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1.
The production of high strength and toughness steel plates used for pipeline by Nb microalloying process was introduced.
阐述了利用铌微合金化技术生产高强韧性管线用钢板的工艺技术。
2.
Study of ZA43 Alloy Micro-arc Oxidation;
ZA43高铝锌合金微弧氧化技术的研究
3.
RESEARCH OF HRB400 PRODUCED WITH NON-MICROALLOY TECHNOLOGY
非微合金化HRB400钢筋生产技术研究
4.
Progress in Micro-arc Oxidation Technology for Titanium Alloy
钛合金表面微弧氧化技术的研究进展
5.
Technical Study on Electromagnetic Casting and Microalloy of High Strength Aluminum Alloys;
高强铝合金微合金化与电磁成型技术的研究
6.
THE PREPARATION TECHNOLOGY OF MICROARC OXIDATION COATING FOR MAGNESIUM AND STUDY OF COATING CORROSION-RESISTANCE;
镁合金微弧氧化膜层制备技术及其耐蚀性研究
7.
Microarc Oxidation Technique of Magnesium Alloys and Corrosion Resistance of Its Coatings
镁合金微弧氧化技术及其膜的耐蚀性能
8.
The reaction process, mechanism and structure characteristics of microarc oxidation were introduced for aluminum alloy.
介绍了铝合金表面微弧氧化技术的工艺过程、反应机理和结构特征。
9.
Investigation on Film Preparing Processes, Microstructure and Anti-corrosion Performance of Zinc Phosphate Coatings of AZ91D Magnesium Alloy
AZ91D镁合金环保型磷化膜制备技术、微观结构及其耐腐蚀性能研究
10.
Research and Development of a High Strength Micro-alloyed Steel with Yield Strength of 700MPa;
700MPa级高强度微合金钢生产技术研究
11.
Study on Micro-EDM Technology for Ta-W Alloy;
Ta-W合金微细电火花加工技术研究
12.
Study on the Technology of Stannate Conversion Coating for Magnesium Alloy;
镁合金锡酸盐化学转化处理技术研究
13.
The Application of Noncrystalline and Microcrystalline Core in Power Electronics
非晶和微晶合金铁心在电力电子技术中的应用
14.
The Study of Microstructure Numerical Simulation of Aluminum Alloy under Solidification Process Using Phase-field Method;
铝合金微观组织相场法数值模拟技术研究
15.
Study on Production of Free-Lead Solder Alloy and Solder Alloy Fine Powder of Sn-Ag-Cu System;
Sn-Ag-Cu系无铅焊锡合金及其微粉制备技术研究
16.
The Study of Microstructure Simulation of Aluminum Alloy under Solidification Process;
铝合金凝固过程微观组织模拟技术研究
17.
Microstructure Display Technology on Distortion Aluminum Alloy by Anodic Film Formation
变形铝合金显微组织阳极复膜显示技术
18.
Study on the High Speed Milling of Titanium Alloy Based on Cooled Gaseous Nitrogen and Minimal Quantities of Lubricant Technology;
基于低温氮气和微量润滑技术的钛合金高速铣削技术研究