Syrlybayev Daniyar, Zharylkassyn Beibit, Seisekulova Aidana, Akhmetov Mustakhim, Perveen Asma, Talamona Didier
Department of Mechanical & Aerospace Engineering, School of Engineering and Digital Sciences, Nazarbayev University, Kabanbay Batyr Ave. 53, Nur-Sultan 010000, Kazakhstan.
Polymers (Basel). 2021 May 14;13(10):1587. doi: 10.3390/polym13101587.
Additive Manufacturing is currently growing fast, especially fused deposition modeling (FDM), also known as fused filament fabrication (FFF). When manufacturing parts use FDM, there are two key parameters-strength of the part and dimensional accuracy-that need to be considered. Although FDM is a popular technology for fabricating prototypes with complex geometry and other part product with reduced cycle time, it is also limited by several drawbacks including inadequate mechanical properties and reduced dimensional accuracy. It is evident that part qualities are greatly influenced by the various process parameters, therefore an extensive review of the effects of the following process parameters was carried out: infill density, infill patterns, extrusion temperature, layer thickness, nozzle diameter, raster angle and build orientation on the mechanical properties. It was found from the literature that layer thickness is the most important factor among the studied ones. Although manipulation of process parameters makes significant differences in the quality and mechanical properties of the printed part, the ideal combination of parameters is challenging to achieve. Hence, this study also includes the influence of pre-processing of the printed part to improve the part strength and new research trends such as, vacuum-assisted FDM that has shown to improve the quality of the printing due to improved bonding between the layers. Advances in materials and technologies that are currently under development are presented. For example, the pre-deposition heating method, using an IR lamp of other technologies, shows a positive impact on the mechanical properties of the printed parts.
增材制造目前发展迅速,尤其是熔融沉积建模(FDM),也称为熔丝制造(FFF)。在使用FDM制造零件时,有两个关键参数需要考虑,即零件强度和尺寸精度。尽管FDM是一种用于制造具有复杂几何形状的原型以及其他零件产品且周期时间缩短的流行技术,但它也受到一些缺点的限制,包括机械性能不足和尺寸精度降低。显然,零件质量受到各种工艺参数的极大影响,因此对以下工艺参数的影响进行了广泛的综述:填充密度、填充图案、挤出温度、层厚、喷嘴直径、光栅角度和构建方向对机械性能的影响。从文献中发现,层厚是所研究参数中最重要的因素。尽管工艺参数的调整对打印零件的质量和机械性能有显著影响,但实现参数的理想组合具有挑战性。因此,本研究还包括打印零件预处理对提高零件强度的影响以及新的研究趋势,如真空辅助FDM,由于层间粘结性提高,已显示出可提高打印质量。介绍了目前正在开发的材料和技术进展。例如,使用红外灯或其他技术的预沉积加热方法对打印零件的机械性能有积极影响。