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热压制备Ni/Al微叠层复合板的协调变形行为和气压胀形成形性
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作者 鲁羽鹏 殷宏亮 +3 位作者 席先铮 孟令健 林鹏 梁伟 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第3期786-797,共12页
为了制造NiAl合金复杂薄壁构件,采用真空热压法制备一种新型Ni/Al微叠层复合板(NAMCS)。基于不同温度的单向拉伸试验,研究Ni/Al微叠层复合板的力学性能。为了阐明Ni/Al微叠层复合板的单向拉伸协调变形机制,通过扫描电子显微镜对不同拉... 为了制造NiAl合金复杂薄壁构件,采用真空热压法制备一种新型Ni/Al微叠层复合板(NAMCS)。基于不同温度的单向拉伸试验,研究Ni/Al微叠层复合板的力学性能。为了阐明Ni/Al微叠层复合板的单向拉伸协调变形机制,通过扫描电子显微镜对不同拉伸应变下的变形组织进行表征。结果表明,在5%应变、室温和300℃条件下,NiAl_(3)层和Ni_(2)Al_(3)层中形成了一些裂纹。在600℃和20%应变条件下,在NiAl3层观察到一些微孔。样品在78.7%的拉伸应变断裂时,Ni_(2)Al_(3)层也未出现裂纹,表现出良好的协调变形能力。Ni/Al微叠层复合板的高温自由气压胀形试验表明,600℃时其极限胀形比(极限胀形高度与凹模直径之比)达到33.3%,表现出良好的成形性。 展开更多
关键词 Ni/Al微叠层复合板 力学性能 协调变形机制 气压胀形 成形性
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Microstructure and mechanical properties of Ti−6Al−4V/Ti−22Al−25Nb joint formed by diffusion bonding 被引量:5
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作者 Peng LIN xian-zheng xi +4 位作者 Wen-kai ZHAO Rui-hongYANG Fei LIN xiao-lei CUI Gang LIU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第5期1339-1349,共11页
Ti-6Al-4V(wt.%) and Ti-22Al-25Nb(at.%) were joined by diffusion bonding at 950 ℃ and 15 MPa for 100 min, and the microstructure and mechanical properties of the resulting joints were investigated. The composition of ... Ti-6Al-4V(wt.%) and Ti-22Al-25Nb(at.%) were joined by diffusion bonding at 950 ℃ and 15 MPa for 100 min, and the microstructure and mechanical properties of the resulting joints were investigated. The composition of the diffusion layer is B2/discontinuous α/α2 layer/necklace-shaped β+α’ layer, where the content of any element at a given point mainly depends on the distance of the point from the interface and the phase type at the point. The tensile strength of the joint is 894 MPa, which is almost the same as that of the Ti-22Al-25Nb base alloy. The fracture surfaces on both sides of the joint are composed of two main regions. One region displays a relatively flat surface and fractures along the bonding interface. The other is composed of a moderate number of irregularly-shaped cavities on the Ti-6Al-4V side and many irregularly-shaped bulges on the Ti-22Al-25Nb side. Both regions result from fracture along the boundaries between β+α’ layers and αp grains or from the transcrystalline fracture of αp grains. 展开更多
关键词 diffusion bonding Ti−6Al−4V Ti−22Al−25Nb INTERFACE diffusion layer
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