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Evaluation of Effective Thermal Conductivity for Mineral Cast Structural Materials Using Steady-State and Transient Methods

机译:使用稳态和瞬态方法评估矿物铸造结构材料的有效导热系数

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Thermal conductivity is a thermophysical property that represents the rate at which heat energy can be transported through the material. For any alternate material chosen for machine tool structures, the study of its thermal characteristics is imminent. Thermal conductivity is one major characteristic to be analysed. Mineral cast structures made of epoxy-granite are found to exhibit good mechanical properties, such as high stiffness and damping ratio. The material also has lesser weight, compared to conventional materials used for machine tool structures. Hence, these materials are emerging as an alternate to conventional cast iron machine tool structures. This study attempts to determine the effective thermal conductivity of epoxy granite material using steady-state and transient plane source (TPS) methods. The results obtained using the experimental methods are compared with geometrical models and the suitability of the methods is evaluated. It is observed that both methods are suitable for measuring effective thermal conductivity of two-phase materials. Compared to TPS method, the steady-state method is a slow and material-consuming technique but provides more accurate results. The effective thermal conductivity of the developed material is compared with some commercial polymer composites and observed that the developed material has greater thermal conductivity.
机译:热导率是一种热物理性质,代表热能可以通过材料传输的速率。对于为机床结构选择的任何其他材料,对其热特性的研究迫在眉睫。导热系数是要分析的主要特征之一。发现由环氧花岗岩制成的矿物铸件结构具有良好的机械性能,例如高刚度和阻尼比。与用于机床结构的常规材料相比,该材料还具有更轻的重量。因此,这些材料正在替代传统的铸铁机床结构。这项研究试图使用稳态和瞬态平面源(TPS)方法确定环氧花岗岩材料的有效导热系数。将使用实验方法获得的结果与几何模型进行比较,并评估方法的适用性。可以看出,两种方法都适用于测量两相材料的有效导热率。与TPS方法相比,稳态方法是一种缓慢且消耗材料的技术,但可提供更准确的结果。将开发材料的有效导热率与某些商用聚合物复合材料进行了比较,观察到开发材料具有更高的导热率。

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