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3D Printing of Poly(propylene fumarate) Oligomers: Evaluation of Resin Viscosity, Printing Characteristics and Mechanical Properties

机译:聚(丙烯富马酸盐)低聚物的3D印刷:树脂粘度评价,印刷特性和机械性能

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摘要

Complex three-dimensional (3D) pore geometries, useful for tissue engineering scaffolds, can be fabricated via photo-crosslinking of resorbable poly(propylene fumarate) (PPF) resins using stereolithography (SLA) and/or continuous digital light processing (cDLP) methods. Physico-chemical parameters inherent to 3D printable resin design, include viscosity, polymer concentration, degree of polymerization, and resin printing temperature. We report here on our study of these parameters and their influence the cDLP 3D printing process and the resulting mechanical properties. A series of PPF oligomers were synthesized by the ring-opening copolymerization (ROCOP) of maleic anhydride and propy- lene oxide followed by a base-catalyzed isomerization. The resin viscosities were measured as a function of number-average molecular mass ((M) over bar (n)) of the PPF oligomers (1.1, 1.7 and 2.0 kDa), concentrations of PPF in the reactive diluent diethyl fumarate (DEF) (50 and 75 wt %) and resin temperature (25 to 55 degrees C). The zero-shear viscosity (eta(0)) of the resins was found to be temperature-dependent and follow a linear Arrhenius relationship. Tensile tests demonstrated mechanical properties within the range of trabecular bone, with the ultimate strength at break above 15 MPa and elastic moduli between 178 and 199 MPa.
机译:可用于组织工程支架的复杂的三维(3D)孔隙几何形状可通过使用立体光刻(SLA)和/或连续数字光处理(CDLP)方法的可再吸收的聚(丙烯富马酸丁酯)(PPF)树脂的光交联来制造。适用于3D可印刷树脂设计的物理化学参数,包括粘度,聚合物浓度,聚合度和树脂印刷温度。我们在此报告我们对这些参数的研究及其影响CDLP 3D印刷过程以及所得到的机械性能。通过马来酸酐的开环共聚(Rocop)合成一系列PPF低聚物,然后通过碱催化的异构化合成。作为PPF低聚物(1.1,1.7和2.0kDA)的数均分子量((m))的数均分子量((m))的函数测量树脂粘度,在反应性稀释剂二乙基·富马酸乙酯(DEF)中的PPF浓度( 50和75wt%)和树脂温度(25至55℃)。发现树脂的零剪切粘度(Eta(0))被发现为温度依赖性并遵循线性Arrhenius关系。拉伸试验在小梁骨范围内展示了机械性能,在178至199MPa之间的5MPa和弹性调节中断裂的最终强度。

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