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Modeling of Alpha-Case Formation and Its Effects on the Mechanical Properties of Titanium Alloy Castings

机译:Alpha壳形成模型及其对钛合金铸件力学性能的影响

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摘要

Titanium (Ti) castings generally contain a hard surface layer of alpha-case (α-case) that is enriched of oxygen. For dental Ti prostheses, the hard and brittle α-case can be a significant fraction of the thickness of the entire work piece and must be controlled properly to ensure minimum properties. The objective of this article is to present a theoretical framework for predicting α-case formation in dental Ti castings as a function of cooling rate and the influence of α-case on the tensile ductility and wear resistance. First, a diffusion analysis is presented to describe the oxygen profile and microhardness distribution within the α-case in Ti castings of CP-Ti and Ti-6Al-4V. The reduction in tensile ductility by the α-case is then predicted using an existing tensile ductility model. Furthermore, the improvement in wear resistance by the α-case is predicted using a recent wear model. These results are then used to assess the feasibility of controlling the α-case thickness to optimize both tensile ductility and wear resistance in Ti castings.
机译:钛(Ti)铸件通常包含一个富含氧的α-表层(α-case)的硬质表面层。对于牙科钛假体,坚硬而易碎的α壳可能占整个工件厚度的很大一部分,必须对其进行适当控制以确保其最小性能。本文的目的是提供一个理论框架,用于预测牙科钛铸件中的α-壳形成,其与冷却速率以及α-壳对拉伸塑性和耐磨性的影响有关。首先,进行了扩散分析,以描述CP-Ti和Ti-6Al-4V的Ti铸件中α壳内的氧分布和显微硬度分布。然后,使用现有的拉伸延展性模型预测α情形引起的拉伸延展性的降低。此外,使用最近的磨损模型预测了α-壳对耐磨性的改善。然后将这些结果用于评估控制α-表层厚度以优化Ti铸件的拉伸塑性和耐磨性的可行性。

著录项

  • 来源
    《Metallurgical and Materials Transactions A》 |2008年第1期|171-180|共10页
  • 作者单位

    Southwest Research Institute San Antonio TX 78238 USA;

    Baylor College of Dentistry Texas AampampM University System Health Science Center Dallas TX 75246 USA;

    Baylor College of Dentistry Texas AampampM University System Health Science Center Dallas TX 75246 USA;

    Baylor College of Dentistry Texas AampampM University System Health Science Center Dallas TX 75246 USA;

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