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Ethylene vinyl acetate as a binder for additive manufacturing of tricalcium phosphate bio-ceramics

机译:乙烯乙酸乙烯酯作为粘合剂制造磷酸钙生物陶瓷的粘合剂

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摘要

Tricalcium phosphate (TCP) ceramic scaffolds were made by the fused filament fabrication (FFF) using different grades of Ethylene vinyl acetate (EVA) as a thermoplastic binder. Stearic acid was studied as a processing aid. A wide range of rheological properties, shaping and debinding behavior could be observed with feedstocks made with different EVA grades. The addition of stearic acid affects flexibility of the solid filaments, the viscosity of feedstocks, and causes a pronounced yield stress behavior. These effects are strongly dependent on the molecular weight of the EVA and influence the printing process and shape stability during the debinding process. EVA binder system works well for thin and small parts, made with nozzle sizes below 0.4 mm, whereas samples made by thicker nozzle size form defects during debinding process. TCP scaffold structures with fin struts of 0.27 mm and partition wall thickness of 0.25 mm and a layer thickness of 0.20 mm could be successfully shaped, debinded and sintered. Excellent fusion between the different layers was achieved, since no defects at the interface could be detected.
机译:使用不同等级的乙烯乙酸乙酯(EVA)作为热塑性粘合剂,通过熔融丝制造(FFF)制成磷酸钙(TCP)陶瓷支架。研究了硬脂酸作为加工助剂。通过用不同的EVA等级制造的原料可以观察到各种流变性质,成型和脱脂行为。添加硬脂酸影响固体长丝的柔韧性,原料的粘度,并引起明显的屈服应力行为。这些效果强烈依赖于EVA的分子量,并影响脱脂过程中的印刷过程和形状稳定性。 EVA粘合剂系统适用于薄型和小型部件,用喷嘴尺寸低于0.4毫米,而通过较厚喷嘴尺寸制成的样品在脱脂过程中形成缺陷。 TCP支架结构具有0.27mm的翅片支柱,分隔壁厚度为0.25mm,层厚度为0.20mm,可以成功地成形,脱脂和烧结。实现了不同层之间的优异融合,因为可以检测到界面处没有缺陷。

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