...
首页> 外文期刊>Industrial and organizational psychology >Post-Process Effects of Isothermal Annealing and Initially Applied Static Uniaxial Loading on the Ultimate Tensile Strength of Fused Filament Fabrication Parts
【24h】

Post-Process Effects of Isothermal Annealing and Initially Applied Static Uniaxial Loading on the Ultimate Tensile Strength of Fused Filament Fabrication Parts

机译:等温退火的后工艺效应,最初施加静电单轴载荷对熔丝制造部件的最终拉伸强度

获取原文
获取原文并翻译 | 示例
           

摘要

Fused filament fabrication (FFF) is one of the most popular additive manufacturing (AM) techniques used to fabricate polymeric structures. However, these polymeric structures suffer from an inherent deficiency of weak inter-laminar tensile strength. Because of this weak inter-laminar strength, these parts fail prematurely and exhibit only a fraction of the mechanical properties of those fabricated using conventional means. In this paper, we study the effect of thermal annealing in the presence of an initially applied static uniaxial load on the ultimate tensile strength of parts fabricated using FFF. Tensile specimens or dogbones were fabricated from an acrylonitrile butadiene styrene (ABS) filament with a glass transition temperature (T-g) of 105 degrees C; these specimens were then isothermally annealed, post manufacture, in a fixture across a given range of temperatures and static loads. Tensile testing was then performed on these specimens to gauge the effect of the thermal annealing and static loading on inter-laminar tensile strength by measuring the ultimate tensile strength of the specimens. A design of experiments (DOE) approach was followed to calculate the main and interaction effects of the two factors (temperature and static loading) on the ultimate tensile strength, and an analysis of variance was conducted. Cross-sectional images of the specimens were studied to observe the changes in the mesostructure of the specimens that led to the increase in inter-laminar strength of the parts. The results show that temperature plays a dominant role in increasing the ultimate tensile strength and an 89% increase in the average ultimate tensile strength was seen corresponding to an annealing temperature of 160 degrees C. A change in the mesostructure of the parts is seen, which is characterized by an increase in bond length and void coalescence. These results can be helpful in studying the structural strength of 3D printed parts, and thus could eventually guide the fabrication of components with strength comparable to those of conventional manufacturing techniques.
机译:熔丝长丝制造(FFF)是用于制造聚合物结构的最普遍的添加剂制造(AM)技术之一。然而,这些聚合物结构具有弱层间拉伸强度的固有缺陷。由于这种弱层间强度,这些部件过早地失效,并且仅使用常规方法制造的那些的机械性能的一小部分。在本文中,我们研究了热退火在最初施加的静态单轴负荷存在下对使用FFF制造的零件的最终拉伸强度的影响。由丙烯腈丁二烯苯乙烯(ABS)长丝制成拉伸试样或狗油,玻璃化转变温度(T-G)为105℃;然后将这些样品在给定的温度范围和静载范围内的固定装置中是等温退火的。然后对这些样品进行拉伸试验以通过测量样品的最终拉伸强度来衡量热退火和静电负载对层间拉伸强度的影响。遵循实验(DOE)方法的设计,以计算两个因子(温度和静电负荷)对极限拉伸强度的主要和相互作用,并且进行方差分析。研究了标本的横截面图像以观察标本的腹部结构的变化,导致零件的层间强度的增加。结果表明,温度在增加最终拉伸强度方面发挥着主导作用,并且观察到对应于160℃的退火温度观察到平均最终拉伸强度的89%的增加。看到部件的腹部结构的变化其特征在于粘合长度和空隙聚结的增加。这些结果可以有助于研究3D印刷部件的结构强度,因此最终可能引导与常规制造技术相当的强度的组件的制造。

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