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Estimation of Dynamic Stress Concentration Factor by Infrared Thermography Stress Analysis

Man Yong Choi, Ki Soo Kang, Jeong Hak Park, Byung Wook Ahn, Koung Suk Kim
JKSPE 2008;25(5):77-81.
Published online: May 1, 2008
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Structural components subjected to high frequency vibrations, such as those used in vibrating parts of gas turbine engines, are usually required to avoid resonance frequencies. Generally, the operating frequency is designed at more than resonance frequencies. When a vibrating structure starts or stops, the structure has to pass through a resonance frequency, which results in large stress concentration. This paper presents the transient thermoelastic stress analysis of vibrating cantilever beam using infrared thermography and finite element method (FEM). In FEM, stress concentration factor at the 2nd resonance vibration mode is calculated by the mode superposition method of ANSYS. In experiment, stress distributions are investigated with infrared thermography and dynamic stress concentration factor is estimated. Experimental result is agreed with FEM result within 10.6 %. The advantage of this technique is a better immunity to contact problem and geometric limitation in stress analysis of small or micro structures.

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Estimation of Dynamic Stress Concentration Factor by Infrared Thermography Stress Analysis
J. Korean Soc. Precis. Eng.. 2008;25(5):77-81.   Published online May 1, 2008
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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Estimation of Dynamic Stress Concentration Factor by Infrared Thermography Stress Analysis
J. Korean Soc. Precis. Eng.. 2008;25(5):77-81.   Published online May 1, 2008
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