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通过数值模拟和实证模拟评估用于可持续覆层的玻璃 - 聚氨酯复合材料的防火性能。

Evaluating Fire Performance of Glass-Polyurethane Composite for Sustainable Cladding via Numerical and Empirical Simulation.

作者信息

Thevega T, Jayasinghe J A S C, Kandare E, Robert D, Bandara C S, Shi L, Setunge S

机构信息

School of Engineering, Royal Melbourne Institute of Technology (RMIT) University, Melbourne, VIC 3001, Australia.

Department of Civil Engineering, Faculty of Engineering, University of Peradeniya, Kandy 20000, Sri Lanka.

出版信息

Polymers (Basel). 2023 Sep 2;15(17):3635. doi: 10.3390/polym15173635.

Abstract

The increased demand for cladding in high-rise buildings has prompted engineers to explore alternative products utilizing recycled materials. However, ensuring fire compliance in these alternative claddings, which are predominantly composed of low-volume polymer-based composites, poses a critical challenge. Traditional experimental methods for fire evaluation are costly, time consuming, and environmentally impactful. Considering this, a numerical approach was proposed for evaluating the fire performance of glass-polymer composite materials, which contain a high proportion of recycled glass and a lower percentage of rigid polyurethane. A cone calorimeter test was simulated using Computational Fluid Dynamics (CFD) software to investigate the flammability of the novel glass-polymer composite material. This validated numerical model was employed to assess the combustibility of the glass-polyurethane composite materials and identify influential parameters using the Design of Experiments (DoE) method. Statistical analysis revealed that three material properties, namely, the heat of combustion, the absorption coefficient, and the heat of reaction, significantly influenced the peak heat release rate (pHRR) of the glass-polyurethane composite materials compared to other properties. Based on these findings, an empirical equation was proposed that demonstrates a reasonable correlation with the pHRR of low-polymer recycled glass composite materials. The outcomes of this study hold considerable importance for understanding and predicting the combustibility behaviour of low-polymer-glass composites. By providing a validated numerical model and identifying critical material properties, this research contributes to the development of sustainable fire safety solutions for buildings, enabling the use of recycled materials and reducing reliance on conventional claddings.

摘要

高层建筑对覆层需求的增加促使工程师探索使用回收材料的替代产品。然而,确保这些主要由小体积聚合物基复合材料组成的替代覆层符合防火要求是一项严峻挑战。传统的火灾评估实验方法成本高、耗时且对环境有影响。考虑到这一点,提出了一种数值方法来评估玻璃 - 聚合物复合材料的火灾性能,这种材料含有高比例的回收玻璃和较低百分比的硬质聚氨酯。使用计算流体动力学(CFD)软件模拟锥形量热计试验,以研究新型玻璃 - 聚合物复合材料的可燃性。利用该经过验证的数值模型评估玻璃 - 聚氨酯复合材料的可燃性,并使用实验设计(DoE)方法确定影响参数。统计分析表明,与其他性能相比,燃烧热、吸收系数和反应热这三种材料性能对玻璃 - 聚氨酯复合材料的峰值热释放速率(pHRR)有显著影响。基于这些发现,提出了一个经验方程,该方程与低聚物回收玻璃复合材料的pHRR具有合理的相关性。本研究的结果对于理解和预测低聚物 - 玻璃复合材料的燃烧行为具有相当重要的意义。通过提供经过验证的数值模型并确定关键材料性能,本研究有助于开发可持续的建筑消防安全解决方案,实现回收材料的使用并减少对传统覆层的依赖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d193/10490452/68873b88ae00/polymers-15-03635-g001.jpg

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