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Effect of forming conditions of poly-lactic acid/hydroxyapatite to tensile strength of canine bone fixation plate using full factorial experimental design

机译:全因子实验设计聚乳酸/羟基磷灰石形成条件对犬骨固定板抗张强度的影响

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摘要

Problems of using metallic bone fixation plates for canine lead to the idea of the replacement with biocomposite materials. In this research, polylactic acid (PLA) blends with hydroxyapatite (HA) powder 5-15% was used as biocomposite material. The specimens were formed by hot compression molding and the experiment in investigating suitable forming condition was based on the 23 full factorials with the center point design of experiment. There are many types of research attempting to develop a prototype of bone fixation plates from a substitute material including forming conditions, in order to obtain the effective bone fixation plate to use. This paper presents the tensile strength for the proposed biocomposite bone fixation plates. After the mechanical testing on various conditions, the tensile strength results ranged from 40 to 60 MPa and it showed that the higher HA ratio had significant effect to the decrease of the tensile strength. This preliminary experiment reveals the tensile strength of forming conditions of PLA/HA composite, which may indicate a direction for improving the better mechanical properties of the bone fixation plates.
机译:将金属骨固定板用于犬的问题导致了用生物复合材料替代的想法。在这项研究中,聚乳酸(PLA)与5-15%羟基磷灰石(HA)粉末的混合物被用作生物复合材料。样品通过热压成型成型,以23个全因子为基础,以实验的中心点设计为基础,研究合适的成型条件。为了获得有效的骨固定板,有许多类型的研究试图从包括成形条件在内的替代材料中开发出骨固定板的原型。本文介绍了拟议的生物复合材料骨固定板的拉伸强度。在各种条件下进行机械测试后,拉伸强度结果为40至60 MPa,这表明较高的HA比对降低拉伸强度具有显着影响。该初步实验揭示了PLA / HA复合材料形成条件的拉伸强度,这可能表明改善骨固定板更好的机械性能的方向。

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