...
首页> 外文期刊>Journal of Materials Engineering and Performance >Aluminum Matrix Composites Strengthened with CuZrAgAl Amorphous Atomized Powder Particles
【24h】

Aluminum Matrix Composites Strengthened with CuZrAgAl Amorphous Atomized Powder Particles

机译:CuZrAgAl非晶雾化粉末颗粒增强的铝基复合材料

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The Al-matrix composites were prepared by hot pressing in vacuum of an aluminum powder with 20 and 40 wt.% addition of the amorphous Cu43Zr43Ag7Al7 alloy (numbers indicate at.%) obtained using gas atomization method. The amorphous structure of the powder was confirmed using x-ray diffraction, DSC, and TEM. The average size of mostly spherical particles was 100 mu m, so the powder was sieved to obtain maximum size of 60 mu m. The composites were prepared using uniaxial cold pressing in vacuum and at a temperature of 400 degrees C. The composites of hardness from 43 to 53 HV were obtained for both additions of the amorphous phase. They reached compression strength of 150 MPa for 20% of amorphous phase and 250 MPa for the higher content. The modest hardening effect was caused by crack initiation at Al/amorphous interfaces. The amorphous phase was only partially crystallized in the hot-pressed composites, what did not cause hardness decrease. The application of nanocrystalline aluminum powders obtained by high-energy ball milling for the matrix of composites allowed obtaining nanocrystalline aluminum matrix composites of size near 150 nm, strengthened with the amorphous powders, whose compression strength was near 550 MPa for the composite containing 40% of the amorphous phase and slightly lower for the composite containing 20% of the phase. They showed much higher ductility of 23% in comparison with 7% for the composite containing 40% amorphous phase. The distribution of the strengthening phase in the nanocrystalline matrix was not homogeneous; the amorphous particles formed bands, where majority of cracks nucleated during compression test.
机译:通过在真空中对铝粉进行热压制备铝基复合材料,该铝粉中添加有20%和40%(重量)的非晶态Cu43Zr43Ag7Al7合金(数字表示原子%),采用气体雾化法获得。使用X射线衍射,DSC和TEM确认了粉末的无定形结构。大部分为球形的颗粒的平均尺寸为100微米,因此将粉末过筛以获得60微米的最大尺寸。使用单轴冷压在真空中和在400摄氏度的温度下制备复合材料。两种无定形相的添加均获得了43至53 HV的硬度。它们对20%的非晶相达到150 MPa的压缩强度,对于更高的含量达到250 MPa的压缩强度。适度的硬化作用是由Al /非晶界面上的裂纹萌生引起的。在热压复合材料中,非晶相仅部分结晶,而不会导致硬度降低。通过将高能球磨获得的纳米晶铝粉用于复合材料的基体,可以得到尺寸接近150 nm的纳米晶铝基复合材料,并用无定形粉末增强,其中压缩强度接近550 MPa的复合物包含40%的铝。非晶相,而对于含有20%相的复合材料则略低。与含有40%非晶相的复合材料的7%相比,它们的延展性更高,为23%。纳米晶基体中强化相的分布不均匀。无定形颗粒形成了条带,在压缩试验中,大部分裂纹成核。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号