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Research on control method for machining non-cylinder pin hole of piston

机译:活塞非气缸销孔加工控制方法的研究

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摘要

The control method for machining non-cylinder pin hole of piston was studied systematically. A new method was presented by embedding giant magnetostrictive material (GMM) into the tool bar proper position. The model is established to characterize the relation between control current of coil and deformation of tool rod. A series of tests on deformation of giant magnetostrictive tool bar were done and the results validated the feasibility of the principle. The methods of measuring magnetostrictive coefficient of rare earth GMM were analyzed. The measuring device with the bias field and prestress was designed. A series of experiments were done to test magnetostrictive coefficient. Experimental results supplied accurate characteristic parameter for designing application device of GMM. The constitution of the developed control system made up of displacement detection and temperature detection for thermal deformation compensation was also introduced. The developed machine tool for boring the non-cylinder pin hole of piston has the micron order accuracy. This control method can be applied to other areas for machining precision or complex parts.
机译:系统研究了活塞非气缸销孔的加工控制方法。通过将巨大的磁致伸缩材料(GMM)嵌入工具栏的适当位置,提出了一种新方法。建立该模型以表征线圈控制电流与工具杆变形之间的关系。对巨磁致伸缩工具棒的变形进行了一系列测试,结果验证了该原理的可行性。分析了稀土GMM的磁致伸缩系数的测量方法。设计了具有偏磁场和预应力的测量装置。进行了一系列实验以测试磁致伸缩系数。实验结果为GMM应用装置的设计提供了准确的特性参数。还介绍了由位移检测和温度检测组成的,用于热变形补偿的已开发控制系统的构成。用于钻削活塞非气缸销孔的机床具有微米级的精度。该控制方法可以应用于加工精密或复杂零件的其他区域。

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