考虑冲洗液机器人骨铣削温度建模及敏感性分析
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TH811 TH781

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国家自然科学基金(62173190)、天津市科技计划(21JCYBJC00280)项目资助


Temperature modeling and sensitivity analysis of robot-assisted bone milling considering irrigation fluid
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    摘要:

    在机器人辅助骨铣削手术中,大量热量的产生容易导致热坏死,通常通过使用冲洗液来降低铣削温度。 然而,传统的骨 铣削温度研究并未考虑冲洗液的影响。 为此,建立了一个综合考虑冲洗液作用的骨铣削温度模型。 首先,基于有限元法,构建 了球头铣刀铣削皮质骨的温度场模型。 然后,通过点热源温度场理论,标定了不同流速下冲洗液的对流换热系数。 结果表明, 当冲洗液流速分别为 31. 6、43. 3 和 65 μm 3 / s 时,对流换热系数分别为 400、800 和 1 100 W/ (m 2·℃ )。 最后,采用响应面法分析 了各铣削参数对最高铣削温度的影响。 分析结果表明,铣削深度对最高温度的影响最大,其次是冲洗液流速、进给速度和铣削 角度。 该温度模型及分析结果为术前铣削参数选择提供了有价值的参考,有助于减少骨铣削过程中的热坏死风险。

    Abstract:

    In robot-assisted bone milling surgery, the generation of a large amount of heat can easily lead to thermal necrosis. The irrigation fluid is commonly used to reduce the milling temperature. However, traditional research on bone milling temperature does not consider the influence of irrigation fluid. To address this, this study proposes a bone milling temperature model that comprehensively considers the effect of irrigation fluid. First, based on the finite element method, a temperature field model of cortical bone milling with a ball-end milling cutter is formulated. Then, the convective heat transfer coefficient of the irrigation fluid at different flow rates is calibrated using the point heat source temperature field theory. The results indicate that, at flow rates of 31. 6, 43. 3 and 65 μm 3 / s, the convective heat transfer coefficients are 400, 800 and 1 100 W/ ( m 2·℃ ), respectively. Finally, response surface methodology is utilized to analyze the effects of various milling parameters on the maximum milling temperature. The analysis shows that milling depth has the most significant impact on the maximum temperature, followed by irrigation fluid flow rate, feed speed, and milling angle. This temperature model and the accompanying analysis provide valuable references for selecting preoperative milling parameters and help reduce the risk of thermal necrosis during bone milling. Keywords:bone milling temperature; finite element meth

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柯玮翔.考虑冲洗液机器人骨铣削温度建模及敏感性分析[J].仪器仪表学报,2024,45(11):300-311

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  • 在线发布日期: 2025-01-26
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