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An investigation of the chill-casting interface dynamics in production of sand-cast A319 engine blocks

机译:砂铸A319发动机砌块生产中寒意铸造界面动力学的研究

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In recent years, the automotive industry has been increasing the production of small, high-power gas engines as part of several strategies to achieve the new "Corporate Average Fuel Economy" (CAFE) standards. This trend requires an improvement in the thermal and mechanical fatigue durability of the aluminium alloys used in the production of the cylinder blocks in these engines. Conventionally, solid chills are employed in areas of these castings subject to high cyclic loading to enhance the mechanical performance of the cast material-i.e. in the main bearing bulkhead. A potential means of improving the efficacy of these chills is to incorporate water cooling. To assess the effectiveness of this method, a water-cooled chill was designed and installed in a bonded-sand engine block mould package (1/4 section). The moulds were instrumented with thermocouples, to measure the evolution of temperature at key locations in the casting, and "Linear Variable Displacement Transducers" (LVDTs), to measure the gap formation at the interface between the chill and the casting. This paper summarizes, at a high level, some of the findings of this work.
机译:近年来,汽车工业一直在增加小型大功率燃气发动机的生产,作为实现新的“企业平均燃料经济性”(咖啡馆)标准的若干策略的一部分。该趋势需要提高在这些发动机中生产的铝合金的热和机械疲劳耐久性。通常,在这些铸件的区域中使用固体冷却,该区域受到高循环载荷,以增强铸造材料的机械性能-i.e。在主轴承舱壁中。提高这些寒意效果的潜在手段是掺入水冷却。为了评估该方法的有效性,设计了一种水冷的寒意,设计并安装在粘结式砂发动机块模具包装(1/4段)中。模具用热电偶仪表,以测量铸件中的关键位置处的温度的演变,以及“线性可变排量换能器”(LVDTS),以测量冷却和铸件之间的界面处的间隙形成。本文总结了这项工作的一些调查结果。

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