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SURFACE FINISH AND TOOL WEAR CHARACTERIZATION IN HARD TURNING USING A MATHEMATICAL CUTTING TOOL REPRESENTATION

机译:使用切削刀具的数学表示法在硬车削中进行表面精加工和刀具磨损的表征

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The development of a general 3D model for a corner-radiused, chamfered, edge-honed cutting worn tool is elaborated. The surface of the cutting tool was constructed using one angular scalar specifying location on the corner radius and leading/trailing edges and another non-dimensional scalar for specifying location on the relief, edge-hone, chamfer and tool-top. Then, for given geometric parameters and cutting conditions, the angular extremities of contact on the corner radius and leading/trailing edges was obtained and validated. The kinematic surface finish on the workpiece surface including the Brammertz and sideflow effects was then simulated in typical hard turning. The model was expanded to allow wiper edges and flank wear. A simplified crater wear model was adopted for continuous hard turning to allow virtual cross-sectioning. Accurate estimation of flank and crater wear volume was also enabled. The model results for the fresh tool agreed with well-known trends from 2D modeling. Preliminary results indicate that there exists a geometric basis for higher Ra and Rt for a worn tool. The Brammertz effect simulation, though not in agreement with the data of Knuefermann (200310. Knuefermann , M.M.W. ( 2003 ) Machining surfaces of optical quality by hard turning, School of Applied Sciences, Cranfield University, Cranfield, Bedfordshire, UK .View all references) corroborated the modification proposed therein.View full textDownload full textKeywordsedge hone, kinematic, hard turning, surface finish, tool wearRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/10910344.2011.620916
机译:详细说明了用于角半径,倒角,边缘磨边的切削磨损工具的通用3D模型的开发。切削工具的表面是使用一个角标量指定位置在拐角半径和前/后缘上的位置,以及另一个无量纲标量来指定浮雕,刃口,倒角和工具顶部上的位置的。然后,对于给定的几何参数和切削条件,获得并验证了拐角半径和前缘/后缘的接触角。然后在典型的硬车削中模拟工件表面的运动表面光洁度,包括Brammertz和侧流效应。扩展了模型,以允许刮水器边缘和侧面磨损。采用简化的月牙洼磨损模型进行连续硬车削,以实现虚拟横截面。还可以准确估算侧面和坑的磨损量。新鲜工具的模型结果与2D建模的著名趋势相吻合。初步结果表明,存在磨损的刀具较高的R a 和R t 的几何基础。 Brammertz效应模拟,尽管与Knuefermann(200310. Knuefermann,MMW(2003)的数据不一致),通过硬车削加工光学质量的表面,英国克兰菲尔德大学克兰菲尔德大学应用科学学院,英国贝德福德郡。查看全文下载全文下载关键字楔形磨刀石,运动学,硬车削,表面光洁度,工具磨损,facebook,stumbleupon,digg,google,更多”,发布号:“ ra-4dff56cd6bb1830b”};添加到候选列表链接永久链接http://dx.doi.org/10.1080/10910344.2011.620916

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