首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Improving the Isotropy of Parts Prepared by Fused Deposition Modeling Through the Introduction of Star Architecture Additives
【24h】

APS -APS March Meeting 2017 - Event - Improving the Isotropy of Parts Prepared by Fused Deposition Modeling Through the Introduction of Star Architecture Additives

机译:APS -APS 2017年3月会议-活动-通过引入星形建筑添加剂改善通过熔融沉积建模制备的零件的各向同性

获取原文

摘要

It is well known that 3D printed parts prepared by fused deposition modeling (FDM) exhibit anisotropic characteristics in regards to their mechanical properties. More specifically, mechanical properties when printed orthogonal to the print bed (transverse) are significantly worse than those printed parallel (longitudinal). This behavior is a result of poor layer adhesion from extit{decreased} diffusion and quad entanglement of chains across the inter-layer interface. To improve this, our group has implemented a process in which bimodal blends comprised of a parent, high molecular weight polymer and blended with an identical but low molecular weight (LMW) polymer are utilized. These bimodal blends have led to enhancements of up to 66{%} in the max stress, when printed in the transverse orientation. Additionally, the moduli regardless of print orientation become nearly identical; indicating a more isotropic part. Due to their beneficial flow properties, we have recently begun to study the effect of LMW additives with star architectures on improving the isotropy of 3D printed parts. PLA blends containing 3 arm and 4 arm PLA stars (M$_{w}$ of arm- extasciitilde 11k) at loadings of 3, 10, and 15 mol{%} were tested under the same protocol as the linear specimens. With the small addition of 3 mol{%}, A 100{%} iextit{ncrease }in the max stress, in the transverse orientation, with nearly identical moduli is observed. A significant improvement in layer adhesion and a significantly more isotropic part is thus realized.
机译:众所周知,通过熔融沉积建模(FDM)制备的3D打印部件在机械性能方面表现出各向异性。更具体地,当正交于印刷床(横向)印刷时的机械性能明显比平行(纵向)印刷的那些机械性能差。该行为是由于跨层间界面的链的扩展{减少了}扩散和四重缠结而导致的层粘附性差的结果。为了改善这一点,我们小组实施了一种工艺,其中使用了由母体,高分子量聚合物组成的双峰共混物,并与相同但低分子量(LMW)的聚合物共混。当横向印刷时,这些双峰共混物可将最大应力提高多达66%。另外,不管打印方向如何,模量都几乎相同。表示各向同性的部分。由于其有益的流动性,我们最近开始研究具有星形结构的LMW添加剂对改善3D打印零件的各向同性的影响。在与线性样品相同的操作规程下,测试了含有3臂和4臂PLA星(M $ _ {w} $的臂杀虫剂11k),负载量分别为3、10和15 mol {%}的PLA共混物。在少量添加3 mol {%}的情况下,观察到最大应力在横向方向上增加了100 {%},并且模量几乎相同。因此,实现了层粘附力的显着改善以及各向同性的部分。

著录项

相似文献

  • 外文文献
  • 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