...
首页> 外文期刊>Mechanical Engineering Journal >Ceramics utilizing glass fiber-reinforced plastic as civil engineering materials to counteract the heat island phenomenon
【24h】

Ceramics utilizing glass fiber-reinforced plastic as civil engineering materials to counteract the heat island phenomenon

机译:使用玻璃纤维增​​强塑料作为土木工程材料来抵消热岛现象的陶瓷

获取原文
   

获取外文期刊封面封底 >>

       

摘要

This study is aimed at the development of civil engineering materials such as pavement blocks and building tiles that can moderate the heat island phenomenon. This is achieved by exploiting properties such as the material porous structure, high water absorption capacity and high strength of ceramics produced by mixing clay and crushed waste glass fiber-reinforced plastic (GFRP) before firing. Fundamental properties, such as pore size distribution, water absorption capacity, solution pH after ceramic immersion, bending strength, freezing resistance performance and thermal conductivity of ceramic specimens with varying ratios of clay and GFRP were clarified. The radiant heat reduction performance of the ceramic was examined by measuring the surface temperatures of a ceramic sample made from clay, a ceramic sample made by mixing 20% GFRP with clay, and a mortar sample in water-saturated and dry states while their surfaces were irradiated with infrared light. To clarify the difference in temperature-reducing ability by evaporation heat on each sample, the amount of water evaporated from a sample that had absorbed water and was irradiated with infrared light was measured. The rate of heat-absorption from the sample by water evaporation was estimated. The temperature-reducing effect by evaporation heat of the sample during water-absorption was verified quantitatively by thermal conductivity analysis using finite element methods. While water-saturated, a 20% GFRP/clay ceramic sample could reduce the increase in temperature caused by radiant heat considerably, and for an extended duration. It is expected that such ceramics could be used in civil engineering materials to counteract the heat island phenomenon.
机译:这项研究旨在开发能够缓和热岛现象的土木工程材料,例如铺路砖和建筑瓷砖。这是通过利用诸如多孔材料的特性,高吸水能力和陶瓷的高强度来实现的,这些陶瓷是通过在烧制前将粘土和碎玻璃纤维增​​强废塑料(GFRP)混合而制成的。阐明了不同粘土和玻璃纤维比例的陶瓷样品的基本性能,如孔径分布,吸水能力,陶瓷浸渍后的溶液pH,抗弯强度,抗冻性能和导热性。通过测量由粘土制成的陶瓷样品的表面温度,通过将20%GFRP与粘土混合制成的陶瓷样品以及水饱和和干燥状态的砂浆样品的表面温度来检查陶瓷的辐射减热性能用红外光照射。为了弄清每个样品的蒸发热引起的降温能力的差异,测量了从吸收了水并被红外光照射的样品蒸发的水量。估计了通过水蒸发从样品吸收热量的速率。使用有限元方法通过热导率分析定量验证了样品在吸水过程中由于蒸发热而产生的降温效果。虽然水饱和,但是20%GFRP /粘土陶瓷样品可以显着降低辐射热引起的温度升高,并且持续时间更长。预期这种陶瓷可以用于土木工程材料中以抵消热岛现象。

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