Improved device of stainless steel plate edge planer
By using composite materials for the guide rail slider and guide rail components, the problem of product quality degradation caused by guide rail wear in stainless steel plate edge planing machines is solved, achieving high-precision and high-efficiency edge planing processing, which is suitable for processing various types of steel plates.
Patent Information
- Application Number
- CN202423265999.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Early stainless steel plate edge planing machines suffered from reduced product quality due to guide rail wear, and were unable to achieve high-precision and high-efficiency processing.
The design employs a guide rail slider and guide rail components, using composite metal materials. It is installed through a first connecting part and a second connecting part, with the guide rail slider and guide rail components fixedly connected to ensure straightness and edge planing accuracy. It can plan edges at different angles. The guide rail components are made of composite metal materials to improve strength and corrosion resistance.
It improves planing accuracy and production efficiency, reduces guide rail wear, is suitable for processing steel plates of various specifications and thicknesses, and ensures product quality and production stability.
Smart Images

Figure CN223801627U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the edge planer equipment technical field, concretely relates to an improved device of stainless steel plate edge planer. BACKGROUND
[0002] In the metal processing industry, stainless steel plate is widely used in various fields due to its corrosion resistance, wear resistance and other characteristics, and with the continuous progress of industrial technology, the quality and precision requirements of stainless steel plate are increasingly improved. The early stainless steel plate edge planer mainly relies on manual operation and cannot realize high-precision edge planing and high-efficiency processing, so a numerical control edge planer is adopted to improve the production precision, but the guide rail will be worn after long-term use, and the uneven welding caused by the mounting structure of the guide rail will cause the quality of the product to decrease. SUMMARY
[0003] The utility model aims at the above problem, provides an improved device of stainless steel plate edge planer.
[0004] To achieve the above purpose, the utility model adopts the following technical scheme: an improved device of stainless steel plate edge planer, including main frame body, one side of main frame body is equipped with mounting seat, one side of mounting seat is equipped with first connecting part, one side of first connecting part is equipped with second connecting part, the recess extending in the axial direction is equipped between first connecting part and second connecting part, first connecting part side away from recess and second connecting part side close to recess are equipped with a plurality of guide rail slides arranged in sequence through connecting assembly, and guide rail piece is connected on guide rail slide. The guide rail slide is installed in the first connecting part and the second connecting part, and the guide rail piece is fixedly connected with the guide rail slide. Such a design structure can improve the straightness and ensure the accuracy of the edge planing work, so that the edge of the processed steel plate is smooth and uniform, reduces the error and deviation in manual operation, and the device is also suitable for processing steel plates of various specifications and thicknesses. Whether it is a stainless steel plate or other material plate, it can be used for edge planing of the plate, and has strong versatility.
[0005] In the improved device of the stainless steel plate edge planer, the guide rail slide is in a rectangular structure, the guide rail slide is provided with a slide block fixing hole at each corner, a plurality of first fixing holes are arranged on one side of the guide rail slide, and a plurality of second fixing holes are arranged on the other side, and the first fixing holes and the second fixing holes are arranged alternately. The slide block fixing hole, the first fixing hole and the second fixing hole are used for connecting the guide rail slide and the guide rail piece.
[0006] In the improved device of the stainless steel plate edge milling machine, the first connecting part has a vertical part away from the groove side, the second connecting part has an inclined part away from the groove side, and the inclined part protrudes from one end of the vertical part. The vertical part and the inclined part can perform edge milling work at different angles, improving production efficiency.
[0007] In the improved device of the stainless steel plate edge milling machine, the vertical part has a first extension part near the mounting seat side, the vertical part is connected with the mounting seat through the first extension part, the inclined part has a second extension part near the mounting seat side, the inclined part is connected with the mounting seat through the second extension part, and the inclined part away from the groove side is provided with a support part connected with the mounting seat.
[0008] In the improved device of the stainless steel plate edge milling machine, the connecting assembly includes a first connecting groove arranged on the vertical part away from the groove side and a second connecting groove arranged on the inclined part near the groove side, and the first connecting groove is provided with first limiting blocks at both ends, and the second connecting groove is provided with second limiting blocks at both ends. The first limiting blocks and the second limiting blocks can ensure that the guide rail slider normally operates in the first connecting groove and the second connecting groove, thereby improving stability.
[0009] In the improved device of the stainless steel plate edge milling machine, the opening of the first connecting groove and the opening of the second connecting groove are arranged in the same direction.
[0010] In the improved device of the stainless steel plate edge milling machine, the guide rail slider is arranged in the first connecting groove and the second connecting groove, respectively.
[0011] In the improved device of the stainless steel plate edge milling machine, the length of the guide rail piece is equal to the length of the guide rail slider, and the width of the guide rail piece is equal to the width of the guide rail slider.
[0012] In the improved device of the stainless steel plate edge milling machine, the length of the guide rail slider is 800mm, the width of the guide rail slider is 90mm-125mm, and the thickness of the guide rail slider is 11.5mm-12mm.
[0013] In the improved device of the stainless steel plate edge milling machine, the guide rail piece is made of a composite material, and the guide rail slider is made of alloy structural steel. The overall strength, corrosion resistance, hardness, resistivity and thermoelectric performance can be significantly improved, the wear rate of the guide rail can be reduced, the temperature coefficient of the resistivity can be reduced, and the guide rail has better ductility, high hardness and deep drawing performance.
[0014] Compared with the prior art, the improved device of the stainless steel plate edge milling machine has the following advantages:
[0015] 1. The device installs the guide rail slider and the guide rail piece through the first connecting part and the second connecting part, so that the device can be quickly replaced after operation damage, improves production efficiency, and ensures product quality.
[0016] 2. The guide rail material of the device adopts a composite gold material, reduces the guide rail wear rate, can significantly improve the strength, corrosion resistance, hardness, resistivity and thermoelectric performance of the guide rail, and reduces the stability coefficient of the resistivity, so that the guide rail has better ductility, high hardness, corrosion resistance and deep drawing performance.
[0017] 3. The device has strong universality and is suitable for processing steel plates of various specifications and thicknesses. Whether it is a stainless steel plate or a plate of other materials, the device can be used to process the plate. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 is a structural schematic diagram of the utility model.
[0019] Figure 2 is a side view of the utility model.
[0020] Figure 3 is a structural schematic diagram of the main frame body in the utility model.
[0021] Figure 4 is a structural schematic diagram of the guide rail slider in the utility model.
[0022] In the figure: main frame body 1, mounting seat 11, groove 12, first connecting part 2, vertical part 21, first extension part 22, second connecting part 3, inclined part 31, second extension part 32, support part 33, connecting assembly 4, first connecting groove 41, second connecting groove 42, first limiting block 43, second limiting block 44, guide rail slider 5, slider fixing hole 51, first fixing hole 52, second fixing hole 53, guide rail piece 6. DETAILED DESCRIPTION
[0023] The utility model will be further explained in detail in combination with the drawings and specific embodiments.
[0024] For example, Figures 1-4As shown, an improved device of a stainless steel plate edge planer includes a main frame body 1, one side of the main frame body 1 is provided with a mounting seat 11, one side of the mounting seat 11 is provided with a first connecting part 2, one side of the first connecting part 2 is provided with a second connecting part 3, an axially extending groove 12 is arranged between the first connecting part 2 and the second connecting part 3, and a plurality of guide rail blocks 5 are arranged on one side of the first connecting part 2 away from the groove 12 and one side of the second connecting part 3 close to the groove 12 through a connecting assembly 4, and a guide rail piece 6 is connected to the guide rail blocks 5. The guide rail blocks 5 are installed in the first connecting part 2 and the second connecting part 3, and the guide rail piece 6 is fixedly connected with the guide rail blocks 5. Such a design structure can improve the straightness and ensure the accuracy of the edge planing work, so that the edge of the processed steel plate is smooth and uniform, the errors and deviations in manual operation are reduced, and the device is also suitable for processing steel plates of various specifications and thicknesses. Whether it is a stainless steel plate or other material plate, it can be used for edge planing of the plate, and has strong universality.
[0025] As shown in Figure 4 , the guide rail block 5 is in a rectangular structure, the guide rail block 5 is provided with a block fixing hole 51 at each corner, a plurality of first fixing holes 52 are arranged on one side of the guide rail block 5, and a plurality of second fixing holes 53 are arranged on the other side, and the first fixing holes 52 and the second fixing holes 53 are arranged alternately. The block fixing hole 51, the first fixing hole 52 and the second fixing hole 53 are used for connecting the guide rail block 5 with the guide rail piece 6.
[0026] As shown in Figure 1 and Figure 2 , the first connecting part 2 away from the groove 12 has a vertical part 21, the second connecting part 3 away from the groove 12 has an inclined part 31, and the inclined part 31 protrudes from one end of the vertical part 21. The vertical part 21 and the inclined part 31 can be used for edge planing at different angles, which improves the production efficiency.
[0027] Among them, the vertical part 21 close to the mounting seat 11 side is provided with a first extension part 22, the vertical part 21 is connected with the mounting seat 11 through the first extension part 22, the inclined part 31 close to the mounting seat 11 side is provided with a second extension part 32, the inclined part 31 is connected with the mounting seat 11 through the second extension part 32, and the inclined part 31 away from the groove 12 side is provided with a support part 33 connected with the mounting seat 11.
[0028] As shown in Figure 3 , the connecting assembly 4 includes a first connecting groove 41 arranged on the side of the vertical part 21 away from the groove 12 and a second connecting groove 42 arranged on the side of the inclined part 31 close to the groove 12, first limiting blocks 43 are arranged at both ends of the first connecting groove 41, and second limiting blocks 44 are arranged at both ends of the second connecting groove 42. The first limiting blocks 43 and the second limiting blocks 44 can ensure the normal operation of the guide rail blocks 5 in the first connecting groove 41 and the second connecting groove 42, thereby improving the stability.
[0029] The opening of the first connecting groove 41 is arranged in the same direction as the opening of the second connecting groove 42.
[0030] As shown in the figure, the guide rail slider 5 is arranged inside the first connecting groove 41 and the second connecting groove 42 respectively. Figure 2
[0031] The length of the guide rail piece 6 is equal to the length of the guide rail slider 5, and the width of the guide rail piece 6 is equal to the width of the guide rail slider 5.
[0032] Specifically, the length of the guide rail slider 5 is 800mm, the width of the guide rail slider 5 is 90mm-125mm, and the thickness of the guide rail slider 5 is 11.5mm-12mm.
[0033] Meanwhile, the guide rail piece 6 is made of composite metal material, and the guide rail slider 5 is made of alloy structural steel material. The overall strength, corrosion resistance, hardness, resistivity and thermoelectric performance can be significantly improved, the wear rate of the guide rail can be reduced, the temperature coefficient of the resistivity can be reduced, and the guide rail has better ductility, high hardness and deep drawing performance.
[0034] The principle of the embodiment is that:
[0035] The guide rail slider 5 is movably arranged in the first connecting groove 41 and the second connecting groove 42 respectively, and the guide rail slider 5 is connected with the guide rail piece 6 through the slider fixing hole 51, the first fixing hole 52 and the second fixing hole 53. The flexible connecting structure can conveniently fill up when the guide rail piece 6 is worn, avoid the product quality from being reduced, and the material of the guide rail piece 6 and the guide rail slider 5 can significantly improve the overall strength, corrosion resistance and thermal performance, reduce the stability coefficient of the resistivity, reduce the wear rate of the guide rail, and thus improve the production efficiency.
[0036] The specific embodiments described herein are merely illustrative of the spirit of the present application. Those skilled in the art to which the present application belongs can make various modifications or supplements to the described specific embodiments or replace them with similar ways, but will not deviate from the spirit of the present application or exceed the scope defined by the appended claims.
[0037] Although the terms of main frame body 1, mounting seat 11, groove 12, first connecting part 2, vertical part 21, first extension part 22, second connecting part 3, oblique part 31, second extension part 32, support part 33, connecting assembly 4, first connecting slot 41, second connecting slot 42, first limiting block 43, second limiting block 44, guide rail sliding block 5, sliding block fixing hole 51, first fixing hole 52, second fixing hole 53, guide rail piece 6 are used more in this article, the possibility of using other terms is not excluded. Using these terms is only for more conveniently describing and explaining the essence of the utility model; it is contrary to the spirit of the utility model to explain them as any kind of additional limitation.
Claims
1. An improved device for a stainless steel plate beveler comprising a main frame (1), characterized in that, The main frame body (1) is provided with a mounting seat (11) on one side, the mounting seat (11) is provided with a first connecting part (2) on one side, the first connecting part (2) is provided with a second connecting part (3) on one side, the first connecting part (2) and the second connecting part (3) are provided with a groove (12) extending in the axial direction, the first connecting part (2) is provided with a plurality of guide rail blocks (5) arranged in sequence on the side away from the groove (12) and the second connecting part (3) is provided with a plurality of guide rail blocks (5) arranged in sequence on the side close to the groove (12) through a connecting assembly (4), and the guide rail blocks (5) are connected with guide rail pieces (6).
2. The improvement in a stainless steel plate beveler according to claim 1 wherein, The guide rail blocks (5) are in a rectangular structure, the guide rail blocks (5) are respectively provided with sliding block fixing holes (51) at four corners, the guide rail blocks (5) are provided with a plurality of first fixing holes (52) on one side and a plurality of second fixing holes (53) on the other side, and the first fixing holes (52) and the second fixing holes (53) are staggered one by one.
3. The improvement according to claim 1 wherein, The first connecting part (2) is provided with a vertical part (21) on the side away from the groove (12), the second connecting part (3) is provided with an inclined part (31) on the side away from the groove (12), and the inclined part (31) protrudes from one end of the vertical part (21).
4. The improvement according to claim 3 wherein, The vertical part (21) is provided with a first extension part (22) on the side close to the mounting seat (11), the vertical part (21) is connected with the mounting seat (11) through the first extension part (22), the inclined part (31) is provided with a second extension part (32) on the side close to the mounting seat (11), the inclined part (31) is connected with the mounting seat (11) through the second extension part (32), and the inclined part (31) is provided with a support part (33) connected with the mounting seat (11) on the side away from the groove (12).
5. An improved apparatus for a stainless steel plate beveler as claimed in claim 2 or 3 or 4 wherein, The connecting assembly (4) comprises a first connecting groove (41) arranged on the side away from the groove (12) of the vertical part (21) and a second connecting groove (42) arranged on the side close to the groove (12) of the inclined part (31), the first connecting groove (41) is respectively provided with first limiting blocks (43) at both ends, and the second connecting groove (42) is respectively provided with second limiting blocks (44) at both ends.
6. In a stainless steel edger as defined in claim 5, the improvement wherein, The opening of the first connecting groove (41) and the opening of the second connecting groove (42) are arranged in the same direction.
7. The improvement according to claim 5 wherein, The guide rail blocks (5) are arranged in the first connecting groove (41) and the second connecting groove (42) respectively.
8. The improvement according to claim 1 wherein, The length of the guide rail piece (6) is equal to the length of the guide rail block (5), and the width of the guide rail piece (6) is equal to the width of the guide rail block (5).
9. The improvement according to claim 1 wherein, The length of the guide rail block (5) is 800mm, the width of the guide rail block (5) is 90mm-125mm, and the thickness of the guide rail block (5) is 11.5mm-12mm.
10. The improvement in a stainless steel plate beveler according to claim 1 wherein, The guide rail piece (6) is made of a composite metal material, and the guide rail block (5) is made of an alloy structural steel material.