三叉杆滑块式万向联轴器虚拟设计平台的开发研究
[Abstract]:Tri-bar sliding block universal coupling is a new type of constant angular universal coupling. Its design and manufacture have gradually become the research hotspot of coupling industry. This paper mainly studies the virtual design platform of this product. The platform is based on virtual technology, based on the development environment of VRML and Java, and takes the tri-bar sliding block universal coupling as the research object. The platform integrates the 3D modeling software such as Pro/E,CAD,ANSYS and ADAMS, the two-dimensional drawing software and the analysis and simulation software. A virtual design platform is constructed which integrates the functions of parameterized model design, automatic assembly, experimental analysis and detection, optimization design and data management, and makes it intelligent. This paper starts from the overall process of virtual design platform, and explores the realization process of coupling virtual design platform in principle and method. The realization method of virtual platform is described in detail from the aspects of the whole function design of platform and the design of each functional module. Then the kinematics simulation and analysis of the tri-bar sliding block universal coupling are carried out, and the virtual simulation model is established. Then taking slider and assembly as examples, the whole process of using VRML language to construct virtual scene is introduced, and the concrete method of building virtual design platform and realizing platform function by using Java language programming is described in detail. Through the combination of the above two languages and the mutual call between the programs, the virtual design platform of the coupling is established. Finally, the use and operation process of the platform are introduced through an example. In addition, the research of this paper is summarized and prospected. The platform adopts a new research method and technical route, which is mainly based on virtual design and supplemented by theoretical analysis and experimental research. The platform is finally built, and functions such as design, simulation and optimization are realized in one body. Before the actual processing of the coupling, the stress and strain, the force and deformation, the movement law, the damage form and the service life can be predicted in advance, so as to find the problem and solve the problem as soon as possible. Therefore, the design cycle is shortened, the design cost is reduced, and the product performance and market competitiveness are improved. In addition, the platform can also be applied to the development of other mechanical products. The research in this paper will lay a solid theoretical and practical foundation for the further development and improvement of the virtual design platform of coupling, and will play a certain role in promoting the application and development of virtual design technology in China's industrial production.
【学位授予单位】:青岛科技大学
【学位级别】:硕士
【学位授予年份】:2012
【分类号】:TH133.4
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