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Effects of alloying elements on the thermal fatigue properties of the ferritic stainless steel weld HAZ

机译:合金元素对铁素体不锈钢焊接HAZ热疲劳性能的影响

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In the present study, the effects of the addition of Nb, W, and V alloying elements on the thermal fatigue properties of the ferritic stainless steel weld heat affected zone (HAZ) were investigated. Simulation of the weld HAZ and thermal fatigue testing were carried out using a metal thermal cycle simulator (MTCS) under a complete constraint force in the static jig. The fatigue life during cyclic heating and cooling in the temperature range of 200 to 900°C was strongly related not only to precipitation and coarsening of MX type precipitates and Laves phase but also to the Nb content in the solid solution and grain coarsening. The thermal fatigue life increased with higher Nb and W contents due to more (Nb,Ti)C precipitates and a less coarsened Laves phase, respectively. Contrary to the results with Nb and W additions, there were no obvious effects on grain size and precipitation behavior associated with V addition.
机译:在本研究中,研究了Nb,W和V合金元素对铁素体不锈钢焊接热影响区(HAZ)的热疲劳性能的影响。在静态夹具中的完全约束力下使用金属热循环模拟器(MTC)进行焊接HAZ和热疲劳试验的仿真。在200至900℃的温度范围内的循环加热和冷却期间的疲劳寿命不仅具有Mx型沉淀物和疏浚物的沉淀和粗化,而且对固体溶液和晶粒粗化的Nb含量相比,强烈相关。由于更多(Nb,Ti)C沉淀和较少粗糙的疏浚液相,具有较高的Nb和W含量的热疲劳寿命增加。与Nb和W添加结果相反,对与V添加相关的粒度和降水行为没有明显的影响。

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