汽车离合器是汽车传动系统的重要起步元件。其传统的设计方法没有在整个产品开发过程中将性能要求、产品特性、工艺过程及过程能力有机地融合,没有考虑离合器产品参数合理的公差范围以及生命周期内尺寸的变化,因此很难满足大规模生产的...汽车离合器是汽车传动系统的重要起步元件。其传统的设计方法没有在整个产品开发过程中将性能要求、产品特性、工艺过程及过程能力有机地融合,没有考虑离合器产品参数合理的公差范围以及生命周期内尺寸的变化,因此很难满足大规模生产的离合器转矩传递能力和踏板操纵特性的要求。通过建立基于功能—产品特性—工艺及过程能力的汽车离合器IPPD(integrated product and process design,集成产品工艺设计)方法,分析离合器产品特性及工艺参数公差对转矩传递能力和踏板操纵特性的影响,提出了建立精确的传动系统动力学模型的方法,给出了转矩传递能力和踏板操纵特性与产品特性及工艺参数公差的映射关系;在满足可制造性和可装配性的设计要求下,建立了产品特性与工艺过程及参数变化的循环映射关系,采用基于过程能力的稳健公差设计方法进行工艺方案和工艺参数优化。采用所提出的离合器IPPD方法可以更好地使产品满足性能要求,从而为提高离合器设计精度和可靠性提供支撑,为开展离合器的智能设计建立基础。展开更多
In this paper, taking two degrees of freedom on the armature–flapper assembly into account, a seventh-order model is deduced and proposed for the dynamic response of a two-stage electro-hydraulic servo valve from non...In this paper, taking two degrees of freedom on the armature–flapper assembly into account, a seventh-order model is deduced and proposed for the dynamic response of a two-stage electro-hydraulic servo valve from nonlinear equations. These deductions are based on fundamental laws of electromagnetism, fluid, and general mechanics. The coefficients of the proposed seventhorder model are derived in terms of servo valve physical parameters and fluid properties explicitly.For validating the results of the proposed model, an AMESim simulation model based on physical laws and the existing low-order models validated by other researchers through experiments are used to compare with the seventh-order model. The results show that the seventh-order model can reflect the physical behavior of the servo valve more explicitly than the existing low-order models and it could provide guidance more easily for a linear control design approach and sensitivity analysis than the AMESim simulation model.展开更多
文摘汽车离合器是汽车传动系统的重要起步元件。其传统的设计方法没有在整个产品开发过程中将性能要求、产品特性、工艺过程及过程能力有机地融合,没有考虑离合器产品参数合理的公差范围以及生命周期内尺寸的变化,因此很难满足大规模生产的离合器转矩传递能力和踏板操纵特性的要求。通过建立基于功能—产品特性—工艺及过程能力的汽车离合器IPPD(integrated product and process design,集成产品工艺设计)方法,分析离合器产品特性及工艺参数公差对转矩传递能力和踏板操纵特性的影响,提出了建立精确的传动系统动力学模型的方法,给出了转矩传递能力和踏板操纵特性与产品特性及工艺参数公差的映射关系;在满足可制造性和可装配性的设计要求下,建立了产品特性与工艺过程及参数变化的循环映射关系,采用基于过程能力的稳健公差设计方法进行工艺方案和工艺参数优化。采用所提出的离合器IPPD方法可以更好地使产品满足性能要求,从而为提高离合器设计精度和可靠性提供支撑,为开展离合器的智能设计建立基础。
基金the National Natural Science Foundation of China (No. 50975055) for financial support
文摘In this paper, taking two degrees of freedom on the armature–flapper assembly into account, a seventh-order model is deduced and proposed for the dynamic response of a two-stage electro-hydraulic servo valve from nonlinear equations. These deductions are based on fundamental laws of electromagnetism, fluid, and general mechanics. The coefficients of the proposed seventhorder model are derived in terms of servo valve physical parameters and fluid properties explicitly.For validating the results of the proposed model, an AMESim simulation model based on physical laws and the existing low-order models validated by other researchers through experiments are used to compare with the seventh-order model. The results show that the seventh-order model can reflect the physical behavior of the servo valve more explicitly than the existing low-order models and it could provide guidance more easily for a linear control design approach and sensitivity analysis than the AMESim simulation model.