Three-dimensional Molding Of Carbon Fiber Reinforced Thermoplastics By Direct Resistance Heating Of Carbon Fibers

S. Enoki, K. Moriito, K. Tanaka, T. Katayama
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Abstract

To mold carbon fiber reinforced thermoplastics (CFRTP), it is necessary to impregnate carbon fiber bundles with thermoplastic resin by heating the materials. A low cost CFRTP molding technique has been developed in which direct resistance heating is applied to the carbon fiber itself. When an electrical current runs through a material, it is heated by joule heat. Therefore this method can be run with simple equipment and low power consumption. In previous studies by the authors, flat plates and pipes of CFRTP were molded using direct resistance heating and the molding capabilities were evaluated. To use this molding method for manufacturing automobile components, it is necessary to apply it to three-dimensional molding. However, the temperature distribution of carbon fiber non-crimp fabric (NCF) has not been investigated when a direct resistance heating method is applied to three-dimensional molding. In this study, the heating properties of carbon fiber NCF formed by layers at 90o and 120o using direct resistance heating were evaluated, and angle plates were molded. Using direct heating to carbon fiber NCF, angle CF/PA6 plates have been successfully molded under the conditions of holding time of 1 minute, pressure of 2 MPa and heating temperature of 290°C.
碳纤维直接电阻加热法三维成型碳纤维增强热塑性塑料
为了成型碳纤维增强热塑性塑料(CFRTP),必须通过加热材料,使碳纤维束浸渍热塑性树脂。开发了一种低成本的CFRTP成型技术,将直接电阻加热应用于碳纤维本身。当电流通过材料时,材料被焦耳热加热。因此,该方法设备简单,功耗低。在前人的研究中,采用直接电阻加热法对CFRTP平板和管材进行了成型,并对其成型性能进行了评价。要应用这种成型方法制造汽车零部件,就必须将其应用于三维成型。然而,直接电阻加热法在三维成型过程中对碳纤维无卷曲织物(NCF)的温度分布进行了研究。在本研究中,采用直接电阻加热的方法,在90°和1200°的温度下对碳纤维NCF层形成的加热性能进行了评估,并对角板进行了成型。采用对碳纤维NCF直接加热的方法,在保温时间为1分钟、压力为2 MPa、加热温度为290℃的条件下,成功成型了角度CF/PA6板材。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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