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Development of Lightweight Forged Piston Material by Optimizing Size of Needle-Type Intermetallic Compound

机译:通过优化针型金属间化合物尺寸的轻质锻造活塞材料的开发

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In order to produce lightweight, high-strength pistons for engines, the manufacturing process has been changed from casting to forging. However, the strength of conventionally forged aluminum alloys tends to be lower in the high-temperature region and the advantages of mass reduction have not been sufficiently achieved. Adding a transition metal to the piston material can enhance thermal stability. The specific gravity of the strengthened materials, however, becomes heavy and the formability is lessened. In order to solve these problems, the authors have developed a new piston material which was designed by dispersing a very fine-scale, needle-type intermetallic compound within an Al-Si alloy. Compared to conventionally forged piston materials, this new alloy was 50% stronger at elevated temperatures while maintaining the same specific gravity. The new material has forging capabilities equal to those found in conventional materials, due to the added fine-scale intermetallic compound. As a result, we have achieved the development of a lightweight forged piston, with dramatically enhanced strength in the high-temperature region. Moreover, we can manufacture a lightweight piston without increasing costs while using a high-powered forging machine.
机译:为了生产轻质,高强度活塞的发动机,制造过程已经从铸造到锻造。然而,在高温区域中常规锻造铝合金的强度趋于较低,并且没有充分实现质量减少的优点。向活塞材料添加过渡金属可以增强热稳定性。然而,增强材料的比重变得重,并且减轻了可成形性。为了解决这些问题,作者开发了一种新的活塞材料,该活塞材料是通过分散在Al-Si合金中的非常细微的针型金属间化合物而设计的新型活塞材料。与常规锻造活塞材料相比,这种新的合金在升高的温度下较强50%,同时保持相同的比重。由于添加的细尺寸金属间化合物,新材料具有等于常规材料中发现的材料的锻造能力。结果,我们已经达到了轻质锻造活塞的开发,在高温区域中具有显着增强的强度。此外,我们可以在使用高动力锻造机器的同时制造轻质活塞而不会增加成本。

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