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GH3230合金选区激光熔化成形工艺对激光焊开裂的影响研究
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作者 张泽宇 闫梦喆 +4 位作者 罗文睿 席鑫 路永新 林丹阳 宋晓国 《航天制造技术》 2024年第3期54-59,共6页
采用选区激光熔化技术(SelectiveLaserMelting,SLM)制备了GH3230镍基高温合金,研究了工艺参数对GH3230镍基高温合金激光焊接开裂的影响。实验表明,随着扫描间距从0.05mm增加至0.09mm的过程中,母材析出的碳化物平均尺寸在增大,母材晶粒... 采用选区激光熔化技术(SelectiveLaserMelting,SLM)制备了GH3230镍基高温合金,研究了工艺参数对GH3230镍基高温合金激光焊接开裂的影响。实验表明,随着扫描间距从0.05mm增加至0.09mm的过程中,母材析出的碳化物平均尺寸在增大,母材晶粒尺寸明显减小,晶界角向右偏移,得到的晶界角分布变得更为均匀。在激光焊接后,由于遗传效应的影响,焊缝处的晶粒随着扫描间距的增大也同母材晶粒一起减小,晶界角分布变得更加均匀,提高整体抵抗裂纹能力,焊缝中裂纹总长和最大长度都逐渐降低,裂纹数量逐渐减少。最终得出在扫描间距为0.09mm时,成形的合金试样在多种焊接工艺条件下抵抗开裂的能力最佳。 展开更多
关键词 选区激光熔化 GH3230合金 扫描间距 焊接裂纹
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Prediction of vulnerable zones based on residual stress and microstructure in CMT welded aluminum alloy joint
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作者 舒凤远 田泽 +5 位作者 吕耀辉 贺文雄 吕飞洋 林建军 赵洪运 徐滨士 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第8期2701-2707,共7页
Numerical simulation and experimental results were employed for the identification of the most vulnerable zones in three-pass cold-metal-transferring (CMT) welded joint. The residual stress distribution in the joint... Numerical simulation and experimental results were employed for the identification of the most vulnerable zones in three-pass cold-metal-transferring (CMT) welded joint. The residual stress distribution in the joint was predicted by finite element (FE) method, while the structural morphology of distinctive zones was obtained through metallographic experiments. The highest principal stress made the symmetric face of the joint most sensitive to tensile cracks under service conditions. Whereas, the boundaries between the weld seam and the base plates were sensitive to cracks because the equivalent von Mises stress was the highest when the first interpass cooling was finished. The third weld pass and the inter-pass remelted zones exhibited the modest mechanical performances as a result of the coarse grain and coarse grain boundary, respectively. The most vulnerable zones were regarded to be the crossed parts between the zones identified by numerical and experimental methods. 展开更多
关键词 aluminum alloy vulnerable zone cold-metal-transferring welded joint residual stress microstructure morphology
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Effect of auxiliary TIG arc on formation and microstructures of aluminum alloy/stainless steel joints made by MIG welding-brazing process 被引量:7
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作者 张洪涛 刘积厚 冯吉才 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第9期2831-2838,共8页
A new hybrid welding process was successfully used to join aluminum alloy and stainless steel. In the MIG welding-brazing process, the lower thermal conductivity of steel can cause dramatic change of temperature gradi... A new hybrid welding process was successfully used to join aluminum alloy and stainless steel. In the MIG welding-brazing process, the lower thermal conductivity of steel can cause dramatic change of temperature gradient on steel surface, while the auxiliary TIG arc can change this phenomenon by heating the steel side. The auxiliary TIG improved the wettability of molten metal, resulting in the molten metal spreading fully on upper surfaces, front and back surface of steel, forming a sound brazing joint; the content of Cr and Ni elements in IMCs layer was increased, which can enhance the quality of the layer; and the microstructure of IMCs layer also was improved, increasing the bonding strength with the weld seam. The average tensile strength of the joint obtained with auxiliary TIG arc(146.7 MPa) was higher than that without auxiliary TIG arc(96.7 MPa). 展开更多
关键词 WELDING-BRAZING auxiliary TIG arc WETTABILITY intermetallics layer mechanical property
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