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Investigation on cristobalite crystallization in silica-based ceramic cores for investment casting

机译:熔模铸造二氧化硅基陶瓷芯中方石英的结晶研究

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摘要

In this work, cristobalite crystallization and its effects on mechanical and chemical behaviour of injection moulded silica-based ceramic cores were investigated. In order to simulate casting process condition, the sintered samples at 1220 °C were also heated up to 1430 °C. Flexural strength test was carried out on both sintered and heat treated samples. Chemical resistance of the cores was evaluated by leaching the samples inside 43 wt% KOH solution at its boiling point. Phase evolution and microstructure were investigated by thermal analyses (DTA and DSC), X-ray diffraction (XRD), scanning electron microscopy (SEM) and optical microscopy (OM). Results showed that cristobalite was crystallized on the surface of fused silica grains at about 1380 °C. Flexural strength of the sintered cores was decreased after simulated casting heat treatment due to cristobalite phase transformation. The formed cristobalite on the surface of fused silica grains dramatically decreased the teachability of ceramic cores.
机译:在这项工作中,研究了方石英的结晶及其对注塑二氧化硅基陶瓷芯的机械和化学行为的影响。为了模拟铸造工艺条件,还将在1220°C下烧结的样品加热到1430°C。在烧结和热处理样品上都进行了抗弯强度测试。通过在沸点的43 wt%KOH溶液中浸入样品来评估核的耐化学性。通过热分析(DTA和DSC),X射线衍射(XRD),扫描电子显微镜(SEM)和光学显微镜(OM)研究了相演化和微观结构。结果表明,方石英在约1380°C下在熔融石英颗粒的表面结晶。在模拟铸造热处理后,由于方石英相变,烧结芯的抗弯强度降低。在熔融石英颗粒表面形成的方石英显着降低了陶瓷芯的可教导性。

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