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Development and evaluation of the machining performance of a CNC gantry double motion machine tool in different modes

机译:不同模式中CNC龙门双运动机床加工性能的开发与评价

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摘要

Conventional methods of building CNC machine tools involve using linear motors and ball screw drives to obtain table motion. The double opposite sync motion design is an improvement over traditional CNC machines. In this work, an enhanced CNC gantry machine design is proposed, which exhibits a double motion mechanism. The new design is based on a rack and pinion system such that both the gantry tool and worktable are movable. The gantry's natural frequency was designed at 202 Hz in the first vibration mode, enabling it to work at higher speeds of up to 11,530 rpm, which makes the gantry suitable for both rough cutting and fine finishing. A prototype of the multi-mode motion CNC gantry milling machine was developed to investigate the machining performance and efficiency of the double opposite sync system. Performance analysis was done using ball bar precision tests on the different modes of CNC gantry operation. Validation tests were carried out to determine the effects of the motion of the machine parts on the dimensional accuracy and surface finish of the machined parts. The results indicated that the straightness of the developed machine was reduced from 176.3 to 114.6 mu m, which occurred due to the reduced total distance travelled by the tool and worktable. Moreover, the circularity increased from 338.7 to 667.0 mu m. This increase could be attributed to the combination of errors arising from both the gantry and table.
机译:建筑数控机床的常规方法涉及使用线性电动机和滚珠丝杠驱动器来获得表运动。双相同步运动设计是对传统CNC机器的改进。在这项工作中,提出了一种增强的CNC龙门机设计,其呈现了双运动机构。新设计基于机架和小齿轮系统,使得龙门工具和工作台都是可移动的。龙门的固有频率在第一振动模式下以202 Hz设计,使其能够以高达11,530转/分钟的更高速度工作,使得龙门架适合于粗糙切割和精细的精加工。开发了多模式运动CNC龙门铣床的原型,用于研究双相同步系统的加工性能和效率。使用滚珠棒精度测试完成性能分析,用于CNC龙门架操作的不同模式。进行了验证测试,以确定机器部件运动的影响对机加工部件的尺寸精度和表面光洁度。结果表明,发达机的直线度从176.3降至114.6μm,这发生由于工具和工作台的总距离减少。此外,圆形度从338.7增加到667.0μm。这种增加可能归因于龙门和表中产生的误差的组合。

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