2004•Chemical Engineering & MachineryRequires access

Temperature Field Calculation of Mechanical Seals

Zhang Shugui

Open publisher page 2 citations

Abstract

The temperature field distribution of mechanical seals was calculated using the finite element method. The changes of the end face temperature of the seal ring varying with seal pressure, rotating speed of major shaft, materials performance were analyzed. An analysis was performed of the friction heat, stirring heat, and flush. It was concluded that flush could lower the temperature of the seal end face.

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What this paper is about

The temperature field distribution of mechanical seals was calculated using the finite element method. The changes of the end face temperature of the seal ring varying with seal pressure, rotating speed of major shaft, materials performance were analyzed. An analysis was performed of the friction heat, stirring heat, and flush. It was concluded that flush could lower the temperature of the seal end face.

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Available abstract

The temperature field distribution of mechanical seals was calculated using the finite element method. The changes of the end face temperature of the seal ring varying with seal pressure, rotating speed of major shaft, materials performance were analyzed. An analysis was performed of the friction heat, stirring heat, and flush. It was concluded that flush could lower the temperature of the seal end face.

Key concepts: Seal (emblem), Finite element method, Materials science, Mechanical engineering, Mechanics, Heat transfer, Field (mathematics), Composite material

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