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首页> 外文期刊>RSC Advances >Enhanced thermal conductivity and tensile strength of Al-17Si-3.5Cu with SiC-nanoparticle addition
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Enhanced thermal conductivity and tensile strength of Al-17Si-3.5Cu with SiC-nanoparticle addition

机译:用SiC纳米粒子加入增强Al-17Si-3.5Cu的导热性和拉伸强度

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The morphology and size of primary Si has a significant influence on the thermal conductivity (TC) and strength of Al-17Si-3.5Cu. In this study, the effect of a 1-3 wt% SiC nanoparticle (SiCnps) addition on TC and tensile strength of Al-17Si-3.5Cu was investigated. Nanoparticles distributed at the interface between primary Si and Al led to a significant refinement of primary Si; for example, a primary Si size of 2 mu m with 3 wt% SiCnps addition was achieved. TC of SiCnps/Al-17Si-3.5Cu improved with an increase in nanoparticle content. Nanoparticles distributed at the interface between Si and Al reduced the interfacial thermal resistance. Thus, the effective TC of eutectic Si increased. Owing to the refinement of the primary Si and the increased interfacial thermal resistance, originating from the high content of SiCnps at the interface, the effective TC of primary Si decreased. Compared with Al-17Si-3.5Cu, contribution to the improvement of the TC of SiCnps/Al-17Si-3.5Cu resulted mainly from eutectic Si. Due to the refinement of primary Si, the tensile strength of SiCnps/Al-17Si-3.5Cu improved with an increase in SiCnps content. When the SiCnps content was 3 wt%, the yield strength, ultimate tensile strength and elongation of SiCnps/Al-17Si-3.5Cu were similar to 176 MPa, 418 MPa and 7%, respectively, which were improved by 37.5%, 53.7% and 218%, respectively, when compared with Al-17Si-3.5Cu.
机译:原发性Si的形态和大小对Al-17Si-3.5Cu的导热率(Tc)和强度具有显着影响。在该研究中,研究了1-3wt%SiC纳米颗粒(SiCnPs)对Al-17Si-3.5Cu的Tc和拉伸强度的影响。分布在主Si和Al之间的界面处的纳米颗粒导致原代Si的显着改进;例如,实现了具有3wt%SiCNPS的2μm的主Si尺寸。 SICNPS / AL-17SI-3.5CU的TC随着纳米颗粒含量的增加而改善。分布在Si和Al之间的界面处的纳米颗粒降低了界面热阻。因此,共晶Si的有效Tc增加。由于原发性Si的改进和界面热阻增加,源自界面处的高含量高含量,原发性Si的有效Tc降低。与Al-17Si-3.5Cu相比,对SiCnPS / Al-17Si-3.5Cu的TC改善的贡献主要来自共晶Si。由于原发性Si的改进,SiCnPS / Al-17Si-3.5Cu的拉伸强度随着SiCnPS含量的增加而改善。当SiCnPS含量为3wt%时,SiCnPS / Al-17Si-3.5Cu的屈服强度,最终拉伸强度和伸长率分别与176MPa,418MPa和7%相似,分别提高37.5%,53.7%与AL-17SI-3.5CU相比,分别为218%。

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    《RSC Advances 》 |2019年第60期| 共14页
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  • 正文语种 eng
  • 中图分类 化学 ;
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