定向凝固
- 网络Directional solidification;orientated solidification;D.S
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定向凝固Al/C复合材料研究
Directional solidification of al / C Composite
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MonteCarlo方法在定向凝固模拟中的应用
Application of Monte Carlo Method for the Microstructure Simulation of Directional Solidification
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关于{x/n}的分布定向凝固钴基高温合金中碳化物形态和分布
Morphology and distribution of carbides in directionally solidified cobalt base superalloy
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定向凝固Al-38.5%Cu合金中Al2Cu相的小平面特性
Facet of Al_2Cu Phase in Directionally Solidified Al-38.5 % Cu Alloy
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浇注温度对定向凝固Al-Cu合金热裂的影响
Influence of Casting Temperature on Hot Cracking of Directionally Solidified Al-Cu Alloys
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定向凝固Ti-(44%&54%)Al合金的凝固相选择
Solidification phase selection in directionally solidified ti - ( 44 % - 54 % ) al alloys
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P,Zr,B对定向凝固IN738合金组织和偏析的影响
Effects of p , Zr and B on Microstructure and segregation of directionally solidified in 738 super alloy
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金属/气体共晶二维定向凝固放射状多孔Mg的结构特征
Structural features of radial & type porous magnesium fabricated by bidirectional solidification of metal / gas eutectic
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激光区熔定向凝固Al2O3/YAG/ZrO2亚共晶陶瓷的微观组织
Microstructure of Al_2O_3 / YAG / ZrO_2 Hypoeutectic Ceramics Directionally Solidified with Laser Zone Melting
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La对定向凝固Al-4.5%Cu合金热疲劳性能的影响
Effect of La on Thermal Fatigue Property of Unidirectional Solidification of Al-4.5 % Cu Alloy
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低生长速度下定向凝固Nd(13.5)Fe(81.5)B5永磁合金的磁取向
Magnetic Alignment of Directionally Solidified Nd_ ( 13.5 ) Fe_ ( 81.5 ) B_5 Alloy at Lower Crystal Growth Speeds
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凝固界面临界分叉-Sn-Pb共晶定向凝固几何模型
Critical Splitting of the Solidifying Interface-the Geometric Model of the Sn-Pb Eutectic during Directional Solidification
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TiAl金属间化合物的定向凝固和晶向控制
Directional solidification and lamellar orientation control of TiAl intermetallics
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HRS定向凝固过程中固/液界面位置控制
Control of solid / liquid interface position on directional solidification process
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Hf和凝固冷速对定向凝固高温合金低周疲劳性能的影响
Effect of Element Hf and Cooling Rate during Solidification on Low Cycle Fatigue Properties of Directionally Solidified Superalloys
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镍基高温合金HRS定向凝固过程的计算机模拟及控制
Computer modelling and control of HRS directional solidification process of Ni-base superalloys
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限制定向凝固法制备YBCO超导体单畴生长的分析
Analysis of the Limits of YBCO Single Domain Growth Using Directional Solidification Method
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定向凝固Ni3Al-Mo基合金高温氧化研究
High temperature oxidation behavior of DS ni_3al-mo base alloy
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用电子探针测定了铝合金中Al-1.35%Cu和Al-0.25%Cr在定向凝固过程中液固界面处的溶质分配系数。
The electron microprobe was used to determine the solute distribution coefficient at liquid-solid interface in Al-1.35 % Cu and Al-0.25 % Cr alloys during directionally solidification .
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定向凝固制备YBCO高温超导氧化物的工艺探索及组织分析
Study on Technology Searching and Microstructure Analysis of YBCO Superconductors Made by Directional Solidification
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HRS法定向凝固的理论分析5mM丁酸钠作用24小时后,细胞体积增大,形态改变呈现上皮样;
Theoretical Analysis of Directional Solidification in HRS Process 24 hrs .
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对钛合金中的TiC,用重力法和定向凝固法制备试样,分析研究了其中TiC形态及生长方向。
Morphology and growing direction of TiC in titanium alloy has been investigated by gravity and directional solidification technique .
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定向凝固和单晶体的Ni3Al(B,Hf)在中温下的蠕变-疲劳性能
Creep-fatigue behavior of directionally solidified and single crystal intermetallic ni3al ( b , hf ) at an intermediate temperature
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定向凝固Ni3Al合金高温变形后的显微组织特征
Microstructure features in directionally solidified ni_3al alloy after high temperature deformation
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Al-Cu合金高梯度定向凝固过程中的形态转变
Morphological transitions during directional solidification under high thermal gradient
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定向凝固NiAl-Cr(Mo,Hf)合金的显微组织及力学性能研究
The Microstructure and Mechanical Property of a Directionally Solidified NiAl-Cr ( Mo , Hf ) Composite
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运用光学显微镜、扫描电子显微镜、能谱分析仪、X射线衍射仪、热分析仪对多主元合金进行了显微结构、元素分布、相组成、热性能和定向凝固组织演化规律的研究。
The phase , distribution of element , microstructure evolution and thermal property of multi-principal-element alloys were examined by using optical microscope , SEM , EDS , XRD , DSC .
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定向凝固Ni3Al工艺参数的特性
The characterization of the process parameters for the directional solidification of ni_3al
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利用TEM研究了两种定向凝固共晶合金NiAl-Cr和NiAl-(Cr,Mo)在不同状态下的显微结构特征,以能了解其复相强韧化作用。
Directionally solidified NiAl-Cr and NiAl - ( Cr , Mo ) eutectic alloys were studied by TEM to characterize their microstructures .
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Bridgman法铸铁定向凝固一维传热特性的测试分析
The Heat Transfer of Unidirectional Solidification of Cast Iron in Bridgman Configuration