Based on the application of the four-oil-pad radial hydrostatic bearing in heavy equipments, the deformation of the four-oil-pad radial hydrostatic bearing was calculated by using the finite element method. The formul...Based on the application of the four-oil-pad radial hydrostatic bearing in heavy equipments, the deformation of the four-oil-pad radial hydrostatic bearing was calculated by using the finite element method. The formula of film stiffness, film thickness and carrying capacity were established; the influence of the main parameters, such as load, load area and deformation on the supportability was analyzed; and the capacity of the two kinds of bearings was compared. The result shows that the carrying capacity of typeⅠ is prior to that of type Ⅱ . Calculations provide a theoretical basis for the bearing choosing and structure designing in the actual project.展开更多
弹性环式挤压油膜阻尼器(ERSFD)与传统挤压油膜阻尼器(SFD)相比,在动力特性方面具有一定的特色.以燃气涡轮发动机用ERSFD为对象,基于有限元挤压油膜理论对ERSFD的弹性环支承刚度、油膜压力场分布和油膜阻尼等特性进行了研究.根据ERSFD...弹性环式挤压油膜阻尼器(ERSFD)与传统挤压油膜阻尼器(SFD)相比,在动力特性方面具有一定的特色.以燃气涡轮发动机用ERSFD为对象,基于有限元挤压油膜理论对ERSFD的弹性环支承刚度、油膜压力场分布和油膜阻尼等特性进行了研究.根据ERSFD的结构特点,利用有限元法分析其动力特性不仅具有模型简单、计算量小的优点,而且能考虑到各种复杂的边界条件及封严装置.研究结果表明,本计算方法和结果可以作为ERSFD结构优化的依据.与SFD(Squeeze Film Damper)相比,ERSFD具有分段式油膜间隙,可利用弹性环的弹性变形来调整油膜间隙,将油膜间隙控制在一个合适的范围内,从而有效地避免传统SFD在一定工作条件下的非线性振动现象的发生.展开更多
基金Project(zjg0702-01) supported by the Key Program of Natural Science Foundation of Heilongjiang Province, ChinaProject(20050214001) supported by the Doctoral Fund of Ministry of Education of China+1 种基金Project(11531051) supported by the Science and Technology Foundation of Heilongjiang Provincial Education Department, ChinaProject(QC08c88) supported by Heilongjiang Province Foundation for Youths, China.
文摘Based on the application of the four-oil-pad radial hydrostatic bearing in heavy equipments, the deformation of the four-oil-pad radial hydrostatic bearing was calculated by using the finite element method. The formula of film stiffness, film thickness and carrying capacity were established; the influence of the main parameters, such as load, load area and deformation on the supportability was analyzed; and the capacity of the two kinds of bearings was compared. The result shows that the carrying capacity of typeⅠ is prior to that of type Ⅱ . Calculations provide a theoretical basis for the bearing choosing and structure designing in the actual project.
文摘弹性环式挤压油膜阻尼器(ERSFD)与传统挤压油膜阻尼器(SFD)相比,在动力特性方面具有一定的特色.以燃气涡轮发动机用ERSFD为对象,基于有限元挤压油膜理论对ERSFD的弹性环支承刚度、油膜压力场分布和油膜阻尼等特性进行了研究.根据ERSFD的结构特点,利用有限元法分析其动力特性不仅具有模型简单、计算量小的优点,而且能考虑到各种复杂的边界条件及封严装置.研究结果表明,本计算方法和结果可以作为ERSFD结构优化的依据.与SFD(Squeeze Film Damper)相比,ERSFD具有分段式油膜间隙,可利用弹性环的弹性变形来调整油膜间隙,将油膜间隙控制在一个合适的范围内,从而有效地避免传统SFD在一定工作条件下的非线性振动现象的发生.