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1.
Surface Analysis of Modified Near β Titanium Alloy TLM and Effects on Osteoblasts Adhesion
近β钛合金TLM表面处理后表面特性分析及对成骨细胞粘附的影响
2.
Growthing Behavior of β-phase Grain in High Strength Near-β Titanium Alloy Ti-26
近β型高强钛合金Ti-26的β晶粒长大行为
3.
Research on blocky alpha in beta processed TC21 titanium alloy
TC21钛合金β锻造大块α相研究
4.
A Comparative Study of Differential Thermal Analysis Method and Metallographic Observation Method for the α+β/β Transformation Temperature of Titanium Alloys
钛合金α+β/β转变温度测定的金相法与差热分析法对比研究
5.
The Study on Surface Bionic-Activate and Biocompatibility of β-Titanium Alloy;
β钛合金表面仿生活化及其生物相容性研究
6.
The Effect of the Bone Formation on New Low Elastic Modulus β Ti Alloy Implant-bone Interface;
新型低弹β钛合金植入物—骨界面成骨效应研究
7.
Characteristics of Cold Deformed and Superelasticity of TiNbZrTa Beta Titanium Alloy
TiNbZrTa β钛合金冷变形特点及超弹性机理研究
8.
Constitutive Modeling and Computation of High Temperature Viscoplastic Deformation of β Titanium Alloy
β型钛合金高温粘塑性本构建模及数值计算
9.
Effect of β-phase Stabilizing Elements on the Corrosion Behavior of Biomedical Ti Alloys
β稳定元素对医用钛合金腐蚀性能的影响
10.
Nucleation of dynamic recrystallization of titanium alloy TA15 during hot deformation process in β field
TA15钛合金β热变形中的动态再结晶形核
11.
Dynamic Recrystallization Processes During Hot Deformation of TC11 Titanium Alloy in β Field
TC11钛合金β相区热变形动态再结晶过程的研究
12.
Effect of Strain Rate on Deformation Behavior in α+β Phase Field of Titanium Alloy TC11
应变速率对TC11钛合金α+β相区变形行为的影响
13.
Wear Properties of Magnetron Sputtering TiN Coating on α+β Type Biomedical Ti6Al7Nb Alloy
α+β型生物钛合金磁控溅射TiN涂层磨损性能
14.
Near-Isothermal Forging Technology of TA15 Titanium Alloy Corbel Piece
TA15钛合金支臂近等温锻造工艺
15.
Development of Materials Database System for Ti-alloys,Quantitative Characterization for Microstructure and Composition Theoretical Design for Metastable β Ti-alloy
钛合金数据库系统的开发、显微组织定量表征及亚稳β钛合金的成分理论设计研究
16.
Synthesis and Characterization of Titanium and Zirconium Complexes with Novel β-Diketiminato Derivative Dianionic Ligands
基于β-二亚胺配体骨架的钛锆金属有机化合物的合成及表征
17.
Production choosing β titanium alloy after heat treatment could increase the high temperature intensity and wear off with hardness of HRC42.
选择β钛合金材质生产,经热处理后增加高温强度及耐磨性,硬度HRC42。
18.
Design and Research on Properties of New Type Metastable β Titanium Alloys with Low Elastic Moduli for Biomedical Applications;
生物医用新型低弹性模量亚稳β钛合金的设计及性能研究