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  2. List of brazing alloys - Wikipedia

    en.wikipedia.org/wiki/List_of_brazing_alloys

    Similar to BAg-1, more economical. For ferrous, nonferrous and dissimilar alloys. Free-flowing, for larger gaps, where fillets are desired. For steel, stainless steel, copper, copper alloys, nickel, nickel alloys, and combinations. Light yellow color. Maximum service temperature 204 °C, intermittently 316 °C. 26: 21: 35: 18: Ag 30 Cu 28 Zn 21 ...

  3. List of named alloys - Wikipedia

    en.wikipedia.org/wiki/List_of_named_alloys

    AA-8000: used for electrical building wire in the U.S. per the National Electrical Code, replacing AA-1350. [1]Al–Li (2.45% lithium): aerospace applications, including the Space Shuttle

  4. SAE steel grades - Wikipedia

    en.wikipedia.org/wiki/SAE_steel_grades

    Type 304—the most common grade; the classic 18/8 (18% chromium, 8% nickel) stainless steel. Outside of the US it is commonly known as "A2 stainless steel", in accordance with ISO 3506 (not to be confused with A2 tool steel). [6] The Japanese equivalent grade of this material is SUS304.

  5. Steel and tin cans - Wikipedia

    en.wikipedia.org/wiki/Steel_and_tin_cans

    The can saw very little change since then, although better technology brought 20% reduction in the use of steel, and 50% - in the use of tin [7] (the modern cans are 99.5% steel). [9] Canned food in tin cans was already quite popular in various countries when technological advancements in the 1920s lowered the cost of the cans even further.

  6. Sheet metal - Wikipedia

    en.wikipedia.org/wiki/Sheet_metal

    The process of flattening metal sheets required large rotating iron cylinders which pressed metal pieces into sheets. The metals suited for this were lead, copper, zinc, iron and later steel. Tin was often used to coat iron and steel sheets to prevent it from rusting. [3] This tin-coated sheet metal was called "tinplate." Sheet metals appeared ...

  7. RoHS - Wikipedia

    en.wikipedia.org/wiki/RoHS

    The more common lead-free solder systems have a higher melting point, e.g. a 30 °C typical difference for tin-silver-copper alloys, but wave soldering temperatures are approximately the same at ~255 °C; [47] however at this temperature most typical lead-free solders have longer wetting times than eutectic Pb/Sn 37:63 solder. [49]

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