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全生物基液晶木质素/羟丙基纤维素水性油墨的直接墨水书写:配方与印刷参数的优化

Direct Ink Writing of Fully Bio-Based Liquid Crystalline Lignin/Hydroxypropyl Cellulose Aqueous Inks: Optimization of Formulations and Printing Parameters.

作者信息

Ebers Lisa-Sophie, Laborie Marie-Pierre

机构信息

Chair of Forest Biomaterials, University of Freiburg, Werthmannstraße 6, Freiburg im Breisgau 79085, Germany.

Freiburg Materials Research Center, Stefan-Meier-Straße 21, Freiburg im Breisgau 79104, Germany.

出版信息

ACS Appl Bio Mater. 2020 Oct 19;3(10):6897-6907. doi: 10.1021/acsabm.0c00800. Epub 2020 Oct 5.

DOI:10.1021/acsabm.0c00800
PMID:35019351
Abstract

Following the recent demonstration of the potential to direct ink write lyotropic blends of organosolv lignin (OSL) and hydroxypropyl cellulose (HPC), this study aims to optimize the formulations and direct ink writing parameters for fully bio-based lignin/HPC inks. A prescreening identifies the theoretical window of printability for different compositions for formulations based on OSL solutions of 45, 47.5, and 50% solid contents and OSL/HPC wt %/wt % ratios of 30/70, 40/60, and 50/50. Measurements of shear-viscosity and recovery behavior evidence the shear-thinning contribution of HPC and the viscosity recovery contribution of lignin. Shape fidelity, morphology, and mechanical properties of printed monolayers from the prescreened formulations reveal band texture morphology in printed parts and the best performance for the inks with a solid content of 49% and an OSL/HPC ratio of 50/50 (Young's modulus of 995 MPa, ultimate tensile strength of 18.5 MPa, and toughness of 2.8 MJ m). The ink composition has a more significant impact on final properties than the printing parameters, albeit a decreased printing speed of 5 mm s and increased pressure of 3.5 bar contribute favorably to properties. Finally, multiple layer objects were successfully printed for compositions having solid contents of 49 and 50.5% and OSL/HPC ratios of 40/60 and 50/50.

摘要

继最近证明了直接喷墨书写有机溶剂木质素(OSL)和羟丙基纤维素(HPC)的溶致液晶共混物的潜力之后,本研究旨在优化全生物基木质素/HPC油墨的配方和直接喷墨书写参数。预筛选确定了基于固体含量为45%、47.5%和50%的OSL溶液以及OSL/HPC重量比/重量比为30/70、40/60和50/50的不同配方的理论可印刷性窗口。剪切粘度和恢复行为的测量证明了HPC的剪切变稀作用和木质素的粘度恢复作用。预筛选配方的印刷单层的形状保真度、形态和机械性能揭示了印刷部件中的带状纹理形态,以及固体含量为49%且OSL/HPC比为50/50的油墨的最佳性能(杨氏模量为995 MPa,极限拉伸强度为18.5 MPa,韧性为2.8 MJ/m)。尽管印刷速度降低5 mm/s和压力增加3.5 bar对性能有有利贡献,但油墨组成对最终性能的影响比印刷参数更大。最后,成功打印了固体含量为49%和50.5%且OSL/HPC比为40/60和50/50的多层物体。

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