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  2. McMaster-Carr - Wikipedia

    en.wikipedia.org/wiki/McMaster-Carr

    McMaster-Carr Supply Company is a private American supplier of hardware, tools, raw materials, industrial materials, and maintenance equipment. They function as a business-to-business company. [ 2 ] The company was founded in 1901 and is based in Elmhurst , Illinois , with distribution centers in Robbinsville , New Jersey ; Santa Fe Springs ...

  3. Spring steel - Wikipedia

    en.wikipedia.org/wiki/Spring_steel

    Applications include piano wire (also known as [11] music wire) such as ASTM A228 (0.80–0.95% carbon), spring clamps, antennas, springs (e. g. vehicle coil springs or leaf springs), and s-tines. Spring steel is commonly used in the manufacture of swords with rounded edges for training [ 12 ] or stage combat, [ 13 ] as well as sharpened swords ...

  4. Keps nut - Wikipedia

    en.wikipedia.org/wiki/Keps_nut

    McMaster-Carr catalog (114th ed.), McMaster-Carr This page was last edited on 29 January 2023, at 08:58 (UTC). Text is available under the Creative Commons ...

  5. Spring (device) - Wikipedia

    en.wikipedia.org/wiki/Spring_(device)

    The stiffness (or rate) of springs in parallel is additive, as is the compliance of springs in series. Springs are made from a variety of elastic materials, the most common being spring steel. Small springs can be wound from pre-hardened stock, while larger ones are made from annealed steel and hardened after

  6. Weld nut - Wikipedia

    en.wikipedia.org/wiki/Weld_nut

    McMaster-Carr catalog (114th ed.), McMaster-Carr. Buckeye Fasteners catalog (2018 ed.), Buckeye Fasteners Company This page was last edited on 5 December 2021, at ...

  7. Series and parallel springs - Wikipedia

    en.wikipedia.org/wiki/Series_and_parallel_springs

    When putting two springs in their equilibrium positions in series attached at the end to a block and then displacing it from that equilibrium, each of the springs will experience corresponding displacements x 1 and x 2 for a total displacement of x 1 + x 2. We will be looking for an equation for the force on the block that looks like: