ASTM F855-2004 Standard Specifications for Temporary Protective Grounds to Be Used on De-energized Electric Power Lines and Equipment《断开的电力线及设备上使用的临时保护性接地装置的标准规范》.pdf
《ASTM F855-2004 Standard Specifications for Temporary Protective Grounds to Be Used on De-energized Electric Power Lines and Equipment《断开的电力线及设备上使用的临时保护性接地装置的标准规范》.pdf》由会员分享,可在线阅读,更多相关《ASTM F855-2004 Standard Specifications for Temporary Protective Grounds to Be Used on De-energized Electric Power Lines and Equipment《断开的电力线及设备上使用的临时保护性接地装置的标准规范》.pdf(19页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F 855 04Standard Specifications forTemporary Protective Grounds to Be Used on De-energizedElectric Power Lines and Equipment1This standard is issued under the fixed designation F 855; the number immediately following the designation indicates the year oforiginal adoption or, in the case
2、 of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 These specifications cover the equipment making up thetemporary grounding system used on de
3、-energized electricpower lines, electric supply stations, and equipment.1.2 It is common practice for the users of protectivegrounding equipment to prepare complete instructions andregulations to govern in detail the correct use and maintenanceof such equipment.1.3 The uses and maintenance of this e
4、quipment are beyondthe scope of these specifications.1.4 These specifications for a system of protective ground-ing utilizing copper cables are covered in four parts, as follows:SectionsClamps for Temporary Protective Grounds 4-16Ferrules for Temporary Protective Grounds 17-30Cables for Temporary Pr
5、otective Grounds 31-39Protective Grounds (Complete Assembly With Clamps, Ferrules,and Cable)40-521.5 Each of the four parts is an entity of itself, but is listedas a part of the system for completeness and clarification.1.6 The values stated in Newton-Meter units are to beregarded as the standard. T
6、he values in parentheses are theinch-pound units.1.7 Currents presented in Table 1 and Table 2 are basedupon cable melting times, as determined from equations by I.M. Onderdonk. See Appendix X3.1.7.1 Currents presented in Table 3 were determined by useof EPRI Project RP2446 Computer Program RTGC “A
7、Desk-top Computer Program for Calculating Rating of TemporaryGrounding Cables.”1.7.2 SeeAppendix X3 andAppendix X4 for a discussion ofthese values.1.8 The following precautionary caveat pertains to the testmethod portions, Sections 12 and 25 of these specifications:This standard does not purport to
8、address all of the safetyconcerns, if any, associated with its use. It is the responsibilityof the user of this standard to establish appropriate safety andhealth practices and determine the applicability of regulatorylimitations prior to use.2. Referenced Documents2.1 ASTM Standards:2B 172 Specific
9、ation for Rope-Lay-Stranded Copper Con-ductors Having Bunch-Stranded Members, for ElectricalConductorsB 173 Specification for Rope-Lay-Stranded Copper Con-ductors Having Concentric-Stranded Members, for Elec-trical ConductorsB 263 Test Method for Determination of Cross-SectionalArea of Stranded Cond
10、uctorsD 470 Test Methods for Cross-linked Insulations and Jack-ets for Wire and CableD 753 Specification for General-Purpose PolychloropreneJacket for Wire and CableD 2219 Specification for Poly(Vinyl Chloride) Insulationfor Wire and Cable, 60 OperationD 2633 Methods of Testing Thermoplastic Insulat
11、ions andJackets for Wire and CableD 2768 Specification for General-Purpose Ethylene Propy-lene Rubber Jacket for Wire and CableD 2770 Specification for Ozone-Resisting Ethylene Propy-lene Rubber Integral Insulation and Jacket for Wire andCableE 8 Test Methods of Tension Testing of Metallic Materials
12、2.2 ANSI Standard:C 37.09 Standard Test Procedure for AC High-VoltageCircuit Breakers Rated on a Symmetrical Basis32.3 ICEA/NEMA Standard:ICEA S-19-81/NEMA WC 80 (R 1986) Rubber InsulatedWire and Cable for the Transmission and Distribution ofElectrical Energy42.4 IEC Standard:1These specifications a
13、re under the jurisdiction of ASTM Committee F18 onElectrical Protective Equipment for Workers and are the direct responsibility ofSubcommittee F18.45 on Mechanical Apparatus.Current edition approved Sept. 1, 2004. Published September 2004. Originallyapproved in 1983. Last previous edition approved i
14、n 2003 as F 855 03.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from American National Standard
15、s Institute, 11 West 42nd St., 13thFloor, New York, NY 10036.4Available from Insulated Cable EngineersAssoc., P.O. Box P, South Yarmouth,MA 02664.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.IEC 1230 Portable Equipment for Earthin
16、g or Earthing andShort-Circuiting (currently under review)52.5 IEEE Standard:IEEE 386 Standard for Separable Insulated Connector Sys-tems for Power Distribution Systems Above 600V3. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 continuous current ratingdesignated RMS currentwhi
17、ch can be carried continuously under specified conditions.3.1.2 protective ground assemblya temporary electricalconnection between a source of potential energization and theearth, rated for the maximum anticipated fault current orcontinuous induced current, or both.3.1.2.1 DiscussionThroughout this
18、specification, kcmil = 1000 circular mils.3.1.3 protective grounding equipmentdevices installedtemporarily on de-energized electric power circuits for thepurposes of potential equalization and to conduct a short circuitcurrent for a specified duration (time).3.1.4 time to failurefailure time of the
19、cable is the timebetween the initiation of current flow and the instant at whicharcing begins.3.1.5 ultimate capacitythis represents a current which it iscalculated the component is capable of conducting for thespecified time. It is expected that component damage mayresult. The component shall not b
20、e reused, except in testsituations.3.1.6 withstand ratingthis represents a near symmetricalcurrent which shall be conducted without any component beingdamaged sufficiently to prevent being operable and reusable.The protective ground shall be capable of passing a second testat this current after bein
21、g cooled to ambient temperature.CLAMPS FOR TEMPORARY PROTECTIVEGROUNDS4. Scope4.1 This specification covers clamps used with ferrules andelastomer or thermoplastic covered flexible cable in the manu-facture of protective grounds installed temporarily for protec-tive grounding of de-energized circuit
22、s.5Available from IEC.TABLE 1 Protective Ground Clamp RatingsGradeGrounding Clamp TorqueStrength, minShort Circuit PropertiesAContinuousCurrentRating, ARMS, 60HzMinimum Ca-ble Size withFerrule In-stalled Equalor LargerThanYieldBUltimateWithstand Rating, SymmetricalkARMS, 60 HzUltimate Rating/Capacit
23、y,CDSymmetricalkARMS, 60 Hzlbfin. nm lbfin. nm15cycles(250 ms)30 cycles(500ms)Copper CableSize6 cycles(100 ms)15cycles(250ms)30cycles(500ms)60cycles(1 s)MaximumCopper TestCable Size1 280 32 330 37 14 10 #2 29 18 13 9 2/0 200 #22 280 32 330 37 21 15 1/0 47 29 21 14 4/0 250 1/03 280 32 330 37 27 20 2/
24、0 58 37 26 18 4/0 300 2/04 330 37 400 45 34 25 3/0 74 47 33 23 250 kcmil 350 3/05 330 37 400 45 43 30 4/0 94 59 42 29 250 kcmil 400 4/06 330 37 400 45 54 39 250 kcmil or2 2/0111 70 49 35 350 kcmil 450 250 kcmilor 2 2/07 330 37 400 45 74 54 350 kcmil or2 4/0155 98 69 48 550 kcmil 550 350 kcmilor 2 4/
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