Development of 16Cr8Ni low transformation temperature welding material for optimal characteristics under various dilutions due to all repair welding positions

IF 3.1 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Zhongyuan Feng, N. Ma, K. Hiraoka, Y. Komizo, S. Kano, Masayuki Nagami
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引用次数: 0

Abstract

A new low transformation temperature (LTT) welding material 16Cr8Ni was developed to satisfy the optimal characteristics in diluted welds due to all repair welding positions. Its good weldability for all welding positions was tested. The measured Ms temperature of weld metals with different dilutions was between 150°C and 250°C which is the optimal range for compressive residual stress generation and fatigue life extension. The in-situ observation of phase evolution by the synchrotron-based X-ray diffraction technique validated the solidification mode of LTT welds for the prevention of solidification cracks. Moreover, the mechanical properties in the diluted LTT welds were measured by miniature uniaxial tensile tests. Large compressive residual stresses at the welded joints due to all welding positions were confirmed numerical analyses.
16Cr8Ni低转变温度焊接材料的开发,可在各种稀释度下实现所有补焊位置的最佳特性
为了满足全补焊位置稀释焊缝的最佳特性,研制了一种新型低相变温度焊接材料16Cr8Ni。测试了其在所有焊接位置的良好可焊性。不同稀释度的焊缝金属的Ms温度在150 ~ 250℃之间,这是产生残余压应力和延长疲劳寿命的最佳范围。利用同步辐射x射线衍射技术现场观察相演化过程,验证了LTT焊缝的凝固方式对防止凝固裂纹的作用。此外,采用微型单轴拉伸试验对稀释LTT焊缝的力学性能进行了测试。通过数值分析,证实了各焊接部位存在较大的残余压应力。
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来源期刊
Science and Technology of Welding and Joining
Science and Technology of Welding and Joining 工程技术-材料科学:综合
CiteScore
6.10
自引率
12.10%
发文量
79
审稿时长
1.7 months
期刊介绍: Science and Technology of Welding and Joining is an international peer-reviewed journal covering both the basic science and applied technology of welding and joining. Its comprehensive scope encompasses all welding and joining techniques (brazing, soldering, mechanical joining, etc.) and aspects such as characterisation of heat sources, mathematical modelling of transport phenomena, weld pool solidification, phase transformations in weldments, microstructure-property relationships, welding processes, weld sensing, control and automation, neural network applications, and joining of advanced materials, including plastics and composites.
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