湖南科技大学 机构 机电工程学院,湖南,湘潭,411201
Published:2025
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唐勉志, 唐皓. Full-stroke Positioning Accuracy Prediction and Compensation of Ball-screw Pair Precision Motion Platform[J]. Mechanical Science and Technology for Aerospace Engineering, 2025, 44(7): 1188-1199.
DOI:
唐勉志, 唐皓. Full-stroke Positioning Accuracy Prediction and Compensation of Ball-screw Pair Precision Motion Platform[J]. Mechanical Science and Technology for Aerospace Engineering, 2025, 44(7): 1188-1199. DOI: 10.13433/j.cnki.1003-8728.20230248.
定位精度是衡量精密运动平台运动准确度的关键指标。该文通过分析高精度精密运动平台滚珠丝杠副的误差源,揭示定位精度传递规律,提出了一种以滚珠丝杠副为主要研究对象,覆盖宏(10 mm)、小(1 mm)、微(0.1 mm)行程尺度下的精密运动平台全行程定位误差预测及补偿方法。首先,分析精密运动平台滚珠丝杠副的机械结构特点,提炼误差源信息。其次,分别分析滚珠丝杠副安装误差、装配误差和导程误差的形成特点,解耦各误差项信息,建立以滚珠丝杠副为对象的精密运动平台综合定位误差模型。最后,基于滚珠丝杠副-定位误差模型,分析宏、小、微行程下精密运动平台定位误差成因机理,揭示不同行程下滚珠丝杠副误差参数与精密运动平台定位误差的映射规律,形成全行程定位精度预测与补偿方法。实验结果表明,根据该误差模型,分别对20、2、0.2 mm行程下精密运动平台定位误差进行补偿,结果分别从13.7、7.9、4.6 μm下降到2.0、1.5、1.0 μm以下,精度有明显的提升。
Positioning accuracy is a key index to measure the motion accuracy of precision moving platform. In this paper
by analyzing the error sources of the ball-screw pair of high precision moving platform
revealing the law of positioning accuracy transmission
establishing the error model of the lead error
and taking a kind of ball screw pair as the main research object
this paper proposed the prediction and compensation method of full-stroke positioning error of precision moving platform under macro (10 mm)
small (1 mm) and micro(0.1 mm) stroke scales. Firstly
the mechanical characteristics of the ball screw pair of precision movement platform were analyzed
and the error source information was extracted. Secondly
the formation characteristics of the ball screw installation error
assembly error and lead error were analyzed respectively. Meanwhile
the information of each error item was decoupled
the comprehensive positioning error model of the precision movement platform was established with the ball screw pair as the object. Finally
based on the ball screw pair positioning error model
the mechanism of positioning error of precision motion platform under macro
small and micro strokes was analyzed
and the mapping law of ball screw pair error parameters and positioning error of precision motion platform under different strokes was revealed. Thus
the full-stroke positioning accuracy prediction and compensation method was proposed. The experimental results show that
according to the error model
positioning errors of 20 mm
2 mm and 0.2 mm stroke precision motion platform were compensated respectively. The results decreased from 13.7 μm
7.9 μm and 4.6 μm to 2.0 μm
1.5 μm and 1.0 μm respectively
which shows the positioning accuracy was improved obviously.
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