首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Hardening behavior after high-temperature solution treatment of Ag-20Pd-12Au-xCu alloys with different Cu contents for dental prosthetic restorations
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Hardening behavior after high-temperature solution treatment of Ag-20Pd-12Au-xCu alloys with different Cu contents for dental prosthetic restorations

机译:牙科假肢修复件施用含量含量的高温溶液治疗Ag-20pd-12au-XCu合金的高温溶液处理。

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Ag-Pd-Au-Cu alloys have been used widely for dental prosthetic applications. Significant enhancement of the mechanical properties of the Ag-20Pd-12Au-14.5Cu alloy as a result of the precipitation of the beta' phase through high-temperature solution treatment (ST), which is different from conventional aging treatment in these alloys, has been reported. The relationship between the unique hardening behavior and precipitation of the beta' phase in Ag-20Pd-12Au-xCu alloys (x=6.5, 13, 14.5, 17, and 20 mass%) subjected to the high-temperature ST at 1123 K for 3.6 ks was investigated in this study. Unique hardening behavior after the high-temperature ST also occurs in Ag-20Pd-12Au-xCu alloys (x=13, 17, and 20) with precipitation of the beta' phase. However, hardening is not observed and the beta' phase does not precipitate in the Ag-20Pd-12Au-6.5Cu alloy after the same ST. The tensile strength and 0.2% proof stress also increase in Ag-20Pd-12Au-xCu alloys (x=13, 14.5, 17, and 20) after the high-temperature ST. In addition, these values after the high-temperature ST increase with increasing Cu content in Ag-20Pd-12Au-xCu alloys (x=14.5, 17, and 20). The formation process of the beta' phase can be explained in terms of diffusion of Ag and Cu atoms and precipitation of the beta' phase. Clarification of the relationship between hardening and precipitation of the beta' phase via high-temperature ST is expected to help the development of more effective heat treatments for hardening in Ag-20Pd-12Au-xCu alloys. (C) 2014 Elsevier Ltd. All rights reserved.
机译:AG-PD-AU-Cu合金已广泛用于牙科假肢应用。由于β相通过高温溶液处理(ST)的沉淀而显着提高Ag-20pd-12au-14.5cu合金的机械性能,这与这些合金中的常规老化处理不同,具有已被报告。 Ag-20pd-12au-Xcu合金(x = 6.5,13,​​14.5,17和20质量)在1123 k下对高温ST进行的β相的独特硬化行为和β相的沉淀的关系本研究调查了3.6 ks。在高温ST后,在Ag-20pd-12au-XCu合金(X = 13,17和20)中发生独特的硬化行为,具有β相的沉淀。然而,未观察到硬化,并且在相同的ST之后,β相的β相不会在Ag-20PD-12-6.5Cu合金中沉淀。拉伸强度和0.2%的抗照应力也增加了高温ST后Ag-20PD-12au-XCu合金(X = 13,14.5,17和20)。另外,在Ag-20pd-12au-XCu合金中增加Cu含量的高温ST增加后,这些值(x = 14.5,17和20)。 β相的形成过程可以在Ag和Cu原子的扩散和β相的沉淀方面解释。通过高温ST澄清β相的硬化和沉淀之间的关系,有助于在Ag-20PD-12au-XCu合金中改变更有效的热处理。 (c)2014年elestvier有限公司保留所有权利。

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