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1.
Non-Twin Strengthening and Toughening Mechanism for Cold-Weld Deposited Metall of High Carbon Alloy Steel;
冷焊态高碳合金钢型熔敷金属无孪晶强化及增韧
2.
Simpleness of Indexing F.C.C Twin Diffraction Patterns;
f.c.c孪晶衍射花样指标化的简化
3.
ON REDUCTION OF THE HIGH ORDER TWINNING IN FCC STRUCTURE TO A SINGLE ROTATION RELATIONSHIP
面心立方晶体高次孪晶化为一次旋转对称关系
4.
Formed by the process of twinning. Used of crystals.
孪晶由孪晶过程形成的。用于晶体
5.
Refinement mechanism of twins in austenitic stainless steel by equal channel angular pressing
等通道挤压变形奥氏体不锈钢中孪晶细化机理
6.
Optimization of Technique for Preparing Nanoscale Twin Crystal Nickel Coating by Orthogonal Test
纳米孪晶镍镀层制备工艺的正交设计优化
7.
ELECTROCHEMICAL CORROSION BEHAVIOR OF NICKEL COATING WITH HIGH DENSITY OF NANO-SCALE TWINS
高密度纳米孪晶镍镀层的电化学腐蚀行为
8.
The Evolution and Optimization Mechanism of Annealing-twinning Induced Grain Boundary Character Distribution of 304 Stainless Steel
基于退火孪晶的304不锈钢晶界特征分布优化及其机理研究
9.
grow as twins, of crystals.
水晶像孪生一样生长。
10.
EFFECT OF TWIN LAMELLAR THICKNESS ON THE FATIGUE PROPERTIES OF NANO-TWINNED Cu
孪晶片层厚度对纳米孪晶Cu疲劳性能的影响
11.
Annihilation of Deformation Twins and Formation of Annealing Twins
形变孪晶的消失与退火孪晶的形成机制
12.
TWINNING AND TWIN INTERSECTION IN AZ31 Mg ALLOY DURING WARM DEFORMATION
镁合金温变形过程中的孪生及孪晶交叉
13.
carbide whisker reinforced meta
碳化物晶须强化金属
14.
The main cause of low impact toughness is that following the long cooling time, the structure becomes coarsing and appears corse-grained twin-mastensite.
冷却时间长,显微组织粗化,出现粗大孪晶马氏体,这是影响韧性低的主要原因。
15.
Two area defects are twins and grain boundaries.
有两种面积缺陷,即孪生和晶粒间界。
16.
Epitaxial Growth of ZnO Films and the Form of the Twin Domains
ZnO外延薄膜的制备及孪晶的形成
17.
Two interwoven crystals that are mirror images of each other.
孪晶相互为翻版的两个相互交错的晶体
18.
Design of Amorphous Alloys and Crystallization Behavior of Amorphous Alloys in a High Magnetic Field;
非晶合金设计及强磁场下的非晶晶化行为