...
首页> 外文期刊>Metals and Materials International >Development of High Strength Ni-Cu-Zr-Ti-Si-Sn In-Situ Bulk Metallic Glass Composites Reinforced by Hard B2 Phase
【24h】

Development of High Strength Ni-Cu-Zr-Ti-Si-Sn In-Situ Bulk Metallic Glass Composites Reinforced by Hard B2 Phase

机译:高强度的高强度Ni-Cu-ZR-Ti-Si-Sn原位块状金属玻璃复合材料,由硬B2相加固

获取原文
获取原文并翻译 | 示例
           

摘要

In the present study, the influence of atomic ratio of Zr to Ti on the microstructure and mechanical properties of Ni-Cu-Zr-Ti-Si-Sn alloys is investigated. The alloys were designed by fine replacement of Ti for Zr from Ni39Cu20Zr36-xTixSi2Sn3. The increase of Ti content enhances glass forming ability of the alloy by suppression of formation of (Ni, Cu)(10)(Zr, Ti)(7) phase during solidification. With further increasing Ti content up to 24 at.%, the B2 phase is introduced in the amorphous matrix with a small amount of B19' phase from alloy melt. The bulk metallic glass composite containing B2 phase with a volume fraction of similar to 10 vol% exhibits higher fracture strength (similar to 2.5 GPa) than that of monolithic bulk metallic glass (similar to 2.3 GPa). This improvement is associated to the individual mechanical characteristics of the B2 phase and amorphous matrix. The B2 phase exhibits higher hardness and modulus than those of amorphous matrix as well as effective stress accommodation up to the higher stress level than the yield strength of amorphous matrix. The large stress accommodation capacity of the hard B2 phase plays an important factor to improve the mechanical properties of in situ Ni-based bulk metallic glass composites.
机译:研究了Zr对Ti对Ni-Cu-Zr-Ti-Si-Sn合金微观结构和机械性能的原子比对Ni-Cu-Zr-Ti-Si-Sn合金的影响。通过从Ni39cu20zr36-xtixssi2sn3精细替代Ti的Ti精细替代Ti设计了合金。通过在凝固过程中抑制(Ni,Cu)(10)(Zr,Ti)(7)相的抑制,Ti含量的增加提高了合金的玻璃形成能力。通过进一步将Ti含量增加到24℃。%,B2相以来自合金熔体的少量B19'相的非晶基质引入非晶基质中。含有相对于10体积%的B2相的体积金属玻璃复合材料具有比整体块状金属玻璃(类似于2.3GPa)的裂缝强度(类似于2.5GPa)。这种改进与B2相和非晶基质的各个机械特性有关。 B2相表现出比无定形基质的硬度和模量更高,以及有效的应力容纳,而不是比无定形基质的屈服强度更高的应力水平。硬B2相的大应力容纳能力起到改善原位Ni的散装金属玻璃复合材料的力学性能的重要因素。

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