CN211516101U - Turning tool for turning wheel - Google Patents

Turning tool for turning wheel Download PDF

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Publication number
CN211516101U
CN211516101U CN201921555284.5U CN201921555284U CN211516101U CN 211516101 U CN211516101 U CN 211516101U CN 201921555284 U CN201921555284 U CN 201921555284U CN 211516101 U CN211516101 U CN 211516101U
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chip breaking
chip
protrusion
turning tool
wheel
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CN201921555284.5U
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徐龙
钱玉柱
温晓宁
李军旗
蒋益民
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Shenzhen Fulian Jingjiang Technology Co ltd
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Shenzhen Jingjiang Yunchuang Technology Co Ltd
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Abstract

The utility model provides a wheel turning tool that heavily drives for carrying out the wheel to wheel, includes the cutter body and the shaping in the cutting edge of the terminal surface of cutter body and lateral wall juncture, the terminal surface of cutter body is close to the cutting edge has seted up the chip breaker, protruding at least four rectangular shape chip breaking arch that are equipped with in the chip breaker, a distance and not parallel to each other are separated each other to four rectangular shape chip breaking arch, the bellied extending direction of chip breaking with the cutting edge is crossing. The utility model discloses a wheel is turned lathe tool again and is equipped with four at least chip-breaking archs on the bottom surface of chip-breaking groove to produced smear metal can smoothly discharge in making the course of working, effectively avoids the smear metal winding and influences workpiece surface quality and machining stability.

Description

Turning tool for turning wheel
Technical Field
The utility model relates to a railway locomotive processing field of restoreing especially relates to a wheel turning tool that heavily drives to rail wheel.
Background
Along with the development of national economy, high-speed trains are gradually popularized, in order to meet the development requirements of high speed and heavy load of railways in China, the requirements on the performance of the structural materials of parts of railway locomotives and corresponding equipment are higher and higher, and various novel and high-performance engineering materials are widely applied, such as: high strength steels, ultra high strength steels, high manganese steels, hardened steels, wear resistant alloyed cast irons, stainless steels, superalloys, high melting point materials, and other specialty materials are increasingly used in modern production.
With the continuous speed increase of railways in China, after a high-speed rail runs for a certain distance, various abrasion of wheels can occur, and the wheel rim and the tread have the problems of deformation and the like.
To ensure wheel balance, tolerances on the outer diameter of the wheel are tighter. Therefore, the frequency of a demand for a heavy load on a wheel of a high-speed train used for a certain period of time is very high. In view of the specific material and specific profile requirements of the railway wheel, the turning tool for re-turning the wheel is different from a common turning tool, and has specific requirements.
Because the removal amount of the heavy vehicle is increased, the precision requirement on the size of the wheel is high, and the heavy vehicle cutter needs to have good cutting capability simultaneously to smooth chip removal capability in order to ensure that the heavy vehicle meets the use requirement. The existing turning tool for the heavy turning of the railway wheel has a small cutting range and low efficiency during processing; if the cutting range is enlarged on the existing turning tool, the problems of unsmooth chip removal and easy breakage are caused.
SUMMERY OF THE UTILITY MODEL
In view of the above, the present invention provides a turning tool for turning a wheel, which can overcome the above problems.
The utility model provides a wheel turning tool that heavily drives for carrying out the wheel to wheel, includes the cutter body and the shaping in the cutting edge of the terminal surface of cutter body and lateral wall juncture, the terminal surface of cutter body is close to the cutting edge has seted up the chip breaker, protruding at least four rectangular shape chip breaking arch that are equipped with in the chip breaker, a distance and not parallel to each other are separated each other to four rectangular shape chip breaking arch, the bellied extending direction of chip breaking with the cutting edge is crossing.
The utility model discloses a wheel is turned lathe tool again and is equipped with four at least chip-breaking archs on the bottom surface of chip-breaking groove to produced smear metal can smoothly discharge in making the course of working, effectively avoids the smear metal winding and influences workpiece surface quality and machining stability.
Drawings
Fig. 1 is a schematic perspective view of a turning tool for turning a wheel according to an embodiment of the present invention.
Fig. 2 is a schematic view of an end face of the wheel turning tool of fig. 1.
Fig. 3 is a cross-sectional view of the wheel turning tool of fig. 1 taken along III-III.
Fig. 4 is an enlarged schematic view of a portion IV of the wheel turning tool shown in fig. 3.
Fig. 5 is a side view of the wheel turning tool of fig. 1.
Description of the main elements
Figure BDA0002205021600000031
Figure BDA0002205021600000041
The following detailed description of the invention will be further described in conjunction with the above-identified drawings.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When a component is referred to as being "connected" to another component, it can be directly connected to the other component or intervening components may also be present. When a component is referred to as being "disposed on" another component, it can be directly on the other component or intervening components may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
Referring to fig. 1, one embodiment of the present invention provides a turning tool 100 for turning a wheel. The wheel turning tool 100 is capable of performing a turning finish on a wheel, particularly a wheel of a high-speed train. The turning tool 100 for turning a wheel includes a tool body 10 and a cutting blade 20 formed on one end surface of the tool body 10.
The turning tool 100 for a wheel lathe is made of hard materials such as cemented carbide such as tungsten-cobalt alloy, Polycrystalline Diamond (PCD), Chemical vapor deposition Diamond (CVD), monocrystalline Diamond (MCD), Polycrystalline Cubic Boron Nitride (PCBN), ceramic, and high-speed steel.
The cutter body 10 is in the form of a block. The cross-section of the cutter body 10 is a chamfered rectangle. The side wall of the cutter body 10 is provided with a mounting hole 15 at a substantially central position thereof for fixing the turning tool 100 to a tool holder (not shown) in use.
Referring to fig. 2, the end surface of the cutter body 10 is provided with a chip breaker 11. The cutting edge 20 is formed at the boundary between the end surface of the cutter body 10 and the side wall of the cutter body 10. The chip breaker 11 is adjacent to the cutting edge 20.
The cutting edge 20 includes a circular edge 21 and a straight edge 22 located at a chamfer of the end surface of the cutter body 10.
As shown in fig. 5, the cutting edges of the circular-arc blade 21 and the straight-edge blade 22 are at the same height.
In one embodiment, the turning tool 100 includes four circular blades 21 and four straight blades 22 sequentially connecting the four circular blades 21.
The chip breaker 11 is provided with a boss 12 and a chip breaker bulge 13 protruding inwards.
Referring to fig. 2 to 4, the bosses 12 are symmetrically arranged along the symmetry axis a of the end surface of the cutter body 10. The boss 12 includes a top surface 121 and a chip breaking surface 122. The top surface 121 is a flat surface, the chip breaking surfaces 122 are disposed toward the side walls of the tool body 10, and the chip breaking surfaces 122 connect the top surface 121 and the bottom surfaces 111 of the chip breakers 11. The bottom surface 111 of the chip breaker 11 is gradually inclined downward from its peripheral edge in the direction toward the chip breaker surface 122. Further, the chip breaking surface 122 is a concave curved surface to further curl the chips to break the chips.
The chip breaking protrusion 13 is provided between the edge of the chip breaker 11 and the chip breaking surface 122 in a substantially elongated shape, and includes a base surface 135. The base surface 135 is connected to the bottom surface 111. The chip-breaking protrusions 13 comprise at least four protrusions for chip breaking. The chip-breaking protrusions 13 are spaced apart from each other by a distance and are not parallel to each other, and the extension direction of the chip-breaking protrusions 13 intersects the cutting edge 20. In the present embodiment, the chip-breaking protrusion 13 includes a first chip-breaking protrusion 131, a second chip-breaking protrusion 132, a third chip-breaking protrusion 133, and a fourth chip-breaking protrusion 134. The first, second, third and fourth chip-breaking protrusions 131, 132, 133 and 134 extend from the chip-breaking surface 122 in the direction of the cutting edge 20. The extension directions of the first chip-breaking protrusion 131 and the second chip-breaking protrusion 132 intersect with the circular-arc edge 21. The directions of extension of the third chip-breaking protrusions 133 and the fourth chip-breaking protrusions 134 intersect with the straight edge 22. The included angles α 1, α 2, α 3, α 4 between the extending directions of the first, second, third and fourth chip breaking protrusions 131, 132, 133 and 134 and the symmetry axis a of the end surface of the cutter body 10 are respectively 38-48 °, 53-63 °, 70-80 ° and 85-95 °, preferably, the included angles α 1, α 2, α 3, α 4 are respectively 43 °, 58 °, 75 ° and 90 °.
In one embodiment, the cross-sectional profile of the chip-breaking protrusion 13 in the extending direction is an irregular arc, and the vertical distance between the base surface 135 of the chip-breaking protrusion 13 and the bottom surface 111 gradually increases and then gradually decreases in the direction toward the chip-breaking surface 122.
In one embodiment, the highest point of the chip-breaking projection 13 is higher than the edge of the cutting edge 20. The height difference between the highest point of the base surface 135 of the chip-breaking protrusion 13 and the cutting edge of the cutting edge 20 is 0.02 mm.
In the present embodiment, the top surface 121 and the chip breaking surface 122 form a boss 12, but it should be understood that in other embodiments, the chip breaking surface 122 may be formed by protruding in the chip breaking groove 11.
The utility model discloses a wheel is turned lathe tool 100 again and is equipped with chip breaker face 122 on chip breaker 11's bottom surface 111, and the interval is equipped with four chip breaker archs 13 around chip breaker face 122 to the smear metal that makes produced different thickness, length in the course of working is discharged along controllable direction, effectively avoids the smear metal winding and influences workpiece surface quality and processing stability. The chip breaker surface 122 can limit the direction in which the chips are discharged during machining. In addition, the chip breaking surface 122 is a concave curved surface, and the bottom surface 111 of the chip breaking groove 11 is concave inward in the direction toward the chip breaking surface 122, so that the bottom surface 111 and the chip breaking surface 122 form a substantially V-shaped groove, thereby facilitating the curling of chips, realizing the chip breaking, and ensuring the chip accommodating space of the chip breaking groove 11. The design that the arc blade 21 and the straight edge 22 have the same height does not have height difference, so that when the wheel is turned again, the feed is smoother when the inclined cross lathe tool cuts, and stable chip removal can be realized by combining the four chip breaking protrusions 13 with different angles. In addition, the section of the chip breaking protrusion 13 of the chip breaker 11 is in an irregular arc shape, and the highest point of the chip breaking protrusion 13 is higher than the cutting edge, so that chips generated during machining can be fully curled under the guidance of the chip breaking protrusion 13 and can be quickly discharged from the direction beneficial to discharging, the friction period between the chips and the wheel turning tool is shortened, the heat conduction is reduced, the cutting temperature is reduced, and the service life of the wheel turning tool 100 is prolonged.
In addition, other changes may be made by those skilled in the art without departing from the spirit of the invention, and it is intended that all such changes be considered within the scope of the invention as hereinafter claimed.

Claims (13)

1. The utility model provides a wheel lathe tool of turning heavily for carry out the heavy car to the wheel, its characterized in that: the chip breaker is characterized by comprising a cutter body and a cutting edge formed at the junction of the end surface and the side wall of the cutter body, wherein the end surface of the cutter body is adjacent to the cutting edge and is provided with a chip breaker groove, at least four long-strip-shaped chip breaking protrusions are convexly arranged in the chip breaker groove, the at least four long-strip-shaped chip breaking protrusions are spaced at a certain distance and are not parallel to each other, and the extension direction of the chip breaking protrusions is intersected with the cutting edge.
2. The wheel turning tool of claim 1, wherein: the chip breaker is characterized in that a chip breaking surface is further convexly arranged in the chip breaker, the chip breaking surface faces the side wall of the cutter body, the chip breaking protrusion comprises a first chip breaking protrusion, a second chip breaking protrusion, a third chip breaking protrusion and a fourth chip breaking protrusion, and the first chip breaking protrusion, the second chip breaking protrusion, the third chip breaking protrusion and the fourth chip breaking protrusion are respectively convexly arranged between the edge of the chip breaker and the chip breaking surface.
3. The wheel turning tool of claim 2, wherein: the extension directions of the first chip breaking protrusion, the second chip breaking protrusion, the third chip breaking protrusion and the fourth chip breaking protrusion form included angles with a symmetrical axis of the end face of the cutter body, and the included angles are respectively 38-48 degrees, 53-63 degrees, 70-80 degrees and 85-95 degrees.
4. The wheel turning tool of claim 3, wherein: the included angles between the extension directions of the first chip breaking protrusion, the second chip breaking protrusion, the third chip breaking protrusion and the fourth chip breaking protrusion and the symmetrical axis of the end face of the cutter body are 43 degrees, 58 degrees, 75 degrees and 90 degrees respectively.
5. The wheel turning tool of claim 2, wherein: the bottom surface of the chip breaking groove is gradually inclined downwards from the periphery of the chip breaking groove along the direction of the chip breaking surface.
6. The wheel turning tool of claim 2, wherein: the chip breaking surface is a concave curved surface.
7. The wheel turning tool of claim 1, wherein: the cutting edge comprises an arc edge and a straight edge which are positioned at the chamfer angle of the end surface of the cutter body.
8. The wheel turning tool of claim 7, wherein: the at least four strip-shaped chip breaking bulges comprise at least two chip breaking bulges with the extension directions intersected with the arc blade.
9. The wheel turning tool of claim 7, wherein: the at least four strip-shaped chip breaking bulges comprise at least two chip breaking bulges with the extension directions intersected with the straight edge.
10. The wheel turning tool of claim 7, wherein: the cutting edges of the circular arc edge and the straight edge are positioned at the same height.
11. The wheel turning tool of claim 1, wherein: the cross section outline of the extending direction of the chip breaking bulge is arc-shaped.
12. The wheel turning tool of claim 1, wherein: the highest point of the chip breaking protrusion is higher than the cutting edge of the cutting edge.
13. The wheel turning tool of claim 12, wherein: the height difference between the highest point of the chip breaking protrusion and the cutting edge of the cutting edge is 0.02 mm.
CN201921555284.5U 2019-09-17 2019-09-17 Turning tool for turning wheel Active CN211516101U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110605412A (en) * 2019-09-17 2019-12-24 深圳精匠云创科技有限公司 Turning tool for turning wheel

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110605412A (en) * 2019-09-17 2019-12-24 深圳精匠云创科技有限公司 Turning tool for turning wheel

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Address after: 518109, 1st Floor, Building B3, Foxconn Industrial Park, No. 2 East Ring 2nd Road, Fukang Community, Longhua Street, Longhua District, Shenzhen City, Guangdong Province

Patentee after: Shenzhen Fulian Jingjiang Technology Co.,Ltd.

Address before: 518109 Zone A and Zone 1 of Foxconn Science Park Zone D1 Plastic Mould Factory, No.2 East Ring Road, Longhua Street, Longhua District, Shenzhen City, Guangdong Province

Patentee before: SHENZHEN JINGJIANG YUNCHUANG TECHNOLOGY Co.,Ltd.

CP03 Change of name, title or address