• There are no items in your cart
We noticed you’re not on the correct regional site. Switch to our AMERICAS site for the best experience.
Dismiss alert

BS 8726-1:2002

Current

Current

The latest, up-to-date edition.

Cylindrical helical springs made from rectangular and square section wire and bar. Guide to calculation and design Compression springs

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

25-09-2002

Foreword
1 Scope
2 Normative references
3 Terms, definitions and symbols
4 General
5 Methods of calculation
6 Tolerances
7 Specifying springs for general purposes
8 Methods of verification
Annex A (informative) Modulus of rigidity of some materials
Annex B (informative) Typical tolerances on rectangular
        section material
Figures
Tables

Gives guidance on the design of parallel sided helical compression springs manufactured from rectangular and square section wire and bar. It applies only to springs made from rectangular section material where the ratio of radial dimension, to the axial dimension, is upto 2.5 and not less than 0.4.

This British Standard provides guidance on the design of parallel sided helical compression springs manufactured from rectangular and square section wire and bar.

This standard applies only to springs made from rectangular section material where the ratio of radial dimension, b, to the axial dimension, h, termed the shape factor, m, is not greater than 2.5 and not less than 0.4.

NOTE1 This applies because, outside the shape factor range 2.5 to 0.4, it is difficult to coil a spring accurately.

NOTE2 There are numerous methods of calculating the parameters necessary for the design of springs and initially the designer is free to use any one of these.

Three types of end coils are provided for, i.e. open end, closed end and closed and ground end, the last of these being applicable only to springs where the axial dimension of material is 0.5mm or greater.

This British Standard differentiates between springs that have or have not been stress relieved after forming, designated group A springs, and springs, the material of which has undergone a structural change by heat treatment after forming, designated group B springs.

This British Standard gives two methods of specifying springs for general purposes and one method of testing springs.

Committee
FME/9/3
DevelopmentNote
Supersedes 02/702405 DC Together with BS 1726-1(2002) and BS EN 13906-1, supersedes BS 1726-1(1987) (10/2002) Reviewed and confirmed by BSI, May 2009. (04/2009)
DocumentType
Standard
Pages
34
PublisherName
British Standards Institution
Status
Current
Supersedes

BS 8726-2:2002 Cylindrical helical springs made from rectangular and square section wire and bar. Guide to calculation and design Torsion springs

BS 5204-2:1977 Specification for straightedges Steel or granite straightedges of rectangular section
BS 957-2:1969 Specification for feeler gauges Metric units
BS 969:1982 Specification for limits and tolerances on plain limit gauges
BS 5317:1976 Specification. Metric length bars and their accessories
BS 541:1985 Method for determination of the Rideal-Walker coefficient of disinfectants
BS 5204-1:1975 Specification for straightedges Cast iron straightedges (bow shaped and I-section)
BS 939:1977 Specification for engineers\' squares (including cylindrical and block squares)
BS 6365:1983 Specification for precision vernier depth gauges
BS EN ISO 7500-1:2015 Metallic materials — Calibration and verification of static uniaxial testing machines Part 1: Tension/compression testing machines — Calibration and verification of the force-measuring system
BS EN ISO 3650:1999 Geometrical product specifications (GPS). Length standards. Gauge blocks

View more information
£232.00
Excluding VAT

Access your standards online with a subscription

Features

  • Simple online access to standards, technical information and regulations.

  • Critical updates of standards and customisable alerts and notifications.

  • Multi-user online standards collection: secure, flexible and cost effective.