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Cited 3 time in webofscience Cited 3 time in scopus
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Investigation of Fatigue Characteristics for Heat Exchanger Tube in Air Conditioner: Effect of Surface Defect and Environmental FactorInvestigation of Fatigue Characteristics for Heat Exchanger Tube in Air Conditioner: Effect of Surface Defect and Environmental Factor

Other Titles
Investigation of Fatigue Characteristics for Heat Exchanger Tube in Air Conditioner: Effect of Surface Defect and Environmental Factor
Authors
Han, C.Doh, J.
Issue Date
May-2023
Publisher
SpringerOpen
Keywords
Aluminum tube; Fatigue limit; Heat exchanger; High temperature; Surface defect
Citation
International Journal of Precision Engineering and Manufacturing, v.24, no.5, pp 867 - 875
Pages
9
Indexed
SCIE
SCOPUS
KCI
Journal Title
International Journal of Precision Engineering and Manufacturing
Volume
24
Number
5
Start Page
867
End Page
875
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/30814
DOI
10.1007/s12541-023-00793-9
ISSN
2234-7593
2005-4602
Abstract
The objective of this study is to quantitatively analyze the static and fatigue characteristics of the repeated welding, operating temperatures, and surface defects (notches) in tubes with Al3003-O aluminum, which is applied to the heat exchangers. In particular, fatigue characteristics on actual aluminum tubes are evaluated. It was confirmed the grain size increases and the hardness decreases due to changes in the internal structure as the number of repeated welding increases. The fatigue limit of the aluminum tube at the operating temperature was 49.02 MPa which was lower than the room temperature. Also, the fatigue limit of the notched aluminum tube is measured to be 29.37 MPa which is reduced compared to that of the specimens without a notch; the fatigue notch factor is 1.67. Based on the Peterson equation, the material constants were derived by combining the results (fatigue notch factor, etc.) obtained through analysis and experiments. Derived material constants allow the prediction of fatigue limits for various defect (notch) sizes that may occur during the manufacturing and assembly of the heat exchanger. © 2023, The Author(s), under exclusive licence to Korean Society for Precision Engineering.
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Doh, Jae Hyeok
우주항공대학 (항공우주공학부)
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