Zhou Xiangming, Kastiukas Gediminas, Lantieri Claudio, Tataranni Piergiorgio, Vaiana Rosolino, Sangiorgi Cesare
Department of Civil and Environmental Engineering, Brunel University London, London UB8 3PH, UK.
DICAM Department, University of Bologna, 40136 Bologna, Italy.
Materials (Basel). 2018 Aug 10;11(8):1398. doi: 10.3390/ma11081398.
Macro-encapsulated phase change material (PCM) lightweight aggregates (ME-LWA) were produced and evaluated for their mechanical and thermal properties in road engineering applications. The ME-LWAs were first characterised in terms of their physical and geometrical properties. Then, the ME-LWAs were investigated in detail by applying the European Standards of testing for the Bulk Crushing Test and the Polished Stone Value (PSV) coefficient as well as Micro-Deval and laboratory profilometry. In addition, the thermal performance for possible construction of smart pavements with the inclusion of ME-LWAs for anti-ice purposes was determined. The crushing resistance of the ME-LWAs was improved, while their resistance to polishing was reduced. Thermal analysis of the encapsulated PCM determined it to possess excellent thermal stability and a heat storage capacity of 30.43 J/g. Based on the research findings, the inclusion of ME-LWAs in surface pavement layers could be considered a viable solution for the control of surface temperatures in cold climates. Road safety and maintenance could benefit in terms of reduced ice periods and reduced treatments with salts and other anti-ice solutions.
制备了宏观封装相变材料(PCM)轻质集料(ME-LWA),并对其在道路工程应用中的力学和热性能进行了评估。首先对ME-LWA的物理和几何性能进行了表征。然后,通过应用欧洲标准进行松散抗压试验、磨光值(PSV)系数以及微磨耗试验和实验室轮廓测定法,对ME-LWA进行了详细研究。此外,还测定了在可能的智能路面结构中加入ME-LWA用于防冰目的的热性能。ME-LWA的抗压强度提高了,但其抗磨光性降低了。对封装的PCM进行的热分析表明,它具有优异的热稳定性和30.43 J/g的储热能力。基于研究结果,在寒冷气候下,在路面表层中加入ME-LWA可被视为控制路面温度的可行解决方案。道路安全和养护在减少结冰期以及减少盐和其他防冰溶液的使用方面将受益。