Aluminum rod transportation and laminating equipment
By designing aluminum rod transportation and coating equipment, the cooperation of reinforcement mechanism and feeding mechanism is used to solve the problem of incomplete coating at both ends of aluminum rods, the stability and protection during transportation are improved, and driving safety and smooth palletization are ensured.
Patent Information
- Application Number
- CN202510238480.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2045-03-03
AI Technical Summary
When the existing rod coating machines coat aluminum rods, the two ends of the aluminum rod cannot be effectively coated and reinforced, which affects the driving safety and subsequent palletization during transport of aluminum rod bundles.
An aluminum rod transportation coating equipment is designed, including a roller conveyor table, a coating machine, a reinforcement mechanism and a feeding mechanism. The reinforcement mechanism completes the molding and reinforcement of the aluminum rod bundle through the cooperation of the double-headed screw and the shaping claw; the feeding mechanism ensures the correct installation and stability of the reinforcement through the cooperation of the electric push rod and the positioning plate.
It effectively solves the problem of incomplete coating on both ends of aluminum rods, improves the stability and protection of aluminum rod bundles during transportation, and ensures driving safety and smooth palletization.
Smart Images

Figure CN119705956B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of rod coating equipment, and in particular to an aluminum rod transportation coating equipment. Background Art
[0002] Aluminum rod is a long strip of aluminum material, usually with a round, square or hexagonal cross-section. It can be made by extrusion, drawing or casting. Aluminum rod has high strength and hardness and can be used to make various mechanical parts, building materials and electronic products. Due to its good electrical and thermal conductivity, aluminum rod is also often used to make wires, radiators and electronic heat sinks.
[0003] When transporting aluminum bars, the scattered aluminum bars need to be bundled and coated to ensure that the aluminum bar bundles will not have surface scratches due to collision during loading and transportation. However, most of the existing bar coating machines cannot effectively coat the two ends of the aluminum bars when coating the aluminum bars, which has disadvantages. On the other hand, after completing the coating process of a bundle of aluminum bars, the traditional coating machines usually only perform simple film coating on the ends of the bundle of aluminum bars. This will cause the coated aluminum bars to be pierced through the film and poked out a distance due to inertia when the vehicle brakes suddenly during loading and transportation, thereby affecting driving safety and subsequent loading and unloading. Summary of the invention
[0004] The invention discloses an aluminum bar transportation coating device, which aims to solve the technical problem that most existing bar coating machines cannot effectively coat and reinforce the two ends of the aluminum bars when coating the aluminum bars due to the influence of the machine operation principle, which affects the driving safety during the transportation of aluminum bar bundles and the subsequent stacking, and has certain disadvantages.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] An aluminum bar transport coating device, comprising a roller conveyor platform, a coating machine installed in the middle of the roller conveyor platform, a reinforcing mechanism for preventing the two ends of the aluminum bar bundle from being fixed is arranged at one end of the coating machine, a connecting piece is symmetrically fixed to one end of the coating machine, and two connecting rods are symmetrically installed inside each of the connecting pieces, and the top of the connecting rod is slidably distributed inside the connecting piece;
[0007] A feeding mechanism is provided on the top of the laminating machine, and the feeding mechanism includes two material discharge channels fixed on the top of the laminating machine, and an electric push rod is horizontally installed at the end of each material discharge channel, and the output end of the electric push rod horizontally penetrates the material discharge channel, and a plurality of reinforcement members are horizontally placed inside each material discharge channel, and the output end of the electric push rod horizontally contacts the end of the reinforcement member;
[0008] An auxiliary mechanism for maintaining the stability of the two ends of the aluminum rod bundle when it is reinforced is arranged inside the feeding mechanism.
[0009] By additionally providing a reinforcement mechanism on the basis of the traditional laminating machine, the user places the aluminum rod bundle on the top of the roller conveyor platform, uses the roller conveyor platform to drive the aluminum rod bundle to be transported forward and backward, cooperates with the feeding mechanism to transport the reinforcement, and uses the two sets of connecting rods to move and cooperate with each other to shape the aluminum rod bundle and fix the reinforcement to both ends of the aluminum rod bundle, and then cooperates with the operation of the laminating machine to complete the overall lamination of the aluminum rod bundle, thereby ensuring the stability and protection function of the aluminum rod bundle during the transportation process, improving the functionality of the traditional laminating machine, and at the same time, the auxiliary mechanism additionally provided inside the feeding mechanism can ensure the engagement stability of the aluminum rod bundle and the reinforcement, thereby further ensuring the perfection of the operation of this equipment.
[0010] In a preferred solution, the reinforcement mechanism also includes a double-headed screw installed through the interior of each of the connecting parts, the double-headed screw is threadedly connected to the two connecting rods respectively, a motor is installed on the side of each of the connecting parts, the output end of the motor is fixedly connected to the double-headed screw, and a molding claw is fixedly installed at one end of the bottom of each connecting rod, and the two molding claws distributed in the horizontal direction are mirror-symmetrical and clamp and shape the aluminum rod bundle.
[0011] By additionally arranging two connecting parts structures inside the traditional laminating machine, a group of connecting rods are symmetrically installed inside the connecting parts. The rotation of the double-headed screw is used to drive the connecting rods to move back and forth. The moving double-headed screw can drive the shaping claws to move synchronously, thereby squeezing and clamping the outside of the aluminum rod bundle, completing the shaping of the aluminum rod bundle, thereby cooperating with the operation of the reinforcement mechanism to ensure the integrity of the operation of this equipment.
[0012] In a preferred embodiment, the feeding mechanism also includes two feed openings penetrating through the top of the laminating machine, each of the feed openings is through-connected to the interior of the feed channel, and the feed openings are distributed at one end of the feed channel away from the electric push rod, and two groups of positioning plates are symmetrically distributed inside the laminating machine, each group of positioning plates is vertically distributed at the bottom of a feed opening, and each positioning plate is fixed to the end of one of the connecting rods.
[0013] By providing two sets of symmetrically distributed feeding structures and utilizing the mutual cooperation of two electric push rods, the fixing parts located inside the two feeding channels are respectively introduced into the positioning plates additionally provided on the sides of the connecting rods. The mutual cooperation of the two sets of connecting rods is utilized to drive the positioning plates to move synchronously, thereby completing the installation of the reinforcement parts at both ends of the aluminum rod bundle, ensuring the stability and protection of the aluminum rod bundle during transportation, and improving the functionality of the traditional laminating machine.
[0014] In a preferred solution, the auxiliary mechanism comprises a fixing kit fixed to the inner wall of each positioning plate, the internal thread of the fixing kit is connected with a threaded rod, and the end of the threaded rod is fixedly mounted with an auxiliary rod.
[0015] By providing an auxiliary rod structure driven by the threaded rod, when the end of the aluminum rod bundle is squeezed and engaged into the interior of the reinforcement, the reinforcement can be pushed to move horizontally and be synchronously squeezed on the end of the threaded rod, thereby causing the threaded rod to rotate and synchronously drive the auxiliary rod to rotate. The flipped auxiliary rod will be engaged with the outer end of the reinforcement, thereby ensuring the stability of the reinforcement during the process of being sheathed on the outside of the aluminum rod bundle, further ensuring the integrity of the operation of the equipment.
[0016] In a preferred solution, the reinforcement member is composed of a rubber outer shell, a steel frame and a sponge lining, the steel frame is arranged on the inner surface of the rubber outer shell, and the sponge lining is arranged on the inner surface of the steel frame.
[0017] The rubber jacket structure with a built-in steel frame is engaged with the two ends of the aluminum rod bundle to fix the ends of the aluminum rod bundle, thereby ensuring the stability of the aluminum rod bundle during loading and transportation. At the same time, the sponge lining additionally arranged inside the steel frame can further strengthen the stability between the rubber jacket and the aluminum rod bundle by increasing friction and reducing wear.
[0018] In a preferred solution, a plurality of evenly distributed electric rollers are rotatably mounted inside the shaping claws to clamp and convey the aluminum rod bundle.
[0019] By arranging an electric roller structure inside the forming claw, when the forming claw completes the clamping and shaping of the aluminum rod bundle, the electric roller inside the forming claw can rotate synchronously, thereby pushing the aluminum rod bundle, allowing the aluminum rod bundle to be better inserted into the interior of the reinforcement, thereby ensuring the perfect operation of this equipment.
[0020] As can be seen from the above, the aluminum rod transport coating device provided by the present invention has the following improvements and advantages compared with the prior art:
[0021] First, two connecting parts are additionally provided inside the traditional laminating machine, and a group of connecting rods are symmetrically installed inside the connecting parts. The rotation of the double-headed screw is used to drive the connecting rod to move back and forth. The moving double-headed screw can drive the shaping claws to move synchronously, thereby squeezing and clamping the outside of the aluminum rod bundle, causing the aluminum rod bundle to be distributed in a hexagonal structure, completing the initial shaping of the aluminum rod bundle, and then cooperating with the two groups of unloading structures additionally provided on the top of the laminating machine, using the mutual cooperation of the two electric push rods, respectively, the fixing parts located inside the two unloading channels are introduced into the positioning plates additionally provided on the sides of the connecting rods, and the mutual cooperation of the two groups of connecting rods is used to drive the positioning plates to move synchronously, and the reinforcement parts are fixed to the two ends of the aluminum rod bundle, and the normal operation of the laminating machine is cooperated to complete the laminating and wrapping of the aluminum rod bundle and the end reinforcement, thereby ensuring the stability and protection of the aluminum rod bundle during transportation and improving the functionality of the traditional laminating machine.
[0022] Secondly: further, inside the positioning plate, an auxiliary rod structure driven by a threaded rod is provided in detail. When the end of the aluminum rod bundle is squeezed and engaged into the interior of the reinforcement, the reinforcement can be pushed to move horizontally and be squeezed on the end of the threaded rod synchronously, thereby causing the threaded rod to rotate and synchronously drive the auxiliary rod to rotate. The flipped auxiliary rod will be engaged with the outer end of the reinforcement, thereby improving the structural strength of the reinforcement when it is mounted on the outside of the aluminum rod bundle, further ensuring the integrity of the operation of this equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 This is a schematic diagram of the overall structure of an aluminum rod transport and coating equipment proposed by the present invention.
[0024] Figure 2 This is a sectional view of the overall structure of an aluminum rod transport and coating device proposed by the present invention.
[0025] Figure 3 This is an exploded diagram of the reinforcement mechanism structure of an aluminum rod transport and coating equipment proposed by the present invention.
[0026] Figure 4 The invention provides an aluminum rod transport coating device Figure 3 A magnified view of the structure at center.
[0027] Figure 5 This is a cross-sectional view of the internal structure of a connector of an aluminum rod transport and coating device proposed by the present invention.
[0028] Figure 6 This is a state diagram of the auxiliary mechanism of the aluminum rod transport and coating equipment proposed by the present invention during operation.
[0029] Figure 7 This is an exploded view of the reinforcement structure of an aluminum rod transport and coating equipment proposed by the present invention.
[0030] Figure 8 The operating process of the aluminum rod transport coating equipment proposed by the present invention Figure 1 .
[0031] Fig. 9 The operating process of the aluminum rod transport coating equipment proposed by the present invention Figure 2 .
[0032] Fig.10 The operating process of the aluminum rod transport coating equipment proposed by the present invention Figure 3 .
[0033] Fig.11 The operating process of the aluminum rod transport coating equipment proposed by the present invention Figure 4 .
[0034] Fig.12 The operating process of the aluminum rod transport coating equipment proposed by the present invention Figure 5 .
[0035] In the figure: 1. Roller conveyor; 2. Laminating machine; 3. Reinforcement mechanism; 301. Connecting piece; 302. Connecting rod; 303. Double-headed screw; 304. Motor; 305. Forming claw; 306. Electric roller; 307. Movable groove; 4. Feeding mechanism; 401. Discharge channel; 402. Electric push rod; 403. Discharge port; 404. Positioning plate; 405. Reinforcement piece; 4051. Rubber jacket; 4052. Steel frame; 4053. Sponge lining; 406. Positioning groove; 5. Auxiliary mechanism; 501. Fixing kit; 502. Threaded rod; 503. Auxiliary rod; 504. Spring; 505. Guide plate. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0037] The aluminum rod transport coating equipment disclosed in the present invention is mainly used for additionally reinforcing the ends of the aluminum rods when coating them.
[0038] Reference Figures 1 to 12 , an aluminum bar transport coating equipment, comprising a roller conveyor platform 1, a coating machine 2 installed in the middle of the roller conveyor platform 1, a reinforcing mechanism 3 for preventing the two ends of the aluminum bar bundle from being fixed is arranged at one end of the coating machine 2, a connecting piece 301 is symmetrically fixed at one end of the coating machine 2, and two connecting rods 302 are symmetrically installed inside each connecting piece 301, and the top of the connecting rod 302 is slidably distributed inside the connecting piece 301;
[0039] A feeding mechanism 4 is provided on the top of the laminating machine 2. The feeding mechanism 4 includes two feeding channels 401 fixed on the top of the laminating machine 2. An electric push rod 402 is horizontally installed at the end of each feeding channel 401. The output end of the electric push rod 402 horizontally penetrates the feeding channel 401. A plurality of reinforcing members 405 are horizontally placed inside each feeding channel 401. The output end of the electric push rod 402 horizontally contacts the end of the reinforcing member 405.
[0040] An auxiliary mechanism 5 is provided inside the feeding mechanism 4 to maintain the stability of the two ends of the aluminum rod bundle when it is reinforced.
[0041] In this embodiment: the operator places the aluminum rod bundle horizontally on the top of the roller conveyor platform 1, and the roller conveyor platform 1 drives the aluminum rod bundle to be transported toward the laminating machine 2 until the reinforcing mechanism 3 contacts the aluminum rod bundle. At this time, the reinforcing mechanism 3 and the feeding mechanism 4 operate simultaneously. The reinforcing mechanism 3 clamps the aluminum rod bundle and completes the shaping of the aluminum rod bundle in the form of extrusion, while the feeding mechanism 4 completes the reinforcement of one end of the aluminum rod bundle through the reinforcing mechanism 3. At this time, the roller conveyor platform 1 continues to transport the aluminum rod bundle to the inside of the laminating machine 2, and the aluminum rod bundle is transported to the laminating machine 2 by the reinforcing mechanism 3. The laminating machine 2 completes the laminating of the reinforced end of the aluminum rod bundle. After laminating, the roller conveyor platform 1 starts to convey the aluminum rod bundle in reverse until the aluminum rod bundle is returned to the inside of the reinforcement mechanism 3. At this time, the feeding mechanism 4 that is started again will complete the reinforcement of the other end of the aluminum rod bundle through the reinforcement mechanism 3. After reinforcement, the roller conveyor platform 1 continues to convey the aluminum rod bundle to the bottom of the laminating machine 2. The laminating machine 2 continues to complete the laminating and reinforcement of the other end of the aluminum rod bundle. When the reinforcement mechanism 3 reinforces the end of the aluminum rod bundle, the auxiliary mechanism 5 will be started synchronously to enhance stability.
[0042] In the above scheme, considering the shaping work of the aluminum rod bundle before lamination, the specific operation is as follows.
[0043] Reference Figures 2 to 3 , Figures 5 and 6 In a preferred embodiment, the reinforcement mechanism 3 also includes a double-headed screw 303 installed inside each connecting member 301, and the double-headed screw 303 is threadedly connected to the two connecting rods 302 respectively. A motor 304 is installed on the side of each connecting member 301, and the output end of the motor 304 is fixedly connected to the double-headed screw 303. A shaping claw 305 is fixedly installed at one end of the bottom of each connecting rod 302. The two shaping claws 305 distributed in the horizontal direction are mirror-symmetrical and clamp and shape the aluminum rod bundle.
[0044] In this embodiment, the operator places the aluminum rod bundle horizontally on the top of the roller conveyor platform 1, and the roller conveyor platform 1 drives the aluminum rod bundle to be transported toward the laminating machine 2 until the reinforcement mechanism 3 contacts the aluminum rod bundle. Figure 2For example; the motor 304 on the left side is started first, and the motor 304 will drive the double-headed screw 303 to rotate. The rotating double-headed screw 303 drives the two connecting rods 302 on the left side to move in the center through the thread. The moving connecting rods 302 will synchronously drive the shaping claws 305, so that the shaping claws 305 that move in the center are clamped on the outside of the aluminum rod bundle, thereby completing the shaping of the aluminum rod bundle in the form of extrusion, so that the aluminum rod bundle is distributed in a standard hexagonal shape; wherein, the internal rotation of the shaping claws 305 is equipped with a number of evenly distributed electric rollers 306 to clamp and convey the shaped aluminum rod bundle.
[0045] Furthermore, two movable grooves 307 are symmetrically formed inside each connecting member 301 , and the top of each connecting rod 302 is slidably distributed inside one movable groove 307 .
[0046] In the above scheme, in order to reinforce both ends of the aluminum rod bundle and ensure the stability of the aluminum rod bundle during transportation, the specific operations are as follows.
[0047] Reference Figures 1 to 7 In a preferred embodiment, the feeding mechanism 4 also includes two discharge ports 403 extending through the top of the laminating machine 2, each discharge port 403 is connected to the inside of the discharge channel 401, and the discharge ports 403 are distributed at one end of the discharge channel 401 away from the electric push rod 402, and two groups of positioning plates 404 are symmetrically distributed inside the laminating machine 2, each group of positioning plates 404 is vertically distributed at the bottom of a discharge port 403, and each positioning plate 404 is fixed to the end of a connecting rod 302.
[0048] In this embodiment, the operator places the aluminum rod bundle horizontally on the top of the roller conveyor platform 1, and the roller conveyor platform 1 drives the aluminum rod bundle to be transported toward the laminating machine 2 until the reinforcement mechanism 3 contacts the aluminum rod bundle. Figure 2For example; the motor 304 on the left side is started first, and the motor 304 will drive the double-headed screw 303 to rotate. The rotating double-headed screw 303 drives the two connecting rods 302 on the left side to move in the center through the thread. The moving connecting rod 302 will synchronously drive the shaping claws 305, so that the shaping claws 305 that move in the center are clamped on the outside of the aluminum rod bundle, thereby completing the shaping of the aluminum rod bundle in the form of extrusion, so that the aluminum rod bundle has a standard hexagonal distribution; at the same time, the electric push rod 402 on the right side is started, and the output axis of the electric push rod 402 steps outward to push the single reinforcement 405 to fall from the discharge port 403, and the falling reinforcement 405 will be engaged with the two positioning plates on the right side. 404, the running roller conveyor 1 will drive the shaped aluminum rod bundle to move between the two positioning plates 404 on the right, so as to insert one end of the aluminum rod bundle into the interior of the reinforcement 405, and at the same time, the motor 304 on the right will start synchronously, and drive the connecting rod 302 on the right to move outward and drive the positioning plate 404 to move synchronously according to the above principle, so as to release the clamping of the reinforcement 405. At this time, the roller conveyor 1 that continues to run will drive the end of the aluminum rod bundle with the reinforcement 405 to move directly under the laminating machine 2, and the laminating machine 2 will start synchronously to coat and bundle the end of the aluminum rod bundle with the reinforcement 405, and the reinforcement 405 can effectively fix and protect the two ends of the aluminum rod bundle.
[0049] Among them, it should be supplemented that: each positioning plate 404 is provided with a positioning groove 406 for engaging the reinforcement 405, and the auxiliary mechanism 5 is arranged inside the positioning groove 406. When the aluminum rod bundle is inserted into the reinforcement 405, the positioning groove 406 is used to restrict the reinforcement 405 to maintain the stability of the reinforcement 405.
[0050] Further, it is supplemented that: the reinforcement member 405 is composed of a rubber outer shell 4051, a steel frame 4052 and a sponge lining 4053, the steel frame 4052 is arranged on the inner surface of the rubber outer shell 4051, and the sponge lining 4053 is arranged on the inner surface of the steel frame 4052.
[0051] In the above solution, in order to ensure the stability of the aluminum rod bundle when it is extruded and inserted into the reinforcement member 405, the specific operation is as follows.
[0052] Reference Figure 3 to Figure 4 , Figure 6 In a preferred embodiment, the auxiliary mechanism 5 includes a fixing kit 501 fixed to the inner wall of each positioning plate 404, the internal thread of the fixing kit 501 is connected with a threaded rod 502, and the end of the threaded rod 502 is fixedly installed with an auxiliary rod 503.
[0053] In this embodiment, the reinforcement 405 dropped between the two positioning plates 404 will be distributed on the side of the threaded rod 502. At this time, as the aluminum rod bundle is inserted into the reinforcement 405, the aluminum rod bundle will first push the reinforcement 405, causing the reinforcement 405 to squeeze the threaded rod 502. The squeezed threaded rod 502 will be affected by the thread groove and drive the auxiliary rod 503 to rotate, thereby causing the auxiliary rod 503 to flip outward and press against the other side of the reinforcement 405, thereby ensuring the stability of the reinforcement 405 when squeezed; wherein, a guide plate 505 is fixed to the top of each positioning groove 406, and the guide plate 505 and the end of the threaded rod 502 are flush, thereby ensuring the positional relationship between the reinforcement 405 and the threaded rod 502; and a spring 504 is sleeved on the outer side of the threaded rod 502, and the two ends of the spring 504 are respectively squeezed and contacted with the fixing kit 501 and the threaded rod 502. When the threaded rod 502 loses the extrusion limit, it will be pushed by the spring 504 and drive the auxiliary rod 503 to reset and rotate.
[0054] One side of the rubber jacket 4051 is open, and the other side is a sealing structure.
[0055] Among them, it is supplemented that when the rubber jacket 4051 is subjected to the external force of the aluminum rod bundle, the rubber jacket 4051 may be deformed, causing the reinforcement 405 to be separated from the positioning groove 406, so the auxiliary rod 503 can assist in supporting the reinforcement 405 and improve its socket stability.
[0056] Working principle: When in use, the operator places the aluminum rod bundle horizontally on the top of the roller conveyor platform 1, and the roller conveyor platform 1 drives the aluminum rod bundle to the direction of the laminating machine 2 until the reinforcement mechanism 3 contacts the aluminum rod bundle. Figure 2For example; the motor 304 on the left side is started first, and the motor 304 will drive the double-headed screw 303 to rotate. The rotating double-headed screw 303 drives the two connecting rods 302 on the left side to move in the center through the thread. The moving connecting rod 302 will synchronously drive the shaping claws 305, so that the shaping claws 305 moving in the center are clamped on the outside of the aluminum rod bundle, thereby completing the shaping of the aluminum rod bundle in the form of extrusion, so that the aluminum rod bundle has a standard hexagonal distribution; at the same time, the electric push rod 402 on the right side is started, and the output axis of the electric push rod 402 steps outward to push the single reinforcement 405 to fall from the discharge port 403, and the falling reinforcement 405 will engage The roller conveyor 1 moves the shaped aluminum rod bundle to between the two positioning plates 404 on the right, thereby inserting one end of the aluminum rod bundle into the interior of the reinforcement 405. At the same time, the motor 304 on the right is started synchronously, and the connecting rod 302 on the right is driven outward and the positioning plates 404 are driven to move synchronously according to the above principle, thereby releasing the clamping of the reinforcement 405. At this time, the roller conveyor 1 that continues to run will drive the end of the aluminum rod bundled with the reinforcement 405 to move directly under the laminating machine 2, and the laminating machine 2 is started synchronously to laminate and bundle the end of the aluminum rod bundled with the reinforcement 405. The specific process is as follows: Figure 8 , Fig. 9 and Fig.10 As shown; after completing the bundling of one end of the aluminum rod bundle with the reinforcement member 405, the roller conveyor platform 1 drives the aluminum rod bundle to retreat in the reverse direction, and the electric push rod 402 on the left side is started, and the single reinforcement member 405 is pushed to fall from the unloading port 403 and engage between the two positioning plates 404 on the left side according to the above principle, and the running roller conveyor platform 1 will drive the aluminum rod bundle to move between the two positioning plates 404 on the left, thereby inserting one end of the aluminum rod bundle into the reinforcement member 405, and at the same time, the motor 304 on the left side is started synchronously, and the connecting rod 302 on the left side is driven outward according to the above principle and drives the positioning plate 404 to move synchronously, thereby releasing the clamping of the reinforcement member 405 and completing the reinforcement of the two ends of the aluminum rod bundle. After that, the running roller conveyor platform 1 will continue to drive the aluminum rod bundle to move directly below the laminating machine 2, and the laminating machine 2 is started synchronously to complete the laminating of the entire aluminum rod bundle. The specific process is as follows Fig.11 and Fig.12 As shown;
[0057] When the end of the aluminum rod bundle is inserted into the reinforcement 405, the aluminum rod bundle will first push the reinforcement 405, causing the reinforcement 405 to squeeze the threaded rod 502. The squeezed threaded rod 502 will be affected by the threads and drive the auxiliary rod 503 to rotate, causing the auxiliary rod 503 to flip outward and press against the other side of the reinforcement 405, thereby maintaining the stability of the reinforcement 405 when being squeezed.
[0058] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. An aluminum rod transport coating device, comprising a roller conveyor platform (1), and a coating machine (2) installed in the middle of the roller conveyor platform (1), characterized in that: A reinforcing mechanism (3) for securing the two ends of the aluminum rod bundle is provided at one end of the laminating machine (2), and a connecting piece (301) is symmetrically fixed to one end of the laminating machine (2). Two connecting rods (302) are symmetrically installed inside each of the connecting pieces (301), and the top of the connecting rod (302) is slidably distributed inside the connecting piece (301); A feeding mechanism (4) is provided on the top of the laminating machine (2), and the feeding mechanism (4) includes two material discharge channels (401) fixed on the top of the laminating machine (2), and an electric push rod (402) is horizontally installed at the end of each material discharge channel (401), and the output end of the electric push rod (402) horizontally penetrates the material discharge channel (401), and a plurality of reinforcing members (405) are horizontally placed inside each material discharge channel (401), and the output end of the electric push rod (402) horizontally contacts the end of the reinforcing member (405), and two groups of positioning plates (404) are symmetrically distributed inside the laminating machine (2), and each positioning plate (404) is fixed to the end of one of the connecting rods (302); The feeding mechanism (4) is internally provided with an auxiliary mechanism (5) for maintaining the stability of the two ends of the aluminum rod bundle when being reinforced. The auxiliary mechanism (5) comprises a fixing kit (501) fixed to the inner wall of each positioning plate (404), the fixing kit (501) is internally threadedly connected with a threaded rod (502), an auxiliary rod (503) is fixedly mounted at the end of the threaded rod (502), a spring (504) is sleeved on the outer side of the threaded rod (502), and the two ends of the spring (504) are respectively pressed and contacted with the fixing kit (501) and the threaded rod (502).
2. The aluminum rod transport coating equipment according to claim 1, characterized in that: The reinforcing mechanism (3) further comprises a double-headed screw (303) installed through the interior of each of the connecting pieces (301), the double-headed screw (303) being threadedly connected to the two connecting rods (302) respectively, a motor (304) being installed on the side of each of the connecting pieces (301), the output end of the motor (304) being fixedly connected to the double-headed screw (303), and a shaping claw (305) being fixedly installed at one end of the bottom of each of the connecting rods (302), the two shaping claws (305) distributed in the horizontal direction being mirror-symmetrical and clamping and shaping the aluminum rod bundle.
3. The aluminum rod transport coating equipment according to claim 1, characterized in that: The feeding mechanism (4) also includes two discharge ports (403) penetrating the top of the laminating machine (2), each of the discharge ports (403) is connected to the inside of the discharge channel (401), and the discharge ports (403) are distributed at one end of the discharge channel (401) away from the electric push rod (402), and each group of the positioning plates (404) is vertically distributed at the bottom of one of the discharge ports (403).
4. The aluminum rod transport coating equipment according to claim 1, characterized in that: The reinforcing member (405) is composed of a rubber outer shell (4051), a steel frame (4052) and a sponge lining (4053), wherein the steel frame (4052) is arranged on the inner surface of the rubber outer shell (4051), and the sponge lining (4053) is arranged on the inner surface of the steel frame (4052).
5. The aluminum rod transport coating equipment according to claim 2, characterized in that: The shaping claw (305) is internally rotatably mounted with a plurality of evenly distributed electric rollers ( 306) to clamp and transport the aluminum rod bundle.
6. The aluminum rod transport coating equipment according to claim 1, characterized in that: Two movable grooves (307) are symmetrically provided inside each of the connecting pieces (301), and the top of each of the connecting rods (302) is slidably distributed inside one of the movable grooves (307).
7. The aluminum rod transport coating equipment according to claim 1, characterized in that: Each of the positioning plates (404) is provided with a positioning groove (406) for engaging the reinforcing member (405), and the auxiliary mechanism (5) is arranged inside the positioning groove (406).
8. The aluminum rod transport coating equipment according to claim 7, characterized in that: A guide plate (505) is fixed to the top of each positioning groove (406), and the guide plate (505) is flush with the end of the threaded rod (502).
Citation Information
Patent Citations
Pipe material packaging device
CN114261596A