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The Effect of In-Outlet Differential Pressure on a Valve Body Stress and Deformation by the Blow-by Gas Flow Characteristic in the PCV valve for Automobile  

Kwon Oh-Heon (Department of Safety Engineering, Pukyong National University)
Lee Yeon-Won (School of Mechanical Engineering, Pukyong National University)
Song Sang-Min (Department of Safety Engineering, Pukyong National University)
Lee Jong-Hoon (School of Mechanical Engineering, Pukyong National University)
Kang Ji-Woong (Department of Safety Engineering, Pukyong National University)
Publication Information
Journal of the Korean Society of Safety / v.20, no.1, 2005 , pp. 36-41 More about this Journal
Abstract
PCV(Positive Crankcase Ventilation) valve acts as a flow control valve to get a re-combustion of blow-by gas by having it flow from a crankcase to an inlet manifold suction tube. The blow-by gas of the crankcase should be eliminated or taken properly because it cause corrosion to critical parts, and contributes to increase crankcase pressure that can cause a drop in efficiency. The excessive stress and strain on the PCV valve that remove these harmful gas would be bring the difficult on the flow rate control and failure of the valve. Those condition inevitably induce the accident. Therefore, this study purpose is FEM evaluation of the stresses and deformation in the X3 PCV model according to the change of the differential pressure between inlet and outlet. From results, the maximum equivalent stresses increased linearly according to the increase of the differential pressure at the about 50mm from the inlet position and were under the yield strength of the valve. And the deformations were relatively small regardless of the in-outlet differential pressure variation.
Keywords
PCV(positive crankcase ventilation); blow-by; flow characteristic; differential pressure; FEM; stress distribution; deformation;
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