Rolling Of Uranium Sheet And Its Properties PDF Download

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Uranium Processing and Properties

Uranium Processing and Properties
Author: Jonathan S. Morrell
Publisher: Springer Science & Business Media
Total Pages: 320
Release: 2013-07-22
Genre: Technology & Engineering
ISBN: 1461475910

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Uranium Processing and Properties describes developments in uranium science, engineering and processing and covers a broad spectrum of topics and applications in which these technologies are harnessed. This book offers the most up-to-date knowledge on emerging nuclear technologies and applications while also covering new and established practices for working with uranium supplies. The book also aims to provide insights into current research and processing technology developments in order to stimulate and motivate innovation among readers. Topics covered include casting technology, plate and sheet rolling, machining of uranium and uranium alloys, forming and fabrication techniques, corrosion kinetics, nondestructive evaluation and thermal modeling.


Rolling of Uranium

Rolling of Uranium
Author:
Publisher:
Total Pages: 222
Release: 1957
Genre: Rolling (Metal-work)
ISBN:

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Nuclear Science Abstracts

Nuclear Science Abstracts
Author:
Publisher:
Total Pages: 906
Release: 1969
Genre: Nuclear energy
ISBN:

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Preferred Orientation in Cross-rolled Uranium

Preferred Orientation in Cross-rolled Uranium
Author: G. R. Mallett
Publisher:
Total Pages: 50
Release: 1961
Genre: Rolling (Metal-work)
ISBN:

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A study is made of the preferred orientation that occurs as a result of cross-rolling uranium sheet. The study is made by the use of inverse-pole figures and calculated thermal expansion coefficients.


Properties of Uranium Dioxide-stainless Steel Dispersion Fuel Plates

Properties of Uranium Dioxide-stainless Steel Dispersion Fuel Plates
Author: Stan J. Paprocki
Publisher:
Total Pages: 32
Release: 1959
Genre: Nuclear fuel elements
ISBN:

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The physical and mechanical properties of GCRE-type fuel elements were determined from room temperature to 1650 deg F. The fuel elements were prepared by cladding Type 318 stainless steel sheet to a core containing 15 to 35 wt.% UO/ sub 2/ in either prealloyed Type 318 stainless steel or elemental iron-18 wt.% chromium-14 wt. % nickel-2.5 wt. % molybdenum. The tensile strength in the direction perpendicular to the rolling plane decreased from 24,600 psi at room temperature to 9,200 psi at 1650 deg F for the reference fuel plate, whose core contained 25 wt.% UO2 in the elemental alloy. The tensile strength in the longitudinal direction for this fuel element ranged from 54,800 psi at room temperature to 14,200 psi at 1650 deg F, with elongation in 2 in. ranging from 8 to 13 per cent. The extrapolated stress for 1000hr rupture life at 1650 deg F was 1800 psi, and a 1.4T bend was withstood without cracking. The mean linear thermal coefficient of expansion was 11.0 x 10−6 per deg F for the range 68 to 1700 deg F. (auth).