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Determination of Thermal Conductivity of LDPE Using Dual Hot Wire Probe Method

机译:双热线探针法测定LDPE的导热系数

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Thermal conductivity is the one of most significant parameters in materials when it comes to the industrial applications, it is important to know the thermal conductivity of materials for materials selection, especially when thermal insulation is required. However, the techniques available in laboratory scale to measure the thermal conductivity of poor thermal conductors like polymers, meeting reliability and economy are not available. This research focuses on developing an instrument to measure the thermal conductivity of polymers that overcome the inherent problems in the existing methods. Measuring of the thermal conductivity can be done either at the steady state conditions or transient conditions. The temperature measurements of the polymer specimen in the transient state were done based on the well-known “Transient Hot-Wire Probe Theory”. Here, basically the temperature of a linear heat source embedded in the specimen, which is read at different time intervals and supplied energy to the heat element were the interested quantities and a programmed micro-controller was used to control the sensing elements of the system (thermocouples, current and voltage sensors) by performing pre-defined or user intended functions. Likewise microcontroller then reads out the sensor signals accordingly, to process and produce results in a useful manner (temperature vs time behavior) so that the thermal conductivity can be calculated according to the theory.
机译:当涉及到工业应用时,导热系数是材料中最重要的参数之一,了解材料的导热系数对于选择材料非常重要,尤其是在需要隔热的情况下。但是,实验室规模的可用于测量不良热导体(如聚合物)的导热率,可靠性和经济性的技术尚不可用。这项研究的重点是开发一种可以测量聚合物热导率的仪器,该仪器可以克服现有方法中的固有问题。可以在稳态条件或瞬态条件下进行热导率的测量。基于众所周知的“瞬态热线探针理论”对处于瞬态的聚合物样品进行温度测量。在这里,基本上是在不同时间间隔读取并嵌入热源中的线性热源的温度在标本中是感兴趣的量,并且使用编程的微控制器来控制系统的感测元件(热电偶,电流和电压传感器)通过执行预定义或用户预期的功能。同样,微控制器随后相应地读出传感器信号,以有用的方式处理和产生结果(温度与时间的关系),以便可以根据理论计算导热系数。

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