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1)  NiTi alloy fiber
NiTi合金纤维
1.
Influence of NiTi alloy fiber surface treatment on shear strength of resin matrix composites;
NiTi合金纤维表面处理对树脂基复合材料界面剪切性能的影响
2)  NiTi fiber
NiTi纤维
1.
Mechanic behavior of the viscoelastic and the elastic matrix composites with NiTi fiber;
NiTi纤维增强粘弹性基体与弹性基体复合材料的力学特性
2.
A method to bring into full play the functions of composites with prestrained NiTi fiber
充分发挥NiTi纤维复合材料功能的一种方法
3.
In order to enhance the tensile strength,impact strength and flexural strength of NiTi fiber/resin composites,surface treatment of NiTi fiber was conducted using nitric acid,silanes coupling agent,triisocyanate coating and the combined treatment of low-temperature plasma and silanes coupling agent,and the surface adhesion strength between the fiber and resin matrix enhanced.
为了提高基于NiTi纤维与树脂复合材料的拉伸、冲击、弯曲性能,采用硝酸、硅烷偶联剂、异氰酸酯涂层以及低温等离子体与硅烷偶联剂联合处理等方法对NiTi纤维表面进行处理,增强纤维与树脂间的界面黏结。
3)  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
4)  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。
5)  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。
6)  NiTi alloy thin film
NiTi合金膜
补充资料:碳(石墨)纤维增强体(见碳纤维、石墨纤维)


碳(石墨)纤维增强体(见碳纤维、石墨纤维)
earbon(graPhite)fibrereinforeements

,、、里z耽维增强体earbon(graphi现inforcements用于复合材料中承受负荷,田的磷纤始知五史纤俯亡e)fibre起增强作
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