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Towards A More Holistic Approach To Quality Improvements In Aluminium Die Casting

机译:寻求一种整体方法来提高铝压铸件的质量

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This work evaluates the feasibility of using a holistic approach, based on dynamical system theory, to reduce porosity defects in high pressure aluminum die casting. Quality improvements, from a dynamical system perspective mean the ability to move the die casting process out of its natural equilibrium to a more beneficial state and the ability to maintain this new process state. This more beneficial state may be achieved in several ways. One way is to increase the amount of forcing to overcome natural process resistance. This forcing approach is represented by typical continuous intervention policy, with modifications in die/part design and/or process parameters. An alternative approach is to reduce the amount of natural process resistance, in particular the amount of process disturbance, allowing the process to move out of its natural equilibrium with much less forcing. This alternative uses the self-regulating ability of dynamical systems thus decreasing the amount of human intervention required. In this respect, the influence of vacuum on time on chattering at the first stage of the casting shot was identified as a good process candidate for testing using dynamical system theory. A significant reduction in porosity defects was achieved, which also set the process on a path of slow but consistent self-improvement.
机译:这项工作基于动力学系统理论评估了使用整体方法来减少高压铝压铸件中的气孔缺陷的可行性。从动力系统的角度来看,质量的提高意味着将压铸工艺从其自然平衡状态转移到更有利的状态的能力,以及保持这一新工艺状态的能力。这种更有利的状态可以通过几种方式实现。一种方法是增加克服自然过程阻力的强迫量。这种强制方法由典型的连续干预策略代表,其中对模具/零件设计和/或工艺参数进行了修改。另一种方法是减少自然过程阻力的量,特别是减少过程干扰的量,从而使过程以更少的强制力脱离自然平衡。这种替代方法利用了动态系统的自我调节能力,从而减少了所需的人工干预。在这方面,真空时间对铸坯第一阶段颤动的影响被确定为使用动力学系统理论进行测试的良好工艺候选者。孔隙率缺陷的显着减少,这也使该过程走上了缓慢而持续的自我改进之路。

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