首页> 外文会议>International Conference on the Technology of Plasticity >Influence of Mechanical Characteristics of Epoxy on the Formability of CFRP Sheets under Different Temperatures
【24h】

Influence of Mechanical Characteristics of Epoxy on the Formability of CFRP Sheets under Different Temperatures

机译:环氧树脂力学特性对不同温度下CFRP板材成形性的影响

获取原文

摘要

Autoclave-molded CFRP (carbon fiber reinforced plastic) has high tensile strength and thermal resistance. However, the curing process in autoclave molding makes the cycle time extremely long. To shorten the cycle time, various forming methods such as the RTM (resin transfer molding) have been developed. Although the cycle time has been improved with these methods, the strength of the products is inferior to that of autoclave-molded CFRP. To realize high-speed forming while maintaining a strength equivalent to that of autoclave-molded CFRP, press forming is effective. If a practical and reliable press-forming method for autoclave-molded CFRP sheets is realized, the CFRP production process can be divided into a curing process and a forming process. This means that CFRP can be formed by simply performing press forming on prepared CFRP sheets. Excluding the curing process from CFRP forming will shorten the cycle time. Press forming requires plastic deformation, but CFRP has poor deformability at room temperature. Therefore, it has been believed that CFRP is a brittle material that is not suitable for press forming. However, recent experimental research has shown that the press formability of CFRP sheets is improved at 100°C, compared with that at room temperature. This finding indicates the possibility of the press forming of CFRP, but the temperature dependence of the formability of CFRP has yet to be shown. To establish a press-forming method for CFRP, an analytical study of its plastic deformation is essential. To determine the temperature dependence of the formability of CFRP, the softening of epoxy in CFRP at moderate temperatures was focused on in this study. This is because the mechanical characteristics of the resin have a strong effect on the plastic deformation of CFRP. An approximate curve based on the temperature parameters was constructed to express the stress-strain relationship at different forming temperatures. Then, press-forming simulation models were constructed to consider the effect of the mechanical characteristics of epoxy in CFRP. The approximate stress-strain curves at room temperature and 100°C was applied to the model. Using this model, the stress distribution in CFRP sheets formed at each temperature has been shown, and the result clearly demonstrates that the formability of CFRP sheets is enhanced at higher forming temperatures. These results enable the accurate simulation of the deformation of CFRP sheets, which will help establish a press-forming method for autoclave-molded CFRP. Moreover, our simulation models can be applied to the deformation of various materials that contains thermosetting resin.
机译:高压釜模塑CFRP(碳纤维增强塑料)具有高抗拉强度和热阻。然而,高压釜成型中的固化过程使循环时间非常长。为了缩短循环时间,已经开发了各种形成方法,例如RTM(树脂转移成型)。虽然循环时间随着这些方法得到改善,但产品的强度差于高压釜模塑CFRP的强度。为了实现高速形成,同时保持相当于高压釜模塑CFRP的强度,压制成形是有效的。如果实现了用于高压釜模塑CFRP片材的实用可靠的压制成型方法,则CFRP生产方法可分为固化过程和成形过程。这意味着CFRP可以通过简单地在制备的CFRP板上进行压制成型来形成CFRP。从CFRP成型中排除固化过程将缩短循环时间。压制成型需要塑性变形,但CFRP在室温下的可变形性差。因此,已经据信CFRP是一种不适合压制成型的脆性材料。然而,最近的实验研究表明,与室温相比,CFRP片材的压制成形性提高了100℃。该发现表明CFRP的压制成形的可能性,但CFRP的可成形性的温度依赖性尚未显示。为了建立CFRP的压制成形方法,其塑性变形的分析研究至关重要。为了确定CFRP的可成形性的温度依赖性,在本研究中,CFRP中的环氧树脂软化是重点的。这是因为树脂的机械特性对CFRP的塑性变形具有很强的影响。构建基于温度参数的近似曲线以表达不同形成温度的应力 - 应变关系。然后,构建了压制模拟模型,以考虑CFRP中环氧的机械特性的影响。在室温下的近似应力 - 应变曲线和100℃的曲线施加到模型上。使用该模型,已经示出了在每个温度下形成的CFRP片材中的应力分布,结果清楚地表明CFRP片材的成形性在更高的形成温度下增强。这些结果使CFRP片材的变形能够精确模拟,这将有助于建立用于高压釜模塑CFRP的压制成型方法。此外,我们的仿真模型可以应用于含有热固性树脂的各种材料的变形。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号