JPH03213212A - Gear meshing device - Google Patents

Gear meshing device

Info

Publication number
JPH03213212A
JPH03213212A JP635290A JP635290A JPH03213212A JP H03213212 A JPH03213212 A JP H03213212A JP 635290 A JP635290 A JP 635290A JP 635290 A JP635290 A JP 635290A JP H03213212 A JPH03213212 A JP H03213212A
Authority
JP
Japan
Prior art keywords
gear
cutter
workpiece
tool
positioning
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
JP635290A
Other languages
Japanese (ja)
Inventor
Keiichiro Nakajima
中島 敬一郎
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mitsubishi Heavy Industries Ltd
Original Assignee
Mitsubishi Heavy Industries Ltd
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 Mitsubishi Heavy Industries Ltd filed Critical Mitsubishi Heavy Industries Ltd
Priority to JP635290A priority Critical patent/JPH03213212A/en
Publication of JPH03213212A publication Critical patent/JPH03213212A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To easily mesh a rotary tool with a gear having no splines or the like so as to improve a degree of freedom of designing a gear despite its relatively simple structure and a low cost by providing such constitution as electrically positioning a rotary tool side and mechanically positioning a workpiece side. CONSTITUTION:After a gear 2 is mounted on a rotary shaft 6, a cutter 1 and the gear 2, are respectively positioned by a tool phase detecting device 7 and a positioning block 10 while they are rotated by motors 3, 4. The cutter 1 is integrally formed by a key 12 and positioned by a rotational angle of a rotary shaft 5, and the gear 2 is only tightened to the rotary shaft 6 and drive- positioned in a direction of rotation by rotating the gear 2 by the motor 4 and by moving the positioning block 10 to be meshed with a tool groove 2a. When the cutter 1 and the gear 2 are placed in a position relation possible to mesh with each other, the cutter 1 is meshed with the gear 2 without being displaced by shortening a distance between the cutter 1 and the gear 2 by an actuator.

Description

【発明の詳細な説明】 〈産業上の利用分野〉 本発明は歯車シェービング盤やホブ盤等、回転工具によ
り歯車形状のワークを加工する歯車加工機械に用いられ
る歯車噛み合わせ装置に関する。
DETAILED DESCRIPTION OF THE INVENTION <Industrial Application Field> The present invention relates to a gear meshing device used in a gear processing machine such as a gear shaving machine or a hobbing machine that processes a gear-shaped workpiece using a rotating tool.

〈従来の技術〉 歯車加工機械には、ワーク式歯車形削り盤のように往復
運動するラックカッタによってワークから歯車の創成加
工を行うものと、歯車シェービング盤やホブ盤のように
シェービングカッタやホブ等の回転工具により歯車の成
形加工や創成加工を行うものがある。そして、回転工具
により歯車の加工を行う歯車加工機械のうち、既に歯車
形状に粗加工されていたワークを回転工具により仕上加
工するもの等においては、回転工具とワークの損傷を防
止すると共に加工精度の維持を図るため、これらの位置
合わせすなわち噛み合わせを行うことが必要となってく
る。
<Conventional technology> Gear processing machines include those that generate gears from a workpiece using a reciprocating rack cutter, such as a work-type gear shaping machine, and those that generate gears from a workpiece, such as a gear shaving machine or hobbing machine. There are tools that perform shaping and creation of gears using rotating tools such as the following. Among gear processing machines that process gears with rotating tools, those that use rotating tools to finish workpieces that have already been rough-machined into gear shapes are designed to prevent damage to the rotating tools and workpieces, and to improve machining accuracy. In order to maintain this, it is necessary to align or mesh these.

歯車シェービング盤に取り付けられている従来の歯車噛
み合わせ装置の構造を、第2図と第3図とを用いて説明
する。
The structure of a conventional gear meshing device attached to a gear shaving machine will be explained with reference to FIGS. 2 and 3.

第2図のものは、回転工具すなわちシェービングカッタ
(以下、単にカッタと略称する)lとワークすなわち被
加工歯車(以下、単に歯車と略称する)2とをそれぞれ
モータ3゜4により駆動すると共に、それぞれの回転軸
5.6の回転位相を電気的に検出する回転位相検出手段
たる工具位相検出装置7とワーク位相検出装置8とを具
えたものである。この装置では、カッタ1と歯車2とを
モータ3゜4により回転駆動しながら、カッタ1と歯車
2のそれぞれが基準点p、、p2となった時点すなわち
回転軸5.6が所定の回転角度となったことを雨検出装
置7,8により検出し、モータ3,4の駆動を停止する
。そして、図示しない駆動装置によりカッタ1と歯車2
の軸間距giLを変位(短縮)させこれらを噛み合せる
In the one shown in FIG. 2, a rotating tool, ie, a shaving cutter (hereinafter simply referred to as a cutter) 1, and a workpiece, ie, a gear to be processed (hereinafter simply referred to as a gear) 2 are driven by motors 3 and 4, respectively. It is equipped with a tool phase detection device 7 and a workpiece phase detection device 8, which are rotational phase detection means for electrically detecting the rotational phase of each rotating shaft 5.6. In this device, while the cutter 1 and gear 2 are rotationally driven by a motor 3.4, when the cutter 1 and gear 2 reach reference points p, p2, respectively, that is, the rotation axis 5.6 reaches a predetermined rotation angle. The rain detection devices 7 and 8 detect that the rain has occurred, and the driving of the motors 3 and 4 is stopped. Then, the cutter 1 and the gear 2 are driven by a drive device (not shown).
Displace (shorten) the center-to-center distance giL to mesh them.

第3図に示したものは、カッタ1と歯車2とをそれぞれ
モータ3.4により駆動する点では上述したものと同様
であるが、こちらは機械的な工具位置決め手段たる位置
決めブロック9.10によりカッタ1と歯車2の位置決
めを行う0位置決めブロック9.10は油圧や空圧を用
いた図示しないアクチュエータにより図中上下左右に移
動する。そして、カッタ1と歯車2の歯溝1a、2aに
噛み合ってこれらを駆動し、所定の回転角度に位置決め
する。その後は上述した装置と同様にカッタ1と歯車2
の軸間距giLを短縮させ、これらを噛み合せるのであ
る。
The one shown in FIG. 3 is similar to the one described above in that the cutter 1 and the gear 2 are each driven by a motor 3.4, but this one uses a positioning block 9.10 as a mechanical tool positioning means. A zero positioning block 9.10 for positioning the cutter 1 and the gear 2 is moved vertically and horizontally in the figure by an actuator (not shown) using hydraulic pressure or pneumatic pressure. Then, the cutter 1 and the gear 2 are engaged with the tooth grooves 1a and 2a to drive them and position them at a predetermined rotation angle. After that, cutter 1 and gear 2 are cutter 1 and gear 2 in the same way as the above-mentioned device.
The distance between the shafts giL is shortened, and these are meshed together.

〈発明が解決しようとする課題〉 ところで、上述した従来の歯車噛み合せ装置はそれぞれ
以下に述べる不具合を有していた0例えば、前者の電気
式のものにあっては、歯車2fllの回転軸5の回転位
相をワーク位相検出装置8により検出する都合上、歯車
2を単に回転軸5に取り付けるだけではなくキー11等
を用いて相対角度を一定にする必要がある。したがって
、歯車2にはキー11が嵌合するキー溝2bを形成しな
ければならないが、これにより中心にスプライン六等が
形成された歯車や小径の歯車の加工が不可能となったり
、歯車設計上の制約を受けることとなってしまった。尚
、カッタ1と回転軸5とは、キー12を用いて結合した
り、カッタ1と回転軸6と予め一体に形成するようにし
ても、カッタ1自体の交換頻度が少ないこととカッタl
が元来その加工機械専用に製作されるため、上述したよ
うな問題は起こらず、検出装N7を回転軸6に取り付け
るだけでよいためコスト的には有利である。
<Problems to be Solved by the Invention> By the way, each of the conventional gear meshing devices described above has the following disadvantages.For example, in the former electric type, the rotation shaft 5 of the gear 2fl. In order to detect the rotational phase by the workpiece phase detection device 8, it is necessary not only to simply attach the gear 2 to the rotation shaft 5 but also to use a key 11 or the like to keep the relative angle constant. Therefore, it is necessary to form a keyway 2b in the gear 2 into which the key 11 fits, but this may make it impossible to process gears with a spline six or the like formed in the center or small-diameter gears, or may cause problems in gear design. I ended up being subject to the above restrictions. Note that even if the cutter 1 and the rotating shaft 5 are connected using a key 12 or the cutter 1 and the rotating shaft 6 are formed integrally in advance, the cutter 1 itself is not frequently replaced and the cutter l
Since it is originally manufactured exclusively for the processing machine, the above-mentioned problems do not occur, and since it is only necessary to attach the detection device N7 to the rotating shaft 6, it is advantageous in terms of cost.

一方、後者の機械式のものにあっては、歯車2を締付け
などにより固定することができるため、前者のように歯
車2の形状に制約を受ける(キー溝等を設けなければな
らない)という問題は生じない、ところが、この装置で
は位置決めブロック9.10の他、アクチュエータや油
圧(あるいは空圧)配管、制御機構等を各2組づつ設け
なければならず、コストの上昇を招いてしまっていた。
On the other hand, in the latter mechanical type, the gear 2 can be fixed by tightening, etc., so there is a problem that the shape of the gear 2 is restricted (a keyway etc. must be provided) like the former. However, with this device, in addition to the positioning blocks 9 and 10, it was necessary to provide two sets each of actuators, hydraulic (or pneumatic) piping, control mechanisms, etc., resulting in an increase in cost. .

特にカッタ1側の構造が非常に複雑となり、機械の製作
・調整が困難であった。
In particular, the structure of the cutter 1 side was extremely complicated, making it difficult to manufacture and adjust the machine.

本発明は上記状況に鑑みなされたものであり、比較的単
純且つ低コストでありながらワークにも形状的な制約を
与えない歯車噛み合せ装置を提供することを目的とする
The present invention has been made in view of the above-mentioned circumstances, and an object of the present invention is to provide a gear meshing device that is relatively simple and low-cost and does not impose any shape constraints on the workpiece.

く課題を解決するための手段〉 そこで、本発明ではこの課題を解決するために、 回転工具により歯車形状のワークを加工する歯車加工機
械に用いられる歯車噛み合わせ装置であって、 前記回転工具の回転軸を回転駆動する工具駆動手段と、 当該回転工具の回転位相を電気的に検出して、所定の回
転角度に位置決めする工具回転位相検出手段と、 ワークに噛み合って当該ワークを回転駆動して所定の回
転角度に駆動位置決めするワーク位置決め手段と、 前記工具位置決め手段と前記ワーク位置決め手段とによ
り回転工具とワークとがそれぞれ位置決めされた状態で
、回転工具とワークとの軸間距離を変位させてこれらを
噛み合せる噛み合せ手段と を具えたことを特徴とする歯車噛み合わせ装置を提案す
るものである。
Means for Solving the Problem> Therefore, in order to solve this problem, the present invention provides a gear meshing device used in a gear processing machine that processes a gear-shaped workpiece with a rotating tool, which comprises: A tool driving means for rotationally driving a rotary shaft; a tool rotational phase detection means for electrically detecting the rotational phase of the rotary tool and positioning it at a predetermined rotational angle; a workpiece positioning means for driving and positioning at a predetermined rotational angle, and with the rotary tool and the workpiece being respectively positioned by the tool positioning means and the workpiece positioning means, displacing the distance between the axes of the rotary tool and the workpiece; The present invention proposes a gear meshing device characterized by comprising a meshing means for meshing these gears.

〈実 施 例〉 本発明の一実施例を図面に基づき具体的に説明する。尚
、実施例の説明にあたっては前述した従来の例における
部材と同一の部材に同一の符号を付し、重複する説明を
省略する。
<Example> An example of the present invention will be specifically described based on the drawings. In the description of the embodiment, the same members as those in the conventional example described above will be denoted by the same reference numerals, and redundant explanation will be omitted.

第1図には本発明に係る歯車噛み合わせ装置を概念的に
示しである。
FIG. 1 conceptually shows a gear meshing device according to the present invention.

本実施例の歯車噛み合わせ装置も前述した装置と同様に
歯車シェービング磐に取り付けられたものである。この
図に示すように、本実施例の歯車噛み合わせ装置では、
カッタ1側にカッタ1の回転軸5を駆動する工具駆動手
段たるモータ3と工具回転位相検出手段たる工具位相検
出装置7が設けられ、歯車2側にはモータ4とワークを
回転駆動するワーク位置決め手段たる位置決めブロック
10が設けられている。
The gear meshing device of this embodiment is also attached to a gear shaving board like the device described above. As shown in this figure, in the gear meshing device of this embodiment,
The cutter 1 side is provided with a motor 3 as a tool driving means for driving the rotating shaft 5 of the cutter 1 and a tool phase detection device 7 as a tool rotation phase detection means, and the gear 2 side is provided with a motor 4 and a workpiece positioning device that rotationally drives the workpiece. A positioning block 10 is provided as a means.

工具位相検出装置7は、回転軸5が所定の回転角度すな
わち基準点P、となった際に基準信号(1回転毎に1パ
ルス)を出力し、この基準信号を受けてモータ3を停止
させるものである。また、位置決めブロック10は、モ
ータ4の回転と図示しないアクチュエータの上下左右方
向の駆動力とにより歯車2の歯溝2aに嵌合し、歯車2
を所定の回転角度に位置決めするものである。そして、
工具位相検出装置7により位置決めされたカッタ1と、
位置決めブロックlOにより位置決めされた歯車2とは
互いに噛み合うような位置関係となるように調整されて
いる。尚、カッタ1とその回転軸5とはキー12を使用
して回り止めがなされているが、歯車2とその回転軸6
とは図示しないリングナツトを締め付けることにより固
定されるようになっている。
The tool phase detection device 7 outputs a reference signal (one pulse per rotation) when the rotating shaft 5 reaches a predetermined rotation angle, that is, a reference point P, and stops the motor 3 upon receiving this reference signal. It is something. Further, the positioning block 10 is fitted into the tooth groove 2a of the gear 2 by the rotation of the motor 4 and the driving force of an actuator (not shown) in the vertical and horizontal directions.
is positioned at a predetermined rotation angle. and,
A cutter 1 positioned by a tool phase detection device 7;
The gears 2 positioned by the positioning block 1O are adjusted to have a positional relationship in which they mesh with each other. Note that the cutter 1 and its rotating shaft 5 are prevented from rotating using a key 12, but the gear 2 and its rotating shaft 6 are prevented from rotating.
It is fixed by tightening a ring nut (not shown).

以下、本実施例の作用を述べる。The operation of this embodiment will be described below.

本実施例では歯車2を回転軸6に取り付けた後、カッタ
1と歯車2とをモータ3,4により回転させながら工具
位相検出装置7と位置決めブロック10とによりそれぞ
れ位置決めする。カッタ1は上述したように回転軸5と
キー12を介装した状態で一体化されているため、位置
決めは実際には回転軸5の回転角度を以て行われる。ま
た、歯車2は回転軸6に単に締め付けられているだけで
あるが、こちらはモータ4による歯車2の回転と位置決
めブロック10の移動とにより歯溝2aに位置決めブロ
ックIOが噛み合い、回転方向に駆動−位置決めされる
In this embodiment, after the gear 2 is attached to the rotating shaft 6, the cutter 1 and the gear 2 are rotated by the motors 3 and 4 and positioned by the tool phase detection device 7 and the positioning block 10, respectively. Since the cutter 1 is integrated with the rotary shaft 5 and the key 12 interposed therebetween as described above, positioning is actually performed using the rotation angle of the rotary shaft 5. Further, although the gear 2 is simply tightened to the rotating shaft 6, the rotation of the gear 2 by the motor 4 and the movement of the positioning block 10 cause the positioning block IO to mesh with the tooth groove 2a and drive the gear in the rotational direction. - Positioned.

カッタ1と歯車2とが位置決めされると、これらは上述
したように互いに噛み合える位置関係となる。したがっ
て、本装置では次に前述した従来装置と同様に図示しな
いアクチュエータによりカッタlと歯車2間の軸間距離
りを短縮させる。この結果、カッタ1と歯車2とはずれ
ることなく噛み合うのである。
When the cutter 1 and the gear 2 are positioned, they are in a positional relationship in which they can mesh with each other as described above. Therefore, in this device, the center-to-axis distance between the cutter 1 and the gear 2 is shortened using an actuator (not shown) as in the conventional device described above. As a result, the cutter 1 and the gear 2 mesh without coming apart.

以上で実施例の説明を終えるが、本発明の態様はこの実
施例に限るものではない0例えば、位置決めブロックに
換えて歯車形状のワーク位置決め手段を用いると共にこ
れを上下・回転駆動して位置決めを行うようにし、ワー
ク駆動用のモータを廃止するようにしてもよい、また、
上記実施例は歯車形状のシェービングカッタを有する歯
車シェービング盤に本発明を採用したものであるが、ビ
ニオンカッタを用いた歯車形削り盤やホブ盤のように螺
旋状工具であるホブを用いるホブ盤などに採用してもよ
い。
This concludes the description of the embodiment, but the aspect of the present invention is not limited to this embodiment. For example, instead of the positioning block, a gear-shaped workpiece positioning means may be used, and the positioning may be performed by vertically and rotationally driving the workpiece positioning means. The motor for driving the workpiece may be abolished.
In the above embodiment, the present invention is applied to a gear shaving machine that has a gear-shaped shaving cutter, but it is also applicable to a gear shaving machine that uses a pinion cutter, a hobbing machine that uses a hob that is a spiral tool, etc. may be adopted.

4 〈発明の効果〉 本発明に係る歯車噛み合わせ装置によれば、回転工具側
を電気的に位置決めする一方で、ワーク側を機械的に位
置決めするようにしたため、比較的単純且つ低コストな
構成でありながら、回転工具とキー溝等を持たない歯車
との噛み合わせを容易に行えるようになって歯車設計の
自由度が向上する。
4 <Effects of the Invention> According to the gear meshing device according to the present invention, the rotary tool side is electrically positioned while the workpiece side is mechanically positioned, so the configuration is relatively simple and low cost. However, it becomes possible to easily mesh the rotary tool with a gear that does not have a keyway or the like, improving the degree of freedom in gear design.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は本発明に係る歯車噛み合わせ装置を示す概念図
であり、第2図と第3図とは共に従来の歯車噛み合わせ
装置を示す概念図である。 図面中、 1はシェービングカッタ、 2は被加工歯車、 3.4はモータ、 5.6は回転軸、 7は工具位相検出装置、 10は位置決めブロックである。 第1図 位置決めブロック 第2図 孤η■工国軍 第3図 位置決めブロック
FIG. 1 is a conceptual diagram showing a gear meshing device according to the present invention, and FIGS. 2 and 3 are both conceptual diagrams showing a conventional gear meshing device. In the drawings, 1 is a shaving cutter, 2 is a gear to be processed, 3.4 is a motor, 5.6 is a rotating shaft, 7 is a tool phase detection device, and 10 is a positioning block. Figure 1: Positioning block Figure 2: η■ Industrial Army Figure 3: Positioning block

Claims (1)

【特許請求の範囲】 回転工具により歯車形状のワークを加工する歯車加工機
械に用いられる歯車噛み合わせ装置であって、 前記回転工具の回転軸を回転駆動する工具駆動手段と、 当該回転工具の回転位相を電気的に検出して、所定の回
転角度に位置決めする工具回転位相検出手段と、 ワークに噛み合って当該ワークを回転駆動して所定の回
転角度に駆動位置決めするワーク位置決め手段と、 前記工具位置決め手段と前記ワーク位置決め手段とによ
り回転工具とワークとがそれぞれ位置決めされた状態で
、回転工具とワークとの軸間距離を変位させてこれらを
噛み合せる噛み合せ手段とを具えたことを特徴とする歯
車噛み合わせ装置。
[Scope of Claims] A gear meshing device used in a gear processing machine that processes a gear-shaped workpiece with a rotary tool, comprising: a tool driving means for rotationally driving a rotation shaft of the rotary tool; and a rotation of the rotary tool. tool rotation phase detection means that electrically detects the phase and positions the workpiece at a predetermined rotational angle; workpiece positioning means that engages with a workpiece and rotationally drives the workpiece to drive and position the workpiece at a predetermined rotational angle; and the tool positioning means. A gear comprising: an engaging means for displacing the distance between the axes of the rotary tool and the workpiece to engage them in a state where the rotary tool and the workpiece are respectively positioned by the means and the workpiece positioning means. interlocking device.
JP635290A 1990-01-17 1990-01-17 Gear meshing device Pending JPH03213212A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP635290A JPH03213212A (en) 1990-01-17 1990-01-17 Gear meshing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP635290A JPH03213212A (en) 1990-01-17 1990-01-17 Gear meshing device

Publications (1)

Publication Number Publication Date
JPH03213212A true JPH03213212A (en) 1991-09-18

Family

ID=11635978

Family Applications (1)

Application Number Title Priority Date Filing Date
JP635290A Pending JPH03213212A (en) 1990-01-17 1990-01-17 Gear meshing device

Country Status (1)

Country Link
JP (1) JPH03213212A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11311953B2 (en) * 2018-10-10 2022-04-26 Jtekt Corporation Machine tool
US11383313B2 (en) * 2018-10-30 2022-07-12 Jtekt Corporation Machine tool and gear machining method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11311953B2 (en) * 2018-10-10 2022-04-26 Jtekt Corporation Machine tool
US11383313B2 (en) * 2018-10-30 2022-07-12 Jtekt Corporation Machine tool and gear machining method

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