Continuous steel plate feeding machining production line
By setting up a continuous feeding mechanism and a conveyor in the steel plate processing production line, ensuring the uniform spacing between each two steel plates, the problems of discontinuous steel plate processing and low production capacity in the prior art are solved, and efficient steel plate brush processing and product quality are achieved.
Patent Information
- Application Number
- CN202420928490.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-29
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-04-29
AI Technical Summary
During the steel plate grinding process of the existing steel plate processing production lines, it is impossible to ensure that the spacing between each two steel plates is consistent, resulting in a decrease in production capacity and wavy brush marks on the steel plate surface.
A continuous steel plate processing production line is designed. By setting up a continuous feeding mechanism at the feed end of the grinding equipment, using equipment such as conveyors and suction and transporters to ensure the same spacing between each two steel plates, thereby achieving continuity and consistency of steel plate processing.
By ensuring the uniform spacing between each two steel plates, the continuity and production capacity of steel plate processing are improved, and wavy brush marks are avoided on the surface of the steel plate, improving product quality.
Smart Images

Figure CN222857656U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of steel plate processing, and specifically relates to a continuous steel plate processing production line. Background Art
[0002] In the prior art, steel plate processing production lines generally perform a series of treatments such as grinding and brushing on steel plates, and the loading of steel plates only relies on conveyor belts and other conveyor platforms for transportation. For example, when a steel plate is being brushed by a grinding and brushing machine, the subsequent steel plate needs to wait until the previous steel plate is brushed before entering the grinding and brushing machine, and a larger gap is required between the two steel plates. However, only transporting the steel plates by a conveyor belt cannot ensure that the gap between the two steel plates is consistent, that is, after the previous steel plate is processed, it cannot guarantee that the subsequent steel plate can be immediately put into the grinding and brushing machine for brushing, resulting in a decrease in production capacity. In order to ensure production capacity, the speed at which the steel plates pass through the grinding and brushing machine needs to be increased, which results in wavy brush marks on the surface of the steel plates. Utility Model Content
[0003] The utility model aims to overcome the defect in the prior art that wavy brush marks appear on the surface of the steel plate after being ground by a grinding brush machine, and provides a continuous steel plate processing production line.
[0004] The utility model is implemented as follows: a continuous steel plate processing production line includes a plurality of processing equipment connected in sequence, and a conveyor is arranged between every two processing equipment, the conveyor is used to transport steel plates, and one of the processing equipment is configured as a brushing equipment for brushing the steel plates; the continuous steel plate processing production line also includes a continuous feeding mechanism, the continuous feeding mechanism is arranged at the feeding end of the brushing equipment, the movement of the steel plate has a first position, when the conveyor moves to the first position after transporting the previous steel plate, the continuous feeding mechanism is activated and transports the next steel plate to the conveyor, so that the distance between every two steel plates transported by the conveyor to the brushing equipment is the same.
[0005] Furthermore, the continuous feeding mechanism is a suction transfer machine. When the conveyor moves to the first position before transporting the previous steel plate, the suction transfer machine operates and transfers the steel plate along the conveying direction of the conveyor, or the suction transfer machine operates and transfers the steel plate along the direction perpendicular to the conveying direction of the conveyor.
[0006] Furthermore, the continuous feeding mechanism is a solar wheel flap machine, and the solar wheel flap machine is arranged along the conveying direction of the conveyor.
[0007] Furthermore, the suction transfer machine is connected to a guide rail, which is arranged above the conveyor, and the guide rail is used to drive the suction transfer machine to move along the conveying direction of the conveyor or in a direction perpendicular to the conveying direction of the conveyor.
[0008] Furthermore, a temporary storage table is provided along the transfer direction of the suction transfer machine, and the temporary storage table is used to temporarily store the steel plates to be transported to the conveyor. The suction transfer machine moves the steel plates from the temporary storage table to the conveyor.
[0009] The utility model provides a continuous steel plate processing production line, which adds a continuous feeding mechanism. Whenever a previous steel plate is transported to the first position by a conveyor, the continuous feeding mechanism can be activated and transport the next steel plate to the conveyor, so as to ensure that the spacing between every two steel plates transported to the grinding and brushing equipment by the conveyor is the same, and ensure that after the previous steel plate is finished grinding and brushing, the next steel plate can immediately enter the grinding and brushing equipment for grinding and brushing processing, so as to ensure the continuity of steel plate processing and improve production capacity; at the same time, the same spacing between every two steel plates can make the speed of each steel plate entering the grinding and brushing equipment consistent, and the grinding and brushing equipment can thoroughly grind and polish each steel plate to avoid the defect of wavy brush marks on the surface of the steel plate, thereby improving product quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0011] The following drawings are only intended to illustrate and explain the present invention, and are not intended to limit the scope of the present invention.
[0012] Figure 1 It is a structural position diagram of a continuous steel plate processing production line provided by the utility model.
[0013] Figure 2 It is a structural schematic diagram of an embodiment of a continuous steel plate processing production line provided by the utility model;
[0014] Figure 3 This is a schematic diagram of the steel plate conveying position of an embodiment of a continuous steel plate processing production line provided by the utility model;
[0015] Figure 4 This is a structural schematic diagram of another embodiment of a continuous steel plate processing production line provided by the utility model;
[0016] Figure 5 It is a schematic diagram of another steel plate conveying position of an embodiment of a continuous steel plate processing production line provided by the utility model;
[0017] Figure 6It is a structural schematic diagram of another embodiment of a continuous steel plate processing production line provided by the utility model.
[0018] Figure 7 It is a schematic diagram of the steel plate conveying position of another embodiment of a continuous steel plate processing production line provided by the utility model.
[0019] Explanation of the accompanying figures: 1. Conveyor; 2. Brushing equipment; 3. Continuous feeding mechanism; 31. Suction transfer machine; 311. Guide rail; 312. Temporary storage table; 32. Sun gear flip machine. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical solution and advantages of the utility model more clear, the utility model is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.
[0021] See also Figure 1-Figure 7 , is a continuous steel plate processing production line disclosed in the utility model, including several processing equipment connected in sequence, the processing equipment including but not limited to grinding equipment, brushing equipment, etc. for processing steel plates, and a conveyor 1 is provided between every two processing equipment, the conveyor 1 is used to transport steel plates, in this scheme, one of the processing equipment is configured as a brushing equipment 2 for brushing steel plates.
[0022] The continuous feeding steel plate processing production line also includes a continuous feeding mechanism 3, which is arranged at the feeding end of the grinding and brushing device 2. The feeding end of the grinding and brushing device 2 is also provided with a conveyor 1. Figure 1 As shown, the continuous feeding mechanism 3 cooperates with the conveyor 1 to transport the steel plate. The movement of the steel plate on the conveyor 1 has a first position. When the conveyor 1 moves to the first position after transporting the previous steel plate, the continuous feeding mechanism 3 is activated and transports the next steel plate to the conveyor 1, so that the distance between every two steel plates transported by the conveyor 1 to the grinding and brushing device 2 is the same.
[0023] The movement of the steel plate has a first position, which can be understood as the position where the steel plate is ready to enter the grinding and brushing device 2 for grinding and brushing. A detection device is provided on the continuous feeding mechanism 3 for detecting the steel plate. When the steel plate moves to the first position, the detection device can send a detection signal, and the continuous feeding mechanism 3 responds to the detection signal and moves to transport the steel plate. It can be understood that the steel plate at the first position is the previous steel plate, and the steel plate transported by the continuous feeding mechanism 3 is the next steel plate. The steel plate is transported by the continuous feeding mechanism 3, so that the spacing between the front and rear steel plates entering the grinding and brushing device 2 is the same. At the same time, the movement speed of the steel plate in the grinding and brushing device 2 can be reduced, so that the grinding and brushing effect of the grinding and brushing device 2 on the steel plate is good, avoiding the defect of wavy brush marks on the surface of the steel plate, and improving product quality.
[0024] As an embodiment of this solution, Figure 2 and Figure 3 As shown, the continuous feeding mechanism 3 is a suction transfer machine 31. When the conveyor 1 moves to the first position before conveying the previous steel plate, the suction transfer machine 31 is activated and transfers the steel plate along the conveying direction of the conveyor 1. The suction transfer machine 31 is specifically connected to a guide rail 311, which is arranged above the conveyor 1. The suction transfer machine 31 is driven to move by the guide rail 311, so that the suction transfer machine 31 can drive the steel plate to be transported along the conveying direction of the conveyor 1. The suction transfer machine 31 mainly includes a bracket connected to the guide rail 311, a lifting cylinder arranged on the bracket, and a suction cup assembly connected to the output shaft of the lifting cylinder. The entire suction transfer machine 31 is specifically fixed by the suction cup assembly to absorb the steel plate to be transported. A temporary storage table 312 is also provided along the moving direction of the suction transfer machine 31. At this time, the temporary storage table 312, the conveyor 1 and the brushing device 2 are all located on the same horizontal straight line along the conveying direction of the conveyor 1. The temporary storage table 312 is used to temporarily store the steel plate to be transported to the conveyor 1.
[0025] When the continuous feeding mechanism is the suction transfer machine 31, the movement of the steel plate is specifically divided into three positions, among which the first position of the steel plate is taken as the starting point of brushing, the position on the conveyor 1 that is a certain distance away from the first position is set as position B, and the position outside the conveyor 1 is set as position A, and the position of the steel plate on the temporary storage table 312 is position A outside the conveyor 1. First, a number of steel plates to be processed are placed on the temporary storage table 312 manually or in other ways, and then the suction transfer machine 31 is first moved to the top of the temporary storage table 312 driven by the guide rail 311, and the suction transfer machine 31 drives the suction cup assembly to descend to adsorb and fix a steel plate on the temporary storage table 312, and then the suction transfer machine 31 drives the steel plate to move to position B of the conveyor 1, and then the steel plate is driven by the conveyor 1 to move from position B to the first position, and in the process of the steel plate moving from position B to the first position, the suction transfer machine 31 moves to position A again. The temporary storage table 312 absorbs and transfers the next steel plate. When the previous steel plate reaches the first position, the suction transfer machine 31 places the next steel plate on the B position of the conveyor 1. Then the previous steel plate enters the grinding and brushing equipment 2 from the first position for processing, and the next steel plate at the B position gradually moves to the first position. The suction transfer machine 31 cyclically transfers the steel plate at the A position again. This cycle is used to ensure that the distance between every two steel plates transported to the grinding and brushing equipment 2 is the same, thereby ensuring the continuity of steel plate processing, improving production capacity and ensuring product quality.
[0026] As another embodiment of the above, when the conveyor 1 moves to the first position before conveying the previous steel plate, the suction transfer machine 31 is activated and transfers the steel plate in a direction perpendicular to the conveying direction of the conveyor 1, that is, the conveyor 1 and the brushing device 2 are both located on the same horizontal straight line along the conveying direction of the conveyor 1, and the temporary storage table 312 is arranged on the side of the conveyor 1 in a direction perpendicular to the conveying direction of the conveyor 1, such as Figure 4 and Figure 5 shown.
[0027] As another embodiment of this solution, Figure 6 and Figure 7 As shown, the continuous feeding mechanism 3 is a sun wheel plate flipper 32, which is arranged along the conveying direction of the conveyor 1, that is, the sun wheel plate flipper 32, the conveyor 1 and the brushing device 2 are all located on the same horizontal straight line along the conveying direction of the conveyor 1. The sun wheel plate flipper 32 mainly includes a rotatable disc, on which a plurality of baffles are arranged, and a placement groove is formed between every two baffles. A steel plate to be processed can be placed in a placement groove. The sun wheel plate flipper is an existing mechanism, and its detailed structure will not be described one by one in this embodiment.
[0028] When the continuous feeding mechanism is a solar wheel flap machine 32, the movement of the steel plate is specifically divided into two positions, wherein the first position of the steel plate is used as the brushing starting point, and a position on the conveyor 1 that is a certain distance away from the first position is set as position B. The steel plate to be processed is first placed in the placement groove on the solar wheel flap machine 32 by manual means, and the solar wheel flap machine 32 first transports the first steel plate directly to the conveyor 1. At this time, the position of the steel plate is position B on the conveyor 1. In the process of the first steel plate moving from position B to the first position on the conveyor 1, the solar wheel flap machine 32 continuously drives several steel plates to rotate. When the first steel plate reaches the first position from position B, the solar wheel flap transports the next steel plate to position B of the conveyor 1 again. Then the first steel plate directly enters the grinding and brushing equipment 2 from the first position for grinding and brushing, and the next steel plate at position B gradually moves to the first position, and the solar wheel flap machine 32 transports the next steel plate to position B again in a cycle. This cycle can ensure that the distance between each two steel plates transported to the grinding and brushing equipment 2 is the same, ensuring the continuity of steel plate processing, improving production capacity and ensuring product quality.
[0029] By controlling and adjusting the distance between every two steel plates through the above-mentioned continuous feeding mechanism, the continuity of steel plate processing is ensured and the production capacity is improved; at the same time, the same distance between every two steel plates enables each steel plate to enter the grinding and brushing equipment 2 at a consistent speed. The grinding and brushing equipment 2 can thoroughly grind and polish each steel plate to avoid the defect of wavy brush marks on the surface of the steel plate, thereby improving the grinding cleanliness of the steel plate and improving product quality.
[0030] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions or improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A continuous steel plate processing production line, comprising a plurality of processing devices connected in sequence, wherein a conveyor (1) is provided between each two of the processing devices, the conveyor (1) being used to transport the steel plates, wherein one of the processing devices is configured as a brushing device (2) for brushing the steel plates, and wherein: It also includes a continuous feeding mechanism (3), which is arranged at the feeding end of the grinding and brushing equipment (2). The movement of the steel plate has a first position. When the conveyor (1) moves to the first position after transporting the previous steel plate, the continuous feeding mechanism (3) is activated and transports the next steel plate to the conveyor (1), so that the distance between each two steel plates transported by the conveyor (1) to the grinding and brushing equipment (2) is the same.
2. The continuous feed steel plate processing production line according to claim 1, characterized in that: The continuous feeding mechanism (3) is a suction transfer machine (31). When the conveyor (1) moves the steel plate to the first position before transporting, the suction transfer machine (31) moves and transfers the steel plate along the transport direction of the conveyor (1), or the suction transfer machine (31) moves and transfers the steel plate along a direction perpendicular to the transport direction of the conveyor (1).
3. The continuous feed steel plate processing production line according to claim 1, characterized in that: The continuous feeding mechanism (3) is a solar wheel flap machine (32), and the solar wheel flap machine (32) is arranged along the conveying direction of the conveyor (1).
4. The continuous feed steel plate processing production line according to claim 2, characterized in that: The suction transfer machine (31) is connected to a guide rail (311), and the guide rail (311) is arranged above the conveyor (1). The guide rail (311) drives the suction transfer machine (31) to move along the conveying direction of the conveyor (1) or in a direction perpendicular to the conveying direction of the conveyor (1).
5. The continuous feed steel plate processing production line according to claim 2, characterized in that: A temporary storage platform (312) is also provided along the transfer direction of the suction transfer machine (31), and the temporary storage platform (312) is used to temporarily store the steel plate to be transported to the conveyor (1). The suction transfer machine (31) moves the steel plate from the temporary storage platform (312) to the conveyor (1).