Suppr超能文献

钙磷酸盐的可印刷性:用于组织工程骨支架的 3D 打印技术的硫酸钙粉末。

Printability of calcium phosphate: calcium sulfate powders for the application of tissue engineered bone scaffolds using the 3D printing technique.

机构信息

School of Mechanical and Aerospace Engineering, Queen's University Belfast, Ashby Building, 121 Stranmillis Road, Belfast BT9 5AH, United Kingdom.

School of Medicine, Dentistry and Biomedical Sciences, Queen's University Belfast, Health Sciences Building, 97 Lisburn Road, Belfast BT9 7BL, United Kingdom.

出版信息

Mater Sci Eng C Mater Biol Appl. 2014 May 1;38:1-10. doi: 10.1016/j.msec.2014.01.027. Epub 2014 Jan 22.

Abstract

In this study, calcium phosphate (CaP) powders were blended with a three-dimensional printing (3DP) calcium sulfate (CaSO4)-based powder and the resulting composite powders were printed with a water-based binder using the 3DP technology. Application of a water-based binder ensured the manufacture of CaP:CaSO4 constructs on a reliable and repeatable basis, without long term damage of the printhead. Printability of CaP:CaSO4 powders was quantitatively assessed by investigating the key 3DP process parameters, i.e. in-process powder bed packing, drop penetration behavior and the quality of printed solid constructs. Effects of particle size, CaP:CaSO4 ratio and CaP powder type on the 3DP process were considered. The drop penetration technique was used to reliably identify powder formulations that could be potentially used for the application of tissue engineered bone scaffolds using the 3DP technique. Significant improvements (p<0.05) in the 3DP process parameters were found for CaP (30-110 μm):CaSO4 powders compared to CaP (<20 μm):CaSO4 powders. Higher compressive strength was obtained for the powders with the higher CaP:CaSO4 ratio. Hydroxyapatite (HA):CaSO4 powders showed better results than beta-tricalcium phosphate (β-TCP):CaSO4 powders. Solid and porous constructs were manufactured using the 3DP technique from the optimized CaP:CaSO4 powder formulations. High-quality printed constructs were manufactured, which exhibited appropriate green compressive strength and a high level of printing accuracy.

摘要

在这项研究中,将磷酸钙 (CaP) 粉末与三维打印 (3DP) 的硫酸钙 (CaSO4) 基粉末混合,并用基于水的粘结剂通过 3DP 技术打印所得的复合粉末。应用水基粘结剂确保了在可靠且可重复的基础上制造 CaP:CaSO4 构建体,而不会对打印头造成长期损坏。通过研究关键的 3DP 工艺参数,即过程中的粉末床填充、液滴渗透行为和打印固体结构的质量,定量评估了 CaP:CaSO4 粉末的可打印性。考虑了粒径、CaP:CaSO4 比和 CaP 粉末类型对 3DP 工艺的影响。使用液滴渗透技术可靠地识别了可能用于使用 3DP 技术制造组织工程骨支架的粉末配方。与 CaP(<20 μm):CaSO4 粉末相比,CaP(30-110 μm):CaSO4 粉末的 3DP 工艺参数有显著改善(p<0.05)。具有较高 CaP:CaSO4 比的粉末获得了更高的抗压强度。与β-磷酸三钙 (β-TCP):CaSO4 粉末相比,羟基磷灰石 (HA):CaSO4 粉末显示出更好的结果。使用优化的 CaP:CaSO4 粉末配方通过 3DP 技术制造了实心和多孔结构。制造了高质量的打印结构,其具有适当的绿色抗压强度和高水平的打印精度。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验