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The Model and Simulation of Hydraulic Non-sinusoidal Vibration System on Billet Caster Crystallizer

机译:方坯连铸结晶器液压非正弦振动系统的建模与仿真

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Study focusing on the dynamics of the crystallizer hydraulic non-sinusoidal vibration system in the bullet caster crystallizer, which is employed in an electric furnace factory, is introduced. With respect to construct a mathematical model of continuous casting crystallizer hydraulic vibration system, a power band graph method is applied. With the utilization of this method, a process of modeling and evaluating the performance of the hydraulic cylinder, electric-hydraulic servo and sensor system is conducted. The system is also analyzed and simulated by MATLAB/SIMULINK. In our experiment, the performance of the crystallizer nonsinusoidal vibration system with the change of main parameters is studied. Furthermore, an experiment is also conducted aims at investigating the quality requirements for the servo system, including stability, rapidity, and accuracy. Furthermore, an experiment is also conducted aims at investigating the quality requirements for the servo system, including stability, rapidity, and accuracy. The results demonstrate that crystallizer hydraulic servo non-sinusoidal vibration system can satisfy high frequency steel ball requirements and small amplitude design requirements. In addition, it can effectively improve the surface quality of casting blank.
机译:介绍了针对电炉工厂所采用的子弹铸造机中结晶器液压非正弦振动系统动力学的研究。关于建立连铸结晶器液压振动系统的数学模型,应用了一种能带图法。利用这种方法,进行了液压缸,电动液压伺服和传感器系统性能的建模和评估过程。该系统还通过MATLAB / SIMULINK进行了分析和仿真。在我们的实验中,研究了随着主要参数的变化,结晶器非正弦振动系统的性能。此外,还进行了旨在调查伺服系统质量要求的实验,包括稳定性,快速性和准确性。此外,还进行了旨在调查伺服系统质量要求的实验,包括稳定性,快速性和准确性。结果表明,结晶器液压伺服非正弦振动系统可以满足高频钢球要求和小振幅设计要求。另外,它可以有效地改善铸坯的表面质量。

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