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Investment casting of titanium alloys with calcium zirconate moulds and crucibles

机译:钛合金与钙锆霉菌和坩埚的投资铸造

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摘要

Titanium alloys are very difficult to process via investment casting due to their high melting temperature and reactivity. The objective of the present work was to evaluate new shell mould materials for the suitability for titanium casting in comparison to conventional materials. A new corrosion-resistant material for crucibles and shell moulds based on calcium zirconate (CaZrO3) is proposed with the aim of improving the casting quality of titanium alloys. Tilt casting trials into CaZrO3 shell moulds using three different crucible materials were conducted. The results were compared to a commercial shell system containing silica. The reactivity with the titanium melt was extensively studied as a function of melt temperature, part dimensions and shell mould temperature by hardness profiles and oxygen measurements. The reaction of the CaZrO3 shell was very low, indicated by small oxygen contents and thereby low surface hardness. The formation of an alpha-case was avoided by choosing appropriate casting parameters.
机译:由于其高熔化温度和反应性,通过投资铸造钛合金非常难以处理。本作工作的目的是评估新的壳模具,以便与常规材料相比,钛铸件的适用性。提出了一种基于锆酸钙(Cazro3)的坩埚和壳模的新的耐腐蚀材料,其目的是提高钛合金的浇铸质量。将倾斜铸造试验用三种不同坩埚材料进行Cazro3壳模。将结果与含二氧化硅的商业壳系统进行比较。通过硬度分布和氧气测量,随着熔体温度,部件尺寸和壳模温度的函数广泛地研究与钛熔体的反应性。 Cazro3壳的反应非常低,由小氧含量表示,从而低表面硬度。通过选择合适的铸造参数来避免形成α例。

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