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Manufacturing feasibility of all-aluminum automotive engines via application of high silicon aluminum alloy

机译:通过应用高硅铝合金制造全铝汽车发动机的可行性

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Parent bore materials of copper-containing hypereutectic Al-Si alloys have been tried with limited success. Fundamentally the reason for this technology limitation is because copper-containing hypereutectic aluminum-silicon alloys precipitate the copper-phase late in the solidification process and hinder the feeding process to make sound castings. As a result, the copper-containing hypereutectic Al-Si alloys that have been used in the past as parent bore materials have been compromises of low silicon content, which has translated into low wear resistances and the need for special surface treatments. This paper presents the new advancements to the old hypereutectic aluminum- silicon technology for linerless parent bore aluminum blocks. The technology is centered around the use of a copper-free hypereutectic aluminum-silicon alloy parent bore material and a piston coating that has particles of a solid lubricant embedded in the plated coating. Because there are no commercially available copper-free hypereutectic aluminum-silicon alloys, this paper contains the thermal/physical/mechanical data for such alloys.
机译:含铜过度晶体Al-Si合金的母体钻孔材料已经尝试了有限的成功。从根本上得出这种技术限制的原因是因为含铜过度化铝 - 硅 - 合金沉淀凝固过程中的铜相和妨碍进料过程以制造声铸件。结果,过去作为母体孔材料使用的含铜的过度晶体合金已经妥协,其低硅含量,该硅含量被转化为低耐磨性和特殊表面处理的需要。本文介绍了旧过度化铝 - 硅铝块的新进步。该技术围绕使用无铜过度化铝 - 硅合金母体钻孔材料和活塞涂层,其具有嵌入电镀涂层中的固体润滑剂的颗粒。因为没有市售的无铜过度化铝 - 硅 - 合金,所以本文包含这种合金的热/物理/机械数据。

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