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  • {{Short description|Titanium alloy}} ...osion|corrosion resistance]]. It is one of the most commonly used titanium alloys and is applied in a wide range of applications where low density and excell ...
    14 KB (1,889 words) - 15:11, 28 February 2025
  • ...ef>Standard ISO 7539-7:2005 (last reviewed 2014), "Corrosion of metals and alloys -- Stress corrosion testing -- Part 7: Method for slow strain rate testing" ...as well as for relative ranking of susceptibility to cracking of different alloys, or the aggressiveness of environments and the effect of temperature, pH, m ...
    5 KB (677 words) - 22:42, 1 February 2024
  • === Iron-titanium oxides === ...the most important magnetic minerals on Earth are oxides of [[iron]] and [[titanium]]. Their compositions are conveniently represented on a [[ternary plot]] wi ...
    6 KB (800 words) - 05:07, 17 December 2023
  • ...cting effect against further surface oxidation (examples [[aluminium]], [[titanium]], [[chromium]]-containing [[steel]]s). ...that is consumed and weakened due to oxidation. The P–B ratio of Zirconium alloys can vary between 1.48 and 1.56,<ref name="Annand"/> meaning that the oxide ...
    7 KB (1,000 words) - 16:03, 17 December 2024
  • The '''R-phase''' is a [[phase diagram|phase]] found in [[Nickel titanium|nitinol]], a [[shape-memory alloy]]. It is a martensitic phase in nature, b ...rom austenite) occurs between {{cvt|20|and|40|C|F}} in most binary nitinol alloys. ...
    8 KB (1,097 words) - 19:07, 27 April 2024
  • [[File:Teeth.jpg|thumb|right|200px|Titanium dental implants]] ...dical implants, as well as parts of surgical instruments are coated with [[titanium nitride]] (TiN). ...
    17 KB (2,461 words) - 22:44, 19 February 2025
  • {{Short description|Aluminium alloys containing magnesium}} ...inium–magnesium–copper alloys]] (AlMgCu) and [[aluminium–magnesium–silicon alloys]] (AlMgSi, 6000 series). ...
    19 KB (2,487 words) - 02:47, 24 November 2024
  • ...nese alloys]]). The main area of application is aircraft construction. The alloys have medium to high strength and can be [[Precipitation hardening|age harde ...magnesium-silicon alloys]] (AlMgSi) or the naturally hard (non-hardenable) alloys. ...
    38 KB (4,879 words) - 03:07, 12 January 2025
  • }}</ref> Titanium alloys will often be diffusion bonded as the thin oxide layer can be dissolved and ...the sheets to fill the mold. This is often done using titanium or aluminum alloys for parts needed in the aerospace industry.<ref>{{Cite web|title = DIFFUSIO ...
    13 KB (1,948 words) - 16:21, 27 August 2024
  • ...similar displacements per atom value versus non grain boundary engineered alloys. This method of treatment in particular yields better resistance to [[stres ...s/Documents/Zr%20nuke%20waste%20disposal.pdf|title=Reactor Grade Zirconium Alloys for Nuclear Waste Disposal|date=2003|accessdate=November 1, 2015|website=Al ...
    15 KB (2,150 words) - 22:40, 12 November 2024
  • ...'bombshell'. Anticipating the requirements of what would become the [[Tube Alloys]] project, he lobbied for their release. He wrote to [[George Paget Thomson ...d the staff of High Duty Alloys Limited (HDA) and in 1944 of International Alloys Limited (Intal). ...
    16 KB (2,214 words) - 10:42, 11 April 2024
  • ...=Marker loads for quantitative fractography of fatigue cracks in aerospace alloys |first=S. A. |last1=Barter |first2=L. |last2=Molent |first3=R. J. H. |last3 ...graphy markers for determining fatigue crack growth rates in aluminium and titanium aircraft structures |first1=M. |last1=McDonald |first2=R. |last2=Boykett |f ...
    15 KB (2,269 words) - 15:11, 21 September 2022
  • [[Duplex stainless steel|Duplex stainless steels]] are a family of alloys with a two-phase microstructure consisting of both [[Austenite|austenitic]] ...|first=Iris |title=Duplex Stainless Steels: Brief History and Some Recent Alloys |url=https://www.eurekaselect.com/article/40020 |journal=Recent Patents on ...
    38 KB (5,013 words) - 16:36, 16 June 2024
  • ...y the interdiffusion coefficients that were calculated for nickel aluminum alloys.<ref>{{Cite journal |last=Watanabe |first=M. |last2=Horita |first2=Z. |last ...-6 | bibcode=2001AcMat..49..861K | title=On the diffusion of aluminium and titanium in the Ni-rich Ni-Al-Ti system between 900 and 1200°C | last1=Karunaratne | ...
    20 KB (3,116 words) - 18:37, 29 October 2024
  • ...hor4=Lu, K. |author5= Lu, J. |title=Nanostructure formation mechanism of α-titanium using SMAT|journal=Acta Materialia|date=16 August 2004|volume=52|issue=14|p ...eterostructured materials: An interdisciplinary review |journal=Journal of Alloys and Compounds |date=2024 |volume=1002 |page=174667 |doi=10.1016/j.jallcom.2 ...
    29 KB (4,197 words) - 08:03, 27 December 2024
  • ...ovation in antimicrobial surfaces is the discovery that [[copper]] and its alloys ([[brass]]es, [[bronze]]s, [[cupronickel]], copper-nickel-zinc, and others) ..., and polymer and calcium phosphate coatings with chlorhexidine.<ref name="titanium" /> ...
    51 KB (6,816 words) - 00:01, 28 October 2024
  • ...042.<ref>BS EN ISO 10042: "Welding. Arc-welded joints in aluminium and its alloys. Quality levels for imperfections" (2005)</ref> ...
    24 KB (3,576 words) - 19:36, 29 December 2024
  • {{Short description|Alloys with high proportions of several metals}} ...irst1=Shaoqing |title=Atomic Structure Modeling of Multi-Principal-Element Alloys by the Principle of Maximum Entropy |journal=Entropy |date=13 December 2013 ...
    103 KB (14,505 words) - 17:54, 19 February 2025
  • | style="border:1px solid #aaaaaa; background-color:salmon;" |22<br/>[[Titanium|Ti]] <br/>'''Mg''' | style="border:1px solid #aaaaaa; background-color:orange;" |22<br/>[[Titanium|Ti]] <br/>1941 K<br/>'''W''' ...
    61 KB (8,067 words) - 15:27, 18 December 2024
  • ! [[Titanium]] |title=Fracture Resistance of Aluminum Alloys: Notch Toughness, Tear Resistance ...
    25 KB (3,586 words) - 22:33, 15 September 2024
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