【24h】

Glass forming ability and bending plasticity evolutions in Zr-Co-Al bulk metallic glasses and their structural origin

机译:Zr-Co-Al散装金属眼镜及其结构源性玻璃成型能力和弯曲塑性演进

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The effect of composition tuning on glass forming ability (GFA), mechanical properties and atomic structure in ZrxCo84-xAl16 bulk metallic glasses (BMGs) with x = 51-58 has been investigated by using copper-mold suction casting, nanoindentation, high-energy X-ray diffraction, extended X-ray absorption fee structure experiments and ab initio molecular dynamics simulations, respectively. It is found that GM firstly increases then decreases with Increasing Zr content, exhibiting a maximum diameter of 7 nun with the Zr content of 55 and 56, while an abrupt reduction of bending plasticity occurs as the Zr content drops below 55. Both experimental and theoretical results find that GFA is remarkably enhanced, due to the abnormal reduction in the fractions of the Co-centered 0, 2, 8, 1, 0, 3, 6, 2 and 0, 3, 6, 3 polyhedra, and the denser atomic packing of Zr atoms around center Co atom, as the Zr content increases from 51 to 56. Meanwhile, the simultaneously improved plasticity is associated with the increased Co-centered 0, 3, 6, 0, and Al-centered 0, 2, 8, 1 and 0, 3, 6, 2 polyhedra, which provide more fertile sites for the nucleation of shear transformations. Further Zr addition to 58 increases remarkably the fractions of Zr- and Al-centered 0, 1, 10, 2 and 0, 3, 6, 4 polyhedra, and causes looser atomic packing of Co atoms around center Zr atom, leading to the reduction in GFA. However, the plasticity is not enhanced further but remains nearly constant, which may be related to the deteriorated effect on plasticity of the decreased fractions of Zr-centered 0, 1, 10, 5 and Co-centered 0, 3, 6, 0 polyhedra, and the increased fractions of Zr-centered 0, 1, 10, 3 and 0, 2, 8, 4 and Co-centered 0, 2, 8, 0 polyhedra. Compositional tuning, with internal structure tuned to favor both GFA and plastic flow, offers new possibilities in developing ductile BMG materials.
机译:通过使用铜模抽浇铸造,纳米茚,高能量,研究了组合物调节对玻璃成型能力(GFA),机械性能和原子结构的玻璃成型能力(GFA),机械性能和原子结构,纳米茚,高能量X射线衍射,延长X射线吸收费用结构实验和AB Initio分子动力学模拟。发现GM首先增加随后随着Zr含量的增加而降低,Zr含量为55和56的最大直径为7个NUN,而诸如Zr含量低于55的抗弯曲塑性的突然减少。既有实验和理论结果发现GFA显着增强,因为环中心的馏分异常降低,& 0,3,6,2&和& 0,3,6,3&与Zr含量从51〜56增加时,聚醚和中心CO原子周围的Zr原子的密度原子包装。同时,同时改善的可塑性与增加的环保& 0,3,6,0&和以al为中心的& 0,2,8,11&和& 0,3,6,2& Polyhedra,它为剪切变换成核提供更多的肥沃部位。进一步的Zr加入58增加显着的Zr-和亚居族含量的级分数显着增加。和& 0,3,6,4& Polyhedra,并导致COM ZR原子周围的CO原子填充的松动原子包装,导致GFA的减少。然而,可塑性进一步增强,但仍然几乎是恒定的,这可能与对Zr中心< 0,1,11,10,5&Gt的减小的级分的劣化的劣化效果有关。并以中心为中心& 0,3,6,0& Polyhedra,以及Zr中心的增加的级分,Zr为中心& 0,1,11,13&和& 0,2,8,4&并以中心为中心& 0,2,8,0& Polyhedra。组成调谐,内部结构调整为有利于GFA和塑料流动,在开发韧性BMG材料方面提供了新的可能性。

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