材料科学
微观结构
复合材料
热压
合并(业务)
钛镍合金
紧迫的
表征(材料科学)
超声波传感器
形状记忆合金
纳米技术
物理
会计
声学
业务
作者
Chunhuan Guo,Haocheng Shi,Shubang Wang,Fengchun Jiang,Tao Dong,Xuri Jing
标识
DOI:10.1002/adem.202400041
摘要
A novel method of preparing continuous NiTi f ‐reinforced Ti/Al‐laminated composites is proposed via ultrasonic consolidation (UC) and vacuum hot pressing. The microstructure of the composites is characterized by X‐ray diffraction, scanning electron microscopy, and electron backscattering diffraction. The tensile properties of the composites are measured by a universal testing machine. Results indicate that the composite exhibits multilayer structure consisting of residual NiTi fiber, intermetallic compounds (IMCs) layer, reaction layer, Ti layer, and Al layer. The intermetallic layer is composed of Al 3 Ti and Al 3 Ni, and some Ni‐rich precipitates are dispersed in the matrix. And with the introduction of UC assisted, grain refinement occurs at the IMC/Al interface, texture variation emerges at the NiTi fiber/IMCs interface, and a weakening of texture strength is observed at both interfaces. Compared to NiTi f ‐reinforced Ti/Al‐laminated composites without UC assisted, both the tensile strength (from 872.4 to 826.5 MPa) and failure strain (from 17.5% to 20.4%) of NiTi f ‐reinforced Ti/Al‐laminated composites with UC assisted increase due to the contribution of UC assisted. The reinforcing and fracture mechanisms of the UC assisted are also discussed.
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