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code
- You have to give two text file inputs 1226km is the stiffness matrix 1226fv is the force vector Then the solution will be automatically generated giving roots of 1226 equations, time taken for solving the equations
FEP2
- FEP2程序是一个具有通用性的教学程序,可用于计算一般的线性静力学问题。目前它已设计了平面梁单元与平面3-9个节点的两种单元,但留下接口,可以接入所设计的其他类型的单元。该程序可以处理多种工况、多种类型单元组合结构问题。同时,还可以处理固定约束和指定位移的情况。其主控程序的功能主要有以下几点:(1)内存分配;(2)网格生成;(3)变带宽存储设置;(4)单刚的形成与组集;(5)刚度矩阵的分解;(6)形成节点载荷;(7)形成与组集单元载荷;(8)求解位移;(9)求单元应力;(10)求解结构反力。在F
main_helical_dynamic
- 石川法求时变啮合刚度,只针对于圆柱齿轮,斜齿轮不能用(Applying the stone Sichuan method to solve the time-varying meshing stiffness of gear)
gear_dynamic_program
- matlab编写的二级齿轮动力学求解程序,考虑了时变刚度。(Matlab program for solving the dynamics of secondary gears takes into account the time-varying stiffness.)
TVMS of perfect spur gear
- 根据传统材料力学势能法来进行数值分析计算健康齿轮时变啮合刚度(Calculating the time varying mesh stiffness of perfect gear based on potential energy method)
stiffness
- 计算齿轮时变啮合刚度的函数,里面包括了斜齿轮的,可以使用(Function for calculating time-varying meshing stiffness of gears)
time-stiffness
- matlab编写的斜齿轮刚度计算程序,其原理基于微分思想的势能法。(The calculation program of helical gear stiffness written by Matlab is based on the potential energy method of differential thought.)
基于Weber公式的齿轮啮合刚度计算公式
- 基于韦伯能量法计算齿轮时变啮合刚度,具有很高的实用性(time-varying stiffness)
stiffnessdownload
- 计算齿轮刚度时变刚度值,用于齿轮动力学分析(Calculating the time-varying stiffness of gear for gear dynamic analysis)
stiffness1
- 采用能量法计算时变啮合刚度,通过计算各部分变形及各部分刚度,最终求得综合啮合刚度(The energy method is used to calculate the time-varying meshing stiffness, and the comprehensive meshing stiffness is obtained by calculating the deformation and stiffness of each part)