El Magri Anouar, Vanaei Saeedeh, Shirinbayan Mohammadali, Vaudreuil Sébastien, Tcharkhtchi Abbas
Euromed Polytechnic School, Euromed Research Center, Euromed University of Fes, Route de Meknès (Rond point Bensouda), Fès 30 000, Morocco.
GREMAN, INSA Centre Val de Loire, 41000 Blois, France.
Polymers (Basel). 2021 Sep 23;13(19):3218. doi: 10.3390/polym13193218.
3D printing, an additive manufacturing process, draws particular attention due to its ability to produce components directly from a 3D model; however, the mechanical properties of the produced pieces are limited. In this paper, we present, from the experimental aspect, the fatigue behavior and damage analysis of polylactic acid (PLA)-Graphene manufactured using 3D printing. The main purpose of this paper is to analyze the combined effect of process parameters, loading amplitude, and frequency on fatigue behavior of the 3D-printed PLA-Graphene specimens. Firstly, a specific case study (single printed filament) was analyzed and compared with spool material for understanding the nature of 3D printing of the material. Specific experiments of quasi-static tensile tests are performed. A strong variation of fatigue strength as a function of the loading amplitude, frequency, and process parameters is also presented. The obtained experimental results highlight that fatigue lifetime clearly depends on the process parameters as well as the loading amplitude and frequency. Moreover, when the frequency is 80 Hz, the coupling effect of thermal and mechanical fatigue causes self-heating, which decreases the fatigue lifetime. This paper comprises useful data regarding the mechanical behavior and fatigue lifetime of 3D-printed PLA-Graphene specimens. In fact, it evaluates the effect of process parameters based on the nature of this process, which is classified as a thermally-driven process.
3D打印作为一种增材制造工艺,因其能够直接从3D模型生产部件而备受关注;然而,所生产部件的机械性能有限。在本文中,我们从实验方面介绍了采用3D打印制造的聚乳酸(PLA)-石墨烯的疲劳行为和损伤分析。本文的主要目的是分析工艺参数、加载幅度和频率对3D打印PLA-石墨烯试样疲劳行为的综合影响。首先,分析了一个特定的案例研究(单根打印长丝)并与卷轴材料进行比较,以了解该材料3D打印的特性。进行了准静态拉伸试验的具体实验。还给出了疲劳强度随加载幅度、频率和工艺参数变化的情况。获得的实验结果表明,疲劳寿命明显取决于工艺参数以及加载幅度和频率。此外,当频率为80Hz时,热疲劳和机械疲劳的耦合效应会导致自热,从而降低疲劳寿命。本文包含了有关3D打印PLA-石墨烯试样机械行为和疲劳寿命的有用数据。实际上,它基于该工艺的特性评估工艺参数的影响,该工艺被归类为热驱动工艺。