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JPH04102050A - Method for inspecting o-ring - Google Patents

Method for inspecting o-ring

Info

Publication number
JPH04102050A
JPH04102050A JP2220401A JP22040190A JPH04102050A JP H04102050 A JPH04102050 A JP H04102050A JP 2220401 A JP2220401 A JP 2220401A JP 22040190 A JP22040190 A JP 22040190A JP H04102050 A JPH04102050 A JP H04102050A
Authority
JP
Japan
Prior art keywords
ring
image
window
circle
center
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.)
Granted
Application number
JP2220401A
Other languages
Japanese (ja)
Other versions
JP2981762B2 (en
Inventor
Toru Kashioka
亨 柏岡
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 Cable Industries Ltd
Original Assignee
Mitsubishi Cable 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 Cable Industries Ltd filed Critical Mitsubishi Cable Industries Ltd
Priority to JP2220401A priority Critical patent/JP2981762B2/en
Publication of JPH04102050A publication Critical patent/JPH04102050A/en
Application granted granted Critical
Publication of JP2981762B2 publication Critical patent/JP2981762B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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  • Investigating Materials By The Use Of Optical Means Adapted For Particular Applications (AREA)
  • Image Processing (AREA)
  • Closed-Circuit Television Systems (AREA)
  • Image Analysis (AREA)
  • Length Measuring Devices By Optical Means (AREA)

Abstract

PURPOSE:To automatically inspect with high efficiency and high accuracy by binary coding an image of an O-ring and making comparison as to whether its outer periphery and its inner periphery are within predetermined ranges of an outer circle and an inner circle of a double-circle window as a reference pattern. CONSTITUTION:When an O-ring 1 is supplied onto a semitransparent glass piece 2, a CCD camera 4 acquires its image. This is subjected to image processing by an image processing means 7 and binary coded. Sizes of a double-circle window comprising concentric outer and inner circles are input from a control unit 38 to the processing means 7 to create a window as a reference pattern. An arithmetic means 10 displays 11 the center of gravity of the ring image and the center of the window while the centers are aligned with each other and also determines whether the ring is good or defective as to whether an outer periphery and an inner periphery of the ring image are within predetermined ranges of the outer circle and the inner circle of the window. For example, the number of pixels outside the predetermined range is calculated and when the value is a predetermined value or lower, the ring is determined to be good. An actuator 16 of a selecting and discharging means P carries the rings 1 in different directions by an instruction signal 15 depending on whether it is good or defective.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は0リング検査方法に関する。[Detailed description of the invention] [Industrial application field] The present invention relates to an O-ring inspection method.

〔従来の技術] 一般に、流体機器類や配管等のシール材として使用され
るOリングは、金型にて加熱加圧して、加硫を行なって
成型されるが、その内周面及び外周面からパリが突出し
ていたり、又は、切欠が存在すると、シール性能が発揮
出来ない不良品となる。
[Prior Art] Generally, O-rings used as sealing materials for fluid equipment, piping, etc. are molded by heating and pressurizing in a mold and vulcanizing. If there are protruding holes or notches, the product will be defective and cannot exhibit its sealing performance.

従来、このようなOリングの外観の検査は、作業者が直
接目視にて行なっていた。
Conventionally, the appearance of such an O-ring has been inspected directly by an operator.

(発明が解決しようとする課題〕 上述の従来の検査方法では、作業者の見落としがあり、
また、極めて作業能率が低かった。
(Problem to be solved by the invention) In the conventional inspection method described above, there is a possibility of operator oversight.
In addition, work efficiency was extremely low.

本発明の目的は、Oリングの外観検査として、特にシー
ル性能に大きな影響を与える内周面と外周面のパリと切
欠の有無検査を、自動的に高能率に、かつ高精度に、行
なうことを目的とする。
The purpose of the present invention is to automatically and efficiently inspect the appearance of O-rings for the presence of cracks and notches on the inner and outer circumferential surfaces, which have a great impact on sealing performance. With the goal.

〔課題を解決するための手段〕[Means to solve the problem]

本発明に係る0リング検査方法は、固体撮像素子カメラ
にてOリングの映像を取り込み、映像を画像処理して2
値化し、0リングの外周と内周に夫々対応する同心円状
の2重円形ウィンドウの中心と、2値化した0リング画
像の重心とを一致させた状態で、0リング画像の外周と
内周が上記円形ウィンドウの外円と内円の所定幅内に有
るか否かにより、良否を判別する方法である。
The O-ring inspection method according to the present invention captures an image of an O-ring with a solid-state image sensor camera, processes the image, and then performs two
The center of the concentric double circular window corresponding to the outer and inner circumferences of the 0-ring is aligned with the center of gravity of the binarized 0-ring image, and the outer and inner peripheries of the 0-ring image are This method determines whether the window is good or bad based on whether or not the window is within a predetermined width between the outer circle and the inner circle of the circular window.

〔作 用〕[For production]

Oリングの映像を2値化することによって、その後、数
値データとして処理し、加工しやすくなる。即ち、その
後、2値化した0リング画像の重心を、ウィンドウの中
心に一致するように、位置ずれ修正を容易に行なうこと
ができる。
By converting the O-ring image into a binary image, it can then be processed as numerical data, making it easier to process. That is, after that, the positional deviation can be easily corrected so that the center of gravity of the binarized O-ring image coincides with the center of the window.

ウィンドウは同心円状の外円と内円から成る2重円形ウ
ィンドウであるから、0リング(画像)の外周と内周の
バリ及び切欠を同時にチエツクできる。
Since the window is a double circular window consisting of a concentric outer circle and an inner circle, it is possible to simultaneously check for burrs and notches on the outer and inner circumferences of the O-ring (image).

〔実施例〕〔Example〕

以下、図示の実施例に基づき本発明を詳説する。 Hereinafter, the present invention will be explained in detail based on illustrated embodiments.

第5図に示すブロック図に於て、1は被検査物としての
0リングであり、検査ゾーンAでは半透明ガラス2の上
面に載置され、(第3図のように)下方から照明器3に
て照明され、上記Oリングlの真上には、0リングlの
透過映像を取り込むための固体撮像素子(CCD)カメ
ラ4が設けられている。
In the block diagram shown in FIG. 5, 1 is an O-ring as an object to be inspected, which is placed on the upper surface of the semi-transparent glass 2 in the inspection zone A, and is illuminated from below by an illuminator (as shown in FIG. 3). A solid-state imaging device (CCD) camera 4 is provided directly above the O-ring 1 to capture a transmitted image of the O-ring 1.

5はOリング1が後述の方法にて供給されて、半透明ガ
ラス2上に存在することを検知するセンサである。6は
ストロボ制御回路であって、センサ5からの検出信号が
入力されると、照明器3に発光すべき信号を送る。
Reference numeral 5 denotes a sensor that detects that the O-ring 1 is supplied by a method described later and is present on the semi-transparent glass 2. A strobe control circuit 6 sends a signal to the illuminator 3 to emit light when a detection signal from the sensor 5 is input.

7は、固体撮像素子カメラ4にて取り込んだ映像を画像
処理して2値化する画像処理手段である。
Reference numeral 7 denotes an image processing means that processes the video captured by the solid-state image pickup device camera 4 and converts it into a binarized image.

38は操作部であって、第7図に示すように、同心円状
の外円8と内円9から成る2重置形ウィンドウWの寸法
を操作キーにて入力して、ウィンドウWを作成する。
Reference numeral 38 denotes an operation unit, and as shown in FIG. 7, dimensions of a double-positioned window W consisting of a concentric outer circle 8 and an inner circle 9 are input using operation keys to create a window W. .

10は演算手段であって、2値化したOリング画像G(
第7図と第8図参照)の重心01を数値にて演算する重
心計測機能、及び、基準パターンとしての上記ウィンド
ウWの中心0゜と、このOリング画像Gの重心OIとを
、一致させる位置ずれ修正機能を、具備する。11は表
示手段であって、(第7図や第8図に示したような)2
本日形つィンドウW1及び0リング画像G等をデイスプ
レィする。さらに、上記演算手段10は、(第8図に示
すように)0リング画像Gの重心0.を2重置形ウィン
ドウWの中心Osに一致させた状態で、0リング画像G
の外周12と内周13が、ウィンドウWの外円8と内円
9の所定幅Wl 、W=内に有るか否かによって、良否
を判別する機能も具備している。
10 is a calculation means, which calculates the binarized O-ring image G (
The center of gravity measurement function numerically calculates the center of gravity 01 (see Figures 7 and 8), and the center 0° of the window W as a reference pattern matches the center of gravity OI of this O-ring image G. Equipped with positional deviation correction function. 11 is a display means (as shown in FIGS. 7 and 8) 2
Displays today's form window W1, 0 ring image G, etc. Furthermore, the calculation means 10 calculates the center of gravity 0 of the 0 ring image G (as shown in FIG. 8). The 0 ring image G is aligned with the center Os of the double-mounted window W.
It also has a function to determine whether the window W is good or bad depending on whether the outer periphery 12 and the inner periphery 13 of the window W are within a predetermined width Wl, W= of the outer circle 8 and the inner circle 9 of the window W.

第8図に於て、さらに詳しく説明すれば、前記中心0.
と重心01とが一致して重なりあった状態にて、2値化
した0リング画像Gの外周12には、バリBと切欠Cが
存在し、かつ、内周13にも、バリBと切欠Cが存在す
る場合を例示しているが、外周12のバリBは、所定幅
W、の外円(ウィンドウ)8の外周線8aを越えて外方
へはみ出している。良否判別の基準の設定法としては、
この外周線8aに接すれば不良と判定するように設定す
ることもできるが、例えば、第9図に於て、はみ出し部
14の面積が何−霞2以下ならば良いというように設定
するも望ましい、後者の場合には、極めて微小の方眼に
区画したドツト   画素   を計数して、上記はみ
出し部14の面積(画素数)を計算するのが良い。
To explain in more detail in FIG. 8, the center 0.
With the center of gravity 01 coinciding and overlapping, there are burrs B and notches C on the outer periphery 12 of the binarized 0-ring image G, and burrs B and notches C also exist on the inner periphery 13. Although the case where C exists is illustrated, the burr B on the outer periphery 12 protrudes outward beyond the outer periphery line 8a of the outer circle (window) 8 having a predetermined width W. The method for setting standards for determining pass/fail is as follows:
It can be set so that if it touches this outer circumferential line 8a, it is determined to be defective, but it is also desirable to set it so that, for example, in FIG. In the latter case, it is preferable to calculate the area (number of pixels) of the protruding portion 14 by counting the dots (pixels) divided into extremely small grids.

また、第8図に於て、外周12の切欠Cは、所定幅W1
の外円(ウィンドウ)8の内周線8bを越えて内方へ入
り込む。また、内周13のハリBと切欠Cは、所定幅w
2の内円(ウィンドウ)9の内周線9bと外周線9aを
夫々越えて、夫々内方・外方へ入り込む、この時の良否
判断は、前述の外周12のバリBの場合と同様に、行な
う。
In addition, in FIG. 8, the notch C on the outer periphery 12 has a predetermined width W1.
It goes inward beyond the inner circumferential line 8b of the outer circle (window) 8. Moreover, the tension B and the notch C of the inner circumference 13 have a predetermined width w.
The pass/fail judgment at this time is the same as in the case of the burr B on the outer periphery 12 described above. , do it.

本発明の0リング検査方法は、上述の第5図等、及び、
フローチャート図にて示す第6図で、明らかなように、
固体撮像素子カメラ4にてOリングlの映像を取り込み
、これを画像処理手段7で画像処理して、2債化し、2
重置形ウィンドウWの中心O0と、2値化したOリング
画像Gの重心0、とを、一致させ、その状態で、0リン
グ画像Gの外周12と内周13が、2重置形ウィンドウ
Wの外円12と内円13の所定幅W+ 、W、内に有る
か否か上述の僅かの面積(方眼ドツトの僅かの数)を許
容する場合を含む   によって、良否を判別する方法
である。
The O-ring inspection method of the present invention includes the above-mentioned FIG. 5, etc., and
As is clear from FIG. 6, which is a flowchart,
The solid-state image sensor camera 4 captures an image of the O-ring l, and the image processing means 7 processes the image to convert it into 2 bonds.
The center O0 of the superimposed window W and the center of gravity 0 of the binarized O-ring image G are made to match, and in that state, the outer periphery 12 and inner periphery 13 of the O-ring image G become the double superimposed window. This is a method of determining pass/fail based on whether or not it is within the predetermined width W+ of the outer circle 12 and inner circle 13 of W, including the case where the above-mentioned small area (a small number of grid dots) is allowed. .

なお、第5図に於て、その後、演算手段10からは、良
否判断に基づく指令信号15が選別排出手段Pのアクチ
ュエータ16に送られ、このアクチュエータ16が、検
査後の0リング1を、良品と不良品に応じて、異なる排
出方向へ搬出する。また、上記ウィンドウWの外円8.
内円9の寸法(及び幅W、、wt )は、検査すべき0
リング1の設計値から予め決定する。又は、正常晶の多
数個のサンプリングによって決定するのが良い。
In FIG. 5, the calculation means 10 then sends a command signal 15 based on the pass/fail judgment to the actuator 16 of the sorting and discharging means P, and this actuator 16 selects the inspected O-ring 1 as a non-defective item. and defective products, they are transported in different discharge directions. Also, the outer circle 8 of the window W.
The dimensions of the inner circle 9 (and the width W,,wt) are 0 to be inspected.
Determine in advance from the design value of ring 1. Alternatively, it is better to determine by sampling a large number of normal crystals.

次に、第1図は0リング検査装置の全体の概略平面図で
あって、17はパーツフィーダであり、0リングが整列
されて供給路18から矢印Eのように送られてくる。
Next, FIG. 1 is a schematic plan view of the entire O-ring inspection apparatus, in which 17 is a parts feeder, and O-rings are aligned and sent from a supply path 18 as shown by arrow E.

第1図とその要部を示す第2図に於て、供給路18の下
流端に、ゲート19が設けられ、直交方向に往復動する
板状り字形ブツシャ20を有する流体シリンダ21が図
のように付設されている。このブツシャ20が仮想線の
ように伸長する位置に前記半透明ガラス2が設けられ、
また、このシリンダ21の伸長方向と略同−線上に、板
状り字形ストッパ22を有する別の流体シリンダ23が
設けられ、相互に接近するように伸長すれば、第2図の
仮想線のように、0リング1を(1個ずつ)半透明ガラ
ス2の中央位置に、セットできる。その後は、第5図に
て説明した如くに検査を行なう。
In FIG. 1 and FIG. 2 showing the main parts thereof, a gate 19 is provided at the downstream end of the supply path 18, and a fluid cylinder 21 having a plate-shaped bushing 20 that reciprocates in the orthogonal direction is shown. It is attached as follows. The semi-transparent glass 2 is provided at a position where the bushing 20 extends like an imaginary line,
Further, another fluid cylinder 23 having a plate-like L-shaped stopper 22 is provided approximately on the same line as the extending direction of this cylinder 21, and when extended so as to approach each other, as shown by the imaginary line in FIG. The O-rings 1 (one at a time) can be set at the center of the translucent glass 2. Thereafter, the inspection is performed as explained in FIG.

24はエアプロー排出口であり、検査が終われば、矢印
Fのようにエアーを噴出して、0リング1を排出口24
へ吹飛ばす。
24 is an air blower outlet, and when the inspection is completed, air is blown out as shown by arrow F, and the O-ring 1 is removed from the outlet 24.
Blow away.

なお、第2図に於て、ゲー目9の下流側(左側)には、
センサ25が設けられていて、ゲート19を通ってブツ
シャ20の位置へ0リング1が送られたことを検出する
。このセンサ25は、ブツシャテーブルに形成した傾斜
スリット26内に配設して、0リング1の寸法に応じて
調整可能である。このセンサ25によって、0リング1
がブツシャ20内へ押出されて来たことを検知すると、
シリンダ21が伸長して、Oリング1を検査ゾーンAへ
送出すのである。
In addition, in Fig. 2, on the downstream side (left side) of game 9,
A sensor 25 is provided to detect the passage of the O-ring 1 through the gate 19 to the position of the bushing 20. This sensor 25 is arranged in an inclined slit 26 formed in the bushing table and can be adjusted according to the dimensions of the O-ring 1. By this sensor 25, the O ring 1
When it is detected that has been pushed out into the butsusha 20,
The cylinder 21 is expanded and the O-ring 1 is delivered to the inspection zone A.

次に、第4図は第1図の左側面拡大一部断面図であって
、前記選別排出手段Pの一例を具体的に示している。つ
まり、排出口24を形成するシュート27の下方開口部
27aに、交互に対応するように、矢印H9にのように
シリンダ等のアクチュエータ16にて往復動する良品、
不良品分類ブロック28が、設けられている。このブロ
ック28の一方ノ通路29を良品用として、良品排出路
30に連通自在とし、他方、別の通路31は不良品用と
して、不良品排出路32に連通自在とする。
Next, FIG. 4 is an enlarged partial sectional view of the left side of FIG. 1, specifically showing an example of the sorting and discharging means P. In other words, good products are reciprocated by an actuator 16 such as a cylinder as shown by the arrow H9 so as to alternately correspond to the lower openings 27a of the chute 27 forming the discharge port 24.
A defective product classification block 28 is provided. One passage 29 of this block 28 is used for non-defective products and can be freely communicated with a non-defective product discharge path 30, while another passage 31 is used for defective products and can be freely communicated with a defective product discharge path 32.

検査が終了すると、第5図に示した演算手段10からの
指令信号15にてアクチュエータ16が作動して、ブロ
ック28が二位置のいずれか一方に切換わり、エアプロ
ーにより吹飛ばされて、排出口24に到達して、落下し
、通路29.31のいずれかから落下して、良品と不良
品に選別される。
When the inspection is completed, the actuator 16 is actuated by the command signal 15 from the calculation means 10 shown in FIG. 24, they fall, fall from either passage 29 or 31, and are sorted into good and defective products.

第10図は全体の変形例を平面図にて示し、パーツフィ
ーダ17及び供給路18は同様であるが、その下流端は
、矢印Mのように連続又は間欠的に回転するターンテー
ブル33を設け、このターンテーブルの外周縁を少なく
とも半透明ガラス板(又はプラスチック板)として、次
々と被検査物としての0リングト・・を載せて回転させ
る。検査ゾーンAでは、第3図、及び第5図〜第9図に
て既に述べた検査方法にて良品と不良品の識別を行なう
、そして、ターンテーブル33の外周縁に沿って、不良
品排出路32と良品排出路30を設ける。前者を検査ゾ
ーンAの近くに配置すると共に、アクチュエータ16に
て径方向へ往復動する誘導板34を付設して、選別排出
手段Pとする。良品の場合は実線の位置に後退し、不良
品の場合には仮想線のように前進して、夫々、良品排出
路30と不良品排出路32に選別できる。なお、35は
固定誘導板である。
FIG. 10 shows an overall modification in a plan view, in which the parts feeder 17 and the supply path 18 are the same, but the downstream end thereof is provided with a turntable 33 that rotates continuously or intermittently as shown by arrow M. The outer periphery of this turntable is made of at least a translucent glass plate (or plastic plate), and objects to be inspected, such as O-rings, are placed one after another and rotated. In the inspection zone A, non-defective products and defective products are identified by the inspection method already described in FIG. 3 and FIGS. 5 to 9. A passage 32 and a good product discharge passage 30 are provided. The former is arranged near the inspection zone A, and is provided with a guide plate 34 that is reciprocated in the radial direction by an actuator 16 to form a sorting and discharging means P. In the case of a good product, it retreats to the position indicated by the solid line, and in the case of a defective product, it moves forward as shown in the imaginary line, and can be sorted into a non-defective product discharge path 30 and a defective product discharge path 32, respectively. Note that 35 is a fixed guide plate.

なお、第6図のフローチャート図では0リング画像Gの
外周12と内周13を順次判定しているが、内周13を
先にして外周12を後に判定しても良いと共に、勿論、
同時に判定するようにするも自由である。また、ウィン
ドウWの外周線8a、9a及び内周線8b、9bを0リ
ング画像Gが僅かに接する(切る)と不良と判定しても
良いが、少しの画素数の侵入(第9図参照)は許容範囲
であると判定するように、設定しても好ましい場合があ
る。
In the flowchart of FIG. 6, the outer circumference 12 and inner circumference 13 of the O-ring image G are sequentially determined, but the inner circumference 13 may be determined first and the outer circumference 12 later.
You are free to decide to judge at the same time. Also, if the O-ring image G slightly touches (cuts) the outer circumferential lines 8a, 9a and inner circumferential lines 8b, 9b of the window W, it may be determined to be defective, but a small number of pixels intrude (see Fig. 9). ) may be preferably set so that it is determined to be within the permissible range.

〔発明の効果〕〔Effect of the invention〕

本発明は上述の構成により、高精度に自動的な0リング
の外観の良否の選別を実現出来て、多量に生産される0
リングを高能率に検査可能となった。
With the above-described configuration, the present invention can realize highly accurate and automatic selection of the appearance of O-rings to determine whether they are good or bad.
Rings can now be inspected with high efficiency.

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

第1図は本発明に用いられる装置の一例を示す簡略平面
図、第2図は第1図の要部拡大図、第3図は要部側面図
、第4図は要部拡大−破断面側面図、第5図は本発明の
一実施例を示すブロック図、第6図はフローチャート図
、第7図と第8図と第9図は説明図、第10図は第1図
に代わる変形例の簡略平面図である。 1・・・0リング、4・・・カメラ、8・・・外円、9
・・・内円、12・・・外周、13・・・内周、W、、
wt・・・幅、W・・・2重円形ウィンドウ、G・・・
0リング画像、0.・・・中心、0.・・・重心。 特 許 出 願 人  三菱電線工業株式会社第8図 99図 第10図
Fig. 1 is a simplified plan view showing an example of the device used in the present invention, Fig. 2 is an enlarged view of the main part of Fig. 1, Fig. 3 is a side view of the main part, and Fig. 4 is an enlarged view of the main part - fractured surface. 5 is a block diagram showing one embodiment of the present invention, FIG. 6 is a flowchart diagram, FIGS. 7, 8, and 9 are explanatory diagrams, and FIG. 10 is a modification in place of FIG. 1. FIG. 3 is a simplified plan view of an example. 1...0 ring, 4...camera, 8...outer circle, 9
...Inner circle, 12...Outer circumference, 13...Inner circumference, W...
wt...width, W...double circular window, G...
0 ring image, 0. ...Center, 0. ...center of gravity. Patent applicant: Mitsubishi Cable Industries, Ltd. Figure 8, 99, Figure 10

Claims (1)

【特許請求の範囲】[Claims] 1、固体撮像素子カメラにてOリングの映像を取り込み
、映像を画像処理して2値化し、Oリングの外周と内周
に夫々対応する同心円状の2重円形ウィンドウの中心と
、2値化したOリング画像の重心とを一致させた状態で
、Oリング画像の外周と内周が上記円形ウィンドウの外
円と内円の所定幅内に有るか否かにより、良否を判別す
ることを特徴とするOリング検査方法。
1. Capture an image of the O-ring with a solid-state image sensor camera, process the image and convert it into a binary image, and then identify the center of a concentric double circular window corresponding to the outer and inner periphery of the O-ring, respectively. The quality of the O-ring image is determined based on whether the outer circumference and inner circumference of the O-ring image are within a predetermined width of the outer circle and the inner circle of the circular window, with the center of gravity of the O-ring image aligned with the center of gravity of the O-ring image. O-ring inspection method.
JP2220401A 1990-08-21 1990-08-21 O-ring inspection method Expired - Lifetime JP2981762B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2220401A JP2981762B2 (en) 1990-08-21 1990-08-21 O-ring inspection method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2220401A JP2981762B2 (en) 1990-08-21 1990-08-21 O-ring inspection method

Publications (2)

Publication Number Publication Date
JPH04102050A true JPH04102050A (en) 1992-04-03
JP2981762B2 JP2981762B2 (en) 1999-11-22

Family

ID=16750539

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2220401A Expired - Lifetime JP2981762B2 (en) 1990-08-21 1990-08-21 O-ring inspection method

Country Status (1)

Country Link
JP (1) JP2981762B2 (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0604179A2 (en) 1992-12-21 1994-06-29 JOHNSON & JOHNSON VISION PRODUCTS, INC. Ophthalmic lens inspection method and apparatus
JPH06288721A (en) * 1993-04-01 1994-10-18 Masahide Matsuda Automatic inspection device
KR100359994B1 (en) * 2000-11-22 2002-11-07 한국기계연구원 Appartus for testing durability of o-ring use for semiconductor equipment
JP2013063487A (en) * 2011-09-16 2013-04-11 Yaskawa Electric Corp Robot system
CN110470247A (en) * 2019-07-30 2019-11-19 湖北三江航天万山特种车辆有限公司 The detection device and detection method of disc concentricity inside and outside a kind of part

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101421926B1 (en) * 2014-01-28 2014-07-23 진영식 Sorting apparatus of ring for lens modul

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0604179A2 (en) 1992-12-21 1994-06-29 JOHNSON & JOHNSON VISION PRODUCTS, INC. Ophthalmic lens inspection method and apparatus
EP0604179B2 (en) 1992-12-21 2006-01-04 JOHNSON & JOHNSON VISION PRODUCTS, INC. Ophthalmic lens inspection method and apparatus
JPH06288721A (en) * 1993-04-01 1994-10-18 Masahide Matsuda Automatic inspection device
KR100359994B1 (en) * 2000-11-22 2002-11-07 한국기계연구원 Appartus for testing durability of o-ring use for semiconductor equipment
JP2013063487A (en) * 2011-09-16 2013-04-11 Yaskawa Electric Corp Robot system
CN110470247A (en) * 2019-07-30 2019-11-19 湖北三江航天万山特种车辆有限公司 The detection device and detection method of disc concentricity inside and outside a kind of part

Also Published As

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