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An investigation on thermal, metallurgical and mechanical states in weld cracking of Inconel 738LC superalloy

机译:Inconel 738LC高温合金焊缝开裂中的热,冶金和机械状态研究

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摘要

The influence of various conditions of Inconel 738 superalloy welding or deposition welding has been studied in order to shed light on the coupling between thermal, metallurgical and mechanical states in the heat affected zone (HAZ) in which cracking may occur particularly during welding and post-weld heat treatment. Predominant crack controlling factors have been highlighted thanks to different pre-weld and post-weld heat treatments, in addition to various welding rates and pre-heating prior to welding. These factors are mainly the material ductility related to the morphology and volume fraction of intermetallic precipitates and thermally induced residual stress. It has appeared that reducing thermally induced residual stress could be more effective for preventing cracking than controlling the material ductility in the related zones thanks to adjustment of pre-weld and post-weld heat treatments. With the objective of cracking remediation, welding on preheated parts leads to lower weld power, to reduce significantly thermal gradients, decreases thermally induced stress and impedes cracks formation despite some localized and temporary decrease in alloy ductility.
机译:为了研究热影响区(HAZ)中热,冶金和机械状态之间的耦合,研究了Inconel 738高温合金焊接或熔敷焊接的各种条件的影响,特别是在焊接和后期焊接中可能发生裂纹。焊接热处理。由于不同的预焊接和后焊接热处理,以及不同的焊接速度和焊接前的预热,突出了主要的裂纹控制因素。这些因素主要是与金属间沉淀物的形态和体积分数以及热诱导残余应力有关的材料延展性。似乎由于调节焊接前和焊接后的热处理,与控制相关区域的材料延展性相比,减少热致残余应力比防止相关区域的材料延展性更有效。出于裂纹修复的目的,尽管合金延展性局部或暂时降低,但预热零件上的焊接可降低焊接功率,显着降低热梯度,降低热致应力并阻止裂纹形成。

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  • 来源
    《Materials & design》 |2010年第1期|402-416|共15页
  • 作者单位

    Universite Bordeaux 1, Laboratoire de Genie Mecanique et Materiaux de Bordeaux (LGM~2B-IUT), IUT Bordeaux 1, 15, rue Naudet, CS 10207, 33175 Gradignan Ccdex, France;

    Universite Bordeaux 1, Laboratoire de Genie Mecanique et Materiaux de Bordeaux (LGM~2B-IUT), IUT Bordeaux 1, 15, rue Naudet, CS 10207, 33175 Gradignan Ccdex, France Universite Bordeaux 1,Insticut de Chimie de la Matiere Condensee de Bordeaux (ICMCB-CNRS), 87 av. du Dr Albert Schweitzer, 33608 Pessac Cedex, France;

    Universite Bordeaux 1, Laboratoire de Genie Mecanique et Materiaux de Bordeaux (LGM~2B-IUT), IUT Bordeaux 1, 15, rue Naudet, CS 10207, 33175 Gradignan Ccdex, France;

    Turbomeca Groupe SAFRAN, 40220 Tamos, France;

    Universite Bordeaux 1, Laboratoire de Genie Mecanique et Materiaux de Bordeaux (LGM~2B-IUT), IUT Bordeaux 1, 15, rue Naudet, CS 10207, 33175 Gradignan Ccdex, France Universite Bordeaux 1,Insticut de Chimie de la Matiere Condensee de Bordeaux (ICMCB-CNRS), 87 av. du Dr Albert Schweitzer, 33608 Pessac Cedex, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. non-ferrous metals and alloys; D. welding; F. microstructure; cracking; thermal properties;

    机译:A.有色金属及其合金;D.焊接;F.微观结构;破裂热性能;

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