...
首页> 外文期刊>Journal of Materials Processing Technology >Development of high strength and toughness nano-SiCp/A356 composites with ultrasonic vibration and squeeze casting
【24h】

Development of high strength and toughness nano-SiCp/A356 composites with ultrasonic vibration and squeeze casting

机译:高强度和韧性纳米SICP / A356复合材料的开发,具有超声波振动和挤压铸造

获取原文
获取原文并翻译 | 示例
           

摘要

The nano-SiCp/A356 Al-matrix composites containing 2 wt.% nano-SiCp were synthesized with solid-liquid mixed casting method. The effects of ultrasonic vibration (UV) treatment and squeeze casting on refinement were studied and the role of nano-SiCp distribution on refinement was focused. Results show that both of the secondary dendritic arm spacing (SDAS) of alpha-Al grains and the size of eutectic Si phase decrease with the increase of the UV time and the applied pressure of squeeze casting. When UV is applied for 3 min, the SDAS of alpha-Al in composites is 8.1 mu m, which is reduced by 49% than that of A356 matrix alloy. The mean diameter and aspect ratio of eutectic Si phase in composites are 0.92 mu m and 2.33, and they are reduced by 42% and 32% respectively than those of A356 matrix alloy. When the applied pressure of squeeze casting is 400 MPa, SDAS of alpha-Al in composites is 6.9 mu m, which is reduced by 55% than that of A356 matrix alloy. Both the processes of UV and squeeze casting can affect the refining effects by regulating the distribution of nano-SiCp. The better the dispersion of nano-SiCp is, the better the refinement of alpha-Al and eutectic Si phase can be achieved. The mechanical properties of 2 wt.% AMNCs are improved with the increase of UV time and applied pressure, which is consistent with the refinement of the composites' microstructure.
机译:含有2重量%的纳米SICP / A356 Al-基质复合材料,用固液混合浇铸法合成%纳米SICP。研究了超声波振动(UV)处理和挤压对细化的影响,并集中了纳米SICP分布对细化的作用。结果表明,随着紫外线时间的增加和挤压铸造的施加压力,α-Al晶粒的二次树突式臂间距(SDA)和共晶Si相的尺寸降低。当UV施加3分钟时,复合材料中的α-Al的SDA是8.1μm,其比A356基质合金的SDA为49%。复合材料中共晶Si相的平均直径和纵横比为0.92μm和2.33,它们分别低于A356基质合金的42%和32%。当挤压铸造的施加压力为400MPa时,复合材料中α-Al的SDA是6.9μm,其比A356基质合金的SDA为55%。 UV和挤压铸件的方法都可以通过调节纳米SICP的分布来影响精炼效果。纳米SICP的分散越好,可以实现α-Al和共晶Si相的细化越好。通过紫外线时间和施加压力的增加,改善了2重量%的2重量%的机械性能,这与复合材料的微观结构的改进一致。

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