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Defense Intelligence Reference Document Metallic Glasses For Aerospace Applications

Defense Intelligence Agency · 30 pages · text from the file's own layer

The Defense Intelligence Agency issued this Defense Intelligence Reference Document (DIA-08-0911-012), dated 14 December 2009, as one of its FY 2009 advanced technology reports under the Advanced Aerospace Weapon System Applications (AAWSA) Program. It reviews how metallic glasses are structured and processed, their mechanical properties, and metallic glass matrix composites. It concludes that dendritic composites could replace high-strength steels in some aerospace parts. It adds that wide aerospace use depends critically on developing new lightweight glass-forming alloys.

  • p. 1 …Defense Intelligence Reference Document Acquisition Threat Support Metallic Glasses: Status and Prospects for Aerospace Applications UNCLASSIFIED…
  • p. 2 UNCLASSIFIEDh'FOA OFFili6ilil1k WEE o•lb>f Metallic Glasses: Status and Prospects for Aerospace Applications Prepared…
  • p. 3 …12 Metallic Glass Matrix Composites ......................................................................... 13 Processing and Structure of Composites ..... ~ .................................................... 13 Ex Situ Composites ............................................................................................ 14…
  • p. 4 …Examples of Processing of Metallic Glasses ........................................................ 4 4. Shear Bands ....................................................................................................... 8 5. Fatigue Limit of Metallic…
  • p. 5 UNCLASSIFIED/.'FOR Qffili&l.t.k Uli& e•lk>J Metallic Glasses: Status and Prospects for…
  • p. 6 …in all these areas, and that metallic glasses and metallic glass matrix composites will see increasing…
  • p. 7 UNCLASSIFIED,'} I Clll err1e1111t YSI 8Pllsit.f Metallic Glasses STRUCTURE The atomic-scale structure of most…
  • p. 8 …Metallic crystals nucleate and grow quickly, making production of a metallic glass more challenging. 2 UNCLASSIFIED…
  • p. 9 UNCLASSIFIED//F8R IFFH!JIAL U91!! 8Ht¥ One way to quantify the ability of a metallic alloy…
  • p. 10 …GFFl61ilill WSE eP•tY Casting and Molding Like other alloys, metallic glasses can be cast into…
  • p. 11 …The use of fasteners and adhesives is much the same for metallic glasses as for any…
  • p. 12 …In this section, we review the mechanical behavior of metallic glasses, with particular attention to properties…
  • p. 13 …In any loading geometry where the metallic glass experiences significant tensile loading, fracture occurs on a…
  • p. 14 …Produced by bending of a zirconium-based metallic glass. 14 Fracture Toughness Fracture toughness is a…
  • p. 15 UNCLASSIFIED,} FOR OFFICIAL tl91! 9HI!'{ Even some metallic glasses with reasonable toughness may be embrittled by…
  • p. 16 …Fatigue Limit of Metallic Glasses and Metallic-Glass-Matrix Composites. Fatigue life data for single-phase…
  • p. 17 …Deformation Map for Metallic Glasses. As a function of temperature (normalized to the glass transltlon temperature…
  • p. 18 …Magnetic, Electrical, Optical, Thermal, and Acoustic Although most of the current interest in metallic glasses centers…
  • p. 19 …Wedge of a zirconium-based bulk metallic glass produced by casting. Note the sntny metallic luster…
  • p. 20 …One of the most promising recent advances in the metallic glass field is the development of…
  • p. 21 …The size of the plastic zone varies from ~ 1 μm for "intrinsically brittle" metallic glasses to…
  • p. 22 …For instance, monolithic titanium-based metallic glasses (like all metallic glasses) have essentially zero tensile ductility…
  • p. 23 …Figure 9 illustrates the mechanical properties of metallic glasses and metallic glass matrh< composites compared with…
  • p. 24 …bath normalized to density) of metallic glasses (yellow) and dendrltic metallic glass matrix composites (red) compared…
  • p. 25 …A final possibility is that metallic glasses might be combined with polymer composites into metal-fiber…
  • p. 26 …Attempts to make aluminum-based metallic glass components by consolidating amorphous powders have met with limited…
  • p. 27 …This ease of processing could offset the higher raw materials costs for metallic glasses, making them…
  • p. 28 …Summary and Recommendations Metallic glasses combine some of the advantageous mechanical properties of metals- strength, stiffness…
  • p. 29 …Liu, Chapter 4 in Bulk Metallic Glasses, .M. Miller and P. K. Liaw, eds. (Springer, 2009…
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and error. The potential benefits are significant, however, because there exists the
possibility of making materials with exceptionally high strength, fracture toughness,
and fatigue resistance.
Summary and Recommendations
Metallic glasses combine some of the advantageous mechanical properties of metals-
strength, stiffness, and in some cases toughness-with the processing flexibility usually
associated with thermoplastic polymers. The absence of crystalline defects allows
metallic glasses to be much stronger than conventional alloys but also means they have
near-zero tensile ductility and poor fatigue resistance. In structural applications,
therefore, metallic glasses are most likely to be useful in the form of composites
consisting of ductile crystalline dendrites in a metallic glass matrix. These dendritic
composites sacrifice some strength but can have exceptionally high fracture toughness,
as well as good fatigue resistance, and could replace high-strength steels in certain
load-limited structural components in aerospace vehicles where space is limited.
Because they are true glasses, thermoplastic forming near the glass transition
temperature affords metallic glasses tremendous flexibility in processing. For instance,
metallic glass components can be formed in a single step {for example, by injection
molding) in complex geometries that would be difficult or impossible to produce with
conventional alloys. In addition, metallic glass foams can be made with relative ease,
raising the possibility of making structural foams with high strength and stiffness.
Finally, because they lack a crystalline grain structure, metallic glasses can be used to
form nanoscale features with high fidelity. This may make metallic glasses useful in a
variety of micro-electromechanical systems (MEMS) applications.
Metallic glasses also have significant limitations for aerospace applications, however.
Foremost among these is a lack of good glass-forming alloys; in particular, there are no
good aluminum-rich glass-forming alloys, the known titanium-based alloys are either
relatively dense {owing to high concentrations of alloying elements) or contain
beryllium, and the known magnesium- and iron-based alloys are all qurte brittle, wrth
low fracture toughness. Although metallic glass matrix composites can have
outstandfng properties (particularly strength and fracture toughness), the number of
good composite systems known at present is also quite limited.
For metallic glasses (and their composites) to be of broad utility in aerospace structural
applications, progress in the following areas is required:
• Development of new lightweight alloys and composite systems, preferably by
computational and/or combinatorial approaches rather than by trial and error.
• Understanding of mechanical behavior, especially:
- The effect of alloy composition and structure on plastic deformation.
- Microstructural design of composites for optimal toughness.
• Development of processing techniques, including thermophysical processing of
complex and/or nanoscale features as well as production of metallic glass foams.
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Report, from the dia collection. The PDF is mirrored here; the original link is under it. 30 pages are in the text index: search them above, or from the library's search.