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Numerical analysis of thermal stress distribution in metal substrates for catalytic converters

机译:催化转化器金属基材热应力分布的数值分析

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In order to quantitatively evaluate mechanical durability of metal substrates for catalytic converters under heat cycles, thermal stresses and strains were simulated by FEM elastic-plastic analysis. Flat and corrugated sheets constituting honeycomb structures were directly modeled by thick-shell elements without replacing the structures with equivalent solid elements. It was reported that an asymmetric joint structure with "Strengthened Outer Layer" could provide metal substrates with high mechanical durability against heat cycles and the results of analysis in this study could show their high durability. It is important for improvement of mechanical durability to control the location of initial cracks generation and the direction of their propagation.
机译:为了在热循环下定量评估用于催化转化器的金属底物的机械耐久性,通过FEM弹性塑性分析模拟热应力和菌株。构成蜂窝状结构的扁平和波纹板通过厚壳元件直接模拟,而不替换具有当量固体元素的结构。据报道,具有“强化外层”的不对称关节结构可以提供具有高机械耐久性的金属基材,以及该研究的分析结果可以显示出高耐久性。改善机械耐久性以控制初始裂缝产生的位置和传播方向是重要的。

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