首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems >THE EFFECT OF INFILL PATTERNS AND ANNEALING ON MECHANICAL PROPERTIES OF ADDITIVELY MANUFACTURED THERMOPLASTIC COMPOSITES
【24h】

THE EFFECT OF INFILL PATTERNS AND ANNEALING ON MECHANICAL PROPERTIES OF ADDITIVELY MANUFACTURED THERMOPLASTIC COMPOSITES

机译:填充图案和退火对加筋热塑性塑料复合材料力学性能的影响

获取原文

摘要

Recently, carbon fiber-reinforced thermoplastics (CFRTPs) have become popular choices in desktop-based additive manufacturing, but there is limited information on their effective usage. In Fused Deposition Modeling (FDM), a structure is created by layers of extruded beads. The degree of bonding between beads, bead orientation, degree of interlayer bonding, type of infill and the type of material, determines overall mechanical performance. The presence of chopped fibers in thermoplastics increases melt viscosity, changes coefficients of thermal expansion, may have layer adhesion issues, and causes increased wear on nozzles, which makes FDM fabrication of thermoplastic composites somewhat different from neat thermoplastics. In the current work, best practices and the effect of annealing and infill patterns on the mechanical performance of FDM-fabricated composite parts were investigated. Materials included commercially available PLA, CF-PLA, ABS, CF-ABS, PETG, and CF-PETG. Two sets of ASTM D638 tensile and ASTM D790 flexural test specimens with 3 different infill patterns and each material were fabricated, one set annealed, and all tested. Anisotropic behavior was observed as a function of infill pattern. As expected, strength and stiffness were higher when the beads were oriented in the direction of the load, even for neat resins. All fiber-filled tensile results showed an increase in stiffness, but surprisingly, not in strength (likely due to very short fiber lengths). Tests of annealed specimens resulted in clear improvements in tensile strength, tensile stiffness and flexural strength for PLA, CF-PLA, and PETG, CF-PETG but a reduction in flexural stiffness. Also, annealing resulted in mixed improvements for ABS and CF-ABS and is only useful in certain infill patterns. This work also establishes 'Best Practices' of FDM-type fabrication of thermoplastic composite structures and documents the minimum critical fiber lengths and fiber fractions of several CF-filled FDM filaments.
机译:近年来,碳纤维增强热塑性塑料(CFRTP)已成为基于桌面的增材制造中的流行选择,但有关其有效用法的信息有限。在熔融沉积建模(FDM)中,结构是由挤出的珠子层创建的。磁珠之间的粘结程度,磁珠取向,层间粘结程度,填充类型和材料类型决定了整体机械性能。热塑性塑料中短切纤维的存在增加了熔体粘度,改变了热膨胀系数,可能存在层粘附问题,并导致喷嘴磨损增加,这使得热塑性复合材料的FDM制造与纯净热塑性塑料有所不同。在当前的工作中,研究了最佳实践以及退火和填充图案对FDM制造的复合零件的机械性能的影响。材料包括可商购的PLA,CF-PLA,ABS,CF-ABS,PETG和CF-PETG。制作了两组具有3种不同填充图案的ASTM D638拉伸和ASTM D790挠曲测试样品,每种材料进行了退火,并进行了全部测试。观察到各向异性行为是填充图案的函数。如预期的那样,即使对纯树脂,当将珠子沿载荷方向取向时,强度和刚度也更高。所有填充纤维的拉伸结果均显示出刚度的增加,但强度却没有增加(可能是由于纤维长度很短)。退火试样的测试明显提高了PLA,CF-PLA和PETG,CF-PETG的拉伸强度,拉伸刚度和抗弯强度,但抗弯刚度却降低了。而且,退火导致ABS和CF-ABS的混合改进,并且仅在某些填充图案中有用。这项工作还建立了热塑性复合材料结构的FDM型制造的“最佳实践”,并记录了几根CF填充的FDM长丝的最小临界纤维长度和纤维分数。

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