JP2010190859A - Fastening force management method and management device of tapered screw - Google Patents

Fastening force management method and management device of tapered screw Download PDF

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JP2010190859A
JP2010190859A JP2009038161A JP2009038161A JP2010190859A JP 2010190859 A JP2010190859 A JP 2010190859A JP 2009038161 A JP2009038161 A JP 2009038161A JP 2009038161 A JP2009038161 A JP 2009038161A JP 2010190859 A JP2010190859 A JP 2010190859A
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fastening
fastening force
taper
elastic deformation
screw
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Takeshi Sakurai
剛 櫻井
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Mitsubishi Heavy Industries Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a fastening force management method and a device of a tapered screw capable of managing a fastening force simply and highly accurately. <P>SOLUTION: In this fastening force management method of the tapered screw 1 for managing the fastening force between a tapered female screw part 32 formed on the inner circumferential surface of a hollow cylindrical fastening part 3a and a tapered male screw part 21 or a parallel male screw part engaged with the tapered female screw part 32, an elastic deformation amount which is an enlarged amount of an outer diameter of the fastening part 3a is detected, and the detected elastic deformation amount is converted into the fastening force based on a proportional relation between the elastic deformation amount of the fastening part outer diameter and the fastening force, to thereby manage the fastening force between the tapered female screw 32 and the tapered male screw 21 or the parallel male screw. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、配管継手等に用いられるテーパねじの締結力を管理するテーパねじの締結力管理方法及び管理装置に関する。   The present invention relates to a taper screw fastening force management method and a management device that manage the fastening force of a taper screw used in a pipe joint or the like.

テーパねじは、テーパめねじにテーパおねじ又は平行おねじを螺合して、めねじのテーパ状内面をおねじ外周面で外側に押し付けることにより締結するもので、気密性が高いことから配管継手等に広く用いられている。
従来より用いられている配管継手部材の一例を図4に示す。
図4(a)はT字型配管継手部材40であり、T字状に形成された配管継手部材40の3箇所の端部は、その内周面にテーパめねじ部41が設けられている。このテーパめねじ部41に配管部材のテーパおねじ部又は平行おねじ部を嵌合して螺合することにより、三方向に延設される配管を締結することができる。図4(b)はストレート型配管継手部材45であり、配管継手部材端部の外周面にテーパおねじ部46が設けられている。このテーパおねじ部46を配管部材のテーパめねじ部に嵌合させ、配管継手部材45の頭部47をレンチで回転させることによりテーパおねじ部46がテーパめねじ部に螺合し締結されるようになっている。
The taper screw is fastened by screwing a taper male screw or parallel male screw into the taper female screw and pressing the taper inner surface of the female screw outward with the outer peripheral surface of the male screw. Widely used for joints.
An example of a pipe joint member conventionally used is shown in FIG.
FIG. 4A shows a T-shaped pipe joint member 40, and three end portions of the pipe joint member 40 formed in a T-shape are provided with tapered female thread portions 41 on the inner peripheral surface thereof. . A pipe extending in three directions can be fastened by fitting a taper male thread part or a parallel male thread part of the pipe member to the taper female thread part 41 and screwing them together. FIG. 4B shows a straight type pipe joint member 45, and a taper male thread part 46 is provided on the outer peripheral surface of the end part of the pipe joint member. The tapered male threaded portion 46 is fitted into the tapered female threaded portion of the piping member, and the head 47 of the piping joint member 45 is rotated with a wrench so that the tapered male threaded portion 46 is screwed into the tapered female threaded portion and fastened. It has become so.

従来、テーパねじの締め付けは人手により行われることが多かった。図5(a)に示すように、テーパめねじ部51を有する配管部材50と、テーパおねじ部54を有する配管部材52とを締結する場合、配管部材50を固定器具60で固定し、該配管部材50のめねじ部51に配管部材52のおねじ部54を嵌合させ、配管部材52の頭部53をレンチ61で回転させることによりめねじ部51におねじ部54が螺合し、おねじ部54がめねじ部51を外側に押し付けることにより締結される。   Conventionally, the taper screw is often manually tightened. As shown in FIG. 5A, when fastening the piping member 50 having the tapered female screw portion 51 and the piping member 52 having the tapered male screw portion 54, the piping member 50 is fixed by a fixing device 60, By fitting the male threaded portion 54 of the piping member 52 to the female threaded portion 51 of the piping member 50 and rotating the head 53 of the piping member 52 with the wrench 61, the threaded portion 54 is screwed into the female threaded portion 51. The male screw portion 54 is fastened by pressing the female screw portion 51 outward.

しかしながら、このような締結方法では締結力にばらつきが大きく、また締め過ぎにより継手部材が破損したり、締め付け不足により締結状態が緩み、配管内部の流体が漏れることがあった。
締結力を調整する手段としては、特許文献1(特開2000−280184号公報)等に開示されるように、予め設定したトルクに調整可能なトルクレンチが用いられている。また別の方法として、おねじとめねじを螺合する際に、角度規定するマーキングをしておき、このマーキングに沿って締め付けることにより目標とする締結力を得るようにした方法があった。
However, in such a fastening method, there is a large variation in fastening force, and the joint member may be damaged due to overtightening, or the fastening state may be loosened due to insufficient fastening, and fluid inside the pipe may leak.
As a means for adjusting the fastening force, a torque wrench that can be adjusted to a preset torque is used as disclosed in Patent Document 1 (Japanese Patent Laid-Open No. 2000-280184). As another method, when a male screw and a female screw are screwed together, there is a method in which a marking for defining an angle is provided and a target fastening force is obtained by tightening along the marking.

特開2000−280184号公報JP 2000-280184 A

しかし、おねじに与える締め付けトルクは、大部分がおねじとめねじの接触摩擦に消費されてしまうため、締め付けトルクを調整してもテーパねじの軸力が目的とする値になるとは限らない。従って、締結力にばらつきが生じてしまい、上記したように締め過ぎによる継手部材の破損や締め付け不足による内部流体の漏れを確実に回避することはできなかった。
テーパねじに角度規定のマーキングをする方法では、マーキングできない締結部材も存在するため、全てのテーパねじに適用できるものではなく、また作業効率が低下するという問題があった。
従って、本発明は上記従来技術の問題点に鑑み、簡単に且つ高精度で締結力を管理可能なテーパねじの締結力管理方法及び装置を提供することを目的とする。
However, most of the tightening torque applied to the male screw is consumed by the contact friction between the male screw and the female screw. Therefore, even if the tightening torque is adjusted, the axial force of the taper screw does not always reach the target value. Accordingly, the fastening force varies, and as described above, it has been impossible to reliably avoid damage to the joint member due to overtightening or leakage of internal fluid due to insufficient fastening.
In the method of marking the taper screw with the prescribed angle, there are fastening members that cannot be marked, and therefore, the method is not applicable to all taper screws, and there is a problem that work efficiency is lowered.
Accordingly, an object of the present invention is to provide a fastening force management method and apparatus for a taper screw that can easily and accurately manage a fastening force in view of the above-described problems of the prior art.

そこで、本発明はかかる課題を解決するために、中空円柱状の締結部の内周面に形成されたテーパめねじ部と、該テーパねめじ部に螺合されるテーパおねじ部又は平行おねじ部との締結力を管理するテーパねじの締結力管理方法において、
前記締結部の外径が拡径した弾性変形量を検出し、締結部外径の弾性変形量と締結力の比例関係に基づいて前記検出した弾性変形量を締結力に換算して前記テーパめねじ部と前記テーパおねじ部又は平行おねじ部の締結力を管理することを特徴とする。
Therefore, in order to solve such a problem, the present invention provides a tapered female screw portion formed on the inner peripheral surface of the hollow cylindrical fastening portion and a tapered male screw portion or a parallel male screw portion screwed into the tapered screw portion. In the fastening force management method of the taper screw that manages the fastening force with the threaded portion,
The amount of elastic deformation in which the outer diameter of the fastening portion is increased is detected, and the detected amount of elastic deformation is converted into a fastening force based on the proportional relationship between the amount of elastic deformation of the fastening portion outer diameter and the fastening force, and the taper is performed. The fastening force between the threaded portion and the tapered male threaded portion or the parallel male threaded portion is managed.

本発明によれば、おねじ部を螺合することによりめねじ部が拡径し、締結部が弾性変形した弾性変形量を検出し、弾性変形量と締結力の比例関係に基づいて前記検出した弾性変形量から締結力を換算し、めねじ部とおねじ部の締結力を管理することにより、簡単に且つ高精度で締結力を管理することが可能となる。従って、この管理方法を用いることにより、テーパねじの締め過ぎによる締結部材の破損や締め付け不足による内部流体の漏れを確実に回避することができる。   According to the present invention, the internal thread portion is expanded by screwing the external thread portion, the elastic deformation amount of the fastening portion elastically deformed is detected, and the detection is performed based on the proportional relationship between the elastic deformation amount and the fastening force. By converting the fastening force from the amount of elastic deformation and managing the fastening force of the female screw portion and the male screw portion, the fastening force can be managed easily and with high accuracy. Therefore, by using this management method, it is possible to reliably avoid damage to the fastening member due to excessive tightening of the taper screw and leakage of internal fluid due to insufficient tightening.

さらに、前記締結部の外径の弾性変形量をレーザ変位計で検出することを特徴とする。
このように、締結部の弾性変形量の検出にレーザ変位計を用いることにより、非接触で検出できるためテーパねじの揺れに影響されず高精度で弾性変形量を検出することが可能となる。
Furthermore, the elastic deformation amount of the outer diameter of the fastening portion is detected by a laser displacement meter.
In this way, by using the laser displacement meter for detecting the elastic deformation amount of the fastening portion, it is possible to detect without contact, so that the elastic deformation amount can be detected with high accuracy without being affected by the vibration of the taper screw.

また、中空円柱状の締結部の内周面に形成されたテーパめねじ部と、該テーパねめじ部に螺合されるテーパおねじ部又は平行おねじ部との締結力を管理するテーパねじの締結力管理装置において、
前記締結部の外径が拡径した弾性変形量を検出する検出手段と、締結部外径の弾性変形量と締結力の比例関係が記憶された制御装置と、を備え、
前記制御装置により、前記締結部外径の弾性変形量と締結力の比例関係に基づいて、前記検出手段にて検出された弾性変形量を締結力に換算して出力することを特徴とする。
Further, a taper screw that manages a fastening force between a taper female screw portion formed on the inner peripheral surface of the hollow cylindrical fastening portion and a taper male screw portion or a parallel male screw portion screwed to the taper screw portion. In the fastening force management device,
A detecting means for detecting the amount of elastic deformation in which the outer diameter of the fastening portion is expanded; and a control device in which the proportional relationship between the amount of elastic deformation of the fastening portion outer diameter and the fastening force is stored.
The control device converts the amount of elastic deformation detected by the detecting means into a fastening force based on the proportional relationship between the amount of elastic deformation of the fastening portion outer diameter and the fastening force, and outputs the result.

さらに、前記検出手段が、前記締結部の外径の弾性変形量を検出するレーザ変位計であることを特徴とする。
さらにまた、前記テーパねじが、配管継手に設けられた配管用テーパねじであることを特徴とする。
Furthermore, the detection means is a laser displacement meter that detects an elastic deformation amount of an outer diameter of the fastening portion.
Furthermore, the taper screw is a taper screw for piping provided in a pipe joint.

以上記載のごとく本発明によれば、締結部が拡径した弾性変形量を検出し、弾性変形量と締結力の比例関係に基づいて前記検出した弾性変形量から締結力を換算し、めねじ部とおねじ部の締結力を管理することにより、簡単に且つ高精度で締結力を管理することが可能となる。
また、締結部の弾性変形量の検出にレーザ変位計を用いることにより、非接触で検出できるためテーパねじの揺れに影響されず高精度で弾性変形量を検出することが可能となる。
As described above, according to the present invention, the amount of elastic deformation in which the fastening portion has expanded is detected, the fastening force is converted from the detected amount of elastic deformation based on the proportional relationship between the amount of elastic deformation and the fastening force, and the female screw By managing the fastening force between the part and the external thread part, it is possible to manage the fastening force easily and with high accuracy.
In addition, by using a laser displacement meter to detect the elastic deformation amount of the fastening portion, non-contact detection is possible, so that the elastic deformation amount can be detected with high accuracy without being affected by the taper screw sway.

本発明の実施例に係るテーパねじの締結力管理方法を説明する図である。It is a figure explaining the fastening force management method of the taper screw which concerns on the Example of this invention. 本発明の他の実施例に係るテーパねじの締結力管理方法を説明する図である。It is a figure explaining the fastening force management method of the taper screw which concerns on the other Example of this invention. 弾性変形量と締結力の関係を模式的に示すグラフである。It is a graph which shows typically the relation between the amount of elastic deformation, and fastening force. 従来の配管継手を示す図で、(a)はT字型配管継手部材の側面図、(b)はストレート型配管継手部材の側面図である。It is a figure which shows the conventional piping coupling, (a) is a side view of a T-shaped piping coupling member, (b) is a side view of a straight type piping coupling member. 従来におけるテーパねじの締結方法を説明する図で、(a)は側面図、(b)は(a)のA矢視図である。It is a figure explaining the fastening method of the conventional taper screw, (a) is a side view, (b) is an A arrow view of (a).

以下、図面を参照して本発明の好適な実施例を例示的に詳しく説明する。但しこの実施例に記載されている構成部品の寸法、材質、形状、その相対的配置等は特に特定的な記載がない限りは、この発明の範囲をそれに限定する趣旨ではなく、単なる説明例に過ぎない。   Hereinafter, exemplary embodiments of the present invention will be described in detail with reference to the drawings. However, the dimensions, materials, shapes, relative arrangements, and the like of the components described in this embodiment are not intended to limit the scope of the present invention unless otherwise specified, but are merely illustrative examples. Not too much.

本実施形態は、中空円柱状の締結部の内周面に形成されたテーパめねじ部と、テーパねめじ部に螺合されるテーパおねじ部又は平行おねじ部との締結力を管理する方法及び装置であり、締結部の外径が拡径した弾性変形量を検出し、締結部外径の弾性変形量と締結力の比例関係に基づいて、前記検出した弾性変形量を締結力に換算して前記テーパめねじと前記テーパおねじ又は平行おねじの締結力を管理する構成となっている。
本実施形態は、好適には、配管継手が備える配管用テーパねじに用いられ、例えば、油圧配管、水配管、エアー配管等のような流体が通流する各種配管に用いられる。
In the present embodiment, the fastening force between the tapered female thread portion formed on the inner peripheral surface of the hollow cylindrical fastening portion and the tapered male thread portion or parallel male thread portion screwed into the tapered thread portion is managed. A method and an apparatus for detecting an elastic deformation amount in which an outer diameter of a fastening portion is expanded, and using the detected elastic deformation amount as a fastening force based on a proportional relationship between the elastic deformation amount of the fastening portion outer diameter and a fastening force. It is the structure which manages the fastening force of the taper female screw and the taper male screw or the parallel male screw in terms of conversion.
This embodiment is preferably used for a pipe taper screw provided in a pipe joint, and is used for various pipes through which fluid flows, such as hydraulic pipes, water pipes, air pipes, and the like.

図1を参照して、本実施例に係るテーパねじの締結力管理装置の構成を説明する。
図1に示すように、中空円柱状の配管部材3の端部内面にテーパめねじ部31、32が設けられている。一側のテーパめねじ部32が設けられた配管部材2の端部部位を締結部3aと称する。配管部材3は、固定部材10により固定される。配管部材3の固定時、テーパめねじ部32が設けられた締結部3aは、固定部材10から突出するように配置される。
他の配管部材2の端部外周面にはテーパおねじ部21が設けられている。配管部材2に設けられるテーパおねじ部21は、平行おねじ部としてもよい。また、配管部材2には、テーパおねじ部21より基部側で該テーパおねじ部21より離間させた位置に頭部22が設けられている。
テーパねじ1は、前記テーパめねじ部32と前記テーパおねじ部21とから構成される。
With reference to FIG. 1, the structure of the fastening force management apparatus of the taper screw which concerns on a present Example is demonstrated.
As shown in FIG. 1, tapered female thread portions 31 and 32 are provided on the inner surface of the end of the hollow cylindrical pipe member 3. The end portion of the piping member 2 provided with the one side taper female thread portion 32 is referred to as a fastening portion 3a. The piping member 3 is fixed by a fixing member 10. When the piping member 3 is fixed, the fastening portion 3 a provided with the tapered female screw portion 32 is disposed so as to protrude from the fixing member 10.
A tapered male screw portion 21 is provided on the outer peripheral surface of the end portion of the other piping member 2. The taper male screw portion 21 provided in the piping member 2 may be a parallel male screw portion. Further, the piping member 2 is provided with a head portion 22 at a position separated from the tapered male screw portion 21 on the base side from the tapered male screw portion 21.
The taper screw 1 includes the taper female screw portion 32 and the taper male screw portion 21.

また、本実施例では、テーパめねじ部32が設けられた締結部3aの外径の弾性変形量を検出する検出手段を備える。該検出手段は、接触式又は非接触式の何れを用いてもよいが、好適には図1に示すように非接触式のレーザ変位計5を用いる。レーザ変位計5は、投光部と受光部を有するセンサ6、7と、該センサからの信号を基に変位量を演算する制御装置8とを備える周知の装置であり、例えば、測定対象物にレーザ光を照射し、該測定対象物から拡散反射された光線を、受光部を通して光電変換素子上に結像させ、三角測量法により測定物の位置を演算し、変位量を求めるものである。
別の検出手段として、図2に示すように画像検出手段を用いてもよい。これは、締結部3aを撮像する撮像装置11と、該撮像した画像11が入力される制御装置12とを備え、撮像装置11にて撮像した時系列の画像データを制御装置12にて画像処理し、締結部3aの弾性変形量を求めるものである。
Further, in the present embodiment, a detecting means for detecting the elastic deformation amount of the outer diameter of the fastening portion 3a provided with the tapered female screw portion 32 is provided. The detection means may be either a contact type or a non-contact type, but preferably uses a non-contact type laser displacement meter 5 as shown in FIG. The laser displacement meter 5 is a well-known device including sensors 6 and 7 having a light projecting unit and a light receiving unit, and a control device 8 that calculates a displacement amount based on a signal from the sensor. Is irradiated with laser light, and the light diffusely reflected from the measurement object is imaged on the photoelectric conversion element through the light receiving portion, and the position of the measurement object is calculated by the triangulation method to obtain the displacement amount. .
As another detection means, an image detection means may be used as shown in FIG. This includes an imaging device 11 that images the fastening portion 3a and a control device 12 to which the captured image 11 is input, and the control device 12 performs image processing on time-series image data captured by the imaging device 11. Then, the amount of elastic deformation of the fastening portion 3a is obtained.

次いで、本実施例に係るテーパねじの締結力管理方法を説明する。
まず、テーパめねじ部32が設けられた締結部3aが突出するように固定部材10により配管部材3を固定する。そして、配管部材2のテーパおねじ部21をテーパめねじ部32に嵌合させ、配管部材2の頭部22をレンチ(図示略)により図中矢印方向に回転させ、テーパおねじ部21をテーパめねじ部32に螺合する。これにより、テーパおねじ部21の外周面がテーパめねじ部32の内面を外側に押圧し、締結部3aは弾性変形して拡径する。拡径した締結部3a’の外周面は図中破線で示す状態となり、螺合前の締結部3aの外径Dから螺合後の外径D’まで弾性変形する。締結部3a’の弾性変形量は(D’−D)となる。
Next, a method for managing the fastening force of the taper screw according to the present embodiment will be described.
First, the piping member 3 is fixed by the fixing member 10 so that the fastening portion 3a provided with the tapered female screw portion 32 protrudes. And the taper male thread part 21 of the piping member 2 is fitted to the taper female thread part 32, the head part 22 of the piping member 2 is rotated in the direction of the arrow in the drawing by a wrench (not shown), and the taper male thread part 21 is moved. The taper female thread portion 32 is screwed. Thereby, the outer peripheral surface of the taper male screw portion 21 presses the inner surface of the taper female screw portion 32 to the outside, and the fastening portion 3a is elastically deformed to expand its diameter. The outer peripheral surface of the enlarged fastening portion 3a 'is in a state indicated by a broken line in the drawing, and is elastically deformed from the outer diameter D of the fastening portion 3a before screwing to the outer diameter D' after screwing. The elastic deformation amount of the fastening portion 3a ′ is (D′−D).

レーザ変位計5により弾性変形量(D’−D)を検出し、弾性変形量と締結力の比例関係に基づいて、前記検出した弾性変形量から締結力を換算して求める。
ここで、弾性変形量と締結力の関係を図3のグラフに示す。同グラフに示されるように、弾性変形量と締結力は比例関係を有する。即ち、弾性変形量が増加するとこれに比例的に締結力が増加する関係となっている。締結力とは、ねじ締付けにより発生するテーパおねじ部21の軸力である。
The amount of elastic deformation (D′−D) is detected by the laser displacement meter 5, and the fastening force is calculated from the detected amount of elastic deformation based on the proportional relationship between the amount of elastic deformation and the fastening force.
Here, the relationship between the amount of elastic deformation and the fastening force is shown in the graph of FIG. As shown in the graph, the amount of elastic deformation and the fastening force have a proportional relationship. That is, when the amount of elastic deformation increases, the fastening force increases proportionally. The fastening force is an axial force of the tapered male thread portion 21 generated by screw tightening.

従って、この弾性変形量と締結力の比例関係に基づき、レーザ変位計5により検出した弾性変形量から締結力を換算して求めることが可能となる。予め目標とする締結力が得られる弾性変形量を算出しておき、この弾性変形量が得られるまでおねじ部21を回転させるようにしてもよいし、制御装置8に弾性変形量と締結力の関係を記憶させておき、レーザ変位計5により検出した弾性変形量を制御装置8に入力し、この弾性変形量を締結力に換算して出力し、出力値に基づいて目標とする締結力が得られるまでおねじ部21を回転させるようにしてもよい。   Therefore, based on the proportional relationship between the elastic deformation amount and the fastening force, the fastening force can be obtained by converting the elastic deformation amount detected by the laser displacement meter 5. The amount of elastic deformation at which a target fastening force can be obtained is calculated in advance, and the external thread portion 21 may be rotated until this amount of elastic deformation is obtained. The elastic deformation amount detected by the laser displacement meter 5 is input to the control device 8, the elastic deformation amount is converted into a fastening force and output, and the target fastening force is based on the output value. You may make it rotate the external thread part 21 until is obtained.

このように本実施例によれば、めねじ部32が設けられた締結部3aの弾性変形量を検出し、弾性変形量と締結力の比例関係に基づいて前記検出した弾性変形量から締結力を換算してめねじ部32とおねじ部21の締結力を管理することにより、簡単に且つ高精度で締結力を管理することが可能となる。従って、この管理方法及び装置を用いることにより、テーパねじ1の締め過ぎによる締結部材の破損や締め付け不足による内部流体の漏れを確実に回避することができる。
また、締結部3aの弾性変形量の検出にレーザ変位計5を用いることにより、非接触で検出可能となるため、テーパねじの揺れに影響されず高精度で弾性変形量を検出することが可能となる。
Thus, according to the present embodiment, the amount of elastic deformation of the fastening portion 3a provided with the female screw portion 32 is detected, and the fastening force is determined from the detected amount of elastic deformation based on the proportional relationship between the amount of elastic deformation and the fastening force. By converting the above and managing the fastening force of the female screw portion 32 and the male screw portion 21, it becomes possible to easily and accurately manage the fastening force. Therefore, by using this management method and apparatus, it is possible to reliably avoid damage to the fastening member due to excessive tightening of the taper screw 1 and leakage of internal fluid due to insufficient tightening.
In addition, since the laser displacement meter 5 is used for detecting the elastic deformation amount of the fastening portion 3a, the elastic deformation amount can be detected with high accuracy without being affected by the vibration of the taper screw. It becomes.

本発明は、テーパねじの締結力を簡単に且つ高精度で管理することが可能であるため、油圧配管、水配管、エアー配管等のように流体が通流する各種配管の締結に好適に用いることができる。   Since the fastening force of the taper screw can be managed easily and with high accuracy, the present invention is suitably used for fastening various pipes through which fluid flows, such as hydraulic pipes, water pipes, air pipes, etc. be able to.

1 テーパねじ
2、3 配管部材
3a 締結部
5 レーザ変位計
6、7 センサ
8 制御装置
10 固定部材
11 撮像装置
12 制御装置
21 おねじ部
31、32 めねじ部
DESCRIPTION OF SYMBOLS 1 Tapered screw 2, 3 Piping member 3a Fastening part 5 Laser displacement meter 6, 7 Sensor 8 Control apparatus 10 Fixing member 11 Imaging apparatus 12 Control apparatus 21 Male thread part 31, 32 Female thread part

Claims (5)

中空円柱状の締結部の内周面に形成されたテーパめねじ部と、該テーパねめじ部に螺合されるテーパおねじ部又は平行おねじ部との締結力を管理するテーパねじの締結力管理方法において、
前記締結部の外径が拡径した弾性変形量を検出し、締結部外径の弾性変形量と締結力の比例関係に基づいて前記検出した弾性変形量を締結力に換算して前記テーパめねじ部と前記テーパおねじ部又は平行おねじ部の締結力を管理することを特徴とするテーパねじの締結力管理方法。
Fastening of the taper screw that manages the fastening force between the taper female thread portion formed on the inner peripheral surface of the hollow cylindrical fastening portion and the taper male screw portion or the parallel male screw portion screwed to the taper thread portion In the power management method,
The amount of elastic deformation in which the outer diameter of the fastening portion is increased is detected, and the detected amount of elastic deformation is converted into a fastening force based on the proportional relationship between the amount of elastic deformation of the fastening portion outer diameter and the fastening force, and the taper is performed. A method for managing a fastening force of a taper screw, comprising managing a fastening force between a screw portion and the tapered male screw portion or the parallel male screw portion.
前記締結部の外径の弾性変形量をレーザ変位計で検出することを特徴とする請求項1記載のテーパねじの締結力管理方法。   2. The method for managing a fastening force of a taper screw according to claim 1, wherein an elastic deformation amount of the outer diameter of the fastening portion is detected by a laser displacement meter. 中空円柱状の締結部の内周面に形成されたテーパめねじ部と、該テーパねめじ部に螺合されるテーパおねじ部又は平行おねじ部との締結力を管理するテーパねじの締結力管理装置において、
前記締結部の外径が拡径した弾性変形量を検出する検出手段と、締結部外径の弾性変形量と締結力の比例関係が記憶された制御装置と、を備え、
前記制御装置により、前記締結部外径の弾性変形量と締結力の比例関係に基づいて、前記検出手段にて検出された弾性変形量を締結力に換算して出力することを特徴とするテーパねじの締結力管理装置。
Fastening of a taper screw that manages the fastening force between a taper female screw portion formed on the inner peripheral surface of a hollow cylindrical fastening portion and a taper male screw portion or a parallel male screw portion screwed into the taper screw portion. In the power management device,
Detection means for detecting the amount of elastic deformation in which the outer diameter of the fastening portion is expanded, and a control device in which the proportional relationship between the amount of elastic deformation of the fastening portion outer diameter and the fastening force is stored,
A taper characterized in that the control device converts the elastic deformation detected by the detecting means into a fastening force based on the proportional relationship between the elastic deformation of the fastening portion outer diameter and the fastening force, and outputs the fastening force. Screw fastening force management device.
前記検出手段が、前記締結部の外径の弾性変形量を検出するレーザ変位計であることを特徴とする請求項3記載のテーパねじの締結力管理装置。   4. The taper screw fastening force management device according to claim 3, wherein the detecting means is a laser displacement meter that detects an elastic deformation amount of an outer diameter of the fastening portion. 前記テーパねじが、配管継手に設けられた配管用テーパねじであることを特徴とする請求項3記載のテーパねじの締結力管理装置。   4. The taper screw fastening force management device according to claim 3, wherein the taper screw is a pipe taper screw provided in a pipe joint.
JP2009038161A 2009-02-20 2009-02-20 Fastening force management method and management device of tapered screw Withdrawn JP2010190859A (en)

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US8835931B2 (en) 2010-04-16 2014-09-16 Osram Opto Semiconductors Gmbh Optoelectronic component and method for producing an optoelectronic component
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8835931B2 (en) 2010-04-16 2014-09-16 Osram Opto Semiconductors Gmbh Optoelectronic component and method for producing an optoelectronic component
WO2012026610A1 (en) 2010-08-27 2012-03-01 古河電気工業株式会社 Copper alloy sheet and manufacturing method for same
JP2015099025A (en) * 2013-11-18 2015-05-28 ボッシュ株式会社 Strain measuring sensor and axial force measuring device
KR20190035829A (en) * 2016-09-21 2019-04-03 니혼 덴산 고빠루 덴시 가부시키가이샤 Angle sensor
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