WO2022027236A1 - Fraise à haute vitesse - Google Patents

Fraise à haute vitesse Download PDF

Info

Publication number
WO2022027236A1
WO2022027236A1 PCT/CN2020/106836 CN2020106836W WO2022027236A1 WO 2022027236 A1 WO2022027236 A1 WO 2022027236A1 CN 2020106836 W CN2020106836 W CN 2020106836W WO 2022027236 A1 WO2022027236 A1 WO 2022027236A1
Authority
WO
WIPO (PCT)
Prior art keywords
tool
tool holder
driving screw
cutter
tangential
Prior art date
Application number
PCT/CN2020/106836
Other languages
English (en)
Chinese (zh)
Inventor
仵永博
肖旭凯
高江雄
陈胜男
Original Assignee
株洲华锐精密工具股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 株洲华锐精密工具股份有限公司 filed Critical 株洲华锐精密工具股份有限公司
Priority to PCT/CN2020/106836 priority Critical patent/WO2022027236A1/fr
Publication of WO2022027236A1 publication Critical patent/WO2022027236A1/fr

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23CMILLING
    • B23C5/00Milling-cutters
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23CMILLING
    • B23C5/00Milling-cutters
    • B23C5/02Milling-cutters characterised by the shape of the cutter
    • B23C5/08Disc-type cutters
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23CMILLING
    • B23C5/00Milling-cutters
    • B23C5/16Milling-cutters characterised by physical features other than shape
    • B23C5/18Milling-cutters characterised by physical features other than shape with permanently-fixed cutter-bits or teeth

Definitions

  • the invention relates to the technical field of milling tools, in particular to a high-speed milling tool.
  • each cutting unit includes the following structures: a cutting tool holder, a pressing unit and an adjusting unit; in order to ensure the cutting effect of the tool, such tools are used before machining. It is necessary to adjust the axial height of each tool holder to ensure the accuracy.
  • the adjustment sequence is: 1. The adjustment unit roughly adjusts the cutting tool holder to the initial predetermined height; 2. The pressing unit preloads; 3. The adjustment unit precisely adjusts the cutting tool holder to the final height. height; 4. The pressing unit is finally pressed; for example, patents CN101505895A, CN1929945A, CN200980159145.3, WO2004087358A2 show such tools.
  • the structure of this kind of tool is complex.
  • the cutting tool holder, the pressing unit and the adjusting unit are independent components, which are assembled in the tool groove through a specific assembly relationship, and are prone to loosening during high-speed cutting; at the same time, in order to ensure When the tool body rotates at a high speed, it can provide a reliable enough pressing force for the tool holder.
  • the pressing unit needs to be strong enough or complex, so it is often set to a larger size.
  • the matching tool holder or tool body needs to be Provide enough space to accommodate the pressing unit, which will often weaken the strength of the tool holder or the tool body, occupy the limited space of the tool body, and reduce the cutting effect and life of the tool; under the existing technical conditions, the pressing unit must be Preloading, the operation steps are complicated, and the adjustment takes a long time; at the same time, this kind of tool can only be adjusted in one direction. When the adjustment height exceeds the predetermined height, it cannot be recalled, and the tool holder can only be released to the initial position and readjusted.
  • the adjustment time will be prolonged; at the same time, in order to ensure the stability of preload and compression, a special torque wrench is often required, and the adjustment method is complicated; when the tool rotates at high speed, the assembly will loosen or the compression structure will fail due to cutting vibration.
  • the clamping, pressing unit and adjusting unit may fly out of the cutter body under the action of centrifugal force.
  • the present invention provides a high-speed milling tool, which aims to solve the problems of complex structure of the existing tool, long adjustment time, unstable structure of high-speed rotation of the tool, and the like.
  • an embodiment of the present invention provides a high-speed milling tool, comprising:
  • the cutter body is a disc-shaped cutter body, and a plurality of cutter grooves are arranged on the cutter body, and the cutter grooves are used for installing a cutting unit;
  • the cutting unit includes a cutter holder and a driving screw; each of the The tool groove is composed of the tool groove axial surface, the tool groove radial surface, the tool groove first tangential surface and the tool groove second tangential surface, and each of the tool holders is provided with a tool holder axial surface, a tool holder The radial surface, the first tangential surface of the tool holder and the second tangential surface of the tool holder; the axial surface of the tool slot, the radial surface of the tool slot, the first tangential surface of the tool slot and the second tangential surface of the tool slot are respectively It is arranged opposite to the axial surface of the tool holder, the radial surface of the tool holder, the first tangential surface of the tool holder and the second tangential surface of the tool holder;
  • the first tangential surface of the tool holder and the second tangential surface of the tool holder are oppositely arranged and mutually inclined to form an acute angle a, the acute angle a shrinks toward the tool installation end face, and opens in the direction toward the tool cutting end face; the cutter
  • the clip is divided into a fixed part and an elastic part by at least one slit.
  • the fixing part is provided with a driving screw hole, and the tool holder cooperates with the driving screw hole through the driving screw and faces the cutting end face of the tool or the installation end face of the tool along the first tangential direction of the tool groove sports.
  • the driving screw hole is opened toward the cutting end face of the tool, and the axis of the driving screw hole is parallel to the first tangential plane of the tool holder.
  • first tangential surface of the sipe and the second tangential surface of the sipe are parallel to each other.
  • a knife groove driving screw hole is opened on the axial surface of the knife groove, the axis of the knife groove driving screw hole is parallel to the first tangential plane of the knife groove, and the axis of the driving screw hole is parallel to the knife groove.
  • the first tangential plane of the clip is parallel, and the driving screw drives the tool holder through the driving screw hole and the knife groove driving screw hole.
  • the driving screw is a double-ended screw, and both ends of the driving screw are provided with operation holes.
  • the middle diameter of the head of the driving screw is smaller than the middle diameter of the tail of the driving screw
  • the middle diameter of the driving screw hole is smaller than the middle diameter of the driving screw hole of the knife groove
  • the head of the driving screw It is used for matching with the driving screw hole
  • the tail of the driving screw is used for matching with the driving screw hole of the knife groove.
  • first tangential surface of the tool groove and the first tangential surface of the tool holder are provided with protrusions and depressions that cooperate with each other.
  • the second tangential surface of the knife groove and the second tangential surface of the tool holder are provided with protrusions and depressions that cooperate with each other.
  • the cutting unit further includes an auxiliary compression screw, the auxiliary compression screw is a countersunk head screw, and both ends of the auxiliary compression screw are provided with compression operation holes.
  • auxiliary screw holes with countersunk head structure are opened on the second tangential surface of the knife groove, and the countersunk head of the auxiliary screw hole is opened on the side close to the second tangential surface of the knife groove, and the auxiliary screw hole is provided with a countersunk head structure.
  • a tightening screw is arranged in the auxiliary screw hole.
  • the second tangential surface of the tool holder is provided with a depressed pressing surface, and the pressing surface is concave in the direction toward the first tangential surface of the tool holder relative to the second tangential surface of the tool holder, so When the tool holder is installed in the tool groove, the end face of the countersunk head end of the auxiliary pressing screw abuts against the pressing surface.
  • the structure of the present invention is simple. Because the tool holder has the ability to elastically deform, it has the function of self-compression and shares the pressing force of the compression screw. Therefore, the auxiliary compression screw can be of smaller size and does not occupy the knife. The body space will not reduce the strength of the cutter body; the drive screw also undertakes the functions of self-compression of the drive tool holder and adjustment of the height of the tool holder, and the entire cutting unit has a compact and simple structure;
  • the adjustment of the present invention is convenient, wherein the tool holder has a self-compression function.
  • the tool holder When the tool holder is pressed under the drive of the driving screw, the tool holder is already in a pre-compressed state, and no additional pre-tightening is required;
  • the deformation of the tool holder When it is completely in the tool groove, the deformation of the tool holder is fixed, the pre-tightening force of the tool holder is stable, and no additional torque wrench is required; at the same time, the drive screw can drive the tool holder to adjust in both directions, which is convenient for adjustment;
  • All the components of the present invention are located inside the cutter body, which can prevent flying out, so that the cutter can adopt a higher rotational speed, which helps to improve the cutting efficiency; when the cutter holder is pressed in the cutter groove, the cutter holder is the first
  • the protrusions and depressions on the tangential plane and the second tangential plane are in close contact with the protrusions and depressions on the first tangential plane and the second tangential plane of the knife groove, respectively, which is equivalent to "stuck" the tool holder in the knife body.
  • the centrifugal force generated by the high-speed rotation of the tool is borne by the cutter body; at the same time, the countersunk head-shaped auxiliary compression screw is also located inside the cutter body, and the countersunk head structure prevents it from flying out of the cutter body;
  • the elastic part of the tool holder of the present invention can provide a component force towards the cutting end face of the tool, eliminate the gap between the driving screw thread and the thread of the tool holder matched with it, and make the adjustment more stable; at the same time, the elastic part of the tool holder can provide similar
  • the "damping" effect reduces the tiny vibration of the tool holder during cutting and increases the tool life.
  • Fig. 1 is the structural representation of the high-speed milling cutter of the present invention
  • Fig. 2 is the schematic diagram of the tool holder structure of the high-speed milling cutter of the present invention
  • Fig. 3 is the side view of the tool holder of the high-speed milling cutter of the present invention.
  • Fig. 4 is the front view of the tool holder of the high-speed milling cutter of the present invention.
  • Fig. 5 is the top view of the tool holder of the high-speed milling tool of the present invention.
  • FIG. 6 is a top view A-A sectional view of the tool holder of the high-speed milling tool of the present invention.
  • FIG. 7 is a schematic diagram of the sipe structure of the high-speed milling cutter of the present invention.
  • FIG. 8 is a schematic diagram of the high-speed milling cutter of the present invention before tool assembly
  • Fig. 9 is the schematic diagram after the cutter of the high-speed milling cutter of the present invention is assembled.
  • FIG. 10 is a cross-sectional view of the sipe assembly of the high-speed milling cutter of the present invention.
  • FIG. 11 is a cross-sectional view of a kerf of a high-speed milling tool of the present invention.
  • Figure 12 is a schematic diagram of the drive screw structure of the high-speed milling cutter of the present invention.
  • FIG. 13 is a schematic structural diagram of an auxiliary compression screw of a high-speed milling cutter of the present invention.
  • FIG. 14 is a schematic diagram of the tool holder structure of the high-speed milling tool according to Embodiment 2 of the present invention.
  • Fig. 15 is the front view of the tool holder of the high-speed milling tool of Embodiment 2 of the present invention.
  • FIG. 16 is a schematic diagram of the tool holder structure of the high-speed milling tool according to Embodiment 3 of the present invention.
  • FIG. 17 is a top view of the tool holder of the high-speed milling tool according to the third embodiment of the present invention.
  • the present invention provides a high-speed milling tool in order to solve the problems of complex structure of the existing tool, long adjustment time, unstable structure of the high-speed rotation of the tool and the like.
  • an embodiment of the present invention provides a high-speed milling cutter, including: a cutter body 1, the cutter body 1 is a disc-shaped cutter body, and a plurality of cutters are arranged on the cutter body 1 Slot 1a, the tool slot 1a is used to install the cutting unit; the cutting unit includes a tool holder 2, a driving screw 3 and an auxiliary pressing screw 4; The groove radial surface 12, the first tangential surface 13 of the tool groove and the second tangential surface 14 of the tool groove are formed.
  • Each of the tool holders 2 is provided with a tool holder axial surface 21, a tool holder radial surface 22, a tool holder
  • the first tangential surface 23 of the clip and the second tangential surface 24 of the tool holder; the axial surface 11 of the slot, the radial surface 12 of the slot, the first tangential surface 13 of the slot and the second tangential surface 14 of the slot They are respectively arranged opposite to the axial surface 21 of the tool holder, the radial surface 22 of the tool holder, the first tangential surface 23 of the tool holder and the second tangential surface 24 of the tool holder; the first tangential surface 23 of the tool holder and the The second tangential faces 24 of the clip are arranged opposite each other and are inclined to each other to form an acute angle a, the acute angle a shrinks towards the tool mounting end face P2, and opens in the direction towards the tool cutting end face P1; the tool holder 2 is formed by at least one slit 25 It is divided into a fixed part 26 and an
  • the opening of the slit 25 faces the cutting end face P1 of the tool, and the slit 25 penetrates the tool holder 2 in the direction toward the radial surface 22 of the tool holder.
  • the driving screw holes 29 are opened toward the cutting end face P1 of the tool, and the driving screw holes 29 are parallel to the first tangential surface 23 of the tool holder.
  • the first tangential surface 13 of the sipe and the second tangential surface 14 of the sipe are parallel to each other.
  • the first tangential surface 23 of the tool holder is parallel to the first tangential surface 13 of the tool slot and the second tangential surface 14 of the tool slot.
  • the axial surface 11 of the knife groove is provided with a knife groove driving screw hole 15, and the axis of the knife groove driving screw hole 15 is parallel to the first tangential surface 13 of the knife groove.
  • the shaft is parallel to the first tangential surface 23 of the tool holder, and the driving screw 3 drives the tool holder 2 through the driving screw hole 29 and the tool slot driving screw hole 15 . .
  • the driving screw 3 is a double-headed screw, the middle diameter of the head 31 of the driving screw is smaller than the middle diameter of the tail 32 of the driving screw, and the middle diameter of the driving screw hole 29 The diameter is smaller than the middle diameter of the kerf driving screw hole 15; the head 31 of the driving screw is used to cooperate with the driving screw hole 29, and the tail part 32 of the driving screw is used to cooperate with the kerf driving screw hole 15 fits.
  • both ends of the driving screw 3 are provided with operating holes 33 .
  • the driving screw hole 29 is a through hole
  • the driving screw hole 29 is parallel to the first tangential surface 23 of the tool holder
  • the thread of the driving screw hole 29 is parallel to the first tangential surface 23 of the tool holder.
  • the opening faces the cutting end face P1 of the tool
  • the sipe driving screw hole 15 is parallel to the first tangential surface 13 of the sipe
  • the sipe driving screw hole 15 is a through hole, which is convenient for installing the tool from the end face P2.
  • the driving screw 3 is a double-headed screw, and both ends of the driving screw 3 are provided with the operating holes 33, the head 31 of the driving screw is installed in the driving screw hole 29,
  • the tail portion 32 of the driving screw is installed in the driving screw hole 15 of the knife groove, so the driving screw 3 can be operated from the upper and lower directions, and realize bidirectional movement, which makes the tool adjustment more convenient and fast;
  • the pitch diameter of the head portion 31 of the driving screw is smaller than the pitch diameter of the tail portion 32, so during high-speed machining, the tail portion 32 of the driving screw 3 will have higher strength to resist lateral shear force, and at the same time, the driving screw 3 can be
  • the centrifugal force received is converted to the cutter body 1 and prevents the cutter holder 2 from flying out of the cutter groove 1a, thereby further improving the anti-flying capability.
  • the first tangential surface 13 of the knife groove and the first tangential surface 23 of the tool holder are provided with protrusions and depressions that cooperate with each other, and the second tangential surface of the knife groove
  • the facing surface 14 and the second tangential surface 24 of the tool holder are provided with mutually matched protrusions and recesses.
  • the protrusions and the recesses are arranged as serrations that can cooperate with each other;
  • the holes 29 are parallel, and at least one of the serrations disposed on the first tangential surface 13 of the sipe is parallel to the driving screw hole 15 of the sipe.
  • the lower part can be smoothly compressed or released in the kerf 1a; at the same time, it is also ensured that the cutting portion 28 will not deflect in the kerf 1a, thereby improving the accuracy of the product; the tool holder 2 is pressed In the tight state, it is restricted by the sawtooth and cannot move laterally, so it is fixed in the tool groove 1a.
  • the centrifugal force generated by the tool holder 2 when the tool rotates at high speed is borne by the tool body 1, which not only ensures the The tool holder 2 will not fly out of the tool groove 1a, and at the same time share the centrifugal force received by the driving screw 3 to prevent it from flying out of the tool body 1.
  • the auxiliary pressing screw 4 is a countersunk head screw, and pressing operation holes 41 are formed at both ends of the auxiliary pressing screw 4 .
  • the auxiliary screw hole 16 with a countersunk head structure is opened on the second tangential surface 14 of the knife groove, and the countersunk head 16a of the auxiliary screw hole 16 is opened on the side close to the second tangential surface 14 of the knife groove , the auxiliary pressing screw 4 is arranged in the auxiliary screw hole 16 .
  • the second tangential surface 24 of the tool holder is provided with a depressed pressing surface 24a.
  • the end face of the countersunk end 43 of the auxiliary pressing screw 4 abuts against against the pressing surface 24a; the pressing surface 24a is concave relative to the second tangential surface 24 of the tool holder in the direction toward the first tangential surface 23 of the tool holder, and the tool holder is mounted on the
  • the end face of the countersunk end of the auxiliary pressing screw abuts against the pressing face.
  • the countersunk head screw hole 16 is formed on the second tangential surface 14 of the sipe, and the countersunk head 16a is arranged in a direction close to the second tangential direction of the sipe face 14 side;
  • the auxiliary compression screw 4 is a countersunk head screw, the threaded section 42 of the auxiliary compression screw 4 is arranged in the countersunk head screw hole 16, and the countersunk head end of the auxiliary compression screw 4 43
  • the end face abuts on the pressing surface 24a; when installing, first install the auxiliary pressing screw 4 from the inside of the knife groove 1a into the countersunk head screw hole 16, after installing the knife holder 2 , and then rotate the other pressing operation hole 41 of the auxiliary pressing screw 4 from the outside of the cutter body 1 to make the end face of the countersunk end 43 press against the pressing surface 24a of the tool holder 2;
  • the pressing effect on the tool holder 2 is enhanced.
  • the other hand the pressing effect on the tool holder 2 is enhanced.
  • the other hand the other hand
  • the cutter body 1 is composed of two kinds of metal materials, and the cutter body 1 includes an aluminum alloy inner ring and a steel outer ring.
  • Embodiment 2 of the present invention provides a high-speed milling cutter, comprising: a cutter body 1 , the cutter body 1 is a disc-shaped cutter body, and a plurality of cutter bodies are evenly arranged on the cutter body 1
  • the tool groove 1a is used to install the cutting unit; the cutting unit includes the tool holder 2, the driving screw 3 and the auxiliary pressing screw 4;
  • the radial surface 12 of the tool slot, the first tangential surface 13 of the tool slot and the second tangential surface 14 of the tool slot are formed.
  • the first tangential surface 23 of the tool holder and the second tangential surface 24 of the tool holder; the axial surface 11 of the tool slot, the radial surface of the tool slot 12, the first tangential surface of the tool slot 13 and the second tangential surface of the tool slot 14 are respectively arranged opposite to the axial surface 21 of the tool holder, the radial surface 22 of the tool holder, the first tangential surface 23 of the tool holder and the second tangential surface 24 of the tool holder; the first tangential surface 23 of the tool holder and the The second tangential surfaces 24 of the tool holder are oppositely arranged and mutually inclined to form an acute angle a, the acute angle a shrinks toward the tool mounting end face P2, and opens in the direction toward the tool cutting end face P1; the tool holder 2 is formed by the slit 25 and The second slit 25a is divided into a fixed part 26 and an elastic part 27, the fixed part 26 is provided with a cutting part 28, the first tangential surface 23 of the tool holder
  • the openings of the slits 25 and the second slits 25a face the tool cutting end face P1 and the tool mounting end face P2, respectively, and the slits 25 and the second slits 25a penetrate through the tool holder in the direction toward the radial surface 22 of the tool holder. Describe the tool holder 2.
  • Embodiment 3 of the present invention provides a high-speed milling cutter, comprising: a cutter body 1 , the cutter body 1 is a disc-shaped cutter body, and a plurality of Each of the chisel grooves 1a is used to install the cutting unit; the cutting unit includes a tool holder 2, a driving screw 3 and an auxiliary pressing screw 4; , the radial surface 12 of the tool slot, the first tangential surface 13 of the tool slot and the second tangential surface 14 of the tool slot, each of the tool holders 2 is provided with a tool holder axial surface 21, a tool holder radial surface 22 , the first tangential surface 23 of the tool holder and the second tangential surface 24 of the tool holder; the axial surface 11 of the tool slot, the radial surface 12 of the tool slot, the first tangential surface 13 of the tool slot and the second tangential surface of the tool slot
  • the surfaces 14 are respectively arranged opposite to the axial surface 21 of the
  • the fixed portion 26 is provided with a cutting portion 28, and the first tangential surface 23 of the tool holder is provided on the The fixing part 26, the second tangential surface 24 of the tool holder is arranged on the elastic part 27; the fixing part 26 is provided with a driving screw hole 29, and the tool holder 2 is connected with the driving screw through the driving screw 3.
  • the hole 29 is adapted to move along the first tangential surface 13 of the sipe in the direction of the tool cutting end face or the tool mounting end face in the sipe 1a.
  • the first longitudinal slit 25c and the second longitudinal slit 25d penetrate the tool holder 2 in the direction toward the tool holder axial surface 21, and the opening directions of the first longitudinal slit 25c and the second longitudinal slit 25d are opposite.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Milling Processes (AREA)

Abstract

Une fraise à haute vitesse, comprenant un corps de fraise (1), une rainure de fraise (1a), un support de fraise (2), une vis d'entraînement (3) et une vis de compression auxiliaire (4), est divulguée. La rainure de fraise (1a) comprend une face axiale de rainure de fraise (11), une face radiale de rainure de fraise (12), une première face tangentielle de rainure de fraise (13) et une seconde face tangentielle de rainure de fraise (14) ; le support de fraise (2) comprend une face axiale de support de fraise (21), une face radiale de support de fraise (22), une première face tangentielle de support de fraise (23) et une seconde face tangentielle de support de fraise (24) ; la première face tangentielle de support de fraise (23) et la seconde face tangentielle de support de fraise (24) sont agencées de façon opposée et inclinées l'une par rapport à l'autre pour former un angle aigu a ; le support de fraise (2) est divisé en une partie fixe (26) et en une partie élastique (27) par au moins une fente (25) ; la partie fixe (26) comprend une partie de coupe (28) ; un trou de vis d'entraînement (29) est disposé dans la partie fixe (26) ; et le support de fraise (2) se déplace dans la rainure de fraise (1a) au moyen de la vis d'entraînement (3) coopérant avec le trou de vis d'entraînement (29). La fraise présente une conception structurale rationnelle et est pratique à régler, et, étant donné que la structure de la fraise est stable, la fraise ne dévie pas sous l'effet d'une force ; en outre, la partie élastique du support de fraise peut assurer un effet semblable à un « amortissement », de telle sorte que la petite vibration du support de fraise pendant la coupe est réduite, et la durée de vie de la fraise est prolongée.
PCT/CN2020/106836 2020-08-04 2020-08-04 Fraise à haute vitesse WO2022027236A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2020/106836 WO2022027236A1 (fr) 2020-08-04 2020-08-04 Fraise à haute vitesse

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2020/106836 WO2022027236A1 (fr) 2020-08-04 2020-08-04 Fraise à haute vitesse

Publications (1)

Publication Number Publication Date
WO2022027236A1 true WO2022027236A1 (fr) 2022-02-10

Family

ID=80118664

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2020/106836 WO2022027236A1 (fr) 2020-08-04 2020-08-04 Fraise à haute vitesse

Country Status (1)

Country Link
WO (1) WO2022027236A1 (fr)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101925429A (zh) * 2008-02-05 2010-12-22 山特维克知识产权股份有限公司 用于去屑加工的刀具及其基体和切削刀片
CN203556935U (zh) * 2013-11-29 2014-04-23 四川天虎工具有限责任公司 一种焊口成型加工工具
US9266174B2 (en) * 2013-06-10 2016-02-23 sp3 Cutting Tools, Inc. Cutting tool
CN206588400U (zh) * 2017-03-14 2017-10-27 株洲钻石切削刀具股份有限公司 一种铣削刀具
CN210702766U (zh) * 2019-07-04 2020-06-09 一汽-大众汽车有限公司 铣刀

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101925429A (zh) * 2008-02-05 2010-12-22 山特维克知识产权股份有限公司 用于去屑加工的刀具及其基体和切削刀片
US9266174B2 (en) * 2013-06-10 2016-02-23 sp3 Cutting Tools, Inc. Cutting tool
CN203556935U (zh) * 2013-11-29 2014-04-23 四川天虎工具有限责任公司 一种焊口成型加工工具
CN206588400U (zh) * 2017-03-14 2017-10-27 株洲钻石切削刀具股份有限公司 一种铣削刀具
CN210702766U (zh) * 2019-07-04 2020-06-09 一汽-大众汽车有限公司 铣刀

Similar Documents

Publication Publication Date Title
US4293252A (en) Drill bit
CN1074960C (zh) 不重磨刀片夹紧装置
US4422811A (en) Hole saw
US5749689A (en) Drill, particulary drilling screw
JP4106954B2 (ja) 動力伝達機構
WO2022027236A1 (fr) Fraise à haute vitesse
US6925718B2 (en) Tool head
US4352614A (en) Tamper resistant threaded fastener
CN108213478B (zh) 一种增加松脱扭矩的钻夹头
WO1987004102A1 (fr) Fraise creuse et procede permettant son montage
US4547103A (en) Boring tool
JPH0994705A (ja) 切削工具
JPH08145024A (ja) ねじとドライバービットの組合せおよびその製造用ヘッダーパンチ
CN111889776B (zh) 高速铣削刀具
JP2002144112A (ja) 円板状のスローアウェイチップのクランプ機構
CN111889775B (zh) 高速切削的铣削刀具
JP3834159B2 (ja) 軸継手の軸締結装置
CN213511610U (zh) 一种自紧式组装件
CN112032180B (zh) 一种适用于轴类部件的双螺母防松装置
JP2004513798A (ja) 手持ち丸鋸機械のための鋸工具
JP2001150218A (ja) 回転切削工具
CN220296401U (zh) 一种夹紧机构及旋飞刀柄
CN217890366U (zh) 刀夹防尘结构
JP2000512582A (ja) 木材、木材を原材料とする素材、プラスチックまたはこれらに類似する材料から成る工作物を加工するためのフライス工具
CN218109362U (zh) 一体式主轴制动机构

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 20948509

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 20948509

Country of ref document: EP

Kind code of ref document: A1