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Upper-bound and finite element analyses of multi-row sprocket during cold semi-precision forging process 被引量:5
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作者 wangjun cheng chengzhong Chi +2 位作者 Yongzhen Wang Peng Lin Wei Liang 《International Journal of Coal Science & Technology》 EI 2015年第3期245-253,共9页
The cold semi-precision forging of a multi-row sprocket was investigated using upper-bound (UB) and finite element methods combined with experiments. Based on the design of a new tooth profile for the sprocket, a co... The cold semi-precision forging of a multi-row sprocket was investigated using upper-bound (UB) and finite element methods combined with experiments. Based on the design of a new tooth profile for the sprocket, a cold semi-precision forging process and a kinematically admissible velocity field for filling the die cavity were proposed. Using the UB method, the velocity fields of the sprocket billet in the forming process were divided theoretically and calculated. The process of forging a multi-row sprocket was simulated using the FEM package Deform-3D V6.1 to obtain the distributions of the velocity field and the effective stress field in filling the die cavity. Similar to the simulated results, the experiment on cold forging a 5052 aluminum alloy sprocket was successfully performed. By comparing the calculated (UB method), experimental and simulated load-stroke curves, the calculated and simulated results were basically in accordance with the experimental results. The study provides a theoretical foundation for the development of the precision forging of multi-row sprockets. 展开更多
关键词 Multi-row sprocket Cold semi-precision forging Upper-bound method Finite element analysis
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Volume calculation of the spur gear billet for cold precision forging with average circle method 被引量:4
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作者 wangjun cheng chengzhong Chi +3 位作者 Yongzhen Wang Peng Lin Wei Liang Chen Li 《International Journal of Coal Science & Technology》 EI CAS 2014年第4期456-462,共7页
Forging spur gears are widely used in the driving system of mining machinery and equipment due to their higher strength and dimensional accuracy.For the purpose of precisely calculating the volume of cylindrical spur ... Forging spur gears are widely used in the driving system of mining machinery and equipment due to their higher strength and dimensional accuracy.For the purpose of precisely calculating the volume of cylindrical spur gear billet in cold precision forging,a new theoretical method named average circle method was put forward.With this method,a series of gear billet volumes were calculated.Comparing with the accurate three-dimensional modeling method,the accuracy of average circle method by theoretical calculation was estimated and the maximum relative error of average circle method was less than 1.5%,which was in good agreement with the experimental results.Relative errors of the calculated and the experimental for obtaining the gear billet volumes with reference circle method are larger than those of the average circle method.It shows that average circle method possesses a higher calculation accuracy than reference circle method(traditional method),which should be worth popularizing widely in calculation of spur gear billet volume. 展开更多
关键词 Gear billet volume Three-dimensional modeling Cold precision forging Average circle
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