Two-body and three-body abrasion: a critical discussion JD Gates wear 214 (1), 139-146, 1998 | 399 | 1998 |
Effect of hardness on three very different forms of wear GJ Gore, JD Gates Wear 203, 544-563, 1997 | 138 | 1997 |
The effect of heat treatment on the toughness, hardness and microstructure of low carbon white cast irons MX Zhang, PM Kelly, JD Gates Journal of Materials Science 36, 3865-3875, 2001 | 95 | 2001 |
A transformation toughening white cast iron SK Hann, JD Gates Journal of materials Science 32 (5), 1249-1259, 1997 | 85 | 1997 |
Determination of retained austenite using an X-ray texture goniometer MX Zhang, PM Kelly, LK Bekessy, JD Gates Materials characterization 45 (1), 39-49, 2000 | 63 | 2000 |
Effect of abrasive mineral on alloy performance in the ball mill abrasion test JD Gates, MS Dargusch, JJ Walsh, SL Field, MJP Hermand, BG Delaup, ... Wear 265 (5-6), 865-870, 2008 | 62 | 2008 |
The meaning of high stress abrasion and its application in white cast irons JD Gates, GJ Gore, MJP Hermand, MJP Guerineau, PB Martin, J Saad Wear 263 (1-6), 6-35, 2007 | 50 | 2007 |
Wear of metals: philosophies and practicalities JD Gates, GJ Gore Inst of Metals & Materials Australasia 19, 53-89, 1995 | 48 | 1995 |
The role of secondary carbide precipitation on the fracture toughness of a reduced carbon white iron A Kootsookos, JD Gates Materials Science and Engineering: A 490 (1-2), 313-318, 2008 | 42 | 2008 |
Effects of niobium macro-additions to high chromium white cast iron on microstructure, hardness and abrasive wear behaviour H Pourasiabi, JD Gates Materials & Design 212, 110261, 2021 | 40 | 2021 |
Effect of nitrogen contamination on intergranular corrosion of stabilized ferritic stainless steels JD Gates, RA Jago Materials science and technology 3 (6), 450-454, 1987 | 38 | 1987 |
Effects of ‘impact’and abrasive particle size on the performance of white cast irons relative to low-alloy steels in laboratory ball mills Y Ali, CD Garcia-Mendoza, JD Gates Wear 426, 83-100, 2019 | 34 | 2019 |
Development of a white cast iron of fracture toughness 40 MPa√ m A Kootsookos, JD Gates, RA Eaton Cast Metals 7 (4), 239-246, 1995 | 32 | 1995 |
Effects of chromium carbide volume fraction on high-stress abrasion performance of NbC-bearing high chromium white cast irons H Pourasiabi, JD Gates Wear 498, 204312, 2022 | 25 | 2022 |
A model of stress induced martensitic transformation in Fe–Ni–C alloy MX Zhang, PM Kelly, JD Gates Materials Science and Engineering: A 273, 251-256, 1999 | 25 | 1999 |
Microstructure of as‐quenched 3.5 NiCrMoV rotor steel. Part I. General structure and retained austenite JD Gates, A Atrens, IO Smith Materialwissenschaft und Werkstofftechnik 18 (5), 165-170, 1987 | 24 | 1987 |
Adhesive tool wear in the cold roll forming process AS Galakhar, JD Gates, WJT Daniel, PA Meehan Wear 271 (11-12), 2728-2745, 2011 | 23 | 2011 |
Microstructure of as‐quenched 3.5 NiCrMoV rotor steel—Part II. Double diffraction JD Gates, A Atrens, IO Smith Materialwissenschaft und Werkstofftechnik 18 (6), 179-185, 1987 | 23 | 1987 |
Comparing the abrasion performance of NiHard-4 and high-Cr-Mo white cast irons: The effects of chemical composition and microstructure M Jokari-Sheshdeh, Y Ali, SC Gallo, W Lin, JD Gates Wear 492, 204208, 2022 | 21 | 2022 |
The effect of the reduction of carbon content on the toughness of high chromium white irons in the as-cast state A Kootsookos, JD Gates Journal of materials science 39, 73-84, 2004 | 21 | 2004 |