Material receiving trolley for burr machine production
By designing an automated material receiving trolley, the problem of manual intervention in the unloading process of the metal sheet deburring machine was solved, realizing automated unloading, reducing costs and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202423182308.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Existing deburring machines for metal sheets require manual intervention during the unloading process, resulting in high labor costs, low production efficiency, and a high risk of operational errors that affect product quality.
Design a material receiving trolley for deburring machine production, which adopts an automated material receiving platform and push plate structure. Automatic unloading is achieved through transmission components, reducing manual operation. The stability and accuracy are improved by using elastic components and gear and rack transmission.
Automated unloading has been achieved, reducing labor costs, improving production efficiency, ensuring product quality and safety, and avoiding damage to products caused by manual operation.
Smart Images

Figure CN223822634U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to machining equipment technical field, specifically, relates to a material receiving trolley for burring machine production. BACKGROUND
[0002] The metal plate burring machine is a kind of mechanical equipment specially used for removing burr and sharp edge generated in the processing of metal plate edge, in metal processing industry, especially after cutting, stamping, bending and other processes, the edge of metal plate often forms some small metal fragments or protruding parts, these burrs not only affect the appearance quality of product, but also can cause safety hazards, such as scratching operator.
[0003] The existing metal plate burring machine still has many artificial operation positions in the operation process, such as monitoring the unloading condition of plate at the outlet, timely removing the plate that has completed burring treatment, preventing accumulation and deformation, this way not only increases labor cost, but also needs artificial continuous monitoring and intervention in the operation process, easy to make mistakes, affects production efficiency and product quality. UTILITY MODEL CONTENT
[0004] The utility model provides a material receiving trolley for burring machine production, solve the problem that the plate burring machine outlet unloading still needs artificial operation in the related art to avoid material accumulation, lead to the problem of increasing labor cost.
[0005] The technical scheme of the utility model is as follows:
[0006] A material receiving trolley for burring machine production is used for receiving products at the outlet of burring machine, comprising:
[0007] Main body;
[0008] Material receiving platform, the material receiving platform mobile setting is in the main body;
[0009] Pushing plate, the pushing plate mobile setting is in the main body, the pushing plate is configured to the outlet side, the pushing plate removes after moving and pushes the material receiving platform away from the outlet;
[0010] Transmission part, the transmission part is arranged on the main body, the transmission part is connected with the material receiving platform and the pushing plate, and the transmission part is configured to move the pushing plate through the transmission part after the material receiving platform moves.
[0011] As a further technical scheme, the main body has a material receiving groove, the material receiving platform is movably arranged in the material receiving groove, and the material receiving platform moves along the vertical direction, and the material receiving platform is configured to move downward after receiving material.
[0012] As a further technical solution, the material receiving platform, which moves vertically, also includes:
[0013] An elastic element is disposed within the receiving groove, with its two ends connected to the bottom of the receiving platform and the main body, respectively, and the elastic element provides a force for the receiving platform to move upward.
[0014] As a further technical solution, the push plate has a rack portion, and the transmission component includes:
[0015] Gear 1 is rotatably mounted on the main body and meshes with the rack. When gear 1 rotates, it drives the push plate to move. The transmission component is configured such that when the receiving platform moves, it drives gear 1 to rotate.
[0016] As a further technical solution, the receiving platform has a rack section two, and the transmission component further includes:
[0017] Gear 2 is rotatably mounted on the main body and located on one side of gear 1. Both gear 1 and gear 2 have shaft portions.
[0018] A circulating belt is sleeved on the shaft portion of gear one and the shaft portion of gear two, and rack portion two meshes with gear two.
[0019] As a further technical solution, one end of the receiving platform has the second rack portion, which is arranged vertically, and the top of the push plate has the first rack portion, which is arranged horizontally, and the second rack portion abuts against the inner wall of the receiving groove.
[0020] As a further technical solution, the elastic element is a plurality of elements, which are arranged along a matrix.
[0021] As a further technical solution, there are two push plates and two transmission components, each corresponding to one another. The two transmission components are spaced apart, and the receiving platform is located between the two transmission components.
[0022] As a further technical solution, it also includes:
[0023] The casters are located at the bottom of the main body.
[0024] As a further technical solution, it also includes:
[0025] A handle is provided on the main body and located on one side of the receiving platform.
[0026] The working principle and beneficial effects of this utility model are as follows:
[0027] 1. Automated unloading: The product is automatically received at the deburring machine outlet by the movement of the receiving platform and the action of the push plate. This reduces the manual operation of monitoring the unloading of the sheet material at the outlet and manually removing the sheet material, thereby reducing the company's labor input costs.
[0028] 2. Transmission connection: The transmission structure is used to transmit the gravity force of the receiving platform to the push plate, so as to push the receiving platform and the main body away from the opening, thereby avoiding the accumulation of products on the receiving platform and improving the level of automation.
[0029] 3. Ensure product quality: The automatic material receiving and automatic material transfer process reduces the damage to the product caused by collisions, scratches and other damage that may be caused by manual operation. This helps to ensure that the appearance quality of the product after deburring is not affected by additional factors, ensuring that the product meets quality standards. At the same time, it provides a safer guarantee for the production environment. Attached Figure Description
[0030] The preferred embodiments will be described below in a clear and easy-to-understand manner, in conjunction with the accompanying drawings, to further explain the above-mentioned characteristics, technical features, advantages and implementation methods of this utility model.
[0031] Figure 1 This is a diagram showing the use of a material receiving trolley for a deburring machine in this utility model.
[0032] Figure 2 This is a schematic diagram of a material receiving trolley used in the production of a deburring machine according to this utility model;
[0033] Figure 3 This is a schematic diagram of the internal structure of a receiving trolley used in the production of a deburring machine according to this utility model;
[0034] Figure 4 This is a schematic diagram of the material receiving platform structure in this utility model;
[0035] Figure 5 This utility model Figure 3 Enlarged view of section A in the middle;
[0036] Figure 6 This utility model Figure 4 Enlarged view of section B in the middle.
[0037] In the diagram: 1. Outlet, 2. Main body, 201. Receiving groove, 3. Receiving platform, 301. Rack part two, 4. Push plate, 401. Rack part one, 5. Transmission component, 501. Gear one, 502. Gear two, 503. Shaft, 504. Circulating belt, 6. Elastic component, 7. Universal wheel, 8. Handle. Detailed Implementation
[0038] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the specific implementation methods of this utility model will be described below with reference to the accompanying drawings. Obviously, the drawings described below are merely some embodiments of this utility model. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without any creative effort.
[0039] To keep the drawings concise, only the parts relevant to the utility model are shown schematically in each drawing; these do not represent the actual structure of the product. Furthermore, for ease of understanding, in some drawings, only one of the components with the same structure or function is schematically shown, or only one is labeled. In this document, "a" not only means "only one," but can also mean "more than one," and "several" includes "two" and "more than two."
[0040] In this document, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0041] Furthermore, in the description of this application, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0042] Reference Figures 1-6 This first embodiment of the present invention proposes a receiving trolley for deburring machine production, used to receive products at the outlet 1 of the deburring machine, comprising: a main body 2; a receiving platform 3 movably disposed on the main body 2; a push plate 4 movably disposed on the main body 2, the push plate 4 being configured on one side of the outlet 1, and the push plate 4 pushing the receiving platform 3 away from the outlet 1 after moving; and a transmission component 5 disposed on the main body 2, the transmission component 5 connecting the receiving platform 3 and the push plate 4, the transmission component 5 being configured to move the push plate 4 after the receiving platform 3 moves.
[0043] In this embodiment, the working process of the receiving trolley is as follows:
[0044] Initially, the receiving platform 3 is located below the deburring machine outlet 1, ready to receive the deburred metal sheets output from outlet 1. Once the receiving platform 3 begins to receive the metal sheets, it begins to move under gravity. Simultaneously, since the transmission component 5 connects the receiving platform 3 and the push plate 4, and the push plate 4 is located on one side of outlet 1, the movement of the receiving platform 3 will drive the push plate 4 to move through the transmission component 5. The push plate 4 moves and abuts against the solid part near the deburring machine outlet 1. Since the overall position of the deburring machine is fixed, as the push plate 4 gradually moves, the trolley-shaped main body 2 can be moved away from the receiving platform 3, so that outlet 1 can continuously discharge metal sheets to the appropriate position on the receiving platform 3, avoiding accumulation.
[0045] The transmission component 5 can take various forms, such as:
[0046] A linkage mechanism, consisting of multiple links and joints, connects one end to the moving part of the receiving platform 3 and the other end to the corresponding part of the push plate 4. When the receiving platform 3 moves, the push plate 4 swings around the connection point through the transmission of the links, thus pushing away from the receiving platform 3. Another example is a chain drive, where a chain and sprocket are mounted on the main body 2. The receiving platform 3 and the push plate 4 are fixedly or detachably connected to different parts of the chain in a loop. When the receiving platform 3 moves, it drives the chain, thereby moving the push plate 4 connected to the chain. Yet another example is a rack and pinion drive: a rack is mounted on the main body 2, and a gear meshing with the rack is mounted on the receiving platform 3. When the receiving platform 3 moves, the gear rolls along the rack, and the motion is transmitted to the push plate 4 through an intermediate transmission mechanism (such as a link or chain), causing the push plate 4 to move. Each of these three methods has its advantages and disadvantages, and the appropriate method can be selected based on different scenarios and requirements.
[0047] Specifically, the main body 2 is the basic L-shaped frame structure of the entire receiving trolley. The L-shape facilitates movement, and it can be made of metal (such as welded steel beams) to support components such as the receiving platform 3, the push plate 4, and the transmission components 5. It can move smoothly on the workshop floor or a specific track. The main body 2 is equipped with slides or guide rails adapted to the receiving platform 3 to guide its translational movement. Supports or connection points for mounting the transmission components 5 and the push plate 4 are also provided at appropriate locations to ensure secure connections and coordinated movement between components. The receiving platform 3 typically uses a flat metal plate structure, and its surface can be polished... Anti-slip treatment (such as spraying anti-slip coating or setting anti-slip texture) is used to prevent the metal sheet from slipping during the receiving process. Furthermore, its edges can be equipped with guardrails or baffles at an appropriate height, and rollers or sliders are installed at the bottom of the receiving platform 3 to cooperate with the slide rails or guide rails on the main body 2. Among them, the push plate 4 is a flat plate with a certain area and strength, and its material is the same as or similar to that of the main body 2. It is horizontally installed on the side of the main body 2 near the deburring machine outlet 1, and is connected to the main body 2 by hinges or sliders at its bottom, so that it can swing or translate around the connection point to push the receiving platform 3 away from the outlet 1.
[0048] Furthermore, the main body 2 has a receiving groove 201, and the receiving platform 3 is movably disposed in the receiving groove 201. The receiving platform 3 moves in the vertical direction and is configured to move downward after receiving material.
[0049] In this embodiment, the receiving platform 3 moves vertically and is housed in the receiving groove 201. Compared with the receiving structure that extends in an inclined direction, it greatly reduces the space occupied by the receiving trolley in the horizontal direction when not in use or during the receiving gap, and facilitates the early processing. At the same time, it can effectively reduce the shaking or deviation caused by external factors (such as workshop airflow, slight vibration, etc.) during the receiving process. After receiving the material, the platform moves downward, making it easier to realize power transmission through the transmission component 5 and control the movement of the push plate 4.
[0050] Furthermore, the material receiving platform 3 moves vertically and also includes: an elastic element 6 disposed in the material receiving groove 201, with both ends of the elastic element 6 connected to the bottom of the material receiving platform 3 and the main body 2 respectively, and the elastic element 6 providing the force for the material receiving platform 3 to move upward.
[0051] In this embodiment, during the receiving process, when the metal sheet slides from the deburring machine outlet 1 onto the receiving platform 3, a certain impact force will be generated. The elastic element 6 can effectively buffer and absorb this impact force. At the same time, the outlet 1 continues to feed material, and the receiving platform 3 gradually descends. The force is uniform, and the power transmission can be stably achieved through the transmission element 5. It also has the ability to reset, so no additional manual operation is required.
[0052] Specifically, the elastic element 6 can be a spring as the main component. Its upper end is firmly connected to the bottom of the receiving platform 3 through a connecting seat or hook. The main body 2 is provided with a fixed seat or slot at the corresponding position at the bottom of the receiving groove 201. The lower end of the spring is fixed by inserting into the slot or connecting to the fixed seat with bolts, so as to ensure that the lower end of the spring is stable during the operation and will not shift or shake.
[0053] Furthermore, the push plate 4 has a rack portion 401, and the transmission member 5 includes a gear 501 rotatably mounted on the main body 2. The gear 501 meshes with the rack portion 401. After the gear 501 rotates, it drives the push plate 4 to move. The transmission member 5 is configured such that after the receiving platform 3 moves, it drives the gear 501 to rotate.
[0054] Furthermore, the receiving platform 3 has a rack portion 301, and the transmission component 5 also includes: a second gear 502 rotatably mounted on the main body 2, located on one side of the first gear 501, and both the first gear 501 and the second gear 502 have shaft portions 503; a circulating belt 504 is sleeved on the shaft portions 503 of the first gear 501 and the shaft portions 503 of the second gear 502, and the rack portion 301 meshes with the second gear 502.
[0055] Furthermore, the receiving platform 3 has a rack portion 2 301 at one end, which is arranged vertically, and the push plate 4 has a rack portion 1 401 at the top, which is arranged horizontally, and the rack portion 2 301 abuts against the inner wall of the receiving groove 201.
[0056] In this embodiment, a gear and rack transmission with a circulating belt 504 is selected to improve the working accuracy of the entire receiving trolley. The specific working process is as follows: Initially, the receiving platform 3 is located at a higher position in the receiving groove 201, ready to receive the metal sheet sliding out from the deburring machine outlet 1. At this time, the push plate 4 is stationary, located on one side of the outlet 1 and not in contact with the receiving platform 3. When the metal sheet falls from the deburring machine outlet 1 onto the receiving platform 3, the receiving platform 3 begins to move vertically downwards under the action of gravity. Since one end of the receiving platform 3 has a vertically arranged rack portion 301, it meshes with the gear 502 rotatably mounted on the main body 2, thus improving the receiving platform's stability. The downward movement of platform 3 drives gear 2 502 to rotate. The rotation of gear 2 502 then transmits power to gear 1 501 through the circulating belt 504 sleeved on its shaft 503 and gear 1 501 shaft 503. Gear 1 501 meshes with rack 401 arranged laterally on the top of push plate 4. Driven by the circulating belt 504, gear 1 501 rotates, thereby causing push plate 4 to move laterally toward the deburring machine. As push plate 4 moves, it gradually contacts the deburring machine and applies a thrust, pushing the main body 2 and receiving platform 3 and other components away from outlet 1. During this process, outlet 1 continuously discharges material, which can achieve uniform material receiving and avoid accumulation.
[0057] Gear transmission has high mechanical efficiency and can effectively convert the vertical moving force of the receiving platform 3 into the lateral moving force of the push plate 4. The energy loss during the transmission process is small, and it can be cleverly arranged in the limited space of the main body 2, making the overall structure of the receiving trolley more compact.
[0058] Furthermore, there are several elastic elements 6, and these elastic elements 6 are arranged along a matrix.
[0059] In this embodiment, the elastic elements 6 are set as a plurality of elements and arranged along the matrix, so that the receiving platform 3 can be uniformly elastically supported in all directions. When the metal sheet falls onto the receiving platform 3, no matter where it falls, multiple elastic elements 6 can share the impact force together, avoiding local deformation or damage to the receiving platform 3 due to excessive force at a single point.
[0060] Furthermore, there are two push plates 4 and two transmission components 5, with each push plate 4 and transmission component 5 corresponding to one another. The two transmission components 5 are spaced apart, and the receiving platform 3 is located between the two transmission components 5.
[0061] In this embodiment, the design of dual push plates 4 and dual transmission components 5, which correspond one-to-one, can make the receiving platform 3 more evenly stressed and move more smoothly, improve the stability of receiving materials, adapt to different working conditions, and ensure efficient production operation.
[0062] Furthermore, it also includes: omnidirectional wheels 7 are located at the bottom of the main body 2.
[0063] Furthermore, it also includes: handle 8 is set on the main body 2, located on one side of the receiving platform 3.
[0064] In this embodiment, the casters 7 at the bottom of the main body 2 facilitate the flexible movement of the receiving trolley in the workshop. Their position can be easily adjusted to adapt to different layouts of deburring machines and subsequent process requirements, improving the equipment's versatility and layout flexibility. The handle 8 allows operators to precisely control the trolley's direction and speed of movement; both work together to enhance the ease and efficiency of using the receiving trolley.
[0065] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A receiving trolley for deburring machine production, used to receive products at the outlet (1) of the deburring machine, characterized in that, include: Main body (2); A receiving platform (3) is movably mounted on the main body (2); Push plate (4), the push plate (4) is movably disposed on the main body (2), the push plate (4) is configured on the side of the outlet (1), and after the push plate (4) moves, it pushes the receiving platform (3) away from the outlet (1). Transmission component (5), which is disposed on the main body (2), connects the receiving platform (3) and the push plate (4), and is configured such that after the receiving platform (3) moves, the push plate (4) is moved by the transmission component (5).
2. The receiving trolley for deburring machine production according to claim 1, characterized in that, The main body (2) has a receiving groove (201), the receiving platform (3) is movably disposed in the receiving groove (201), and the receiving platform (3) moves in the vertical direction. The receiving platform (3) is configured to move downward after receiving material.
3. The receiving trolley for deburring machine production according to claim 2, characterized in that, The receiving platform (3) moves vertically and also includes: The elastic element (6) is disposed in the receiving groove (201). The two ends of the elastic element (6) are respectively connected to the bottom of the receiving platform (3) and the main body (2), and the elastic element (6) provides the force for the receiving platform (3) to move upward.
4. The receiving trolley for deburring machine production according to claim 2, characterized in that, The push plate (4) has a rack portion (401), and the transmission member (5) includes: Gear 1 (501) is rotatably mounted on the main body (2). Gear 1 (501) meshes with rack 1 (401). After gear 1 (501) rotates, it drives the push plate (4) to move. The transmission member (5) is configured such that after the receiving platform (3) moves, it drives gear 1 (501) to rotate.
5. The receiving trolley for deburring machine production according to claim 4, characterized in that, The receiving platform (3) has a rack and pinion section (301), and the transmission component (5) further includes: Gear 2 (502) is rotatably mounted on the main body (2) and located on one side of gear 1 (501). Both gear 1 (501) and gear 2 (502) have shaft portions (503). A circulating belt (504) is sleeved on the shaft portion (503) of the first gear (501) and the shaft portion (503) of the second gear (502), and the rack portion (301) meshes with the second gear (502).
6. The receiving trolley for deburring machine production according to claim 5, characterized in that, The receiving platform (3) has a rack part two (301) at one end, the rack part two (301) is arranged vertically, the push plate (4) has a rack part one (401) at the top, the rack part one (401) is arranged horizontally, and the rack part two (301) abuts against the inner wall of the receiving groove (201).
7. A receiving trolley for deburring machine production according to claim 3, characterized in that, There are several elastic elements (6), and the several elastic elements (6) are arranged along a matrix.
8. The receiving trolley for deburring machine production according to claim 1, characterized in that, There are two push plates (4) and two transmission components (5). The push plates (4) and the transmission components (5) correspond one to one. The two transmission components (5) are spaced apart, and the receiving platform (3) is located between the two transmission components (5).
9. A receiving trolley for deburring machine production according to claim 1, characterized in that, Also includes: The universal wheel (7) is located at the bottom of the main body (2).
10. A receiving trolley for deburring machine production according to claim 1, characterized in that, Also includes: Handle (8), the handle (8) is disposed on the main body (2) and located on one side of the receiving platform (3).