Aluminum bar bearing device with pushing mechanism

By introducing a servo motor-driven screw and a drive cylinder into the aluminum rod feeding device, the problem of low aluminum rod feeding efficiency on small processing equipment was solved, and the effects of automated feeding and continuous feeding were achieved.

CN224226110UActive Publication Date: 2026-05-12HEBEI SHAN SHAN ALUMINUM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI SHAN SHAN ALUMINUM CO LTD
Filing Date
2025-06-23
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

现有的铝棒承料装置在小型加工设备上缺乏推料机构,导致铝棒推料效率低且耗费人力。

Method used

An aluminum rod support device was designed, comprising a support frame, a servo motor, a drive screw, and a drive cylinder. The servo motor drives the screw to move the movable base back and forth. The movable base is equipped with a tray, and the drive cylinder is used to push the aluminum rod in the tray into the processing equipment.

Benefits of technology

The automated feeding of aluminum bars has been achieved, which has improved processing efficiency, reduced manpower consumption, and ensured the stability of continuous feeding by alternating pallets.

✦ Generated by Eureka AI based on patent content.

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Abstract

The aluminum bar bearing device with the pushing mechanism comprises a supporting frame, a driving screw is arranged on the inner side of the supporting frame, a servo motor is arranged at one end of the supporting frame, and the output end of the servo motor is connected with the driving screw; at least two movable bases are arranged on the supporting frame and connected with the driving screw rod, the servo motor drives the driving screw rod to rotate to drive the movable bases to move front and back, a tray is arranged on the upper surfaces of the movable bases and is obliquely arranged, a mounting frame is arranged on one side of the supporting frame, a driving cylinder is arranged on the mounting frame, and the driving cylinder is connected with the driving screw rod. The bottom end of the tray is aligned with the output end of the driving cylinder, and the driving cylinder is used for pushing the aluminum bar in the tray into a feeding port of machining equipment. The aluminum bar in the tray can be pushed into aluminum bar processing equipment through the driving cylinder. And the two movable bases are matched with the trays for alternate use, and after one tray lacks the materials, the other tray can supplement the materials in time.
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Description

Technical Field

[0001] This utility model relates to the technical field of auxiliary equipment for aluminum rod processing, specifically to an aluminum rod support device with a pushing mechanism. Background Technology

[0002] In the modern aluminum product processing industry, aluminum rods are an important raw material, and their conveying and receiving processes on the production line are crucial. Traditional aluminum rod receiving devices are mostly simple in structure, mainly using a fixed support rack to store the aluminum rods. These racks have many problems in practical use, such as being unable to convey materials and being inconvenient to retrieve. Therefore, some new types of aluminum rod receiving devices have emerged on the market.

[0003] For example, utility model patent CN207170758U discloses an aluminum rod storage rack with a tipping device, including a frame, a conveying plate, and a storage box. The conveying plate is mounted on the top of the frame and welded to it. A feeding wheel is installed inside the conveying plate, and a rotating shaft is installed inside the feeding wheel, passing through the center of the feeding wheel. Feeding wheel brackets are mounted at both ends of the rotating shaft, which is movably connected to the feeding wheel brackets. A safety valve is installed on one side of the feeding wheel and is fixedly connected to the conveying plate. A detachable storage box is mounted on the top of the conveying plate. This aluminum rod storage rack with a tipping device can reduce the pressure on the conveying plate through the load-bearing pillars, ensuring the stability of the device. The feeding wheel ensures the accuracy of each feeding operation, while reducing the power required for operation and saving energy consumption. The safety valve can handle dangerous situations such as feeding wheel slippage, minimizing accidental losses.

[0004] The aluminum rod storage rack provided in the aforementioned patent transports aluminum rods via a conveyor plate. However, in practice, some aluminum rod processing requires pushing the rods into the processing equipment. Existing aluminum rod storage racks lack a pushing mechanism, making it impossible to push the rods into the processing equipment. Currently, equipment with aluminum rod pushing mechanisms is mostly large-scale equipment, which has a high purchase cost. Small aluminum rod processing equipment often relies on manual pushing, which is not only inefficient but also labor-intensive. Therefore, there is an urgent need in the market for a material support rack that can be installed on small aluminum rod processing equipment and has a pushing mechanism. Utility Model Content

[0005] The purpose of this utility model is to provide an aluminum rod support device with a pushing mechanism, which aims to improve the problem that the existing aluminum rod support racks used in small aluminum rod processing equipment do not have a pushing mechanism, which means that pushing still needs to be done manually by the staff, resulting in low aluminum rod processing efficiency.

[0006] This utility model is implemented as follows:

[0007] A material-bearing device for aluminum bars with a pushing mechanism includes a support frame, a drive screw on the inner side of the support frame, a servo motor at one end of the support frame, and an output end of the servo motor connected to the drive screw; at least two movable bases are provided on the support frame, and the movable bases are connected to the drive screw; the servo motor drives the drive screw to rotate, thereby moving the movable bases back and forth; a tray is provided on the upper surface of the movable base, and the tray is inclined; a mounting frame is provided on one side of the support frame, and a drive cylinder is provided on the mounting frame; the bottom end of the tray is aligned with the output end of the drive cylinder; the drive cylinder is used to push the aluminum bars inside the tray into the inlet of the processing equipment.

[0008] Preferably, the support frame has symmetrical guide grooves on both sides, and bearings are provided at both the front and rear ends of the support frame; the bottom surface of the support frame has symmetrical fixing feet on both sides, the fixing feet are L-shaped, and the fixing feet are provided with multiple fixing holes.

[0009] Preferably, the drive screw is connected to shafts at both ends, the shafts are interference-fitted with bearings, and the end of the drive screw facing the servo motor is provided with a drive slot; the servo motor is provided with two bundles of connecting wires on its side, and each bundle of connecting wires is provided with a connecting plug at its end.

[0010] Preferably, the servo motor has multiple mounting feet at one end of the support frame, and each mounting foot has a mounting hole. The servo motor is fixed to the servo motor by bolts passing through the mounting holes. The output end of the servo motor has a drive shaft, which is connected to a drive slot.

[0011] Preferably, the bottom surface of the movable base is symmetrically provided with card plates on both sides, and the bottom surface of the movable base is provided with rollers aligned with the upper surface of the support frame. The card plates are provided with multiple side wheels aligned with the guide grooves, and the side wheels are inserted into the inner side of the guide grooves. The rear end of the upper surface of the movable base is provided with a first connecting platform, and the front end is provided with a second connecting platform. The upper surfaces of the first and second connecting platforms are both provided with limiting slots.

[0012] Preferably, the bottom of the tray is provided with an insert plate at the position aligned with the limiting slot, the insert plate is inserted into the limiting slot, the two sides of the tray are provided with side baffles, and the bottom of the tray is provided with a support plate.

[0013] Preferably, the mounting bracket has a triangular structure, and the bottom end of the mounting bracket is provided with a mounting joint. The end of the mounting joint facing the fixing foot is provided with a plurality of first studs. The first studs pass through the fixing foot, and the end of the first stud passing through the fixing foot is provided with a pressure cap. The pressure cap is pressed against the fixing foot. The top end of the mounting bracket away from the support frame is provided with a mounting plate, and the mounting plate is provided with a through hole in the middle.

[0014] Preferably, the drive cylinder has a second stud at one end facing the mounting plate, the second stud passes through a through hole, and a nut is provided at the end of the second stud passing through the through hole, the nut being pressed against the mounting plate; the output end of the drive cylinder has a telescopic rod.

[0015] Preferably, it also includes a pressure fitting, wherein the end of the pressure fitting facing the telescopic rod is provided with a hexagon, the middle of the hexagon is provided with a third stud, and the end of the telescopic rod is provided with an adapter, the adapter being threadedly connected to the third stud.

[0016] Preferably, it also includes a limiting pressure plate, the limiting pressure plate is L-shaped, the bottom surface of the limiting pressure plate is provided with an adjusting plate, the middle part of the side baffle is provided with an adjusting groove, and the top of the outer side of the side baffle is provided with a set screw, the adjusting plate is inserted into the adjusting groove, and the set screw abuts against the adjusting plate.

[0017] Compared with the prior art, the beneficial effects of this utility model are:

[0018] 1. This utility model uses a support frame, servo motor, and drive screw to move the mobile base back and forth. This allows for the alternating use of two mobile bases. Each mobile base has a tray on top, which holds aluminum bars. A drive cylinder is located on the side of the support frame, pushing the aluminum bars from the tray into the aluminum bar processing equipment. Furthermore, the alternating use of the two mobile bases and trays ensures that if one tray runs out of material, the other can be replenished promptly, facilitating efficient and convenient feeding of the aluminum bar processing equipment.

[0019] 2. This utility model provides a pressure fitting at the output end of the drive cylinder, which can prevent wear on the output end of the drive cylinder and facilitate replacement of the pressure fitting according to usage requirements.

[0020] 3. This utility model uses limiting pressure plates installed on both sides of the tray to stabilize the aluminum bars inside the tray, ensuring that the aluminum bars can fall in sequence and that after one aluminum bar is pushed away, another aluminum bar can be smoothly replaced. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0022] Figure 2 This is a structural schematic diagram of the support frame of this utility model;

[0023] Figure 3 This is a schematic diagram of the structure of the drive screw of this utility model;

[0024] Figure 4 This is a schematic diagram of the servo motor of this utility model;

[0025] Figure 5This is a schematic diagram of the structure of the movable base of this utility model;

[0026] Figure 6 This is a schematic diagram of the structure of the tray of this utility model;

[0027] Figure 7 This is a structural schematic diagram of the mounting bracket of this utility model;

[0028] Figure 8 This is a schematic diagram of the structure of the drive cylinder of this utility model;

[0029] Figure 9 This is a schematic diagram of the pressure-applying connector of this utility model;

[0030] Figure 10 This is a schematic diagram of the limiting pressure plate of this utility model.

[0031] In the diagram: 1. Support frame; 11. Guide groove; 12. Bearing; 13. Fixing foot; 14. Fixing hole; 2. Drive screw; 21. Connecting shaft; 22. Drive slot; 3. Servo motor; 31. Connecting cable; 32. Connecting plug; 33. Mounting foot; 34. Mounting hole; 35. Drive shaft; 4. Movable base; 41. First connecting platform; 42. Second connecting platform; 43. Limiting slot; 44. Clamping plate; 45. Roller; 46. 5. Side wheel; 51. Tray; 52. Pallet; 53. Side baffle; 54. Adjustment groove; 55. Set screw; 66. Insert plate; 77. Mounting bracket; 68. Mounting connector; 69. First stud; 60. Pressure cap; 61. Mounting plate; 62. Through hole; 70. Drive cylinder; 71. Second stud; 72. Nut; 73. Telescopic rod; 74. Adapter; 80. Pressure connector; 81. Hexagonal body; 82. Third stud; 91. Limiting pressure plate; 92. Adjustment plate. Detailed Implementation

[0032] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0033] The following description, in conjunction with the accompanying drawings and specific embodiments, provides further details:

[0034] Example 1

[0035] like Figure 1As shown, an aluminum rod supporting device with a pushing mechanism includes a support frame 1, a drive screw 2 inside the support frame 1, and a servo motor 3 at one end of the support frame 1. The output end of the servo motor 3 is connected to the drive screw 2. At least two movable bases 4 are provided on the support frame 1, and the movable bases 4 are connected to the drive screw 2. The servo motor 3 drives the drive screw 2 to rotate, thereby moving the movable bases 4 back and forth. This structure facilitates the movable bases 4 to move back and forth along the support frame 1, making it convenient to move the aluminum rods back and forth. This allows aluminum rods on one movable base 4 to be replenished on another movable tray 5 in a timely manner after the aluminum rods on that movable base 4 are used up. A tray 5 is provided on the upper surface of the movable base 4. The tray 5 is inclined, which facilitates the automatic sliding of the aluminum rods inside the tray 5 to the bottom of the tray 5. A mounting frame 6 is provided on one side of the support frame 1, and a drive cylinder 7 is provided on the mounting frame 6. The mounting frame 6 facilitates the installation of the drive cylinder 7, which pushes the aluminum rods. The drive cylinder 7 can be one of a pneumatic cylinder, an electric cylinder, or a hydraulic cylinder. The bottom of the tray 5 is aligned with the output end of the drive cylinder 7, which is used to push the aluminum rod inside the tray 5 into the feed port of the processing equipment.

[0036] like Figure 2 As shown, the support frame 1 has symmetrical guide grooves 11 on both sides. The guide grooves 11 facilitate the guidance of the movable base 4, allowing the movable base 4 to move back and forth along the support frame 1. Bearings 12 are provided at both the front and rear ends of the support frame 1; the bearings 12 facilitate rotational connection with the drive screw 2. Fixed feet 13 are symmetrically provided on both sides of the bottom surface of the support frame 1. The fixed feet 13 are L-shaped and have multiple fixing holes 14. The cooperation between the fixed feet 13 and the fixing holes 14 facilitates the fixing of the support frame 1 with bolts, ensuring the stable use of the support frame 1.

[0037] like Figure 3 As shown, the drive screw 2 is connected to shafts 21 at both ends, and the shafts 21 are interference-fitted with bearings 12 to facilitate the rotation of the drive screw 2. The end of the drive screw 2 facing the servo motor 3 has a drive slot 22, which facilitates the connection between the output end of the servo motor 3 and the drive screw 2, allowing the servo motor 3 to drive the drive screw 2 to rotate.

[0038] like Figure 4 As shown, the servo motor 3 has multiple mounting feet 33 at one end that is attached to the support frame 1. Each mounting foot 33 has mounting holes 34. The servo motor 3 is fixed to the support frame 1 by bolts passing through the mounting holes 34. This structure ensures that the servo motor 3 is stably fixed to the support frame 1. The output end of the servo motor 3 has a drive shaft 35, which is connected to the drive slot 22, facilitating the servo motor 3 to drive the drive screw 2. Two connecting wires 31 are provided on the side of the servo motor 3, each with a connecting plug 32 at its end; these are used for powering the servo motor 3 and transmitting signals.

[0039] like Figure 5 As shown, the movable base 4 has symmetrically arranged locking plates 44 on both sides of its bottom surface, and rollers 45 are provided on the bottom surface of the movable base 4 aligned with the upper surface of the support frame 1. Multiple side wheels 46 are provided on the locking plates 44 aligned with the guide groove 11, and the side wheels 46 are inserted into the inner side of the guide groove 11. The movable base 4 and rollers 45 facilitate the back-and-forth movement of the movable base 4 along the support frame 1, and the side plates, in conjunction with the side wheels 46, facilitate the flexible movement and use of the movable base 4. A first connecting platform 41 is provided at the rear end of the upper surface of the movable base 4, and a second connecting platform 42 is provided at the front end. Limiting slots 43 are provided on the upper surfaces of both the first connecting platform 41 and the second connecting platform 42. The first connecting platform 41 and the second connecting platform 42 facilitate the installation of the tray 5, and allow for the tilting and use of the tray 5.

[0040] like Figure 6 As shown, a plate 55 is provided on the bottom of the tray 5 at the position aligned with the limiting slot 43. The plate 55 is inserted into the limiting slot 43, which facilitates the installation and removal of the tray 5 and also ensures stable use of the tray 5. Side baffles 52 are provided on both sides of the tray 5 to block the aluminum rod. A support plate 51 is provided at the bottom of the tray 5 to support the aluminum rod from the bottom of the tray 5.

[0041] like Figure 7 As shown, the mounting bracket 6 has a triangular structure. The bottom of the mounting bracket 6 has a mounting connector 61. At the end of the mounting connector 61 facing the fixing foot 13, there are multiple first studs 62. The first studs 62 pass through the fixing foot 13, and at the end of the first studs 62 passing through the fixing foot 13, there is a pressure cap 63, which presses firmly onto the fixing foot 13. This structure facilitates the installation of the mounting bracket 6 onto the fixing foot 13, ensuring stable installation and use of the mounting bracket 6. At the top of the mounting bracket 6, away from the support frame 1, there is a mounting plate 64. The mounting plate 64 has a through hole 65 in the middle. The mounting plate 64 and the through hole 65 facilitate the fixing of the drive cylinder 7.

[0042] like Figure 8 As shown, the end of the drive cylinder 7 facing the mounting plate 64 is provided with a second stud 71, which passes through the through hole 65. A nut 72 is provided at the end of the second stud 71 passing through the through hole 65, and the nut 72 is pressed against the mounting plate 64. This structure facilitates the stable installation of the drive cylinder 7 on the mounting bracket 6, ensuring stable operation of the drive cylinder 7. The output end of the drive cylinder 7 is provided with a telescopic rod 73, which facilitates the pushing of the aluminum rod, making it easy to disassemble and use.

[0043] Example 2

[0044] like Figure 1As shown, an aluminum rod supporting device with a pushing mechanism includes a support frame 1, a drive screw 2 inside the support frame 1, and a servo motor 3 at one end of the support frame 1. The output end of the servo motor 3 is connected to the drive screw 2. At least two movable bases 4 are provided on the support frame 1, and the movable bases 4 are connected to the drive screw 2. The servo motor 3 drives the drive screw 2 to rotate, thereby moving the movable bases 4 back and forth. This structure facilitates the movable bases 4 to move back and forth along the support frame 1, making it convenient to move the aluminum rods back and forth. This allows aluminum rods on one movable base 4 to be replenished on another movable tray 5 in a timely manner after the aluminum rods on that movable base 4 are used up. A tray 5 is provided on the upper surface of the movable base 4. The tray 5 is inclined, which facilitates the automatic sliding of the aluminum rods inside the tray 5 to the bottom of the tray 5. A mounting frame 6 is provided on one side of the support frame 1, and a drive cylinder 7 is provided on the mounting frame 6. The mounting frame 6 facilitates the installation of the drive cylinder 7, which pushes the aluminum rods. The drive cylinder 7 can be one of a pneumatic cylinder, an electric cylinder, or a hydraulic cylinder. The bottom of the tray 5 is aligned with the output end of the drive cylinder 7, which is used to push the aluminum rod inside the tray 5 into the feed port of the processing equipment.

[0045] like Figure 2 As shown, the support frame 1 has symmetrical guide grooves 11 on both sides. The guide grooves 11 facilitate the guidance of the movable base 4, allowing the movable base 4 to move back and forth along the support frame 1. Bearings 12 are provided at both the front and rear ends of the support frame 1; the bearings 12 facilitate rotational connection with the drive screw 2. Fixed feet 13 are symmetrically provided on both sides of the bottom surface of the support frame 1. The fixed feet 13 are L-shaped and have multiple fixing holes 14. The cooperation between the fixed feet 13 and the fixing holes 14 facilitates the fixing of the support frame 1 with bolts, ensuring the stable use of the support frame 1.

[0046] like Figure 3 As shown, the drive screw 2 is connected to shafts 21 at both ends, and the shafts 21 are interference-fitted with bearings 12 to facilitate the rotation of the drive screw 2. The end of the drive screw 2 facing the servo motor 3 has a drive slot 22, which facilitates the connection between the output end of the servo motor 3 and the drive screw 2, allowing the servo motor 3 to drive the drive screw 2 to rotate.

[0047] like Figure 4 As shown, the servo motor 3 has multiple mounting feet 33 at one end that is attached to the support frame 1. Each mounting foot 33 has mounting holes 34. The servo motor 3 is fixed to the support frame 1 by bolts passing through the mounting holes 34. This structure ensures that the servo motor 3 is stably fixed to the support frame 1. The output end of the servo motor 3 has a drive shaft 35, which is connected to the drive slot 22, facilitating the servo motor 3 to drive the drive screw 2. Two connecting wires 31 are provided on the side of the servo motor 3, each with a connecting plug 32 at its end; these are used for powering the servo motor 3 and transmitting signals.

[0048] like Figure 5 As shown, the movable base 4 has symmetrically arranged locking plates 44 on both sides of its bottom surface, and rollers 45 are provided on the bottom surface of the movable base 4 aligned with the upper surface of the support frame 1. Multiple side wheels 46 are provided on the locking plates 44 aligned with the guide groove 11, and the side wheels 46 are inserted into the inner side of the guide groove 11. The movable base 4 and rollers 45 facilitate the back-and-forth movement of the movable base 4 along the support frame 1, and the side plates, in conjunction with the side wheels 46, facilitate the flexible movement and use of the movable base 4. A first connecting platform 41 is provided at the rear end of the upper surface of the movable base 4, and a second connecting platform 42 is provided at the front end. Limiting slots 43 are provided on the upper surfaces of both the first connecting platform 41 and the second connecting platform 42. The first connecting platform 41 and the second connecting platform 42 facilitate the installation of the tray 5, and allow for the tilting and use of the tray 5.

[0049] like Figure 6 As shown, a plate 55 is provided on the bottom of the tray 5 at the position aligned with the limiting slot 43. The plate 55 is inserted into the limiting slot 43, which facilitates the installation and removal of the tray 5 and also ensures stable use of the tray 5. Side baffles 52 are provided on both sides of the tray 5 to block the aluminum rod. A support plate 51 is provided at the bottom of the tray 5 to support the aluminum rod from the bottom of the tray 5.

[0050] like Figure 7 As shown, the mounting bracket 6 has a triangular structure. The bottom of the mounting bracket 6 has a mounting connector 61. At the end of the mounting connector 61 facing the fixing foot 13, there are multiple first studs 62. The first studs 62 pass through the fixing foot 13, and at the end of the first studs 62 passing through the fixing foot 13, there is a pressure cap 63, which presses firmly onto the fixing foot 13. This structure facilitates the installation of the mounting bracket 6 onto the fixing foot 13, ensuring stable installation and use of the mounting bracket 6. At the top of the mounting bracket 6, away from the support frame 1, there is a mounting plate 64. The mounting plate 64 has a through hole 65 in the middle. The mounting plate 64 and the through hole 65 facilitate the fixing of the drive cylinder 7.

[0051] like Figure 8 As shown, the end of the drive cylinder 7 facing the mounting plate 64 is provided with a second stud 71, which passes through the through hole 65. A nut 72 is provided at the end of the second stud 71 passing through the through hole 65, and the nut 72 is pressed against the mounting plate 64. This structure facilitates the stable installation of the drive cylinder 7 on the mounting bracket 6, ensuring stable operation of the drive cylinder 7. The output end of the drive cylinder 7 is provided with a telescopic rod 73, which facilitates the pushing of the aluminum rod, making it easy to disassemble and use.

[0052] like Figure 1 , Figure 8 and Figure 9As shown, it also includes a pressure-applying connector 8. One end of the pressure-applying connector 8 facing the telescopic rod 73 has a hexagonal body 81. The hexagonal body 81 facilitates the flexible assembly and disassembly of the pressure-applying connector 8, making it easy to use. A third stud 82 is located in the middle of the hexagonal body 81, and an adapter 74 is located at the end of the telescopic rod 73. The adapter 74 is threadedly connected to the third stud 82. This structure facilitates a stable connection between the pressure-applying connector 8 and the telescopic rod 73.

[0053] Example 3

[0054] like Figure 1 As shown, an aluminum rod supporting device with a pushing mechanism includes a support frame 1, a drive screw 2 inside the support frame 1, and a servo motor 3 at one end of the support frame 1. The output end of the servo motor 3 is connected to the drive screw 2. At least two movable bases 4 are provided on the support frame 1, and the movable bases 4 are connected to the drive screw 2. The servo motor 3 drives the drive screw 2 to rotate, thereby moving the movable bases 4 back and forth. This structure facilitates the movable bases 4 to move back and forth along the support frame 1, making it convenient to move the aluminum rods back and forth. This allows aluminum rods on one movable base 4 to be replenished on another movable tray 5 in a timely manner after the aluminum rods on that movable base 4 are used up. A tray 5 is provided on the upper surface of the movable base 4. The tray 5 is inclined, which facilitates the automatic sliding of the aluminum rods inside the tray 5 to the bottom of the tray 5. A mounting frame 6 is provided on one side of the support frame 1, and a drive cylinder 7 is provided on the mounting frame 6. The mounting frame 6 facilitates the installation of the drive cylinder 7, which pushes the aluminum rods. The drive cylinder 7 can be one of a pneumatic cylinder, an electric cylinder, or a hydraulic cylinder. The bottom of the tray 5 is aligned with the output end of the drive cylinder 7, which is used to push the aluminum rod inside the tray 5 into the feed port of the processing equipment.

[0055] like Figure 2 As shown, the support frame 1 has symmetrical guide grooves 11 on both sides. The guide grooves 11 facilitate the guidance of the movable base 4, allowing the movable base 4 to move back and forth along the support frame 1. Bearings 12 are provided at both the front and rear ends of the support frame 1; the bearings 12 facilitate rotational connection with the drive screw 2. Fixed feet 13 are symmetrically provided on both sides of the bottom surface of the support frame 1. The fixed feet 13 are L-shaped and have multiple fixing holes 14. The cooperation between the fixed feet 13 and the fixing holes 14 facilitates the fixing of the support frame 1 with bolts, ensuring the stable use of the support frame 1.

[0056] like Figure 3 As shown, the drive screw 2 is connected to shafts 21 at both ends, and the shafts 21 are interference-fitted with bearings 12 to facilitate the rotation of the drive screw 2. The end of the drive screw 2 facing the servo motor 3 has a drive slot 22, which facilitates the connection between the output end of the servo motor 3 and the drive screw 2, allowing the servo motor 3 to drive the drive screw 2 to rotate.

[0057] like Figure 4As shown, the servo motor 3 has multiple mounting feet 33 at one end that is attached to the support frame 1. Each mounting foot 33 has mounting holes 34. The servo motor 3 is fixed to the support frame 1 by bolts passing through the mounting holes 34. This structure ensures that the servo motor 3 is stably fixed to the support frame 1. The output end of the servo motor 3 has a drive shaft 35, which is connected to the drive slot 22, facilitating the servo motor 3 to drive the drive screw 2. Two connecting wires 31 are provided on the side of the servo motor 3, each with a connecting plug 32 at its end; these are used for powering the servo motor 3 and transmitting signals.

[0058] like Figure 5 As shown, the movable base 4 has symmetrically arranged locking plates 44 on both sides of its bottom surface, and rollers 45 are provided on the bottom surface of the movable base 4 aligned with the upper surface of the support frame 1. Multiple side wheels 46 are provided on the locking plates 44 aligned with the guide groove 11, and the side wheels 46 are inserted into the inner side of the guide groove 11. The movable base 4 and rollers 45 facilitate the back-and-forth movement of the movable base 4 along the support frame 1, and the side plates, in conjunction with the side wheels 46, facilitate the flexible movement and use of the movable base 4. A first connecting platform 41 is provided at the rear end of the upper surface of the movable base 4, and a second connecting platform 42 is provided at the front end. Limiting slots 43 are provided on the upper surfaces of both the first connecting platform 41 and the second connecting platform 42. The first connecting platform 41 and the second connecting platform 42 facilitate the installation of the tray 5, and allow for the tilting and use of the tray 5.

[0059] like Figure 6 As shown, a plate 55 is provided on the bottom of the tray 5 at the position aligned with the limiting slot 43. The plate 55 is inserted into the limiting slot 43, which facilitates the installation and removal of the tray 5 and also ensures stable use of the tray 5. Side baffles 52 are provided on both sides of the tray 5 to block the aluminum rod. A support plate 51 is provided at the bottom of the tray 5 to support the aluminum rod from the bottom of the tray 5.

[0060] like Figure 7 As shown, the mounting bracket 6 has a triangular structure. The bottom of the mounting bracket 6 has a mounting connector 61. At the end of the mounting connector 61 facing the fixing foot 13, there are multiple first studs 62. The first studs 62 pass through the fixing foot 13, and at the end of the first studs 62 passing through the fixing foot 13, there is a pressure cap 63, which presses firmly onto the fixing foot 13. This structure facilitates the installation of the mounting bracket 6 onto the fixing foot 13, ensuring stable installation and use of the mounting bracket 6. At the top of the mounting bracket 6, away from the support frame 1, there is a mounting plate 64. The mounting plate 64 has a through hole 65 in the middle. The mounting plate 64 and the through hole 65 facilitate the fixing of the drive cylinder 7.

[0061] like Figure 8As shown, the end of the drive cylinder 7 facing the mounting plate 64 is provided with a second stud 71, which passes through the through hole 65. A nut 72 is provided at the end of the second stud 71 passing through the through hole 65, and the nut 72 is pressed against the mounting plate 64. This structure facilitates the stable installation of the drive cylinder 7 on the mounting bracket 6, ensuring stable operation of the drive cylinder 7. The output end of the drive cylinder 7 is provided with a telescopic rod 73, which facilitates the pushing of the aluminum rod, making it easy to disassemble and use.

[0062] like Figure 1 , Figure 8 and Figure 9 As shown, it also includes a pressure-applying connector 8. One end of the pressure-applying connector 8 facing the telescopic rod 73 has a hexagonal body 81. The hexagonal body 81 facilitates the flexible assembly and disassembly of the pressure-applying connector 8, making it easy to use. A third stud 82 is located in the middle of the hexagonal body 81, and an adapter 74 is located at the end of the telescopic rod 73. The adapter 74 is threadedly connected to the third stud 82. This structure facilitates a stable connection between the pressure-applying connector 8 and the telescopic rod 73. The pressure-applying connector 8 can prevent wear on the output end of the drive cylinder 7 and also facilitates replacement of the pressure-applying connector 8 according to usage requirements.

[0063] like Figure 1 , Figure 6 and Figure 9 As shown, it also includes a limiting pressure plate 9, which is L-shaped. The bottom surface of the limiting pressure plate 9 has an adjusting plate 91, and the middle of the side baffle 52 has an adjusting groove 53. The limiting pressure plate 9 is used to conveniently limit the aluminum rod, ensuring its stability within the tray 5. The height adjustment of the limiting pressure plate 9 in conjunction with the adjusting plate 91 facilitates the limiting of aluminum rods of different thicknesses. Furthermore, the top of the outer side of the side baffle 52 has a set screw 54. The adjusting plate 91 is inserted into the adjusting groove 53, and the set screw 54 abuts against the adjusting plate 91; the set screw 54 is used to conveniently fix the position of the limiting pressure plate 9.

[0064] Working Principle: During use, the entire device is installed at the inlet of the aluminum rod processing equipment according to the requirements, ensuring the output end of the drive cylinder 7 is aligned with the aluminum rod inlet. The aluminum rod is then loaded into the inner side of the tray 5, and the servo motor 3 drives the moving base 4 and tray 5 to move, aligning the bottom of tray 5 with the output end of the drive cylinder 7. The distance the servo motor 3 moves with each rotation of the moving base 4 is set based on the distance between the two connected moving bases 4. This ensures that once the aluminum rods in the tray 5 above one moving base 4 are used up, the drive servo motor 3 can quickly replenish the position of the aluminum rods on the other moving base 4, guaranteeing uninterrupted feeding and facilitating efficient aluminum rod processing. The operator simply needs to reload the empty tray 5 with aluminum rods; the operation is simple and convenient.

[0065] Working Principle: During use, the support frame 1, in conjunction with the servo motor 3 and drive screw 2, can move the movable base 4 back and forth according to the usage requirements. This allows the two movable bases 4 to be used alternately. The top of each movable base 4 is equipped with a tray 5, which holds aluminum rods. A drive cylinder 7 is located on the side of the support frame 1, which pushes the aluminum rods from the tray 5 into the aluminum rod processing equipment. Furthermore, the two movable bases 4 and trays 5 are used alternately; if one tray 5 runs out of material, the other tray 5 can be replenished promptly, thus facilitating efficient feeding of the aluminum rod processing equipment.

[0066] The above are merely preferred embodiments of this utility model and are not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. An aluminum bar supporting device having a pushing mechanism, comprising a supporting frame (1), characterized in that, The support frame (1) is provided with a drive screw (2) on its inner side. One end of the support frame (1) is provided with a servo motor (3). The output end of the servo motor (3) is connected to the drive screw (2). At least two movable bases (4) are provided on the support frame (1). The movable bases (4) are connected to the drive screw (2). The servo motor (3) drives the drive screw (2) to rotate and drive the movable bases (4) to move back and forth. A tray (5) is provided on the upper surface of the movable base (4). The tray (5) is tilted. A mounting frame (6) is provided on one side of the support frame (1). A drive cylinder (7) is provided on the mounting frame (6). The bottom end of the tray (5) is aligned with the output end of the drive cylinder (7). The drive cylinder (7) is used to push the aluminum rod inside the tray (5) into the feed port of the processing equipment.

2. The aluminum rod supporting device with a pushing mechanism according to claim 1, characterized in that, The support frame (1) has symmetrical guide grooves (11) on both sides, and bearings (12) are provided at both the front and rear ends of the support frame (1); the support frame (1) has symmetrical fixed feet (13) on both sides of the bottom surface, the fixed feet (13) are L-shaped, and the fixed feet (13) have multiple fixing holes (14).

3. The aluminum rod bearing device with a pushing mechanism according to claim 2, characterized in that, The drive screw (2) is connected to shafts (21) at both ends. The shafts (21) are interference-fitted with bearings (12). The drive screw (2) has a drive slot (22) at one end facing the servo motor (3). The servo motor (3) has two bundles of connecting lines (31) on its side. Each bundle of connecting lines (31) has a connecting plug (32) at its end.

4. The aluminum rod bearing device with a pushing mechanism according to claim 3, characterized in that, The servo motor (3) has multiple mounting feet (33) at one end that is attached to the support frame (1). The mounting feet (33) have mounting holes (34). The servo motor (3) is fixed to the servo motor (3) by bolts passing through the mounting holes (34). The output end of the servo motor (3) has a drive shaft (35). The drive shaft (35) is connected to the drive slot (22).

5. The aluminum rod supporting device with a pushing mechanism according to claim 1, characterized in that, The movable base (4) has symmetrically arranged card plates (44) on both sides of its bottom surface, and the bottom surface of the movable base (4) is aligned with the upper surface of the support frame (1) and is provided with rollers (45). The card plates (44) are aligned with the guide groove (11) and are provided with multiple side wheels (46). The side wheels (46) are inserted into the inside of the guide groove (11). The rear end of the upper surface of the movable base (4) is provided with a first connecting platform (41) and the front end is provided with a second connecting platform (42). The upper surfaces of the first connecting platform (41) and the second connecting platform (42) are both provided with limiting slots (43).

6. The aluminum rod bearing device with a pushing mechanism according to claim 5, characterized in that, The bottom of the tray (5) is provided with an insert plate (55) aligned with the limiting slot (43), the insert plate (55) is inserted into the limiting slot (43), the tray (5) is provided with side baffles (52) on both sides, and the bottom of the tray (5) is provided with a support plate (51).

7. An aluminum rod bearing device with a pushing mechanism according to claim 2, characterized in that, The mounting bracket (6) has a triangular structure. The bottom end of the mounting bracket (6) is provided with a mounting joint (61). The end of the mounting joint (61) facing the fixed foot (13) is provided with a plurality of first studs (62). The first studs (62) pass through the fixed foot (13), and the end of the first studs (62) passing through the fixed foot (13) is provided with a pressure cap (63). The pressure cap (63) is pressed tightly on the fixed foot (13). The top end of the mounting bracket (6) away from the support frame (1) is provided with a mounting plate (64). The mounting plate (64) is provided with a through hole (65) in the middle.

8. An aluminum rod bearing device with a pushing mechanism according to claim 7, characterized in that, The drive cylinder (7) has a second stud (71) at one end facing the mounting plate (64). The second stud (71) passes through the through hole (65), and the end of the second stud (71) passing through the through hole (65) is provided with a nut (72). The nut (72) is pressed against the mounting plate (64). The output end of the drive cylinder (7) is provided with a telescopic rod (73).

9. An aluminum rod bearing device with a pushing mechanism according to claim 8, characterized in that, It also includes a pressure fitting (8), which has a hexagonal body (81) at one end facing the telescopic rod (73), a third stud (82) in the middle of the hexagonal body (81), and an adapter (74) at the end of the telescopic rod (73), which is threadedly connected to the third stud (82).

10. An aluminum rod bearing device with a pushing mechanism according to claim 6, characterized in that, It also includes a limiting pressure plate (9), which is L-shaped. The bottom surface of the limiting pressure plate (9) is provided with an adjusting plate (91). The middle part of the side baffle (52) is provided with an adjusting groove (53), and the outer side of the side baffle (52) is provided with a set screw (54). The adjusting plate (91) is inserted into the inner side of the adjusting groove (53), and the set screw (54) abuts against the adjusting plate (91).