Design and Optimization of Ultrasonic Fatigue Specimen Based on ANSYS Modeling

Xin Wang, Ning Feng, Jiangtao Yu, Qun Li
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Abstract

The design method of ultrasonic fatigue specimen is briefly described, and the size of dog-bone shaped specimen is preliminarily designed by analytical method, which provides reference size for specimen design. Modal analysis and harmonious response analysis of the solid model are carried out by ANSYS software, and the natural frequency of aluminum alloy dog-bone specimen is obtained. By controlling a single variable, the natural frequencies of specimens with different sizes are solved respectively, and the influence of resonance length on the natural frequencies of specimens is obtained. According to this rule, the size of the specimen is optimized, so that the natural frequency of the specimen can reach 20000Hz.
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基于ANSYS建模的超声疲劳试样设计与优化
简述了超声疲劳试样的设计方法,并采用解析法初步设计了狗骨形试样的尺寸,为试样设计提供参考尺寸。利用ANSYS软件对其实体模型进行模态分析和协调响应分析,得到了铝合金狗骨试件的固有频率。通过控制单一变量,分别求解了不同尺寸试件的固有频率,得到了共振长度对试件固有频率的影响。根据这一规律对试件的尺寸进行优化,使试件的固有频率达到20000Hz。
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