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Structure-Property Relationships in Glass-Reinforced Polyamide,Part 1:The Effects of Fiber Content

机译:玻璃纤维增​​强聚酰胺的结构-性能关系,第1部分:纤维含量的影响

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We present the results of an extensive study of the performance of injection-molded glass-fiber reinforced polyamide 66 with glass content between 0 and 40% and based on two chopped glass products both sized with polyamide compatible sizing.Mechanical properties generally improved with increasing glass content,mod-ulus linearly,strength with a maximum at 40-50% glass content,and impact showing an initial decrease from the resin value with a minimum at 4% glass content before increasing at higher glass contents.Residual fiber length decreased linearly with increasing glass content.Interfacial strength was found to be in the range of 30-36 MPa,and no significant differences in dry as molded performance was found between the 123D and 173X sizings.Conditioning these composites in either boiling water or water/glycol mixtures leads to a dra-matic drop in both tensile modulus and tensile strength.This is most likely due to the high level of matrix plastici-zation.After conditioning,the 173X sized glass delivered a significantly higher level of tensile elongation at all fiber contents.Excellent agreement was obtained between the experimental data and the theoretical predictions of the rule of mixtures model for modulus and the Kelly-Tyson model for strength over the range of fiber concentrations studied.
机译:我们提供了对玻璃含量在0%至40%之间的注塑玻璃纤维增​​强聚酰胺66的性能进行广泛研究的结果,该产品基于两种均与聚酰胺相容的施胶剂大小的切碎玻璃产品。机械性能通常随着玻璃的增加而提高含量,线性模量,玻璃含量在40-50%时最大,强度从最初的树脂值(在4%玻璃含量时最小)开始降低,然后在较高玻璃含量时增加。 123D和173X胶料的界面强度在30-36 MPa范围内,干燥性能无显着差异,将这些复合材料置于沸水或水/乙二醇混合物中导致导致拉伸模量和拉伸强度急剧下降。这很可能是由于基体可塑化程度高所致。173X老化后尺寸的玻璃在所有纤维含量下均表现出更高的拉伸伸长率水平。在研究的纤维浓度范围内,实验数据与混合模量规则模型和Kelly-Tyson模型强度规则的理论预测之间取得了很好的一致性。

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