating shaft is fixedly connected to the rotating frame. A plurality of placement frames for placing aluminum profiles are arranged at intervals on the rotating frame.
10. The aluminum profile extruder feeding device according to claim 9, characterized in that: The second transfer assembly includes a sliding member, a third driving cylinder, a second push plate and a movable guide rail mounted on the connecting frame. The third driving cylinder is installed on the movable guide rail and is used to control the sliding of the sliding member on the movable guide rail. The second push plate is installed on the sliding member, and the second push plate is used to push the aluminum profile in the placement frame back to the conveyor belt.
Citation Information
Patent Citations
Automatic feeding device of extruding machine
CN214022675U