MX2017015182A - Metodo y dispositivo para inspeccionar cigüeñal. - Google Patents

Metodo y dispositivo para inspeccionar cigüeñal.

Info

Publication number
MX2017015182A
MX2017015182A MX2017015182A MX2017015182A MX2017015182A MX 2017015182 A MX2017015182 A MX 2017015182A MX 2017015182 A MX2017015182 A MX 2017015182A MX 2017015182 A MX2017015182 A MX 2017015182A MX 2017015182 A MX2017015182 A MX 2017015182A
Authority
MX
Mexico
Prior art keywords
crankshaft
group data
point group
dimensional point
dimensional
Prior art date
Application number
MX2017015182A
Other languages
English (en)
Inventor
Oyama Toshiyuki
Ohashi Ryota
Isei Yoshito
Original Assignee
Nippon Steel & Sumitomo Metal Corp
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 Nippon Steel & Sumitomo Metal Corp filed Critical Nippon Steel & Sumitomo Metal Corp
Publication of MX2017015182A publication Critical patent/MX2017015182A/es

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01BMEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
    • G01B5/00Measuring arrangements characterised by the use of mechanical techniques
    • G01B5/003Measuring of motor parts
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01BMEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
    • G01B11/00Measuring arrangements characterised by the use of optical techniques
    • G01B11/24Measuring arrangements characterised by the use of optical techniques for measuring contours or curvatures
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01BMEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
    • G01B11/00Measuring arrangements characterised by the use of optical techniques
    • G01B11/24Measuring arrangements characterised by the use of optical techniques for measuring contours or curvatures
    • G01B11/245Measuring arrangements characterised by the use of optical techniques for measuring contours or curvatures using a plurality of fixed, simultaneously operating transducers
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01BMEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
    • G01B11/00Measuring arrangements characterised by the use of optical techniques
    • G01B11/24Measuring arrangements characterised by the use of optical techniques for measuring contours or curvatures
    • G01B11/25Measuring arrangements characterised by the use of optical techniques for measuring contours or curvatures by projecting a pattern, e.g. one or more lines, moiré fringes on the object
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M11/00Testing of optical apparatus; Testing structures by optical methods not otherwise provided for
    • G01M11/08Testing mechanical properties
    • G01M11/081Testing mechanical properties by using a contact-less detection method, i.e. with a camera
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M13/00Testing of machine parts
    • G01M13/02Gearings; Transmission mechanisms
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M99/00Subject matter not provided for in other groups of this subclass

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Computer Vision & Pattern Recognition (AREA)
  • Length Measuring Devices By Optical Means (AREA)
  • Testing Of Devices, Machine Parts, Or Other Structures Thereof (AREA)
  • Shafts, Cranks, Connecting Bars, And Related Bearings (AREA)
  • Investigating Materials By The Use Of Optical Means Adapted For Particular Applications (AREA)

Abstract

La presente invención proporciona un método para inspeccionar un cigüeñal, el cual incluye detección precisa de defectos que pueden ocurrir parcialmente en el cigüeñal, tales como bajos niveles de llenado y fallas de abolladura, al discriminar estos defectos del doblamiento y torsión sobre una longitud entera del cigüeñal. La presente invención incluye los pasos de: adquirir datos de nube de puntos tridimensional sobre una longitud entera de una región de objeto de medición de un cigüeñal S por un dispositivo de medición de forma tridimensional óptica 1; dividir los datos de nube de puntos tridimensional adquiridos para crear una pluralidad de datos de nube de puntos tridimensional de subregión, cada uno de los datos de nube de puntos tridimensional de subregión que corresponden respectivamente a cada de una pluralidad de subregiones del cigüeñal a lo largo de una dirección paralela al eje central de rotación L del cigüeñal; trasladado y girando cada uno de los datos de nube de puntos tridimensional de subregión creados para superponerse con cada uno de los datos de nube de puntos tridimensional de subregión en un modelo de la forma de la superficie del cigüeñal, de manera que una distancia entre cada uno de los datos de nube de puntos tridimensional de subregión y el modelo de la forma de la superficie se vuelve mínimo; y detectar un defecto parcial tal como un bajo nivel de llenado del cigüeñal basado en una distancia entre cada uno de los datos de nube de puntos tridimensional de subregión después de superponerse y el modelo de la forma de la superficie.
MX2017015182A 2015-06-01 2016-05-25 Metodo y dispositivo para inspeccionar cigüeñal. MX2017015182A (es)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2015111233 2015-06-01
PCT/JP2016/065436 WO2016194728A1 (ja) 2015-06-01 2016-05-25 クランクシャフトの検査方法及び装置

Publications (1)

Publication Number Publication Date
MX2017015182A true MX2017015182A (es) 2018-04-20

Family

ID=57440537

Family Applications (1)

Application Number Title Priority Date Filing Date
MX2017015182A MX2017015182A (es) 2015-06-01 2016-05-25 Metodo y dispositivo para inspeccionar cigüeñal.

Country Status (7)

Country Link
US (1) US10132618B2 (es)
EP (1) EP3306265B1 (es)
JP (1) JP6451843B2 (es)
CN (1) CN107615008B (es)
BR (1) BR112017021420A2 (es)
MX (1) MX2017015182A (es)
WO (1) WO2016194728A1 (es)

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US10408612B1 (en) * 2018-06-27 2019-09-10 Toyota Motor Engineering & Manufacturing North America, Inc. Apparatus for non-contact optical evaluation of camshaft lobe surface roughness
JP7205181B2 (ja) * 2018-11-19 2023-01-17 株式会社Ihi 監視システム及び処理装置
JP6984621B2 (ja) * 2019-01-30 2021-12-22 Jfeスチール株式会社 鍛造プレス装置、鍛造プレス方法及び金属材の製造方法
JP7277781B2 (ja) * 2019-12-24 2023-05-19 日本製鉄株式会社 クランクシャフトの形状検査方法及び形状検査装置
JP7277780B2 (ja) * 2019-12-24 2023-05-19 日本製鉄株式会社 クランクシャフトの形状検査方法及び形状検査装置
JP7468863B2 (ja) * 2020-04-27 2024-04-16 旭サナック株式会社 センサ、及びこのセンサを備える塗装装置
JP2021173661A (ja) * 2020-04-27 2021-11-01 旭サナック株式会社 センサ、及びこのセンサを備える塗装装置
CN112284660B (zh) * 2020-09-28 2022-05-03 浙江大学 一种曲轴弯曲扭转复合载荷试验装置
JP7547981B2 (ja) * 2020-12-14 2024-09-10 積水ハウス株式会社 検査装置、及びコンクリート製の壁部材の製造方法
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US20240144504A1 (en) * 2021-04-22 2024-05-02 Nippon Steel Corporation Crankshaft shape inspection method, arithmetic unit, program, and shape inspection apparatus
US20240046447A1 (en) * 2021-04-22 2024-02-08 Nippon Steel Corporation Crankshaft shape inspection method, arithmetic unit, program, and shape inspection apparatus
CN115248109B (zh) * 2021-04-25 2024-04-30 丹佛斯(天津)有限公司 曲轴模拟装置、检测设备和方法
CN113641155A (zh) * 2021-07-23 2021-11-12 连云港杰瑞自动化有限公司 一种高温锻件检测控制系统
CN114937146A (zh) * 2022-05-05 2022-08-23 珠海格力智能装备有限公司 曲轴识别方法、装置、电子设备、存储介质和计算机程序产品
CN114897909B (zh) * 2022-07-15 2022-09-20 四川大学 基于无监督学习的曲轴表面裂纹监测方法及系统
CN115494517B (zh) * 2022-09-29 2024-12-24 广州微易轨道交通科技有限公司 一种列车外观激光三维扫描检测方法
JP7850644B2 (ja) * 2022-10-14 2026-04-23 オークマ株式会社 三次元形状測定システム
CN115389519A (zh) * 2022-10-28 2022-11-25 徐州成光卫设备有限公司 一种基于工业相机的曲轴制造表面检测分析方法
US12586176B2 (en) * 2022-11-10 2026-03-24 Ford Motor Company Systems and methods for predicting an incoming rotational balance of an unfinished workpiece
CN115937164B (zh) * 2022-12-19 2026-04-28 得利升(青岛)智能制造有限公司 一种高精度螺旋桨的检测方法及其检测装置
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Also Published As

Publication number Publication date
WO2016194728A1 (ja) 2016-12-08
EP3306265A4 (en) 2019-01-23
JP6451843B2 (ja) 2019-01-16
CN107615008B (zh) 2020-05-08
CN107615008A (zh) 2018-01-19
US10132618B2 (en) 2018-11-20
BR112017021420A2 (pt) 2018-07-03
EP3306265A1 (en) 2018-04-11
JPWO2016194728A1 (ja) 2018-01-25
EP3306265B1 (en) 2019-10-30
US20180172436A1 (en) 2018-06-21

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