CN112809034A - Combined boring cutter device and using method thereof - Google Patents

Combined boring cutter device and using method thereof Download PDF

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Publication number
CN112809034A
CN112809034A CN202110060866.1A CN202110060866A CN112809034A CN 112809034 A CN112809034 A CN 112809034A CN 202110060866 A CN202110060866 A CN 202110060866A CN 112809034 A CN112809034 A CN 112809034A
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central axis
chamfering
boring
segment
combined
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CN202110060866.1A
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Chinese (zh)
Inventor
陈寅秋
庹先定
熊朝林
张强
朱婷婷
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Awit Precision Machinery Changshu Co Ltd
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Awit Precision Machinery Changshu Co Ltd
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Priority to CN202110060866.1A priority Critical patent/CN112809034A/en
Publication of CN112809034A publication Critical patent/CN112809034A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23BTURNING; BORING
    • B23B27/00Tools for turning or boring machines; Tools of a similar kind in general; Accessories therefor

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Drilling And Boring (AREA)

Abstract

本发明公开了一种组合式镗刀装置,包括刀柄、连接部件、刀座、第一倒角刀片组、镗孔刀片组、第二倒角刀片组;该连接部件被配置成将刀柄和刀座连接在一起,并且与刀柄同轴;刀座包括从后到前依次设置的第一段、第二段和第三段;第一倒角刀片组沿径向固定在第一段的前端,并且具有相对于中心轴倾斜向前的第一倒角切削部;镗孔刀片组沿径向固定在第二段的前端,并且具有与中心轴垂直的第一镗孔切削部和相对于中心轴倾斜向后的第二镗孔切削部;第二倒角刀片组沿径向固定在第三段的前端,并且具有相对于中心轴倾斜向后的第二倒角切削部。本发明可以一次性对孔特征加工成型,有效降低工序分散所增加的成本。

Figure 202110060866

The invention discloses a combined boring tool device, comprising a tool handle, a connecting part, a tool seat, a first chamfering blade group, a boring blade group and a second chamfering blade group; the connecting part is configured to connect the tool handle It is connected with the tool seat and is coaxial with the tool handle; the tool seat includes a first section, a second section and a third section arranged in sequence from the back to the front; the first chamfering blade group is radially fixed on the first section the front end, and has a first chamfering cutting part inclined forward with respect to the central axis; the boring insert set is fixed at the front end of the second section in the radial direction, and has a first boring cutting part perpendicular to the central axis and opposite The second boring cutting portion is inclined backward relative to the central axis; the second chamfering insert set is fixed at the front end of the third segment in the radial direction, and has a second chamfering cutting portion inclined backward relative to the central axis. The invention can process and shape the hole feature at one time, and effectively reduce the cost increased by the dispersion of the process.

Figure 202110060866

Description

Combined boring cutter device and using method thereof
Technical Field
The invention relates to the technical field of boring cutting, in particular to a combined boring cutter device and a using method thereof.
Background
With the development of high-end manufacturing industry, hole characteristics of parts are more and more complex, and more processes are required for processing the parts. When a small quantity of various parts are processed, a cutter is specially designed, and the production cost is high.
Therefore, those skilled in the art have made an effort to develop a combined boring tool device and a method of using the same, which can simplify the manufacturing process and thus effectively improve the production efficiency.
Disclosure of Invention
In view of the above-mentioned drawbacks of the prior art, the technical problem to be solved by the present invention is how to simplify the process of machining parts with complicated hole features by using a combined boring tool device.
In order to achieve the purpose, the invention provides a combined boring cutter device, which comprises a cutter handle, a connecting part, a cutter holder, a first chamfer cutter blade group, a boring cutter blade group and a second chamfer cutter blade group; the connecting member is configured to connect the tool shank and the tool holder together and is coaxial with the tool shank; the tool apron comprises a first section, a second section and a third section which are sequentially arranged from back to front; the first chamfer blade set is fixed at the front end of the first section along the radial direction and is provided with a first chamfer cutting part which inclines forwards relative to the central shaft; the boring blade set is fixed at the front end of the second section in the radial direction and is provided with a first boring cutting part perpendicular to the central axis and a second boring cutting part inclined backwards relative to the central axis; the second chamfer blade group is fixed at the front end of the third section along the radial direction and is provided with a second chamfer cutting part which inclines backwards relative to the central shaft.
Further, the radial dimension of the second segment is smaller than that of the first segment, the radial dimension of one side of the third segment with respect to the central axis is equivalent to that of the first segment, and the radial dimension of the other side of the third segment with respect to the central axis is smaller than that of the second segment.
Further, the first chamfer cutting part has an inclination angle of 10 ° to 80 ° with respect to the central axis direction.
Further, the first chamfer cutting part has an inclination angle of 45 ° with respect to the central axis direction.
Further, the second chamfer cutting part has an inclination angle with the central axis direction of 10 ° to 80 °.
Further, the second chamfer cutting portion has an inclination angle of 45 ° with respect to the central axis direction.
Further, the second bore cutting portion is inclined at an angle of between 5 ° and 30 ° to the central axis direction.
Further, the boring blade group comprises two boring blades which are oppositely arranged.
Further, the second chamfer blade group comprises a plurality of second chamfer blades which are uniformly distributed along the circumferential direction.
The invention also provides a using method of the combined boring cutter device, which comprises the following steps:
a) offsetting a central shaft of the combined boring cutter device and a central shaft of a workpiece hole to be processed by a preset distance;
b) enabling the second chamfering cutter group to penetrate through the hole of the workpiece to be machined forwards, sequentially adjusting the offset distance between the central shaft of the combined boring cutter device and the central shaft of the hole of the workpiece to be machined, enabling the combined boring cutter device to advance forwards, and utilizing the boring cutter group to execute a boring procedure to machine the workpiece to be machined into required step surfaces;
c) the central shaft of the combined boring cutter device is superposed with the central shaft of a workpiece hole to be processed;
d) the combined boring cutter device is made to advance forwards, and a first chamfering procedure is executed by utilizing the first chamfering blade set;
e) the combined boring cutter device moves backwards, and a second chamfering procedure is executed by using a second chamfering cutter blade group;
f) advancing the combined boring tool device forward;
g) offsetting a central shaft of the combined boring cutter device and a central shaft of a workpiece hole to be processed by a preset distance;
h) and enabling the second chamfer cutter blade group to backwards penetrate through the workpiece hole to be machined, and withdrawing the combined boring cutter device.
The invention has the beneficial effects that:
1. compared with the prior art, the method has the advantages that the method is irreplaceable, the hole characteristics can be machined and formed at one time, and the cost increased by dispersed working procedures is effectively reduced.
2. The cutter can be used for general equipment such as CNC (computerized numerical control) equipment and numerically controlled fraise machines, adopts integral cutter design, only needs to change the blade, saves use cost.
The conception, the specific structure and the technical effects of the present invention will be further described with reference to the accompanying drawings to fully understand the objects, the features and the effects of the present invention.
Drawings
FIG. 1 is a schematic view of a component having a complex hole feature according to a preferred embodiment of the present invention;
FIG. 2 is a schematic view of a modular boring tool assembly in accordance with a preferred embodiment of the present invention;
FIG. 3a is a schematic view of the state of step a) in the method of using the combined boring tool device according to the preferred embodiment of the invention;
FIG. 3b is a schematic view of the state of step b) in the method of using the combined boring tool device according to the preferred embodiment of the invention;
FIG. 3c is a schematic view of the state of step c) in the method of using the combined boring tool device according to the preferred embodiment of the invention;
FIG. 3d is a schematic view of the state of step d) in the method of using the combined boring tool device according to the preferred embodiment of the invention;
FIG. 3e is a schematic view of the state of step e) in the method of using the combined boring tool device according to the preferred embodiment of the invention;
FIG. 3f is a schematic view of the state of step f) in the method of using the combined boring tool device according to the preferred embodiment of the invention;
FIG. 3g is a schematic view of the state of step g) in the method of using the combined boring tool device according to the preferred embodiment of the invention;
fig. 3h is a schematic view of the state of step h) in the method for using the combined boring tool device according to the preferred embodiment of the invention.
The tool comprises a step face 1, a first chamfer 2, a second chamfer 3, a tool holder 10, a connecting part 20, a tool holder 30, a first section 31, a second section 32, a third section 33, a first chamfer blade 34, a first chamfer cutting part 35, a boring blade 36, a first boring cutting part 37, a second boring cutting part 38, a second chamfer blade 39 and a second chamfer cutting part 40.
Detailed Description
The preferred embodiments of the present invention will be described below with reference to the accompanying drawings for clarity and understanding of technical contents. The present invention may be embodied in many different forms of embodiments and the scope of the invention is not limited to the embodiments set forth herein.
In the drawings, structurally identical elements are represented by like reference numerals, and structurally or functionally similar elements are represented by like reference numerals throughout the several views. The size and thickness of each component shown in the drawings are arbitrarily illustrated, and the present invention is not limited to the size and thickness of each component. The thickness of the components may be exaggerated where appropriate in the figures to improve clarity.
Figure 1 shows a component part with a complex bore feature comprising various step faces 1 of different radial dimensions, a first chamfer 2 at the proximal end of the bore and a second chamfer 3 at the distal end of the bore. The traditional processing method is to use different boring cutters and chamfering cutters to process parts in sequence, an operator needs to replace the cutters and set the cutters for many times, and the cutter cost and the labor cost are high.
The embodiment provides a modular boring cutter device, can realize once only to hole characteristic machine-shaping, effectively reduces the cost that the process dispersion increases. The combined boring cutter device can be used for general equipment such as CNC (computerized numerical control) equipment and numerically controlled milling machines, adopts integral cutter design, only needs to replace blades, and saves use cost.
As shown in fig. 2, the combined boring tool device includes a tool shank 10, a connecting member 20, and a tool holder 30, wherein the connecting member 20 connects the tool shank 10 and the tool holder 20 together, and the connecting member 20 is coaxial with the tool shank 10. Preferably, the tool shank 10 is a 2-degree-oblique side-mounted tool shank, and the use of the 2-degree-oblique side-mounted tool shank has the advantage of higher clamping degree and concentricity. The tool holder 30 is provided with a first section 31, a second section 32 and a third section 33 in sequence from back to front. The radial dimension of the second section 32 is smaller than the radial dimension of the first section 31. The radial dimension of the third section 33 on one side with respect to the central axis X-X corresponds to the radial dimension of the first section 31, and the radial dimension of the other side with respect to the central axis X-X is smaller than the radial dimension of the second section 32.
A first chamfer insert set, which in this embodiment is constituted by a first chamfer insert 34, is radially fixed at the front end of the first section 31, the first chamfer insert 34 having a first chamfer cutting portion 35 obliquely forwardly with respect to the central axis X-X. The first chamfer cutting portion 35 is inclined at an angle of between 10 ° and 80 °, preferably 45 °, to the central axis X-X direction.
A boring blade set is fixed radially at the front end of the second section 32, and in this embodiment, the boring blade set is composed of two boring blades 36 arranged oppositely, and the boring blade 36 has a first boring cutting portion 37 perpendicular to the central axis X-X and a second boring cutting portion 38 inclined rearward with respect to the central axis X-X. The second bore cutting portion 38 is inclined at an angle of between 5 ° and 30 ° to the central axis X-X.
A second chamfer insert set is radially fixed to the front end of the third section 33, in this example, the second chamfer insert set is formed by a plurality of second chamfer inserts 39 uniformly distributed in the circumferential direction, and the second chamfer inserts 39 have second chamfer cutting portions 40 inclined rearward with respect to the central axis X-X. The second chamfer cutting portion 40 is inclined at an angle of between 10 ° and 80 °, preferably 45 °, to the central axis X-X direction.
As shown in fig. 3a to 3h, the method for using the combined boring tool device comprises the following steps:
a) offsetting a central shaft of the combined boring cutter device and a central shaft of a workpiece hole to be processed by a preset distance;
b) enabling the second chamfering cutter group to penetrate through the hole of the workpiece to be machined forwards, sequentially adjusting the offset distance between the central shaft of the combined boring cutter device and the central shaft of the hole of the workpiece to be machined, enabling the combined boring cutter device to advance forwards, and utilizing the boring cutter group to execute a boring procedure to machine the workpiece to be machined into required step surfaces;
c) the central shaft of the combined boring cutter device is superposed with the central shaft of a workpiece hole to be processed;
d) the combined boring cutter device is made to advance forwards, and a first chamfering procedure is executed by utilizing the first chamfering blade set;
e) the combined boring cutter device moves backwards, and a second chamfering procedure is executed by using a second chamfering cutter blade group;
f) advancing the combined boring tool device forward;
g) offsetting a central shaft of the combined boring cutter device and a central shaft of a workpiece hole to be processed by a preset distance;
h) and enabling the second chamfer cutter blade group to backwards penetrate through the workpiece hole to be machined, and withdrawing the combined boring cutter device.
The foregoing detailed description of the preferred embodiments of the invention has been presented. It should be understood that numerous modifications and variations could be devised by those skilled in the art in light of the present teachings without departing from the inventive concepts. Therefore, the technical solutions available to those skilled in the art through logic analysis, reasoning and limited experiments based on the prior art according to the concept of the present invention should be within the scope of protection defined by the claims.

Claims (10)

1.一种组合式镗刀装置,其特征在于,包括刀柄、连接部件、刀座、第一倒角刀片组、镗孔刀片组、第二倒角刀片组;所述连接部件被配置成将所述刀柄和所述刀座连接在一起,并且与所述刀柄同轴;所述刀座包括从后到前依次设置的第一段、第二段和第三段;所述第一倒角刀片组沿径向固定在所述第一段的前端,并且具有相对于中心轴倾斜向前的第一倒角切削部;所述镗孔刀片组沿径向固定在所述第二段的前端,并且具有与中心轴垂直的第一镗孔切削部和相对于中心轴倾斜向后的第二镗孔切削部;所述第二倒角刀片组沿径向固定在所述第三段的前端,并且具有相对于中心轴倾斜向后的第二倒角切削部。1. A combined boring tool device is characterized in that, comprising a tool handle, a connecting member, a tool seat, the first chamfering blade group, the boring blade group, the second chamfering blade group; the connecting member is configured as The tool handle and the tool seat are connected together and are coaxial with the tool handle; the tool seat includes a first segment, a second segment and a third segment sequentially arranged from back to front; the first segment A chamfering insert set is radially fixed on the front end of the first segment, and has a first chamfering cutting portion inclined forward relative to the central axis; the boring insert set is radially fixed on the second the front end of the segment, and has a first boring cutting portion perpendicular to the central axis and a second boring cutting portion inclined backward relative to the central axis; the second chamfering insert set is radially fixed on the third the front end of the segment, and has a second chamfer cut that is inclined rearwardly relative to the central axis. 2.如权利要求1所述的组合式镗刀装置,其特征在于,所述第二段的径向尺寸小于所述第一段的径向尺寸,所述第三段相对于中心轴的一侧的径向尺寸和所述第一段的径向尺寸相当,并且所述第三段相对于中心轴的另一侧的径向尺寸小于所述第二段的径向尺寸。2 . The combined boring tool device according to claim 1 , wherein the radial dimension of the second segment is smaller than the radial dimension of the first segment, and the third segment is relative to an axis of the central axis. 3 . The radial dimension of the side is comparable to the radial dimension of the first segment, and the radial dimension of the other side of the third segment relative to the central axis is smaller than the radial dimension of the second segment. 3.如权利要求1所述的组合式镗刀装置,其特征在于,所述第一倒角切削部与中心轴方向的倾斜角度在10°至80°之间。3 . The combined boring tool device according to claim 1 , wherein the inclination angle between the first chamfering cutting portion and the central axis direction is between 10° and 80°. 4 . 4.如权利要求3所述的组合式镗刀装置,其特征在于,所述第一倒角切削部与中心轴方向的倾斜角度为45°。4 . The combined boring tool device according to claim 3 , wherein the inclination angle between the first chamfering cutting portion and the central axis direction is 45°. 5 . 5.如权利要求1所述的组合式镗刀装置,其特征在于,所述第二倒角切削部与中心轴方向的倾斜角度在10°至80°之间。5 . The combined boring tool device according to claim 1 , wherein the inclination angle between the second chamfering cutting portion and the central axis direction is between 10° and 80°. 6 . 6.如权利要求5所述的组合式镗刀装置,其特征在于,所述第二倒角切削部与中心轴方向的倾斜角度为45°。6 . The combined boring tool device according to claim 5 , wherein the inclination angle between the second chamfering cutting portion and the central axis direction is 45°. 7 . 7.如权利要求1所述的组合式镗刀装置,其特征在于,所述第二镗孔切削部与中心轴方向的倾斜角度在5°至30°之间。7 . The combined boring tool device according to claim 1 , wherein the inclination angle between the second boring cutting portion and the central axis direction is between 5° and 30°. 8 . 8.如权利要求1所述的组合式镗刀装置,其特征在于,所述镗孔刀片组包括相对设置的两个镗孔刀片。8 . The combined boring tool device according to claim 1 , wherein the boring insert set comprises two boring inserts arranged oppositely. 9 . 9.如权利要求1所述的组合式镗刀装置,其特征在于,所述第二倒角刀片组包括多个沿周向均布的第二倒角刀片。9 . The combined boring tool device according to claim 1 , wherein the second chamfering blade set comprises a plurality of second chamfering blades evenly distributed along the circumferential direction. 10 . 10.一种如权利要求1所述的组合式镗刀装置的使用方法,其特征在于,包括以下步骤:10. A method of using the combined boring tool device as claimed in claim 1, characterized in that, comprising the steps of: a) 将组合式镗刀装置的中心轴与待加工工件孔的中心轴偏移预定的距离;a) Offset the central axis of the combined boring tool device and the central axis of the workpiece hole to be machined by a predetermined distance; b) 使第二倒角刀片组向前穿过待加工工件孔,依次调整组合式镗刀装置的中心轴与待加工工件孔的中心轴的偏移距离,使组合式镗刀装置向前行进,利用镗孔刀片组执行镗孔工序,将待加工工件加工出所需的各台阶面;b) Make the second chamfering blade set pass forward through the workpiece hole to be processed, and adjust the offset distance between the central axis of the combined boring tool device and the central axis of the workpiece hole to be processed in turn, so that the combined boring tool device moves forward , use the boring blade set to perform the boring process, and process the required step surfaces of the workpiece to be processed; c) 将组合式镗刀装置的中心轴与待加工工件孔的中心轴重合;c) Coincide the central axis of the combined boring tool device with the central axis of the workpiece hole to be machined; d) 使组合式镗刀装置向前行进,利用第一倒角刀片组执行第一倒角工序;d) Make the combined boring tool move forward, and use the first chamfering blade set to perform the first chamfering process; e) 使组合式镗刀装置向后行进,利用第二倒角刀片组执行第二倒角工序;e) Make the combined boring tool move backward, and use the second chamfering blade set to perform the second chamfering process; f) 使组合式镗刀装置向前行进;f) Make the combined boring tool move forward; g) 将组合式镗刀装置的中心轴与待加工工件孔的中心轴偏移预定的距离;g) Offset the central axis of the combined boring tool device and the central axis of the workpiece hole to be machined by a predetermined distance; h) 使第二倒角刀片组向后穿过待加工工件孔,退出组合式镗刀装置。h) Make the second chamfering insert set backward through the workpiece hole to be machined, and exit the combined boring tool device.
CN202110060866.1A 2021-01-18 2021-01-18 Combined boring cutter device and using method thereof Pending CN112809034A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119525540A (en) * 2024-12-30 2025-02-28 昌泺(聊城)智能制造有限公司 A composite tool for machining oil port of diesel engine cover

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CN208019440U (en) * 2018-02-10 2018-10-30 东风本田汽车零部件有限公司 A kind of integrated cutter of processing centrifugation cylinder sleeve
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CN210359300U (en) * 2019-06-28 2020-04-21 北京北方车辆集团有限公司 A chamfering tool
CN212168984U (en) * 2020-03-23 2020-12-18 哈尔滨东安汽车动力股份有限公司 Positive and negative direction boring composite cutter
CN214349681U (en) * 2021-01-18 2021-10-08 阿为特精密机械(常熟)有限公司 Combined boring cutter device

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1081404A (en) * 1992-05-23 1994-02-02 海恩里士·霍勒 Deburring tool with additional cutting tool
US5288184A (en) * 1992-05-23 1994-02-22 Heinrich Heule Deburring tool with additional cutting tool
CN206382572U (en) * 2016-12-30 2017-08-08 潍坊盛瑞动力机械科技有限公司 Compound sleeve boring cutter for processing hole and coaxial annular groove
CN208019440U (en) * 2018-02-10 2018-10-30 东风本田汽车零部件有限公司 A kind of integrated cutter of processing centrifugation cylinder sleeve
CN209206491U (en) * 2018-12-28 2019-08-06 晋城市金工铸业有限公司 A kind of compound coarse-fine boring chamfering tool
CN210359300U (en) * 2019-06-28 2020-04-21 北京北方车辆集团有限公司 A chamfering tool
CN212168984U (en) * 2020-03-23 2020-12-18 哈尔滨东安汽车动力股份有限公司 Positive and negative direction boring composite cutter
CN214349681U (en) * 2021-01-18 2021-10-08 阿为特精密机械(常熟)有限公司 Combined boring cutter device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119525540A (en) * 2024-12-30 2025-02-28 昌泺(聊城)智能制造有限公司 A composite tool for machining oil port of diesel engine cover

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