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contributor authorK. J. Kahlow
contributor authorB. Avitzur
date accessioned2017-05-09T01:38:35Z
date available2017-05-09T01:38:35Z
date copyrightAugust, 1974
date issued1974
identifier issn1087-1357
identifier otherJMSEFK-27612#901_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/165016
description abstractVoid behavior has a pronounced effect on the properties and soundness of most materials, and is strongly influenced by the magnitude of hydrostatic pressure during plastic deformation. Using the upper bound theorem approach with a model of idealized geometry to simulate a void-material composite, an analytical criterion for the minimum effective pressure necessary to initiate a permanent void volume change is developed. This pressure is called critical pressure, and its absolute value is the same whether for compression and void closure or tension and void opening. A deviation parameter is also defined, and it indicates that voids of a given geometry will start to open faster under tension than they will start to close under compression of the same magnitude. To compare the aforementioned analytical predictions with real material behavior, copper split billets with artificially introduced voids of predetermined geometries were deformed under different magnitudes of hydrostatic pressure: the process of wire drawing for low pressure deformation, and the fluid environment of hydrostatic extrusion for higher pressure deformation. Those characteristics found to lead to significant void volume change are: (a) high void volume fraction, (b) large relative void size, and (c) voids of unity or greater aspect ratio. Experimental data compared well with the analytical curves; thus, the analytical expressions should be useful in explaining and predicting the behavior of voids in some real materials.
publisherThe American Society of Mechanical Engineers (ASME)
titleVoid Behavior as Influenced by Pressure and Plastic Deformation
typeJournal Paper
journal volume96
journal issue3
journal titleJournal of Manufacturing Science and Engineering
identifier doi10.1115/1.3438459
journal fristpage901
journal lastpage911
identifier eissn1528-8935
keywordsDeformation
keywordsPressure
keywordsHydrostatic pressure
keywordsCompression
keywordsGeometry
keywordsTension
keywordsFluids
keywordsCopper
keywordsComposite materials
keywordsExtruding
keywordsWire drawing
keywordsHydrostatics AND Theorems (Mathematics)
treeJournal of Manufacturing Science and Engineering:;1974:;volume( 096 ):;issue: 003
contenttypeFulltext


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