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Submicron-porous NiTi and NiTiNb shape memory alloys with high damping capacity fabricated by a new top-down process

机译:通过新的自顶向下工艺制造的具有高阻尼能力的亚微孔NiTi和NiTiNb形状记忆合金

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摘要

In this paper, submicron-porous NiTi and NiTiNb shape memory alloys were firstly fabricated by a new top-down process, including solidified phase controlling and etching process. These porous alloys possessed fine pore size (~0.4 μm) and homogeneous pore distribution. The mechanical properties of these porous alloys were similar to those prepared by conventional powder metallurgy techniques or bottom-up process. However, the damping capacity of the submicron-porous NiTi was ~0.07 and 40% higher than the counterparts produced by the conventional powder metallurgy techniques. The damping capacity of the submicron-porous NiTiNb was ~0.18 and 50% higher than its dense counterpart. The internal friction value at austenite state for submicron-porous NiTiNb was ~0.04 and 200% higher than its dense counterpart, 300% higher than submicron-porous NiTi. The high damping capacity of these submicron-porous shape memory alloys was considered to be caused partly by their fine pore structures, which enhanced the stress concentration and the microplastic deformation or collapse of thin nodes. These porous shape memory alloys exhibited moderate stiffness as well as high damping capacity and high specific strength, making them good candidate as practical engineering damping materials.
机译:本文首先通过一种新的自上而下的工艺,包括凝固相控制和刻蚀工艺,制备了亚微米孔NiTi和NiTiNb形状记忆合金。这些多孔合金具有细小孔径(〜0.4μm)和均匀的孔分布。这些多孔合金的机械性能类似于通过常规粉末冶金技术或自下而上的工艺制备的那些。但是,亚微孔NiTi的阻尼能力比传统粉末冶金技术生产的阻尼能力高约0.07%和40%。亚微孔NiTiNb的阻尼能力为〜0.18,比致密的NiTiNb高50%。亚微孔NiTiNb在奥氏体状态下的内摩擦值为〜0.04,比致密相变高200%,比亚微孔NiTi高300%。这些亚微孔形状记忆合金的高阻尼能力被认为部分是由于它们的细孔结构引起的,这增强了应力集中以及薄节的微塑性变形或塌陷。这些多孔形状记忆合金具有适度的刚度以及高阻尼能力和高比强度,使其成为实用的工程阻尼材料的理想选择。

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