Bidirectional conveying equipment for metal sheets and plates
By designing a bidirectional conveying device for metal sheets with a rotating belt and drive mechanism, the problem that existing unidirectional conveying devices cannot change direction has been solved, realizing bidirectional conveying of metal sheets and simultaneous processing of multiple rolls, thus improving processing efficiency.
Patent Information
- Application Number
- CN202311318140.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-12
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2043-10-12
AI Technical Summary
In the existing technology for processing metal sheets, the conveying equipment can only carry out unidirectional conveying and cannot change the conveying direction, which affects the processing efficiency.
A bidirectional conveying device comprising a base, a third conveyor belt, a fourth conveyor belt, a first conveyor belt, and a second conveyor belt is designed. By setting up the rotating belt, the first conveyor belt, and the second conveyor belt, bidirectional conveying of metal sheets is achieved. Furthermore, through the cooperation of the drive rod, the rotating guide rod, and the power mechanism, the synchronous conveying of multiple rolls of metal sheets is realized.
It enables bidirectional conveying of metal sheets, improving work efficiency and utilization efficiency, and allows for the simultaneous processing of two rolls of metal sheets.
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Figure CN117228215B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of conveying equipment technology, and more particularly to bidirectional conveying equipment for metal sheets and plates. Background Technology
[0002] Sheet metal is a thin, flat sheet of metal formed by industrial methods. Sheet metal is one of the basic forms used in metal processing, allowing it to be cut and bent into various shapes. Countless everyday items are made from sheet metal. Sheet metal is typically rolled up, and during processing, it needs to be unrolled and conveyed to the designated processing location. Current conveying equipment only transports sheet metal in one direction, unable to change the direction or achieve bidirectional transport, thus affecting processing efficiency. Summary of the Invention
[0003] This invention addresses the shortcomings of existing technologies by providing a bidirectional conveying device for metal sheets and plates. The specific technical solution is as follows:
[0004] A bidirectional conveying device for metal sheets includes a base, a third conveyor belt, and a fourth conveyor belt. A first conveyor belt is disposed between the base and the third conveyor belt, and a second conveyor belt is disposed between the base and the fourth conveyor belt. A rotating belt that moves with the second conveyor belt is disposed below the second conveyor belt and the first conveyor belt. One side of the rotating belt is sleeved around one side of the first conveyor belt. A lifting mechanism is disposed between the first conveyor belt and the second conveyor belt, and the rotating belt is sleeved around the lifting mechanism.
[0005] By setting up a rotating belt, a first conveyor belt, and a second conveyor belt, the direction of the metal sheet can be changed to achieve bidirectional transmission, and two rolls of metal sheet can be transported simultaneously, improving work efficiency and utilization efficiency.
[0006] As an improvement to the above technical solution, a drive rod is sleeved inside the first, second, third, and fourth conveyor belts, and a support plate is provided at both ends of the drive rod. The support plate is fixedly connected to the top surface of the base; so as to drive the first, second, third, and fourth conveyor belts to rotate, and facilitate the movement of the conveyed metal sheet.
[0007] As an improvement to the above technical solution, the lifting mechanism includes a rotating guide rod, which is rotatably sleeved inside the rotating belt. The rotating guide rod lifts the rotating belt into an arch bridge structure. Support rods are provided at both ends of the rotating guide rod and between the support plate; this facilitates the guidance of the metal sheet.
[0008] As an improvement to the above technical solution, the cross-section of the rotating belt is J-shaped, and the bent part of the rotating belt is sleeved around one side of the first conveyor belt; so as to guide the metal sheet to the top surface of the first conveyor belt.
[0009] As an improvement to the above technical solution, the rotating belt is fitted with multiple sets of rotating support rods, and connecting rods are provided between the two ends of the rotating support rods and the support plate; to ensure the guiding performance of the metal sheet.
[0010] As an improvement to the above technical solution, the support plate is provided with a power mechanism that drives the drive rod to rotate. The power mechanism includes a rotary motor and a linkage component. The rotary motor is fixedly mounted on the support plate, and the power output end of the rotary motor is fixedly connected to one end of the drive rod. The linkage component is located at the other end of the drive rod.
[0011] As an improvement to the above technical solution, the linkage component includes a roller and a belt. The roller is fixedly mounted on the other end of the drive rod. The roller passes through the support plate and is rotatably connected to the support plate. The belt is sleeved around the outer periphery of the roller.
[0012] As an improvement to the above technical solution, the top surface of the base is provided with an unwinding mechanism for mounting a roll of metal sheet. The unwinding mechanism is located below the fourth conveyor belt. The unwinding mechanism includes a fixed plate and a rotating rod. The fixed plate is fixedly connected to the base near the back, and the rotating rod is rotatably mounted on the front of the fixed plate near the top.
[0013] The beneficial effects of this invention are:
[0014] By setting up a rotating belt, a first conveyor belt, and a second conveyor belt, the direction of the metal sheet can be changed to achieve bidirectional transmission, and two rolls of metal sheet can be transported simultaneously, improving work efficiency and utilization efficiency. Attached Figure Description
[0015] Figure 1 This is a front-view stereoscopic structural diagram of the present invention;
[0016] Figure 2 This is a rear-view stereoscopic structural diagram of the present invention.
[0017] Reference numerals: 1. Base; 11. Support plate; 111. Rotary motor; 12. Fixing plate; 121. Rotating insert rod; 2. First conveyor belt; 3. Second conveyor belt; 4. Third conveyor belt; 5. Fourth conveyor belt; 6. Rotating belt; 61. Rotating guide rod; 7. Roller; 71. Belt. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0019] Please refer to Figure 1 and Figure 2 As shown, the present invention provides a bidirectional conveying device for metal sheets, including a base 1, a third conveyor belt 4 and a fourth conveyor belt 5. A first conveyor belt 2 is arranged between the base 1 and the third conveyor belt 4, and a second conveyor belt 3 is arranged between the base 1 and the fourth conveyor belt 5. A rotating belt 6 that moves with the second conveyor belt 3 is arranged below the second conveyor belt 3 and the first conveyor belt 2. One side of the rotating belt 6 is sleeved around one side of the first conveyor belt 2.
[0020] A lifting mechanism is provided between the first conveyor belt 2 and the second conveyor belt 3, and the rotating belt 6 is sleeved around the lifting mechanism.
[0021] In this case, the first conveyor belt 2, the second conveyor belt 3, the third conveyor belt 4, the fourth conveyor belt 5, and the rotating belt 6 all move synchronously. During use, a metal sheet is inserted between the second conveyor belt 3 and the fourth conveyor belt 5. The second conveyor belt 3 transmits energy, causing the metal sheet to move forward. When the metal sheet passes the positioning mechanism, it is pulled upwards and onto the third conveyor belt 4 or the fourth conveyor belt 5. This allows the orientation of the metal sheet to be changed according to processing needs, facilitating bidirectional conveying. Furthermore, when processing two rolls of metal sheets consecutively, the two metal sheets are... The sheet metal is simultaneously inserted between the second conveyor belt 3 and the fourth conveyor belt 5. As it is conveyed, the sheet metal located above is pulled upward from between the first conveyor belt 2 and the second conveyor belt 3 and is conveyed on the fourth conveyor belt 5. Another sheet metal passes between the first conveyor belt 2 and the rotating belt 6, and is then conveyed above the rotating belt 6 and pulled onto the third conveyor belt 4. The two sheet metals are processed simultaneously on the third conveyor belt 4 and the fourth conveyor belt 5. This not only changes the direction of the sheet metals, enabling bidirectional conveying, but also allows for the simultaneous conveying of two rolls of sheet metals, improving work efficiency and utilization efficiency.
[0022] The first conveyor belt 2 and the second conveyor belt 3 are designed to guide the metal sheet and prevent the metal sheet from being rolled up and unrolled too quickly.
[0023] As a further implementation of this embodiment, such as Figure 1 As shown, drive rods are fitted inside the first conveyor belt 2, the second conveyor belt 3, the third conveyor belt 4 and the fourth conveyor belt 5. Support plates 11 are provided at both ends of the drive rods, and the support plates 11 are fixedly connected to the top surface of the base 1.
[0024] The drive rods are designed to drive the first conveyor belt 2, the second conveyor belt 3, the third conveyor belt 4, and the fourth conveyor belt 5 to rotate, thereby facilitating the movement of the metal sheet.
[0025] As a further implementation of this embodiment, such as Figure 1 As shown, the lifting mechanism includes a rotating guide rod 61, which is rotatably sleeved inside the rotating belt 6. The rotating guide rod 61 lifts the rotating belt 6 into an arch bridge structure. Support rods are provided at both ends of the rotating guide rod 61 and between the support plate 11.
[0026] The rotating guide rod 61 makes it easy to lift the rotating belt 6 into an arch bridge structure, which facilitates the guidance of metal sheets and the transport of two metal sheets, thus expanding the scope of application.
[0027] As a further implementation of this embodiment, such as Figure 1 As shown, the cross-section of the rotating belt 6 is J-shaped, and the bent part of the rotating belt 6 is fitted around one side of the first conveyor belt 2.
[0028] The J-shaped structure of the rotating belt 6 facilitates the guidance of the metal sheet to the top surface of the first conveyor belt 2, thereby facilitating the conveying of the metal sheet and changing the conveying direction of the metal sheet for bidirectional conveying.
[0029] As a further implementation of this embodiment, such as Figure 1 As shown, the rotating belt 6 is fitted with multiple sets of rotating support rods, and connecting rods are provided between the two ends of the rotating support rods and the support plate 11.
[0030] By setting up the rotating support rod, the rotating belt 6 can be supported, ensuring the state of the rotating belt 6 and ensuring the guiding performance of the metal sheet.
[0031] As a further implementation of this embodiment, such as Figure 1 and Figure 2 As shown, a power mechanism for driving the drive rod to rotate is provided on the support plate 11. The power mechanism includes a rotary motor 111 and a linkage component. The rotary motor 111 is fixedly mounted on the support plate 11. The power output end of the rotary motor 111 is fixedly connected to one end of the drive rod, and the linkage component is located at the other end of the drive rod.
[0032] The linkage components include a roller 7 and a belt 71. The roller 7 is fixedly mounted on the other end of the drive rod. The roller 7 passes through the support plate 11 and is rotatably connected to the support plate 11. The belt 71 is sleeved around the roller 7.
[0033] The rotary motor 111 starts and drives the drive rod to rotate, which in turn drives the rollers 7 to rotate. Under the transmission of the belt 71, all rollers 7 can rotate, thereby causing the drive rod to rotate. At this time, the first conveyor belt 2, the second conveyor belt 3, the third conveyor belt 4, and the fourth conveyor belt 5 can rotate synchronously, achieving synchronous rotation of the first conveyor belt 2, the second conveyor belt 3, the third conveyor belt 4, and the fourth conveyor belt 5. When conveying metal sheets, the metal sheets can be conveyed synchronously, and the rotating belt 6 can guide them during the conveying process to facilitate the processing of the metal sheets and improve the efficiency of use.
[0034] As a further implementation of this embodiment, such as Figure 1 As shown, the top surface of the base 1 is provided with an unwinding mechanism for mounting a roll of metal sheet. The unwinding mechanism is located below the fourth conveyor belt 5. The unwinding mechanism includes a fixed plate 12 and a rotating rod 121. The fixed plate 12 is fixedly connected to the base 1 near the back, and the rotating rod 121 is rotatably mounted on the front of the fixed plate 12 near the top.
[0035] The rotating insert rod 121 is designed to allow the metal sheet to be inserted around the rotating insert rod 121, which facilitates the unwinding of the metal sheet and the conveying of the metal sheet to the direction where it needs to be processed.
[0036] In operation, the metal sheet is wound around the rotating insert 121, then pulled out and inserted between the second conveyor belt 3 and the rotating belt 6. As the second conveyor belt 3 conveys the sheet, it moves forward, simultaneously dragging the rotating belt 6. When the sheet reaches the area between the first conveyor belt 2 and the second conveyor belt 3, it is pulled to the top of the third conveyor belt 4 or the fourth conveyor belt 5 for transport, completing the single transport of the metal sheet and allowing for changes in transport direction. When two metal sheets need to be transported, both sheets are simultaneously inserted between the second conveyor belt 3 and the rotating belt 6. The metal sheet is then transported by the second conveyor belt 3. Under its action, two metal sheets can move forward simultaneously. When the upper metal sheet is conveyed between the first conveyor belt 2 and the second conveyor belt 3, it is dragged to the top surface of the fourth conveyor belt 5 for conveying. Under the action of the rotating guide rod 61, the metal sheet is guided. At this time, the lower metal sheet continues to be conveyed, so that it is inserted between the first conveyor belt 2 and the rotating belt 6, and then guided along the rotating belt 6 to the top surface of the first conveyor belt 2. Then, the metal sheet is dragged to the top surface of the third conveyor belt 4. The direction of the metal sheets can also be changed when conveying the two metal sheets, which facilitates bidirectional conveying. After being conveyed to the top surfaces of the third conveyor belt 4 and the fourth conveyor belt 5, the metal sheets are processed.
[0037] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A bidirectional conveying device for metal sheets and plates, characterized in that: Includes a base (1), a third conveyor belt (4) and a fourth conveyor belt (5). A first conveyor belt (2) is provided between the base (1) and the third conveyor belt (4). A second conveyor belt (3) is provided between the base (1) and the fourth conveyor belt (5). A rotating belt (6) that moves with the second conveyor belt (3) is provided below the second conveyor belt (3) and the first conveyor belt (2). One side of the rotating belt (6) is sleeved around one side of the first conveyor belt (2). A lifting mechanism is provided between the first conveyor belt (2) and the second conveyor belt (3), and the rotating belt (6) is sleeved around the lifting mechanism; A drive rod is fitted inside the first conveyor belt (2), the second conveyor belt (3), the third conveyor belt (4) and the fourth conveyor belt (5). A support plate (11) is provided at both ends of the drive rod. The support plate (11) is fixedly connected to the top surface of the base (1). The lifting mechanism includes a rotating guide rod (61), which is rotatably sleeved inside the rotating belt (6). The rotating guide rod (61) lifts the rotating belt (6) into an arch bridge structure. Support rods are provided between both ends of the rotating guide rod (61) and the support plate (11). The rotating belt (6) has a J-shaped cross-section, and the bent part of the rotating belt (6) is fitted around one side of the first conveyor belt (2). The base (1) is provided with a winding mechanism for mounting a roll of metal sheet on its top surface. The winding mechanism is located below the fourth conveyor belt (5). The winding mechanism includes a fixed plate (12) and a rotating rod (121). The fixed plate (12) is fixedly connected to the base (1) near the back side. The rotating rod (121) is rotatably mounted on the front side of the fixed plate (12) near the top.
2. The bidirectional conveying equipment for metal sheets and plates according to claim 1, characterized in that: Multiple sets of rotating support rods are fitted inside the rotating belt (6), and connecting rods are provided between the two ends of the rotating support rods and the support plate (11).
3. The bidirectional conveying equipment for metal sheets and plates according to claim 1, characterized in that: The support plate (11) is provided with a power mechanism that drives the drive rod to rotate. The power mechanism includes a rotary motor (111) and a linkage component. The rotary motor (111) is fixedly mounted on the support plate (11). The power output end of the rotary motor (111) is fixedly connected to one end of the drive rod, and the linkage component is located at the other end of the drive rod.
4. The bidirectional conveying equipment for metal sheets and plates according to claim 3, characterized in that: The linkage component includes a roller (7) and a belt (71). The roller (7) is fixedly mounted on the other end of the drive rod. The roller (7) passes through the support plate (11) and is rotatably connected to the support plate (11). The belt (71) is sleeved around the roller (7).
Citation Information
Patent Citations
Two-way medicine plate conveying mechanism
CN105731017A
Sheet material conveyor
JP1996040594A