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Bending Fatigue and Microstructure of Fillet Welded Joints with High Chromium Stainless Pipe for Catalyst Muffler

机译:用高铬不锈钢管弯曲弯曲疲劳和微观结构催化剂消声器

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To prevent corrosion of the inlet part with aqueous ammonia injection, high chromium corrosion-resistant materials have been applied for welded joints of mufflers. Bending fatigue strength of welded joint samples of flange pipes was defined through fatigue experiments, modeling that high fluctuating stresses exist in the inlet and outlet flange pipes of a muffler caused by the vibration of a moving vehicle. Factors that caused fatigue to failure such as welding bead shape and metallographic structure were identified through local stress measurements, FEM stress simulations, microscopic observations, and SEM-EDS composition analyses. By comparing with sample A having a smaller flank angle and sample B having a larger flank angle, the results suggested that the difference of bending fatigue strengths at 200,000 cycles was 24% when based on nominal stress, and the difference was 10% when based on measured maximum stress. The maximum stress was inversely proportional to weld flank angle non-linearly. The crack starting point of sample A was at weld interface, a boundary between weld acicular phase and pipe ferrite phase, but that of the sample B was not at the boundary between weld lathy phase and pipe ferrite phase. After etching with strong mixed acids, the sensitization in grain boundary occurred in the 17Cr flanges, but it did not occur in the 30Cr pipes.
机译:以防止与氨水注入进口部分的腐蚀,高铬耐腐蚀材料已申请消声器焊接接头。凸缘管的焊接接头的样本弯曲疲劳强度通过疲劳试验所定义,造型,在由运动车辆的振动的消声器的入口和出口凸缘管存在高波动的应力。导致疲劳失效诸如焊接的焊道形状和金相组织因子通过局部应力测量,FEM应力模拟,显微镜观察,和SEM-EDS组成分析进行鉴定。通过用具有较小侧面角和具有较大侧面角样品B样品A比较,结果表明,在20万次弯曲疲劳强度的差为24%,基于名义应力时,以及基于当所述差为10%测得的最大应力。的最大应力是成反比的焊接侧面角非线性。样品A的裂纹开始点在焊接界面,焊缝针状相和管铁素体相之间的边界,但样品B的,这不是在焊接板条状相和管铁素体相之间的边界。具有较强的混合酸蚀刻后,在晶界的致敏发生在17Cr法兰,但它并没有在管道的30Cr发生。

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    《SAE World Congress Experience》|2017年|1 Electronic text data|共8页
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    Gyoko Oh;

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  • 中图分类 U46-53;
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