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1)  consolidation yield stress
固结屈服应力
1.
Use of piezocone tests to predict consolidation yield stress and overconsolidation ratio of lagoonal deposit soil;
基于CPTU测试的泻湖相沉积土固结屈服应力和OCR确定方法(英文)
2)  consolidation yield stress
固结屈服压力
1.
It has a surprising high strength and high consolidation yield stress although its natural water content is very high.
研究结果表明:当应力水平小于固结屈服应力时,具有强结构性的天然沉积硅藻土的微观孔隙入口孔径分布几乎与应力水平无关,而当外加应力水平达到固结屈服压力时,虽然总体孔隙空间体积几乎与天然沉积状态时一样,但其微观孔隙入口孔径分布则发生显著变化。
3)  yield stress controlled bonding
屈服应力粘结
4)  yield stress
屈服应力
1.
Investigation on start-up yield stress of Daqing gelled crude oil;
大庆胶凝原油启动屈服应力研究
2.
Study on Yield Stress of LC_4 Alloy in the Semi-solid State;
LC_4合金的显微组织与屈服应力
3.
Analysis of yield stress states of fcc metals under plane deformation;
面心立方金属平面变形的屈服应力状态分析
5)  yielding stress
屈服应力
1.
Theoretical analysis shows that the dynamic yielding stress, apparent viscosity, and average normal stress of electrorheological suspensions are greatly strengthened with the variation of rheological gap and changes in the electric field strength during the squeezing process under a constant voltage.
从理论上分析了挤压流动形式 ,得出在电压一定的条件下 ,随着挤压过程的进行 ,流动区域间隙的改变 ,使得电场强度产生变化 ,从而使电流变液体的动态屈服应力、表观粘度和平均法向应力得到大大增强 。
2.
In the test,the relation of the yielding stress to R is derived,according to two kinds of stress states.
根据两种不同的应力状态,推导了屈服应力与R值的关系,加深了对各向异性屈服准则的认识。
3.
With the increase of the intensity of applied electric field, the yielding stress of ER fluid will be increased and the conversion from liquid to solid can be achieved.
电流变体在电场的作用下液体粘度增加,可由液体变为类似的固体,它的屈服应力τ_y随着电场强度的增加而增加,利用这一性质,可以制成智能型阻尼器,用于结构地震反应控制。
6)  stress yielding
应力屈服
1.
Effects of physical aging on the tensile properties,stress yielding mechanism and submicroscopic structure of amorphous PES copolymer film were studied by DSC,stress-strain curve and fluorescence spectrum measurements.
物理老化后的聚醚砜共聚物在拉伸过程中出现应力屈服峰,实质上是逐步打开凝聚缠结的过程。
补充资料:偏置屈服应力
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性质:应力-应变曲线偏离线性达到规定应变百分数的应力。也有称作残余变形屈服应力。该规定的变形量是人们事先商定的(偏置)。这种场合往往是由于该材料的应力、应变曲线不出现明显的屈服点,故作此规定。以统一衡量材料的力学性能,便于互相比较。当然,规定的该值不应超过该材料的拉伸强度值。

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