1) elastic modulus of pile
桩体弹性模量
1.
Influences of elastic modulus of pile on negative skin friction behaviors under the surcharge load
堆载作用下桩体弹性模量对负摩阻力性状的影响
2) Young's module of pile
桩体材料弹性模量
3) bulk modulus
体弹性模量
1.
According to this electronic structure, latticeconstant, cohesive energy, potential curve, bulk modulus and temperature dependence of linear thermalexpansion coefficient have been calculated.
依据这种电子结构计算了晶格常数、结合能、势能曲线、体弹性模量和线热膨胀系数随温度的变化,理论值与实验值均符合较好。
2.
The density,bulk modulus,kinematic viscosity and vapor pressure of diesel oil are studied by experiments in this paper,from which the density,bulk modulus and kinematic viscosity variations with the pressure and temperature are abstracted.
针对柴油的密度、体弹性模量和运动粘度等进行了试验研究,在其基础上得出了柴油密度、弹性模量和运动粘度随压力和温度变化的经验公式,能较好地把柴油的密度、弹性模量和声速统一起来,与试验的误差小于3%,相关系数大于0。
3.
At the same time we curve fit the bulk modulus B of these binary alloys using the results and least square mothod.
并利用这一结果使用最小二乘法拟合该四种二元合金的体弹性模量B。
4) Pile modulus
桩体模量
5) elastic pile model
弹性桩模型
1.
There are two mechanics models and corresponding calculation methods of embedding section of anchored slide-resistant piles,which were classfied into rigid pile model and elastic pile model according to the relative rigidity of pile-soil system.
由锚索桩嵌入段分别按弹、刚性桩模型算式的位移、转角的对比分析可知,基于弹性桩模型计算出的锚索受力大于按刚性桩模型,以弹性桩模型进行锚索设计偏于安全,而嵌入段的换算长度取1。
6) Bulk modulus
体积弹性模量
1.
By using the point charge model in K 3C 60 crystal,we have computed the cohesive energy,crystal lattice constant at equilibrium and bulk modulus.
34A,并给出体积弹性模量。
2.
The graphs of pressure transients,pressure gradient and instantaneous flow varying with the bulk modulus of oil elasticity were figured out.
从分析叶片工作腔压力变化出发,对泵的工作腔预升压过程进行了建模,计算出了预升压工作腔的压力、压力梯度及泵的瞬时流量随油液的体积弹性模量变化的曲线。
3.
The varying bulk modulus is introduced into the pressure differential equation.
讨论了考虑油液压缩性时减摆阻尼器的数学模型,在液压缸的压力微分方程中引入变化的体积弹性模量。
补充资料:表观弹性模量
分子式:
CAS号:
性质: 在减震橡胶制品中,由于橡胶与金属黏着界面的形状效应,不能仅由形状尺寸和橡胶的弹性模量来决定不同方向的弹簧常数,为此将表观弹性模量Eap定义为:圆柱形:Eap=(3+4.9355S2)G正方形:Eap=(3+6.580S2)G无限长柱:Eap=(4+3.290S2)G式中G为剪切弹性模量,S为形状因子。
CAS号:
性质: 在减震橡胶制品中,由于橡胶与金属黏着界面的形状效应,不能仅由形状尺寸和橡胶的弹性模量来决定不同方向的弹簧常数,为此将表观弹性模量Eap定义为:圆柱形:Eap=(3+4.9355S2)G正方形:Eap=(3+6.580S2)G无限长柱:Eap=(4+3.290S2)G式中G为剪切弹性模量,S为形状因子。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条