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1)  shear flow stress
剪切流动应力
1.
In this paper,it is validated by comparing simulation and experiments results that good precision of simulation could be obtained with this friction model,and the effect of cooling fluid on the cutting could be well simulated by reducing the shear flow stress of workpi.
刀-屑摩擦模型是金属切削仿真的关键问题,采用基于前刀面正应力的摩擦系数模型能够真实反映刀-屑接触长度内的摩擦状况,通过仿真和试验证明,采用该模型可获得较好的仿真精度,而且通过降低工件材料的剪切流动应力能够较好地模拟切削液的润滑效果对切削过程的影响。
2)  Osima jacoti
流动剪切力
1.
Biological Study on Pollinators of fruit trees -Osima jacoti, Osima excavata;
流动剪切力对体外培养的内皮细胞形态及功能的影响
3)  hydrodynamics shear stress
水流剪切应力
1.
Influence of hydrodynamics shear stress on the settlement characteristics were studied in SBR.
采用序批式活性污泥法系统(SBR)研究了搅拌型反应器中水流剪切应力对处理系统中活性污泥沉降性能的影响,通过微生物数量、絮凝体形态和微生物种群的观测分析,探讨了水流剪切应力影响活性污泥沉降性能的机制。
4)  flow shear stress
流体剪切应力
1.
Flow shear stress induced molecular events of bone cells;
流体剪切应力对骨细胞分子活动的影响
2.
Objective To clarify the effect of flow shear stress (FSS) on the expression of core binding factor α1 (Cbfα1) in human osteosarcoma MG-63 cells cultured in simulated microgravity environments and the mechanism of osteopenia induced by weightlessness.
目的观察模拟失重条件下培养的人骨肉瘤MG-63成骨样细胞受流体剪切应力(FSS)作用后核心结合因子α1(Cbfα1)表达的改变,初步探讨失重情况下骨质减少的可能机制。
5)  fluid shear stress
流体剪切应力
1.
The migration of endothelial cell induced by fluid shear stress is related to many physiological and pathological responses in organism.
内皮细胞在流体剪切应力作用下进行迁移运动,与机体多种生理病理过程密切相关,也是近年来国内外研究的热点问题。
2.
Objective To investigate the effects of fluid shear stress on interleukin-8(IL-8)mRNA expression in human endothelial cell line-EA.
目的探讨流体剪切应力作用下,人内皮细胞株EA。
6)  shear stress
剪切应力
1.
Study on shear stress induced osteoblasts K+ channel opening;
剪切应力诱导成骨细胞钾离子通道开放的研究
2.
Role of endothelium-derived hyperpolarizing factor in shear stress-induced endothelium-dependent relaxations of rats;
内皮依赖性超极化因子在剪切应力引起的内皮依赖性舒张反应中的作用
3.
Expression of HIAP-2 in human umbilical vein endothelial cells after shear stress;
血流剪切应力刺激后人脐带内皮细胞HIAP-2的表达
补充资料:剪切应力
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性质: 平行与试样原始工作面的作用力与其工作面截面积之比。对熔体或液体的流动而言,是指流层在截面上相互滑动或沿流道壁滑移(呈层流状)时,在流体内部所产生的层间应力。

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