Effect of ice-quenching on the change in hardness of a Pd-Au-Zn alloy during porcelain firing simulation
Author:
Affiliation:
1. Department of Dental Materials, Institute of Translational Dental Science and BK21 PLUS Project, School of Dentistry, Pusan National University
Publisher
Japanese Society for Dental Materials and Devices
Subject
General Dentistry,Ceramics and Composites
Link
https://www.jstage.jst.go.jp/article/dmj/36/2/36_2016-279/_pdf
Reference19 articles.
1. 1) Yamamoto M. Metal-ceramics: principles and methods of Makoto Yamamoto. Chicago: Quintessence Publishing; 1985. p.15-25.
2. 2) Wang JN, Liu WB. A Pd-free high gold dental alloy for porcelain bonding. Gold Bull 2006; 39: 114-120.
3. 3) Suleiman SH, Vult von Steyern P. Fracture strength of porcelain fused to metal crowns made of cast, milled or laser sintered cobalt-chromium. Acta Odontol Scand 2013; 71: 1280-1289.
4. 4) Chew CL, Norman RD, Stewart GP. Mechanical properties of metal-ceramic alloys at high temperature. Dent Mater 1990; 6: 223-227.
5. 5) O’Brien WJ. Dental materials and their selection. 3rd ed. Chicago: Quintessence Publishing; 2002. p. 204.
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1. Effect of cooling rate during simulated porcelain firing and post-firing heat treatment on the hardness of Pd–Ag–In-Sn metal-ceramic alloy;Korean Journal of Dental Materials;2023-09-30
2. Effect of Cooling Rate on Hardness and Phase Transformation of a Pd-Ag-Based Metal–Ceramic Alloy with or without Ice-Quenching;Metals;2021-04-21
3. Effect of ice quenching after oxidation with or without vacuum on the hardness of Pd–Ag–Au–In alloy during porcelain firing simulation;Journal of the Mechanical Behavior of Biomedical Materials;2019-06
4. Effect of ice-quenching after oxidation treatment on hardening of a Pd-Cu-Ga-Zn alloy for bonding porcelain;Journal of the Mechanical Behavior of Biomedical Materials;2018-03
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