Barkhad Mohamed Saeed, Abu-Jdayil Basim, Mourad Abdel Hamid I, Iqbal Muhammad Z
Chemical and Petroleum Engineering Department, United Arab Emirates University, Al Ain 15551, Abu Dhabi, UAE.
Mechanical Engineering Department, United Arab Emirates University, Al Ain 15551, Abu Dhabi, UAE.
Polymers (Basel). 2020 Sep 14;12(9):2091. doi: 10.3390/polym12092091.
This work aims to provide an extensive evaluation on the use of polylactic acid (PLA) as a green, biodegradable thermal insulation material. The PLA was processed by melt extrusion followed by compression molding and then subjected to different annealing conditions. Afterwards, the thermal insulation properties and structural capacity of the PLA were characterized. Increasing the annealing time of PLA in the range of 0-24 h led to a considerable increase in the degree of crystallization, which had a direct impact on the thermal conductivity, density, and glass transition temperature. The thermal conductivity of PLA increased from 0.0643 W/(m·K) for quickly-cooled samples to 0.0904 W/(m·K) for the samples annealed for 24 h, while the glass transition temperature increased by approximately 11.33% to reach 59.0 °C. Moreover, the annealing process substantially improved the compressive strength and rigidity of the PLA and reduced its ductility. The results revealed that annealing PLA for 1-3 h at 90 °C produces an optimum thermal insulation material. The low thermal conductivity (0.0798-0.0865 W/(m·K)), low density (~1233 kg/m3), very low water retention (<0.19%) and high compressive strength (97.2-98.7 MPa) in this annealing time range are very promising to introduce PLA as a green insulation material.
这项工作旨在对聚乳酸(PLA)作为一种绿色、可生物降解的保温材料的使用进行广泛评估。PLA通过熔融挤出然后压缩成型进行加工,然后进行不同的退火处理。之后,对PLA的保温性能和结构性能进行了表征。在0 - 24小时范围内增加PLA的退火时间导致结晶度显著增加,这对热导率、密度和玻璃化转变温度有直接影响。PLA的热导率从快速冷却样品的0.0643 W/(m·K)增加到退火24小时样品的0.0904 W/(m·K),而玻璃化转变温度提高了约11.33%,达到59.0°C。此外,退火过程显著提高了PLA的抗压强度和刚度,并降低了其延展性。结果表明,在90°C下对PLA进行1 - 3小时的退火可产生最佳保温材料。在此退火时间范围内,低热导率(0.0798 - 0.0865 W/(m·K))、低密度(~1233 kg/m3)、极低的保水性(<0.19%)和高抗压强度(97.2 - 98.7 MPa)对于将PLA引入作为绿色保温材料非常有前景。