Papers by Keyword: Computer Emulation

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Abstract: Virtual reality technology is a hot research topic in computer science and the introduction of virtual roaming to the field of urban planning provides a new means for urban design. This paper first analyzes the development, features and technology of virtual reality technology and the virtual city roaming and its applications and advantages in urban planning with focus on how to implement a virtual city roaming system by means of the scene development software Vega and finally concludes the importance of virtual city roaming in urban planning.
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Abstract: The surface material of Elastic-metal pads(EMP) is PTFE which has poor wearability . Ion implantation can improve the wearability of EMP surface .This paper investigated the wearability improvement of the EMP’s surface by Al2O3/PTFE film which generated by ion implantation. The accelerating voltage of the ion implantation apparatus is 40KV and the ion emitting energy of aluminum is 20KeV. The dosages of three kinds of Al3+ ion beams in the study are 1×1015 ions/cm2, 5×1015 ions/cm2 and 1×1016 ions/cm2 respectively. The aluminum ion’s density is 10uA/cm2. The vacuum pressure of the ion implantation is 3×10-3Pa. The experimental specimens modified by Al3+ ion implantation were tested by ESCA, XRD, AFM/FFM and nanometer probe , which got the chemical bond, phase structure and friction coefficient of the film. According to the experimental results, the mathematical model was built using the Fesow Geometric Model and the Halind Rang Theory. The computer simulation was made in which SRIM simulator program was employed. The ion implantation’s energy for the simulation is 20keV and the material density of PTFE is 2.56g/cm³. In addition, the dose is 5×1015 ions/cm², the time interval is 230 minutes and the velocity of Al3+ ion implantation is 2.15-2.20×1013 ions/minute. Finally the simulation curves of particle distribution, energy distribution and impairment etc. were plotted and discussed.
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Abstract: In the design of ultrasonic honing equipment, it is hard to accurately get the natural vibration frequency of the ultrasonic vibration with the regular computing technology, which takes great inconvenience during designing of the device and puts it into production. This paper studies the ultrasonic vibration honing vertical equipment of φ150mm that is designed by the North University of China and carried on the natural vibration frequency analysis and corresponded numerical simulation, which got excellent achievement. In the paper the mathematical model is set up, which uses the MARC software to accomplish the numerical simulation and corresponds the vibration modal of the tool head of the devise, this paper also carries on the dynamic response analysis and solves the related difficult problem successfully. In the end, the proof test is done to support the theory.
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