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Effect of Temperature and Strain Rate on the Flexural Behavior of Wood-Polypropylene Composites

机译:温度和应变速率对木材-聚丙烯复合材料弯曲行为的影响

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摘要

The mechanical properties of wood-polypropylene composites exhibit typical viscoelasticity. However, there is little information on the mechanical properties of wood-polypropylene composites related to temperature and time, which limits the use of wood-polypropylene composites as structural components. Here, the effect of time (strain rate) and temperature on the flexural properties and the master curve of the storage modulus used to predict the long-term performance of wood-polypropylene composites were investigated. The results showed that the flexural strength and modulus increased linearly with the increase of wood contend, which can increase by 134% and 257% respectively when the mass fraction of wood powder reached 45%. Moreover, there was a positive linear relationship between flexural strength and ln strain rate, while the flexural strength and modulus decreased as temperature elevated. The storage modulus as a function of frequency (time) and temperature confirmed this trend. To evaluate the long-term performance, the storage modulus master curve was constructed and the respective activation energy was calculated, which revealed that the long-term performance of the samples depended on the matrix and the addition of an appropriate amount of wood powder was beneficial to improve their durability.
机译:木材-聚丙烯复合材料的机械性能表现出典型的粘弹性。然而,关于木材-聚丙烯复合材料的与温度和时间有关的机械性能的信息很少,这限制了使用木材-聚丙烯复合材料作为结构组分。在这里,研究了时间(应变速率)和温度对弯曲性能和储能模量主曲线的影响,该曲线用于预测木材-聚丙烯复合材料的长期性能。结果表明,抗弯强度和模量随木材含量的增加而线性增加,当木粉质量分数达到45%时,抗弯强度和弹性模量可分别增加134%和257%。此外,弯曲强度与ln应变率之间存在正线性关系,而弯曲强度与模量随温度升高而降低。储能模量与频率(时间)和温度的关系证实了这一趋势。为了评估长期性能,构建了储能模量主曲线并计算了各自的活化能,这表明样品的长期性能取决于基体,并且添加适量的木粉是有益的以提高其耐用性。

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