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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Improvement of surface properties of an Al-Sn-Cu plain bearing alloy produced by rapid solidification
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Improvement of surface properties of an Al-Sn-Cu plain bearing alloy produced by rapid solidification

机译:通过快速凝固生产的Al-Sn-Cu平原轴承合金表面性能的提高

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Al-Sn based alloys are widely used as plain bearings in several engineering applications, particularly in internal combustion engines. The microstructures of these alloys are composed by two main phases, alpha-Al and beta-Sn. The latter provides the low friction coefficient required for bearing applications. The new combustion engines and hybrid systems impose harder working conditions to plain bearings, thus the bearing materials need to be stronger with improved friction properties. The conventional Al20Sn1Cu (wt.%) alloy produced at different cooling rates by means of different casting processes such as Belt Casting, Twin Roller and Single Roller Melt Spinning techniques was studied. The effects of the cooling rate and of the Mn addition on the microstructure and properties were studied. The samples produced by the melt-spinning technique with cooling rates higher than similar to 5 x 10(5) K/s conducts the alloy to a solidification pathway in a metastable condition through a miscibility gap. A microstructure characterized by an homogeneous small rounded beta-Sn particles distributed in a refined alpha-Al grain size matrix is obtained. Samples produced with cooling rate higher than similar to 1.4 x 10(6) K/s show an anisotropic microstructure of a < 100 > alpha-Al crystallographic texture in a columnar microstructure. The melt-spun samples with an isotropic microstructure reach a Vickers hardness 86% higher and an improved wetting property than the alloy produced by the traditional Belt-Casting technique. However the melt-spun samples with crystallographic texture showed a downfall in the properties. The addition of Mn leads to a more homogeneous and refined microstructure independently of the casting technique used. (C) 2019 Elsevier B. V. All rights reserved.
机译:基于Al-Sn基合金广泛用作若干工程应用中的滑动轴承,特别是在内燃机中。这些合金的微观结构由两个主要相,α-Al和β-Sn组成。后者提供轴承应用所需的低摩擦系数。新型燃烧发动机和混合系统对滑动轴承造成更硬的工作条件,因此轴承材料需要更强,具有改善的摩擦性能。通过不同的冷却速率通过不同的浇铸方法如带铸造,双辊和单辊熔化纺纱技术的不同冷却速率产生的常规Al20sn1cu(wt。%)合金。研究了冷却速率和Mn的作用研究了微观结构和性能。通过熔融纺丝技术产生的样品,冷却速率高于类似于5×10(5)k / s,通过混溶性间隙在稳定条件下通过稳定途径进行合金。得到一种通过分布在精制α-Al晶粒尺寸基质中的均匀小圆形β-Sn颗粒的微观结构。用冷却速率产生的样品高于类似于1.4×10(6)k / s,显示在柱状微观结构中的<100α-Al晶体纹理的各向异性微观结构。具有各向同性微观结构的熔化样本达到86%更高的维氏硬度,而具有传统的皮带铸造技术产生的合金的改善的润湿性。然而,具有晶体纹理的熔化样品在性质中显示出垮台。添加Mn导致更均匀的和精细的微观结构,其独立于所使用的铸造技术。 (c)2019 Elsevier B. V.保留所有权利。

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