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Titanium casting into phosphate bonded investment with zirconite

机译:钛与锆石铸造成磷酸盐粘结的投资

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Objective: Reaction layer structure of the titanium castings surface was investigated when a new centrifuge-vacuum-pressure cast titanium machine and a zirconite inner investment was used. Methods: The micro-hardness of titanium castings was measured using a Knoop's hardness tester. The structure of reaction layers and the distribution of elements on the surfaces of titanium castings were analysed by SEM and EDS, respectively, when zirconite was used as the inner investment for cast titanium. Results: Knoop's micro-hardness at distances of 50 and 75 μm from the titanium casting surfaces made directly in phosphate investment molds had significantly harder surfaces than those made in zirconite coating molds. The thickness of the reaction layer on the surface of titanium castings was <35 μm with zirconite coating and was >50 μm without zirconite coating. The structure of reaction layer was divided into four layers from the outer surface to the inner including: sintering layer, ex-Case, Si-rich layer, acicular crystal structure. The distribution of elements was different on each layer. Significance: The thickness of the cast titanium reaction layer was reduced when the wax patterns were coated with zirconite. The surface of the titanium castings was smooth and without cracks, and the investment on the surface of titanium castings was easily removed.
机译:目的:研究了使用新型真空离心铸造钛机和锆石内件的钛铸件表面反应层结构。方法:使用努氏硬度计测量钛铸件的显微硬度。当锆石用作铸造钛的内部熔体时,分别通过SEM和EDS分析了反应层的结构和钛铸件表面元素的分布。结果:直接在磷酸盐熔模中制成的距钛铸件表面50和75μm处的努氏显微硬度比锆石涂层模具中的硬得多。钛铸件表面上的反应层厚度在有锆石涂层的情况下为<35μm,在无锆石涂层的情况下为>50μm。从外表面到内部,反应层的结构分为四层,包括:烧结层,ex-Case,富Si层,针状晶体结构。元素的分布在每一层上都不同。启示:当用锆石涂覆蜡模时,铸造钛反应层的厚度减小。钛铸件的表面光滑且无裂纹,并且钛铸件表面的沉积物易于去除。

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