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Theoretical and experimental investigations of mechanical vibrations of hot hammer forging

机译:热锤锻造机械振动的理论与实验研究

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The characterization of mechanical vibrations in a hammer forging process is a tremendously important parameter for machine design and production engineering. The dynamic response of a forging hammer to the reaction forces is affected by material behaviour, time, spring-damper system and foundation. In this research firstly, the effect of mass ratio and coefficient of restitution on the forging efficiency were theoretical characterized. The interesting influence of anvil initial velocity on the forging efficiency is also analytically presented. The mechanical vibrations of a LASCO HO U-315 hammer were experimentally investigated. Two steel grades a S355 and a 42CrMo4 were used to forge trial parts. The velocity of the ram and acceleration of the anvil during a hot die forging process were measured using a laser velocity meter type LSV-2000-45. The influences of forging time, coefficient of restitution, energy loss and time interval (delay) between blows on the efficiency of the forging process were examined. The energy loss before die contact was determined to be approximately 10%. The investigations also showed that a variation of the time interval between blows within the usual range has no effect on the intensity of the vibrations of the anvil nor on the energy loss of the hammer. The dependence of the free damped vibrations of the anvil on machine stiffness, damper coefficient and mass of machine has been confirmed. Additionally, the loss of energy due to hammer movement as well as the free damped mechanical vibrations of the anvil were theoretically analysed in order to verify the experimental findings. Theoretical analysis showed an anvil initial velocity of approximately 0.2 m/s results in a 4% increase of forging efficiency. A good agreement between the experimental and theoretical results was observed.
机译:锤锻过程中机械振动的表征是机械设计和生产工程中一个极其重要的参数。锻锤对反作用力的动态响应受材料性能、时间、弹簧阻尼器系统和基础的影响。本研究首先从理论上分析了质量比和恢复系数对锻造效率的影响。分析了砧座初速对锻造效率的影响。对LASCO HO U-315液压锤的机械振动进行了实验研究。两种牌号a S355和a 42CrMo4的钢用于锻造试件。使用LSV-2000-45型激光测速仪测量了热模锻过程中的冲头速度和砧座加速度。研究了锻造时间、恢复系数、能量损失和锤击间隔时间(延迟)对锻造过程效率的影响。模具接触前的能量损失约为10%。调查还表明,在通常范围内,锤击之间的时间间隔变化对砧座的振动强度或锤击的能量损失没有影响。确定了铁砧的自由阻尼振动与机床刚度、阻尼系数和机床质量的关系。此外,为了验证实验结果,从理论上分析了锤子运动造成的能量损失以及砧座的自由阻尼机械振动。理论分析表明,当砧座初始速度约为0.2m/s时,锻造效率可提高4%。实验结果与理论结果吻合良好。

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