• The local fluid shear stress play an important role on the remodeling of bone.

    局部流体应力骨组织改建发挥重要作用

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  • It has been proved that the physiological function of endothelial cells can be influenced by fluid shear stress.

    流体应力可以影响内皮细胞生理功能,以往研究表明低切应力上调一些内皮细胞粘附分子的表达。

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  • Results The bioreactors with different mechanical properties, mass transfer and fluid shear stress had different impacts on morphological and functional organizations.

    结果不同类型的生物反应器及其机械性能以及流体剪应力细胞培养组织的形态功能产生的影响不同。

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  • Objective To investigate the morphological effect of fluid shear stress on pig iliac endothelium cells cultured solely or co-cultured with pig small intestinal submucosa.

    目的探讨切变应力动脉内皮细胞单独培养猪髋动脉内皮细胞小肠黏膜下基质联合培养形态学特征影响

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  • The shear stress is the main power source for mineralization, and activation, overlapping and enrichment of ore-forming fluid occur in each shear deformation phase.

    剪切应力成矿主要动力来源剪切变形阶段,均有迁移、叠加富集

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  • The results show that HDPE/MMT nano-composite and HDPE belong to pseudoplastic fluid and present, shear thinning behaviors within the range of shear stress, shear rate and temperature.

    在所研究剪切应力、剪切速率温度范围,两者均属于假塑性流体呈现剪切变稀行为

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  • A fluid in which the shear rate is directly proportional to the shear stress.

    剪切速率正比于剪切应力流体

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  • Non-Newtonian fluid viscosity in the formation of a shear rate of change with variable, stress response reflected in the instability shown by different characteristics of Newtonian flow.

    牛顿流体地层中的粘度一个随剪切速率变化而改变非常数,反映不稳定压力响应特性上表现出与牛顿流大不相同特征

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  • We used computational fluid dynamics(CFD) to investigate the steady and pulsatile flows in the vicinity of model stents and focused on the changes of wall shear stress caused by the implanted stents.

    我们利用计算流体动力学方法,分析了定常流脉动流两种条件下,支架植入引起的血管壁面剪应力变化

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  • A fluid is a substance that deforms continuously when subjected to a shear stress, no matter how small that shear stress may be.

    无论受到多么剪切力都会发生连续变形物质叫做流体

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  • On the contrary, as for the system with larger fractal dimension, the shear stress is smaller, the fluid is good and sensitivity is strong.

    反之维数颗粒系统剪切应力,系统的流动性能敏感性强。

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  • Through the research of the mechanism of electrorheological fluid, analyze the shear yield stress of electrorheological fluid in the electric field6.

    通过电流液体机理特性研究分析计算电流变液体电场中的抗剪屈服应力。

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  • Through the research of the mechanism of electrorheological fluid, analyze the shear yield stress of electrorheological fluid in the electric field6.

    通过电流液体机理特性研究分析计算电流变液体电场中的抗剪屈服应力。

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