MODELING OF DROPLET DYNAMIC AND THERMAL HISTORIES DURING SPRAY FORMING .1. INDIVIDUAL DROPLET BEHAVIOR

A computer model has been developed to describe the in-flight dynamic and thermal histories of gas atomised droplets as a function of distance during spray forming. Modifications of the model have been used to evaluate the relative importance of different physical assumptions in controlling droplet...

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主要な著者: Grant, P, Cantor, B, Katgerman, L
フォーマット: Journal article
出版事項: 1993
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author Grant, P
Cantor, B
Katgerman, L
author_facet Grant, P
Cantor, B
Katgerman, L
author_sort Grant, P
collection OXFORD
description A computer model has been developed to describe the in-flight dynamic and thermal histories of gas atomised droplets as a function of distance during spray forming. Modifications of the model have been used to evaluate the relative importance of different physical assumptions in controlling droplet cooling and solidification behaviour, and ultimately the evolution of spray formed billet microstructures. Gas atomised droplet dynamic and thermal behaviour is strongly affected by the distribution of droplet diameters in the two phase spray and the momentum transfer between the droplets and the atomising gas, but is relatively unaffected by the details of the droplet solidification mechanism. © 1993.
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spelling oxford-uuid:8818b638-5ceb-4b18-aaab-d38d84afb8a62022-03-26T22:14:45ZMODELING OF DROPLET DYNAMIC AND THERMAL HISTORIES DURING SPRAY FORMING .1. INDIVIDUAL DROPLET BEHAVIORJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:8818b638-5ceb-4b18-aaab-d38d84afb8a6Symplectic Elements at Oxford1993Grant, PCantor, BKatgerman, LA computer model has been developed to describe the in-flight dynamic and thermal histories of gas atomised droplets as a function of distance during spray forming. Modifications of the model have been used to evaluate the relative importance of different physical assumptions in controlling droplet cooling and solidification behaviour, and ultimately the evolution of spray formed billet microstructures. Gas atomised droplet dynamic and thermal behaviour is strongly affected by the distribution of droplet diameters in the two phase spray and the momentum transfer between the droplets and the atomising gas, but is relatively unaffected by the details of the droplet solidification mechanism. © 1993.
spellingShingle Grant, P
Cantor, B
Katgerman, L
MODELING OF DROPLET DYNAMIC AND THERMAL HISTORIES DURING SPRAY FORMING .1. INDIVIDUAL DROPLET BEHAVIOR
title MODELING OF DROPLET DYNAMIC AND THERMAL HISTORIES DURING SPRAY FORMING .1. INDIVIDUAL DROPLET BEHAVIOR
title_full MODELING OF DROPLET DYNAMIC AND THERMAL HISTORIES DURING SPRAY FORMING .1. INDIVIDUAL DROPLET BEHAVIOR
title_fullStr MODELING OF DROPLET DYNAMIC AND THERMAL HISTORIES DURING SPRAY FORMING .1. INDIVIDUAL DROPLET BEHAVIOR
title_full_unstemmed MODELING OF DROPLET DYNAMIC AND THERMAL HISTORIES DURING SPRAY FORMING .1. INDIVIDUAL DROPLET BEHAVIOR
title_short MODELING OF DROPLET DYNAMIC AND THERMAL HISTORIES DURING SPRAY FORMING .1. INDIVIDUAL DROPLET BEHAVIOR
title_sort modeling of droplet dynamic and thermal histories during spray forming 1 individual droplet behavior
work_keys_str_mv AT grantp modelingofdropletdynamicandthermalhistoriesduringsprayforming1individualdropletbehavior
AT cantorb modelingofdropletdynamicandthermalhistoriesduringsprayforming1individualdropletbehavior
AT katgermanl modelingofdropletdynamicandthermalhistoriesduringsprayforming1individualdropletbehavior