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1)  Catalyst effect
触媒效应
2)  Medium Effect
媒介效应
1.
On Medium Effect of Health Communication in China;
我国健康传播的媒介效应研究
3)  tactile effect
触觉效应
1.
In the light of the visual effect,tactile effect and back finishing process of fabric,this paper makes an inquiry into the designing methods of making wool-like fabric woolly and better than wool in the course of integral design and the measures taken.
从织物的视觉效应、触觉效应和后整理加工 3个方面 ,探讨了仿毛织物在整体设计时如何做到仿毛似毛、仿毛胜毛的设计方法和采取的手段。
4)  Exposure response
接触-效应
5)  contact effect
接触效应
1.
In this paper, the temperature-dependent thermal and mechanical properties and the contact effect between sub-laminates of delaminated regions on the buckling behavior were considered, and a constrained model was established to ensure deformation compatibility between the sub-laminates al.
采用基于复合材料一阶剪切理论的有限元法研究了含多分层损伤的先进复合材料格栅加筋(AGS)板壳结构的热-机耦合屈曲性态,在屈曲分析中考虑了材料热物理、力学性质与温度相关特性和分层损伤处的上子板、下子板的接触效应。
2.
By using the variational principle of moving boundary and considering the contact effect between delamination regions,the delamination growth was investigated for cylindrical shells under the action of external pressure.
基于可动边界变分原理并考虑脱层间的接触效应对圆柱壳在外部压力作用下的脱层扩展进行了分析,同时应用Griffith准则,导出了脱层前缘各点处的能量释放率表达式,且以轴对称脱层层合圆柱壳为例进行了数值计算,讨论了脱层大小、脱层深度、几何尺寸、材料性质及纤维铺层方式等因素对脱层扩展的影响。
3.
Considering the variational principle of moving boundary and the contact effect between delamination regions, the nonlinear governing equations for delaminated beams subjected to transverse linear load are derived, and the corresponding boundary and matching conditions are given.
基于可动边界变分原理对层合梁脱层扩展进行了分析;考虑了脱层间的接触效应,建立了层合梁在横向线载荷作用下的非线性控制微分方程及相应的定解条件;应用Griffith准则导出了脱层前缘各点处的能量释放率表达式;通过算例讨论了脱层长度、脱层深度、几何尺寸、材料性质等因素对脱层扩展的影响。
6)  trigger effect
触发效应
1.
On the basis of synergetic prediction model of slope instability which is presented by authors, nonlinear features which slopes show in the course of development are discussed in this paper, meanwhile, trigger effect of external factors is studied.
本文在作者已建立的斜坡失稳时间的协同预测模型的基础上,进一步深入地探讨了斜坡体系在演化过程中的非线性行为,同时讨论了外界因素对滑坡发生的触发效
补充资料:触媒
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性质:见催化剂。

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