Cutting device for raw material steel plate of stainless steel material frame
By extending the pallet and clamping combination design, the problems of unstable support and inaccurate clamping in the stainless steel material frame raw material steel plate cutting device during the cutting process are solved, realizing stable conveying and precise cutting of steel plates, and improving the adaptability and cutting efficiency of the equipment.
Patent Information
- Application Number
- CN202511544366.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-28
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2045-10-28
AI Technical Summary
The existing stainless steel material frame raw material plate cutting device lacks stable support when the cutting length exceeds the platform, which causes the extended platform to sag and bend. The clamping force is not accurately adjusted, making it difficult to stably clamp large areas or thin steel plates. Warping and edge deviation are prone to occur during the cutting process.
The design combines an extended pallet, a top pressure clamp, and a side roller clamp, along with a spring return structure and an electromagnetic induction plate, to achieve flexible support and precise clamping of the pallet. The adaptability and stability of the equipment are enhanced by switching between a drive motor and a manual adjustment mode.
It ensures that the steel plate remains flat during the cutting process, avoids deformation and displacement, improves cutting accuracy and efficiency, reduces friction damage, and adapts to the cutting needs of steel plates of different specifications.
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Figure CN121017656A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of steel plate cutting device, more particularly to a cutting device for stainless steel frame raw material steel plate. BACKGROUND
[0002] The cutting device for stainless steel frame raw material steel plate is a mechanical device specially used for cutting steel plates (including ordinary carbon steel plates, alloy steel plates, stainless steel plates and other plates with different materials and thicknesses) into specific parts or blanks according to the preset size, shape or process requirements, and is widely used in the fields of mechanical manufacturing, automobile industry, shipbuilding, steel structure engineering and pressure vessel production, and is one of the core devices in the "raw material forming" link of the metal processing process, and its performance directly affects the subsequent processing precision, production efficiency and material utilization rate. In daily use, when the cutting length exceeds the original platform of the device, an additional extended platform is needed to support the excess part of the steel plate, but the existing extended platform is mostly a simple lap joint structure, lacking stable support components. This non-supporting or weak supporting design greatly reduces the load-bearing capacity of the extended platform, and the weight of the excessively long raw material steel plate itself will cause the extended platform to sag, bend, and even tilt at the edge. In the fixing link before the segmented cutting of the raw material steel plate, the existing clamp adopts a left-right telescopic design, but it lacks precise control mechanism for force adjustment. Improper clamping force will hinder the transportation of the steel plate. Too loose clamping force will cause the steel plate to slip and jam, and too tight clamping force will generate friction resistance with the conveying structure, slowing down the transportation rhythm and even causing wear of the conveying components. At the same time, the existing clamp can only clamp and fix the two sides of the steel plate, ignoring the stability requirement of the middle part of the steel plate. For large-area or thin-thickness stainless steel raw material steel plate, two-side clamping cannot balance the overall stress, and the steel plate is prone to middle warping and edge deviation during cutting due to cutting impact force and vibration. SUMMARY
[0003] In order to overcome the above-mentioned defects of the prior art, the present application provides a cutting device for stainless steel frame raw material steel plate to solve the problems existing in the background art.
[0004] The application provides the following technical scheme: a cutting device for raw steel plates of a stainless steel material frame, comprising a cutting device main body, an external movable connection extended supporting plate of the cutting device main body, a top movable connection top downward pressing clamping plate of the cutting device main body, a side surface roller clamp movably connected to the top of the cutting device main body, an external fixed connection cutting device case of the cutting device main body, a bottom movable connection gear cutting machine of the cutting device case, a water storage tank arranged at the bottom of the gear cutting machine, a metal roller movably connected to the inner wall of the water storage tank, and a fixed clamp arranged at the top of the metal roller.
[0005] Further, a roller groove is formed in the bottom of the extended supporting plate, a support top roller is movably sleeved in the roller groove, a supporting plate support column is fixedly connected to the bottom of the support top roller, and a support low roller is movably sleeved in the supporting plate support column.
[0006] Further, a folding rod support is movably sleeved in the supporting plate support column, a rod support shaft is fixedly connected to the outside of the folding rod support, a support connecting rod is fixedly connected to the outside of the supporting plate support column, and a gear plate insertion slot is formed in the top of the support connecting rod.
[0007] Further, a gear support plate is movably sleeved in the gear plate insertion slot, a gear rotating shaft is movably engaged with the bottom of the gear support plate, a transmission gear is movably engaged with the outside of the gear rotating shaft, and a driving motor is fixedly connected to the outside of the transmission gear.
[0008] Further, an octagonal telescopic column is movably sleeved in the gear rotating shaft, a spring is fixedly connected to one end of the octagonal telescopic column, a bolt motor is movably sleeved at the other end of the octagonal telescopic column, a lower inclined spring is fixedly connected to the end of the octagonal telescopic column close to the bolt motor, an upper inclined gear is fixedly connected to the outside of the octagonal telescopic column, a rotating handle is fixedly connected to the outside of the upper inclined gear, and a motor switch is arranged on the outside of the rotating handle.
[0009] Further, a pressing plate roller is movably sleeved at the bottom of the top downward pressing clamping plate, and a pressing plate telescopic column is fixedly connected to the bottom of the top downward pressing clamping plate.
[0010] Further, a clamping plate roller is movably sleeved in the inside of the side surface roller clamp, a telescopic column is movably nested in the inside of the side surface roller clamp, an extrusion push plate is movably sleeved to the outside of the telescopic column, an electromagnetic induction plate is fixedly connected to the inside of the extrusion push plate, a pressing plate spring is fixedly connected to the inside of the extrusion push plate, and the telescopic column is fixedly connected to the outside of the pressing plate spring.
[0011] Further, a cutting gear is fixedly connected to the inside of the gear cutting machine, a gear fixing bolt is movably sleeved to the outside of the cutting gear, a gear protection cover is arranged on the outside of the cutting gear, and the gear protection cover is fixedly connected to the outside of the gear cutting machine.
[0012] Further, the external movable sleeve of the cutting device case is connected with a rubber hose, the rubber hose is externally connected with a gear cutting machine, the gear cutting machine is internally provided with a cooling vent, and the cooling vent is externally provided with a cutting gear.
[0013] The technical effects and advantages of the present application are as follows: 1、The present application is designed with a dual mode of driving motor and octagonal telescopic column manual, which not only retains the high efficiency of automatic driving, but also improves the adaptability of the equipment through manual adjustment mechanism, and the spring return structure ensures the smoothness of switching between the two modes, making the telescopic control of the gear support plate more flexible and reliable, further enhancing the operation convenience and stability of the equipment under complex working conditions.
[0014] 2、The present application can accurately control the height of the top down clamping plate through the up-down telescopic adjustment of the pressing plate telescopic column, so that the bottom pressing plate roller can apply appropriate pressure according to the thickness of the steel plate, which not only ensures that the steel plate is tightly pressed to prevent displacement during cutting, but also avoids deformation of the steel plate caused by excessive pressure. At the same time, the rolling characteristics of the pressing plate roller are coordinated with the conveying direction of the steel plate, which can rotate synchronously with the steel plate while maintaining the down-pressing state, reducing the friction damage to the surface of the steel plate, ensuring that the steel plate can still move smoothly under pressure, realizing the integrated operation of pressing and conveying, and further improving the stability of steel plate conveying before cutting. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of the present application.
[0016] Figure 2 It is a schematic diagram of the extension support plate structure of the present application.
[0017] Figure 3 It is a schematic diagram of the main structure of the cutting device of the present application.
[0018] Figure 4 It is a schematic diagram of the gear support plate structure of the present application.
[0019] Figure 5 It is a schematic diagram of the top down clamping plate structure of the present application.
[0020] Figure 6 It is a schematic diagram of the side roller clamp structure of the present application.
[0021] Figure 7 It is a schematic diagram of the cutting device case structure of the present application.
[0022] Figure 8 It is a schematic diagram of the gear cutting machine structure of the present application.
[0023] The reference signs are: 1, cutting device main body; 2, extension support plate; 3, top down pressing clamp plate; 4, side roller clamp; 5, cutting device machine box; 6, gear cutting machine; 7, water storage pool; 8, metal roller; 9, fixed clamp; 101, roller groove; 102, support top roller; 103, support plate support column; 104, support low roller; 105, folding rod frame; 106, rod frame rotating shaft; 107, support connecting rod; 108, gear plate insertion slot; 201, gear support plate; 202, gear rotating shaft; 203, transmission gear; 204, driving motor; 301, octagonal telescopic column; 302, spring; 303, lower bevel gear; 304, bolt motor; 305, upper bevel gear; 306, rotating handle; 307, motor switch; 401, pressing plate roller; 402, pressing plate telescopic column; 501, telescopic column; 502, extrusion push plate; 503, electromagnetic induction plate; 504, pressing plate spring; 505, clamp plate roller; 601, cutting gear; 602, gear fixing bolt; 603, gear protection cover; 701, rubber hose; 702, cooling vent. DETAILED DESCRIPTION
[0024] The technical solutions in the present application will be described clearly and completely below in combination with the drawings in the present application, and in addition, the forms of each structure described in the following embodiments are only examples, and the cutting device for stainless steel material frame raw steel plate involved in the present application is not limited to each structure described in the following embodiments, and all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the present application.
[0025] REFERENCE Figures 1-8The application provides a cutting device for a raw material steel plate of a stainless steel material frame, which comprises a cutting device body 1, an externally movably connected extended supporting plate 2 of the cutting device body 1, a movably connected top downward clamping plate 3 at the top of the cutting device body 1, a movably connected side surface roller clamp 4 at the top of the cutting device body 1, a fixedly connected cutting device case 5 outside the cutting device body 1, a movably connected gear cutting machine 6 at the bottom of the cutting device case 5, a water storage pool 7 arranged at the bottom of the gear cutting machine 6, a metal roller 8 movably connected to the inner wall of the water storage pool 7, and a fixed clamp 9 arranged at the top of the metal roller 8, which is beneficial to expand the placing area of the steel plate through the extended supporting plate 2 outside the cutting device body 1, avoids shaking of the steel plate due to too long cantilever, and lays a stable foundation for subsequent transportation, then the top downward clamping plate 3 presses the steel plate from the vertical direction, the side surface roller clamp 4 is limited and guided from the horizontal direction, and the steel plate is always kept flat and stable in the conveying process through cooperation of the two, thereby effectively preventing deviation, then the gear cutting machine 6 at the bottom of the cutting device case 5 can accurately cut the stably conveyed steel plate, the cutting generated scrap can fall into the water storage pool 7 through the gap of the metal roller 8, the scrap is prevented from scratching the surface of the steel plate and affecting the conveying smoothness, the scrap can be collected and preliminarily cooled through the water storage pool, simultaneously, the fixed clamp 9 at the top of the metal roller 8 can further clamp the steel plate at the moment of cutting, offsets the cutting impact force, and ensures the cutting position to be accurate and the steel plate to have no displacement.
[0026] In a preferred embodiment, a roller groove 101 is arranged at the bottom of the extended supporting plate 2, a bracket top roller 102 is movably sleeved in the roller groove 101, a supporting plate bracket column 103 is fixedly connected to the bottom of the bracket top roller 102, and a bracket low roller 104 is movably sleeved in the supporting plate bracket column 103, which is beneficial to forming a flexible rotation fulcrum through the movable sleeving of the roller groove 101 and the bracket top roller 102, enabling the supporting plate bracket column 103 to freely rotate around the bottom of the extended supporting plate 2, realizing quick switching of folding storage and unfolding support, saving space when idle, unfolding to stably support the extended supporting plate 2 when in use, avoiding deformation caused by the heavy pressure of the steel plate, simultaneously, the bracket low roller 104 at the bottom of the supporting plate bracket column 103 endows the whole with the moving ability, which is convenient for flexibly adjusting the supporting position of the extended supporting plate 2 according to the length of the steel plate, can reduce the frictional resistance when the whole equipment is moved, improves the operation convenience, and further enhances the adaptability and practicality of the extended supporting plate 2 under different working conditions.
[0027] In a preferred implementation, the inner movable sleeve of the support column 103 is connected to the folding lever frame 105, the outer fixed connection lever frame pivot 106 of the folding lever frame 105, the outer fixed connection of the support column 103 Support column 103, the top of the support column 103 is provided with a gear plate slot 108, which is beneficial to the folding lever frame 105 connected through the lever frame pivot 106, and the same column of support column 103 can be formed into a linkage structure, ensuring that multiple support columns are synchronized and balanced in folding or unfolding, avoiding deformation of a single support column due to uneven stress, and at the same time, the support column 103 is connected horizontally by the support connecting rod 107, forming a stable frame structure, improving the overall support strength, which can cope with the weight load of different specifications of steel plates. The gear plate slot 108 at the top of the support connecting rod 107 and the sleeve connection of the gear support plate 201 can convert rotary power into linear thrust or tension, realize the mechanized folding and storage of the support column 103, and do not need manual operation one by one, which not only reduces the labor intensity, but also ensures the precise synchronization of folding and unfolding actions, making the support adjustment of the extension plate 2 more efficient and stable, and further adapting to the operation requirements of the automatic production line.
[0028] In a preferred implementation, the inner movable sleeve of the support column 103 is connected to the folding lever frame 105, the outer fixed connection lever frame pivot 106 of the folding lever frame 105, the outer fixed connection of the support column 103 Support column 103, the top of the support column 103 is provided with a gear plate slot 108, which is beneficial to the folding lever frame 105 connected through the lever frame pivot 106, and the same column of support column 103 can be formed into a linkage structure, ensuring that multiple support columns are synchronized and balanced in folding or unfolding, avoiding deformation of a single support column due to uneven stress, and at the same time, the support column 103 is connected horizontally by the support connecting rod 107, forming a stable frame structure, improving the overall support strength, which can cope with the weight load of different specifications of steel plates. The gear plate slot 108 at the top of the support connecting rod 107 and the sleeve connection of the gear support plate 201 can convert rotary power into linear thrust or tension, realize the mechanized folding and storage of the support column 103, and do not need manual operation one by one, which not only reduces the labor intensity, but also ensures the precise synchronization of folding and unfolding actions, making the support adjustment of the extension plate 2 more efficient and stable, and further adapting to the operation requirements of the automatic production line.
[0029] In a preferred implementation, the inside of the gear rotating shaft 202 is sleeved with an octagonal telescopic column 301, one end of the octagonal telescopic column 301 is fixedly connected with a spring 302, the other end of the octagonal telescopic column 301 is movably sleeved with a bolt motor 304, the end of the octagonal telescopic column 301 close to the bolt motor 304 is fixedly connected with a lower inclined spring 303, the outside of the octagonal telescopic column 301 is fixedly connected with an upper inclined gear 305, the outside of the upper inclined gear 305 is fixedly connected with a rotating handle 306, the outside of the rotating handle 306 is provided with a motor switch 307, which is conducive to driving the octagonal telescopic column 301 to rotate by the bolt motor 304, so that the top octagonal column is accurately inserted into the corresponding hole of the gear rotating shaft 202, at this time the lower inclined gear 303 is engaged with the upper inclined gear 305, the operator can manually control the rotation of the gear rotating shaft 202 by rotating the handle 306, which is suitable for fine adjustment requirements under special working conditions, at the same time, the motor switch 307 can control the operation of the bolt motor 304, which is used to drive the axial displacement of the octagonal telescopic column 301, and forms a reset mechanism with the spring 302 outside it, when the pushing force disappears, the elastic force of the spring 302 can drive the octagonal telescopic column 301 to return to position, so that the upper inclined gear 305 and the lower inclined gear 303 are automatically separated, and the motor driving mode is switched.
[0030] In a preferred implementation, the bottom of the top pressing clamp plate 3 is movably sleeved with a pressing plate roller 401, and the bottom of the top pressing clamp plate 3 is fixedly connected with a pressing plate telescopic column 402, which is conducive to adjusting the height of the top pressing clamp plate 3 by the up-down telescopic adjustment of the pressing plate telescopic column 402, so that the bottom pressing plate roller 401 can apply appropriate pressure according to the thickness of the steel plate, which not only ensures that the steel plate is tightly pressed to prevent displacement during cutting, but also avoids deformation of the steel plate caused by excessive pressure, at the same time, the rolling characteristics of the pressing plate roller 401 are coordinated with the conveying direction of the steel plate, which can rotate with the steel plate while maintaining the pressing state, reducing the friction damage to the surface of the steel plate, ensuring that the steel plate can still move smoothly under pressure, realizing the integrated operation of pressing and conveying, and further improving the stability of steel plate conveying before cutting.
[0031] In a preferred embodiment, the inner movable sleeve joint clamping plate roller 505 of the side drum clamp 4, the outer movable sleeve joint telescopic column 501 of the telescopic column 501, the outer fixed connection extrusion push plate 502 of the telescopic column 501, the inner fixed connection electromagnetic induction plate 503 of the extrusion push plate 502, the inner fixed connection pressure plate spring 504 of the extrusion push plate 502, and the outer fixed connection telescopic column 501 of the pressure plate spring 504, which is beneficial to the lateral movement of the extrusion push plate 502 driven by the telescopic column 501 of the side drum clamp 4, and the clamping force formed by the clamping plate roller 505 from the side to the raw steel plate, realizing the stable limiting in the horizontal direction. The core advantage lies in the pressure self-adaptive adjustment mechanism: when the extrusion force of the extrusion push plate 502 on the steel plate is too large, the electromagnetic induction plate 503 will extrude the pressure plate inside the telescopic column 501, and the pressure plate telescopic column 402 of the top down clamping plate 3 will be driven to reduce the down pressure by the induction signal, so as to avoid damage to the steel plate due to overload. On the contrary, when the extrusion force decreases, the elastic force of the pressure plate spring 504 will push the electromagnetic induction plate 503 and the pressure plate apart, so that the induction signal is weakened, and the force of the top down is automatically increased. By the cooperation of electromagnetic induction and spring return, the dynamic balance of the clamping force of the steel plate is realized, which can not only ensure that the steel plate does not deviate during conveying and cutting, but also automatically adapt the pressure according to the thickness and material of the steel plate, effectively protect the surface quality of the raw material, and improve the adaptability of the equipment to different specifications of steel plates.
[0032] In a preferred embodiment, the inner fixed connection cutting gear 601 of the gear cutting machine 6, the outer movable sleeve joint gear fixing bolt 602 of the cutting gear 601, the outer gear protection cover 603 of the cutting gear 601, and the outer fixed connection gear cutting machine 6 of the gear protection cover 603 are beneficial to the high-speed rotation of the cutting gear 601 driven by the motor inside the gear cutting machine 6, realizing efficient cutting of the steel plate. The detachable design of the gear fixing bolt 602 makes the replacement operation of the cutting gear 601 convenient and efficient, and the gear can be replaced and adapted flexibly according to the thickness and material of the steel plate, improving the versatility of the equipment. At the same time, the gear protection cover 603 outside the cutting gear 601 forms a closed protection space, which can effectively block the flying metal scraps and sparks in the cutting process, not only avoiding accidental injury to the operator, but also preventing the scattered scraps from affecting the normal operation of other parts of the equipment, ensuring the cutting efficiency and significantly improving the operation safety.
[0033] In a preferred embodiment, the outer movable sleeve of the cutting device cabinet 5 is connected to the rubber hose 701, the rubber hose 701 is connected to the gear cutting machine 6, the inside of the gear cutting machine 6 is provided with a cooling air vent 702, the outside of the cooling air vent 702 is provided with a cutting gear 601, which is beneficial to guide the cooling air flow to the gear cutting machine 6 through the rubber hose 701 and the cooling air vent 702, and then precisely spray to the surface of the high-speed rotating cutting gear 601 through the cooling air supply system in the cutting device cabinet 5. The flexible characteristics of the rubber hose 701 can flexibly adapt to the position adjustment of the gear cutting machine 6, ensure the stability of the cooling air delivery path, and the directional design of the cooling air vent 702 can concentrate the cooling air flow on the working area of the cutting gear 601, quickly remove the heat generated during the cutting process.
[0034] The working principle of the present application is as follows: the device first expands the steel plate placing area through the extension support plate 2 outside the cutting device main body 1, the support column 103 is flexibly rotated by means of the roller groove 101 and the support top roller 102, which can quickly switch between folding storage and unfolding support state, saves space when idle, and stably supports the steel plate to avoid deformation of the support plate under the weight of the steel plate, and the folding lever 105 connected with the lever shaft 106 and the support connecting rod 107 make multiple support column 103 linkage synchronous, form a stable frame, at the same time, the driving motor 204 drives the transmission gear 203 and the gear shaft 202 to rotate, controls the gear support plate 201 to extend and retract, and after inserting into the gear plate slot 108, the stability of the support column 103 frame is enhanced, and under special working conditions, the screw motor 304 and the octagonal telescopic column 301 can switch to manual adjustment mode, which lays a foundation for stable placement and subsequent transportation of the steel plate.
[0035] In the steel plate conveying and positioning link, the top pressing clamp 3 is adjusted in height by the pressing plate telescopic column 402, the bottom pressing plate roller 401 applies appropriate pressure according to the thickness of the steel plate, and rotates synchronously with the steel plate to reduce friction, the telescopic column 501 of the side roller clamp 4 drives the extrusion push plate 502, and cooperates with the clamp roller 505 to limit from the horizontal direction, and the two realize dynamic balance of clamping force through the reset mechanism of the electromagnetic induction plate 503 and the pressing plate spring 504: when the extrusion force is too large, the electromagnetic induction plate 503 extrudes the pressure plate inside the telescopic column 501, prompting the pressing plate telescopic column 402 of the top pressing clamp 3 to reduce the pressure, when the extrusion force is too small, the pressing plate spring 504 pushes the electromagnetic induction plate 503 and the pressure plate apart, increasing the top pressing force, ensuring the stability of the steel plate during conveying, without deviation and deformation, providing protection for accurate cutting.
[0036] The cutting stage is that the gear cutter 6 at the bottom of the cutting device cabinet 5 cuts the steel plate, the internal motor drives the cutting gear 601 to rotate at high speed, the detachable gear fixing bolt 602 facilitates replacement of the cutting gear 601 suitable for different steel plates, the external gear protection cover 603 can block the debris and sparks, the debris generated by cutting falls into the water pool 7 through the gap of the metal roller 8, realizes collection and preliminary cooling, the top fixed clamp 9 of the metal roller 8 further clamps the steel plate at the moment of cutting, offsets the cutting impact force, at the same time, the cold air supply system in the cutting device cabinet 5, through the rubber hose 701 and the directional cooling air outlet 702, accurately sends the cooling airflow to the working area of the cutting gear 601, quickly cools, guarantees the cutting efficiency, precision and operation safety, realizes the collection of the debris and the protection of the equipment after the cutting is completed.
[0037] Although the present application has been shown and described with respect to the figures, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made therein without departing from the spirit and scope of the application, which is defined by the following claims and their equivalents.
[0038] Finally, it should be pointed out that: first, in the description of the present application, it should be pointed out that unless otherwise specified and limited, the terms "installation", "connection", "connection" should be understood broadly, which can be mechanical connection or electrical connection, or the communication between two elements, or direct connection, "up", "down", "left", "right" and the like are only used to indicate relative positional relationship, when the absolute position of the described object changes, the relative positional relationship may change; Secondly: the present application relates to the structure in the drawings of the present application, other structures can refer to the usual design, in the case of no conflict, the same invention and different inventions of the present application can be combined with each other; Finally: the above is only the preferred invention of the present application, and is not used to limit the present application, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the protection scope of the present application.
Claims
1. A cutting device for stainless steel material frames, comprising a cutting device body (1), characterized in that: The external extension plate (2) is movably connected to the main body (1) of the cutting device. The top of the main body (1) is movably connected to the top pressure clamp (3). The top of the main body (1) is movably connected to the side roller clamp (4). The external of the main body (1) is fixedly connected to the cutting device housing (5). The bottom of the cutting device housing (5) is movably connected to the gear cutting machine (6). The bottom of the gear cutting machine (6) is provided with a water storage tank (7). The inner wall of the water storage tank (7) is movably connected to a metal roller (8). The top of the metal roller (8) is provided with a fixed clamp (9).
2. The cutting device for stainless steel material frames and raw steel plates according to claim 1, characterized in that: The bottom of the extended tray (2) is provided with a roller groove (101), the inside of the roller groove (101) is movably connected to the top roller of the bracket (102), the bottom of the top roller of the bracket (102) is fixedly connected to the tray bracket column (103), and the inside of the tray bracket column (103) is movably connected to the bottom roller of the bracket (104).
3. The cutting device for stainless steel material frames and raw steel plates according to claim 2, characterized in that: The pallet support column (103) is internally connected to a folding rod frame (105), the folding rod frame (105) is externally fixedly connected to a rod frame pivot (106), the pallet support column (103) is externally fixedly connected to a support connecting rod (107), and a gear plate slot (108) is provided on the top of the support connecting rod (107).
4. The cutting device for stainless steel material frames and raw steel plates according to claim 3, characterized in that: The gear plate slot (108) is internally fitted with a gear support plate (201), the bottom of the gear support plate (201) is movably engaged with a gear shaft (202), the outside of the gear shaft (202) is movably engaged with a transmission gear (203), and the outside of the transmission gear (203) is fixedly connected to a drive motor (204).
5. The cutting device for stainless steel material frames and raw steel plates according to claim 4, characterized in that: An octagonal telescopic column (301) is movably sleeved inside the gear shaft (202). One end of the octagonal telescopic column (301) is fixedly connected to a spring (302), and the other end of the octagonal telescopic column (301) is movably sleeved to a bolt motor (304). A lower inclined spring (303) is fixedly connected to the end of the octagonal telescopic column (301) located near the bolt motor (304). An upper helical gear (305) is fixedly connected to the outside of the octagonal telescopic column (301), and a rotating handle (306) is fixedly connected to the outside of the upper helical gear (305). A motor switch (307) is provided on the outside of the rotating handle (306).
6. The cutting device for stainless steel material frames and raw steel plates according to claim 1, characterized in that: The bottom of the top pressing clamp (3) is movably connected to the pressing plate roller (401), and the bottom of the top pressing clamp (3) is fixedly connected to the pressing plate telescopic column (402).
7. The cutting device for stainless steel material frames and raw steel plates according to claim 1, characterized in that: The side roller clamp (4) is internally movably connected to the clamping plate roller (505), the side roller clamp (4) is internally movably nested with the telescopic column (501), the telescopic column (501) is externally movably connected to the extrusion push plate (502), the extrusion push plate (502) is internally fixedly connected to the electromagnetic induction plate (503), the extrusion push plate (502) is internally fixedly connected to the pressure plate spring (504), and the pressure plate spring (504) is externally fixedly connected to the telescopic column (501).
8. The cutting device for stainless steel material frames and raw steel plates according to claim 1, characterized in that: The gear cutting machine (6) has a cutting gear (601) fixedly connected inside, and a gear fixing bolt (602) is movably sleeved on the outside of the cutting gear (601). A gear protective cover (603) is provided on the outside of the cutting gear (601), and the gear cutting machine (6) is fixedly connected to the outside of the gear protective cover (603).
9. The cutting device for stainless steel material frames and raw steel plates according to claim 1, characterized in that: The cutting device housing (5) is externally connected to a rubber hose (701), and the rubber hose (701) is externally connected to a gear cutting machine (6). The gear cutting machine (6) is internally provided with a cooling vent (702), and the cooling vent (702) is externally provided with a cutting gear (601).
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