Research on Dynamic Alignment for Sophisticated System Based on ACP Technology

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Abstract:

To change the status of time-consuming and over-reliance on technicians in mechanical system alignment process, the ACP technology is presented. The mapping between alignment process parameters and dynamic parameters was established through contact theory to build the agent model for parts. While the second mapping between dynamic parameters and machine dynamic characteristics is calculated by dynamic simulation software to conduct computational experiments. Experimental data is analyzed in order to implement data mine, optimize the alignment process, guide technician alignment, modify the theory mapping and improve the alignment efficiency.

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473-478

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December 2012

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[5] Conclusion To change the status of time-consuming and over-reliance on technicians in mechanical system alignment process, the ACP technology is presented. Through the establishment of intermediate links, M-B fractal model established the mapping between alignment process parameters and kinetic parameters. Model parts are loaded kinetic parameters and conducted dynamic analysis in simulation software to establish the mapping between the kinetic parameters and the whole dynamic characteristics. After the two mapping, we can get the impact rules of the alignment process parameters on the whole dynamic characteristics. During the computational experimental process, by adjusting the stiffness and damping parameters of the joint surface to generate a variety of experimental task and save the experimental results. Based on research and practical objectives , data mining and learning prediction are conducted with choosing such as the neural network, the cloud model, support vector machines and other means to eventually be able to guide the technician alignment, optimize alignment program, modify the theory of mapping relationships, improved the design and manufacture and improve the assembling efficiency and reliability. References

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