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Pre-yield tensile set of a semi-crystalline polymer, its blend and composite

机译:半结晶聚合物及其共混物和复合物的屈服前拉伸定形

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Tensile set was studied at low strains on polypropylene, aliphatic polyketone, rubber toughened blends and CaCO3 particle toughened composites. The rubber in the rubber toughened blends had a particle size of 0.7 mu m. The CaCO3 particles had a size of 0.7 mu m and had been coated with stearic acid. Step-cyclic loading was applied in 1% strain incrementals at a strain rate of 10(-2) s(-1). The maximum strain applied was 20%. The temperature of the test bar was studied with an infra-red camera. Pre-yield deformation is normally assumed to take place in a nonlinear elastic manner. However, for polypropylene and polyketone elastoplastic deformation starts at low strains. For PP the onset of tensile set is at very low strains and increases with strain. The tensile set at the yield point was only 50% and at the drawing strain 100%. Polyketone had a similar tensile set development but shifted to slightly higher strains. Here too the tensile set at the yield point was about 50% and at the drawing strain 100%. The temperature of the non yielded material was found to rise in polyketone a 7 degrees C. The rubber toughened blends had at low strains a higher tensile set, but after the yield strain the set was similar to the base polymer. At 5% strain the tensile set increased with rubber content. The sub micron CaCO3 particle toughened composites increased the tensile set too. The tensile set is a simple technique for studying the pre-yield behaviour of multi phase systems.
机译:在低应变下研究了聚丙烯,脂肪族聚酮,橡胶增韧混合物和CaCO3颗粒增韧复合材料的拉伸变形。橡胶增韧共混物中的橡胶的粒径为0.7μm。 CaCO 3颗粒的尺寸为0.7μm,并且已经用硬脂酸涂覆。以10%(-2)s(-1)的应变速率以1%的应变增量施加步进载荷。施加的最大应变为20%。用红外摄像机研究了测试条的温度。通常假定屈服前变形以非线性弹性方式发生。但是,对于聚丙烯和聚酮,弹塑性变形始于低应变。对于PP,拉伸永久变形的起因是非常低的应变,并随应变而增加。屈服点的拉伸永久变形仅为50%,拉伸应变为100%。聚酮具有相似的拉伸永久变形,但转变为稍高的应变。在此屈服点处的拉伸变形也约为50%,在拉伸应变下为100%。发现在聚酮中非屈服材料的温度升高了7℃。橡胶增韧的共混物在低应变下具有较高的拉伸变形,但是在屈服应变之后,该变形类似于基础聚合物。在5%应变下,拉伸变形随橡胶含量的增加而增加。亚微米CaCO3颗粒增韧复合材料也提高了拉伸永久变形。拉伸变形是研究多相系统的屈服特性的一种简单技术。

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