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Adhesion between thermoplastic elastomers and polyamide-12 with different glass fiber fractions in two-component injection molding

机译:热塑性弹性体和聚酰胺-12之间的粘附性,不同的玻璃纤维级分在双组分注塑成型中

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摘要

The usage of thermoplastic elastomers (TPEs) is increasing, and integrated hard-soft parts can be mass produced by two-component injection molding (or sequential molding). A key property of such parts, the adhesion between the two materials, is the topic of this study. The hard part (the first molded component) in this study was polyamide-12 with 0 to 50 wt% glass fibers (PA12-GF). As the second component, two TPEs were used: a vulcanized TPE and a styrenic TPE, both modified for adhesion to polyamides. The adhesion, assessed by 90 degrees peel tests, increased with increasing melt temperatures and TPE injection rate, while it decreased with increasing glass fiber fraction in the PA12-GF. Based on characterization of cross-sections and fiber distributions near the interface, we propose some hypotheses for the effect of fiber fraction on the fusion between PA12-GF and TPE. These hypotheses involve the near-surface properties of the PA12-GF materials, microstructure, thermo-mechanical properties, and thermal properties. A direct effect of increasing the glass fiber fraction, that is, a reduction in adhesion as more fibers are present at the interface, does not seem to be a major effect, since few fibers are in direct contact with the TPE for any fiber fraction.
机译:热塑性弹性体(TPE)的用途是增加的,并且通过双组分注射成型(或顺序模塑)可以产生集成的硬质零件。这种部件的关键特性,两种材料之间的粘附性,是本研究的主题。本研究中的硬质部分(第一模塑组分)是聚酰胺-12,其中0至50wt%玻璃纤维(PA12-GF)。作为第二组分,使用两种TPE:硫化TPE和苯乙烯TPE,被修饰以与聚酰胺的粘合性。通过增加熔体温度和TPE注射率,通过增加90度剥离试验的粘附性增加,而PA12-GF中的玻璃纤维分数增加,降低。基于界面附近的横截面和光纤分布的表征,我们提出了一些假设用于纤维分数对PA12-GF和TPE之间的融合的影响。这些假设涉及PA12-GF材料,微观结构,热机械性能和热性能的近表面性质。在界面处存在增加玻璃纤维级分的直接效果,即粘合剂的减少,似乎并不似乎是主要的效果,因为少数纤维与任何纤维级分都与TPE直接接触。

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