Browse > Article
http://dx.doi.org/10.7236/IJASC.2017.6.4.1

Simulations of the Performance Factors on Vacuum System  

Kim, Hyung-Taek (Department of Advanced Materials Engineering, College of Engineering, Incheon National University)
Publication Information
International journal of advanced smart convergence / v.6, no.4, 2017 , pp. 1-8 More about this Journal
Abstract
In this work, the effects of fairly influential factors on performance of vacuum system, such as constant pressure and outgassing effect were simulated to propose the optimum design factors. Outgassing effects of selected vacuum materials on the vacuum characteristics were simulated by the $VacSim^{Multi}$ simulation tool. This investigation examined the feasibility of reliably simulating the outgassing characteristics of common vacuum chamber materials (aluminum, copper, stainless steel, nickel plated steel, Viton A). The optimum design factors for vacuum systems were suggested based on the simulation results. And, the effects of throttle valve applications on vacuum characteristics were also simulated to obtain the optimum design model of variable conductance on high vacuum system. Simulated vacuum characteristics of the proposed modelling were agreed with the observed experimental behaviour of real systems. Pressure limit valve and normally on-off control valve were schematized as the modelling of throttle valve for the constant process-pressure. Simulation results were plotted as pump-down curve of chamber and variable conductance of throttle valve. Simulated behaviors showed the applications of throttle valve sustained the process-pressure constantly, stably, and reliably.
Keywords
Vacuum system; Performance factor; Constant pressure; Outgassing; Vacuum characteristics;
Citations & Related Records
연도 인용수 순위
  • Reference
1 Jousten Karl, Nakhosteen C. Benjamin. Handbook of vacuum technology, Wiley-VCH Verlag GmbH; 2008
2 Hata David. Introduction of vacuum technology. Prentice Hall; 2007
3 J.M. Lafferty. Foundations of vacuum science and technology. John Wiley and Sons; 1998
4 Yoshimura Nagamitsu. Vacuum technology practice for scientific instruments. Springer; 2008
5 Hucknall, D.J., Mois A., Vacuum technology calculations in chemistry. Royal society of chemistry; 2003
6 Technology Sources Ltd., User's Guide of VacSim$^{Multi}$ Simulator (manual), 2001
7 Chamber A., Basic vacuum technology (2nd Ed.). Taylor & Francis Group; 1998
8 John F. O'Hanlon. A user's guide to vacuum technology. John Wiley and Sons; 1989