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首页> 外文期刊>Rapid prototyping journal >Influence of printing parameters on the transformation efficiency of 3D-printed plaster of paris to hydroxyapatite and its properties
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Influence of printing parameters on the transformation efficiency of 3D-printed plaster of paris to hydroxyapatite and its properties

机译:印刷参数对巴黎3D打印石膏灰泥转化为羟基磷灰石及其性能的影响

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摘要

Purpose - The purpose of this paper is to study the influence of changing printing parameters (powder layer thickness and binder saturation) in a three dimensional printing machine (3DP) on the transformation of 3DP printed plaster of paris to hydroxyapatite by low temperature phosphorization. Design/methodology/approach - Plaster of paris-based powder mixture was used to print specimens using different powder layer thickness (0.080, 0.10 and 0.20 mm) and saturation ratio (1 and 2). Subsequently, density, microstructure, mechanical properties, transformation rate and phase composition were analyzed to compare the influence of such printing parameters on properties. Findings - It was found that printing parameters strongly affect the transformation efficiency and properties of the samples. The sample printed at layer thickness of 0.10mm and saturation ratio of 1 yielded the highest transformation rate, density and greatest flexural modulus and strength after conversion. This was related to the sufficiently low density structure with good mechanical properties of the as-fabricated 3DP sample which was suitable for the low temperature phosphorization process. Hydroxyapatite and monetite were found to be the main phases after conversion and the content of each phase depended on the conversion time and on also the printing parameters. Research limitations/implications - The optimal printing parameters were true for the materials used in this study. In the case of using other materials formulation, the optimal printing parameters might be different from these values. Practical implications - The results presented here can be used as a guideline for selecting printing parameters in 3DP machine for achieving properties as desired for specific applications or post-processing techniques. Originality/value - The paper demonstrates the printing parameters that were needed to be considered for efficient phase transformation and high mechanical properties.
机译:目的-本文的目的是研究在3D印刷机(3DP)中改变印刷参数(粉末层厚度和粘合剂饱和度)对3DP印刷巴黎石膏通过低温磷化转化为羟基磷灰石的影响。设计/方法/方法-使用基于巴黎的粉末混合物的灰泥打印具有不同粉末层厚度(0.080、0.10和0.20 mm)和饱和比(1和2)的标本。随后,分析密度,微观结构,机械性能,相变速率和相组成,以比较此类印刷参数对性能的影响。发现-发现印刷参数强烈影响样品的转化效率和性质。在转换后,以0.10mm的层厚度和1的饱和比打印的样品产生最高的转化率,密度以及最大的弯曲模量和强度。这与所制造的3DP样品的足够低的密度结构以及良好的机械性能有关,该样品适合于低温磷化工艺。发现羟基磷灰石和褐铁矿是转化后的主要相,并且各相的含量取决于转化时间以及印刷参数。研究局限/意义-最佳印刷参数对本研究中使用的材料是正确的。在使用其他材料配方的情况下,最佳打印参数可能与这些值不同。实际意义-此处提供的结果可用作在3DP机器中选择打印参数的指南,以实现特定应用或后处理技术所需的性能。原创性/价值-本文演示了有效的相变和高机械性能需要考虑的印刷参数。

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