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CAD-based simulations and design of experiments for determining thrust force in drilling operations

机译:用于确定钻井作业推力的基于CAD的模拟和实验设计

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摘要

Drilling thrust force calculations require a large amount of experimental work, which can be greatly reduced, since an extensively validated CAD-based approach, using the DRILL3D software application, has become available. DRILL3D calculates the thrust force of both the cutting areas of the tool (main edges and chisel edge) simultaneously, which means that every simulation can substitute two separate lab experiments. Nevertheless, as the number of parameters involved is increasing, the amount of the necessary simulations becomes substantial. This is the reason that led to the combined use of the DRILL3D and the design of experiments methodology, which reduces the amount of the necessary digital experiments to an impressive degree. The main factors affecting the current analysis are the tool diameter, the web to diameter ratio, the feed rate and the cutting speed used. Using an L16 Taguchi table, a function of the developed thrust force can be calculated using the response surface methodology. This statistical modeling tool employs the regression analysis to establish the relationship between various process parameters and response.
机译:钻进推力的计算需要大量的实验工作,这已经可以大大减少,因为已经有了使用DRILL3D软件应用程序的经过广泛验证的基于CAD的方法。 DRILL3D可同时计算工具两个切削区域(主刃和凿刃)的推力,这意味着每次模拟都可以替代两个单独的实验室实验。然而,随着所涉及的参数数量的增加,必要的仿真量变得很大。这就是导致将DRILL3D与实验方法设计结合使用的原因,该方法将必要的数字实验数量大大减少。影响当前分析的主要因素是刀具直径,腹板直径比,进给速度和使用的切割速度。使用L16 Taguchi工作台,可以使用响应面方法来计算所产生推力的函数。该统计建模工具使用回归分析来建立各种过程参数与响应之间的关系。

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