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ASTM_F_2491_-_05_2015.pdf

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1、Designation:F249105(Reapproved 2015)Standard Guide forDetermining Load Ratios for Technical Rescue Systems andEquipment1This standard is issued under the fixed designation F2491;the number immediately following the designation indicates the year oforiginal adoption or,in the case of revision,the yea

2、r of last revision.A number in parentheses indicates the year of last reapproval.Asuperscript epsilon()indicates an editorial change since the last revision or reapproval.1.Scope1.1 This guide covers the general concept of determiningload ratios for technical rescue equipment and systems.1.2 The val

3、ues stated in SI units are to be regarded asstandard.No other units of measurement are included in thisstandard.1.3 In the event of any conflict between the text of this guideand any references cited,the text of this guide takes preference.1.4 This standard may involve hazardous materials,operations

4、,and equipment.This standard does not purport toaddress all of the safety concerns,if any,associated with itsuse.It is the responsibility of the user of this standard toestablish appropriate safety and health practices and deter-mine the applicability of regulatory limitations prior to use.2.Termino

5、logy2.1 Definitions of Terms Specific to This Standard:2.1.1 component,nan individual piece of equipment in itsusable form,but unconnected and unencumbered by otherpieces of equipment in a system.2.1.2 force multiplying situation,na situation where therigging causes a force on a component to be grea

6、ter thancaused by the load.2.1.3 load ratio,nratio between a specified breakingstrength and an anticipated load.2.1.4 strength reduction situation,na situation where therigging of the system causes a component to not perform at itsminimum breaking strength.An example would be a carabinerwith tri-axi

7、al forces.2.1.5 system,na group of components integrally con-nected for the purpose of accomplishing work.2.1.6 system safety factor,nthe ratio of the load at whichsomething in the system will fail and the load that is plannedto be applied to the system.2.1.7 user,na person,agency,or representative

8、who hasauthority to make safety-related decisions for rescue applica-tions as discussed herein.3.Significance and Use3.1 This guide may be used to provide a consistent methodfor determining load ratios for technical rescue equipment andsystems.3.2 Use of this guide will help to maintain clearer,more

9、consistent calculation and reporting of load ratios.3.3 It should be acknowledged that,while component loadratios are fairly straightforward to calculate,they are of limitedvalue for estimating system load ratios.System load ratios areusually desired for field applications,but are more difficult toc

10、alculate accurately.4.Load Ratio4.1 Load ratio refers to the ratio between the breakingstrength of the item and the load that the item is intended tosuspend.4.2 Various load ratios may be used for different reasons fora particular piece of equipment.4.2.1 A manufacturer may or may not have a specifi

11、eddesign factor,representing the ratio between the breakingstrength of the product and the working load(that is,the loadthat the product is designed to carry on a normal basis).4.2.2 Users of equipment may specify a load ratio forequipment that will help them to maintain system safety factorsthat ar

12、e acceptable within their own scope.4.2.3 The load ratio specified by an equipment user shall beno lower than that specified by the manufacturer,if themanufacturer specifies this information.4.3 Load ratio is applicable only to the component,and doesnot address how this component affects or is affec

13、ted by othercomponents in a system.4.4 Load ratios,when used,should always be determinedusing minimum breaking strength as the foundation(ratherthan average or maximum or other)5.System Safety Factor5.1 System safety factor refers to the ratio between thestrength of the calculated weakest point in a

14、 system and the1This guide is under the jurisdiction of ASTM Committee F32 on Search andRescue and is the direct responsibility of Subcommittee F32.01 on Equipment,Testing,and Maintenance.Current edition approved Dec.1,2015.Published December 2015.Originallyapproved in 2005.Last previous edition app

15、roved in 2010 as F249105(2010)1.DOI:10.1520/F2491-05R15.Copyright ASTM International,100 Barr Harbor Drive,PO Box C700,West Conshohocken,PA 19428-2959.United States1 anticipated load.This is to say that the weak point in a systemis however many times stronger than the load that will beplaced on the

16、system.5.2 System safety factors are,at best,a best guess estimate,and should be used conservatively.5.3 The weakest point in a system should be determined byusing minimum breaking strengths of components as a begin-ning point.5.3.1 Other appropriate factors that should be included inestimating the weakest point in a system include,but are notlimited to:5.3.1.1 Relationship between products(that is,how oneproduct affects another).5.3.1.2 Effects of age.5.3.1.3 Effects of environment(wet,dirty,UV

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