Martín-Montal Jordi, Pernas-Sánchez Jesus, Varas David
Department of Continuum Mechanics and Structural Analysis, University Carlos III of Madrid, Leganés, 28911 Madrid, Spain.
Polymers (Basel). 2021 Apr 2;13(7):1147. doi: 10.3390/polym13071147.
Additive manufacturing (AM) is driving a change in the industry not only regarding prototyping but due to the ease of including printed parts in final designs. Engineers and designers can go deeper into optimization and improvements of their designs without drawbacks of long manufacturing times. However, some drawbacks such as the limited available materials or uncertainty about mechanical properties and anisotropic behavior of 3D printed parts prevent use in large-scale production. To gain knowledge and confidence about printed materials it is necessary to know how they behave under different stress states and strain-rate regimes, and how some of the printing parameters may affect them. The present work proposes an experimental methodology framework to study and characterize materials printed by stereolithography (SLA) to clarify certain aspects that must be taken into account to broaden the use of this kind of material. To this end, tensile and compression tests at different strain rates were carried out. To study the influence of certain printing parameters on the printed material behavior, samples with different printing angles (θ = [0-90]) and different printing resolution (layer height of 50 and 100 µm) were tested. In addition, the effects of curing time and temperature were also studied. The testing specimens were manufactured in the non-professional SLA machine from Formlabs using resin called . Nevertheless, the proposed experimental methodology could be extended to any other resin.
增材制造(AM)不仅在原型制作方面推动着行业变革,还因其能轻松地将打印部件纳入最终设计而带来改变。工程师和设计师可以更深入地优化和改进他们的设计,而无需担心制造时间过长的问题。然而,一些缺点,如可用材料有限、3D打印部件的机械性能和各向异性行为的不确定性,阻碍了其在大规模生产中的应用。为了了解和信任打印材料,有必要知道它们在不同应力状态和应变率条件下的表现,以及一些打印参数可能如何影响它们。本工作提出了一种实验方法框架,用于研究和表征通过立体光刻(SLA)打印的材料,以阐明为扩大这类材料的应用必须考虑的某些方面。为此,进行了不同应变率下的拉伸和压缩试验。为了研究某些打印参数对打印材料性能的影响,测试了具有不同打印角度(θ = [0 - 90])和不同打印分辨率(层高度为50和100 µm)的样品。此外,还研究了固化时间和温度的影响。测试样品是在Formlabs的非专业SLA机器上使用名为 的树脂制造的。然而,所提出的实验方法可以扩展到任何其他树脂。