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1)  solid-liquid interface
固液界面
1.
Influence of solidification rate on solid-liquid interface in unidirectional solidification microstructure of austenitic stainless steel
凝固速度对奥氏体不锈钢定向凝固组织及其固液界面稳定性的影响
2.
A lattice density functional theory for polymer adsorption at solid-liquid interface presented in this paper may account for the nearest-neighbour interactions and the long-range correlations due to chain connectivity.
提出一个固液界面高分子吸附的格点密度泛函理论。
3.
The adsorption of polydisperse polymers at solid-liquid interfaces is studied by Monte Carlo simulations based on a lattice model.
在格子模型基础上用M onte Carlo方法模拟研究了多分散高分子在固液界面的吸附行为,重点考察了平均分布和正态分布两种不同链长分布形式的高分子在固液界面吸附构型的分布规律。
2)  solid/liquid interface
固液界面
1.
Studies on nanobubbles formed at solid/liquid interface;
固液界面纳米气泡的研究
2.
ECSTM and its application in the study of solid/liquid interface;
电化学STM及对固液界面的研究
3.
The evolution of solid/liquid interface during single crystal superalloy growth by seeding technique was investigated.
研究了籽晶法生长单晶高温合金中固液界面的演变规律。
3)  solid liquid interface
固液界面
1.
In order to accurately control various technology parameters, and obtain high quality single crystal Cu rod with mirror smooth surface, the position and shape of solid liquid interface were analyzed during continuous casting of single crystal Cu by numerical analysis.
为了准确地控制工艺参数 ,获得表面光洁、高质量的连铸铜单晶 ,采用数值分析方法研究铜单晶连铸时固液界面的位置和形状 。
2.
The characteristic shape of the vertical section and cross section of solid liquid interface of YAG crystal with direction by CZ method was described.
本文描述了引上法〈111〉方向生长的钇铝石榴石晶体固液界面纵横截面的形状特征。
4)  liquid-solid interface
固液界面
1.
The result of numerical analysis indicated that characteristic of heat transfer of OCC can be by rule and line reflected, model temperature, cooling distance,casting speed and cooling intensity have effects on the position of the liquid-solid interface.
通过数值计算,得出了铸型出口温度、冷却距离、拉铸速度和水的冷却强度等工艺参数对固液界面位置的影响。
2.
on the position of liquid-solid interface.
通过数值计算,得出了铸型出口温度、冷却距离、拉铸速度和喷水冷却强度等工艺参数对铸坯固液界面位置的影响。
5)  S/L interface
固液界面
6)  solid/liquid interface
固/液界面
1.
Adsorption mechanism of hyperdispersant on solid/liquid interface;
嵌段型超分散剂在固/液界面的吸附机理
2.
The shape of quenched solid/liquid interface in dendrite growth morphology appears as unevenness where some dendrite trunks grow as convex parts.
在枝晶固/液界面存在枝晶千的凸起,其平-凸-平-凸的程度随抽拉速率的增加呈现先加强后减弱最后几乎消失的规律。
补充资料:液气界面


液气界面


  液体与气体的接触分界处。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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