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热输入对Inconel 617镍基高温合金激光焊接接头显微组织与力学性能的影响
Effect of heat input on microstructure and mechanical properties of laser welded joint of Inconel 617nickel-based superalloy

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程昊 1,2   周炼刚 1   刘健 3 *   王宇宁 1   仝凌云 1   都东 2 *  
文摘 采用两种热输入不同的焊接工艺参数对3mm壁厚的Inconel 617镍基高温合金进行激光焊接。通过光学显微镜和扫描电子显微镜对焊接接头显微组织进行观察分析,并测试了焊接接头在室温(25℃)及高温(900℃)下的拉伸性能。结果表明:激光焊接热输入对Inconel 617焊接接头显微组织及力学性能影响明显。在高热输入(200J/mm)条件下,焊缝正面宽度3.88mm,熔化区中部晶粒尺寸粗大,取向杂乱,树枝晶二次枝晶间距较大(6.71μm),枝晶间碳化物颗粒尺寸较为粗大,枝晶间Mo,Cr等合金元素的凝固偏析较为严重。焊接接头热影响区宽度约0.29mm,在晶界和晶内形成了γ+碳化物共晶组织,这是由于焊接升温过程中,热影响区内球状碳化物颗粒与周边奥氏体发生组分液化,并在焊后凝固过程中形成共晶。低热输入(90J/mm)工艺参数获得的焊缝正面宽度为2.28mm,焊缝呈沿熔合线母材外延生长并沿热流方向定向凝固形成的柱状晶形态。焊缝中部树枝晶二次枝晶间距较小(2.26μm),枝晶间碳化物颗粒尺寸细小,热影响区宽度约0.15mm。室温(25℃)拉伸测试表明:高热输入下获得的焊接接头由于焊缝中固溶元素偏析造成的局部组织弱化,从焊缝中部破坏,强度与伸长率有所降低,低热输入条件下获得的焊接接头从母材破坏。而高温实验条件下(900℃),母材晶界发生弱化导致所有试样均从母材破坏。
其他语种文摘 Inconel 617nickel-based superalloy with 3mm wall thickness was welded by laser beam using two different heat input welding parameters.The microstructure of the welded joint was observed by optical microscope and scanning electron microscope,and the mechanical properties of the welded joint at room temperature(25 ℃)and high temperature(900 ℃)were tested.The results show that the laser welding heat input has a significant effect on the microstructure and mechanical properties of Inconel 617welded joints.The front width of the laser weld obtained by high heat input (200J/mm)process parameters is 3.88mm.The grain size in the middle of the weld fusion zone is coarse,and the grain orientation is disordered.The secondary dendrite arm spacing in the middle of the weld is large (6.71μm).The carbide particle size between the dendrites is coarse,and the solidification microsegregation of Mo,Cr alloy elements is serious.The width of heat affected zone is about 0.29 mm.The eutectic structure ofγ+carbide is formed in the grain boundary and grain interior.This is because during the heating process of the welding,the spherical carbide particles and the surrounding austenite in the heat-affected zone liquefy and the eutectic structure is formed during the solidification process after welding.The front width of the laser weld obtained by low heat input (90J/mm)process parameters is 2.28mm,the grains inside the weld are columnar which is formed by epitaxial growth along the fusion line and directional solidification along the heat flow direction. The secondary dendrite arm spacing in the middle of the weld is small(2.26μm),the carbide particles between dendrites are small,and the width of heat affected zone is about 0.15 mm.The tensile strength test at room temperature(25℃)shows that the welded joints obtained under high heat input fracture from the middle of the weld,and the tensile strength and elongation decrease,which is caused by the segregation of solid solution elements in the weld.The welded joints obtained under low heat input fracture from the base metal.At high temperature(900 ℃),all samples fracture from the base metal,which is due to the weakening of the grain boundary of the base metal at high temperatures.
来源 材料工程 ,2023,51(1):113-121 【核心库】
DOI 10.11868/j.issn.1001-4381.2021.000790
关键词 镍基高温合金 ; 激光焊接 ; 热输入 ; 显微组织 ; 力学性能
地址

1. 航天材料及工艺研究所, 北京, 100076  

2. 清华大学机械工程系, 北京, 100084  

3. 中国航发北京航空材料研究院, 北京, 100095

语种 中文
文献类型 研究性论文
ISSN 1001-4381
学科 金属学与金属工艺
基金 国家自然科学基金航天先进制造联合基金
文献收藏号 CSCD:7390478

参考文献 共 18 共1页

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引证文献 4

1 朱兆剑 Inconel 690局部干法水下激光焊接接头组织及性能研究 中国激光,2023,50(16):1602107
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2 周裕琦 国产Invar合金激光焊接接头组织演变及拉伸性能研究 中国激光,2023,50(24):2402103
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