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Dimension Measurement and Quality Control during the Finishing Process of Large-Size and High-Precision Components

机译:大尺寸和高精度零件精加工过程中的尺寸测量和质量控制

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摘要

The accurate measurement and control of the geometric dimensions and shape errors of large-size and high-precision key components are key factor to ensure the machining quality of the equipment package. Aiming to address the urgent problems of poor measurement conditions, complicated error propagation, and difficulty in obtaining accurate measurement results, this research studied the measurement method and control of dimensional accuracy and geometric tolerance in the process of hole machining at room temperature, taking Metso MP 1250 cone level 6 precision point pair workpiece as the object. Through linear analysis and demonstration of quality problems in the existing processing technology, the influence of the expansion coefficient of the workpiece material, measurement error and other factors is analyzed. After correcting the temperature error model, many measurements were carried out in machining experiments, and the normal ability was analyzed by Minitab software. The experimental results showed that the workpiece temperature rises by 1 degrees C, the workpiece will be deformed by 8.503 um. In the measurement process of high-precision and large-size components, the correction accuracy of the temperature error is affected by the combined influence of the model error, the material expansion coefficient error, and the temperature measurement error. The results of this study are of guiding significance for the measurement of the dimension and geometric tolerance precision of large-size and high-precision castings.
机译:对大尺寸、高精度关键零部件的几何尺寸和形状误差的精确测量和控制,是保证设备包加工质量的关键因素。针对测量条件差、误差传播复杂、难以获得准确测量结果等亟待解决的问题,本研究以美卓MP 1250锥6级精密点对工件为对象,研究了室温下孔加工过程中尺寸精度和几何公差的测量方法及控制。通过对现有加工工艺中质量问题的线性分析和论证,分析了工件材料膨胀系数、测量误差等因素的影响。在修正温度误差模型后,在机械加工实验中进行了多次测量,并通过Minitab软件分析了法向能力。实验结果表明,工件温度每升高1°C,工件将变形8.503um。在高精度、大尺寸部件的测量过程中,温度误差的修正精度受模型误差、材料膨胀系数误差、测温误差的综合影响。研究结果对大尺寸高精度铸件尺寸和几何公差精度的测量具有指导意义。

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