Enhanced mechanical performance of fusion zone in laser beam welding joint of molybdenum alloy due to solid carburizing

It is unable to strengthen molybdenum (Mo) through solid-state phase transformation, while exploring the effect of carbon (C) on microstructures and properties of fusion zone (FZ) of laser beam welding (LBW) joints of Mo alloy with serious grain boundary embrittlement is significant. An analysis was...

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Main Authors: Liang-Liang Zhang, Lin-Jie Zhang, Jian Long, Xu Sun, Jian-Xun Zhang, Suck-Joo Na
Format: Article
Language:English
Published: Elsevier 2019-11-01
Series:Materials & Design
Online Access:http://www.sciencedirect.com/science/article/pii/S0264127519303958
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spelling doaj-cab7c892fa954e5d9300574742af14912020-11-24T21:27:24ZengElsevierMaterials & Design0264-12752019-11-01181Enhanced mechanical performance of fusion zone in laser beam welding joint of molybdenum alloy due to solid carburizingLiang-Liang Zhang0Lin-Jie Zhang1Jian Long2Xu Sun3Jian-Xun Zhang4Suck-Joo Na5State Key Laboratory of Mechanical Behavior for Materials, Xi'an Jiaotong University, Xi'an 710049, ChinaCorresponding author.; State Key Laboratory of Mechanical Behavior for Materials, Xi'an Jiaotong University, Xi'an 710049, ChinaState Key Laboratory of Mechanical Behavior for Materials, Xi'an Jiaotong University, Xi'an 710049, ChinaState Key Laboratory of Mechanical Behavior for Materials, Xi'an Jiaotong University, Xi'an 710049, ChinaState Key Laboratory of Mechanical Behavior for Materials, Xi'an Jiaotong University, Xi'an 710049, ChinaState Key Laboratory of Mechanical Behavior for Materials, Xi'an Jiaotong University, Xi'an 710049, ChinaIt is unable to strengthen molybdenum (Mo) through solid-state phase transformation, while exploring the effect of carbon (C) on microstructures and properties of fusion zone (FZ) of laser beam welding (LBW) joints of Mo alloy with serious grain boundary embrittlement is significant. An analysis was made on changes of bonding strength of grain boundary and precipitates on the grain boundary surface in the FZ of Mo carburized welded joints, and the existing form and strengthening mechanism of carbon. At first, solid carburizing (SC) can achieve the goal of adding the C to welded joints and C mainly appeared as C atoms and Mo2C in Mo alloy. Afterwards, C could increase the grain boundary strength and the plasticity of grains in the FZ. Therefore, the compatibility of deformation at grain boundary and grain interior was improved. Finally, Mo2C distributing at the grain boundary can inhibit the crack propagation during the deformation. As a result, the tensile strength of carburized weld joints rose by 426% compared with that of uncarburized weld joints, meanwhile the above results provide a new idea for the method for strengthening the Mo fusion weld joints. Keywords: Molybdenum, Carbon, Laser beam welding, Grain boundary embrittlementhttp://www.sciencedirect.com/science/article/pii/S0264127519303958
collection DOAJ
language English
format Article
sources DOAJ
author Liang-Liang Zhang
Lin-Jie Zhang
Jian Long
Xu Sun
Jian-Xun Zhang
Suck-Joo Na
spellingShingle Liang-Liang Zhang
Lin-Jie Zhang
Jian Long
Xu Sun
Jian-Xun Zhang
Suck-Joo Na
Enhanced mechanical performance of fusion zone in laser beam welding joint of molybdenum alloy due to solid carburizing
Materials & Design
author_facet Liang-Liang Zhang
Lin-Jie Zhang
Jian Long
Xu Sun
Jian-Xun Zhang
Suck-Joo Na
author_sort Liang-Liang Zhang
title Enhanced mechanical performance of fusion zone in laser beam welding joint of molybdenum alloy due to solid carburizing
title_short Enhanced mechanical performance of fusion zone in laser beam welding joint of molybdenum alloy due to solid carburizing
title_full Enhanced mechanical performance of fusion zone in laser beam welding joint of molybdenum alloy due to solid carburizing
title_fullStr Enhanced mechanical performance of fusion zone in laser beam welding joint of molybdenum alloy due to solid carburizing
title_full_unstemmed Enhanced mechanical performance of fusion zone in laser beam welding joint of molybdenum alloy due to solid carburizing
title_sort enhanced mechanical performance of fusion zone in laser beam welding joint of molybdenum alloy due to solid carburizing
publisher Elsevier
series Materials & Design
issn 0264-1275
publishDate 2019-11-01
description It is unable to strengthen molybdenum (Mo) through solid-state phase transformation, while exploring the effect of carbon (C) on microstructures and properties of fusion zone (FZ) of laser beam welding (LBW) joints of Mo alloy with serious grain boundary embrittlement is significant. An analysis was made on changes of bonding strength of grain boundary and precipitates on the grain boundary surface in the FZ of Mo carburized welded joints, and the existing form and strengthening mechanism of carbon. At first, solid carburizing (SC) can achieve the goal of adding the C to welded joints and C mainly appeared as C atoms and Mo2C in Mo alloy. Afterwards, C could increase the grain boundary strength and the plasticity of grains in the FZ. Therefore, the compatibility of deformation at grain boundary and grain interior was improved. Finally, Mo2C distributing at the grain boundary can inhibit the crack propagation during the deformation. As a result, the tensile strength of carburized weld joints rose by 426% compared with that of uncarburized weld joints, meanwhile the above results provide a new idea for the method for strengthening the Mo fusion weld joints. Keywords: Molybdenum, Carbon, Laser beam welding, Grain boundary embrittlement
url http://www.sciencedirect.com/science/article/pii/S0264127519303958
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