首页> 外文会议>International Thermal Conductivity Conference >Express Methods for Determination of Thermophysical Properties of Different Types of Materials within a Temperature Range of -150°C to +1800°C
【24h】

Express Methods for Determination of Thermophysical Properties of Different Types of Materials within a Temperature Range of -150°C to +1800°C

机译:确定在-150℃至+ 1800℃的温度范围内不同类型材料的热物理性质的表达方法

获取原文

摘要

Most of the test methods for determination of thermal conductivity and diffusivity of materials require the steady state temperature field to be established during thermophysical properties measurements or this is required even prior to starting the measurements. For example, the steady state methods widely used for refractories and building materials (ASTM C-210 and ASTM C-202), as well as the transient hot wire method (ASTM C-202), usually take a day or more in order to obtain 1 data point. This circumstance limits the experimental capabilities for collection of data, in particular, at low and at high temperatures. In this paper we present an overview of a variety of express methods developed by the authors for measuring the apparent thermal conductivity, thermal diffusivity, specific heat and thermal emissivity of different solid, powder and liquid materials. The measurements are conducted during monotonous heating/cooling of the samples of different size and geometry, including the plate, cylinder, cubic shapes, and thin coatings. The developed test methods are based on the non-linear theoiy of thermal conductivity. The main innovation made by the authors of this paper is the development and review of experimental methods and methodology for performing the thermal physical properties testing during phase, chemical, and structural transformations in the different types of materials. Using the developed test methods, a continuous curve of thermophysical properties of the material as function of temperature can be measured within 0.01-2 hours. The test materials include highly porous insulation, rough industrial refractories and building materials, powders, liquids, suspensions, thin coatings, and metals. The main limitations for our methods are the thermal conductivity above 50 W/mK and the thickness of the thin coatings and films. In these cases, the flash method and the methods of temperature waves can be recommended. Detailed description of the methods developed at ITL Inc. and examples of experimental results will be presented. The developed approached for evaluation of true thermophysical properties that do not depend on the boundary conditions will be briefly discussed. This problem is important when coupled heat and mass transfer phenomena take place in the materials under investigation.
机译:大多数的试验方法测定热导率和材料的扩散率的要求期间热物理性质测量将要建立稳态温度场或这是必需的,即使之前开始测量。例如,该稳定状态的方法广泛用于耐火材料和建筑材料(ASTM C-210和ASTM C-202),以及瞬态热丝法(ASTM C-202),通常需要一天以上,以获得1个数据点。这种情况下限制了实验能力为收集数据,特别是,在低温和高温下。在本文中,我们提出了各种由作者用于测量的表观导热率,热扩散率,比热和不同固体,粉末和液体材料的热发射率开发快速方法的概述。测量是单调加热过程中进行的/不同的尺寸和几何形状,包括板,圆柱,立方体形状,而薄的涂层的样品的冷却。将显影的测试方法基于热导率的非线性theoiy。该论文的作者提出的主要创新是执行热物理性质相,化学,并在不同类型的材料结构转变过程中测试的开发和实验方法的审查和方法论。使用开发的测试方法,所述材料作为温度的函数的热物理性质的连续曲线可以是0.01-2小时内进行测量。测试材料包括高度多孔的绝缘材料,粗糙的工业耐火材料和建材,粉末,液体,悬浮液,薄涂层,和金属。我们的方法的主要限制是高于50 W / mK的热导率和薄涂层和膜的厚度。在这些情况下,可推荐的闪光法及温度波的方法。在ITL公司开发的方法和实验结果的实例的详细描述将被呈现。发达国家接近的不依赖于边界条件,将简要讨论真正的热物性评价。这个问题是重要的,当耦合传热传质现象采取材料的地方正在调查中。

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