基于ANSYS升降台低速轴有限元分析论文翻译.doc
《基于ANSYS升降台低速轴有限元分析论文翻译.doc》由会员分享,可在线阅读,更多相关《基于ANSYS升降台低速轴有限元分析论文翻译.doc(18页珍藏版)》请在三一办公上搜索。
1、毕业论文翻译(汉译英)基于ANSYS升降台低速轴有限元分析 ContentAbstract1Introduction2Chapter 1 Finite Element Method3Section1 FEM3Section2 Basic Principles and Mathematical Concepts4Chapter 2 Pro-E Modeling7Section1 Modeling of the Low-speed Shaft7Section2 Features and Benefits of Pro-E7Chapter 3 ANSYS Implementation Process
2、9Section1 Software Solution9Section2 Static Analysis10Section3 Modal Analysis13Conclusion15Thanks16References17 Abstract The field of engineering technology is currently used in numerical simulation methods are: the finite element method, the boundary element method and finite difference method, etc
3、., but the breadth of its usefulness and application, the main or the finite element method as a discretization numerical method, finite element method in structural analysis of the first application, and then in other areas has been widely used. The basic idea of the finite element method is to pla
4、ce objects into a finite number of discrete and interconnected by a certain way combination unit, to simulate or approximate the original object, thus a continuous problem is reduced to no degrees of freedom the freedom of the limited discrete A numerical degree of problem solving analysis. Discrete
5、 objects, through its analysis of each unit to unit, and ultimately get the whole object of the analysis. Meshing of each small block called the unit. Determine cell shape, cell connection point between the called node. Unit node to node, the internal force at the force, external load for the node.
6、ANSYS finite element package is a multi-purpose finite element method for computer design program that can be used to solve the structure, fluid, electricity, electromagnetic fields and collision problems. Reflected in the engineering advantages of the finite element method. Packaging production lin
7、e with copper low-speed shaft of hydraulic lifts for the study, using three-dimensional software, Pro / E to establish three-dimensional model, the three-dimensional model into ANSYS finite element model of the low-speed shaft linear static analysis and modal analysis, analysis of shaft deformation
8、and stress distribution, and find out the maximum deformation and stress positions, proposed improvement program axis to improve design reliability.Keywords: finite element method ANSYS Low-speed shaft ProE Modal analysis Introduction Elasticity of non-bar structure of the object, such as plate, she
9、ll, solid structure, the geometric characteristics of these structures is its thickness is much smaller than the length and width, or length, width and thickness of the same size of the three scales order of magnitude. When the finite element method for the analysis of elasticity problems, it is cal
10、led the elasticity problem with finite element method, or simply the finite element method. Elasticity analysis can be divided into analytical and numerical methods into two categories, can be expressed as Chapter 1 Finite Element MethodSection1 FEM Finite element method is a high performance, the c
11、ommonly used method. Finite element method in the early basis of variational principle is developed, it is widely used in the Laplace equation and Poisson equation describes the various physical fields (the type field and the extremal problem of functional closely linked). Since 1969, some scholars
12、in the application of fluid balance method in the weighted Galerkin method (Galerkin) or least square method to obtain the same finite element equation, which can be used in the finite element method described in any differential various types of physical field, while the physical field and no longe
13、r require such functional extremal problems have been linked. For the finite element method, the problem-solving steps can be summarized as: 1.Establishment of integral equations, or equations based on variational principle and the right margin of the principle of orthogonal functions, the establish
14、ment of initial boundary value problem with differential equations is equivalent to the integral expression, which is the starting point of the finite element method. 2.Regional unit subdivision, according to shape and to solve practical problems in the region of the physical characteristics of the
15、regional split into a number of interconnected, non-overlapping units. Regional units is the finite element method of preparatory work, this part of the relatively large amount of work, in addition to computing elements and node numbers and to determine the relationship between each other, should al
16、so be said that the location of the node coordinates, but also need to be listed a natural boundary and the number and nature of the boundary nodes the corresponding boundary value. 3.Determining unit basis function, according to the number of nodes and elements in the accuracy of the approximate so
17、lution requirements, choose to meet certain conditions, the interpolation function as the interpolation basis function units. Finite element method in the base function is selected in the unit, because each unit has a regular geometric shape, the base function is selected to follow certain rules. 4.
18、Unit Analysis: Solution of the functions of each unit by unit basis function approximation of a linear combination of expressions; then substituted into the integral equation approximation function, and the integral unit area, obtained with undetermined coefficients (that is, each node unit paramete
19、r values) of the algebraic equations, called the unit finite element equation. 5.Overall synthesis: the finite element equations in the unit after the draw, all the cells in the region according to certain laws of the finite element equation for accumulation, the formation of the general finite elem
20、ent equation. 6.Boundary conditions: There are three general forms of boundary conditions, into the essential boundary conditions (Dirichlet boundary conditions), the natural boundary conditions (Riemann boundary conditions), mixed boundary conditions (Cauchy boundary condition). The natural boundar
21、y conditions, generally in the integral expression can be automatically met. The essential boundary conditions and mixed boundary conditions, adjustment shall be the general rule on the amendment to satisfy the finite element equations. 7.Solution of finite element equation: According to the modifie
22、d boundary condition overall finite element equations is the unknown quantity to be determined with all the closed equations, numerical methods using the appropriate solution, can be obtained function value of each node.Section2 Basic Principles and Mathematical Concepts In the engineering field, al
23、though most issues have been the basic equations and boundary conditions, but not analytical solution. So the introduction of simplifying assumptions, the problem in the reduced state obtained under the approximate solution, due to the complexity of the problem, which often leads to the approximate
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- 基于ANSYS升降台低速轴有限元分析 论文翻译 基于 ANSYS 升降台 低速 有限元分析 论文 翻译
链接地址:https://www.31ppt.com/p-2927759.html