4.7 Article

Characteristic of improved fatigue performance for Zr-based bulk metallic glass matrix composites

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.msea.2012.11.060

关键词

Bulk amorphous alloy; Composite; Fatigue; Synchrotron X-ray diffraction

资金

  1. National Natural Science Foundation of China [51101110]
  2. Youth Science Foundation of Shanxi Province, China [2012021018-1]
  3. Shanxi Scholarship Council of China [2012-032]
  4. National Science Foundations [DMR-0909037, CMMI-0900271, CMMI-1100080]
  5. [NSC101-2221-E-008-039-MY3]
  6. Direct For Mathematical & Physical Scien
  7. Division Of Materials Research [909037] Funding Source: National Science Foundation
  8. Directorate For Engineering
  9. Div Of Civil, Mechanical, & Manufact Inn [0900271] Funding Source: National Science Foundation
  10. Directorate For Engineering
  11. Div Of Civil, Mechanical, & Manufact Inn [1100080] Funding Source: National Science Foundation

向作者/读者索取更多资源

Zr58.5Ti14.3Nb5.2Cu6.1Ni4.9Be11.0 bulk metallic glass matrix composites exhibit improved four-point-bending fatigue endurance with a fatigue limit of 567 MPa, compared to that under the tension-tension fatigue, due to the high-volume-fractioned dendrites, which can effectively blunt the fatigue-induced cracks. Illuminated by high-energy synchrotron X-ray at 200 and 100 K, the corresponding diffraction peaks, such as (110), (200), and (211) shift rightward to small lattice spacings, compared to those at 298 K. However, the peak widths at 100 K and 200 K are almost identical to that of room temperature. Since an identical fatigue specimen was measured under room temperature, 200 K, and 100 K, the invariant of the peak widths reveal the fact of the irreversible microstructure developments induced by fatigue. Even if the fatigue fracture stress is distinguishingly lower than the yielding strength, the deformation of dendrites locally prevails, evidenced by the occurrence of dislocations. Crown Copyright (c) 2012 Published by Elsevier B.V. All rights reserved.

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