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1)  strain strength ratio
应变强度比
1.
A new method for extracting strain strength ratio(trend factor SR T and compression factor SR C)from leveling and base line data across fault and obtaining dynamic patterns which change continuously in time space domain with the aid of the least square collocation is studied.
探索由跨断层水准和基线资料提取应变强度比 (趋势因子 SRT及压性因子 SRC) ,并借助最小二乘配置获得其时空域连续变化的动态图像的方法。
2)  cross-fault strain intensity ratio
跨断层应变强度比
3)  Strain strength
应变强度
1.
The deformation of ductile shearing and plastic flattening characterized deep-seated tectonic level,with strain strength being 1.
深部构造层次以韧性剪切,塑性压扁,顶界劈理发育为特征,应变强度平均为1。
4)  Strain intensity
应变强度
1.
There are two mathematical expressions of stress and strain intensity for normal anisotropic sheet that are derived from Hill s quadratic anisotropic yield function.
从希尔 (Hill)正交各向异性体二次屈服函数出发 ,可以导出厚向异性板应力强度 (等效应力 )与应变强度 (等效应变 )的两组表达式 ;本文讨论了采用两组不同表述方法的选择 ,并利用单向拉伸与双向等拉两种实验作了可比性的分析比
5)  strength stress ratio
强度应力比
6)  stress-strength ratio
应力强度比
1.
The effects of water-cement ratio, loading age and stress-strength ratio (stress level) on the behavior of the tensile basic creep of high strength concrete at early ages were investigated experimentally.
通过早龄期混凝土拉伸基本徐变的实验,研究了不同水灰比、加载龄期、加载初始应力强度比(应力水平)等参数条件下的早龄期高强混凝土拉伸徐变特性。
补充资料:比强度
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性质:又称比刚度。材料的机械强度(通常指拉伸强度)与其相对密度之比值。单位为兆帕。用于比较不同材料在相同质量下的强度。塑料和增强塑料的比强度可以达到或远远超过金属材料,如钢材和硬铝制品。复合材料具有优异的比强度。

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