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Mechanical properties of extrusion-foamed rigid PVC/wood-flour composites

机译:挤出泡沫刚性PVC /木粉复合材料的机械性能

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This study was conducted to characterize the mechanical properties of extrusion-foamed neat rigid PVC and rigid PVC/wood-flour composites by using endothermic and exothermic chemical foaming agents [CFAs]. The specific elongation at break (ductility) of the samples was improved by foaming, while the opposite trend was observed for the tensile strength and modulus of the samples, regardless of the chemical foaming agent type. In addition, experimental results indicated that foaming reduced the lzod impact resistance of both neat rigid PVC and rigid PVC/wood-flour composites but that this reduction was not statistically significant for the composites. A comparison between batch microcellular processing and extrusion foam processing was made, which demonstrated that foams with very fine cells (microcellular processed) exhibit better impact strength than foams with larger cells (extrusion processed with CFAs).
机译:通过使用吸热和放热的化学发泡剂[CFA],进行该研究以表征挤出发泡纯刚性PVC和刚性PVC /木粉复合材料的机械性能。 通过发泡来改善样品的断裂(延展性)的特定伸长率,而无论化学发泡剂类型如何,都观察到样品的拉伸强度和模量的相反趋势。 此外,实验结果表明,发泡性降低了整齐的刚性PVC和刚性PVC /木粉复合材料的LZOD抗冲击性,但这种还原对于复合材料没有统计学意义。 制备了批量微孔加工和挤出泡沫处理之间的比较,这证明了具有非常细细胞(微孔加工)的泡沫表现出比具有较大细胞的泡沫更好的冲击强度(用CFA处理加工挤出)。

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