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Experimental and Analytical Investigations on Liquid Impact Erosion

Author : M. Gunasekaran
Publisher :
Page : 32 pages
File Size : 37,35 MB
Release : 1970
Category : Aluminum alloys
ISBN :

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Experimental and analytical research on erosion of 1100-0 aluminum, 316 stainless steel, commercially pure annealed nickel, and 6A1-4V titanium (annealed) is summarized. The erosion is caused by the multiple impacts of a water jet in a rotating disk facility. The relationship between the velocity of impact and the number of impacts at which visible indentations were observed is compared with the high-frequency fatigue strength of these materials. The experimentally observed rates of erosion are compared with a recently developed theory of erosion. The fatigue life distribution curves also are included. The peak rate of erosion varies approximately as the fifth power of the velocity, whereas the time at which the peak rate is observed varies as the one-fifth power. The cavitation erosion strength and liquid impact erosion strengths of these materials also are compared.

Characterization and Determination of Erosion Resistance

Author : American Society for Testing and Materials
Publisher : ASTM International
Page : 442 pages
File Size : 10,56 MB
Release : 1970
Category : Science
ISBN : 9780803100633

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This report seeks to offer a best current assessment of the several elevated temperature properties that commonly form the basis for establishing allowable stresses or design stress intensity values. The results are presented in a form readily usable for that purpose. The data that are evaluated are those that have become available since the publication in 1955 of ASTM Data Series Publication DS 11 (formerly STP No. 180), Elevated Temperature Properties of Carbon Steels, as well as selected data from that earlier publication. The body of the report provides, in text, tables and figures, details concerning the materials, the evaluation procedures that were employed, and the results.

Report

Author : United States. National Bureau of Standards
Publisher :
Page : 696 pages
File Size : 20,33 MB
Release : 1968
Category : Hydraulic engineering
ISBN :

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