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International Heat Transfer Conference 13
Graham de Vahl Davis (open in a new tab) School of Mechanical and Manufacturing Engineering, University of New South Wales, Kensington, NSW, Australia
Eddie Leonardi (open in a new tab) Computational Fluid Dynamics Research Laboratory, School of Mechanical and Manufacturing Engineering, The University of New South Wales, Sydney, Australia 2052

ISSN Online: 2377-424X

ISBN CD: 1-56700-226-9

ISBN Online: 1-56700-225-0

A STUDY OF SOLID POWDER HEATING PROCESS WITH VAPORIZATION MODELLING IN THE WARM-UP STAGE IN THE PROCESS CHAMBER

page 13
DOI: 10.1615/IHTC13.p11.160
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ABSTRAKT

Part accuracy and quality in the rapid prototyping process using solid powder in the part cake are typically dependent upon the thermal system and powder properties. The part cake is a rectangular mild steel cylinder with a movable part plate piston. For maximum thermal stress reduction in the part-building process, about 1.27 cm or 2.54 cm of initial solid powder were uniformly laid in the part cake. The powder was then warmed to a certain temperature before sintering. The amount of moisture present in the solid powder will have significant impact on the required warm-up time. In the moisture vaporization process, the solid powder temperature in the computational cell will remain at 100 °C until the moisture mass fraction reaches zero. The warm-up time of the cell will increase as the moisture content of the powder increases. Reference data has yet to be published on warm-up times, therefore machine operators will find variances in warm-up times. To better predict the warm-up time for the solid powder heating process with moisture vaporization in the warm-up stage of the part cake, a vaporization code model was developed to simulate the heating process with vaporization for any solid particle mixed with any liquid agent.

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