ANALYSIS AND OPTIMIZATION OF CRACKING IN THE CATALYST OF AN EXTENDED-RANGE THREE CYLINDER ENGINE
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ANALYSIS AND OPTIMIZATION OF CRACKING IN THE CATALYST OF AN EXTENDED-RANGE THREE CYLINDER ENGINE
Journal of Mechanical Strength Vol. 46, Issue 2, Pages: 497-502(2024)
作者机构:
1. 台州科技职业学院机电与模具工程学院
2. 台州模具智能制造重点实验室
3. 台州学院材料科学与工程学院
作者简介:
基金信息:
The project supported by the Zhejiang Natural Science Foundation/Youth Fund Project (No. LQ19E050004), and the Zhejiang Basic Public Welfare Research Project (No. LGG21E050001).
HONG Yang, XIE ZuTong, REN JianPing, et al. ANALYSIS AND OPTIMIZATION OF CRACKING IN THE CATALYST OF AN EXTENDED-RANGE THREE CYLINDER ENGINE. [J]. Journal of Mechanical Strength , 2024,46(2):497-502.
DOI:
HONG Yang, XIE ZuTong, REN JianPing, et al. ANALYSIS AND OPTIMIZATION OF CRACKING IN THE CATALYST OF AN EXTENDED-RANGE THREE CYLINDER ENGINE. [J]. Journal of Mechanical Strength , 2024,46(2):497-502. DOI: 10.16579/j.issn.1001.9669.2024.02.031.
ANALYSIS AND OPTIMIZATION OF CRACKING IN THE CATALYST OF AN EXTENDED-RANGE THREE CYLINDER ENGINE
Aiming at the cracking problem of the catalyst of an extended-range three cylinder engine in the durability test
the fracture form and the cracking reason were analyzed
the optimization and verification were carried out. The fracture and material were analyzed by means of chemical composition detection
metallographic structure analysis and fracture electron microscope scanning. The vibration characteristics of the three cylinder engine were discussed
and the heat transfer analysis and thermal modal analysis of the catalyst were carried out. The cracking reason was determined by modal interferogram and strain energy density. An improved scheme was proposed based on the modal frequency and mode shape
and the analysis and verification were taken. The results show that the surface of the engine catalyst will form intergranular cracks under high temperature oxidation. When the stiffness of the support is insufficient
the thermal modal frequency of the catalyst is too low
it will resonate with the third-order combustion excitation of the three cylinder engine under high temperature
leading to the propagation of surface cracks and the formation of fracture. By analyzing the thermal modal frequency
vibration mode and strain energy density of the catalyst
the catalyst support can be effectively improved
which provides a reference for the design of the catalyst of the three cylinder engine.
关键词
三缸发动机催化器开裂分析与优化
Keywords
Three cylinder engineCatalystCrackingAnalysis and optimization