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1)  multi-spring-element model
多弹簧单元模型
2)  Multi-spring Element
多弹簧单元
3)  spring-element model
弹簧元模型
1.
The contact boundary between the large-diameter thin-walled cylindrical shell structure with foundation bed can be treated as a new numerical model-spring-element model, and large-scale common finite element software-ANSYS can be used to compute and anylyse the deformation, internal force and the base stress of thin-walled cylindrical structure through second development.
将大直径薄壁圆筒结构基底与基床间的接触边界处理为一种新的数值接触模型——弹簧元模型 ,并运用大型通用有限元软件 ANSYS进行二次开发对薄壁圆筒结构的变形、基底应力与内力进行计算和分析。
4)  multi-spring model
多弹簧模型
1.
3-D plastic dynamic analysis of steel frames based on multi-spring model;
基于多弹簧模型的钢框架结构三维弹塑性地震反应分析
2.
The theory about establishing element matrix with multi-spring model is introduced.
多弹簧模型空间梁柱单元可以有效地模拟空间梁柱单元在轴力、弯矩以及剪力共同作用下的响应,反映空间梁柱单元在往复荷载以及地震作用下的滞回性能。
3.
Considering the plastic stiff influence of plastic-region shear deformation,paper derives the element stiffness matrix based on multi-spring model and provides element basis for whole frame structure plastic dynamic analysis.
引入多轴应力状态下的塑性应力-应变关系理论,在单元模型中考虑了弹塑性区域剪切变形对单元的弹塑性刚度影响,推导了考虑剪切变形弹塑性刚度影响的多弹簧模型的空间梁柱单元刚度矩阵,为整体钢框架结构的弹塑性动力分析奠定了单元基础。
5)  spring element
弹簧单元
1.
51 environment, the contacting rigidity between slide block and linear guideway was simulated with spring elements, the finite element model of the machine tool was set up, and the static rigid.
51环境中,用弹簧单元来模拟滑块与直线导轨的接触刚度,建立了机床的有限元模型,并对其静刚度进行了分析。
2.
Spring element was used to simulate main bearing in order to match reality more exactly.
在计算中充分考虑主轴承刚度对曲轴应力的影响,采用弹簧单元模拟轴承支承,更接近实际情况。
3.
Moreover,rotational spring elements and axial spring elements were used in the FEM analysis to simulate the semi-rigidity of joints and the connection stiffness.
采用通用有限元软件ANSYS对试验中的脚手架体系建立三维杆系计算模型,考虑材料的弹塑性及结构的几何非线性,进行非线性极限承载力分析;并引入转角弹簧和轴向弹簧单元分别模拟梁柱节点半刚性以及支撑与节点的连接刚度,通过改变弹簧单元的刚度对整个结构进行参数分析,得到与试验结果较吻合的数值分析模型。
6)  single mass-spring model
单质量-弹簧模型
1.
Using the single mass-spring model,we study the gaits of a hopping robot for the purpose of minimizing the loss of energy per unit distance covered and present our expressions of energy consumption.
基于单质量-弹簧模型,研究了能够使弹跳机器人单位距离能量损失最小的步态,给出了能量的消耗表达式。
补充资料:多圈弹簧管压力计
分子式:
分子量:
CAS号:

性质:见单圈弹簧管压力计。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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