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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >A new heat capacity measurement scheme based on the scanning relaxation method for the Si-N membrane microcalorimeter at high temperatures up to 700 K
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A new heat capacity measurement scheme based on the scanning relaxation method for the Si-N membrane microcalorimeter at high temperatures up to 700 K

机译:基于扫描弛豫法的Si-N膜微热量计在700 K以下高温下的新热容测量方案

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摘要

We present a sensitive heat capacity measurement method for use at temperatures between 300 and 700 K using a home-made calorimeter incorporating a Si-N membrane microcalorimeter and a commercial tube furnace. We employ a scanning relaxation method with the two relaxation times, in which temperature is scanned with a maximum speed up to similar to 30 K/min to measure the heat capacity of sub-mg single crystals. The heat capacity of the addenda composed of the Si-N membrane and thermal grease is measured to be as small as similar to 30 mu J/K. For the high temperature thermal grease, several materials such as In, Wood's metal, and silicone oil have been tested. We demonstrate the Successful performance of this method with different scanning speeds by measuring the specific heat of Cu up to 620 K. A brief summary of advantages/disadvantages of this method vis-A-vis commercially available differential scanning calorimeters (DSCs) is given. (C) 2008 Elsevier B.V. All rights reserved.
机译:我们提出了一种敏感的热容量测量方法,该方法使用的是结合了Si-N膜微热量计和商用管式炉的自制量热计,用于300至700 K的温度。我们采用具有两次弛豫时间的扫描弛豫方法,其中以最大类似于30 K / min的最大速度扫描温度,以测量亚mg单晶的热容。经测量,由Si-N膜和导热油脂组成的附加材料的热容小至类似于30μJ / K。对于高温导热油脂,已经测试了多种材料,例如In,Wood的金属和硅油。通过测量高达620 K的Cu的比热,我们证明了该方法在不同扫描速度下的成功性能。该方法相对于商用差示扫描量热仪(DSC)的优点/缺点的简要概述。 (C)2008 Elsevier B.V.保留所有权利。

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