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首页> 外文期刊>Macromolecular bioscience >Physical Characterization of Coupled Poly(lactic acid)/Starch/Maleic Anhydride Blends Plasticized by Acetyl Triethyl Citrate
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Physical Characterization of Coupled Poly(lactic acid)/Starch/Maleic Anhydride Blends Plasticized by Acetyl Triethyl Citrate

机译:柠檬酸三乙酯增塑的聚乳酸/淀粉/马来酸酐偶联共混物的物理表征

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摘要

Acetyl triethyl citrate (ATC) was used as a plasticizer for poly(lactic acid) (PLA)/starch blends coupled with maleic anhydride and an initiator of 2,5-bis(tert-butylperoxy)-2,5-dimethylhexane (L101). Elongation of the blend at break was markedly increased when the ATC content was above the 8% loading level, which is referred to as the percolation threshold. The extended elongation was achieved at the expense of tensile strength and elastic modulus. Thermal transitions of the blend, including the glass transition temperature (T_g), cold crystallization temperature (T_c) and melting temperature (T_m), decreased with ATC content. Thermally induced ATC migration affected the thermal behavior of the plasticized blends and reduced elongation and tensile strength, whereas the elasticity modulus increased. ATC migration increased with ambient temperature, which was controlled by the activation energy of the blend system. Leaching of ATC was slow at room temperature in distilled water, but significant in boiling water. Additionally, the leaching rate was also directly proportional to the ATC content of the blend.
机译:乙酰柠檬酸三乙酯(ATC)用作聚乳酸(PLA)/淀粉共混物的增塑剂,与马来酸酐和2,5-双(叔丁基过氧)-2,5-二甲基己烷(L101)的引发剂偶联。当ATC含量高于8%的负载水平(称为渗透阈值)时,混合物的断裂伸长率显着增加。延伸伸长是以拉伸强度和弹性模量为代价的。共混物的热转变,包括玻璃化转变温度(T_g),冷结晶温度(T_c)和熔化温度(T_m),随ATC含量而降低。热诱导的ATC迁移影响了增塑共混物的热性能,降低了伸长率和拉伸强度,而弹性模量却增加了。 ATC迁移随环境温度增加而增加,环境温度受共混体系的活化能控制。在室温下,蒸馏水中ATC的浸出速度很慢,而在沸水中则很明显。另外,浸出率也与共混物中的ATC含量成正比。

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