首页> 外文期刊>International Journal of Pressure Vessels and Piping >Mechanical property variation within Inconel 82/182 dissimilar metal weld between low alloy steel and 316 stainless steel
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Mechanical property variation within Inconel 82/182 dissimilar metal weld between low alloy steel and 316 stainless steel

机译:低合金钢和316不锈钢之间的Inconel 82/182异种金属焊缝中的机械性能变化

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摘要

In several locations of pressurized water reactors, dissimilar metal welds using Inconel welding wires are used to join the low alloy steel components to stainless-steel pipes. Because of the existence of different materials and chemistry variation within welds, mechanical properties, such as tensile and fracture properties, are expected to show spatial variation. For design and integrity assessment of the dissimilar welds, these variations should be evaluated. In this study, dissimilar metal welds composed of low alloy steel, Inconel 82/182 weld, and stainless steel were prepared by gas tungsten arc welding and shielded metal arc welding techniques. Microstructures were observed using optical and electron microscopes. Typical dendrite structures were observed in Inconel 82/182 welds. Tensile tests using standard and mini-sized specimens and micro-hardness tests were conducted to measure the variation in strength along the thickness of the weld as well as across the weld. In addition, fracture toughness specimens were taken at the bottom, middle, and top of the welds and tested to evaluate the spatial variation along the thickness. It was found that while the strength is about 50-70 MPa greater at the bottom of the weld than at the top of the weld, fracture toughness values at the top of the weld are about 70% greater than those at the bottom of the weld.
机译:在压水堆的几个位置,使用因科镍合金焊丝进行的异种金属焊接将低合金钢部件连接到不锈钢管上。由于焊缝中存在不同的材料和化学变化,因此机械性能(例如拉伸性能和断裂性能)有望显示出空间变化。对于异种焊缝的设计和完整性评估,应评估这些变化。在这项研究中,通过气体钨极电弧焊和屏蔽金属电弧焊技术制备了由低合金钢,Inconel 82/182焊缝和不锈钢组成的异种金属焊缝。使用光学和电子显微镜观察微观结构。在Inconel 82/182焊缝中观察到典型的枝晶结构。进行了使用标准和小型试样的拉伸试验以及显微硬度试验,以测量沿焊缝厚度以及整个焊缝强度的变化。另外,在焊缝的底部,中部和顶部取断裂韧性样品,并进行测试以评估沿厚度的空间变化。已发现,尽管在焊缝底部的强度比在焊缝顶部的强度高约50-70 MPa,但焊缝顶部的断裂韧性值比焊缝底部的强度高约70%。 。

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