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压实动程与保压时间可调控的软硬混编预制体压实控制策略
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作者 梅宝龙 董九志 +1 位作者 邢力鹏 蒋秀明 《固体火箭技术》 北大核心 2025年第5期723-732,共10页
针对软硬混编预制体压实工艺过程“施加-保持-释放”载荷无法精准调控的问题,基于软硬混编预制体压实装置,提出压实动程与保压时间可调控的控制策略。构建满足“停-升-停”运动规律的机电传动系统模型,采用修正摆线函数将控制轴匀速转... 针对软硬混编预制体压实工艺过程“施加-保持-释放”载荷无法精准调控的问题,基于软硬混编预制体压实装置,提出压实动程与保压时间可调控的控制策略。构建满足“停-升-停”运动规律的机电传动系统模型,采用修正摆线函数将控制轴匀速转动变换为下微孔板周期性变速运动;建立基于速比系数k_(c)的伺服电机变速运动参数化模型,系统揭示不同k_(c)对下微孔板位移、速度与加速的影响规律。综合考虑压实效率与机械性能,在不同压实阶段选择不同速比系数,压实初期宜选择较小k_(c),压实末期k_(c)不宜大于0.6;进一步确定模型参数调控方法,系数调整获得不同下微孔板运动规律,实现压实全周期内机械参数的准确输出。加压密实实验表明:基于压实动程与保压时间动态调控控制策略,在预制体成型过程中可达到与人工理想压实数据基本相同的受压效果,两者相比最大偏差为8.15%,满足实际工艺需求。 展开更多
关键词 压实动程 时间 可调控 修正摆线函数 软硬混编预制体 控制策略
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Hot deformation behavior and constitutive modeling of Q345E alloy steel under hot compression 被引量:6
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作者 钱东升 彭亚亚 邓加东 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第2期284-295,共12页
Q345E as one of typical low alloy steels is widely used in manufacturing basic components in many fields because of its eminent formability under elevated temperature. In this work, the deformation behavior of Q345E s... Q345E as one of typical low alloy steels is widely used in manufacturing basic components in many fields because of its eminent formability under elevated temperature. In this work, the deformation behavior of Q345E steel was investigated by hot compression experiments on Gleeble-3500 thermo-mechanical simulator with the temperature ranging from 850 ℃ to 1150 ℃ and strain rate ranging from 0.01 s-1 to 10 s-1. The experimental results indicate that dynamic softening of Q345E benefits from increasing deformation temperature and decreasing strain rate. The mathematical relationship between dynamic softening degree and deformation conditions is established to predict the dynamic softening degree quantitatively, which is further proved by some optical microstructures of Q345E. In addition, the experimental results also reveal that the stress level decreases with increasing deformation temperature and decreasing strain rate. The constitutive equation for flow stress of Q345E is formulated by Arrihenius equation and the modified Zener-Hollomon parameter considering the compensation of both strain and strain rate. The flow stress values predicted by the constitutive equation agree well with the experimental values, realizing the accurate prediction of the flow stress of Q345E steel under hot deformation. 展开更多
关键词 hot deformation behavior dynamic softening flow stress constitutive model
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