Specially designed for preloading the outer ring of ball bearings. C1075 steel. Also known as belleville washers.
Ensures perfect bearing positioning with no sideways play. May be used to provide bearing preload. Load tolerance +/- 20% of load shown.
Also known as belleville washers.
Manufactured under strict quality control to conform to DIN 2093.
Used under the nuts or bolt head in bolted flange joints that are subject to thermal or mechanical shock. Also known as belleville washers.
The discs deflect and move with the bolted joint. Helps to compensate for loosening that may develop preventing damage and leaks caused by thermal expansion, contraction and shock. Made from 17.7 PH Stainless Steel. Temperature range minus 220 to +300o Celsius. Load tolerance +/- 20% of load shown.
Also known as belleville washers.
Not for constant spring forces or when high forces are needed. Provides flat spring characteristics and compensates for axial clearances and tolerances. Vibration dampening and noise reduction. Electrical and thermal insulation. Non magnetic - Polysorb(R) material.
Also known as belleville washers.
Manufactured under strict quality control to conform to DIN 2093.
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Snaps
Plated formed steel. For quick connecting and disconnecting of cable, rope and chain assemblies.
Plated formed steel. For quick connecting and disconnecting of cable, rope and chain assemblies.
Plated formed steel. For quick connecting and disconnecting of cable, rope and chain assemblies.
Budget Assemblies. Average fatigue life of 5000 to 30000 cycles.
Springs : 301 Stainless Steel. Average fatigue life of 5,000 to 30,000 cycles.
301 stainless Steel. Shipped as shown to be mounted on drums (not supplied) of the recommended diameters. Torque ratings listed are for the unwinding portion of the cycle. Torque at fully wound end of cycle will be slightly higher.
Conical 302 Stainless steel springs
Solid height lower than a standard compression spring due to the conical shape. Ends are closed. Starting rate is the same as the kg/mm rate.
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1 metre and 914mm lengths
Music wire to Din 17223 Class C. No. 1,1200. Stainless Steel wire to Din 17224 No. 1,4310.
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1 metre and half metre lengths
Music wire to Din 17223 Class C. No. 1,1200. Stainless Steel wire to Din 17224 No. 1,4310.
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This category includes short and long lengths
Standard springs may or may not be supplied with ends ground flush. If the end type is important to your application please contact us for more information or a special quote.
Related Information:
This category includes short and long lengths
Standard springs may or may not be supplied with ends ground flush. If the end type is important to your application please contact us for more information or a special quote.
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Drawbar springs have long steel loops that pass through the centre of the spring and hook around the opposite end, compressing the spring on loading.
This design helps prevent unexpected overloading and fracturing that can occur in standard extension springs by stopping and hold the load at the spring limit. The spring rate indicates the load required to pull out the first 25mm of the spring.
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Drawbar springs have long steel loops that pass through the centre of the spring and hook around the opposite end, compressing the spring on loading.
This design helps prevent unexpected overloading and fracturing that can occur in standard extension springs by stopping and hold the load at the spring limit. The spring rate indicates the load required to pull out the first 25mm of the spring.
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301 Stainless Steel
Mounting hole specifications will be supplied on request. These springs are usually mounted on a drum and the free end attached to a loading force like a counterbalance. Free ID may vary to meet load specification. Load capacity can be increased by using multiple strips in tandem, back to back or laminated. Be sure to leave at least 40mm coiled on the drum at full extension. The spring ID will wrap tightly on the drum so that most applications require no fastening to the drum.
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Vapor degassed high tensile strength chromium alloy steel. Spring ends are ground square. Designed for long life cycle with constant high end deflections and shot peened to increase fatigue life.
Colour coded green. Efficient operating range is 15 to 20 percent of the length. Maximum deflection is 25 percent of the length.
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Vapor degassed high tensile strength chromium alloy steel. Spring ends are ground square. Designed for long life cycle with constant high end deflections and shot peened to increase fatigue life.
Colour coded gold. Efficient operating range is 15 to 25 percent of the length. Maximum deflection is 30 percent of the length.
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Chrome silicon die springs are longer lasting than high carbon steel. Shot peened to reduce working stress and to improve the surface.
Colour coded gold. Efficient operating range is 15 to 20 percent of the length. Maximum deflection is 30 percent of the length.
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Vapor degassed high tensile strength chromium alloy steel. Spring ends are ground square. Designed for long life cycle with constant high end deflections and shot peened to increase fatigue life.
Colour coded blue. Efficient operating range is 25 to 40 percent of the length. Maximum deflection is 50 percent of the length.
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Chrome silicon die springs are longer lasting than high carbon steel. Shot peened to reduce working stress and to improve the surface.
Colour coded blue. Efficient operating range is 25 to 35 percent of the length. Maximum deflection is 50 percent of the length.
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Vapor degassed high tensile strength chromium alloy steel. Spring ends are ground square. Designed for long life cycle with constant high end deflections and shot peened to increase fatigue life.
Colour coded red. Efficient operating range is 20 to 30 percent of the length. Maximum deflection is 37 percent of the length.
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Chrome silicon die springs are longer lasting than high carbon steel. Shot peened to reduce working stress and to improve the surface.
Colour coded red. Efficient operating range is 20 to 25 percent of the length. Maximum deflection is 37 percent of the length.
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Colour coded red
High tensile strength chromium alloy steels. Heat Resistance: Up to +230oC (Loss of load occurs above +120oC). Spring Ends: Squared and ground. For compressed length, Subtract Deflection from Free Length.
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Colour coded green
High tensile strength chromium alloy steels. Heat Resistance: Up to +230oC (Loss of load occurs above +120oC). Spring Ends: Squared and ground. For compressed length, Subtract Deflection from Free Length.
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Colour coded blue
High tensile strength chromium alloy steels. Heat Resistance: Up to +230oC (Loss of load occurs above +120oC). Spring Ends: Squared and ground. For compressed length, Subtract Deflection from Free Length.
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Includes long lengths up to 1 metre
Zinc Plated Spring Steel not recommended for applications exceeding 121 oC (250 Deg F). 302 Stainless springs not recommended for applications exceeding 260 oC (500 Deg F). 302 stainless steel is slightly magnetic.
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Includes long lengths up to 1 metre
Zinc Plated Spring Steel not recommended for applications exceeding 121 oC (250 Deg F). 302 Stainless springs not recommended for applications exceeding 260 oC (500 Deg F). 302 stainless steel is slightly magnetic.
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Free Deflection denotes the angle of the legs in the unloaded starting position
Load should be applied at about half the leg length.
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Free Deflection denotes the angle of the legs in the unloaded starting position
Load should be applied at about half the leg length.
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Neoprene elastomer springs have proven to be the safest, most efficient material for punching, stamping and drawing dies.
Major advantages include high loads, increased durability, better performance, no maintenance and long life.
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Urethane springs are designed for use in applications where corrosion, vibration or magnetism prevent the use of conventional steel springs.
They replace steel coil springs in medium pressure applications involving space limitations, high blank holding pressure and adequate stripping. Durometer 95 shore A. Colour black. Tensile strength 5000 psi. Temperature range minus 40 to 80 oC.
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White acetal plastic handle . 303 stainless steel body and plunger.
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Black acetal plastic handle . Black oxide coated steel body and plunger.
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
White acetal plastic handle . 303 stainless steel body and plunger.
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Black acetal plastic handle . Black oxide coated steel body and plunger.
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Steel body with acetal nose
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Stainless body with phenolic nose
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Steel body with acetal nose
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Stainless body with acetal nose
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
Stainless body with phenolic nose
Items shown with Long-Lok have a dry threadlocking sealant applied to thread.
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