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Manufacturing and characterization of continuous fiber-reinforced thermoplastic tape overmolded long fiber thermoplastic

机译:连续纤维增强热塑性胶带的制造与鉴定超模长纤维热塑性塑料

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摘要

Light-weight construction, design freedom, integration of functions, and compelling cost element are desired by Original Equipment Manufacturers (OEMs) and their suppliers. The emergence of overmolding of continuous-discontinuous reinforcement enables design freedom and ability to tailor stiffness, strength, and damage tolerance for structural applications. In this work, long fiber thermoplastics (LFT) are overmolded with continuous fiber-reinforced thermoplastic (CFRTP) tape are combined using extrusion compression molding process to evaluate the structural performance. The CFRTP tape overmolded LFT samples were characterized using nondestructive and destructive techniques to track fiber alignment, fiber distribution, manufacturing defects, interfacial bonding of the tape - LFT and effect of CFRTP tape on LFT. Mode 1 fracture toughness, G(1c) for tape overmolded LFT was higher by 25-30% compared to literature reported G(1c). This response was attributed to excellent fiber distribution, good fiber wetting, and absence of voids at the interface. Three-point bend test indicated that CFRTP tape overmolded LFT composites were better able to resist damage under the bending load compared to constituent LFT composite. Flexural strength of the overmolded composite was higher by 119-142%, and modulus higher by 77-65% compared to constituent LFT composite. Simulated flexural results accurately represents the mechanical behavior of composites. The penetration energy of tape overmolded LFT composites determined by LVI test was in the range of 27.66-30.15 J, which is significantly higher than constituent LFT composite, 7.76 J. CFRTP tape overmolded LFT composite exhibits progressive fiber fracture, matrix cracking, and interfacial debonding failure, whereas, constituent LFT composite showed catastrophic fiber fracture.
机译:原始设备制造商(OEM)及其供应商需要轻量级施工,设计自由,功能集成和引人注目的成本元素。连续不连续增强件的包覆成型的出现使得设计自由度和能力定制刚度,强度和损伤结构应用的损伤。在这项工作中,长纤维热塑性塑料(LFT)采用连续纤维增强热塑性(CFRTP)胶带包覆成型,使用挤出压缩成型工艺来评估结构性能。 CFRTP胶带包覆成型的LFT样品的特征是使用非破坏性和破坏性技术进行跟踪纤维对准,纤维分布,制造缺陷,胶带的界面键合和CFRTP胶带对LFT的影响。与文学报道的G(1C)相比,模式1折叠韧性G(1C)的粘度韧性重叠的LFT较高25-30%。这种反应归因于优异的纤维分布,良好的纤维润湿,并且在界面处没有空隙。三点弯曲试验表明,与成分LFT复合材料相比,CFRTP胶带重塑性的LFT复合材料更好地抵抗弯曲载荷下的损坏。与成分LFT复合材料相比,超成反比复合材料的抗弯强度较高119-142%,模量高77-65%。模拟弯曲结果准确表示复合材料的机械性能。通过LVI试验确定的带包覆成型的LFT复合材料的渗透能量在27.66-30.15J的范围内,显着高于组分LFT复合材料,7.76 J.CFRTP胶带包覆成型的LFT复合材料表现出渐进式纤维骨折,基质开裂和界面剥离失败,而组成型LFT复合表现出灾难性的纤维骨折。

著录项

  • 来源
    《Composites. B, Engineering》 |2021年第15期|108597.1-108597.14|共14页
  • 作者单位

    Univ Tennessee Dept Mech Aerosp & Biomed Engn Estabrook Rd 1321 White Ave Knoxville TN 37996 USA|Inst Adv Composites Mfg Innovat IACMI 2360 Cherahala Blvd Knoxville TN 37932 USA;

    Univ Tennessee Dept Mech Aerosp & Biomed Engn Estabrook Rd 1321 White Ave Knoxville TN 37996 USA|Inst Adv Composites Mfg Innovat IACMI 2360 Cherahala Blvd Knoxville TN 37932 USA;

    Oak Ridge Natl Lab ORNL Energy & Transportat Sci Div Oak Ridge TN 37831 USA;

    Univ Tennessee Dept Mech Aerosp & Biomed Engn Estabrook Rd 1321 White Ave Knoxville TN 37996 USA|Inst Adv Composites Mfg Innovat IACMI 2360 Cherahala Blvd Knoxville TN 37932 USA|Oak Ridge Natl Lab ORNL Energy & Transportat Sci Div Oak Ridge TN 37831 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Discontinuous reinforcement; Tape; Computational modeling; Non-destructive testing; Extrusion compression molding;

    机译:不连续的加固;胶带;计算建模;无损检测;挤出压缩成型;
  • 入库时间 2022-08-18 23:35:57

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