Aluminum material quantitative cutting production transmission line
By using the clamping, traction, and conveyor belt mechanism of the aluminum material quantitative cutting production line, the problems of tedious manual labor and collisions in the aluminum material transportation process are solved, realizing automated and efficient aluminum material transportation and improving processing convenience and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-04-10
AI Technical Summary
In the current aluminum production process, the traditional manual handling and conveying methods are cumbersome and inconvenient, and are prone to causing the aluminum materials to be bumped and damaged, affecting quality and efficiency.
A quantitative aluminum cutting production transmission line was designed, including a clamping and traction mechanism and a conveyor belt mechanism. The clamping components realize automated clamping and traction, and the combined work of the near-transmission group and the far-transmission group achieves efficient transmission of aluminum materials.
It improves the convenience and automation level of aluminum processing, avoids the trouble of manual handling, ensures the stability and smoothness of aluminum materials during transmission, and improves production efficiency.
Smart Images

Figure CN224104797U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to aluminium material transmission technical field, especially relate to a kind of aluminium material ration cutting production transmission line. BACKGROUND
[0002] Aluminium material is a kind of alloy material with aluminium as main component, with its many excellent characteristics, it shows significant advantages in many fields, its density is only about one third of iron or copper, the characteristics of light weight make it extremely convenient in handling and installation process, widely used in weight demanding aerospace and light weight automobile manufacturing industry, surface easily formed dense alumina film endows aluminium material excellent corrosion resistance, makes it become the ideal choice of outdoor facilities such as building curtain wall, door and window, can effectively resist the erosion of adverse environment, good electrical conductivity and thermal conductivity, make aluminium material become the key material of wire and cable and radiator product, in addition, through rolling, extrusion, forging and other processing technology, aluminium material can be made into various shapes and sizes, fully meet the diversified needs of different industries;
[0003] However, in the current production and processing of aluminium material, there are still some problems to be solved, in aluminium material conveying link, especially for the cutting processing of longer aluminium material, traditional manual taking and placing mode exposes many drawbacks, manual taking and placing not only is cumbersome, consumes a lot of manpower and time cost, and when handling longer aluminium material, due to the increase of operation difficulty, it is easy to cause bumping phenomenon in aluminium material conveying process, these bumps will cause aluminium material to produce deformation, seriously affect the quality of aluminium material and subsequent processing and use, it can be seen that the existing aluminium material production conveying and transportation mode has been difficult to adapt to the demand of efficient and high-quality production, and it is urgent to improve the design to improve the automation level and product quality of aluminium material production process. UTILITY MODEL CONTENT
[0004] In view of the problems mentioned in the background art, the utility model aims at providing an aluminium material ration cutting production transmission line to solve the problem of inconvenient and fast conveying and transporting aluminium material during application of prior art.
[0005] The above technical purpose of the utility model is realized by the following technical scheme:
[0006] An aluminium material ration cutting production transmission line, comprising a mounting frame, a frame body is fixedly installed on the top of the mounting frame, guide rollers are rotationally connected in linear arrangement at equal intervals in the inside of the frame body, a clamping traction mechanism is arranged on one side of the frame body, a conveying belt mechanism is arranged on the side of the frame body away from the clamping traction mechanism.
[0007] The conveying belt mechanism comprises a support frame fixedly installed on one side of the frame body away from the clamping traction mechanism, a near conveying group and a far conveying group are fixedly installed on the top of the support frame in linear arrangement at equal intervals, the near conveying group is arranged on one side of the top of the support frame close to the guide roller and is arranged in interlaced insertion with each guide roller, and the far conveying group is arranged on one side of the top of the support frame away from the frame body and is arranged in interlaced insertion with the near conveying group.
[0008] As a preferred technical solution, the near conveying group comprises a first frame body fixedly installed on one side of the top of the support frame close to the guide roller in linear arrangement at equal intervals and arranged in interlaced insertion with each guide roller, a first guide roller rotatably connected to one end of the first frame body close to the guide roller, a second guide roller rotatably connected to one side of the first frame body away from the first guide roller, a near conveying belt in transmission connection between the first guide roller and the second guide roller, a first motor fixedly connected to one side of one end of the first frame body close to the second guide roller, and an output end of the first motor fixedly connected to one side of the first guide roller.
[0009] As a preferred technical solution, the far conveying group comprises a second frame body fixedly installed on one side of the top of the support frame away from the frame body in linear arrangement at equal intervals and arranged in interlaced insertion with the first frame body, third guide rollers rotatably connected to both ends of the second frame body, a far conveying belt in transmission connection between the third guide rollers, a second motor fixedly connected to one side of one end of the second frame body, and an output end of the second motor fixedly connected to one side of the third guide roller.
[0010] As a preferred technical solution, the clamping traction mechanism comprises a rail frame fixedly installed on one side of the frame body away from the conveying belt mechanism, a sliding frame slidingly connected to the top of the rail frame, a clamping assembly fixedly installed on the top of the sliding frame, and a driving assembly fixedly installed on the outer bottom of the sliding frame.
[0011] As a preferred technical solution, the driving assembly comprises a rack and a connecting arm, the connecting arm is fixedly installed on the outer side of the sliding frame, a third motor is fixedly connected to the outer lower end of the connecting arm, a gear is fixedly connected to the output end of the third motor through the connecting arm, the rack is fixedly connected to the outer bottom of the rail frame, and the gear and the rack are in meshing connection.
[0012] As a preferred technical solution, the clamping assembly comprises an electric push rod, the electric push rod is fixedly installed on the top of the sliding frame, an upper clamping arm is fixedly installed on the output end of the electric push rod, a fourth motor is fixedly installed on the upper end of the upper clamping arm, a lower clamping arm is fixedly installed on the output end of the fourth motor, and an anti-skid rubber block is fixedly connected to the bottom of the lower clamping arm.
[0013] Preferably, the bottom outer side of the mounting frame is fixedly provided with a fixing member, and a mounting hole is formed in the middle portion of the fixing member.
[0014] In summary, the utility model mainly has the following beneficial effects:
[0015] Firstly, the clamping traction mechanism is arranged, which can effectively improve the convenience and automation level of aluminum material processing.
[0016] Secondly, the transmission belt mechanism is arranged, so that when the aluminum material moves to the guide roller, the aluminum material is just on the top of the near transmission belt. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is a schematic diagram of the overall structure of the utility model;
[0018] Figure 2 is a schematic diagram of the top view structure of the utility model;
[0019] Figure 3 is a schematic diagram of the bottom view structure of the utility model;
[0020] Figure 4 is a schematic diagram of the transmission belt mechanism structure of the utility model;
[0021] Figure 5 is a schematic diagram of the clamping traction mechanism structure of the utility model;
[0022] Figure 6 is a schematic diagram of the A enlarged structure of the utility model. Figure 3
[0023] The drawings are marked: 1, mounting frame; 2, frame; 3, clamping traction mechanism; 31, rail frame; 32, sliding frame; 33, clamping assembly; 331, electric push rod; 332, upper clamping arm; 333, fourth motor; 334, lower clamping arm; 335, anti-skid rubber block; 34, driving assembly; 341, rack; 342, connecting arm; 343, third motor; 344, gear; 4, guide roller; 5, conveyor belt mechanism; 51, support frame; 52, near conveying group; 521, first frame body; 522, first guide wheel; 523, second guide wheel; 524, near conveying belt; 525, first motor; 53, far conveying group; 531, second frame body; 532, third guide wheel; 533, far conveying belt; 534, second motor; 6, fixing piece; 7, mounting hole. DETAILED DESCRIPTION
[0024] EMBODIMENT
[0025] REFERENCE Figures 1 to 6 The aluminum quantitative cutting production conveying line comprises a mounting frame 1, a frame 2 fixedly installed on the top of the mounting frame 1, guide rollers 4 rotationally connected in a linear array at equal intervals in the interior of the frame 2, a clamping traction mechanism 3 arranged on one side of the frame 2, and a conveyor belt mechanism 5 arranged on the side of the frame 2 away from the clamping traction mechanism 3.
[0026] The conveyor belt mechanism 5 comprises a support frame 51 fixedly installed on the side of the frame 2 away from the clamping traction mechanism 3, a near conveying group 52 and a far conveying group 53 fixedly installed in a linear array at equal intervals on the top of the support frame 51, the near conveying group 52 arranged on the top of the support frame 51 on the side close to the guide rollers 4 and staggered and interpenetrated with the guide rollers 4, and the far conveying group 53 arranged on the top of the support frame 51 on the side away from the frame 2 and staggered and interpenetrated with the near conveying group 52. In the aluminum quantitative cutting production conveying line, the mounting frame 1 provides stable support for the entire device, the frame 2 on the top of the mounting frame 1 is used to bear and guide the transmission of the aluminum material, the guide rollers 4 in the interior of the frame 2 arranged in a linear array at equal intervals can assist the smooth movement of the aluminum material, when the aluminum material is placed on the frame 2, the clamping traction mechanism 3 on one side of the frame 2 starts to work to clamp and pull the aluminum material to move along the guide rollers 4, when the aluminum material moves to the other side of the frame 2, the conveyor belt mechanism 5 plays a role, the support frame 51 is fixed on the side of the frame 2 away from the clamping traction mechanism 3, the near conveying group 52 on the top of the support frame 51 is close to the guide rollers 4 and staggered and interpenetrated with the guide rollers 4, and can efficiently receive the aluminum material transmitted from the guide rollers 4, the relevant driving devices of the near conveying group 52 are started, the near conveying group 52 operates to drive the aluminum material to move to the far conveying group 53, the far conveying group 53 is staggered and interpenetrated with the near conveying group 52, and when the aluminum material reaches the position of the far conveying group 53, the far conveying group 53 is started to further convey the aluminum material to the subsequent processing station, thereby realizing the continuous and automatic transmission of the aluminum material on the production conveying line.
[0027] With reference to Figures 1-4 , the near conveying group 52 comprises a first frame body 521 fixed and arranged in linear array at equal intervals on the top of the support frame 51 near one side of the guide roller 4 and staggered with each guide roller 4, a first guide roller 522 rotatably connected to one end of the first frame body 521 near the guide roller 4, a second guide roller 523 rotatably connected to one side of the first frame body 521 away from the first guide roller 522, a near conveying belt 524 drivingly connected between the first guide roller 522 and the second guide roller 523, a first motor 525 fixedly connected to one side of one end of the first frame body 521 near the second guide roller 523, and the output end of the first motor 525 fixedly connected to one side of the first guide roller 522. The far conveying group 53 comprises a second frame body 531 fixedly installed in linear array at equal intervals on the top of the support frame 51 away from one side of the frame body 2 and staggered with the first frame body 521, third guide rollers 532 rotatably connected to both ends of the second frame body 531, a far conveying belt 533 drivingly connected between the third guide rollers 532, and a second motor 534 fixedly connected to one side of one end of the second frame body 531, and the output end of the second motor 534 fixedly connected to one side of the third guide roller 532. In the conveying belt mechanism 5 of the present aluminum material quantitative cutting production transmission line, the near conveying group 52 and the far conveying group 53 work together to ensure efficient transmission of the aluminum material. The first frame body 521 of the near conveying group 52 is linearly arranged at equal intervals on the top of the support frame 51 near one side of the guide roller 4 and staggered with the guide roller 4. When the aluminum material needs to be transmitted, the first motor 525 is started, the output end of which drives the first guide roller 522 connected thereto to rotate. Since the first guide roller 522 and the second guide roller 523 are drivingly connected through the near conveying belt 524, the rotation of the first guide roller 522 is transmitted through the near conveying belt 524 to drive the second guide roller 523 to rotate synchronously, thereby driving the near conveying belt 524 to circulate, and the aluminum material transmitted from the guide roller 4 is conveyed to the direction of the far conveying group 53 under the friction force of the near conveying belt 524. The second frame body 531 of the far conveying group 53 is linearly arranged at equal intervals on the top of the support frame 51 away from one side of the frame body 2 and staggered with the first frame body 521. When the aluminum material reaches the area of the far conveying group 53, the second motor 534 is started, the output end of which drives the third guide roller 532 to rotate, and the two third guide rollers 532 rotate synchronously to drive the far conveying belt 533 to run, thereby further conveying the aluminum material to the subsequent station to realize relay efficient conveying of the aluminum material on the conveying belt.
[0028] With reference to Figures 5-6The clamping traction mechanism 3 comprises a rail frame 31 fixedly installed on the side of the frame body 2 away from the conveying belt mechanism 5, the top of the rail frame 31 is slidingly connected with a sliding frame 32, the top of the sliding frame 32 is fixedly installed with a clamping assembly 33, the outer bottom of the sliding frame 32 is fixedly installed with a driving assembly 34, the driving assembly 34 comprises a rack 341 and a connecting arm 342, the connecting arm 342 is fixedly installed on the outer side of the sliding frame 32, the outer lower end of the connecting arm 342 is fixedly connected with a third motor 343, the output end of the third motor 343 is fixedly connected with a gear 344 penetrating through the connecting arm 342, the rack 341 is fixedly connected to the outer bottom of the rail frame 31, and the gear 344 and the rack 341 are in meshing connection. In the clamping traction mechanism 3 of the aluminum material quantitative cutting production conveying line, the rail frame 31 is installed on the side of the frame body 2 away from the conveying belt mechanism 5, thereby providing an installation and operation track for the whole mechanism. When the aluminum material needs to be clamped and pulled, the sliding frame 32 slides on the top of the rail frame 31, the clamping assembly 33 on the top of the sliding frame 32 is used for clamping and fixing the aluminum material, and the driving assembly 34 on the outer bottom of the sliding frame 32 provides power for the movement of the sliding frame 32. In the driving assembly 34, the connecting arm 342 is fixed on the outer side of the sliding frame 32, the third motor 343 is installed on the outer lower end of the connecting arm 342, the output end of the third motor 343 penetrates through the connecting arm 342 and is connected with the gear 344, the rack 341 is fixedly installed on the outer bottom of the rail frame 31, and the gear 344 and the rack 341 are in meshing connection. When the third motor 343 is started, the power generated by the operation of the motor makes the gear 344 rotate at high speed. Due to the meshing relationship between the gear 344 and the rack 341, the rotation of the gear 344 is converted into the linear sliding of the sliding frame 32 on the top of the rail frame 31, thereby driving the clamping assembly 33 on the top of the sliding frame 32 to move, achieving the traction of the aluminum material clamped therein. The aluminum material is moved along the rail frame 31 to the guide roller 4 in the frame body 2, so as to be continuously conveyed by the conveying belt mechanism 5.
[0029] Reference Figures 5-6The clamping assembly 33 comprises an electric push rod 331 fixedly installed at the middle of the top of the sliding frame 32, the output end of the electric push rod 331 is fixedly installed with an upper clamping arm 332, the upper end of the upper clamping arm 332 is fixedly installed with a fourth motor 333, the output end of the fourth motor 333 is fixedly installed with a lower clamping arm 334, the bottom of the lower clamping arm 334 is fixedly connected with an antiskid rubber block 335, the bottom outer side of the mounting frame 1 is fixedly installed with a fixing piece 6, the middle part of the fixing piece 6 is provided with a mounting hole 7, the mounting hole 7 is a counterbore, in the clamping assembly 33 of the aluminum material quantitative cutting production transmission line, the electric push rod 331 fixedly installed at the middle of the top of the sliding frame 32 plays a key role, when it is needed to clamp the aluminum material, the electric push rod 331 is started, the output end thereof is elongated or shortened, drives the upper clamping arm 332 connected therewith to move up and down, so as to adjust the distance between the upper and lower clamping arms 334, so as to adapt to aluminum materials of different sizes, the fourth motor 333 at the upper end of the upper clamping arm 332 operates to drive the lower clamping arm 334 to rotate around the output end of the fourth motor 333, so that the lower clamping arm 334 cooperates with the upper clamping arm 332 to complete the precise clamping action of the aluminum material, the antiskid rubber block 335 fixedly installed at the bottom of the lower clamping arm 334 can increase the friction between the aluminum material, so as to ensure the stability of clamping and prevent the aluminum material from slipping during transportation, the counterbore in the middle of the fixing piece 6 at the bottom outer side of the mounting frame 1 is mainly used for stably fixing the whole mounting frame 1 at the working site through bolts and other connecting pieces, the design of the counterbore can make the bolt head flush with the surface of the fixing piece 6, which can not only ensure firm installation, but also not hinder the operation space around the equipment, so as to ensure the stable work of the whole clamping assembly 33.
[0030] Principle and advantages: the device is provided with the clamping traction mechanism 3, so that the aluminum material to be processed can be stably placed between the upper clamping arm 332 and the lower clamping arm 334 during actual operation, the fourth motor 333 is started, the power generated by the operation of the motor drives the upper clamping arm 332 to rotate, along with the gradual downward rotation of the upper clamping arm 332, until the upper clamping arm 332 is in close contact with the lower clamping arm 334, at this time, a stable clamping force is formed between the two, so as to realize the precise positioning and firm clamping of aluminum materials of different specifications.
[0031] When the aluminum material is clamped and positioned, the third motor 343 is started, and the third motor 343 is rotated to drive the gear 344 to rotate at high speed. Since the gear 344 and the rack 341 are connected in meshing mode, under the continuous rotation of the gear 344, the sliding carriage 32 on the rail frame 31 is driven to slide and displace, and the displacement of the sliding carriage 32 further drives the clamping assembly 33, so that the clamped aluminum material can move linearly. In this process, the guide roller 4 plays an auxiliary guiding role to ensure that the long aluminum material can be smoothly and stably moved to the conveyor belt mechanism 5. This automatic clamping and traction conveying design realizes the automatic feeding function of the aluminum material, effectively avoids the tediousness and inconvenience of manual carrying, significantly improves the overall use convenience of the device in the aluminum material processing process, and fully meets the needs of efficient production.
[0032] The device further optimizes the transmission process of the aluminum material by setting the conveyor belt mechanism 5, and provides a more efficient and convenient solution for aluminum material processing. When the clamping assembly 33 and the driving assembly 34 work together to accurately move the aluminum material to the guide roller 4, the aluminum material is located at the top of the near conveyor belt 524. At this time, the first motor 525 is started, and the motor is rotated to drive the first guide wheel 522 to rotate. Since the first guide wheel 522 and the second guide wheel 523 are connected in transmission through the near conveyor belt 524, the rotation of the first guide wheel 522 is transmitted to the second guide wheel 523 through the near conveyor belt 524, realizing the synchronous rotation of the first guide wheel 522 and the second guide wheel 523, and driving the near conveyor belt 524 to rotate in a loop. At the same time, the fourth motor 333 is started to drive the upper clamping arm 332 to rotate upward to release the clamping of the aluminum material. At this time, since the aluminum material is in close contact with the near conveyor belt 524, the rotation of the near conveyor belt 524 generates friction to drive the aluminum material to displace in the horizontal direction.
[0033] When the aluminum material is moved to the far conveyor belt 533 by the near conveyor belt 524, the second motor 534 is started, and the second motor 534 is rotated to drive the third guide wheel 532 to rotate. The two third guide wheels 532 rotate synchronously, and then drive the far conveyor belt 533 to rotate in a loop. The rotation of the far conveyor belt 533 further conveys the aluminum material carried on the top thereof forward. The device successfully transmits the aluminum material from the guide roller 4 by the near conveying group 52, and further conveys the aluminum material by the far conveying group 53. This design of double conveyor belts working together greatly improves the convenience and smoothness of aluminum material transmission, significantly improves the efficiency of the device in the overall use process, and provides strong technical support for aluminum material processing and production.
Claims
1. An aluminum material quantitative cutting production transmission line comprising a mounting frame, characterized in that: The top of the mounting frame is fixedly installed with a frame body, a plurality of guide rollers are linearly arranged at equal intervals in the frame body, one side of the frame body is provided with a clamping traction mechanism, and the side of the frame body away from the clamping traction mechanism is provided with a conveying belt mechanism. The conveying belt mechanism comprises a support frame fixedly installed on the side of the frame body away from the clamping traction mechanism, a plurality of near conveying groups and a plurality of far conveying groups are linearly arranged at equal intervals on the top of the support frame, the near conveying groups are arranged on the side of the top of the support frame close to the guide rollers and staggered with the guide rollers, and the far conveying groups are arranged on the side of the top of the support frame away from the frame body and staggered with the near conveying groups.
2. The production conveying line for the quantitative cutting of aluminum materials according to claim 1, characterized in that: The near conveying groups comprise first frame bodies linearly arranged at equal intervals on the side of the top of the support frame close to the guide rollers and staggered with the guide rollers, a first guide wheel is rotatably connected to the end of each first frame body close to the guide roller, a second guide wheel is rotatably connected to the side of each first frame body away from the first guide wheel, a near conveying belt is in transmission connection between the first guide wheel and the second guide wheel, a first motor is fixedly connected to the side of the end of each first frame body close to the second guide wheel, and the output end of the first motor is fixedly connected to one side of the first guide wheel.
3. The production conveying line for the quantitative cutting of aluminum materials according to claim 2, characterized in that: The far conveying groups comprise second frame bodies linearly arranged at equal intervals on the side of the top of the support frame away from the frame body and staggered with the first frame bodies, a third guide wheel is rotatably connected to each end of each second frame body, a far conveying belt is in transmission connection between the third guide wheels, and a second motor is fixedly connected to the side of one end of each second frame body, and the output end of the second motor is fixedly connected to one side of the third guide wheel.
4. The production conveying line for the quantitative cutting of aluminum materials according to claim 3, characterized in that: The clamping traction mechanism comprises a rail frame fixedly installed on the side of the frame body away from the conveying belt mechanism, a sliding frame is slidably connected to the top of the rail frame, a clamping assembly is fixedly installed on the top of the sliding frame, and a driving assembly is fixedly installed on the bottom of the outer side of the sliding frame.
5. The production conveying line for the quantitative cutting of aluminum materials according to claim 4, characterized in that: The driving assembly comprises a rack and a connecting arm, the connecting arm is fixedly installed on the outer side of the sliding frame, a third motor is fixedly connected to the lower end of the outer side of the connecting arm, a gear is fixedly connected to the output end of the third motor penetrating through the connecting arm, the rack is fixedly connected to the bottom of the outer side of the rail frame, and the gear is in meshing connection with the rack.
6. The production conveying line for the quantitative cutting of aluminum materials according to claim 5, characterized in that: The clamping assembly comprises an electric push rod fixedly installed on the top of the sliding frame, an upper clamping arm is fixedly installed on the output end of the electric push rod, a fourth motor is fixedly installed on the upper end of the upper clamping arm, a lower clamping arm is fixedly installed on the output end of the fourth motor, and an anti-skid rubber block is fixedly connected to the bottom of the lower clamping arm.
7. The production conveying line for the quantitative cutting of aluminum materials according to claim 1, characterized in that: A fixing piece is fixedly installed on the outer side of the bottom of the mounting frame, an installation hole is formed in the middle of the fixing piece, and the installation hole is a counter-sunk hole.