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Study on the Optimization of Process Parameters for Absorbable Bone Plate with In-Mold Heat Treatment

机译:模内热处理可吸收骨板工艺参数的优化研究

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Titanium alloy & stainless steel are major materials for bone fracture fixation such as bone screws and plates in today's medical devices. However, the fixation devices made of metal not only have the risk of metal ion release to cause human allergies, but they also need to be removed by a second surgical operation making pain and the risk of the patient's wound infection after the bone fracture healing. The biodegradable Polylactic Acid (PLA) bone screws & bone plates have the great advantage of not needing a second operation, but their insufficient strengths make them not be widely used in the current bone fracture fixation. In the study, we use PLA as the matrix and in-mod heat treatment with induction coils to increase the strength of bone screw & plate by improving crystallinity of material. Regarding ASTM F2502 "Standard Specification and Test Methods for Absorbable Plates and Screws for Internal Fixation Implants", we measure bending loads of test pieces before and after in-mold heat treatment, and obtain the optimized process parameters by Taguchi method that will increase the bend load of PLA bone plates by 34.82%. These optimal parameters are the injection speed of 80 mm/s, the melt temperature of 205 °C, the heat treatment temperature of 110 °C and heat treatment time of 20 min.
机译:钛合金和不锈钢是用于固定骨折的主要材料,例如当今医疗设备中的接骨螺钉和板。然而,由金属制成的固定装置不仅具有释放金属离子而引起人过敏的风险,而且还需要通过第二次外科手术将其移除,从而造成疼痛并在骨折愈合后具有患者伤口感染的风险。可生物降解的聚乳酸(PLA)骨螺钉和骨板具有不需要第二次手术的巨大优势,但是它们的强度不足使其无法在当前的骨折固定中广泛使用。在研究中,我们使用PLA作为基质,并使用感应线圈进行模内热处理,以通过改善材料的结晶度来提高接骨板的强度。关于ASTM F2502“内固定植入物的可吸收板和螺钉的标准规范和测试方法”,我们在模内热处理之前和之后测量试件的弯曲载荷,并通过Taguchi方法获得优化的工艺参数,以增加弯曲度PLA骨板的载荷降低了34.82%。这些最佳参数是注射速度为80 mm / s,熔体温度为205°C,热处理温度为110°C和热处理时间为20分钟。

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