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Hot-stamping technology for carbon fiber reinforced thermoplastic plates based on electrical resistance heating

机译:基于电阻加热的碳纤维增强热塑性板的热冲压技术

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摘要

In the present work, a hot-stamping system for carbon fiber reinforced thermoplastic (CFRTP) plates based on electrical resistance heating was developed, where CFRTP consisted of polyphenylene and polyacrylonitrile. With the hot-stamping process, a simple hat-shaped sample was made. The heating rate and maximum sample temperature varied depending on the electrical resistance of the CFRTP plate. Moreover, the contact conditions between the electrodes and the CFRTP plate also affected the sample temperature owing to their influence on the electrical resistance, which was determined by the amount of exposed carbon fiber (CF) on the sample surface. Temperature measurements performed using samples with various amounts of exposed CF (20%-95% CF) revealed that approximately 65% CF afforded the highest sample temperature and fastest heating rate. The CFRTP plate underwent non-uniform heating, especially during the early stages, e.g. less than 10 s. Sample heating to 150celcius resulted in permanent deformation of the hat-shaped CFRTP samples with less springback, whereas heating to higher temperatures above the melting point led to meandering of the samples. In contrast, CFRTP samples subjected to hot-stamping at lower temperatures, such as 110celcius, exhibited rough surfaces. In addition to the sample temperature, the formability of CFRTP during hot-stamping was affected by the holding time. When hot-stamping was performed without a holding time, even at high temperatures of 150celcius and above, low-quality samples with dented surfaces and irregular sample thickness were obtained. The results of this study indicate that a temperature of 150celcius and a holding time of 10 s are optimal for fabricating high-quality hot-stamped CFRTP with smooth surfaces and uniform thickness.
机译:在本作工作中,开发了一种基于电阻加热的碳纤维增强热塑性塑料(CFRTP)板的热冲压系统,其中CFRTP由聚苯和聚丙烯腈组成。通过热冲压工艺,制造简单的帽子形样品。加热速率和最大样品温度根据CFRTP板的电阻而变化。此外,由于它们对电阻的影响,电极和CFRTP板之间的接触条件也影响了样品温度,这通过样品表面上的暴露碳纤维(CF)的量决定。使用各种曝光的CF(20%-95%CF)的样品进行的温度测量显示,大约65%CF提供最高的样品温度和最快的加热速率。 CFRTP板接受不均匀的加热,尤其是在早期阶段期间,例如在早期阶段。不到10秒。加热到150celcius的样品导致帽形CFRTP样品的永久变形,每个回弹较少,而加热到熔点上方的较高温度导致样品的弯曲。相比之下,在较低温度下进行热冲压的CFRTP样品,例如110celcius,表现出粗糙的表面。除了样品温度之外,热冲压期间CFRTP的可成形性受阻于保持时间的影响。当在没有保持时间的情况下进行热冲压时,即使在150celcius和上述的高温下,获得具有凹陷表面和不规则样品厚度的低质量样品。该研究的结果表明,150celcius的温度和10 s的保持时间是制造具有光滑表面和均匀厚度的高质量热冲压CFRTP。

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