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Mechanical Properties of Al-Si Alloy-Based Composites Reinforced by in-situ TiB2 Particulates

机译:原位TiB2颗粒增强Al-Si合金基复合材料的力学性能

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Al-Si alloy-based composites are widely used in automotive,aerospace and mineral processing industries with improved properties.In situ techniques have been developed to fabricate Al-Si alloy-based composites,which can lead to better adhesion at the interface and hence better mechanical properties.Al-Si alloy reinforced with in situ TiB2 particles was synthesized successfully by using salt reaction ronte.These in situ composites have shown significant improvement in mechanical properties compared with the base alloy.The wear resistance of the alloy is also significantly improved with the addition of TiB2 particles.The hardness,strength and wear resistance are strengthened with increasing TiB2 content of the composites.TiB2 can act not only as a grain refiner for primary Al but also as a modifier of Si in eutectic mixture.Analysis of the worn surface of Al-Si/riB2 composites tested under loads of 30 and 110N suggests that ploughing is predominant at lower loads and delamination is predominant at higher loads.
机译:Al-Si合金基复合材料广泛用于汽车,航空航天和矿物加工行业,具有改善的性能。已开发出原位制造Al-Si合金基复合材料的技术,可以提高界面处的附着力,从而获得更好的结合力。机械性能:利用盐反应硼酸法成功地合成了原位TiB2颗粒增强的Al-Si合金,这些原位复合材料的力学性能与基础合金相比有显着提高,合金的耐磨性也得到了显着提高。随着TiB2含量的增加,硬度,强度和耐磨性得到增强.TiB2不仅可以作为初生Al的晶粒细化剂,而且还可以作为共晶混合物中Si的改性剂。在30和110N的负载下测试的Al-Si / riB2复合材料的表面表明,在较低的负载下犁耕是最主要的,并且会发生分层在较高的负载下是最小的。

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