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Effects of sintering temperature on morphology and mechanical characteristics of 3D printed porous titanium used as dental implant

机译:烧结温度对3D打印多孔钛牙种植体形貌和力学性能的影响

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摘要

Porous titanium samples were manufactured using the 3D printing and sintering method in order to determine the effects of final sintering temperature on morphology and mechanical properties. Cylindrical samples were printed and split into groups according to a final sintering temperature (FST). Irregular geometry samples were also printed and split into groups according to their FST. The cylindrical samples were used to determine part shrinkage, in compressive tests to provide stress-strain data, in microCT scans to provide internal morphology data and for optical microscopy to determine surface morphology. All of the samples were used in microhardness testing to establish the hardness. Below 1100 ℃ FST, shrinkage was in the region of 20% but increased to approximately 30% by a FST of 1300 ℃. Porosity varied from a maximum of approximately 65% at the surface to the region of 30% internally. Between 97 and 99% of the internal porosity is interconnected. Average pore size varied between 24 μrn at the surface and 19 μm internally. Sample hardness increased to in excess of 300 HV0.05 with increasing FST while samples with an FST of below 1250 ℃ produced an elastic-brittle stress/strain curve and samples above this displayed elastic-plastic behaviour. Yield strength increased significantly through the range of sintering temperatures while the Young's modulus remained fairly consistent.
机译:为了确定最终烧结温度对形态和机械性能的影响,使用3D打印和烧结方法制造了多孔钛样品。印刷圆柱形样品,并根据最终烧结温度(FST)将其分成几组。还打印了不规则几何形状的样本,并根据其FST将其分成几组。圆柱形样品用于确定零件的收缩率,在压缩试验中提供应力-应变数据,在microCT扫描中提供内部形态数据,并在光学显微镜下确定表面形态。所有样品都用于显微硬度测试以确定硬度。在1100℃FST以下,收缩率在20%左右,但在1300℃FST时收缩率增加到大约30%。孔隙率从表面的最大值的大约65%变化到内部的30%的范围。内部孔隙率的97%至99%是相互关联的。平均孔径在表面的24微米和内部的19微米之间变化。随着FST的增加,样品硬度增加到超过300 HV0.05,而FST低于1250℃的样品产生了弹性-脆性应力/应变曲线,高于此值的样品表现出弹塑性行为。在烧结温度范围内,屈服强度显着提高,而杨氏模量保持相当稳定。

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