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Strength–Durability Correlation of Osteosynthesis Devices Made by 3D Layer Manufacturing

机译:3D层制造业骨合成装置的强度耐久性相关性

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摘要

To develop orthopedic implants that are optimized for each patient’s needs or skeletal structure (custom-made implants), evaluations of the bending strength, bending stiffness, and durability of various types of conventional osteosynthesis devices have become important. Four-point bending tests and compression bending tests of osteosynthesis devices (bone plates, intramedullary nail rods, spinal rods, compression hip screws (CHSs), short femoral nails, and metaphyseal plates) were carried out to measure their bending stiffness, bending strength, and durability. The bending stiffness of bone plates, intramedullary nails, spinal rods, CHSs, short femoral nails, and metaphyseal plates increased with increasing bending strength. The durability limit of various types of osteosynthesis devices linearly increased with increasing bending strength. The relationship (durability limit at 106 cycles) = 0.67 × (bending strength) (N·m) (R2 = 0.85) was obtained by regression. The relationship for the highly biocompatible Ti-15Zr-4Nb-4Ta alloy was also linear. The mechanical strength and ductility of specimens that were cut from various osteosynthesis devices were excellent and their microstructures consisted of fine structures, which were considered to be related to the excellent durability. These results are expected to be useful for the development of implants suitable for the skeletal structure of patients using three-dimensional (3D) layer manufacturing technologies.
机译:为了开发针对每种患者的需求或骨骼结构(定制植入物)优化的整形外科植入物,各种类型的常规骨合成装置的弯曲强度,弯曲刚度和耐久性的评价变得重要。进行四点弯曲试验和骨质合成装置的压缩弯曲试验(骨板,髓内钉杆,脊柱杆,压缩髋螺钉(CHS),短股骨指甲和变形板)以测量其弯曲刚度,弯曲强度,和耐用性。骨板的弯曲刚度,髓内钉,脊柱,脊柱,短股指甲和变形板随着弯曲强度的增加而增加。随着弯曲强度的增加,各种类型的骨合成装置的耐久极限线性地增加。通过回归获得关系(106个循环处的耐久极限)= 0.67×(弯曲强度)(N·m)(R2 = 0.85)。高度生物相容性Ti-15ZR-4NB-4TA合金的关系也是线性的。从各种骨性合成装置中切割的样品的机械强度和延展性优异,它们的微观结构由细结构组成,其被认为与优异的耐久性有关。预计这些结果将用于开发适用于使用三维(3D)层制造技术的患者骨骼结构的植入物。

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