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1)  β titanium alloys
β钛合金
1.
R & D status for two kinds of high strength β titanium alloys used for springs,Timetal LCB and Ti-B20,is reviewed.
β钛合金因综合性能优异(良好的冷热成形性、时效强化效应明显、耐蚀等)成为高强钛弹簧的理想选择。
2)  β titanium alloy
β钛合金
1.
The sorts,development history,application range,application prospect and development direction of β titanium alloys in biomedicine and aerospace fields were introduced in this paper.
本文介绍了β钛合金的分类、在生物医学和航空航天领域的发展历史、应用范围,以及其应用前景和发展方向。
2.
The β titanium alloys developed at home and abroad are summarized and classified with Mo equivalent as standard.
本文以钼当量为标准对国内外研制的β钛合金进行了汇总和归类。
3)  β-titanium alloys
β-钛合金
1.
The design and progress of the study on new β-titanium alloys as biomedical materials was introduced.
主要介绍了新型生物医用β-钛合金的设计思路及研究进展。
4)  β-type titanium alloys
β型钛合金
1.
The aim of the study is to evaluate the in vivo biocompatibility to two novel β-type titanium alloys:TLE (Ti-(3~6)Zr-(2~4)Mo(24~27)Nb), TLM 2(Ti-(1.
通过皮下、肌肉植入试验评价两种β型钛合金材料TLE(Ti-(3~6)Zr-(2~4)Mo(24~27)Nb),TLM2(Ti-(1。
5)  near β titanium alloy
近β钛合金
1.
Objective:This study was intended to modify the surface of a novel near β titanium alloy Ti-5Zr-3Sn-5Mo-15Nb (TLM) by micro-arc oxidation(MAO),and evaluate the influence of MAO process on the morphology and integrin β1(Itgβ1) expression of osteoblasts cultured on TLM.
目的:采用微弧氧化(MAO)方法对近β钛合金Ti-5Zr-3Sn-5Mo-15Nb(TLM)进行表面处理,观察其对成骨细胞在其表面粘附形态及整合素表达水平的影响。
2.
The objective of this study was to modify the surface of a novel near β titanium alloy Ti-5Zr-3Sn-5Mo-15Nb (TLM) by micro-arc oxidation (MAO).
采用微弧氧化(MAO)方法对近β钛合金Ti-5Zr-3Sn-5Mo-15Nb(TLM)表面进行处理,分析其表面特性变化,并观察成骨细胞在其表面的早期粘附。
6)  α-β-titanium alloy
α-β钛合金
补充资料:β钛合金
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性质:退火空冷至室温几乎全为β相的钛合金。钼、钒、铬、铁等β相稳定元素为主要合金成分,有钛钼钒、钛钒铝等四个牌号。依牌号不同,性能变化幅度为:抗拉强度690~1400MPa,延伸率6%~10%,疲劳极限400~620MPa。:采用真空自耗电弧炉熔炼。用作铆钉、紧固件、飞机构架和火箭等。

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