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Manufacture and multi-physical characterization of aluminum/high-density polyethylene functionally graded materials for green energy building envelope applications

机译:用于绿色能源建筑围护结构的铝/高密度聚乙烯功能梯度材料的制造和多物理特性

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An aluminum/high-density polyethylene (HDPE) functionally graded material (FGM) has been fabricated as an essential component of a multifunctional building envelope for high performance of energy efficiency and sustainability. The mass production of the FGM was realized by using coarse aluminum (Al) particles and fine HDPE powder through a vibration-sedimentation process. The gradation of the FGM across its thickness direction was analyzed by developing a modified Rice method, from which five different uniform Al-HDPE samples were made to characterize the material properties of the five sub-layers of the FGM. The mechanical and thermal physical properties of the FGM such as Young's modulus, Poisson ratio, thermal expansion coefficients and thermal conductivities were obtained by various experimental characterizations. A prototype FGM panel with water tubes embedded was fabricated by the vibration and sedimentation combined approach and the thermal efficiency of the FGM panel was evaluated. Under an irradiation level of 620 w/m(2) and a water flowing rate of 60 ml/min, a 22.3 degrees C water temperature increase and an average 18.7 degrees C surface temperature decrease of the FGM panel were achieved, which demonstrates that significant PV conversation efficiency improvement can be realized for both electricity generation and heat collection by the presented FGM panel. The presented fabrication procedures and the associated experimental characterization methods and results can serve as a baseline for quality control of the manufacture of the green energy building envelope materials. (C) 2015 Elsevier B.V. All rights reserved.
机译:铝/高密度聚乙烯(HDPE)功能梯度材料(FGM)已被制造为多功能建筑围护结构的重要组成部分,以实现高效能效和可持续性。通过使用粗大的铝(Al)颗粒和精细的HDPE粉末,通过振动沉降过程实现了FGM的批量生产。通过开发改进的Rice方法,分析了FGM沿其厚度方向的渐变,从中制作了五个不同的均匀Al-HDPE样品,以表征FGM五个子层的材料特性。通过各种实验表征获得了FGM的机械和热物理性质,例如杨氏模量,泊松比,热膨胀系数和热导率。通过振动和沉降相结合的方法,制作了嵌入水管的FGM样板,并评估了FGM板的热效率。在620 w / m(2)的辐射水平和60 ml / min的水流速下,FGM面板的水温提高了22.3摄氏度,平均表面温度降低了18.7摄氏度,这表明显着通过提供的FGM面板,可以同时实现发电和集热的PV对话效率的提高。提出的制造程序以及相关的实验表征方法和结果可以作为绿色能源建筑围护结构材料制造质量控制的基准。 (C)2015 Elsevier B.V.保留所有权利。

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