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某齿轮泵壳体快速铸造工艺的研究及应用
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作者 冯超 唐桢 茄菊红 《铸造》 CAS 2024年第3期403-406,共4页
新研产品的生产周期及生产成本一直是传统铸造方法的弱点。为保证新研产品铸件的一次试制合格,简化了毛坯外形,设计铸造工艺方案,铸件内腔采用3D打印砂芯成形,铸件浇注后外形由机加工成形。简化后的模具加工总共用时15天,同步3D打印砂芯... 新研产品的生产周期及生产成本一直是传统铸造方法的弱点。为保证新研产品铸件的一次试制合格,简化了毛坯外形,设计铸造工艺方案,铸件内腔采用3D打印砂芯成形,铸件浇注后外形由机加工成形。简化后的模具加工总共用时15天,同步3D打印砂芯,每项铸件打印壳芯约一周时间。若壳体外部结构更改,本套模具还可继续生产铸件,若内腔油路更改,可用3D打印重新打印,大大降低了生产成本,为科研生产提供有力保障。 展开更多
关键词 简化外形 3D打印 砂芯 周期 生产成本
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国际规范中桩靴简化处理的合理性有限元验证 被引量:1
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作者 李宏伟 周鹏 董迎恺 《中国海洋平台》 2019年第5期82-88,共7页
现存规范对自升式钻井平台贯入阻力进行计算时,将桩靴等效为与其最大横截面面积相等的扁平圆薄板,转而对扁平薄板进行计算分析。这种方法忽略了桩靴实际外形对贯入阻力的影响,需对此简化方法的合理性进行验证。取4种不同外形的桩靴(其... 现存规范对自升式钻井平台贯入阻力进行计算时,将桩靴等效为与其最大横截面面积相等的扁平圆薄板,转而对扁平薄板进行计算分析。这种方法忽略了桩靴实际外形对贯入阻力的影响,需对此简化方法的合理性进行验证。取4种不同外形的桩靴(其最大横截面积相等),运用ABAQUS有限元分析软件对4种桩靴进行实形建模,并在不同地质条件下采用耦合欧拉拉格朗日(Coupled Eulerian Lagrangian, CEL)法对其进行插桩模拟。计算结果表明:在相同地质条件下,不同外形桩靴的贯入阻力存在差异,但差值都在10%以内,验证了规范对桩靴简化处理的合理性。 展开更多
关键词 自升式钻井平台 贯入阻力 桩靴外形简化 ABAQUS 有限元分析
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Influence of Ship Motion on Flow Field over Modified Simple Frigate Shapes 被引量:2
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作者 LI Tong WANG Yibin ZHAO Ning 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第3期520-534,共15页
When the frigate moves forward,due to the ship motion such as pitching and rolling,the flow over the flight deck becomes very complex,which may seriously threaten the taking off and landing of the ship-borne helicopte... When the frigate moves forward,due to the ship motion such as pitching and rolling,the flow over the flight deck becomes very complex,which may seriously threaten the taking off and landing of the ship-borne helicopter.The flow fields over the different modified simple frigate shape(SFS)models,consisting of the hangar and flight deck,were numerically studied by changing the ratio of hangar height and length in the static state and pitching state.For different models,the contours of velocity and pressure above the flight deck,as well as the variations of velocity components of the observation points and line in static state and pitching state were compared and analyzed.The results show that the size of recirculation zone and the location of the reattachment point have distinct differences for diverse models,and reveal the tracks of recirculation zone’s center and reattachment position in a pitching period.In addition,the velocity components at two observation positions also change periodically with the periodic motion.Furthermore,the deviations of the velocity components in static state and pitching state are relatively large,therefore,the flow fields in static state cannot be used to simulate that in pitching state correctly. 展开更多
关键词 computational fluid dynamics simple frigate shape ship airwake PITCHING recirculation zone
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