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首页> 外文期刊>Polymer-Plastics Technology and Materials >Fiber shortening during injection molding of glass fiber-reinforced phenolic molding compounds: fiber length measurement method development and validation
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Fiber shortening during injection molding of glass fiber-reinforced phenolic molding compounds: fiber length measurement method development and validation

机译:在注射成型的玻璃纤维缩短纤维增强酚醛模塑化合物:发展和纤维长度测量方法验证

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摘要

Thermoset molding compounds based on glass fiber-reinforced phenolic resins are an attractive material for thermo-mechanically demanding applications. Usually, the average fiber length in commercially available molding compounds is significantly shorter than the critical fiber length. In order to investigate the potential for increasing the fiber length in the molded part, molding trials using a conventional short fiber and an experimental long fiber-reinforced compound are carried out and the fiber shortening during the process is analyzed. An improvement to the fiber length measurement is described, consisting of a repeatable and accurate down-sampling and fiber dispersion method. The nondestructive measurement of the fiber length distribution by means of X-ray computed tomography is evaluated regarding its suitability for molding compounds with a high glass fiber content. By using the introduced fiber length measurement method, a fiber shortening during the injection molding process from 370pm initial weighted average fiber length to 300pm is detected for conventional phenolic molding compounds. In contrast, the experimental long fiber phenolic compound is shortened from 11,800pm to 970pm. Analytical calculations indicate that the asymptotic fiber length, until which the fluid forces during processing are sufficiently high for breaking the fibers, is between the two measurements. This leads to the conclusion that the commercially available, state-of-the-art short fiber molding compounds leave a strong potential for improving the fiber length in the molded part unused.
机译:根据玻璃热固性成型化合物纤维增强酚醛树脂是一种有吸引力的材料形变场要求应用程序。在商用成型纤维长度化合物是显著短于临界纤维长度。潜在的增加纤维长度模制品,成型试验使用传统的短纤维和实验纤维增强复合而进行纤维缩短的过程进行了分析。改善纤维长度测量描述,包括一个可重复的和准确的采样下来和光纤色散方法。纤维长度分布的x射线计算机断层扫描对其评估适合成型化合物高玻璃纤维含量。纤维长度测量方法,纤维在注塑过程中缩短从370点初始加权平均纤维长度为传统的酚醛检测到300点成型化合物。长纤维缩短的酚类化合物11800点至970点。表明,渐近纤维长度,直到处理过程中流体的力量是什么足够高的纤维,两者之间的测量。结论:商用,最先进的短纤维成型化合物离开一个强大的潜力提高纤维成型部分未使用的长度。

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