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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effects of Heating and Cooling Rates on Phase Transformations in 10 Wt Pct Ni Steel and Their Application to Gas Tungsten Arc Welding
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Effects of Heating and Cooling Rates on Phase Transformations in 10 Wt Pct Ni Steel and Their Application to Gas Tungsten Arc Welding

机译:加热和冷却速率对10 WT PCT Ni钢相变的影响及其在气体钨弧焊中的应用

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10 wt pct Ni steel is a high-strength steel that possesses good ballistic resistance from the deformation induced transformation of austenite to martensite, known as the transformation-induced-plasticity effect. The effects of rapid heating and cooling rates associated with welding thermal cycles on the phase transformations and microstructures, specifically in the heat-affected zone, were determined using dilatometry, microhardness, and microstructural characterization. Heating rate experiments demonstrate that the Ac-3 temperature is dependent on heating rate, varying from 1094 K (821 degrees C) at a heating rate of 1 degrees C/s to 1324 K (1051 degrees C) at a heating rate of 1830 degrees C/s. A continuous cooling transformation diagram produced for 10 wt pct Ni steel reveals that martensite will form over a wide range of cooling rates, which reflects a very high hardenability of this alloy. These results were applied to a single pass, autogenous, gas tungsten arc weld. The diffusion of nickel from regions of austenite to martensite during the welding thermal cycle manifests itself in a muddled, rod-like lath martensitic microstructure. The results of these studies show that the nickel enrichment of the austenite in 10 wt pct Ni steel plays a critical role in phase transformations during welding. (C) The Minerals, Metals & Materials Society and ASM International 2017
机译:10 WT PCT Ni钢是一种高强度钢,具有从变形诱导的奥氏体转化对马氏体的良好抗性,称为转化诱导的可塑性效果。使用稀释测定,显微硬度和微观结构表征测定与焊接热循环相关的快速加热和冷却速率与焊接热循环相关的效果,特别是在热影响区域中。加热速率实验表明,AC-3温度取决于加热速率,从1094K(821℃)以1℃/ s至1324k(1051℃)的加热速率为1830度的加热速率CS。为10WT PCT Ni钢制造的连续冷却变换图揭示了马氏体在各种冷却速率范围内形成,这反映了该合金的非常高的淬透性。将这些结果应用于单次通过,自生气,气体钨弧焊。在焊接热循环期间,镍从奥氏体区域扩散到马氏体上的马氏体中,在混凝土状的杆状板条马氏体微观结构中表现出自身。这些研究的结果表明,在10wt PCT Ni钢中奥氏体的富含镍富集在焊接过程中的相变性中起着关键作用。 (c)2017年矿物质,金属和材料协会和ASM国际

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