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Effect of layer printing delay on mechanical properties and dimensional accuracy of 3D printed porous prototypes in bone tissue engineering

机译:层打印延迟对骨组织工程中3D打印多孔原型的力学性能和尺寸精度的影响

摘要

Recent advancements in computational design and additive manufacturing have enabled the fabrication of 3D prototypes with controlled architecture resembling the natural bone. Powder-based three-dimensional printing (3DP) is a versatile method for production of synthetic scaffolds using sequential layering process. The quality of 3D printed products by this method is controlled by the optimal build parameters. In this study, Calcium Sulfate based powders were used for porous scaffolds fabrication. The X-direction printed scaffolds with a pore size of 0.8 mm and a layer thickness of 0.1125 mm were subjected to the depowdering step. The effects of four layer printing delays of 50, 100, 300 and 500 ms on the physical and mechanical properties of printed scaffolds were investigated. The compressive strength, toughness and tangent modulus of samples printed with a delay of 300 ms were observed to be higher than other samples. Furthermore, the results of SEM and mu CT analyses showed that samples printed with a delay of 300 ms have higher dimensional accuracy and are significantly closer to CAD software based designs with predefined 0.8 mm macro-pore and 0.6 mm strut size. (C) 2015 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:计算设计和增材制造方面的最新进展已使3D原型的制造具有类似于天然骨骼的受控体系结构。基于粉末的三维打印(3DP)是一种使用顺序分层工艺生产合成支架的通用方法。通过这种方法的3D打印产品的质量由最佳构建参数控制。在这项研究中,基于硫酸钙的粉末被用于多孔支架的制造。将具有0.8mm的孔径和0.1125mm的层厚度的X方向印刷的支架进行去粉步骤。研究了50、100、300和500 ms的四层印刷延迟对印刷支架的物理和机械性能的影响。观察到延迟300毫秒打印的样品的抗压强度,韧性和正切模量高于其他样品。此外,SEM和mu CT分析的结果表明,延迟300 ms打印的样品具有更高的尺寸精度,并且与具有预定义的0.8 mm大孔和0.6 mm支杆尺寸的基于CAD软件的设计非常接近。 (C)2015作者。由Elsevier Ltd.发布。这是CC BY-NC-ND许可(http://creativecommons.org/licenses/by-nc-nd/4.0/)下的开放获取文章。

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