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双法兰圆形锻件的分模锻造
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作者 孙令强 田福祥 《电加工与模具》 2004年第1期42-43,共2页
双法兰圆形锻件采用整体凹模的方法锻造 ,锻件难以出模 ,为了锻件顺利出模 ,实现无飞边模锻 ,设计了该类锻件的轴向对分精锻模具。应用该模具进行双法兰锻件的精锻成形 ,锻件出模顺利 ,操作简单 ,锻件无飞边 ,后续加工余量小 。
关键词 法兰 分模锻造 圆形锻件 整体凹
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Finite element analysis and simulation for cold precision forging of a helical gear 被引量:13
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作者 冯玮 华林 韩星会 《Journal of Central South University》 SCIE EI CAS 2012年第12期3369-3377,共9页
To investigate the effects of billet geometry on the cold precision forging process of a helical gear, six different billet geometries were designed utilizing the relief-hole principle. And the influences of the bille... To investigate the effects of billet geometry on the cold precision forging process of a helical gear, six different billet geometries were designed utilizing the relief-hole principle. And the influences of the billet geometry on the forming load and the deformation uniformity were analyzed by three-dimensional (3D) finite element method (FEM) under the commercial software DEFORM 3D. The billet geometry was optimized to meet lower forming load and better deformation uniformity requirement. Deformation mechanism was studied through the distribution of flow velocity field and effective strain field. The forging experiments of the helical gear were successfully performed using lead material as a model material under the same process conditions used in the FE simulations. The results show that the forming load decreases as the diameter of relief-hole do increases, but the effect of do on the deformation uniformity is very complicated. The forming load is lower and the deformation is more uniform when do is 10 mm. 展开更多
关键词 helical gear cold precision forging finite element simulation relief-hole principle
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