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Simulation-Based Design of Ram Speed Profile for Isothermal Extrusion

机译:基于模拟的等温挤压冲压速度曲线设计

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摘要

Isothermal extrusion is a very much desired technology. However, its implementation in the light-metal extrusion practice has, up till now, been technologically constrained. In an attempt to realise isothermal extrusion, a simulation model based on the PID control algorithms was developed to establish ram speed profiles that could prevent extrudate temperature from further increase after an initial rise during an extrusion cycle. With this simulation model, extrusion ram speed could be adjusted in real time according to the simulated exit temperature. A case study was conducted on the simulated extrusion of a magnesium alloy AZ31B into a hollow profile. The results showed significantly improved temperature homogeneity not only along the extrudate length but also on its cross section in the case of extrusion in the isothermal mode with a designed ram speed profile. In addition, die temperature varied over a narrower range and the force acting on the die face was more stable over the process cycle, in comparison with extrusion in the conventional iso-speed mode.
机译:等温挤压是非常需要的技术。但是,到目前为止,它在轻金属挤压实践中的实施在技术上受到限制。为了实现等温挤出,开发了基于PID控制算法的仿真模型以建立冲头速度曲线,该曲线可以防止挤出温度在挤出周期中最初升高后进一步升高。利用该模拟模型,可以根据模拟的出口温度实时调节挤出机的速度。对镁合金AZ31B的模拟挤压成空心型材进行了案例研究。结果表明,在等温模式下以设计的冲头速度曲线进行挤压时,不仅沿挤出物长度而且沿横截面的温度均一性均得到显着改善。另外,与常规等速模式下的挤出相比,模具温度在较窄的范围内变化,作用在模具表面上的力在整个加工周期内更稳定。

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