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1)  interfacial viscosity
界面黏度
1.
Result indicates that interfacial viscosity, interfacial viscous modulus and interfacial elastic modulus increase first and then decrease with the increase of temperature, and go up again.
实验结果表明,界面黏度、界面黏性模量和界面弹性模量受聚合物相对分子质量、配制水矿化度和聚合物溶液质量浓度的影响,三者随聚合物相对分子质量和聚合物溶液质量浓度的增大均增加,随配制水矿化度的增加均减小。
2)  Viscosity and interface tension
黏度和界面张力
3)  interfacial shear viscosity
界面剪切黏度
1.
Effects of petroleum compound system on oil-water interfacial shear viscosity of crude oil treated with alkali
复合体系对与碱反应后原油油水界面剪切黏度的影响
2.
The interfacial film properties of resin and asphaltene separated from Saudi Arabia crude oil were investigated by interfacial shear viscosity,and explained by the molecular properties of the resin and asphaltene studied by IR,UV and VOP.
对含有胶质、沥青质的模拟油和模拟水体系,测定了其界面张力和界面剪切黏度。
3.
The molecular structures of asphaltenes and resins in Shengli crude oil were studied by IR,UV,and intensity of the interfacial film between oil and water was investigated by interfacial shear viscosity measurements,and the stability of emulsions was also researched.
采用红外和紫外光谱分析了胜利原油中胶质和沥青质的结构,采用界面剪切黏度对其油、水界面膜强度进行了表征,测定了胶质和沥青质模拟油油包水乳状液的稳定性。
4)  freezing adhesive interface
冻黏界面
5)  Bonding interface
黏结界面
1.
METHODS:Microtensile strength of 5 wet bonding systems were measured with Instro 1195, and the bonding interface were observed with SEM and TEM.
方法 :分别测试两类 5种牙本质湿黏结系统的微拉伸强度 ,结合各自黏结界面的SEM和TEM观察结果 ,分析不同类型黏结系统的黏结强度与黏结界面微观形态之间的关系。
6)  interface debonding
界面脱黏
1.
Based on cohesive interface debonding model,the Mori-Tanaka method is used to study the effect of nonlinear interface debonding on the mechanical performance of composite propellant.
基于内聚力界面黏结模型,用Mori-Tanaka方法研究了非线性界面脱黏对推进剂力学性能的影响。
2.
In order to validate the ability of the generalized method of cell(GMC) with weak interface in modeling the interface debonding within continuum fiber reinforced composite,three kinds of week interface were considered in this paper to study the effect of the interface on global mechanics behavior of composite.
为考查通用单胞模型和弱界面分离模型模拟复合材料界面脱黏的有效性,考虑了柔性界面,常响应界面和渐进适应界面三种不同的界面分离模型,并分析了界面对材料性能的影响。
补充资料:界面黏度
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性质:又称界面黏度。表征表面膜流变性质的重要参数。表面黏度可分为表面膨胀黏度和表面切变黏度两种,前者反映表面膨胀或压缩时表面张力梯度对表面膜形变的影响;后者则是表面膜发生切变变形和膜内部相对运动时所受阻力大小的量度。通过表面黏度的测定可了解表面膜的状态、膜的相变和膜中的分子相互作用,从而有助于研究乳状液、泡沫及各种吸附膜的稳定性及实际应用。

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