反射差激光测量应用于材料应力/应变状态的研究

C. H. Saucedo-Zárate, M. López-López, C. Sánchez-López, J. L. Correa-Figueroa, J. Huerta-Ruelas
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引用次数: 2

摘要

研究材料应变/应力状态的实验装置的发展是由于需要通过非破坏性和非侵入性技术来评估半导体异质结构、复合材料和合金等新材料的性能。该系统的设计和建造是为了作为一个多功能实验装置使用。主要目的是通过反射差激光测量和应变片来表征材料的弹性和塑性状态。该系统可以将基于有限元模型的理论模型和在有限特定点上使用应变片进行的实验测量所得的结果进行推广。NI™平台用于信号调理和处理。该系统包括一个光学装置,用于测量反射差激光(RDL),以及一个弯曲器,用于在一个千分尺的链接中应用变形。光学信号、应变片信号与有限元模型之间的相关性大于0.95。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reflectance difference laser measurements applied to the study of the stress/strain state in materials
Development of experimental setup to study strain/stress state in materials emerges from a need to evaluate by a nondestructive and non-invasive technique the performance in new materials like semiconductor heterostructures, composite materials and alloys. The system was designed and built to be used as a multi-functional experimental setup. The main purpose is to characterize materials in elastic and plastic regime by reflectance difference laser measurements and strain gages. This system allows the generalization of results obtained from a theoretical model based in Finite Element Model and experimental measurements taken in finite specific points with strain gages. A NI™ platform is used for signal conditioning and processing. System built is described which includes an optical setup to measure reflectance difference laser (RDL), and a flexor which applies deformation in a link, with a micrometer. A correlation bigger than 0.95 was found between optical signal, strain gage signal, and finite element modeling.
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