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2024 | OriginalPaper | Buchkapitel

Research and Application for Thermal Fatigue Analysis of V-Shape Specimen

verfasst von : Xiaodong Yang, Zhengguo Chen, Yunhua Zhang, Dongliang Qi

Erschienen in: Proceedings of China SAE Congress 2023: Selected Papers

Verlag: Springer Nature Singapore

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Abstract

A thermal fatigue (TF) test bench for V-shape specimen was established successfully. Based on different test schemes, it was observed that the fatigue life of V-shape specimen decreased with increasing cooling time. Then, the finite element analysis (FEA) model was developed, the max value of equivalent plastic strain amplitude (ΔPEEQ) is 0.17%, observed on the inner surface of V-shape area, which corresponded to the area with cracks on the real specimen. Moreover, the program was written by python to predicate the crack locations and TF life. The calculated life of critical point of V-shape specimen was 4071 cycles, corresponding to the test value of 3963 cycles. Finally, the research achievements were applied successfully in a product of catalytic converter. The minimum value of the TF life occurred at the inner edge of the intake clamshell, with a life value of 2775 cycles, meeting the reliability requirement.

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Literatur
1.
Zurück zum Zitat Yoshimasa, W., Kazuhiko, S.: Thermal fatigue life prediction for stainless steel exhaust manifold. In: SAE 1998 World Congress and Exhibition, Detroit, no. 980841, pp. 1–6 (1998) Yoshimasa, W., Kazuhiko, S.: Thermal fatigue life prediction for stainless steel exhaust manifold. In: SAE 1998 World Congress and Exhibition, Detroit, no. 980841, pp. 1–6 (1998)
2.
Zurück zum Zitat Chinouilh, G., Santacreu, P.O., Herbelin, J.M.: Thermal fatigue design of stainless steel exhaust manifolds. In: SAE 2007 World Congress and Exhibition, Detroit, no. 2007-01-0564, pp. 1–6 (2007) Chinouilh, G., Santacreu, P.O., Herbelin, J.M.: Thermal fatigue design of stainless steel exhaust manifolds. In: SAE 2007 World Congress and Exhibition, Detroit, no. 2007-01-0564, pp. 1–6 (2007)
3.
Zurück zum Zitat Zhigang, W.: A thermal-fatigue life assessment procedure for components under combined temperature and load cycling. In: SAE 2013 World Congress and Exhibition, Detroit, No. 2013-01–0998, pp. 1–9 (2013) Zhigang, W.: A thermal-fatigue life assessment procedure for components under combined temperature and load cycling. In: SAE 2013 World Congress and Exhibition, Detroit, No. 2013-01–0998, pp. 1–9 (2013)
4.
Zurück zum Zitat Xiaodong, Y., Donghan, L., Dongliang, Q.: Frequency response analysis method of passenger car exhaust converter. Comput. Aided Eng. 28(1), 18–21 (2019) Xiaodong, Y., Donghan, L., Dongliang, Q.: Frequency response analysis method of passenger car exhaust converter. Comput. Aided Eng. 28(1), 18–21 (2019)
5.
Zurück zum Zitat Jin, D., Qian, Z., Xijie, W.: Automobile exhaust manifold TMF CAE analysis method. Internal Combust. Engines 1, 45–47 (2014) Jin, D., Qian, Z., Xijie, W.: Automobile exhaust manifold TMF CAE analysis method. Internal Combust. Engines 1, 45–47 (2014)
6.
Zurück zum Zitat Yuanming, C., Yingbing, Z., Lingyun, Z.: Thermal mechanical fatigue analysis of exhaust manifold of a gasoline engine. I. C. E. & Powerplant 32(3), 18–21 (2015) Yuanming, C., Yingbing, Z., Lingyun, Z.: Thermal mechanical fatigue analysis of exhaust manifold of a gasoline engine. I. C. E. & Powerplant 32(3), 18–21 (2015)
7.
Zurück zum Zitat Xiangwang, L., Fengqin, H., Zhiming, Z.: Durability analysis and optimization on the exhaust hot end of a turbocharged gasoline engine. Automot. Eng. 39(10), 1130–1135 (2017) Xiangwang, L., Fengqin, H., Zhiming, Z.: Durability analysis and optimization on the exhaust hot end of a turbocharged gasoline engine. Automot. Eng. 39(10), 1130–1135 (2017)
8.
Zurück zum Zitat Hanyu, Z., Shanhu, Y., Benchao, W.: Thermal fatigue life prediction of an exhaust manifold made of high nickel cast iron. Automot. Eng. 39(8), 943–950 (2017) Hanyu, Z., Shanhu, Y., Benchao, W.: Thermal fatigue life prediction of an exhaust manifold made of high nickel cast iron. Automot. Eng. 39(8), 943–950 (2017)
9.
Zurück zum Zitat Rongfa, S., Rui, X., Jian, W.: Low cycle fatigue life prediction of a catalytic converter assembly for passenger vehicle. Mod. Manuf. Eng. 472, 18–24 (2020) Rongfa, S., Rui, X., Jian, W.: Low cycle fatigue life prediction of a catalytic converter assembly for passenger vehicle. Mod. Manuf. Eng. 472, 18–24 (2020)
10.
Zurück zum Zitat Zheng, H., Yuntao, L., Jun, L.: Low cycle fatigue crack analysis of hot end bracket of exhaust manifold and its optimization. Internal Combust. Engine Power Plant 38(5), 95 (2021) Zheng, H., Yuntao, L., Jun, L.: Low cycle fatigue crack analysis of hot end bracket of exhaust manifold and its optimization. Internal Combust. Engine Power Plant 38(5), 95 (2021)
11.
Zurück zum Zitat Zhengguo, C., Xiaodong, Y., Xia, C.: Thermal fatigue analysis method of passenger vehicle exhaust converter. Comput. Aided Eng. 30(3), 44–48 (2021) Zhengguo, C., Xiaodong, Y., Xia, C.: Thermal fatigue analysis method of passenger vehicle exhaust converter. Comput. Aided Eng. 30(3), 44–48 (2021)
12.
Zurück zum Zitat Manson, S.: Fatigue: a complex subject-some simple approximation. Exp. Mech. 5(7), 193–226 (1965)CrossRef Manson, S.: Fatigue: a complex subject-some simple approximation. Exp. Mech. 5(7), 193–226 (1965)CrossRef
Metadaten
Titel
Research and Application for Thermal Fatigue Analysis of V-Shape Specimen
verfasst von
Xiaodong Yang
Zhengguo Chen
Yunhua Zhang
Dongliang Qi
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-0252-7_51

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