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- inter- layer shear stress 层间剪应力
- layer shear stress 层间剪应力
- Critical resolved shear stress (O’crss). 临界分剪切应力。
- Taking the effect of adhesive layer into account, analytical formula of normal stress and shear stress at the interface are obtained and discussed. 在考虑粘结层影响的情况下给出了FRP板板端界面上剥离应力和正应力的解析表达式;分析了表达式中各物理量对界面应力的影响.
- The interfacial shear stress is a constant proportion of the bottom shear. 交界面的剪力与底部剪力之比是常数。
- The process does not affect the shear stresses. 这样的处理并不影响剪应力。
- According to the twin shear stress theory, this paper improves on Duncan Model. 根据双剪应力理论对邓肯模型进行了修正。
- Tensile stress and shear stress are transferred by PBL shear connectors. 计算得到钠-混凝土接头的最不利荷载组合内力。
- A fluid is a substance that deforms continuously under an applied shear stress. 液体在剪应力作用下不断变形??
- The main shear stress and its hydraulic system, calculation and research. 主要对其剪切力和液压系统进行计算和研究。
- Thus fluid shear stress has been considered one of the atherogenic factors. 在动物研究中还发现切应力与内皮细胞增生程度有关。
- With gob span increasing, equivalent shear stress in basic roof increases. 随着采空区跨度的不断增加,基本顶等效剪力不断增大。
- From the perspective of composite mechanics of bamboo composite bolt mechanism of the work of internal systems, we put forward the internal system of bolt shear stress layer transfer model. 本文从复合材料力学的角度分析了楠竹复合锚杆内部系统的工作机理,推导了复合锚杆内部系统层间切应力的传递模型。
- The analytic model of the thermal stress is made on a certain size of CFRC layer with different heating temperatures, and finite element method is used to calculate the octahedral shear stress. 本文首先建立了一定尺寸的CFRC电热层的热应力分析模型,采用有限元方法研究了不同的发热温度时CFRC的八面体剪应力,得出当发热温度较高时电热层的破坏危险性较大。
- Draw the element for maximum shear stress and mark values of all stresses. 画出最大剪应力的单元体并标出全部应力值。
- Friction and cohesion are best defined in terms of the plot of shear stress versus normal stress given in Figure 9. 摩擦角和粘结力最好是根据图9中剪切应力和法向应力的关系曲线确定。
- Cohesion is best defined in terms of the plot of shear stress versus normal stress given in Figure 9. 粘结力最好根据图9中剪切应力和法向应力的关系曲线确定。
- The occurrence of high shear stress at the fibre end is a factor which is expected to lead to crack generation. 在纤维端部存在高切变应力视为导致产生裂缝的因素。
- Oxygen precipitates (useful for gettering) can reduce the yield strength (critical shear stress) up to fivefole. 氧沉淀(可用作吸杂)会使屈服强度(临界剪应力)降低为五分之一。
- Textbooks commonly denote shear stresses by the symbol and two subscripts. 教科书通常用符号和两个脚标表示剪应力。