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双重退火对TC21钛合金电子束焊接接头组织性能的影响
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作者 余槐 袁鸿 王金雪 《焊接》 北大核心 2010年第4期17-19,共3页
为了解决TC21钛合金电子束焊接接头脆性较大的问题,提高其电子束焊接接头的冲击韧性,对TC21钛合金电子束焊接接头进行热处理研究和其接头组织性能的分析。研究表明,TC21钛合金电子束焊接接头经双重退火热处理后具有良好的综合性能,即具... 为了解决TC21钛合金电子束焊接接头脆性较大的问题,提高其电子束焊接接头的冲击韧性,对TC21钛合金电子束焊接接头进行热处理研究和其接头组织性能的分析。研究表明,TC21钛合金电子束焊接接头经双重退火热处理后具有良好的综合性能,即具有较好的强度和断后伸长率,冲击韧性达到母材的58%;接头经双重退火后,焊缝α′相发生分解,生成α相和β相。 展开更多
关键词 TC21钛合金电子束焊接双重退火
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航空制造中常用材料焊接的性能浅谈 被引量:1
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作者 李飞 虞文军 李洪林 《航空制造技术》 2011年第11期57-61,共5页
在航空工业中,无论是飞机、发动机或机载设备的制造都广泛采用了各种焊接技术。航空产品的结构愈来愈复杂,对性能和可靠性的要求愈来愈高,对寿命的要求则愈来愈长,焊接正在从粗加工向精加工方向发展,各种焊接方法过程精细控制已成为必... 在航空工业中,无论是飞机、发动机或机载设备的制造都广泛采用了各种焊接技术。航空产品的结构愈来愈复杂,对性能和可靠性的要求愈来愈高,对寿命的要求则愈来愈长,焊接正在从粗加工向精加工方向发展,各种焊接方法过程精细控制已成为必需。质量是航空产品的生命线,航空零件更高的焊接质量,一直是焊接科技人员的目标。 展开更多
关键词 电子束焊接技术 焊接质量 MPA 搅拌摩擦焊 激光焊接 母材 焊接材料 疲劳寿命 疲劳力学性质 钛合金电子束焊接 航空 材料焊接
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第十七次全国焊接学术会议论文题录
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《机械制造文摘(焊接分册)》 2012年第6期44-48,共5页
关键词 钎料 焊接材料 导电材料 焊接 钛合金电子束焊接 激光焊接 搅拌摩擦焊 接头组织 线性摩擦焊接 会议论文 会议录 题录 检索工具
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第十六次全国焊接学术会议论文题录
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《机械制造文摘(焊接分册)》 2011年第6期45-48,共4页
关键词 搅拌摩擦焊 线性摩擦焊接 电阻点焊 接头组织 钛合金电子束焊接 真空钎焊接 水下湿法焊接 激光焊接 复合焊接 熔池流动 点焊工艺 接头性能 合金 轻有色金属合金 钨极氩弧焊 扩散连接 扩散焊 激光深熔焊 会议论文 会议录 题录 检索工具
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Effect of hot working on microstructure and mechanical properties of TC11/Ti_2AlNb dual-alloy joint welded by electron beam welding process 被引量:3
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作者 秦春 姚泽坤 +2 位作者 李誉之 宁永权 郭鸿镇 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第11期3500-3508,共9页
The influence of hot working on the microstructures of TC11/Ti2 Al Nb dual-alloy joints welded by electron beam welding(EBW) process was investigated. The tensile tests were performed at room temperature for specimens... The influence of hot working on the microstructures of TC11/Ti2 Al Nb dual-alloy joints welded by electron beam welding(EBW) process was investigated. The tensile tests were performed at room temperature for specimens before and after thermal exposure. The results show that the fusion zone of TC11/Ti2 Al Nb dual-alloy joint welded by EBW is mainly composed of β phase. After deformation and heat treatment, the grain boundaries of the as-cast alloy are broken and the fusion zone mainly consists of β, α2and α phases. The fusion zone performs poor property in the tensile test. Specimens before and after thermal exposure all fail in this area under different deformation conditions. The ultimate tensile strength of specimens after heat treatment is up to 1190 MPa at room temperature. The joints by water quenching after deformation have better plasticity with an elongation up to 4.4%. After thermal exposure at 500 °C for 100 h, the tensile strength of the specimen slightly rises while the ductility changes a little. SEM observation shows that the fracture mechanism is predominantly transgranular under different deformation conditions. 展开更多
关键词 hot working titanium alloy mechanical properties thermal stability electron beam welding
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Influences of different filler metals on electron beam welding of titanium alloy to stainless steel 被引量:10
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作者 王廷 张秉刚 冯吉才 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第1期108-114,共7页
Electron beam welding experiments of titanium alloy to stainless steel were carried out with different filler metals, such as Ni, V, and Cu. Microstructures of the joints were examined by optical microscopy, scanning ... Electron beam welding experiments of titanium alloy to stainless steel were carried out with different filler metals, such as Ni, V, and Cu. Microstructures of the joints were examined by optical microscopy, scanning electron microscopy and X-ray diffraction analysis. Mechanical properties of the joints were evaluated according to tensile strength and microhardness. As a result, influences of filler metals on microstructures and mechanical properties of electron beam welded titanium-stainless steel joints were discussed. The results showed that all the filler metals were helpful to restrain the Ti-Fe intermetallics. The welds with different filler metals were all characterized by solid solution and interfacial intermetallics. For each type of the filler metal, the type of solid solution and interfacial intermetallics depended on the metallurgical reactions between the filler metals and base metals. The interfacial intermetallics were Fe2Ti+Ni3Ti+NiTi2, TiFe, and Cu2Ti+CuTi+CuTi2 in the joints welded with Ni, V, and Cu filler metals, respectively. The tensile strengths of the joints were dependent on the hardness of the interfacial intermetallics. The joint welded with Ag filler metal had the highest tensile strength, which is about 310 MPa. 展开更多
关键词 titanium alloy stainless steel filler metal electron beam welding mechanical property
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Electron beam welding of Ti-15-3 titanium alloy to 304 stainless steel with copper interlayer sheet 被引量:9
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作者 王廷 张秉刚 +2 位作者 陈国庆 冯吉才 唐奇 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第10期1829-1834,共6页
Electron beam welding of Ti-15-3 titanium alloy to 304 stainless steel with a copper sheet as interlayer was carried out.Microstructures of the joint were studied by optical microscopy(OM),scanning electron microscopy... Electron beam welding of Ti-15-3 titanium alloy to 304 stainless steel with a copper sheet as interlayer was carried out.Microstructures of the joint were studied by optical microscopy(OM),scanning electron microscopy(SEM) and X-ray diffractometry(XRD).In addition,the mechanical properties of the joint were evaluated by tensile test and the microhardness was measured.These two alloys were successfully welded by adding copper transition layer into the weld.Solid solution with a certain thickness was located at the interfaces between weld and base metal in both sides.Regions inside the weld and near the stainless steel were characterized by solid solution of copper with TiFe2 intermetallics dispersedly distributed in it.While weld near titanium alloy contained Ti-Cu and Ti-Fe-Cu intermetallics layer,in which the hardness of weld came to the highest value.Brittle fracture occurred in the intermetallics layer when the joint was stretched. 展开更多
关键词 Ti-15-3 titanium alloy 304 stainless steel electron beam welding interrnetallics layer mechanical properties
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Effect of microstructure inhomogeneity on mechanical properties of different zones in TA15 electron beam welded joints 被引量:4
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作者 Cai-yan DENG Ce LIU +3 位作者 Bao-ming GONG Cheng-ze ZHANG Chang LIU Yong LIU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第3期678-687,共10页
The effects of microstructure inhomogeneity on the mechanical properties of different zones in TA15 electron beam welded joints were investigated using a micromechanics-based finite element method.Considering the inde... The effects of microstructure inhomogeneity on the mechanical properties of different zones in TA15 electron beam welded joints were investigated using a micromechanics-based finite element method.Considering the indentation size effect,the mechanical properties for constituent phases of the base metal(BM) and heat affected zone(HAZ) were determined by the instrumented nano-indentation test.The macroscopic mechanical properties of BM and HAZ obtained from the tensile test agree well with the numerical results.The incompatible deformation between the constituent phases tends to localize along the softer primary phase a where failure usually initiates in form of localized plastic strain.Compared with the BM,the mechanical properties of constituent phases in the HAZ differ substantially,leading to more serious strain localization behavior. 展开更多
关键词 microstructure inhomogeneity strain localization electron beam welding titanium alloy finite element analysis
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