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    59 Products

    Spring Winders

    Image of Product. Front orientation. Spring Winders.
    Use with a lathe and mandrel to coil round and flat wire into springs. Wire tension and the length between coils are adjustable.
    For Spring Type
    For Spring
    ID
    For Max.
    Wire Size
    Overall
    Lg.
    Each
    Compression, ExtensionAny0.188"7"9527K110000000

    Extension Springs

    The farther you stretch these springs, the harder they pull to bring the two ends back together. They're commonly used to tension cable, return an air cylinder to its starting point, or hold a door closed.
    Loop End—The most secure attachment method. With fully closed loops, there's no risk of slipping off.
    Hook End—Hook into closed holes, such as hanger bolt eyes. These springs work best when kept under tension, as they're more likely to slip off than loop-end springs when tension is released. Also known as machine hook ends.
    Spring Steel—Strong and resilient, but best suited for dry environments since moisture will cause these springs to rust.
    Corrosion-Resistant 302 Stainless Steel—Won’t corrode from exposure to moisture and mild chemicals, including ammonia often found in cleaning solutions. These springs are easier to extend than steel, but can’t handle as high a load.
    Highly Corrosion-Resistant 316 Stainless Steel—Our most corrosion-resistant stainless steel springs won't degrade when exposed to salt water and harsh chemicals. They're easier to extend than steel, but can’t handle as high a load.
    Minimum Load—The amount of force required to start extending the spring.
    Maximum Load—The amount of force required to fully extend the spring.
    Load,
    lb.
    Lg.
    OD
    Wire
    Dia.
    Extended Lg.
    @ Max. Load
    Min.
    Max.
    Spring Rate,
    lbf/in
    Pkg.
    Qty.
    Pkg.
    Loop End
    Image of Product. Front orientation. Extension Springs. Loop End.
     
    Spring Steel
    7"1"0.095"16.33"2.7302.915108N769000000
    7"1"0.105"14.73"3.842.25515108N7800000
    7"1"0.115"13.13"4.954.38.115108N79200000
    7"1"0.125"11.95"6.1167.8712.515108N80500000
    7"1"0.135"11.04"7.5683.9818.915108N81300000
    7"1"0.148"10.16"9.68107.573115108N8200000
    7"1.063"0.105"12.08"6.6322.133.0519654K9250000
    7"1.125"0.085"23.2"1.8920.971.215108N8300000
    7"1.125"0.105"16.71"3.437.83.515108N83900000
    7"1.125"0.125"13.29"5.5161.258.915108N84800000
    7"1.25"0.095"23"2281.618594N1600000
    7"1.25"0.135"13.32"6.1868.629.915108N87300000
    7"1.25"0.148"12.01"7.9588.381615108N88200000
    7"1.5"0.125"19"451419654K75800000
    7"1.5"0.148"14.5"7809.819654K77200000
    7"1.5"0.177"11.8"111322519654K78800000
    7"1.75"0.148"15.61"5.7964.336.815108N90400000
    7"1.75"0.207"10.82"14.59162.1738.615108N91800000
    7"2"0.177"14.3"81021319654K86800000
    7"2"0.207"11.9"131532919654K87400000
     
    Corrosion-Resistant 302 Stainless Steel
    7"1"0.095"16.33"2.2524.992.4217749N87800000
    7"1"0.105"14.73"3.1735.194.1717749N87900000
    7"1"0.135"11.04"6.369.9615.7417749N88200000
    7"1"0.148"10.16"8.0689.6125.8217749N88300000
    7"1.062"0.105"11.85"6.6323.283.43194135K84400000
    7"1.125"0.085"23.2"1.5717.47117749N88400000
    7"1.25"0.085"20"214119065K70400000
    7"1.375"0.207"8.35"55.79140.5763.03194135K16800000
    7"1.5"0.177"11.42"9.14101.5420.9117749N89300000
     
    Highly Corrosion-Resistant 316 Stainless Steel
    7"1.125"0.085"15.09"1.579.67114992N83800000
     
    Hook End
    Image of Product. Front orientation. Extension Springs. Hook End.
     
    Spring Steel
    7"1"0.095"16.33"2.7302.915667N23600000
    7"1"0.105"14.73"3.842.25515667N24800000
    7"1"0.115"13.13"4.954.38.115667N2600000
    7"1"0.125"11.95"6.1167.8712.515667N27300000
    7"1"0.135"11.04"7.5683.9818.915667N28600000
    7"1"0.148"10.16"9.68107.573115667N29900000
    7"1.125"0.125"13.29"5.5161.258.915667N32800000
    7"1.25"0.115"16.4"3.9644.034.315667N34400000
    7"1.25"0.135"13.32"6.1868.629.915667N35300000
    7"1.25"0.148"12.01"7.9588.381615667N36200000
    7"1.375"0.207"8.7"55.24176.7671.4819654K47600000
    7"1.5"0.125"17.37"4.246.644.115667N36900000
    7"1.5"0.148"13.9"6.774.499.815667N37700000
    7"1.5"0.177"11.42"10.97121.925.115667N38500000
    7"1.75"0.207"10.82"14.59162.1738.615667N40800000
     
    Corrosion-Resistant 302 Stainless Steel
    7"1"0.095"16.33"2.2524.992.4211942N90300000
    7"1"0.105"14.73"3.1735.194.1711942N91600000
    7"1"0.115"13.13"4.0845.236.7511942N92900000
    7"1"0.125"11.95"5.0956.5410.4111942N94200000
    7"1"0.148"10.16"8.0689.6125.8211942N96800000
    7"1.063"0.105"13.6"6.125.583.4194135K6400000
    7"1.125"0.085"23.2"1.5717.47111942N97900000
    7"1.125"0.105"16.71"2.8331.492.9211942N98800000
    7"1.5"0.148"13.9"5.5862.058.1618897N14700000
     

    Overload-Prevention Extension Springs

    Image of Product. Front orientation. Extension Springs. Overload-Prevention Extension Springs.
    Stop overstretching before it starts—drawbars limit how far these springs extend to prevent breaking. They’re best for tensioning tasks, such as pulling and keeping fences and gates closed.
    Loop End—The most secure attachment method. With fully closed loops, there's no risk of slipping off.
    Spring Steel—Strong and resilient, but best suited for dry environments since moisture will cause these springs to rust.
    Corrosion-Resistant 302 Stainless Steel—Won’t corrode from exposure to moisture and mild chemicals, including ammonia often found in cleaning solutions. These springs are easier to extend than steel, but can’t handle as high a load.
    Minimum Load—The amount of force required to start extending the spring.
    Maximum Load—The amount of force required to fully extend the spring.
    Load
    Lg.
    OD
    Wire
    Dia.
    Extended Lg.
    @ Max. Load
    Min.
    Max.,
    lb.
    Spring Rate,
    lbf/in
    Each
    Loop End
     
    Spring Steel
    7"1.125"0.112"8.9"Not Rated95509630K91000000
     
    Corrosion-Resistant 302 Stainless Steel
    7"1.5"0.187"8.4"Not Rated2101509630K8700000
     

    Color-Coded Die Springs

    With the Raymond color code, you'll always grab the die spring with the right load rating. The chrome-silicon steel is stronger than spring steel and handles repeated stress for longer periods of time. Rely on these springs for high-volume jobs, such as stamping and injection molding. A powder coating prevents rust in wet environments. The closed, ground ends create a flat surface that balances your load, even as it moves.
    Inch
    Image of Product. Side1 orientation. Die Springs. Color-Coded Die Springs.
    Deflection @ Maximum Load—The percentage represents how much a spring compresses from its original length.
    Wire
    For Hole
    Dia.
    For Shaft
    Dia.
    Lg.
    Thk.
    Wd.
    Compressed Lg.
    @ Max. Load
    Deflection
    @ Max. Load
    Max. Load,
    lb.
    Spring Rate,
    lbf/in
    Material
    End Type
    Each
    Blue (Medium Load)
    1 1/4"5/8"7"0.115"0.285"4.2"40%290105Chrome Silicon SteelClosed and Ground9573K75000000
     

    Die Springs

    Image of Product. Front orientation. Die Springs. Die Springs.
    Support loads in small-batch die press jobs. Made of tempered spring steel, these springs stay strong and resilient in dry environments. If you need a stronger metal that’s less likely to rust, consider Color-Coded Die Springs. The closed, ground ends of these springs create a flat surface that balances your load, even as it moves.
    Deflection @ Maximum Load—The percentage represents how much a spring compresses from its original length.
    Wire
    For Hole
    Dia.
    For Shaft
    Dia.
    Lg.
    Thk.
    Wd.
    Compressed Lg.
    @ Max. Load
    Deflection
    @ Max. Load
    Max. Load,
    lb.
    Spring Rate,
    lbf/in
    Material
    End Type
    Each
    1 1/4"5/8"7"0.156"0.281"5.25"25%430250Spring SteelClosed and Ground9624K26000000
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