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Microstructure and mechanical properties of Ti−6Al−4V/Ti−22Al−25Nb joint formed by diffusion bonding 被引量:6
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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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二维sp^(2)-碳共轭聚合物的结构设计、可控制备与应用研究
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作者 赵文凯 李升旭 +1 位作者 付广恩 张涛 《高分子学报》 SCIE CAS CSCD 北大核心 2024年第5期532-552,共21页
二维sp^(2)-碳共轭聚合物是指通过碳碳双键将构筑单元连接起来的层状聚合物材料.因其具有可设计的周期性多孔结构、高比表面积、优异的结构稳定性和高载流子迁移速率等优点,被认为是最具前景的聚合物新材料之一.本文以作者课题组的研究... 二维sp^(2)-碳共轭聚合物是指通过碳碳双键将构筑单元连接起来的层状聚合物材料.因其具有可设计的周期性多孔结构、高比表面积、优异的结构稳定性和高载流子迁移速率等优点,被认为是最具前景的聚合物新材料之一.本文以作者课题组的研究工作为主,对二维sp^(2)-碳共轭聚合物的结构设计和合成方法、薄膜可控制备策略及其在盐差发电、海水提铀、光催化、荧光传感和质子传导等领域应用进行了总结,并从晶体结构的调控、新型合成方法的探索、通用性薄膜合成策略的设计以及相关应用的拓展等方面对二维sp^(2)-碳共轭聚合物的研究进行了展望. 展开更多
关键词 二维sp^(2)-碳共轭共价有机框架 拓扑结构设计 薄膜合成 光催化能源转化
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