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Indirect Additive Manufacturing Processing of Poly-Lactide-co-Glycolide

机译:聚丙交酯 - 共乙酰基的间接添加剂制造加工

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The research and development of biomaterials have brought about new treatments in regenerative medicine. The research work presented in this paper focus on the use of Poly-Lactide-co-glycolide (PLGA) in the fabrication of patient specific fracture fixation plate by indirect additive manufacturing method. The use of biopolymers such as PLGA has been seen as a solution to the problems of stress shield and post-surgery inherent in biometal fixation plates. This paper discusses the consequence of this processing method on characteristics and properties of the PLGA. PLGA of ratio 50:50, 65:35 and 85:15 was processed and compared. The granules of PLGA were positioned in the cavity of the stereolithography (SLA) mould and heated under constant pressure with sintering temperature of 73°C for 2.0 hours. Both the variation in samples fabricated from this process with the designed model and the changes in material characteristics are below 10%. The flexural strength for PLGA of ratio 50:50, 65:35 and 85:15 is 73.8±2.3MPa, 75.0±2.8, 60.0±11.7, respectively. The characteristics and mechanical tests indicate that the results were comparable with conventional processing of PLGA.
机译:生物材料的研究和开发带来了在再生医学新疗法。通过间接添加剂的制造方法,在本文中专注于患者特定骨折固定板的制造中使用聚交酯 - 共 - 乙交酯(PLGA)中提出的研究工作。使用生物聚合物如PLGA的已经被看作是解决应力屏蔽和手术后在biometal固定板固有的问题。本文讨论在特性和PLGA的属性该处理方法的结果。比50:50,65:35和85:15的PLGA被处理和比较。 PLGA的颗粒放置在立体光刻(SLA)模具的模腔和与烧结的73℃的温度下2.0小时在恒定压力下加热。无论是在样品的变化从该工艺制造与设计的模型和材料特性的变化是10%以下。为比50:50,65:35和85:15的PLGA的抗弯强度为73.8±2.3MPa,75.0±2.8,60.0±11.7,分别。特性和机械试验表明,该结果与PLGA的传统处理相媲美。

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