在粘合剂喷射增材制造中通过柠檬酸后处理提高羟基磷灰石骨植入物的机械性能。

Zhijie Huang, Jiangtao Li, Bing He, Bing Lu, Yang Li, Rui Zhang, Jingxiang Lu, Zemin Wang, Xiangyou Li
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摘要

粘合剂喷射是一种前景广阔的骨植入物增材制造技术,尤其适用于打印易受热残余应力影响的脆性生物陶瓷。然而,该领域面临的挑战包括烧结后处理导致的低强度和不理想的尺寸变化,以及缺乏必要的有机物,如氨基乙酸胶、柠檬酸等。为了解决这些问题,我们引入了一种新方法,即使用柠檬酸(CA)作为后处理剂来增强绿色样品的机械性能并添加有机物质,同时使用硼酸(BA)作为对照。制备了羟基磷灰石(HA)粉末与 25 wt.% 的高粘度聚乙烯醇(PVA)混合,并使用自制打印机以去离子水为粘合剂进行打印。从机械性能和微观结构方面分析了后处理效果。5 wt.% CA 溶液的应用使 HA 颗粒间的 PVA 膜厚度增加了 320.0%,导致抗压强度(7.37 ± 0.28 MPa)和模量(102.81 ± 6.74 MPa)分别增加了 840.7% 和 1571.3%,达到了人体小梁骨的力学标准。这项工作提出了一种简单、快速的室温后处理策略,用于提高通过粘合剂喷射增材制造技术生产的骨植入物的机械性能。
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Enhancing mechanical performance of hydroxyapatite-based bone implants via citric acid post-processing in binder jetting additive manufacturing.

Binder jetting is a promising technology in the additive manufacturing of bone implants, particularly for printing brittle bioceramics that are susceptible to thermal residual stresses. However, challenges in this field include low strength and undesirable size changes due to post-sintering treatments, as well as the absence of necessary organic matter like Glycosaminoglycans, citric acid, etc. To address these issues, a novel approach was introduced using citric acid (CA) as a post-processing agent to enhance the mechanical performance of green samples and add organic matter, with boric acid (BA) as a control. A hydroxyapatite (HA) based powder mixed with 25 wt.% high-viscosity polyvinyl alcohol (PVA) was prepared and printed using a self-made printer with deionized water as the binder. The post-processing effects were analyzed in terms of mechanical properties and microstructure. The application of 5 wt.% CA solution increased the thickness of the PVA film between HA particles by 320.0%, leading to an increase in compressive strength (7.37 ± 0.28 MPa) and modulus (102.81 ± 6.74 MPa) by 840.7% and 1571.3%, respectively, achieving the mechanical standards for human trabecular bone. This work presents a simple and rapid room-temperature post-processing strategy for enhancing the mechanical properties of bone implants produced by binder jetting additive manufacturing.

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