首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >HIGH TEMPERATURE ENDURANCE OF FRP COMPOSITES WITH POLYMERIC THERMAL BARRIER COATINGS
【24h】

HIGH TEMPERATURE ENDURANCE OF FRP COMPOSITES WITH POLYMERIC THERMAL BARRIER COATINGS

机译:具有聚合物热阻挡涂层的FRP复合材料的高温耐久性

获取原文

摘要

High Temperature exposure and the corresponding thermo-mechanical behavior of cylindrical polymer composite pipe using CFD simulation has been investigated in this study. The software FLUENT was employed for the analysis of heat transfer, by coupling equations of energy and motion. Analysis was done based on applied external boundary temperature profile, change in internal energy, the total surface heat flux and surface heat transfer rate in order to evaluate the extent of thermal damage. FLUENT compatible program written in C++ language in the form of user define functions (UDF) has been developed and used to specify the time dependent heat flux generated temperature as well as temperature dependent thermal properties of density, thermal conductivity and specific heat. Available furnace test experimental data from (ASTM 1173-95) database were used as outer surface boundary condition in the model setup by developing it into UDF correlation equations. The outputs of the FLUENT simulations are predictions of transient temperature distribution through the thickness of the pipe wall that were then used in evaluating the thermal stresses of the composite pipe. Validation of the simulation results is done with existing data available in the literature. Using the wall generated temperatures, internal energy, the rate of change of the temperature dependent properties and the heat transfer rate, the thermal endurance of each of the coatings materials has been predicted in this work. At the same time knowledge of the thermal performance of these materials is essential for the optimum design of protection based on the composite application.
机译:本研究研究了使用CFD模拟的圆柱形聚合物复合材料管的高温暴露和相应的热力学行为。通过耦合能量和运动方程,使用该软件流畅的分析。基于应用外界温度曲线,内部能变化,总表面热通量和表面传热速度进行分析,以评估热损坏程度。已经开发出了以用户定义功能(UDF)的C ++语言编写的流利兼容程序,并用于指定时间相关的热通量产生的温度,以及密度,导热性和比热的温度依赖性热性。可用的炉子测试实验数据(ASTM 1173-95)数据库被用作模型设置中的外表面边界条件,通过将其开发成UDF相关方程。流畅模拟的输出是通过管壁的厚度来预测通过管壁的厚度来评估复合管的热应力。仿真结果是在文献中可用的现有数据完成的。使用壁产生的温度,内部能量,温度依赖性性质的变化率和传热速率,在这项工作中预测了每个涂层材料的热耐久性。同时知道这些材料的热性能的知识对于基于复合应用的保护的最佳设计是必不可少的。

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