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Title: Microstructural effects in abrasive wear. Quarterly progress report, December 1980-1 June 1981. [Alloys for use in coal mining, handling, and gasification]

Abstract

This report describes research aimed at establishing quantitative relationships between microstructure and wear resistance of highly alloyed materials, including high-Cr white irons and experimental Co-base and Ni-base powder metallurgy (PM) alloys now used or potentially to be used in coal mining, handling, and gasification. The specific types of wear under study are low-stress abrasion and gouging wear encountered in mining, coal conversion, and transfer applications. During this period, work was concentrated on analysis of results. The many detailed observations obtained in the work on scratch test simulations of abrasive wear mechanisms have been summarized in drafts of three papers. The first, A Study of Abrasive Wear Mechanisms Using Diamond and Alumina Scratch Tests, is included as an appendix to this report and is being submitted for publication. Revision of the other papers is in progress.

Authors:
; ; ; ;
Publication Date:
Research Org.:
Notre Dame Univ., IN (USA). Dept. of Metallurgical Engineering and Materials Science
OSTI Identifier:
5609651
Report Number(s):
DOE/ET/10460-16/17
ON: DE82003653
DOE Contract Number:  
AC02-77ET10460
Resource Type:
Technical Report
Country of Publication:
United States
Language:
English
Subject:
36 MATERIALS SCIENCE; CHROMIUM STEELS; WEAR RESISTANCE; COBALT BASE ALLOYS; NICKEL BASE ALLOYS; ABRASION; COAL; COAL GASIFICATION PLANTS; COAL MINING; MATERIALS HANDLING; MICROSTRUCTURE; POWDER METALLURGY; RESEARCH PROGRAMS; ALLOYS; CARBONACEOUS MATERIALS; CHROMIUM ALLOYS; COBALT ALLOYS; CRYSTAL STRUCTURE; ENERGY SOURCES; FOSSIL FUELS; FUELS; INDUSTRIAL PLANTS; IRON ALLOYS; IRON BASE ALLOYS; MATERIALS; MECHANICAL PROPERTIES; METALLURGY; MINING; NICKEL ALLOYS; STEELS; 360103* - Metals & Alloys- Mechanical Properties

Citation Formats

Kosel, T H, Rao, M C, Shetty, H R, Fernandes, M T, and Fiore, N F. Microstructural effects in abrasive wear. Quarterly progress report, December 1980-1 June 1981. [Alloys for use in coal mining, handling, and gasification]. United States: N. p., 1981. Web.
Kosel, T H, Rao, M C, Shetty, H R, Fernandes, M T, & Fiore, N F. Microstructural effects in abrasive wear. Quarterly progress report, December 1980-1 June 1981. [Alloys for use in coal mining, handling, and gasification]. United States.
Kosel, T H, Rao, M C, Shetty, H R, Fernandes, M T, and Fiore, N F. 1981. "Microstructural effects in abrasive wear. Quarterly progress report, December 1980-1 June 1981. [Alloys for use in coal mining, handling, and gasification]". United States.
@article{osti_5609651,
title = {Microstructural effects in abrasive wear. Quarterly progress report, December 1980-1 June 1981. [Alloys for use in coal mining, handling, and gasification]},
author = {Kosel, T H and Rao, M C and Shetty, H R and Fernandes, M T and Fiore, N F},
abstractNote = {This report describes research aimed at establishing quantitative relationships between microstructure and wear resistance of highly alloyed materials, including high-Cr white irons and experimental Co-base and Ni-base powder metallurgy (PM) alloys now used or potentially to be used in coal mining, handling, and gasification. The specific types of wear under study are low-stress abrasion and gouging wear encountered in mining, coal conversion, and transfer applications. During this period, work was concentrated on analysis of results. The many detailed observations obtained in the work on scratch test simulations of abrasive wear mechanisms have been summarized in drafts of three papers. The first, A Study of Abrasive Wear Mechanisms Using Diamond and Alumina Scratch Tests, is included as an appendix to this report and is being submitted for publication. Revision of the other papers is in progress.},
doi = {},
url = {https://www.osti.gov/biblio/5609651}, journal = {},
number = ,
volume = ,
place = {United States},
year = {Thu Oct 29 00:00:00 EST 1981},
month = {Thu Oct 29 00:00:00 EST 1981}
}

Technical Report:
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