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首页> 外文期刊>Medical engineering & physics. >Analysis and estimation of cutting-temperature distribution during end milling in relation to orthopedic surgery.
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Analysis and estimation of cutting-temperature distribution during end milling in relation to orthopedic surgery.

机译:与整形外科有关的立铣刀中切削温度分布的分析和估计。

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Living bone must be cut before performing arthroplasty. For example, the distal part of the femur and the proximal part of the tibia must be cut to perform total knee arthroplasty. Osteocytes begin to necrose when the cutting temperature during such procedures exceeds 50 degrees C. In this study, the temperature distribution inside bone was calculated theoretically using a linear heat source moving on a semi-infinite plane. Moreover, the temperature distribution on the surface layer of the cutting edge was measured using thermography. Analytical and experimental results showed that the cutting temperature could be estimated for the cortical bone and that the cutting temperature increased suddenly near the surface of bone. Consequently, the cutting temperature of bone tissue within 0.15 mm of the surface layer may be above 35 degrees C if the cutting environment is not cooled, and consequently, the bone surface is heated to more than 55 degrees C.
机译:在进行关节置换术之前,必须切断活骨。例如,必须切割股骨的远端部分和胫骨的近端部分以进行全膝关节置换术。当切割过程中的切割温度超过50摄氏度时,成骨细胞开始坏死。在这项研究中,理论上是使用线性热源在半无限平面上移动来计算骨骼内部的温度分布。此外,使用热成像法测量切削刃的表面层上的温度分布。分析和实验结果表明,可以估计皮质骨的切割温度,并且切割温度在骨表面附近突然升高。因此,如果未冷却切割环境,则在表层的0.15毫米内的骨组织的切割温度可能会高于35摄氏度,因此,将骨骼表面加热到超过55摄氏度。

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