Cutting equipment for metal product machining and method thereof
By designing a cutting equipment for metal products processing and using the coordinated movement of the cutting auxiliary mechanism, the problems of excessive heat and unstable fixation in the cutting process of metal products in the prior art are solved, and efficient and stable cutting and automated operations are achieved.
Patent Information
- Application Number
- CN202510462407.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-06-24
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Since the cutting head is disc-shaped, the existing metal cutting equipment generates too much heat during the cutting process, causing the cut quality to decrease, and the fixing and canceling the fixing operation is time-consuming and not firm, which can easily lead to cutting deviations and dangers.
A cutting equipment for metal products processing is designed, using cutting auxiliary mechanisms, including base, beveled panel, special-shaped slide rail, longitudinal propulsion assembly and push-type clamping assembly. Through the coordinated movement of these components, stable clamping and automatic cutting of the machining parts can be achieved to avoid secondary friction and cutting errors.
Through automatic clamping and cutting, the equipment avoids secondary friction and cutting errors, improves the quality of the cut and cutting efficiency, and simplifies the operation process and reduces safety risks.
Smart Images

Figure CN120190402A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of metal cutting, and particularly relates to a cutting device and method for processing metal products. Background Art
[0002] In the process of processing metal products, cutting devices are often used. The cutting devices generally cut through a disc-shaped cutting head. In order to improve the cutting efficiency, workers can arrange multiple metal products side by side for cutting. However, since the cutting head is disc-shaped, some of the multiple metal products arranged side by side will be cut off first, and some will be cut off later. The cross-section of the metal product that is cut off first will continuously contact the cutting tool of the cutting mechanism, and during the rising process of the cutting head, there will be another friction with the metal product, resulting in excessive heat generation on the cross-section of the metal product, causing changes in the metal product material around the cross-section of the metal product, resulting in a decline in the cutting quality. Moreover, before cutting, in order to ensure the stability of cutting, it is generally necessary to first fix the metal product with a fixture and then release the fixation after cutting. The entire operation is time-consuming, and if the fixation is not firm enough and the cutting device is started, it is very easy to cause cutting deviation and even pop out, causing danger.
[0003] In view of the above problems, the present invention document proposes a cutting device and method for processing metal products. Summary of the Invention
[0004] The purpose of the present invention is to solve the drawbacks that since the cutting head is disc-shaped, the cross-section of the metal product that is cut off first will continuously contact the cutting tool of the cutting mechanism, and during the rising process of the cutting head, there will be another friction with the metal product, resulting in excessive heat generation on the cross-section of the metal product, causing a decline in the cutting quality, and before cutting, the entire operation of fixing and canceling the fixation is time-consuming, and if the fixation is not firm enough and the cutting device is started, it is very easy to cause cutting deviation and even pop out, causing danger, and to propose a cutting device and method for processing metal products.
[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions: A cutting device for processing metal products, including a cutting device, and a cutting auxiliary mechanism is provided on the cutting device; The cutting auxiliary mechanism includes a base, two inclined panels and two special-shaped sliding rails are fixedly connected above the base. The two inclined panels are located between the two special-shaped sliding rails. Three longitudinal propulsion components are arranged above the inclined panels. The top of the longitudinal propulsion component is connected with two inclined blocks. A push-type clamping component is connected to the inclined block. Every two push-type clamping components on both sides clamp and position the same workpiece; The longitudinal propulsion assembly is arranged on the support plate, an elastic assembly is connected below the support plate, a roller is arranged below the elastic assembly, every three rollers are respectively slidably arranged in two special-shaped slide rails, the lower parts of three support plates are connected with the same second guiding assembly, the lower part of the second guiding assembly is connected with two first guiding assemblies, and the two first guiding assemblies are connected with the base.
[0006] Preferably, the cutting device includes a processing bracket which is fixedly connected to the base, a hydraulic device is fixedly installed above the processing bracket, and a cutting machine device is fixedly installed at the bottom of the hydraulic device.
[0007] Preferably, a part of the special-shaped slide rail is obliquely arranged, and handles are fixedly connected to one sides of two of the support plates.
[0008] Preferably, the first guiding assembly includes a guiding strip which is fixedly connected to the base, and a first slide rail is slidably connected above the guiding strip.
[0009] Preferably, the second guiding assembly includes a moving plate, the lower part of the moving plate is fixedly connected to the first slide rail, three sliding strips are fixedly connected above the moving plate, a second slide rail is slidably connected to the sliding strips, and the second slide rail is fixedly connected to the lower part of the support plate.
[0010] Preferably, the elastic assembly includes two side plates, one of the side plates is fixedly connected to the lower part of the support plate, the roller is arranged below the other side plate, and two telescopic rods and two first springs are fixedly connected between the two side plates.
[0011] Preferably, a touch rod is fixedly connected to one side of one of the side plates, an alarm and a switch are respectively fixedly installed on two sides of the other side plate, and the switch corresponds to the touch rod.
[0012] Preferably, the longitudinal propulsion assembly includes a movable plate, moving wheels are fixedly connected to the lower part of the movable plate, the moving wheels roll on an inclined panel, four first sliding rods are fixedly connected above the movable plate, the first sliding rods slide in first sliding sleeves, the first sliding sleeves are fixedly installed on the support plate, and second springs are fixedly connected above the first sliding sleeves, the tops of the two second springs are fixedly connected to an inclined block, and the lower part of the inclined block is fixedly connected to the two first sliding rods.
[0013] Preferably, the push-type clamping assembly includes a fixing plate, two second sliding sleeves are fixedly installed on the fixing plate, second sliding rods are slidably connected in the second sliding sleeves, one ends of the second sliding rods are fixedly connected with rollers, the two rollers are arranged on one side of the inclined block, the other ends of the two second sliding rods are fixedly connected with the same clamping plate, and a third spring is fixedly connected between the clamping plate and the fixing plate.
[0014] A method for using a cutting device for metal product processing comprises the following steps: S1. When cutting a workpiece, first place the workpiece on the two support plates, then move the support plates through the handle, so that the movable plate drives the first slide rail to slide along the guide strip through the second guide assembly, and at the same time, the support plates drive the elastic assembly and the longitudinal propulsion assembly to move, and when the moving wheel passes through the inclined surface of the inclined plate, the inclined surface of the inclined plate squeezes the moving wheel to drive the movable plate to move upward, so that the movable plate drives the first slide bar to move upward, the first slide bar drives the inclined surface block to move upward, the inclined surface block drives the second spring to deform, and at the same time, the inclined surface of the inclined surface block squeezes the roller, so that the roller is squeezed to drive the second slide bar to move, and the second slide bar drives the clamping plate to move, so that the clamping plate drives the third spring to deform, and at the same time, the clamping plate clamps and fixes the workpiece; S2, when the roller moves to the inclined surface of the special-shaped slide rail, the roller is squeezed by the inclined surface and drives the elastic component to move. When the clamping plate is not firmly clamped, the elastic component drives the support plate to move, and the support plate drives the second slide rail to slide on the slide bar, thereby causing the clamping plate and the support plate to slide on the workpiece. After the switch is powered on, the switch is pressed by the touch rod, causing the switch to alarm through the alarm, thereby detecting the clamping firmness of the workpiece; S3, when the clamping plate firmly clamps the workpiece, so that the support plate keeps the position fixed, the side plate drives the first spring to deform, and the switch is away from the touch rod. When the workpiece is located below the cutting machine equipment, the hydraulic device pushes the cutting machine equipment downward, so that the cutting machine equipment runs and cuts the workpiece downward. After cutting, under the reset action of the first spring, the support plate drives the cut workpiece to complete separation; S4. When the workpiece is cut, the cut workpiece is pulled back by the handle. When the moving wheel is separated from the inclined surface of the inclined plate, the second spring and the third spring are reset, so that the clamping plate is away from the workpiece. At this time, the workpiece is smoothly taken out to complete the material removal operation.
[0015] Compared with the prior art, the present invention provides a cutting device and method for metal product processing, which has the following beneficial effects: 1. The cutting equipment and method for processing metal products connect the support plates together through the second guide component, so that multiple support plates can move synchronously, so that the workpiece can follow the support plates to perform cutting operations in sequence, and at the same time, the roller moves to the inclined surface of the special-shaped slide rail and generates displacement movement through the inclined surface, so that the roller drives the first spring to deform through the side plate, so that the workpiece is pushed to the position of the cutting machine equipment for cutting operations in sequence. After cutting, the elastic component resets and drives the support plate to reset, so that the two workpieces can be away from the cutting blade of the cutting machine equipment. This method can achieve the purpose of automatically separating the workpiece and the cutting machine equipment after cutting, avoid secondary friction, thereby avoiding cutting errors, and facilitating the workpiece to be pulled out and taken out.
[0016] 2. The cutting equipment and method for processing metal products, through the pushing of the supporting plate, move the longitudinal pushing component to the inclined surface of the inclined panel, and through the extrusion of the inclined surface, the longitudinal pushing component moves upward, driving the inclined surface block to move. The inclined surface block squeezes the push-type clamping component through the inclined surface to move, enabling the push-type clamping component to automatically position the workpiece, ensuring stable cutting operation of the workpiece. After cutting, by moving the supporting plate to reset, the longitudinal pushing component is moved away from the inclined panel, and the push-type moving component is reset to remove the fixation of the workpiece. This method can automatically clamp and remove the workpiece, greatly improving the convenience of operation and enhancing the efficiency of the entire cutting operation.
[0017] 3. The cutting equipment and method for processing metal products, by moving the supporting plate, drive the elastic component and the longitudinal pushing component to move. The longitudinal pushing component can push the inclined surface block upward through the inclined surface of the inclined panel, and the inclined surface block squeezes the push-type clamping component to automatically clamp the workpiece. After clamping, the roller passes through the inclined surface of the special-shaped slide rail. If the push-type clamping component does not firmly clamp the workpiece, the elastic component drives the supporting plate to slide, and through the energization of the switch, the switch achieves the purpose of alarming, thereby automatically detecting whether the workpiece is firmly fixed, avoiding the problem of cutting errors caused by unstable fixation during the cutting process. Moreover, this method has a simple structure and convenient operation. And through the movement of the roller on the inclined surface of the special-shaped slide rail, the elastic component can store elastic potential energy, so as to automatically remove the workpiece after cutting the workpiece. This method can optimize the production process and greatly improve the processing efficiency. Description of the Drawings
[0018] Figure 1 A three-dimensional view of a cutting equipment for processing metal products proposed by the present invention; Figure 2 A three-dimensional view of the cutting auxiliary mechanism of a cutting equipment for processing metal products proposed by the present invention; Figure 3 A three-dimensional view of the base of a cutting equipment for processing metal products proposed by the present invention; Figure 4 A three-dimensional view of the push-type clamping component of a cutting equipment for processing metal products proposed by the present invention fixing the workpiece; Figure 5 A three-dimensional view of the longitudinal pushing component of a cutting equipment for processing metal products proposed by the present invention viewed from below; Figure 6 A three-dimensional view of the connection between the first slide rail and the second guiding component of a cutting equipment for processing metal products proposed by the present invention; Figure 7 A three-dimensional view of the moving plate of a cutting equipment for processing metal products proposed by the present invention; Figure 8 A three-dimensional view of the elastic component of a cutting device for metal product processing according to the present invention connected to the support plate; Figure 9 A three-dimensional view of the longitudinal propulsion component of a cutting device for metal product processing according to the present invention connected to the support plate; Figure 10 A three-dimensional view of the push-type clamping component of a cutting device for metal product processing according to the present invention; Figure 11 In the present invention Figure 2 An enlarged view of portion A.
[0019] In the figure: 100, cutting device; 101, processing bracket; 102, hydraulic equipment; 103, cutting machine equipment; 200, cutting auxiliary mechanism; 201, base; 202, special-shaped slide rail; 203, first guiding component; 2031, guiding strip; 2032, first slide rail; 204, inclined panel; 205, elastic component; 2051, telescopic rod; 2052, first spring; 2053, side plate; 2054, alarm; 2055, contact rod; 2056, switch; 206, longitudinal propulsion component; 2061, moving wheel; 2062, movable plate; 2063, first slide bar; 2064, second spring; 2065, first sliding sleeve; 207, push-type clamping component; 2071, fixing plate; 2072, third spring; 2073, clamping plate; 2074, roller; 2075, second slide bar; 2076, second sliding sleeve; 208, second guiding component; 2081, moving plate; 2082, sliding strip; 2083, second slide rail; 209, support plate; 210, handle; 211, rotating roller; 212, inclined block; 300, workpiece. Detailed implementation manners
[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0021] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0022] Embodiment 1: Refer to Figures 1-9 and Figure 11, A cutting device for metal product processing, including a cutting device 100. The cutting device 100 includes a processing bracket 101, and the processing bracket 101 is fixedly connected to the base 201. Above the processing bracket 101, a hydraulic device 102 is fixedly installed. The hydraulic device 102 can be fixed by the processing bracket 101 to ensure the stability of the hydraulic device 102. At the same time, the hydraulic device 102 pushes the cutting machine device 103 downward, so that the cutting machine device 103 can smoothly perform the cutting operation. And after the cutting machine is in place, the workpiece 300 can be directly pushed for the cutting operation. The cutting machine device 103 is fixedly installed at the bottom of the hydraulic device 102, and a cutting auxiliary mechanism 200 is provided on the cutting device 100; The cutting auxiliary mechanism 200 includes a base 201. Above the base 201, two inclined panels 204 and two special-shaped slide rails 202 are fixedly connected. The two inclined panels 204 are located between the two special-shaped slide rails 202. A part of the special-shaped slide rail 202 is obliquely arranged. By setting a part of the special-shaped slide rail 202 as an inclined plane, the roller 211 can be extruded to generate displacement when passing through the inclined plane, and then the roller 211 can drive the elastic component 205 to move. When the push-type clamping component firmly clamps the workpiece 300, the elastic component 205 can be deformed smoothly, so as to facilitate the automatic separation of the workpiece 300 after cutting. Above the inclined panel 204, three longitudinal propulsion components 206 are provided. By the longitudinal propulsion components 206 moving on the inclined plane of the inclined panel 204, the inclined panel 204 can push the longitudinal propulsion components 206 to move upward, so that the inclined plane of the inclined block 212 can change the direction of the acting force, and then can drive the push-type clamping component 207 to smoothly achieve the purpose of clamping and positioning the workpiece 300. The top of the longitudinal propulsion component 206 is connected to two inclined blocks 212, and the inclined blocks 212 are connected to the push-type clamping component 207. Every two push-type clamping components 207 on both sides clamp and position the same workpiece 300; The longitudinal propulsion assembly 206 is arranged on the support plate 209, and handles 210 are fixedly connected to one side of two of the support plates 209. Using the handles 210 as the force application points, it is convenient for the staff to push and pull the support plate 209 to move, so as to facilitate the cutting operation of the workpiece 300. An elastic component 205 is connected below the support plate 209. The elastic component 205 includes two side plates 2053. One of the side plates 2053 is fixedly connected below the support plate 209, and a roller 211 is arranged below the other side plate 2053. Two telescopic rods 2051 and two first springs 2052 are fixedly connected between the two side plates 2053. The first spring 2052 drives the side plate 2053 and the support plate 209 to move, so as to achieve the purpose of automatic separation after the workpiece 300 is cut. A contact rod 2055 is fixedly connected to one side of one of the side plates 2053, and an alarm 2054 and a switch 2056 are respectively fixedly installed on both sides of the other side plate 2053. The switch 2056 corresponds to the contact rod 2055. Through the inclined surface extrusion between the roller 211 and the special-shaped slide rail 202, the elastic component 205 moves. If the support plate 209 moves along with the elastic component 205, the contact rod 2055 contacts the switch 2056, and the switch 2056 can give an alarm reminder through the alarm 2054, so as to detect whether the workpiece 300 is firmly clamped. A roller 211 is arranged below the elastic component 205. Every three rollers 211 are respectively slidably arranged in two special-shaped slide rails 202. A same second guiding component 208 is connected below the three support plates 209. The second guiding component 208 includes a moving plate 2081. The lower part of the moving plate 2081 is fixedly connected to the first slide rail 2032. By connecting the first slide rail 2032 through the moving plate 2081, the movement of the first slide rail 2032 can drive the second slide rail 2083 to move through the moving plate 2081, and then the support plate 209 moves synchronously. Three slide bars 2082 are fixedly connected above the moving plate 2081. The second slide rail 2083 is slidably connected to the slide bars 2082. The second slide rail 2083 can be guided by the slide bars 2082, so that the second slide rail 2083 can smoothly perform sliding displacement, and then each support plate 209 can move independently. The second slide rail 2083 is fixedly connected to the lower part of the support plate 209. Two first guiding components 203 are connected below the second guiding component 208. The first guiding component 203 includes a guiding bar 2031. The guiding bar 2031 is fixedly connected to the base 201. The first slide rail 2032 can be guided by the guiding bar 2031, so that the first slide rail 2032 slides smoothly along the guiding bar 2031, thereby enabling the second guiding component 208 to move smoothly. The first slide rail 2032 is slidably connected above the guiding bar 2031. The two first guiding components 203 are connected to the base 201.
[0023] In this embodiment: The support plates 209 are connected together by the second guiding component 208, enabling synchronous movement between multiple support plates 209. The workpiece 300 can sequentially perform cutting operations following the support plates 209. Meanwhile, the elastic component 205 is driven to move by the advancement of the support plates 209, causing the roller 211 to move to the inclined surface of the special-shaped slide rail 202. Displacement movement is generated through the inclined surface, causing the roller 211 to drive the first spring 2052 to deform through the side plate 2053. The workpiece 300 is pushed to the position of the cutting machine device 103 to sequentially perform cutting operations. After cutting, the support plates 209 are driven to reset by the first spring 2052, enabling the two workpieces 300 to move away from the cutting blade of the cutting machine device 103. This method can achieve the purpose of automatically separating the workpiece 300 from the cutting machine device 103 after cutting, avoiding secondary friction, thereby avoiding cutting errors and facilitating the pulling and taking of workpieces.
[0024] Embodiment 2: Refer to Figure 10 , a cutting device for metal product processing, including a longitudinal propulsion component 206. The longitudinal propulsion component 206 includes a movable plate 2062. A moving wheel 2061 is fixedly connected below the movable plate 2062. Due to the rolling property of the moving wheel 2061, the frictional resistance with the inclined panel 204 can be reduced, maintaining the smooth movement of the moving wheel 2061. The moving wheel 2061 rolls on the inclined panel 204. Four first sliding rods 2063 are fixedly connected above the movable plate 2062. The first sliding rods 2063 slide in the first sliding sleeves 2065. The first sliding sleeves 2065 are fixedly installed on the support plates 209, and a second spring 2064 is fixedly connected above the first sliding sleeves 2065. The second spring 2064 can drive the inclined block 212 to smoothly reset downward. At this time, the third spring 2072 can drive the clamping plate 2073 to smoothly reset. The tops of the two second springs 2064 are fixedly connected to the inclined block 212, and the lower part of the inclined block 212 is fixedly connected to the two first sliding rods 2063; The push-type clamping component 207 includes a fixing plate 2071. Two second sliding sleeves 2076 are fixedly installed on the fixing plate 2071. A second sliding rod 2075 is slidably connected in the second sliding sleeves 2076. One end of the second sliding rod 2075 is fixedly connected with a roller 2074. Due to the rolling property of the roller 2074 itself, the frictional resistance between the roller 2074 and the inclined block 212 can be reduced, maintaining the smooth movement of the roller 2074. The two rollers 2074 are arranged on one side of the inclined block 212. The other ends of the two second sliding rods 2075 are fixedly connected with the same clamping plate 2073. A third spring 2072 is fixedly connected between the clamping plate 2073 and the fixing plate 2071. The third spring 2072 can drive the clamping plate 2073 to reset, enabling the clamping plate 2073 to remove the fixation on the workpiece 300.
[0025] In this embodiment: By pushing the support plate 209 forward, the moving wheel 2061 is moved to the inclined surface of the inclined panel 204. The inclined surface of the inclined panel squeezes the moving wheel 2061 to move upward. The moving wheel 2061 drives the first slide bar 2063 to move upward, causing the first slide bar 2063 to drive the inclined block 212 to move. The inclined block 212 squeezes the roller 2074 to move through the inclined surface. The roller 2074 drives the second slide bar 2075 to move. The second slide bar 2075 drives the clamping plate 2073 to move. The clamping plate 2073 drives the third spring 2072 to deform, enabling the clamping plate 2073 to automatically position the workpiece 300, ensuring stable cutting operation of the workpiece 300. After cutting, by resetting the support plate 209, at this time the moving wheel 2061 moves away from the inclined panel 204, causing the third spring 2072 to drive the clamping plate 2073 to reset and remove the fixation of the workpiece 300. This method can automatically clamp and remove the workpiece 300, thus greatly improving the convenience of operation and enhancing the efficiency of the entire cutting operation.
[0026] Embodiment 3: Refer to Figures 2-6 and Figures 8-9 , a cutting device for metal product processing, including a cutting auxiliary mechanism 200. The cutting auxiliary mechanism 200 includes a base 201. Two inclined panels 204 and two special-shaped slide rails 202 are fixedly connected above the base 201. The two inclined panels 204 are located between the two special-shaped slide rails 202. Three longitudinal propulsion components 206 are arranged above the inclined panel 204. The tops of the longitudinal propulsion components 206 are connected with two inclined blocks 212. A push-type clamping component 207 is connected to the inclined blocks 212. Every two push-type clamping components 207 on both sides clamp and position the same workpiece 300. The longitudinal propulsion component 206 is arranged on the support plate 209. An elastic component 205 is connected below the support plate 209. A roller 211 is arranged below the elastic component 205. Every three rollers 211 are respectively slidably arranged in the two special-shaped slide rails 202. The same second guiding component 208 is connected below the three support plates 209. The second guiding component 208 is connected with two first guiding components 203 below. The two first guiding components 203 are connected with the base 201.
[0027] In this embodiment: By pushing the support plate 209 to move, the support plate 209 drives the elastic component 205 and the longitudinal propulsion component 206 to move. The longitudinal propulsion component 206 can push up the inclined plane block 212 through the inclined plane of the inclined panel 204, so that the inclined plane block 212 squeezes the push-type clamping component 207 to automatically clamp the workpiece 300. After clamping, the roller 211 passes through the inclined plane of the special-shaped slide rail 202. If the push-type clamping component 207 does not clamp the workpiece 300 firmly, the elastic component 205 drives the support plate 209 to slide, and the switch 2056 is energized to make the switch 2056 achieve the purpose of alarming. In this way, it can automatically detect whether the workpiece 300 is fixed firmly, avoiding the problem of cutting errors caused by unstable fixation during the cutting process. Moreover, this method has a simple structure and is easy to operate. And through the movement of the roller 211 on the inclined plane of the special-shaped slide rail 202, the elastic component 205 can store elastic potential energy, so as to automatically remove the workpiece 300 after the workpiece 300 is cut. This method can optimize the production process, thus greatly improving the processing efficiency.
[0028] A method for using a cutting device for processing metal products, comprising the following steps: S1. When performing a cutting operation on the workpiece 300, first place the workpiece 300 on the two support plates 209, and then move the support plate 209 through the handle 210, so that the moving plate drives the first slide rail 2032 to slide along the guide bar 2031 through the second guiding component 208. At the same time, the support plate 209 drives the elastic component 205 and the longitudinal propulsion component 206 to move. When the moving wheel 2061 passes through the inclined plane of the inclined panel 204, the inclined plane of the inclined panel 204 squeezes the moving wheel 2061 to drive the movable plate 2062 to move upward, so that the movable plate 2062 drives the first slide bar 2063 to move upward, and the first slide bar 2063 drives the inclined plane block 212 to move upward. The inclined plane block 212 drives the second spring 2064 to deform. At the same time, the inclined plane of the inclined plane block 212 squeezes the roller 2074, so that the roller 2074 is squeezed to drive the second slide bar 2075 to move, and the second slide bar 2075 drives the clamping plate 2073 to move, so that the clamping plate 2073 drives the third spring 2072 to deform. At the same time, the clamping plate 2073 clamps and fixes the workpiece 300. S2. When the roller 211 moves to the inclined plane of the special-shaped slide rail 202, at this time, the roller 211 is driven by the inclined plane extrusion to drive the elastic component 205 to move. When the clamping plate 2073 fails to clamp firmly, the elastic component 205 drives the support plate 209 to move, and the support plate 209 drives the second slide rail 2083 to slide on the slide bar 2082, so that the clamping plate 2073 and the support plate 209 generate a sliding displacement on the workpiece 300. After the switch 2056 is energized, since the contact rod 2055 presses the switch 2056, the switch 2056 alarms through the alarm 2054 to detect the clamping firmness of the workpiece 300. S3. When the clamping plate 2073 firmly clamps the workpiece 300 and keeps the support plate 209 in a fixed position, at this time, the side plate 2053 drives the first spring 2052 to deform, and the switch 2056 moves away from the contact rod 2055. When the workpiece 300 is located below the cutting machine device 103, the hydraulic device 102 pushes the cutting machine device 103 downward, so that the cutting machine device 103 operates and cuts the workpiece 300 downward. After cutting, under the reset action of the first spring 2052, the support plate 209 drives the cut workpiece 300 to complete separation; S4. After the workpiece 300 is cut, the cut workpiece 300 is withdrawn through the handle 210. When the moving wheel 2061 disengages from the inclined surface of the inclined panel 204, the second spring 2064 and the third spring 2072 are reset, and the clamping plate 2073 moves away from the workpiece 300. At this time, the workpiece 300 is successfully taken out to complete the material taking operation.
[0029] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A cutting device for metal product processing, comprising a cutting device, characterized in that: The cutting device is provided with a cutting auxiliary mechanism; The cutting auxiliary mechanism includes a base, two inclined plates and two special-shaped slide rails are fixedly connected to the top of the base, the two inclined plates are located between the two special-shaped slide rails, three longitudinal propulsion components are arranged above the inclined plates, two inclined plane blocks are connected to the top of the longitudinal propulsion components, and the inclined plane blocks are connected to push-type clamping components, and each two push-type clamping components on both sides clamp and position the same workpiece; The longitudinal propulsion component is arranged on the support plate, an elastic component is connected below the support plate, a roller is arranged below the elastic component, every three rollers are respectively slidably arranged in two special-shaped slide rails, the same second guide component is connected below the three support plates, two first guide components are connected below the second guide component, and the two first guide components are connected to the base.
2. A cutting device for metal product processing according to claim 1, characterized in that: The cutting device comprises a processing bracket, which is fixedly connected to the base, a hydraulic device is fixedly installed above the processing bracket, and a cutting machine device is fixedly installed at the bottom of the hydraulic device.
3. A cutting device for metal product processing according to claim 2, characterized in that: A portion of the special-shaped slide rail is arranged obliquely, and a handle is fixedly connected to one side of each of the two support plates.
4. A cutting device for metal product processing according to claim 3, characterized in that: The first guide assembly comprises a guide bar which is fixedly connected to the base, and a first slide rail is slidably connected above the guide bar.
5. A cutting device for metal product processing according to claim 4, characterized in that: The second guide assembly includes a moving plate, the lower part of the moving plate is fixedly connected to the first slide rail, the upper part of the moving plate is fixedly connected to three slide bars, the slide bars are slidably connected to the second slide rail, and the second slide rail is fixedly connected to the lower part of the support plate.
6. The cutting device for metal product processing according to claim 5, characterized in that: The elastic component comprises two side plates, one of which is fixedly connected to the bottom of the support plate, the roller is arranged under the other side plate, and two telescopic rods and two first springs are fixedly connected between the two side plates.
7. A cutting device for metal product processing according to claim 6, characterized in that: A touch rod is fixedly connected to one side of one of the side panels, and an alarm and a switch are fixedly installed on both sides of the other side panel, and the switch corresponds to the touch rod.
8. The cutting device for metal product processing according to claim 7, characterized in that: The longitudinal propulsion assembly includes a movable plate, a movable wheel is fixedly connected to the bottom of the movable plate, the movable wheel rolls on the inclined plate, four first sliding rods are fixedly connected to the top of the movable plate, the first sliding rods slide in the first sliding sleeve, the first sliding sleeve is fixedly installed on the support plate, and a second spring is fixedly connected to the top of the first sliding sleeve, the top ends of the two second springs are fixedly connected to the inclined plane block, and the bottom of the inclined plane block is fixedly connected to the two first sliding rods.
9. The cutting device for metal product processing according to claim 8, characterized in that: The push-type clamping assembly includes a fixed plate, two second sliding sleeves are fixedly installed on the fixed plate, a second sliding rod is slidably connected in the second sliding sleeve, one end of the second sliding rod is fixedly connected to a roller, the two rollers are arranged on one side of the inclined block, the other ends of the two second sliding rods are fixedly connected to the same clamping plate, and a third spring is fixedly connected between the clamping plate and the fixed plate.
10. The method for using a cutting device for metal product processing according to claim 9, characterized in that: The following steps are involved: S1. When cutting a workpiece, first place the workpiece on the two support plates, then move the support plates through the handle, so that the movable plate drives the first slide rail to slide along the guide strip through the second guide assembly, and at the same time, the support plates drive the elastic assembly and the longitudinal propulsion assembly to move, and when the moving wheel passes through the inclined surface of the inclined plate, the inclined surface of the inclined plate squeezes the moving wheel to drive the movable plate to move upward, so that the movable plate drives the first slide bar to move upward, the first slide bar drives the inclined surface block to move upward, the inclined surface block drives the second spring to deform, and at the same time, the inclined surface of the inclined surface block squeezes the roller, so that the roller is squeezed to drive the second slide bar to move, and the second slide bar drives the clamping plate to move, so that the clamping plate drives the third spring to deform, and at the same time, the clamping plate clamps and fixes the workpiece; S2, when the roller moves to the inclined surface of the special-shaped slide rail, the roller is squeezed by the inclined surface and drives the elastic component to move. When the clamping plate is not firmly clamped, the elastic component drives the support plate to move, and the support plate drives the second slide rail to slide on the slide bar, thereby causing the clamping plate and the support plate to slide on the workpiece. After the switch is powered on, the switch is pressed by the touch rod, causing the switch to alarm through the alarm, thereby detecting the clamping firmness of the workpiece; S3, when the clamping plate firmly clamps the workpiece, so that the support plate keeps the position fixed, the side plate drives the first spring to deform, and the switch is away from the touch rod. When the workpiece is located below the cutting machine equipment, the hydraulic device pushes the cutting machine equipment downward, so that the cutting machine equipment runs and cuts the workpiece downward. After cutting, under the reset action of the first spring, the support plate drives the cut workpiece to complete separation; S4. When the workpiece is cut, the cut workpiece is pulled back by the handle. When the moving wheel is separated from the inclined surface of the inclined plate, the second spring and the third spring are reset, so that the clamping plate is away from the workpiece. At this time, the workpiece is smoothly taken out to complete the material removal operation.
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