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Effect of the Technological Parameters on the Thermal Conditions of Die-casting Tool

机译:工艺参数对压铸模具温度条件的影响

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The heat balance of a casting cycle can be ensured in short times by the annealing of the die-casting tool, by which the well-constructed and well-functioned cooling system can enhance productivity. Incorrect cooling, however, can lead to heat unbalance in the die casting tool, thus causing the destruction of casting quality, reduction of the lifetime of die casting tool and irreversible production-reduction. Beside the theoretical examination of construction and function of cooling system, the evaluation of the effectively removed heat quantities has great importance. The paper presents an analysis of the function of the cooling system of a scraggy thin casting of AlSi9Cu3 alloy, in case of different cooling parameters. Based on the measured results of the inlet and outlet temperatures and the volume flow of the cooling agents, the heat quantities belonging to the cooling circles are determined and an optimization of the cooling system is proposed. The findings of the analysis can be utilized for the construction and optimum operation of die-casting cooling systems.
机译:通过压铸工具的退火,可以在短时间内确保铸造周期的热平衡,从而使结构良好且功能良好的冷却系统能够提高生产率。但是,不正确的冷却会导致压铸模具中的热量不平衡,从而导致铸造质量的下降,压铸模具寿命的缩短以及不可逆转的减产。除了对冷却系统的结构和功能进行理论检验外,有效去除热量的评估也非常重要。本文介绍了在冷却参数不同的情况下,AlSi9Cu3合金的稀薄铸件的冷却系统功能的分析。根据入口和出口温度以及冷却剂的体积流量的测量结果,确定属于冷却循环的热量,并提出冷却系统的优化方案。分析的结果可用于压铸冷却系统的构造和最佳运行。

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