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ANALYSIS OF THE EFFECTS OF 3DP PARAMETERS ON PART FEATURE DIMENSIONAL ACCURACY

机译:3DP参数对零件特征尺寸精度的影响分析

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3D printing (3DP) is a widely investigated scaffold manufacturing process for Tissue Engineering (TE). Useful scaffold geometries should have high porosity (60-80%) with small (100-500 μm) interconnected pores. Therefore dimensional accuracy on the micron level is one of the crucial parameters of the bone scaffolds. Previously it was shown that the behavior of scaffold geometries can be well simulated with Finite Element Modeling (FEM) however the prediction of actual strength and stiffness values are dependent on dimensional accuracy. This accuracy is in turn dependent on several parameters including particle size and shape, powder-binder interaction, and machine setup. In this work different scaffold strut sizes (0.3 - 0.5 mm) have been fabricated using two different plaster powders (zp102 and zp130) with variations in shell saturation levels, part print position, and part print orientation. The parameters for each powder were analyzed using a full 35 factorial experimental design. It was found that the part size and orientation had a significant effect on the dimensional accuracy while the influence of the shell saturation and position was relatively small. The results allow for better dimensional specification for scaffold geometry fabrication by defining the process parameters in 3DP that may be used further in scaffold accuracy optimization.
机译:3D打印(3DP)是组织工程(TE)广泛研究的支架制造工艺。有用的脚手架几何形状应具有高孔隙率(60-80%),且相互连接的孔较小(100-500μm)。因此,微米级的尺寸精度是骨支架的关键参数之一。以前表明,可以使用有限元建模(FEM)很好地模拟脚手架几何形状的行为,但是实际强度和刚度值的预测取决于尺寸精度。该精度又取决于几个参数,包括粒径和形状,粉末与粘合剂的相互作用以及机器设置。在这项工作中,使用两种不同的灰泥粉(zp102和zp130)制造了不同的脚手架撑杆尺寸(0.3-0.5 mm),这些粉体的壳饱和度,零件印刷位置和零件印刷方向均发生变化。使用完整的35个阶乘实验设计分析了每种粉末的参数。发现零件的尺寸和方向对尺寸精度有显着影响,而壳体饱和度和位置的影响相对较小。通过在3DP中定义可进一步用于支架精度优化的工艺参数,结果为支架几何结构的制造提供了更好的尺寸规格。

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