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Effects of Drilling Parameters in Numerical Simulation to the Bone Temperature Elevation

机译:钻探参数在数值模拟中对骨温高度​​的影响

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Drilling into the bone can produce significant amount of heat which can cause bone necrosis. Understanding the drilling parameters influence to the heat generation is necessary to prevent thermal necrosis to the bone. The aim of this study is to investigate the influence of drilling parameters on bone temperature elevation. Drilling simulations of various combinations of drill bit diameter, rotational speed and feed rate were performed using finite element software DEFORM-3D. Full-factorial design of experiments (DOE) and two way analysis of variance (ANOVA) were utilised to examine the effect of drilling parameters and their interaction influence on the bone temperature. The maximum bone temperature elevation of 58% was demonstrated within the range in this study. Feed rate was found to be the main parameter to influence the bone temperature elevation during the drilling process followed by drill diameter and rotational speed. The interaction between drill bit diameter and feed rate was found to be significantly influence the bone temperature. It is discovered that the use of low rotational speed, small drill bit diameter and high feed rate are able to minimize the elevation of bone temperature for safer surgical operations.
机译:钻入骨骼可以产生大量的热量,这会导致骨坏死。理解钻井参数对发热的影响是必要的,以防止热坏死对骨进行热坏死。本研究的目的是探讨钻井参数对骨温升高的影响。使用有限元软件Deform-3D进行钻头直径,转速和进料速率的各种组合的钻探模拟。利用实验(DOE)的全因子设计和两种方差分析(ANOVA)来检查钻孔参数及其相互作用对骨温度的影响。在本研究的范围内证明了58%的最大骨温升高。发现进料速率是影响钻井过程中骨温升高的主要参数,然后钻孔直径和转速。发现钻头直径和进料速率之间的相互作用显着影响骨温。发现使用低转速,小钻头直径和高进料速率的使用能够最小化骨温度的升高,以使手术操作更加安全。

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