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A Quality Assessment of Titanium Castings Produced in an Experimental Short-Heating-Cycle Investment

机译:实验短周期加热生产的钛铸件的质量评估

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摘要

The aim of this study was to evaluate the quality of casting produced in an experimental short-term heating-cycle investment. Thus, reaction layer and castability of titanium casting using an experimental spinel-based investment (VR) with short heating cycle were compared with the commercial short-heating-cycle spinel-based investment Trinell (TR), the silica-phosphate-based investment Rematitan Plus ( RP), and the conventional spinel-based investment Rematitan Ultra (RU). VR has polymeric fibers added to inorganic particles. Reaction layer assessments were carried out using Vickers hardness and elemental analysis using dispersive X-ray microanalysis (EDX). Mesh patterns were used for castability test, and powder characterization was made by scanning electron microscopy (SEM). Hardness evaluation showed no difference among the investments between 100 and 200 mu m. The most important contaminant element for VR, TR, and RU was oxygen. Higher levels of mold filling were found for TR, VR, and RU compared with that obtained with RP. The quality of castings, characterized by means of the assessments of reaction layer and castability, made from the VR was similar to the commercial investments TR and RU but superior to the RP.
机译:这项研究的目的是评估短期加热周期试验中生产的铸件质量。因此,将使用具有短加热周期的尖晶石基投资品(VR)的实验性钛铸件的反应层和可铸性与基于硅酸磷酸盐的投资品Rematitan的商业短加热周期尖晶石基投资品Trinell(TR)进行了比较。 Plus(RP)和传统的基于尖晶石的投资Rematitan Ultra(RU)。 VR将聚合物纤维添加到无机颗粒中。使用维氏硬度进行反应层评估,并使用分散X射线微分析(EDX)进行元素分析。使用网眼图案进行浇铸性测试,并通过扫描电子显微镜(SEM)进行粉末表征。硬度评估表明,在100至200微米之间的投资之间没有差异。 VR,TR和RU最重要的污染物元素是氧气。与RP相比,TR,VR和RU的模具填充量更高。通过VR进行反应层和可铸性评估的铸件质量类似于TR和RU的商业投资,但优于RP。

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