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1.
Research on Refining Properties of Al-Ti-B Master Alloys
Al-Ti-B中间合金的细化性能研究
2.
Study on the Effects of High-Intensty Ultrasound on Al-Ti-B Master Alloy;
高能超声对Al-Ti-B中间合金的影响规律研究
3.
Refining Technology of AZ91D Magnesium Alloy with Al-Ti-B Addition
Al-Ti-B中间合金对AZ91D镁合金的晶粒细化工艺的研究
4.
The Preparation of Al-Ti-B-Re the New Kinds of Master Alloy and the Research about Grain Refining Property;
新型中间合金Al-Ti-B-Re的制备及其细化性能的研究
5.
The Formation of Al-Ti-C Composites Via Combustion Synthesis;
Al-Ti-C中间合金的燃烧合成
6.
The Research on Process of Al-Ti-C Master Alloy Prepared by Thermal Explosion Method;
热爆法制备Al-Ti-C中间合金工艺研究
7.
Research on Microstructure and Properties of Al-Ti-B Reinforced Magnesium Alloy
Al-Ti-B增强镁合金组织性能的研究
8.
The Microstructure and Grain Refining Performance of Al-Ti-C Master Alloys Prepared by SHS;
自蔓延合成Al-Ti-C中间合金结构与性能研究
9.
The Preparation and Refining Performance Research of Al-Ti-C Master Alloys;
Al-Ti-C中间合金的制备及细化性能研究
10.
Effect of Al-Ti-B Addition on Microstructure and Mechanical Properties of AZ91D Magnesium Alloy
Al-Ti-B对AZ91D镁合金显微组织和力学性能的影响
11.
Investigations on Ti-Al Intermetallic Compound Porous Material;
Ti-Al金属间化合物多孔材料的研究
12.
The Research about Grain Refining Property and Preparation of Al-Ti-B Master Alloy;
A1-Ti-B中间合金的制备及其细化性能的研究
13.
The Different Igniting mode Have Influenced the Microstructure and Grain Refining Performance of Al-Ti-C Master Alloy;
引燃模式对燃烧合成Al-Ti-C中间合金的组织细化性能影响
14.
Preparation Research of Al-Ti-C Master Alloy by Self-Propagating High-Temperature Synthesis;
自蔓延高温燃烧合成Al-Ti-C中间合金的制备研究
15.
Microstructure and Purification Improvement of Al-Ti-B Master Alloy
改善Al-5Ti-B中间合金微观组织及洁净度的研究
16.
Effects of Processing Parameters on Second Phase Particles and Grain Refining Results in Al-Ti-C Master Alloys
工艺参数对Al-Ti-C中间合金第二相粒子及细化效果的影响
17.
Research of Al-Ti-B Refined Mg-20Al-0.8Zn Magnesium Alloy and Semi-solid Thixocasting Research
Al-Ti-B细化Mg-20Al-0.8Zn镁合金及其半固态触变压铸研究
18.
Effect of Al-Ti-B Master Alloy on Microstructure and Mechanics Properties of Mg-15Al-0.8Zn Magnesium Alloy
添加Al-Ti-B对Mg-15Al-0.8Zn镁合金组织和力学性能的影响