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An Experimental Characterization of Thermophysical Properties of a Porous Ceramic Shell Used in the Investment Casting Process

机译:精密铸造中多孔陶瓷壳热物理性质的实验表征

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This study presents the results of an investigation that characterises the thermophysical properties of an investment casting mould, comprising of a Zirconium dioxide/Cobalt aluminate prime slurry and a fused Silica/fibre reinforced backup slurry. Growing prevalence of successful computer simulations within the foundry industry enables defects that emerge during the casting process to become increasingly predictable, providing cost-effective alternatives to trial castings. The viability of these simulations as predictors is heavily dependent upon the facilitation of accurate material property data, as attained through this investigation. Differential scanning calorimetry (DSC) and laser flash analysis (LFA) were utilized to determine the specific heat capacity and thermal diffusivity, respectively. These values, in combination with the material density and linear coefficient of thermal expansion, have been used to determine the thermal conductivity of the mould. With the aim of verifying these parameters, initial studies in Flow-3D® simulation software have been performed to determine the constraints needed to reduce variability in simulation parameters. Due to the diversity of casting moulds used throughout the industry, ensuring the material database is kept as comprehensively populated as possible is a crucial undertaking.
机译:这项研究提出了表征熔模铸造模具热物理性质的研究结果,该熔模包含二氧化锆/铝酸钴初浆和熔融的二氧化硅/纤维增强备用浆。在铸造行业中,成功的计算机模拟的日益普及使铸造过程中出现的缺陷变得越来越可预测,从而提供了具有成本效益的替代试验铸造方法。这些模拟作为预测变量的可行性在很大程度上取决于通过这项研究获得的准确的材料特性数据。利用差示扫描量热法(DSC)和激光闪蒸分析(LFA)分别确定比热容和热扩散率。这些值,连同材料密度和线性线性热膨胀系数,已被用来确定模具的热导率。为了验证这些参数,已经在Flow-3D®仿真软件中进行了初步研究,以确定减少仿真参数可变性所需的约束。由于整个行业使用的铸模种类繁多,因此确保尽可能全面地填充材料数据库是一项至关重要的任务。

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