3d.FAB, Univ Lyon, Université Lyon1, CNRS, INSA, CPE-Lyon, ICBMS, UMR 5246, 43, Bd du 11 Novembre 1918, 69622 Villeurbanne Cedex, France.
Elkem Silicones, 55 Av. des Frères Perret, 69192 Saint-Fons Cedex, France.
Langmuir. 2021 Apr 13;37(14):4154-4162. doi: 10.1021/acs.langmuir.1c00018. Epub 2021 Mar 31.
Freeform reversible embedding of suspended hydrogel (FRESH) is an additive manufacturing technique enabling the 3D printing of soft materials with low or no yield stress. The printed material is embedded during the process until its solidification. From the literature, FRESH abilities are self-healing, reusability, suspending, thermal stability, and high-precision printing. This study proposes a new support hydrogel bath formulation for FRESH 3D printing. To do so, a poloxamer micellar thermoreversible hydrogel is tuned through the addition of poly(ethylene glycol) (PEG) to adapt rheological properties. PEG macromolecules interact with poly(ethylene oxide) blocks of poloxamer and favor micelle dehydration, and then decreasing the gelation temperature, the yield stress, and the viscosity. Parameters such as the Oldroyd number and the Rayleigh-Plateau instability, both dependent on yield stress, were studied to determine their impact on the FRESH 3D printing resolution and accuracy. It was found that print accuracy of embedded parts increases with increasing yield stress but then the self-healing property gets limited, leading to crevasse formation. The usefulness of this approach is distinctly demonstrated through a six-axis printing of a highly complex silicone anatomical model. Printing fidelity of 96.0 ± 3.58% (5-40 mm printed parts) is thus achieved using the newly formulated FRESH material, while only 56.0 ± 0.76% fidelity is obtained using the standard formulation. The present study thus showed that complex FRESH 3D printing of soft materials is possible in this tunable hydrogel and that parts can be manufactured on an industrial scale, thanks to the reusability of the support bath.
自由形态可逆嵌入悬浮水凝胶(FRESH)是一种增材制造技术,能够 3D 打印具有低屈服应力或无屈服应力的软材料。在打印过程中嵌入打印材料,直到其凝固。根据文献,FRESH 的能力包括自修复、可重复使用、悬浮、热稳定性和高精度打印。本研究提出了一种新的 FRESH 3D 打印支撑水凝胶浴配方。为此,通过添加聚乙二醇(PEG)来调整泊洛沙姆胶束热可逆水凝胶,以适应流变性能。PEG 大分子与泊洛沙姆的聚氧乙烯(PEO)嵌段相互作用,有利于胶束脱水,从而降低凝胶温度、屈服应力和粘度。研究了依赖于屈服应力的 Oldroyd 数和瑞利-普兰特尔不稳定性等参数,以确定它们对 FRESH 3D 打印分辨率和精度的影响。结果发现,嵌入零件的打印精度随屈服应力的增加而增加,但随后自修复性能受到限制,导致裂缝形成。通过对高度复杂的硅酮解剖模型进行六轴打印,明显证明了这种方法的有用性。使用新配方的 FRESH 材料可实现 96.0±3.58%(5-40mm 打印零件)的打印保真度,而使用标准配方仅可获得 56.0±0.76%的保真度。因此,本研究表明,在这种可调谐水凝胶中可以进行复杂的 FRESH 3D 打印软材料,并且由于支撑浴的可重复使用性,可以在工业规模上制造零件。