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硬质合金表面微观纹理对牛皮质骨摩擦学性能的影响研究

Study on Effect of Surface Micro-Texture of Cemented Carbide on Tribological Properties of Bovine Cortical Bone.

作者信息

Shang Peng, Liu Bingfeng, Guo Chunhai, Cui Peijuan, Hou Zhanlin, Jin Fengbin, Zhang Jianjun, Guo Shijie, Huang Yuping, Zhang Wenwu

机构信息

State Key Laboratory for Reliability and Intelligence of Electrical Equipment, Engineering Research Center of Ministry of Education for Intelligent Rehabilitation Device and Detection Technology, Hebei Key Laboratory of Smart Sensing and Human-Robot Interaction, School of Mechanical Engineering, Hebei University of Technology, Tianjin 300401, China.

Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China.

出版信息

Micromachines (Basel). 2024 Jul 31;15(8):994. doi: 10.3390/mi15080994.

Abstract

In bone-milling surgical procedures, the intense friction between the tool and bone material often results in high cutting temperatures, leading to the thermal necrosis of bone cells. This paper aims to investigate the effect of micro-texture on the tribological properties of YG8 cemented carbide in contact with bone. The main objective is to guide the design of tool surface microstructures to reduce frictional heat generation. To minimize experimental consumables and save time, numerical simulations are first conducted to determine the optimal machining depth for the texture. Subsequently, micro-textures with different shapes and pitches are prepared on the surface of YG8 cemented carbide. These textured samples are paired with bovine cortical bone pins featuring various bone unit arrangements, and friction and wear tests are conducted under physiological saline lubrication. The experimental results indicate that the appropriate shape and pitch of the micro-texture can minimize the coefficient of friction. The parallel arrangement of bone units exhibits a lower coefficient of friction compared to the vertical arrangement. This study holds significant implications for the design and fabrication of future micro-texture milling cutters.

摘要

在骨磨削外科手术中,刀具与骨材料之间的剧烈摩擦常常导致切削温度过高,进而引发骨细胞的热坏死。本文旨在研究微织构对YG8硬质合金与骨接触时摩擦学性能的影响。主要目的是指导刀具表面微观结构的设计,以减少摩擦热的产生。为了最大限度地减少实验耗材并节省时间,首先进行数值模拟以确定织构的最佳加工深度。随后,在YG8硬质合金表面制备了不同形状和节距的微织构。将这些有织构的样品与具有不同骨单元排列的牛皮质骨销配对,并在生理盐水润滑下进行摩擦磨损试验。实验结果表明,微织构的适当形状和节距可以使摩擦系数最小化。与垂直排列相比,骨单元的平行排列表现出更低的摩擦系数。本研究对未来微织构铣刀的设计和制造具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7b8/11356473/dbd37981b7d8/micromachines-15-00994-g001.jpg

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