Product category:
Springs, dampers, latches, locks and small components
News Release from: Lee Spring | Subject: Redux wave springs
Edited by the Engineeringtalk Editorial
Team on 14 April 2008
Springs cut height requirements
Lee Spring's Redux wave springs offer optimum performance in static or slightly dynamic applications where space is critical or where radial and axial tolerances are tight.
New constant force and Redux wave springs have been added to Lee Spring's portfolio of products, increasing its stock spring range to over 15,500 different types of spring Custom designs in both springs are also available
This article was originally published on Engineeringtalk on 7 Feb 2000 at 8.00am (UK)
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Manufactured from high yield 301 stainless steel strip the constant force springs exert a near constant restraining force to resist uncoiling.
This natural inbuilt stress resists load at an even rate and makes them suitable for use in retractor mechanisms.
Common applications include counterbalance springs, car seat belts and cable retractors.
Constant force springs are usually tightly coiled on a drum and either the free end or the drum can be attached to the load.
Four life cycle ranges are offered: 2500, 4000, 13000 and 25000 covering loads from 1.02 to 73.42N.
Lengths vary from 356 to 1524mm, thicknesses from 0.10 to 0.51mm and widths from 6.35 to 31.75mm.
Wave springs perform a similar function to compression springs but they take up to approximately 50% less compressed height space due their sine wave desig,n which allows tangential contact.
These springs also offer greater control of axial movement and consistent load transfer.
Produced in stainless steel type 17-7 PH Lee Spring's Redux wave springs offer optimum performance in static or slightly dynamic applications where space is critical or where radial and axial tolerances are tight.
Stock sizes range from rod sizes of 6.35 to 25.40mm to suit hole diameters from 9.53 to 31.75mm and in spring rates from 1.58 to 52.21N/mm. Request a free brochure from Lee Spring ...
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