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The Effect of Processing on the Mechanical Properties of Self-Reinforced Composites

机译:加工对自增强复合材料力学性能的影响

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Hot-compaction is one of the most common manufacturing methods for creating recyclable all thermoplastic composites. The current work investigates the compaction of highly oriented self-reinforced fabrics with three processing methods to study the effect of pressure and temperature in the tensile mechanical properties of the consolidated laminates. Hot-press, calender roller and vacuum bag technique were adopted to consolidate bi-component polypropylene woven fabrics in a range of pressures and compaction temperatures. Hot-pressed samples exhibited the highest quality of compaction. The modulus of the hot-pressed samples increased with compaction temperature initially due to the improved interlayer bonding and decreased after a maximum at 150°C because of partial melting of the reinforcement phase. The calender roller technique exhibited to have smaller processing temperature window as the pressure is only applied for a short time and the fabrics start to shrink with increasing the processing temperature. The need for constraining the fabrics through the process is therefore found to be paramount. The Vacuum bag results showed this technique to be the least efficient method because of the low compaction pressure. Microscopic images and void content measurement of the consolidated samples further validate the results from tensile testing.
机译:热压实是创建可回收热塑性复合材料的最常见的制造方法之一。目前的工作调查了具有三种加工方法的高导向自增强织物的压实,以研究压力和温度在粘结的层压板的拉伸力学性能下的影响。采用热压,压延辊和真空袋技术在压力范围和压实温度范围内整合双组分聚丙烯织物。热压样品呈现最高的压实质量。由于增强阶段的部分熔化,最初由于增强阶段的部分熔化,热压样品的压实温度最初增加了压实温度并在150℃下最大值降低。随着压力的较小加工温度窗口所示的压延辊技术仅施加短时间,并且织物开始缩小加工温度。因此发现通过该过程约束织物的需要是至关重要的。真空袋结果表明,由于压力低,该技术表明该技术是最低有效的方法。微观图像和综合样品的空隙含量测量进一步验证了拉伸测试的结果。

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