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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Additive manufacturing functionally graded titanium structures with selective closed cell layout and controlled morphology
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Additive manufacturing functionally graded titanium structures with selective closed cell layout and controlled morphology

机译:添加剂制造功能渐进的钛结构,具有选择性闭合细胞布局和受控形态

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This article presents the results of deploying a new approach for additive manufacturing (AM) functionally graded titanium (Ti) cellular structures with selectively built closed cells, which tailor the mechanical behavior of structures to mimic the similar properties of bones. A hybrid AM system, which combines two methods of binder jetting and material extrusion, was applied. Ti parts were fabricated from powder-bed AM (binder jetting) with encapsulated sacrificial polymeric droplets within the layers and at designated locations to form a periodic pattern. After a heat treatment step, which resulted in the polymer decomposition, the measurement of porosity among the specimens demonstrated the range of 6 to 16% enhancement in these parameters in samples with periodic cells compared to others. Additionally, micro-computerized tomography was performed on the candidate samples to determine the pore morphology and layout within the specimens. The measurement of stiffness and yield stress suggested a range of 2.48 +/- 0.37 to 3.55 +/- 0.49 GPa and 107.65 +/- 18.14 to 145.75 +/- 13.85 MPa, respectively. These results suggested that the statistical significance occurred in the batches with periodic cells.
机译:本文介绍了用选择性地构建的闭合电池部署用于添加剂制造(AM)功能梯度钛(TI)蜂窝结构的新方法的结果,该闭合电池定制了结构的机械行为以模仿骨骼的类似性质。施用了一种杂交AM系统,其结合了两种粘合剂喷射和材料挤出方法。 TI部件由粉末床AM(粘合剂喷射)制成,其中包裹在层内和指定位置以形成周期性图案。在导致聚合物分解的热处理步骤后,标本中的孔隙率的测量证明了与他人相比具有周期性细胞的样品中这些参数中的6至16%的增强的范围。另外,在候选样品上进行微量计算机层面术,以确定样品中的孔形态和布局。刚度和产量应力的测量表明,分别为2.48 +/- 0.37至3.55 +/- 0.49GPa和107.65 +/- 18.14至145.75 +/- 13.85MPa。这些结果表明,批量生在具有周期性细胞的批次中发生的统计显着性。

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