1) electric displacement intensity factor
电位移强度因子
1.
We obtained the displacement, stress, electric potential and electric displacement around the crack in the infinite piezoelectric medium by way of Fourier transform, and then the dynamic stress intensity factor, the electric displacement intensity factor and electric field intensity factor near the crack tip were obtai.
假设裂纹面上的边界条件为电渗透型的,从而导出了材料系数在横观各向同性平面内梯度分布的压电体的状态方程;利用Fourier变换给出了无限大压电体中位移、应力、电势、电位移的解析表达式;并求得了裂纹尖端动应力强度因子、电位移强度因子及电场强度因子,分析了不同的非均匀材料系数、几何尺寸及裂纹运动速度对它们的影响。
2) displacement current intensity
位移电流强度
3) temperature shift factor
温度位移因子
1.
Being treated with zero-shear viscosity and temperature shift factor, the master viscositycurves for two kinds of linear polyethylene and their blends were experimentally andmathematically determined respectively.
对两种不同性质的线型聚乙烯以及它们共混物的熔体粘度曲线,分别用零剪切粘度和温度位移因子进行了约化处理,考察了原材料及其共混物配比、温度等因素对熔体粘度约化曲线的影响,建立了简单、实用、便于操作的模型和数学工具。
4) electric field intensity factor
电场强度因子
1.
We obtained the displacement, stress, electric potential and electric displacement around the crack in the infinite piezoelectric medium by way of Fourier transform, and then the dynamic stress intensity factor, the electric displacement intensity factor and electric field intensity factor near the crack tip were obtai.
假设裂纹面上的边界条件为电渗透型的,从而导出了材料系数在横观各向同性平面内梯度分布的压电体的状态方程;利用Fourier变换给出了无限大压电体中位移、应力、电势、电位移的解析表达式;并求得了裂纹尖端动应力强度因子、电位移强度因子及电场强度因子,分析了不同的非均匀材料系数、几何尺寸及裂纹运动速度对它们的影响。
5) shift factor
移位因子
1.
The corresponding temperature shift factors,stress shift factors and temperature-stress shift factors we.
本文应用时间-温度-应力等效原理,得到相应的温度移位因子、应力移位因子和温度-应力联合移位因子,构建了参考温度和参考应力水平条件下的蠕变柔量主曲线。
2.
The result indicates that(1) the deference of dynamic moduli,phase angles and shift factors between the two test modes is obvious;(2) the significance of fitted regression equation is visible and obvious for the relationship of two kinds of dynamic modulus.
结果表明:2种试验模式下,沥青混合料的动态模量,相位角及移位因子均存在较为明显的区别;2种试验模式下动态模量相关关系拟合方程的拟合效果非常好。
6) displacement factor
移位因子
1.
And furthermore in part Ⅱ,the equation of displacement factor in time-temperature equivalent principle is derived.
第二部分将从理论和实验两个方面具体研究岩石时-温等效原理中的主曲线、主曲线中的移位因子及其参数的确定方法。
补充资料:电形状因子
见形状因子。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条