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1)  Ti-B19 alloy
Ti-B19合金
1.
The precipitation behaviors of metastable β phase of Ti-B19 alloy were studied by TEM, SEM and X-Ray diffraction analysis.
采用透射、扫描电镜及X射线衍射分析研究了Ti-B19合金中亚稳定β相在时效过程中的分解特性。
2)  Ti-B19 titanium alloy
Ti-B19钛合金
1.
The microstructure of Ti-B19 titanium alloy cylindrical bullet with the dimension size of Φ13mm×40 mm at high speed impacting was investigated.
对Ti-B19钛合金Φ13mm×40 mm柱型弹丸打靶后的显微组织进行了研究。
2.
The precipitation behavior of silicides in Ti-B19 titanium alloy during solution and aging treatment was studied by optical microscope,transmission electron microscope and X-ray diffractometer.
采用透射电镜、光学显微镜及X射线衍射仪观察和分析了Ti-B19钛合金固溶时效过程中硅化物的析出特点。
3.
A high strength, metastable βTi-B19 titanium alloy has been developed by Northwest Institute for Nonferrous Metals Research.
Ti-B19钛合金是西北有色金属研究院研制成功的高强度亚稳定β型合金,具有加工性能好、高强度、高韧性和优良的耐海水腐蚀性能,在国防建设、石油化工、体育卫生等领域具有广泛的应用前景。
3)  Ti Alloy
Ti合金
1.
Preparation and Research of Medical Ti Alloy Surface Biology Glass Coating;
医用Ti合金表面生物玻璃涂层的制备与研究
2.
Effect of collagen and heat treatment on the properties of HA coating on Ti alloy;
胶原和热处理对Ti合金表面HA涂层性能的影响
3.
Effect of rare earth element on microstructure and mechanical properties of powder metallurgy Ti alloy;
添加稀土元素对粉末冶金Ti合金显微组织和力学性能的影响
4)  Ni-Ti alloy
Ni-Ti合金
1.
Study on the vacuum hot-pressed technology of Ni-Ti alloys based on Ni and Ti foils;
基于箔带材Ni-Ti合金的真空热压工艺研究
2.
Preparation of Ni-Ti alloy by direct electrochemical deoxidation in low temperature molten salt
低温熔盐电解制备Ni-Ti合金
3.
The results show that Ti(C,N)-based cermets without Ni-Ti alloy present typical core-rim microstructure and nearly spherical shape of hard phase; the microstructure of cermets gets finer,and the shape of hard phase becomes multiangular with the increasing of Ni-Ti alloy,the interface between hard phase.
采用粉末冶金方法真空烧结制备了添加Ni-Ti形状记忆合金的Ti(C,N)-Co系金属陶瓷,研究了Ni-Ti合金对Ti(C,N)基金属陶瓷显微组织和力学性能的影响。
5)  Ti-Ni alloy
Ti-Ni合金
1.
Preparation of diamond-like carbon films on Ti-Ni alloy by pulsed vacuum arc technique;
Ti-Ni合金上镀制类金刚石薄膜研究
2.
At the same time, the DSC curve gives the Ti-Ni alloy’s martensitic start temperature (Ms) and end temperature (Mf), the austenitic start temperature (As) and end temperatur.
同时,给出了Ti-Ni合金的马氏体起始温度Ms,马氏体结束温度Mf,奥氏体起始温As和奥氏体结束温度Af,并对其相变过程进行了判断。
3.
DSC curves in Ti-Ni alloys can be classified into 6 kinds.
结果表明,Ti-Ni合金的DSC曲线分6种类型。
6)  Ti-Mo alloy
Ti-Mo合金
1.
Based on the calculated results,the influences of Mo contents on theβphase stability and elastic property of Ti-Mo alloys were investigated.
5%的Ti-Mo二元合金的能量、电子结构以及弹性性质进行了理论计算,研究了Mo含量对Ti-Mo合金的β结构稳定性和弹性性质的影响。
2.
The density, Vickers hardness, compressive strength, elastic modulus and bending strength of the Ti-Mo alloy were examined by adding Mo into pure Ti to prepare the binary alloy.
在纯钛中加入Mo元素制成二元Ti-Mo合金,测定了Ti-Mo合金的密度、维氏硬度、抗压强度、弹性模量及抗弯强度等性能。
补充资料:Ti_(3)Al基合金(金属间化合物)涡轮导风板


Ti_(3)Al基合金(金属间化合物)涡轮导风板


  TiaA,基合金(金属间化合物)涡、、风*。利;:,
  
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