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首页> 外文期刊>Journal of Applied Polymer Science >Heat and Humidity Performance of Injection Molded PLA for Durable Applications
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Heat and Humidity Performance of Injection Molded PLA for Durable Applications

机译:耐用应用的注塑PLA的热湿性能

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The durability of a commercially available injection molding grade polylactide (PLA) was assessed by exposure to conditions of elevated temperature and humidity over a period of several weeks. Moisture absorption, molecular weight, and mechanical performance were monitored over time and as a function of crystallinity level. At 50 degrees C and 90% relative humidity, both amorphous and crystalline samples of PLA showed significant moisture absorption, allowing hydrolysis to occur. The study showed that while crystalline content had an effect on the initial moisture absorption behavior, the overall longer term effects on degradation were surprisingly minor. A cumulative damage model was used to relate the overall degradation due to moisture uptake and hydrolysis to long-term durability in environments typical of automotive interiors. The study showed that the injection molding grade PLA resins that are currently commercially available are not suitable for use in applications that require long-term durability in environments subject to elevated temperature and humidity.
机译:通过在数周的时间内暴露于高温和高湿条件下,评估了市售注塑级聚丙交酯(PLA)的耐久性。随时间并根据结晶度监测吸湿率,分子量和机械性能。在50摄氏度和90%相对湿度下,PLA的无定形和结晶样品均显示出显着的吸湿性,从而发生水解。研究表明,尽管晶体含量对初始吸湿行为有影响,但对降解的总体长期影响却出乎意料的小。在汽车内部典型环境中,使用累积损伤模型将由于水分吸收和水解引起的总体降解与长期耐用性联系起来。研究表明,目前可商购的注塑级PLA树脂不适合在高温和高湿环境中需要长期耐久性的应用中使用。

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