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The effect of notch preparation technique on the pendulum impact resistance of thermoplastics.

机译:缺口制备技术对热塑性塑料摆锤冲击强度的影响。

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摘要

The Izod impact test (ASTM D256) uses test specimens which are typically injection molded and then notched using a machining process. It is well documented that the post-molded notching process can impart a significant testing variation. This study compares the Izod impact test results obtained for different materials using the traditional notch preparation method with results obtained using molded-in notch specimens. In addition, different molded notch radii were used to explore their effect on impact resistance. Fifteen materials were chosen for this study to examine the effects of morphology, molecular weight, concentration of filler and concentration of reinforcement.;The results of the study show that the impact resistance increased with increasing molecular weight for the unfilled materials studied for both specimen types. The impact resistance of the molded-in notch samples tended to be higher than that obtained using machined notches. The impact resistance difference between the molded-in and machined-in notches for the unfilled samples became greater with increasing molecular weight. The results also show that increasing the filler concentration in the machined-in notch group increased the impact resistance whereas increasing filler concentration in the molded-in notch group decreased the impact strength. Glass fiber reinforcement reduced impact resistance at low concentrations and increased impact resistance al higher concentrations.;Notch sensitivity was unaffected by increasing molecular weight but decreased with increasing concentration of filler and reinforcement. The method of notching did not have a significant influence on the impact resistance for the filled materials.
机译:艾佐德冲击试验(ASTM D256)使用的试样通常是注模成型的,然后使用机械加工方法开槽。众所周知,后成型的开槽过程会带来很大的测试差异。这项研究比较了使用传统缺口制备方法对不同材料获得的艾佐德冲击试验结果与使用模制缺口样品获得的结果。此外,使用不同的模制缺口半径来研究其对耐冲击性的影响。本研究选择了15种材料来研究形态,分子量,填料浓度和增强剂浓度的影响。;研究结果表明,两种样品类型的未填充材料的抗冲击性均随分子量的增加而增加。模制缺口样品的抗冲击性往往高于使用机加工缺口获得的抗冲击性。随着分子量的增加,未填充样品的模制凹口和机加工凹口之间的耐冲击性差异变得更大。结果还表明,增加机加工凹口组中的填料浓度可提高抗冲击性,而增加成型凹口组中的填料浓度则可降低冲击强度。玻璃纤维增​​强剂在低浓度下降低了抗冲击性,而在较高浓度下则提高了抗冲击性。缺口敏感性不受分子量增加的影响,但随填料和增强剂浓度的增加而降低。开槽方法对填充材料的耐冲击性没有显着影响。

著录项

  • 作者

    Wioncek, Matthew Jon.;

  • 作者单位

    University of Massachusetts Lowell.;

  • 授予单位 University of Massachusetts Lowell.;
  • 学科 Plastics.
  • 学位 M.S.
  • 年度 1997
  • 页码 66 p.
  • 总页数 66
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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