首页> 外文期刊>Fire Technology >Computer Tomography Based Structure Characterization of Expanded Intumescent Coatings for Fire Protection
【24h】

Computer Tomography Based Structure Characterization of Expanded Intumescent Coatings for Fire Protection

机译:基于计算机断层扫描的防火膨胀膨胀型膨胀型结构特征

获取原文
获取原文并翻译 | 示例
       

摘要

Intumescent coatings are used to protect structural steel from fires. In this study, morphological characteristics of expanded and charred intumescent coatings, which is a key factor of its thermal insulating mechanisms, have been studied using a computer tomography (CT)-based analysis method. Specimens of the charred materials are prepared by a laboratory-scale mass-loss cone heating method for measuring thermal insulation performance. Three types of coatings are exposed to three constant incident heat fluxes (25kW/m(2), 50kW/m(2), and 75kW/m(2)) for 2h. The micro-CT scanning technology is applied on the charred materials to generate 3D reconstructed images with 20 mu m resolution by ImageJ software. By using an image processing technique, the central region of each scanned 3D model is divided into three horizontal layers at different depths: top, middle and bottom. The morphological structure varies significantly with the type of coatings, the incident heat flux, and the depth in the char, but the median value of pore size (i.e. equivalent diameter) for all tested samples varies within a narrow range (0.352mm to 0.424mm). The qualitative morphological observations as well as the quantitative pore properties (i.e., 3D porosity, size distributions, and sphericity) are obtained. The present non-destructive structure analyses method is useful to assist in new formulation developments and to advance numerical modeling.
机译:膨胀型涂层用于保护来自火灾的结构钢。在该研究中,使用计算机断层扫描(CT)的分析方法研究了膨胀和烧焦型膨胀件的形态特征,这是其绝热机构的关键因素。烧焦材料标本由实验室级质量损失锥形加热方法制备,用于测量隔热性能。将三种类型的涂层暴露于三种恒定的入射热通量(25kw / m(2),50kw / m(2)和75kw / m(2))。 Micro-CT扫描技术应用于烧焦材料,以通过ImageJ软件生成具有20μm分辨率的3D重建图像。通过使用图像处理技术,每个扫描的3D模型的中心区域被分成三个水平层,在不同的深度:顶部,中间和底部。形态学结构随着涂层的类型,入射热通量和焦炭中的深度而变化显着,但所有测试样品的孔径(即当量)的中位值在窄范围内(0.352mm至0.424mm。 )。获得定性形态学观察以及定量孔隙性(即3D孔隙率,尺寸分布和球形)。本发明的非破坏性结构分析方法可用于协助新的配方发展和推进数值模拟。

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