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Direct trajectory interpolation on the surface using an open CNC

机译:使用开放式CNC在曲面上直接轨迹插补

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摘要

Free-form surfaces are used for many industrial applications from aeronautical parts, to molds or biomedical implants. In the common machining process, computer-aided manufacturing (CAM) software generates approximated tool paths because of the limitation induced by the input tool path format of the industrial CNC. Then, during the tool path interpolation, marks on finished surfaces can appear induced by non smooth feedrate planning. Managing the geometry of the tool path, as well as the kinematical parameters of the machine tool, are two key factors for quality and productivity improvements. The aim of this paper is to present a unified method to compute the trajectory directly on the surface to be machined avoiding CAM approximations and producing a smoother trajectory. This paper proposes an interpolation of the trajectory based on the free-form surface mathematical model while considering the kinematical limitations of a high-speed milling machine (velocity, acceleration, and jerk). The amelioration of the data exchange between computer-aided design (CAD)/CAM and CNC opens new ways to optimize the manufacturing process. The direct trajectory interpolation on the surface (DTIS) method allows to obtain both a higher productivity and a better surface quality. Machining experiments carried out with an Open CNC on a 5-axis high-speed milling machine show the benefits of the proposed method compared to the classical strategies available with an industrial CNC.
机译:自由形状的表面用于从航空零件到模具或生物医学植入物的许多工业应用。在常见的加工过程中,由于工业CNC输入刀具路径格式的限制,计算机辅助制造(CAM)软件会生成近似的刀具路径。然后,在刀具路径插补过程中,由于不平滑的进给率规划而导致在精加工表面上出现标记。管理刀具路径的几何形状以及机床的运动学参数是提高质量和生产率的两个关键因素。本文的目的是提出一种统一的方法来直接在待加工表面上计算轨迹,从而避免CAM逼近并产生更平滑的轨迹。本文提出了一种基于自由曲面数学模型的轨迹插值方法,同时考虑了高速铣床的运动学限制(速度,加速度和加速度率)。改善计算机辅助设计(CAD)/ CAM和CNC之间的数据交换为优化制造过程开辟了新途径。表面直接轨迹插补(DTIS)方法可同时获得更高的生产率和更好的表面质量。与开放式CNC在5轴高速铣床上进行的机加工实验表明,与工业CNC可用的经典策略相比,该方法的优势。

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