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1)  super-elastic NiTi alloy
超弹性NiTi合金
1.
A stress-induced martensitic transformation and its reverse transformation will occur in the super-elastic NiTi alloy under the cyclic tension-unloading tests; while a martensite re-orientation will take place in the shape-memory NiTi alloy during the cyclic tension-unloading tests.
超弹性NiTi合金在循环加载和卸载过程中不断发生应力诱发马氏体相变和逆相变,而形状记忆NiTi合金在循环加载和卸载过程中不断发生应力诱发马氏体的重定向和弹性卸载。
2)  NiTi Ultra-elastic Wire
NiTi超弹丝
3)  superelastic alloy
超弹性合金
1.
Transformation and deformation characteristics of Ti-Ni-Co(Cr,V)superelastic alloys;
Ti-Ni-Co(Cr,V)超弹性合金的相变和形变特性
2.
8Ni(atomic fraction,%)superelastic alloy were investigated by DSC and tensile test.
8Ni(原子分数,%)超弹性合金相变和形变特性的影响。
3.
Mechanical properties of NiTi superelastic alloy wire has been widely studied by means of uniaxial tension and compression tests.
近20年来超弹性合金在机械和电子行业得到了广泛应用,但关于其性能的研究工作主要集中在丝材单向加载条件下,而对于复杂加载情况则涉及较少。
4)  NiTi alloy
NiTi合金
1.
Microstructures and properties of laser spot-welded joint of superelastic NiTi alloy wire;
超弹性NiTi合金丝激光点焊接头的组织和性能
2.
Microstructure and corrosion behavior of laser surface re - melted NiTi alloy;
激光重熔NiTi合金表面组织与腐蚀行为
3.
Preparation and characterization of bilayer bioactive film on medical NiTi alloy surface;
医用NiTi合金表面双层生物活性薄膜的制备及表征
5)  NiTi alloys
NiTi合金
1.
Surface modification of biomedical NiTi alloys with coldplasma technique;
医用NiTi合金低温等离子体表面改性
2.
The effects of a DC electric field up to 1kV/cm on the deformation behavior of NiTi alloys were determined at constant strain rate of 2.
在600℃和较低应变速率下进行NiTi合金的拉伸实验,研究了拉伸过程中外加电场(E=1 kV/cm)对其高温变形行为的影响。
3.
The characterization of PEG-like structures grafted on NiTi alloys surface under oxygen/di(ethylene glycol) methyl cold-plasma-process from electron cyclotron resonance conditions was studies in this paper.
本文研究了氧 二 (乙二醇 )甲醚低温等离子体条件下NiTi合金表面接枝PEG结构及其性质。
6)  NiTi alloy belt
NiTi合金带
1.
In this paper,the shape memory alloys(SMA) with special properties-NiTi alloy belts is composed in a component at the location where cracks(or damage)will most probablyemerge,and when matched with a computer monitoring system,the component becomes an intelligent composite component of NiTi alloy belts which can detect cracks automatically and controltleir growth actively.
根据复合工艺的特殊要求,提出了特性能优异的NiTi形状记忆合金薄带经特殊处理以后,将其复合于易产生裂纹(或损伤)的构件内,与微机监控系统相配合,利用NiTi合金带的特殊性能,实现对构件内裂纹的自动探测和控制。
补充资料:弹丝
1.弹奏弦乐器。
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