Stainless steel sheet cutting apparatus
By controlling the disengagement and engagement of the bevel teeth and gear teeth with an electric push rod, and adjusting the saw blade angle in conjunction with a fixed motor and transmission belt, and realizing automatic coolant filling, the problem of separate transfer and complex angle adjustment required after forming in existing stainless steel plate cutting devices is solved, thus improving cutting efficiency and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- JIANGSU HUALIAN METAL PRODUCTS CO LTD
- Filing Date
- 2026-03-30
- Publication Date
- 2026-06-16
AI Technical Summary
The existing stainless steel sheet cutting device requires separate transportation to the cutting platform for positioning after forming. Adjusting the saw blade angle is complicated and the accuracy is difficult to guarantee, which affects the cutting efficiency and quality.
A stainless steel plate cutting device was designed. The device controls the disengagement and engagement of the bevel teeth and gear teeth through an electric push rod. It also adjusts the saw blade angle with a fixed motor and transmission belt, and realizes automatic filling of coolant, which simplifies the process and improves the adjustment accuracy.
It improves the efficiency and quality of stainless steel sheet cutting, simplifies the operation process, reduces saw blade wear, and adapts to diverse production needs.
Smart Images

Figure CN122210119A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of stainless steel plate cutting technology, specifically a stainless steel plate cutting device. Background Technology
[0002] Stainless steel sheet is a general term encompassing both stainless steel sheet and acid-resistant steel sheet. The former can withstand weak corrosive media such as atmosphere, steam, and water, while the latter resists corrosion from strong chemical media such as acids, alkalis, and salts. Its invention was a significant breakthrough in metallurgical history, providing crucial material support for modern industrial and technological development. Stainless steel sheets have a smooth surface, excellent corrosion resistance, and high structural strength, making them widely used in machinery, shipbuilding, construction, automobiles, mining, and many other fields. In practical applications, cutting is often required, making stainless steel sheet cutting equipment an essential piece of equipment in the processing stage.
[0003] A patent with publication number CN118357516B discloses a stainless steel plate cutting device, including a worktable and a cutting mechanism. The cutting mechanism includes a sliding base and a linear driver. A cylinder is fixedly installed on the side of the top of the sliding base. A connecting plate is fixedly installed on the output end of the cylinder. A servo motor is fixedly installed in the middle of the bottom of the connecting plate. A cutting disc assembly is fixedly installed on the output end of the servo motor. The cutting disc assembly includes a cutting disc and a ball bearing. The center of the outer side of the cutting disc is fixedly connected to the output end of the servo motor. A support ring is fixedly connected to the middle of the outer side of the cutting disc. A circular groove is formed in the middle of the outer surface of the support ring. The ball bearing is installed in the middle of the outer surface of the support ring through the circular groove.
[0004] However, in the existing stainless steel plate cutting equipment, after the steel plate is formed by the pressing process, the formed steel plate must first be taken out of the pressing equipment, transferred separately to the cutting platform, and then the position must be corrected and fixed before the cutting operation can be carried out. The whole process is cumbersome. At the same time, for trapezoidal stainless steel plates with different specifications and different tilt angle requirements, the angle of the cutting saw needs to be adjusted separately before each cutting. The adjustment process is complicated and time-consuming, and the accuracy of the angle adjustment is difficult to guarantee, which affects the cutting efficiency and processing quality of stainless steel plates.
[0005] Therefore, the present invention provides a stainless steel plate cutting device. Summary of the Invention
[0006] In order to overcome the shortcomings of the prior art, at least one technical problem raised in the background art is solved.
[0007] The technical solution adopted by the present invention to solve its technical problem is as follows: A stainless steel plate cutting device of the present invention includes a machine body, a first guide rail fixedly connected to the upper surface of the machine body, a sliding frame slidably connected to the surface of the first guide rail, the sliding frame being used to place the stainless steel plate, a rotating frame rotatably connected to both sides of the machine body, a base plate fixedly connected to the surface of the rotating frame, a saw blade being provided on the surface of the base plate, an adjustment component being provided on one side of the machine body, the adjustment component including a connecting plate fixedly connected to one side of the machine body, a fixed motor fixedly connected to the upper surface of the connecting plate, a rotating gear fixedly connected to the output end of the fixed motor, the rotating gear meshing with a fixed gear, one side of the fixed gear being fixedly connected to the rotating frame; an auxiliary component is also provided on the upper surface of the machine body, the auxiliary component being used to assist the cooling work of the saw blade during the sawing process, the auxiliary component including a storage box located above the machine body, a plurality of spray holes being opened on the upper surface of the storage box, the spray holes being used to spray coolant.
[0008] Preferably, the adjustment assembly further includes an electric push rod fixed to the upper surface of the connecting plate. The output end of the electric push rod is fixed to a connecting strip, and both ends of the connecting strip are fixed to fixed rods. One end of the fixed rod is fixed to a telescopic rod, and one end of the telescopic rod is fixed to an auxiliary plate. A fixed disk is fixed to one side of the auxiliary plate, and a plurality of bevel teeth are fixed to one side of the fixed disk. A plurality of tooth grooves are opened on one side of the fixed gear, and the bevel teeth engage with the tooth grooves.
[0009] Preferably, the adjustment components are symmetrically arranged on both sides of the machine body to adjust two sets of saw blades. One of the adjustment components is driven by a fixed motor. The output end of the fixed motor is connected to a transmission belt. A rotating column is rotatably connected to one side of the machine body. The rotating column is connected to the transmission belt. One end of the rotating column is fixedly connected to a gear. The gear meshes with a connecting gear. The connecting gear meshes with an auxiliary gear. The auxiliary gear is fixedly connected to one of the rotating frames.
[0010] Preferably, the telescopic rod is located inside the fixed rod and the auxiliary plate, and the telescopic rod can assist in pulling out the fixed plate and in the grinding of the bevel teeth.
[0011] Preferably, a sliding plate is fixedly connected to one end of the sliding frame, and a positioning plate is fixedly connected to the other end of the sliding frame. The positioning plate and the sliding plate are used to fix and limit the stainless steel plate.
[0012] Preferably, the auxiliary component further includes a slide rod fixed to one side of the fixed rod, a fixed frame fixed to the upper surface of the machine body, the slide rod located inside the fixed frame, a spring fixed between the slide rod and the inner wall of the fixed frame, a pull rod fixed to the upper surface of the slide rod, a positioning strip fixed to one end of the pull rod, a through auxiliary hole opened on the surface of the positioning strip, a positioning frame fixed to the upper surface of the fixed frame, a through positioning hole opened on the side of the positioning frame, the positioning strip inserted into the positioning frame, one side of the positioning frame fixed to a pressure box fixed to the upper surface of the machine body, an auxiliary tube fixed to the other side of the positioning frame, the auxiliary tube fixed to a storage box, an inclined plate fixed to the upper surface of the storage box, and a plurality of spray holes opened on the surface of the inclined plate.
[0013] Preferably, an auxiliary rod is fixedly connected to the upper surface of the pull rod, one end of the auxiliary rod is fixedly connected to a limiting plate, one end of the limiting plate is rotatably connected to a frosted plate, the limiting plate and the frosted plate are elastically connected, and both sides are provided with inclined grooves.
[0014] Preferably, after the stainless steel plate is pressed, it is placed above the sliding frame and fixed in place. Then, the electric push rod is activated, which pulls the connecting strip it is fixed to, indirectly pulling the fixed plates at both ends of the connecting strip. The bevel teeth on the fixed plates at both ends of the connecting strip disengage from the grooves on the fixed gear and the auxiliary gear, releasing the fixation of the fixed gear and the auxiliary gear. Then, the fixed motor is activated, which drives the rotating gear to rotate. Through the transmission belt, the rotating column and the gear teeth are driven to rotate simultaneously. The rotation of the rotating gear and the gear teeth drives the fixed gear and the auxiliary gear to rotate, which in turn drives the rotating frame on both sides of the machine body to rotate, thereby adjusting the angle of the saw blade. After adjustment, the electric push rod pushes the two fixed plates at the output end, causing the bevel teeth on the fixed plates to engage again with the grooves on one side of the auxiliary gear and the fixed gear, completing the fixing work. Finally, the steel plate is sawed.
[0015] Preferably, during the process of the electric push rod pulling the connecting bar, the connecting bar pulls the fixed rods at both ends, causing the slide bar on one side of the fixed rod to be pulled. The pulling of the slide bar causes the upper surface pull rod to be driven. The movement of the pull rod drives the positioning strip fixed at one end. The movement of the positioning strip causes the auxiliary hole through its side to align with the positioning hole on the side of its external positioning frame. At this time, the pressure box will pressurize the coolant in the machine body and inject it into the auxiliary pipe through the positioning hole and auxiliary hole, and then into the storage tank. After the angle adjustment is completed, the coolant filling work of the storage tank is completed. After the filling is completed, the built-in pressure pump in the storage tank is started. During the sawing operation, the pressure pump pressurizes and sprays out the coolant. The sprayed liquid will slide down the inclined plate set on the upper surface of the storage tank. In addition, the spring set at the end of the slide rod assists the electric push rod in the adjustment work.
[0016] Preferably, a limiting plate and a frosted plate are provided on the upper surface of the pull rod, so that during the sawing and feeding process of the stainless steel plate, it will move along the frosted plate and the limiting plate above the pull rod, and the limiting plate and the frosted plate will fit against the sawn edge of the stainless steel plate to perform grinding work.
[0017] The beneficial effects of this invention are as follows: 1. The stainless steel plate cutting equipment of the present invention, after the stainless steel plate is pressed, places the stainless steel plate on a sliding frame and completes the limiting and fixing, and controls the disengagement and engagement of the bevel teeth and gear teeth through the electric push rod to realize the unlocking and locking of the fixed gear and the auxiliary gear. With the synchronous transmission of the fixed motor and the transmission belt, the saw angle can be adjusted to adapt to the cutting needs of trapezoidal steel plates with different inclinations. After adjustment, the bevel teeth are firmly engaged, which can prevent the gear from loosening during the sawing process and causing the angle to shift, thereby improving the sawing stability and processing quality, improving the cutting efficiency of stainless steel plates, and adapting to the needs of large-scale and diversified production.
[0018] 2. The stainless steel plate cutting equipment of the present invention, during the angle adjustment process, simultaneously drives the fixed rod, slide rod, and pull rod to align the auxiliary hole of the positioning strip with the positioning hole of the positioning frame, thereby achieving automatic coolant filling without manual operation, simplifying the processing flow, and ensuring efficient coolant filling, making full preparation for sawing and cooling. During sawing, the built-in pressure pump pressurizes and sprays the coolant in the storage tank, which can reduce the temperature of the saw blade, reduce wear, reduce burrs at the sawing point of the steel plate, and improve processing quality. The sprayed coolant slides down the inclined plate, which is easy to recycle and saves resources. In addition, the spring at the end of the slide rod can assist the electric push rod in completing the angle adjustment, reduce the load on the electric push rod, improve the stability and accuracy of the adjustment process, and extend the service life of the device. Attached Figure Description
[0019] The invention will now be further described with reference to the accompanying drawings.
[0020] Figure 1 This is a perspective view of Embodiment 1 of the present invention; Figure 2 This is a schematic diagram of the structure of the adjustment component of the present invention; Figure 3 This is a schematic diagram of the disassembled structure of the adjustment component of the present invention; Figure 4 This is the present invention. Figure 3 Enlarged view of point A in the middle; Figure 5 This is the present invention. Figure 3 Enlarged view of point B in the middle; Figure 6 This is a schematic diagram of the structure of the auxiliary component of the present invention; Figure 7This is a schematic diagram of the disassembled structure of the auxiliary component of the present invention; In the image: 1. Body; 2. First guide rail; 21. Sliding frame; 22. Sliding plate; 23. Positioning plate; 24. Rotating frame; 25. Base plate; 26. Saw blade; 3. Connecting plate; 31. Fixed motor; 32. Rotating gear; 33. Fixed gear; 34. Transmission belt; 35. Rotating column; 36. Gear teeth; 37. Connecting gear; 38. Auxiliary gear; 39. Telescopic rod; 310. Auxiliary plate; 311. Gear groove; 312. Fixed disc; 313. Bevel gear; 4. Pressure box; 41. Positioning frame; 42. Positioning hole; 43. Positioning strip; 44. Auxiliary hole; 45. Auxiliary pipe; 46. Storage box; 47. Inclined plate; 48. Spray hole; 49. Pull rod; 410. Auxiliary rod; 411. Limiting plate; 412. Frosted plate; 5. Electric push rod; 51. Connecting bar; 52. Fixing rod; 53. Slide rod; 54. Fixing frame; 55. Spring. Detailed Implementation
[0021] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.
[0022] Example 1: As Figures 1 to 7As shown in the embodiment of the present invention, a stainless steel plate cutting device has a first guide rail 2 fixedly connected to the upper surface of the machine body 1. A sliding frame 21 is slidably connected to the surface of the first guide rail 2. The sliding frame 21 is used to place the stainless steel plate. A rotating frame 24 is rotatably connected to both sides of the machine body 1. A base plate 25 is fixedly connected to the surface of the rotating frame 24. A saw blade 26 is provided on the surface of the base plate 25. An adjustment component is provided on one side of the machine body 1. The adjustment component includes a connecting plate 3 fixedly connected to one side of the machine body 1. A fixed motor 31 is fixedly connected to the upper surface of the connecting plate 3. A rotating gear 32 is fixedly connected to the output end of the fixed motor 31. The rotating gear 32 meshes with a fixed gear 33. One side of the fixed gear 33 is fixedly connected to the rotating frame 24. An auxiliary component is also provided on the upper surface of the machine body 1. The auxiliary component is used to assist the cooling of the saw blade 26 during the sawing process. The auxiliary component includes a storage box 46 located above the machine body 1. A plurality of spray holes 48 are opened on the upper surface of the storage box 46. The spray holes 48 are used to spray coolant. The adjustment component also includes a fixed... An electric push rod 5 is mounted on the upper surface of the connecting plate 3. A connecting strip 51 is fixedly connected to the output end of the electric push rod 5. A fixing rod 52 is fixedly connected to both ends of the connecting strip 51. A telescopic rod 39 is fixedly connected to one end of the fixing rod 52. An auxiliary plate 310 is fixedly connected to one end of the telescopic rod 39. A fixing disk 312 is fixedly connected to one side of the auxiliary plate 310. Several bevel teeth 313 are fixedly connected to one side of the fixing disk 312. Several tooth grooves 311 are opened on one side of the fixing gear 33, and the bevel teeth 313 engage with the tooth grooves 311. The components are symmetrically arranged on both sides of the machine body 1. Two sets of saw blades 26 are adjusted. One of the adjustment components is driven by a fixed motor 31. The output end of the fixed motor 31 is connected to a transmission belt 34. A rotating column 35 is rotatably connected to one side of the machine body 1. The rotating column 35 is connected to the transmission belt 34. One end of the rotating column 35 is fixedly connected to a gear 36. The gear 36 meshes with a connecting gear 37. The connecting gear 37 meshes with an auxiliary gear 38. The auxiliary gear 38 is fixedly connected to one of the rotating frames 24.
[0023] Specifically, in the existing stainless steel plate cutting equipment, after the steel plate is formed by the pressing process, the formed steel plate must first be taken out of the pressing equipment, transferred separately to the cutting platform, and then the position must be corrected and fixed before the cutting operation can be carried out. The whole process is cumbersome. At the same time, for trapezoidal stainless steel plates with different specifications and different tilt angle requirements, the angle of the cutting saw blade 26 needs to be adjusted separately before each cutting. The adjustment process is complicated and time-consuming, and the accuracy of the angle adjustment is difficult to guarantee, which affects the cutting efficiency and processing quality of stainless steel plates. Therefore, the present invention addresses the aforementioned problems by setting up the above structure. First, after the stainless steel plate is pressed, it is placed above the sliding frame 21 and fixed in place. Then, by activating the electric push rod 5, the electric push rod 5 pulls the connecting strip 51 to which it is fixed, indirectly pulling the fixing discs 312 at both ends of the connecting strip 51. The bevel teeth 313 on the fixing discs 312 at both ends of the connecting strip 51 disengage from the tooth grooves 311 on the fixed gear 33 and the auxiliary gear 38, releasing the fixation of the fixed gear 33 and the auxiliary gear 38. Then, the fixed motor 31 is activated, driving the rotating gear 32 to rotate, and through transmission... The transmission of belt 34 synchronously drives the rotating column 35 and the gear 36 to rotate. The rotation of the rotating gear 32 and the gear 36 simultaneously drives the fixed gear 33 and the auxiliary gear 38 to rotate. In turn, the fixed gear 33 and the auxiliary gear 38 drive the rotating frame 24 on both sides of the machine body 1 to rotate, thereby adjusting the angle of the saw blade 26. After the adjustment is completed, the electric push rod 5 pushes the two fixed disks 312 at the output end, so that the bevel teeth 313 on the fixed disk 312 are engaged again into the tooth groove 311 on one side of the auxiliary gear 38 and the fixed gear 33, completing the fixing work. Finally, the steel plate is sawed. After the stainless steel plate is pressed, it is placed on the sliding frame 21 and fixed in place. Then, the electric push rod 5 controls the disengagement and engagement of the bevel gear 313 and the gear tooth 36 groove, thereby unlocking and locking the fixed gear 33 and the auxiliary gear 38. With the synchronous transmission of the fixed motor 31 and the transmission belt 34, the angle of the saw blade 26 can be adjusted to meet the cutting requirements of trapezoidal steel plates with different inclinations. After adjustment, the bevel gear 313 is firmly engaged, which can prevent the gear from loosening during the sawing process and causing the angle to shift, thereby improving the sawing stability and processing quality, increasing the cutting efficiency of stainless steel plates, and meeting the needs of large-scale and diversified production.
[0024] Example 2: Figures 1 to 7As shown in the comparative embodiment one, another embodiment of the present invention is as follows: the auxiliary component further includes a slide rod 53 fixedly connected to one side of the fixed rod 52, a fixed frame 54 fixedly connected to the upper surface of the body 1, the slide rod 53 located inside the fixed frame 54, a spring 55 fixedly connected between the slide rod 53 and the inner wall of the fixed frame 54, a pull rod 49 fixedly connected to the upper surface of the slide rod 53, a positioning strip 43 fixedly connected to one end of the pull rod 49, a through auxiliary hole 44 opened on the surface of the positioning strip 43, a positioning frame 41 fixedly connected to the upper surface of the fixed frame 54, a through positioning hole 42 opened on the side of the positioning frame 41, and the positioning strip 4... 3 is inserted into the positioning frame 41. One side of the positioning frame 41 is fixedly connected to the pressure box 4 on the upper surface of the machine body 1. The other side of the positioning frame 41 is fixedly connected to the auxiliary tube 45. The auxiliary tube 45 is fixedly connected to the storage box 46. The upper surface of the storage box 46 is fixedly connected to the inclined plate 47. Several spray holes 48 are opened on the surface of the inclined plate 47. The upper surface of the pull rod 49 is also fixedly connected to the auxiliary rod 410. One end of the auxiliary rod 410 is fixedly connected to the limiting plate 411. One end of the limiting plate 411 is rotatably connected to the frosted plate 412. The limiting plate 411 and the frosted plate 412 are elastically connected, and both are provided with inclined grooves on one side.
[0025] Specifically, during the process of the electric push rod 5 pulling the connecting bar 51, the connecting bar 51 pulls the fixed rods 52 at both ends, causing the slide bar 53 on one side of the fixed rod 52 to be pulled. The pulling of the slide bar 53 causes the upper surface pull rod 49 to be moved. The movement of the pull rod 49 causes the positioning bar 43 fixed at one end to move. The movement of the positioning bar 43 causes the auxiliary hole 44 through its side to align with the positioning hole 42 on the side of its external positioning frame 41. At this time, the pressure box 4 will pressurize the coolant in the machine body 1 and pass it through the fixed rod 42. The coolant is injected into the auxiliary tube 45 through the positioning hole 42 and auxiliary hole 44, and then into the storage tank 46. After the angle adjustment is completed, the coolant filling work of the storage tank 46 is completed. After the filling is completed, the built-in pressure pump in the storage tank 46 is started. During the sawing operation of the saw blade 26, the pressure pump pressurizes and sprays out the coolant. The sprayed liquid will slide down along the inclined plate 47 set on the upper surface of the storage tank 46. In addition, the spring 55 set at the end of the slide rod 53 assists the electric push rod 5 in the adjustment work. During angle adjustment, when the electric push rod 5 pulls the connecting strip 51, it simultaneously drives the fixed rod 52, the sliding rod 53, and the pull rod 49 to gradually align the auxiliary hole 44 of the positioning strip 43 with the positioning hole 42 of the positioning frame 41, thus achieving automatic coolant filling without manual operation, simplifying the processing flow, and ensuring efficient coolant filling to prepare for sawing and cooling. During sawing, the built-in pressure pump pressurizes and sprays the coolant in the storage tank 46, which can reduce the temperature of the saw blade 26, reduce wear, reduce burrs at the sawing point of the steel plate, and improve processing quality. The sprayed coolant slides down the inclined plate 47 for easy recycling and resource conservation. In addition, the spring 55 at the end of the sliding rod 53 can assist the electric push rod 5 in completing the angle adjustment, reduce the load on the electric push rod 5, improve the stability and accuracy of the adjustment process, and extend the service life of the device.
[0026] like Figure 7 As shown, in this embodiment, an auxiliary rod 410 is also fixedly connected to the upper surface of the pull rod 49. One end of the auxiliary rod 410 is fixedly connected to a limiting plate 411, and one end of the limiting plate 411 is rotatably connected to a frosted plate 412. The limiting plate 411 and the frosted plate 412 are elastically connected, and both have inclined grooves on one side. Specifically, a limiting plate 411 and a frosted plate 412 are provided on the upper surface of the pull rod 49, so that during the sawing feed of the stainless steel plate, it will move along the frosted plate 412 and the limiting plate 411 above the pull rod 49. The limiting plate 411 and the frosted plate 412 will fit against the sawn edge of the stainless steel plate to perform grinding work, thereby simplifying the processing flow and improving the sawing quality.
[0027] Working principle: First, after the stainless steel plate is pressed, it is placed above the sliding frame 21 and fixed. Then, the electric push rod 5 is activated, which pulls the connecting strip 51, indirectly pulling the fixing plates 312 at both ends of the connecting strip 51. The bevel teeth 313 on the fixing plates 312 disengage from the tooth grooves 311 on the fixed gear 33 and the auxiliary gear 38, releasing the fixation of the fixed gear 33 and the auxiliary gear 38. Then, the fixed motor 31 is activated, which drives the rotating gear 32 to rotate, and the rotation is transmitted through the transmission belt 34. The rotating column 35 and gear 36 are driven to rotate synchronously. The rotation of the rotating gear 32 and gear 36 simultaneously drives the fixed gear 33 and auxiliary gear 38 to rotate. In turn, the fixed gear 33 and auxiliary gear 38 drive the rotating frame 24 on both sides of the machine body 1 to rotate, thereby adjusting the angle of the saw blade 26. After the adjustment is completed, the electric push rod 5 pushes the two fixed plates 312 at the output end, so that the bevel teeth 313 on the fixed plate 312 are engaged again into the tooth groove 311 on one side of the auxiliary gear 38 and the fixed gear 33, completing the fixing work. Finally, the steel plate is sawed. After the stainless steel plate is pressed, it is placed on the sliding frame 21 and fixed. Then, the electric push rod 5 controls the disengagement and engagement of the bevel tooth 313 and the gear tooth 36 groove, thereby unlocking and locking the fixed gear 33 and the auxiliary gear 38. With the synchronous transmission of the fixed motor 31 and the transmission belt 34, the angle of the saw blade 26 can be adjusted to meet the cutting requirements of trapezoidal steel plates with different inclinations. After adjustment, the bevel tooth 313 is firmly engaged, which can prevent the gear from loosening during the sawing process and causing the angle to shift, thereby improving the sawing stability and processing quality, improving the cutting efficiency of stainless steel plates, and meeting the needs of large-scale and diversified production. Additionally, during the process of the electric push rod 5 pulling the connecting rod 51, the connecting rod 51 pulls the fixed rods 52 at both ends, causing the slide rod 53 on one side of the fixed rod 52 to be pulled. The pulling of the slide rod 53 causes the upper surface pull rod 49 to be moved. The movement of the pull rod 49 causes the positioning strip 43 fixed at one end to move. The movement of the positioning strip 43 causes the auxiliary hole 44 through its side to align with the positioning hole 42 on the side of its external positioning frame 41. At this time, the pressure box 4 will pressurize the coolant in the machine body 1 and pass it through the positioning hole 42. The coolant is injected into the auxiliary tube 45 through the hole 42 and the auxiliary hole 44, and then into the storage tank 46. After the angle adjustment is completed, the coolant filling work of the storage tank 46 is completed. After the filling is completed, the built-in pressure pump in the storage tank 46 is started. During the sawing operation of the saw blade 26, the pressure pump pressurizes and sprays out the coolant. The sprayed liquid will slide down along the inclined plate 47 set on the upper surface of the storage tank 46. In addition, the spring 55 set at the end of the slide rod 53 assists the electric push rod 5 in the adjustment work. During angle adjustment, when the electric push rod 5 pulls the connecting strip 51, it simultaneously drives the fixed rod 52, the sliding rod 53, and the pull rod 49 to gradually align the auxiliary hole 44 of the positioning strip 43 with the positioning hole 42 of the positioning frame 41, thus achieving automatic coolant filling without manual operation, simplifying the processing flow, and ensuring efficient coolant filling to prepare for sawing and cooling. During sawing, the built-in pressure pump pressurizes and sprays the coolant in the storage tank 46, which can reduce the temperature of the saw blade 26, reduce wear, reduce burrs at the sawing point of the steel plate, and improve processing quality. The sprayed coolant slides down the inclined plate 47 for easy recycling and resource conservation. In addition, the spring 55 at the end of the sliding rod 53 can assist the electric push rod 5 in completing the angle adjustment, reduce the load on the electric push rod 5, improve the stability and accuracy of the adjustment process, and extend the service life of the device.
[0028] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. A stainless steel plate cutting device, comprising a machine body (1), wherein a first guide rail (2) is fixedly connected to the upper surface of the machine body (1), a sliding frame (21) is slidably connected to the surface of the first guide rail (2), the sliding frame (21) is used to place the stainless steel plate, and a rotating frame (24) is rotatably connected to both sides of the machine body (1), a base plate (25) is fixedly connected to the surface of the rotating frame (24), and a saw blade (26) is provided on the surface of the base plate (25), characterized in that: An adjustment assembly is provided on one side of the body (1). The adjustment assembly includes a connecting plate (3) fixedly connected to one side of the body (1). A fixed motor (31) is fixedly connected to the upper surface of the connecting plate (3). A rotating gear (32) is fixedly connected to the output end of the fixed motor (31). The rotating gear (32) meshes with a fixed gear (33). One side of the fixed gear (33) is fixedly connected to the rotating frame (24). The upper surface of the machine body (1) is also provided with an auxiliary component, which is used to assist the saw blade (26) in cooling during the sawing process. The auxiliary component includes a storage box (46) located above the machine body (1). The upper surface of the storage box (46) is provided with a number of spray holes (48), which are used to spray out coolant.
2. The stainless steel plate cutting equipment according to claim 1, characterized in that: The adjustment assembly also includes an electric push rod (5) fixed to the upper surface of the connecting plate (3). The output end of the electric push rod (5) is fixed to a connecting strip (51). Both ends of the connecting strip (51) are fixed to a fixing rod (52). One end of the fixing rod (52) is fixed to a telescopic rod (39). One end of the telescopic rod (39) is fixed to an auxiliary plate (310). One side of the auxiliary plate (310) is fixed to a fixing disk (312). One side of the fixing disk (312) is fixed to several bevel teeth (313). One side of the fixed gear (33) is provided with several tooth grooves (311). The bevel teeth (313) engage with the tooth grooves (311).
3. The stainless steel plate cutting equipment according to claim 2, characterized in that: The adjustment components are symmetrically arranged on both sides of the machine body (1) to adjust two sets of saw blades (26). One of the adjustment components is driven by a fixed motor (31). The output end of the fixed motor (31) is connected to a transmission belt (34). A rotating column (35) is rotatably connected to one side of the machine body (1). The rotating column (35) is connected to the transmission belt (34). One end of the rotating column (35) is fixedly connected to a gear tooth (36). The gear tooth (36) meshes with a connecting gear (37). The connecting gear (37) meshes with an auxiliary gear (38). The auxiliary gear (38) is fixedly connected to one of the rotating frames (24).
4. The stainless steel plate cutting equipment according to claim 2, characterized in that: The telescopic rod (39) is located inside the fixed rod (52) and the auxiliary plate (310). The telescopic rod (39) can assist in pulling out the fixed plate (312) and assist in the grinding of the bevel teeth (313).
5. The stainless steel plate cutting equipment according to claim 1, characterized in that: One end of the sliding frame (21) is fixedly connected to a sliding plate (22), and the other end of the sliding frame (21) is fixedly connected to a positioning plate (23). The positioning plate (23) and the sliding plate (22) are used to fix and limit the stainless steel plate.
6. The stainless steel plate cutting equipment according to claim 1, characterized in that: The auxiliary component also includes a slide rod (53) fixed to one side of the fixed rod (52). A fixed frame (54) is fixed to the upper surface of the body (1). The slide rod (53) is located inside the fixed frame (54). A spring (55) is fixed between the slide rod (53) and the inner wall of the fixed frame (54). A pull rod (49) is fixed to the upper surface of the slide rod (53). A positioning strip (43) is fixed to one end of the pull rod (49). An auxiliary hole (44) is opened through the surface of the positioning strip (43). The upper surface of the fixed frame (54) A positioning frame (41) is fixedly attached to the surface of the machine body (1). A through positioning hole (42) is provided on the side of the positioning frame (41). The positioning strip (43) is inserted into the positioning frame (41). One side of the positioning frame (41) is fixedly attached to the pressure box (4) fixedly attached to the upper surface of the machine body (1). An auxiliary pipe (45) is fixedly attached to the other side of the positioning frame (41). The auxiliary pipe (45) is fixedly attached to the storage box (46). An inclined plate (47) is fixedly attached to the upper surface of the storage box (46). Several spray holes (48) are provided on the surface of the inclined plate (47).
7. A stainless steel plate cutting device according to claim 6, characterized in that: An auxiliary rod (410) is also fixedly connected to the upper surface of the pull rod (49). One end of the auxiliary rod (410) is fixedly connected to a limiting plate (411). One end of the limiting plate (411) is rotatably connected to a frosted plate (412). The limiting plate (411) and the frosted plate (412) are elastically connected, and both have inclined grooves on one side.
8. A stainless steel plate cutting device according to claim 3, characterized in that: After the stainless steel plate is pressed, it is placed above the sliding frame (21) and fixed in place. Then, the electric push rod (5) is started, and the electric push rod (5) pulls the connecting strip (51) that is fixed to it, which indirectly pulls the fixing plates (312) at both ends of the connecting strip (51). The bevel teeth (313) on the fixing plates (312) at both ends of the connecting strip (51) disengage from the tooth grooves (311) on the fixed gear (33) and the auxiliary gear (38), and release the fixation of the fixed gear (33) and the auxiliary gear (38). Then, the fixed motor (31) is started, and the fixed motor (31) drives the rotating gear (32) to rotate, and drives the synchronous rotation through the transmission belt (34). The rotating column (35) and the gear teeth (36) rotate, and the rotating gear (32) and the gear teeth (36) rotate, which in turn drives the fixed gear (33) and the auxiliary gear (38) to rotate. Then, the fixed gear (33) and the auxiliary gear (38) drive the rotating frame (24) on both sides of the machine body (1) to rotate, thereby adjusting the angle of the saw blade (26). After the adjustment is completed, the electric push rod (5) pushes the two fixed plates (312) at the output end, so that the bevel teeth (313) on the fixed plate (312) are engaged again into the tooth groove (311) on one side of the auxiliary gear (38) and the fixed gear (33), completing the fixing work. Finally, the steel plate is sawed.
9. A stainless steel plate cutting device according to claim 6, characterized in that: During the process of the electric push rod (5) pulling the connecting bar (51), the connecting bar (51) pulls the fixed rods (52) at both ends, causing the slide bar (53) on one side of the fixed rod (52) to be pulled. The pulling of the slide bar (53) causes the upper surface pull rod (49) to be driven. The movement of the pull rod (49) drives the positioning bar (43) fixed at one end. The movement of the positioning bar (43) causes the auxiliary hole (44) through its side to align with the positioning hole (42) on the side of its external positioning frame (41). At this time, the pressure box (4) will pressurize the coolant in the machine body (1) and pass through the auxiliary hole (44) to align with the positioning hole (42) on the side of its external positioning frame (41). At this time, the pressure box (4) will pressurize the coolant in the machine body (1) and pass through the auxiliary hole (44) to align with the positioning hole (42) on the side of its external positioning frame (41). Insert the coolant through the positioning hole (42) and auxiliary hole (44), inject it into the auxiliary tube (45), and then inject it into the storage tank (46). After the angle adjustment is completed, the coolant filling work of the storage tank (46) is completed. After the filling is completed, start the built-in pressure pump in the storage tank (46). During the sawing operation of the saw blade (26), the pressure pump pressurizes and sprays out the coolant. The sprayed liquid will slide down along the inclined plate (47) set on the upper surface of the storage tank (46). In addition, the spring (55) set at the end of the slide rod (53) assists the electric push rod (5) in the adjustment work.
10. A stainless steel plate cutting device according to claim 7, characterized in that: A limiting plate (411) and a frosted plate (412) are provided on the upper surface of the pull rod (49), so that during the sawing feed of the stainless steel plate, it will move along the frosted plate (412) and the limiting plate (411) above the pull rod (49), and the limiting plate (411) and the frosted plate (412) will fit against the sawn edge of the stainless steel plate for grinding.
Citation Information
Patent Citations
Stainless steel plate cutting device
CN118357516B