首页> 外文会议>Thermosense: Thermal Infrared Applications XXXVII >Comparison of the insulation property of an innovative material and a traditional one by infrared thermography
【24h】

Comparison of the insulation property of an innovative material and a traditional one by infrared thermography

机译:红外热成像法比较创新材料和传统材料的绝缘性能

获取原文
获取原文并翻译 | 示例

摘要

An innovative ceramic material has been developed as a possible substitute of the traditional rock-wool as thermal insulating material. It should be used in the future inside a machine working at a temperature greater than 200 ℃. The effect of exposition to this temperature for several hours has been evaluated to check if a degradation of the insulating properties can be measured. Experiments did not show any evidence of degradation. Nonetheless the value of the thermal conductivity measured both at high and ambient temperature was not so good as expected. At the same time, the same measurements on rock-wool (the traditional choice for insulation in this machinery) revealed to be very difficult as it is not possible to prepare samples to be tested in a laser flash. To overcome this problem in the measurement of the performance at high temperature a new experiment was prepared by heating one side of the material by means of an electric heater and by looking and comparing (at least qualitatively) the temperature increase on the other side. On the purpose, two parallelepiped samples of the two rival materials, with the same thickness have been prepared and put in contact with the electric heater plate. The temperature evolution of the side facing the ambient has been measured by means of a thermographic camera for almost one hour. The experiment shows that the traditional material owns better insulation performance than the innovative one. Attention has been paid on the properties of the innovative material that, being highly hygroscopic, can maintain a low temperature during the drying process due to the very high value of the latent heat of water when changing from liquid to gas phase.
机译:已经开发出一种创新的陶瓷材料,可以替代传统的岩棉作为隔热材料。将来应在温度高于200℃的机器内使用。已经评估了暴露于该温度数小时的效果,以检查是否可以测量绝缘性能的下降。实验没有显示任何降解的迹象。然而,在高温和环境温度下测得的热导率值都没有预期的那么好。同时,在岩棉上进行相同的测量(这是该机器隔热的传统选择)非常困难,因为无法准备要在激光闪光灯中测试的样品。为了克服在高温下的性能测量中的这个问题,通过使用电加热器加热材料的一侧并通过观察和(至少定性地)比较另一侧的温度升高来准备新的实验。为此,准备了两种厚度相同的两种竞争材料的平行六面体样品,并使其与电热板接触。面对环境的一侧的温度变化已经通过热像仪测量了将近一个小时。实验表明,传统材料比创新材料具有更好的绝缘性能。人们已经注意到了这种创新材料的特性,该特性具有高度吸湿性,由于在从液相变为气相时水的潜热值很高,因此在干燥过程中可以保持低温。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号