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Melting and Casting of Titanium Alloys

机译:钛合金的熔铸

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摘要

Over the past decades, a large number of researchers have been trying titanium alloys in an attempt to combine most of their advantages, such as high specific yield strength, good corrosion resistance, excellent fatigue property and biocompatibility by casting route. However, the wide use of titanium alloys casting has been limited, since it is considered as only a near net shape forming process in titanium alloys due to the catastrophic reactivity of molten states, the alpha-case formations and the casting defects. In order to maximize the unique property of titanium alloys casting which are comparable to wrought products and quite often superior, it is necessary to take a close examination of titanium alloys casting procedure. Therefore, the merits and demerits of various melting devices, pouring methods and mold materials will be addressed with regard to improving titanium alloys casting.
机译:在过去的几十年中,许多研究人员一直在尝试钛合金,以结合其大多数优点,例如高比屈服强度,良好的耐腐蚀性,优异的疲劳性能和通过铸造的生物相容性。但是,钛合金铸件的广泛使用受到了限制,因为由于熔融态的灾难性反应性,α-壳层的形成和铸件缺陷,钛合金铸件仅被视为钛合金中的近净成形工艺。为了使钛合金铸件的独特性能最大化,可以与锻造产品相媲美,并且往往表现优异,因此必须仔细检查钛合金铸件的加工过程。因此,在改善钛合金铸造方面,将解决各种熔化装置,浇铸方法和铸模材料的优缺点。

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