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The quality control method for remanufacturing assembly based on the Jacobian-torsor model

机译:基于雅可比-托尔模型的再制造装配质量控制方法

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摘要

To improve the assembly accuracy of remanufactured parts with multiple heterogeneity and properties, and to guarantee the quality of remanufacturing product no worse than the original one, this paper takes the air tightness of remanufactured engines' cylinder block and head as the research target and proposes a quality control method based on the Jacobian-torsor model for remanufacturing assembly. First of all, three different Jacobian-torsor models for assembly tolerance are structured, and according to that, the defined torsor difference (a dagger FR) of remanufacturing products is calculated by considering the geometric error of remanufactured related parts assembly influenced by the temperature field and force field. Then, the optimal tightening torque of cylinder heads' main bolts corresponding to a dagger FR is achieved by applying the bivariate Lagrange interpolation method. Finally, taking the assembly of remanufactured engines' cylinder block and head as a case study to verify the proposed methods is feasible and effective.
机译:为了提高具有多种异质性和特性的再制造零件的组装精度,并确保再制造产品的质量不低于原始零件,本文以再制造发动机的气缸体和缸盖的气密性为研究目标,并提出了一种解决方案。基于雅可比-托尔模型的再制造装配质量控制方法。首先,构建了三种不同的装配公差雅可比-托尔模型,并据此,考虑了受温度影响的再制造相关零件组装的几何误差,计算出再制造产品的定义差(dagger FR)和力场。然后,通过应用二元拉格朗日插值法来获得对应于匕首FR的气缸盖主螺栓的最佳拧紧扭矩。最后,以再制造发动机缸体和缸盖的组装为例,验证了所提方法的可行性和有效性。

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