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Microstructure and Wear Behavior of Solidification Sonoprocessed B390 Hypereutectic Al-Si Alloy

机译:凝固声处理B390过共晶Al-Si合金的显微组织和磨损行为

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摘要

The hypereutectic Al-Si alloys constitute an important family of alloys because of their excellent wear resistance and low thermal expansion. However, the optimal microstructure and hence the optimal service performance of these alloys cannot be achieved by the conventional melt treatments used in industry today, because of the chemical incompatibility between the primary-Si refiners and the eutectic-Si modifiers used in microstructure, control. The current study aimed at using ultrasonic vibrations to improve the microstructure and the properties of these alloys. The results of the current study showed that for the B390 Al-Si alloy (i) the ultrasonic treatment has potential refining effect on the primary Si and Fe intermetallic phases, (ii) the primary Si particles become finer as the pouring temperature decreases from 1033 K (760 °C) to 938 K (665 °C), (iii) pouring and ultrasonic treatment at temperatures below the start of primary Si precipitation result in the coexistence of large and fine Si particles in microstructure, (iv) phosphorous additions of 50 ppm did not show any substantial effect in the ultrasonically treated ingots, (v) ultrasonic-treated samples have uniform hardness over the surface while the untreated samples show large scattering (high standard deviation) in hardness levels and (vi) ultrasonic-treated samples snowed better wear resistance in the absence of phosphorous.
机译:过共晶Al-Si合金由于其出色的耐磨性和低热膨胀性而构成了重要的合金族。但是,由于在微结构控制中所用的初晶Si精炼机与共晶Si改性剂之间存在化学不相容性,因此无法通过当今工业中使用的常规熔体处理来实现这些合金的最佳微观结构以及最佳服务性能。当前的研究旨在利用超声振动来改善这些合金的微观结构和性能。当前的研究结果表明,对于B390 Al-Si合金(i)超声处理对初生Si和Fe金属间相具有潜在的细化作用;(ii)随着浇铸温度从1033降低,初生Si颗粒变得更细K(760°C)至938 K(665°C),(iii)在低于初生Si沉淀开始的温度下进行浇铸和超声处理会导致微观结构中同时存在大而细的Si颗粒,(iv)磷的添加50 ppm在超声处理过的铸锭中未显示任何实质性影响,(v)超声处理过的样品在表面上具有均匀的硬度,而未处理过的样品在硬度水平上显示出较大的散射(高标准偏差),以及(vi)超声处理过的样品在没有磷的情况下,雪具更好的耐磨性。

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