Cosine Error-Free Metrology Tool Path Planning for Thickness Profile Measurements

Author:

Guo Xiangyu1,Lee ChaBum1

Affiliation:

1. J. Mike Walker, ‘66 Department of Mechanical Engineering, Texas A&M University, 3123 TAMU, College Station, TX 77843-3123

Abstract

Abstract This paper presents a novel thickness profile measuring system that measures double-sided thin pipe wall surfaces in a non-contact, continuous, cosine error-free, and fast manner. The surface metrology tool path was developed to align the displacement sensors always normal to the double-sided surfaces to remove cosine error. A pair of capacitive-type sensors that were placed on the rotary and linear axes simultaneously scans the inner and outer surfaces of thin walls. Because the rotational error of the rotary axis can severely affect the accuracy in thickness profile measurement, such error was initially characterized by a reversal method. It was compensated for along the rotational direction while measuring the measurement target. Two measurement targets (circular and elliptical metal pipe-type thin walls) were prepared to validate the developed measurement method and system. Not only inner and outer surface profiles but also thin-wall thickness profiles were measured simultaneously. Based on the output data, the circularity and wall thickness variation were calculated. The thickness profile results showed a good agreement with those obtained by a contact-type micrometer (1-µm resolution) at every 6-deg interval. The uncertainty budget for this measuring system with metrology tool path planning was estimated at approximately 1.4 µm.

Funder

National Science Foundation

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference29 articles.

1. A Study on the Ultrasonic Thickness Measurement of Wall Thinned Pipe in Nuclear Power Plants;Yi,2006

2. A new Method for Radiographic Image Evaluation for Pipe Wall Thickness Measurement;Belenkij,2000

3. Thickness Measurement of Metal Pipe Using Swept-Frequency Eddy Current Testing;Mao;NDT&E Int.,2016

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