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Investigation on the process parameters of TIG-welded aluminum alloy through mechanical and microstructural characterization 被引量:7
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作者 Muhammad Samiuddin Jing-long Li +3 位作者 Muhammad Taimoor Mohammad Nouman Siddiqui Sumair Uddin Siddiqui Jiang-tao Xiong 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2021年第4期1234-1248,共15页
Multi-pass TIG welding was conducted on plates(15×300×180 mm^(3))of aluminum alloy Al-5083 that usually serves as the component material in structural applications such as cryogenics and chemical processing ... Multi-pass TIG welding was conducted on plates(15×300×180 mm^(3))of aluminum alloy Al-5083 that usually serves as the component material in structural applications such as cryogenics and chemical processing industries.Porosity formation and solidification cracking are the most common defects when TIG welding Al-5083 alloy,which is sensitive to the welding heat input.In the experiment,the heat input was varied from 0.89 kJ/mm to 5 kJ/mm designed by the combination of welding torch travel speed and welding current.Tensile,micro-Vicker hardness and Charpy impact tests were executed to witness the impetus response of heat input on the mechanical properties of the joints.Radiographic inspection was performed to assess the joint’s quality and welding defects.The results show that all the specimens displayed inferior mechanical properties as compared to the base alloy.It was established that porosity was progressively abridged by the increase of heat input.The results also clinched that the use of medium heat input(1-2 kJ/mm)offered the best mechanical properties by eradicating welding defects,in which only about 18.26% of strength was lost.The yield strength of all the welded specimens remained unaffected indica ted no influence of heat input.Partially melted zone(PMZ)width also affected by heat input,which became widened with the increase of heat input.The grain size of PMZ was found to be coarser than the respective grain size in the fusion zone.Charpy impact testing revealed that the absorbed energy by low heat input specimen(welded at high speed)was greater than that of high heat input(welded at low speed)because of low porosity and the formation of equiaxed grains which induce better impact toughness.Cryogenic(-196℃)impact testing was also performed and the results corroborate that impact properties under the cryogenic environment revealed no appreciable change after welding at designated heat input.Finally,Macro and micro fractured surfaces of tensile and impact specimens were analyzed using Stereo and Scanning Electron Microscopy(SEM),which have supported the experimental findings. 展开更多
关键词 tungsten inert gas welding(tig) Heat input welding defects Tensile strength Charpy impact strength Micro-vicker hardness SEM
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几种稀土钨电极焊接5A62铝合金的工艺性能 被引量:4
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作者 杨建参 曹杰 +1 位作者 张晓 黄林 《北京工业大学学报》 CAS CSCD 北大核心 2014年第10期1561-1564,共4页
为了寻求替代钍钨电极的节能环保、焊接性能优异的电极,针对多元稀土钨、钍钨、铈钨3种电极进行了烧损性能测试,并进行了钨极惰性气体(tungsten inert gas,TIG)保护焊实验,结果表明:钍钨电极的抗烧损性能最差,多元电极略优于铈钨电极... 为了寻求替代钍钨电极的节能环保、焊接性能优异的电极,针对多元稀土钨、钍钨、铈钨3种电极进行了烧损性能测试,并进行了钨极惰性气体(tungsten inert gas,TIG)保护焊实验,结果表明:钍钨电极的抗烧损性能最差,多元电极略优于铈钨电极;焊缝接头的熔深和熔宽与焊接电流和焊接速度等焊接参数有关;采用多元稀土钨电极焊接后,在100 ~ 180 A的焊接电流下熔宽均小于铈钨电极和钍钨电极的熔宽;通过比较分析铈钨电极和多元电极焊接接头的显微组织、硬度曲线分布、扫描断口和力学拉伸实验结果,发现多元稀土钨电极的焊接接头力学性能和焊缝成型优于钍钨和铈钨电极,从而可替代钍钨和铈钨电极进行铝合金焊接. 展开更多
关键词 稀土钨电极 5A62铝合金 钨极惰性气体(tig)焊接 力学性能
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