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Specific Mechanical Energy and Thermal Degradation of Poly(lactic acid) and Poly(caprolactone)/Date Pits Composites

机译:聚(乳酸)和聚(己内酮)/日期凹坑复合材料的具体机械能和热降解

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The compatibility of date pits (DP) with polylactic acid (PLA) or polycaprolactone (PCL) is investigated. Composites were prepared by compounding PLA or PCL with date pits at 10, 20, 30, and 40% wt/wt and extruded. Wheat vital gluten (VG) was also used as a filler and in combination with DP. The specific mechanical energy (SME) was calculated and the composites thermal properties were tested using DSC (peak temperature, enthalpic relaxation, and glass transition) and TGA(degradation temperature and mechanism and degradation kinetics). Because DP is hard filler, the SME of PCL-DP composites increased as the amount of filler increased. At 40% fill, the SME decreased due to the lubricating effect of oil found naturally in DP. As illustrated by lower SME, PLA composites exhibited softer texture because PLA is harder than DP. The DSC melting peak temperature of both polymers has increased at higher DP; however, PLA exhibited enthalpic relation between 66 and 68 degrees C. The TGA profile of the composites displayed two distinct peaks versus one peak for the pure polymer. The degradation kinetics showed multistep process for the composites and one-step process for the pure polymer. The utilization of date pits as a hard filler in developing biodegradable plastics is good for the environment and a value added for the date industry.
机译:研究了与聚乳酸(PLA)或聚己内酯(PCL)的枣坑(DP)的相容性进行了研究。通过将PLA或PCL配混在10,20,30和40%wt / wt的日期凹坑并挤出来制备复合材料。小麦重要麸质(Vg)也用作填料并与DP组合使用。计算具体的机械能(SME),并使用DSC(峰值温度,焓弛豫和玻璃转变)和TGA(降解温度和机理和降解动力学)来测试复合材料热性质。因为DP是硬质填充物,所以PCL-DP复合材料的中小企业随着填料的量增加而增加。在40%的填充下,由于在DP中天然发现的油润滑效果,中小企业因润滑效应而降低。如下来自中小企业所示,PLA复合材料表现出柔软的纹理,因为PLA比DP更难。两种聚合物的DSC熔融峰值温度在更高的DP上增加;然而,PLA在66和68摄氏度之间表现出焓关系。复合材料的TGA曲线显示出两个不同的峰值与纯聚合物的一个峰。降解动力学显示了纯聚合物的复合材料和一步法的多步骤方法。在开发可生物降解的塑料中作为硬填料的日期坑的利用对于日期行业增加了环境和增值。

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