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  2. 6061 aluminium alloy - Wikipedia

    en.wikipedia.org/wiki/6061_aluminium_alloy

    6061-T6 aluminium standard heat treating process. T6 temper 6061 has been treated to provide the maximum precipitation hardening (and therefore maximum yield strength) for a 6061 aluminium alloy. It has an ultimate tensile strength of at least 290 MPa (42 ksi) and yield strength of at least 240 MPa (35 ksi).

  3. Fatigue limit - Wikipedia

    en.wikipedia.org/wiki/Fatigue_limit

    The fatigue limit or endurance limit is the stress level below which an infinite number of loading cycles can be applied to a material without causing fatigue failure. [1] Some metals such as ferrous alloys and titanium alloys have a distinct limit, [ 2 ] whereas others such as aluminium and copper do not and will eventually fail even from ...

  4. Titanium alloys - Wikipedia

    en.wikipedia.org/wiki/Titanium_alloys

    contains 4.5% aluminium, 2% molybdenum, 1.6% vanadium, 0.5% iron, and 0.3% silicon. Grade 36 contains 45% niobium. Grade 37 contains 1.5% aluminium. Grade 38 contains 4% aluminium, 2.5% vanadium, and 1.5% iron. This grade was developed in the 1990s for use as an armor plating. The iron reduces the amount of Vanadium needed as a beta stabilizer.

  5. Strain hardening exponent - Wikipedia

    en.wikipedia.org/wiki/Strain_hardening_exponent

    Aluminum 6061T6: 0.05: 410 Aluminum 7075–O (annealed) 0.17: 400 ... More complete picture about the strain hardening exponent in the stress–strain curve on www ...

  6. Goodman relation - Wikipedia

    en.wikipedia.org/wiki/Goodman_relation

    The general trend given by the Goodman relation is one of decreasing fatigue life with increasing mean stress for a given level of alternating stress. The relation can be plotted to determine the safe cyclic loading of a part; if the coordinate given by the mean stress and the alternating stress lies under the curve given by the relation, then ...

  7. 6063 aluminium alloy - Wikipedia

    en.wikipedia.org/wiki/6063_aluminium_alloy

    6063 is the most common alloy used for aluminium extrusion. It allows complex shapes to be formed with very smooth surfaces fit for anodizing and is popular for visible architectural applications such as window frames, door frames, roofs, and sign frames. [3] Applications requiring higher strength typically use 6061 or 6082 instead.

  8. Aluminium alloy - Wikipedia

    en.wikipedia.org/wiki/Aluminium_alloy

    The temper designation follows the cast or wrought designation number with a dash, a letter, and potentially a one to three digit number, e.g. 6061-T6. The definitions for the tempers are: [5] [6]-F : As fabricated-H : Strain hardened (cold worked) with or without thermal treatment -H1 : Strain hardened without thermal treatment

  9. Thermal diffusivity - Wikipedia

    en.wikipedia.org/wiki/Thermal_diffusivity

    Aluminium 6061-T6 Alloy: 64 [15] Molybdenum (99.95%) at 25 °C: 54.3 [17] Al-5Mg-2Si-Mn (Magsimal-59) at 20 °C: 44.0 [18] Tin 40 [15] Water vapor (1 atm, 400 K) 23.38 Iron: 23 [15] Argon (300 K, 1 atm) 22 [14] Nitrogen (300 K, 1 atm) 22 [14] Air (300 K) 19 [15] Steel, AISI 1010 (0.1% carbon) 18.8 [19] Aluminium oxide (polycrystalline) 12.0 ...

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