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首页> 外文期刊>SAE International Journal of Materials and Manufacturing >Carbon Fiber/Epoxy Mold with Embedded Carbon Fiber Resistor Heater - Case Study
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Carbon Fiber/Epoxy Mold with Embedded Carbon Fiber Resistor Heater - Case Study

机译:碳纤维/环氧树脂嵌入式碳纤维电阻器加热器 - 案例研究

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The article presents a complete description of the design and manufacturing of a Carbon Fiber/epoxy mold with an embedded Carbon Fiber resistor heater, and the mold performances in terms of its surface temperature distribution and thermal deformations resulting from the heating. The mold was designed for manufacturing aileron skins from Vacuum Bag Only prepreg cured at 135°C. The glass transition temperature of the used resin-hardener system was about 175°C. To ensure homogenous temperature of the mold working surface in the course of curing, the Carbon Fiber heater was embedded in a layer of a highly heat-conductive cristobalite/epoxy composite, forming the core of the mold shell. Because the cristobalite/epoxy composite displayed much higher thermal expansion than CF/epoxy did, thermal stresses could arise due to this discrepancy in the course of heating. Therefore, to lower these stresses, the Carbon Fiber/epoxy faces were separated from the cristobalite/epoxy core containing the heating element by the buffer layer of carbon nanotubes/epoxy displaying intermediate thermal expansion. The determined mold surface thermal deformation was in the range of 1 mm in 20°C-135°C temperature range and, at 135°C, the mold surface temperature unevenness was in the range of 10°C. Despite such temperature unevenness, the Tg values determined with the help of the specimens cut out from the different parts of the cured skin were of satisfactory values.
机译:本文介绍了具有嵌入式碳纤维电阻器加热器的碳纤维/环氧模具的设计和制造的完整描述,并且在其表面温度分布和由加热产生的热变形方面的模具性能。该模具设计用于制造来自真空袋的Aileron皮,只有在135℃下固化的预浸料。使用的树脂硬化剂系统的玻璃化转变温度约为175℃。为了确保在固化过程中模具工作表面的均匀温度,碳纤维加热器嵌入在高热导流丙二醇/环氧复合材料层中,形成模具壳的芯。由于Cristobalite /环氧复合材料显示得比CF /环氧树脂的热膨胀更高,因此由于在加热过程中由于这种差异而导致热应力可能出现。因此,为了降低这些应力,通过碳纳米管/环氧树脂的缓冲层分离碳纤维/环氧树脂面部通过碳纳米管/环氧树脂的缓冲层分离含有中间热膨胀的缓冲层。确定的模具表面热变形在20℃-135℃的温度范围内,在135℃下,模具表面温度不均匀在10℃的范围内。尽管存在这种温度不均匀,但是根据从固化皮肤的不同部分切出的样本的帮助确定的Tg值具有令人满意的值。

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