Bending processing equipment for fixing stainless steel shell of magnetic box
By designing a bending processing equipment for stainless steel magnetic boxes, using the coordinated work of multiple components, the existing molds are solved in the complex and safety hazards of stainless steel magnetic boxes bending processing, and efficient and stable processing of workpieces is achieved.
Patent Information
- Application Number
- CN202510355867.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2025-06-20
AI Technical Summary
In the bending processing of stainless steel magnetic box, existing molds require multiple steps to operate, which are complex and prone to safety hazards.
A bending processing equipment is designed, including main frame assembly, oil injection assembly, lifting assembly, cutting assembly, limit assembly, cut assembly and pick-up assembly. Through the coordinated work of these components, the automatic conveying, fuel injection, cutting, bending and unloading of workpieces is realized.
The processing process of workpieces is simplified, processing efficiency is improved, manual operation is reduced, safety risks is reduced, and the workpiece is stable and efficient bending is achieved.
Smart Images

Figure CN120169971A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mold processing, and particularly relates to a bending processing device for fixing the stainless steel shell of a magnetic cassette. Background Art
[0002] With the continuous development of technology, the use of various mechanical equipment can better optimize work and life. During the construction of some buildings, for the fixation of prefabricated building templates, stainless steel magnetic cassettes are directly used. The stainless steel magnetic cassette combines with stainless steel through magnetism, solving the problems of low efficiency and large damage in traditional fixation methods, and is suitable for scenarios requiring high-precision and high-frequency operations. Its advantages are not only reflected in the improvement of production efficiency, but also in safety, durability and cost savings. The outside of the stainless steel magnetic cassette is a combined structure of stainless steel. Through a mechanical structure, a powerful magnetic block is moved to the bottom edge to be level, so that the magnetic block directly adsorbs at the designated position. When removing, the magnetic block is lifted from the inside through the mechanical structure, so that the magnetic block is no longer separated from the edge of the stainless steel box, and the magnetic block no longer adsorbs, completing the work of the device.
[0003] The combination of the stainless steel magnetic cassette is relatively heavy, mainly realizing the external fixation and bottom support functions, so relatively stable stainless steel materials will be used. During processing, the cut materials need to be bent. After the existing molds bend the materials, multiple steps of operations are required to remove the materials forming the box body, and safety hazards are likely to occur during the complex steps. Summary of the Invention
[0004] An embodiment of the present disclosure relates to a bending processing device for fixing the stainless steel shell of a magnetic cassette, which directly conveys the workpiece, allows the oil spraying component to spray oil first, facilitating subsequent processing of the workpiece. The limiting component limits the feeding workpiece, and when the lifting component descends, it will first drive the cutting component to cut the workpiece, and then let the lifting component bend the workpiece. When the lifting component rises, it will push the workpiece away through the blanking component. At this time, the receiving component feeds to receive the workpiece to complete the safe processing of the device.
[0005] In the first aspect of the present disclosure, a bending processing device for fixing the stainless steel shell of a magnetic cassette is provided, specifically including: a main frame component; an oil spraying component is arranged on the upper end surface of the main frame component near the left side, a lifting component is installed at the upper end of the main frame component, a cutting component is arranged at the position between the lifting component and the oil spraying component on the main frame component, a limiting component is arranged at the bottom of the lifting component on the right side of the cutting component, a blanking component is installed at the top position of the lifting component, a receiving component is installed at the front position of the lifting component of the main frame component, and a workpiece is conveyed at the oil spraying component and the cutting component of the main frame component.
[0006] In at least some embodiments, a bottom frame is installed at a position near the bottom of the lifting component on the main frame body of the main frame component. A spring is installed on the bottom frame, and the spring of the bottom frame contacts the lifting component. An inclined auxiliary plate is arranged at the left position of the bottom frame, and the auxiliary plate corresponds to the bottom of the cutting component.
[0007] In at least some embodiments, the oil rack frame of the oil injection component is installed at the left position of the device. Two sets of spray pipes are installed up and down on the oil rack frame. The workpiece passes through between the spray pipes. Nozzles are arranged at positions on the spray pipes facing the workpiece in the middle, and the nozzles are set as inclined structures facing both ends.
[0008] In at least some embodiments, the cutting frame of the cutting component is installed at the right position of the oil injection component on the main frame component. The top of the cutting frame directly contacts the workpiece. An inner groove is arranged on the cutting frame, and the inner groove is directly connected to the bottom of the main frame component. The cutting plate of the cutting component is fixed at the lifting component, and the bottom part of the cutting plate corresponds to the inner groove.
[0009] In at least some embodiments, the side baffles of the limiting component are installed at the right position of the cutting component. The side baffles are installed in two groups that are symmetric front and back. Reinforcing ribs are arranged at the overall outer ends of the side baffles. A sliding groove is arranged at the right position of the side baffles. An inner slider is slidably installed in the sliding groove of the side baffle, and a positioning block is screwed and installed on the inner slider to ensure the accurate position of the workpiece during feeding.
[0010] In at least some embodiments, the mounting frame of the lifting component is arranged at the rear position of the main frame component. A top mold is installed at the top position of the mounting frame. A bottom mold is installed at the position of the main frame component corresponding to the mounting frame. An inclined block is arranged on the outer wall of the top mold. A driving frame is slidably installed on the outer wall of the top mold. An inclined groove is arranged on the driving frame, and the inclined groove of the driving frame corresponds to the inclined block of the top mold.
[0011] In at least some embodiments, the fixing frame of the blanking component is fixed at the top position of the lifting component. The top of the fixing frame is provided with a structure extending forward. A blanking column is arranged on the extended part of the fixing frame. The blanking column is set to extend downward. The blanking column is inserted into the top mold of the lifting component. After the lifting component bends the workpiece into a box, the workpiece will be stuck at the bottom of the top mold.
[0012] In at least some embodiments, the picking-up frame of the picking-up component is installed at the front end of the lifting component of the main frame component. Side slide rails are installed on the top of the picking-up frame. A picking-up groove is slidably installed on the side slide rails. The bottom surface of the picking-up groove is set to be inclined. A bottom layer plate is arranged at the bottom of the picking-up frame corresponding to the picking-up groove position. The rack plate is set to be inclined. A motor is installed on the outer side of the top of the picking-up frame. A rack plate is arranged at a position near the motor at the top of the picking-up groove, and the rack plate is in contact with the motor for transmission.
[0013] The present invention provides a bending processing device for fixing the stainless steel shell of a magnetic cassette, which has the following beneficial effects: In the present invention, first, the device conveys the workpiece, making the workpiece approach the oil spraying component first. The oil spraying component can spray oil mist, enabling the upper and lower surfaces of the workpiece to adhere to the oil liquid. Thus, during the subsequent bending and stamping of the workpiece, it has a more stable effect. After the workpiece is fed to the designated position and then to the position of the limiting component, the limiting component restricts the position of the workpiece, and the limiting component itself can adjust its position according to the situation to adapt to workpieces of different batches. At this time, the lifting component will descend. A cutting plate is installed on one side of the lifting component, and the bottom of the cutting plate will come into contact with the workpiece first, enabling the cutting component to divide the workpiece. The still descending lifting component will then squeeze the workpiece, achieving the bending of the edge of the workpiece by the lifting component and making the workpiece form a box shape to wrap around the bottom of the lifting component. At this time, the lifting component resets and rises. A blanking component is installed on the lifting component. The blanking component is in a fixed state, and the rising lifting component will extend the blanking component from the bottom, realizing the separation of the workpiece from the lifting component. At the same time, the receiving component can slide to the bottom of the lifting component to receive the workpiece, achieving the receiving of the workpiece by the receiving component. The bottom structure of the main frame component facilitates the installation and reset of the top mold, and at the same time, the main frame component facilitates the guiding and discharging of waste materials at the cutting component, thus further improving the automatic production efficiency of the device.
[0014] In addition, some components of the lifting component are installed on the main frame component. When the lifting component descends, it will be pressed down. In order to enable the components of the lifting component to quickly reset, a bottom frame is directly installed at the position of the main frame body corresponding to the lifting component. The bottom frame contacts the lifting component through two groups of springs, realizing the rapid reset function of the components of the lifting component. An auxiliary plate is arranged at the left position of the bottom frame, and the auxiliary plate corresponds to the bottom of the cutting component, allowing the waste materials cut by the cutting component to directly fall. The auxiliary plate is guided by an inclined structure to assist in guiding and discharging the sundries.
[0015] In addition, usually when the workpiece is bent, there will be some friction on the outer wall of the workpiece, and direct contact will cause damage to the workpiece. Therefore, an oil spraying component is directly installed at the position of the main frame component before feeding the workpiece. The spray pipes of the oil rack frame are set in two groups, upper and lower, and the workpiece passes through the position between the upper and lower spray pipes. Nozzles arranged in an inclined manner are provided on the surface of the spray pipes corresponding to the workpiece. When the workpiece passes through the spray pipes, oil mist is sprayed through the nozzles. The nozzles are set in an inclined shape, which helps to increase the contact surface between the workpiece passing through the oil spraying component and the oil mist, thus facilitating more stable bending and pressing of the workpiece subsequently.
[0016] In addition, first, the workpiece is conveyed through the top of the cutting frame. After the workpiece moves into place, the connection part of the workpiece is positioned at the inner groove of the cutting frame. At this time, the cutting plate follows the lifting component and descends, with the bottom of the cutting plate lower than the bottom of the lifting component, so that the cutting plate cuts the contact position of the workpiece to achieve the separation of the workpieces from each other. The inner groove is set to be directly connected to the bottom of the main frame component, allowing the waste material after workpiece cutting to be quickly discharged, thus completing the rapid separation of the workpieces from each other.
[0017] In addition, the side baffle is directly arranged on the right side of the cutting component, enabling the side baffle to cooperate with the cutting component and the lifting component to bend the workpiece. Reinforcing ribs are arranged at the outer end of the side baffle and the box body component to make the side baffle more stable, so that when the lifting component descends later, a stable extrusion and bending effect on the workpiece can be formed. A sliding groove is directly arranged at the right side position of the side baffle, and an inner slider is slidably installed on the sliding groove. The inner slider is fixed by a screwed positioning block. During use, the positioning block is directly loosened to adjust the position, and then the positioning block is tightened to complete the fixation of the position of the positioning block, so that the positioning block can play a role of blocking and limiting when the workpiece is fed.
[0018] In addition, during operation, first, the driving frame is driven, and the driving frame drives the top die through the inclined groove to achieve the effect of the top die descending. At this time, the bottom of the top die clamps on the workpiece, and the top die will always descend. When the top die descends again, the top die bends the edge of the workpiece again, enabling the lifting component to bend the workpiece into a box shape. The mounting frame is set to be slidably installed on the mounting frame to make the up and down movement of the top die more stable.
[0019] In addition, in order to make the workpiece fall from the top die, a fixing frame is directly installed at the top of the mounting frame, and a blanking column is arranged at the extended part of the front end of the fixing frame. The blanking column directly penetrates into the top die. After the top die rises, the bottom of the blanking column extends out from the bottom of the top die to achieve the effect of the blanking column pushing the workpiece down and realizing the safe blanking of the workpiece.
[0020] In addition, the receiving frame is directly arranged at a position of the main frame component close to the lifting component. The receiving groove is slidably installed on the top of the receiving frame through the side slide rail, enabling the receiving groove to slide to the bottom of the lifting component to receive the workpiece. An inclined bottom plate is arranged at the receiving frame, corresponding to the inclined receiving groove, to play a role of feeding the workpiece while cooperating with the bottom plate when receiving the workpiece. In order to make the receiving groove slide to the bottom of the lifting component quickly after the lifting component rises, a motor is directly installed on one side of the top of the receiving frame, and a rack plate is arranged at a position close to the motor at the top of the receiving groove. The motor drives the receiving groove quickly through the rack plate to realize the stable receiving and blanking function of the receiving component for the workpiece. Description of the Drawings
[0021] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly introduced below.
[0022] The accompanying drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.
[0023] In the accompanying drawings: Figure 1 The overall structural schematic diagram of the present application is shown; Figure 2 The schematic diagram of the blanking component and the lifting component structure of the present application is shown; Figure 3 The schematic diagram of the picking component structure of the present application is shown; Figure 4 The schematic diagram of the lifting component and the main frame component structure of the present application is shown; Figure 5 The schematic diagram of the main frame component structure of the present application is shown; Figure 6 The schematic diagram of the enlarged structure of the position of the limiting component of the present application is shown; Figure 7 The present application shows Figure 1 The schematic diagram of the partial enlarged structure at position A; Figure 8 The present application shows Figure 3 The schematic diagram of the partial enlarged structure at position B; List of reference numerals 1. Main frame component; 101. Main frame body; 102. Bottom frame; 103. Auxiliary plate; 2. Oil injection component; 201. Oil rack frame; 202. Oil injection pipe; 203. Nozzle; 3. Cutting component; 301. Cutting frame; 302. Inner groove; 303. Cutting plate; 4. Limiting component; 401. Side baffle; 402. Slide groove; 403. Inner slider; 404. Positioning block; 5. Lifting component; 501. Mounting frame; 502. Top mold; 503. Bottom mold; 504. Driving frame; 6. Blanking component; 601. Fixed frame; 602. Blanking column; 7. Picking component; 701. Picking frame; 702. Side slide rail; 703. Picking frame; 704. Bottom plate; 705. Rack plate; 8. Workpiece. Detailed implementation manners
[0024] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions of the embodiments of the present invention with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of the present invention.
[0025] Embodiment 1: Please refer to Figures 1 to 8 : The present invention provides a bending processing device for fixing the stainless steel shell of a magnetic cassette, including: a main frame assembly 1; an oil spraying assembly 2 is arranged on the upper end surface of the main frame assembly 1 near the left side, a lifting assembly 5 is installed at the upper end of the main frame assembly 1, a cutting assembly 3 is arranged between the lifting assembly 5 and the oil spraying assembly 2 on the main frame assembly 1, a limiting assembly 4 is arranged at the bottom of the lifting assembly 5 on the right side of the cutting assembly 3, a blanking assembly 6 is installed at the top position of the lifting assembly 5, a picking assembly 7 is installed at the front position of the lifting assembly 5 of the main frame assembly 1, and a workpiece 8 is conveyed between the oil spraying assembly 2 and the cutting assembly 3 of the main frame assembly 1.
[0026] In the embodiments of the present disclosure, as Figure 2 Figure 5 shown, a bottom frame 102 is installed at the bottom position of the main frame body 101 of the main frame assembly 1 close to the lifting assembly 5. A spring is installed on the bottom frame 102, and the spring of the bottom frame 102 contacts the lifting assembly 5. Part of the components of the lifting assembly 5 are installed on the main frame assembly 1. When the lifting assembly 5 descends, it will be pressed down. In order to enable the components of the lifting assembly 5 to quickly reset, the bottom frame 102 is directly installed at the position of the main frame body 101 corresponding to the lifting assembly 5, and the bottom frame 102 contacts the lifting assembly 5 through two groups of springs, realizing the function of quickly resetting the components of the lifting assembly 5. An inclined auxiliary plate 103 is arranged at the left side position of the bottom frame 102, and the auxiliary plate 103 corresponds to the bottom of the cutting assembly 3. An auxiliary plate 103 is arranged at the left side position of the bottom frame 102, and the auxiliary plate 103 corresponds to the bottom of the cutting assembly 3, allowing the waste materials cut at the cutting assembly 3 to directly fall, and the auxiliary plate 103 guides through an inclined structure, enabling the auxiliary plate 103 to assist in discharging the sundries.
[0027] In the embodiments of the present disclosure, as Figure 2 Figure 7As shown in the figure, the oil rack frame 201 of the oil injection assembly 2 is installed at the left position of the device. Two sets of upper and lower spray pipes 202 are installed on the oil rack frame 201. The workpiece 8 passes through between the spray pipes 202. Nozzles 203 are arranged on the spray pipes 202 facing the workpiece 8 in the middle. The nozzles 203 are set as inclined structures facing both ends. Usually, when the workpiece 8 is bent, there will be some friction on the outer wall of the workpiece 8, and direct contact will cause damage to the workpiece 8. Therefore, the oil injection assembly 2 is directly installed at the position of the main frame assembly 1 before feeding the workpiece 8. The spray pipes 202 of the oil rack frame 201 are set as two sets of upper and lower ones, allowing the workpiece 8 to pass through the position between the upper and lower spray pipes 202. And the nozzles 203 are arranged in an inclined manner on the surface of the spray pipes 202 corresponding to the workpiece 8. When the workpiece 8 passes through the spray pipes 202, atomized oil is sprayed through the nozzles 203. Setting the nozzles 203 as inclined helps to increase the contact area between the workpiece 8 passing through the oil injection assembly 2 and the oil mist, thus facilitating more stable bending and pressing of the workpiece 8 in the subsequent process.
[0028] In the embodiment of the present disclosure, as Figure 4 Figure 5 shown, the cutting frame 301 of the cutting assembly 3 is installed at the right position of the oil injection assembly 2 on the main frame assembly 1. The top of the cutting frame 301 is in direct contact with the workpiece 8. An inner groove 302 is provided on the cutting frame 301, and the inner groove 302 is directly connected to the bottom of the main frame assembly 1. The cutting plate 303 of the cutting assembly 3 is fixed at the lifting assembly 5. The bottom part of the cutting plate 303 corresponds to the inner groove 302. First, the workpiece 8 is conveyed through the top of the cutting frame 301. After the workpiece 8 moves into place, the connection part of the workpiece 8 is located at the position of the inner groove 302 of the cutting frame 301. At this time, the cutting plate 303 follows the lifting assembly 5 and descends. The bottom of the cutting plate 303 is lower than the bottom of the lifting assembly 5, so that the cutting plate 303 cuts the contact position of the workpiece 8 to realize the separation of the workpiece 8. The inner groove 302 is set to be directly connected to the bottom of the main frame assembly 1, allowing the waste material after cutting the workpiece 8 to be quickly discharged, completing the rapid separation of the workpiece 8.
[0029] In the embodiment of the present disclosure, as Figure 3 Figure 6As shown, the side baffle 401 of the limit component 4 is installed on the right side of the cutting component 3. The side baffle 401 is installed in two groups that are symmetrical front and back. The overall outer end of the side baffle 401 is provided with reinforcing ribs. By directly setting the side baffle 401 on the right side of the cutting component 3, the side baffle 401 can cooperate with the cutting component 3 and the lifting component 5 to bend the workpiece 8. And by setting reinforcing ribs at the outer end of the side baffle 401 and the box body component, the side baffle 401 can be made more stable, so that when the subsequent lifting component 5 descends, a stable squeezing and bending effect on the workpiece 8 can be formed. A chute 402 is installed at the right side position of the side baffle 401. An inner slider 403 is slidably installed in the chute 402 of the side baffle 401. A positioning block 404 is screwed and installed on the inner slider 403. In order to make the position of the workpiece 8 accurate during feeding, a chute 402 is directly set at the right side position of the side baffle 401, and the inner slider 403 is slidably installed on the chute 402. The inner slider 403 is fixed by the screwed positioning block 404. During use, the positioning block 404 is directly loosened to adjust the position, and then the positioning block 404 is tightened to complete the position fixing of the positioning block 404, so that the positioning block 404 can play a role of blocking and limiting when the workpiece 8 is fed.
[0030] In the embodiment of the present disclosure, as Figure 2 Figure 4 shown, the mounting frame 501 of the lifting component 5 is installed at the rear side position of the main frame component 1. A top mold 502 is installed at the top position of the mounting frame 501. A bottom mold 503 is installed at the position of the main frame component 1 corresponding to the mounting frame 501. An inclined block is provided on the outer wall of the top mold 502. A driving frame 504 is slidably installed on the outer wall of the top mold 502. An inclined slot is opened on the driving frame 504. The inclined slot of the driving frame 504 corresponds to the inclined block of the top mold 502. During operation, first the driving frame 504 will be driven, and the driving frame 504 will drive the top mold 502 through the inclined slot to realize the function of the top mold 502 descending. At this time, the bottom of the top mold 502 is clamped on the workpiece 8, and the top mold 502 will always descend, so that the top mold 502 descends again, causing the top mold 502 to bend the edge of the workpiece 8 again, realizing that the lifting component 5 bends the workpiece 8 into a box shape. The mounting frame 501 is set to be slidably installed on the mounting frame 501 to make the up and down lifting of the top mold 502 more stable.
[0031] In the embodiment of the present disclosure, as Figure 1 Figure 2As shown in the figure, the fixing frame 601 of the blanking component 6 is fixed at the top position of the lifting component 5. The top of the fixing frame 601 is provided with a structure extending forward. The extending part of the fixing frame 601 is provided with a blanking column 602, and the blanking column 602 is set to extend downward. The blanking column 602 is inserted into the top die 502 of the lifting component 5. After the lifting component 5 bends the workpiece 8 into a box, the workpiece 8 will be stuck at the bottom of the top die 502. In order to make the workpiece 8 fall from the top die 502, the top of the mounting frame 501 is directly installed with the fixing frame 601, and the extending part at the front end of the fixing frame 601 is provided with a blanking column 602, and the blanking column 602 directly penetrates into the top die 502. After the top die 502 rises, the bottom of the blanking column 602 extends out from the bottom of the top die 502, realizing the function of the blanking column 602 to push down the workpiece 8 and achieving the safe blanking effect of the workpiece 8.
[0032] In the embodiment of the present disclosure, as Figure 3 Figure 8 shown in the figure, the receiving frame 701 of the receiving component 7 is installed at the front end of the lifting component 5 of the main frame component 1. The top of the receiving frame 701 is installed with a side slide rail 702, and a receiving groove 703 is slidably installed on the side slide rail 702. The bottom surface of the receiving groove 703 is set to be inclined. The bottom of the receiving frame 701 corresponding to the position of the receiving groove 703 is provided with a bottom plate 704, and the rack plate 705 is set to be inclined. The receiving frame 701 is directly set at the position of the main frame component 1 close to the lifting component 5, and the receiving groove 703 is slidably installed on the top of the receiving frame 701 through the side slide rail 702, realizing that the receiving groove 703 can slide to the bottom of the lifting component 5 and realizing the receiving of the workpiece 8 by the receiving groove 703. And an inclined bottom plate 704 is provided at the receiving frame 701, making the bottom plate 704 correspond to the inclined receiving groove 703, playing a role in blanking the workpiece 8 while cooperating with the bottom plate 704 when receiving the workpiece 8. A motor is installed on the outer side of the top of the receiving frame 701, and a rack plate 705 is provided at the position of the receiving groove 703 close to the motor at the top. The rack plate 705 is in contact with the motor for transmission. In order to make the receiving groove 703 quickly slide to the bottom of the lifting component 5 after the lifting component 5 rises, a motor is directly installed on one side of the top of the receiving frame 701, and a rack plate 705 is provided at the position of the receiving groove 703 close to the motor, and the motor drives the receiving groove 703 quickly through the rack plate 705, realizing the stable receiving and blanking function of the receiving component 7 for the workpiece 8.
[0033] The working principle of this embodiment: Before use, first adjust the position of the limiting component 4 according to the production batch, and at the same time adjust the position of the blanking component 6 at the top of the lifting component 5 to complete the preparation of the device; During operation, the fuel injection component 2 will start to spray. At this time, the workpiece 8 will be conveyed to the position of the fuel injection component 2. The workpiece 8 passing through the fuel injection component 2 will be covered with fuel spray on both the upper and lower sides. The continuously feeding workpiece 8 will reach the position of the limit component 4, enabling the limit component 4 to limit the workpiece 8. At this time, the lifting component 5 will operate and descend. A cutting plate 303 is installed at the position of the cutting component 3 corresponding to the outer end of the lifting component 5. The bottom of the cutting plate 303 is lower than the bottom of the lifting component 5, allowing the cutting plate 303 to cut the workpiece 8 at the position of the cutting component 3, realizing the separation of the workpieces 8. At the same time, the lifting component 5 will continuously descend. The top mold 502 of the lifting component 5 will cooperate with the bottom mold 503 to bend the edge of the workpiece 8, realizing the formation of the workpiece 8 into a box shape. When the lifting component 5 rises, the exterior wrapped by the workpiece 8 is not likely to fall off. At this time, after the lifting component 5 rises to a certain position, the blanking component 6 will push the workpiece 8 out from the inner end of the lifting component 5. At the same time, the receiving groove 703 of the receiving component 7 will slide towards the inner end, enabling the receiving groove 703 to receive the workpiece 8. After the receiving groove 703 receives the workpiece 8, it cooperates with the bottom layer plate 704 to realize the function of receiving the workpiece 8 and simultaneously blanking the workpiece 8.
[0034] In this article, the following points need to be noted: 1. The attached drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure. Other structures can refer to the general design.
[0035] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0036] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A bending processing device for fixing a stainless steel shell of a magnetic box, comprising: A main frame assembly (1); an oil injection assembly (2) is arranged on the left side of the upper end surface of the main frame assembly (1), and is characterized in that a lifting assembly (5) is installed at the upper end of the main frame assembly (1); a cutting assembly (3) is arranged between the lifting assembly (5) and the oil injection assembly (2) on the main frame assembly (1); a limiting assembly (4) is arranged at the bottom of the lifting assembly (5) on the right side of the cutting assembly (3); a material discharge assembly (6) is installed at the top position of the lifting assembly (5); a receiving assembly (7) is installed at the front end position of the lifting assembly (5) of the main frame assembly (1); and a workpiece (8) is transported at the oil injection assembly (2) and the cutting assembly (3) of the main frame assembly (1).
2. The bending processing equipment for fixing the stainless steel shell of the magnetic box according to claim 1 is characterized in that: A bottom frame (102) is installed on the main frame body (101) of the main frame assembly (1) near the bottom of the lifting assembly (5); a spring is installed on the bottom frame (102); the spring of the bottom frame (102) is in contact with the lifting assembly (5); an inclined auxiliary plate (103) is provided on the left side of the bottom frame (102); the auxiliary plate (103) and the bottom of the cutting assembly (3) correspond to each other.
3. The bending processing equipment for fixing the stainless steel shell of the magnetic box according to claim 1 is characterized in that: The oil rack frame (201) of the oil spray assembly (2) is installed on the left side of the device. Two groups of upper and lower oil spray pipes (202) are installed on the oil rack frame (201). The oil spray pipes (202) pass through the workpiece (8). The oil spray pipes (202) are provided with nozzles (203) in the direction of the workpiece (8) in the middle. The nozzles (203) are arranged in an inclined structure facing both ends.
4. The bending processing equipment for fixing the stainless steel shell of the magnetic box according to claim 1 is characterized in that: The cutting frame (301) of the cutting assembly (3) is installed on the right side of the oil spray assembly (2) on the main frame assembly (1); the top of the cutting frame (301) is in direct contact with the workpiece (8); an inner groove (302) is provided on the cutting frame (301); the inner groove (302) is directly connected to the bottom of the main frame assembly (1); the cutting plate (303) of the cutting assembly (3) is fixed to the lifting assembly (5); the bottom portion of the cutting plate (303) corresponds to the inner groove (302).
5. The bending processing equipment for fixing the stainless steel shell of the magnetic box according to claim 1 is characterized in that: The side baffle (401) of the limit assembly (4) is installed at the right side of the cutting assembly (3). The side baffle (401) is installed in two groups that are symmetrical in front and back. The overall outer end of the side baffle (401) is provided with a reinforcing rib. The side baffle (401) is installed with a slide groove (402) at the right side. An inner slide block (403) is slidably installed in the slide groove (402) of the side baffle (401). A positioning block (404) is screwed on the inner slide block (403) to ensure the accuracy of the position of the workpiece (8) when feeding.
6. The bending processing equipment for fixing the stainless steel shell of a magnetic box according to claim 1 is characterized in that: The mounting frame (501) of the lifting assembly (5) is arranged at the rear side of the main frame assembly (1); a top mold (502) is installed at the top of the mounting frame (501); a bottom mold (503) is installed at a position of the main frame assembly (1) corresponding to the mounting frame (501); an inclined block is arranged on the outer wall of the top mold (502); a driving frame (504) is slidably mounted on the outer wall of the top mold (502); an inclined groove is provided on the driving frame (504); and the inclined groove of the driving frame (504) corresponds to the inclined block of the top mold (502).
7. The bending processing equipment for fixing the stainless steel shell of a magnetic box according to claim 1 is characterized in that: The fixed frame (601) of the blanking component (6) is fixed at the top position of the lifting component (5), and a structure extending toward the front end is arranged at the top of the fixed frame (601). The extended part of the fixed frame (601) is provided with a blanking column (602), and the blanking column (602) is arranged to extend toward the lower end. The blanking column (602) is inserted into the top mold (502) of the lifting component (5). After the lifting component (5) bends the workpiece (8) into a box, the workpiece (8) is stuck at the bottom of the top mold (502).
8. The bending processing equipment for fixing the stainless steel shell of a magnetic box according to claim 1 is characterized in that: The receiving frame (701) of the receiving assembly (7) is installed at the front end of the lifting assembly (5) of the main frame assembly (1); a side slide rail (702) is installed on the top of the receiving frame (701); a receiving groove (703) is slidably installed on the side slide rail (702); the bottom surface of the receiving groove (703) is arranged in an inclined shape; a bottom plate (704) is arranged at the bottom of the receiving frame (701) corresponding to the receiving groove (703); and the rack plate (705) is arranged in an inclined shape.
9. The bending processing equipment for fixing the stainless steel shell of a magnetic box according to claim 8, characterized in that: A motor is installed on the outer side of the top of the receiving frame (701), and a rack plate (705) is arranged at the top of the receiving slot (703) near the motor. The rack plate (705) and the motor are in contact with each other for transmission.