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Degradation as a result of UV radiation of bloodmeal-based thermoplastics

机译:血粉基热塑性塑料的紫外线辐射导致降解

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Polymers are known for their susceptibility to degradation as a result of ultra-violet (UV) radiation. In this study, the UV stability of bloodmeal-based thermoplastics (BMT) was evaluated over a period of 12 weeks. Formulations with and without plasticiser were tested and moisture was excluded during accelerated weathering to isolate the effect of UV because of the material's known sensitivity to moisture. It was found that embrittlement due to loss of water overshadowed the effect of UV degradation. Embrittlement caused the material's toughness to be reduced by an order of magnitude after only two weeks of exposure, for either plasticised or unplasticised samples. An initial increase in tensile strength was observed after two weeks followed by a steady decline in strength. The elastic modulus reached a plateau after about two weeks of exposure. FTIR did not confirm any chemical changes after 12 weeks exposure and TGA suggested that low molecular mass species were quickly lost during the course of the test. The absence of chemical changes does not suggest resistance to environmental degradation, although the dark pigmentation of bloodmeal may have contributed to the lack of UV degradation. Embrittlement remains a greater concern and requires further attention.
机译:已知聚合物由于紫外线(UV)的降解而易于降解。在这项研究中,评估了基于血粉的热塑性塑料(BMT)在12周内的紫外线稳定性。测试了有无增塑剂的配方,并在加速老化过程中排除了水分,以隔离紫外线的影响,这是因为该材料对水分的敏感性。已经发现,由于水分损失而引起的脆化掩盖了UV降解的作用。对于塑化或未塑化的样品,脆化会使材料的韧性在暴露仅两周后降低一个数量级。在两周后观察到拉伸强度的初始增加,随后强度逐渐下降。暴露约两周后,弹性模量达到平稳。 FTIR在暴露12周后未确认任何化学变化,TGA表明低分子量物质在测试过程中迅速消失。尽管血粉的深色沉淀可能导致缺乏紫外线降解,但没有化学变化并不意味着对环境降解具有抵抗力。脆化仍然是一个更大的问题,需要进一步关注。

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