ASTM F712-2006(2018) Standard Test Methods and Specifications for Electrically Insulating Plastic Guard Equipment for Protection of Workers《工人防护用电绝缘塑料防护设备的标准试验方法和规范》.pdf

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ASTM F712-2006(2018) Standard Test Methods and Specifications for Electrically Insulating Plastic Guard Equipment for Protection of Workers《工人防护用电绝缘塑料防护设备的标准试验方法和规范》.pdf_第1页
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ASTM F712-2006(2018) Standard Test Methods and Specifications for Electrically Insulating Plastic Guard Equipment for Protection of Workers《工人防护用电绝缘塑料防护设备的标准试验方法和规范》.pdf_第5页
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1、Designation: F712 06 (Reapproved 2018)Standard Test Methods and Specifications forElectrically Insulating Plastic Guard Equipment forProtection of Workers1This standard is issued under the fixed designation F712; the number immediately following the designation indicates the year of originaladoption

2、 or, in the case of revision, the year of last revision.Anumber in parentheses indicates the year of last reapproval.Asuperscriptepsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 These test methods cover three electrical tests on plasticguards and assembled g

3、uard systems. They are:1.1.1 Method AWithstand voltage proof test,1.1.2 Method BFlashover voltage, and1.1.3 Method CLeakage current.1.1.4 This specification covers plastic guard equipment andguard systems used by workers for temporary insulation onelectric power circuits.1.1.5 Plastic guard equipmen

4、t covered by this specificationis rated for momentary, or brush contact only. Maximum-usevoltages are covered in Table 1 and Table 2.1.2 These test methods cover, but are not limited to, thefollowing typical guards:1.2.1 Conductor Guards and Connecting Covers as follows:1.2.1.1 Line guards,1.2.1.2 L

5、ine guard connectors,1.2.1.3 Insulator covers,1.2.1.4 Dead-end covers,1.2.1.5 Bus guards, and1.2.1.6 Bus “T” guards.1.2.2 Structure and Apparatus Covers as follows:1.2.2.1 Pole guards,1.2.2.2 Ridge pin covers,1.2.2.3 Switch blade covers,1.2.2.4 Arm guards,1.2.2.5 Cutout covers,1.2.2.6 Structural bar

6、riers, and1.2.2.7 Cross arm guard.1.3 It is common practice for the user of this equipment toprepare instructions for the correct use and maintenance.1.4 The use and maintenance of this equipment is beyondthe scope of these test methods.1.5 This standard does not purport to address all of thesafety

7、concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety, health, and environmental practices and deter-mine the applicability of regulatory limitations prior to use.1.6 The values stated in inch-pound units are to be regardedas

8、 standard. The values given in parentheses are mathematicalconversions to SI units that are provided for information onlyand are not considered standard.1.7 This international standard was developed in accor-dance with internationally recognized principles on standard-ization established in the Deci

9、sion on Principles for theDevelopment of International Standards, Guides and Recom-mendations issued by the World Trade Organization TechnicalBarriers to Trade (TBT) Committee.2. Referenced Documents2.1 ASTM Standards:2D149 Test Method for Dielectric Breakdown Voltage andDielectric Strength of Solid

10、 Electrical Insulating Materialsat Commercial Power FrequenciesD256 Test Methods for Determining the Izod PendulumImpact Resistance of PlasticsD570 Test Method for Water Absorption of Plastics2.2 IEEE Standard:3IEEE 978 Guide for In-Service Maintenance and ElectricalTesting for Live-Line Tools2.3 AN

11、SI Standard:4C39.5 Safety Requirements for Electrical and ElectronicMeasuring and Controlling Instrumentation2.4 UL Standard:594 Tests for Flammability of Plastic Materials for Parts inDevices and Appliances1These test methods are under the jurisdiction of ASTM Committee F18 onElectrical Protective

12、Equipment for Workers and are the direct responsibility ofSubcommittee F18.25 on Insulating Cover-Up Equipment.Current edition approved April 15, 2018. Published April 2018. Originallyapproved in 1981. Last previous edition approved in 2011 as F712 06 (2011).DOI: 10.1520/F0712-06R18.2For referenced

13、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 Institute of Electrical and Electronics Engineers, Inc. (IEEE

14、),445 Hoes Ln., P.O. Box 1331, Piscataway, NJ 08854-1331, http:/www.ieee.org.4Available from American National Standards Institute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 10036, http:/www.ansi.org5Available from Underwriters Laboratories (UL), 333 Pfingsten Rd.,Northbrook, IL 60062-2096, http

15、:/.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United StatesThis international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for theDevelopment of In

16、ternational Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.13. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 insulating plastic guardsdevices for temporary in-stallation on structures or energized electri

17、c power circuits forelectrical protection of personnel or equipment, or both.3.1.2 self extinguishingrelates to a property of a plasticmaterial compounded so as to cease combustion on removal ofthe source that caused ignition.4. Significance and Use4.1 All three tests may be used for product design

18、qualifi-cation.4.2 This specification covers the minimum electrical,chemical, and physical properties designated by the manufac-turer and the detailed procedures by which such properties areto be determined. The purchaser has the option to perform orhave performed any of these tests and may reject e

19、quipmentthat fails to meet the standard criteria. Claims concerningfailure to meet the specification are subject to verification bythe manufacturer.4.3 Plastic guard equipment is used for protection againstaccidental brush contact by the worker.Amargin of safety shallbe provided between the maximum

20、voltage at which they areused and the proof-test voltage at which they are tested. Thisrelationship is shown in Table 1 and Table 2. The equipment isdesigned only for phase-to-ground or covered phase-to-covered-phase exposure.NOTE 1Rubber insulating equipment is realistically limited to Class 4mater

21、ial in the design specification standards. Plastic guard equipment hasbeen designed to go beyond these voltages and provide a satisfactorydegree of worker protection. Major differences exist in use criteriabetween the rubber and the plastic guard equipment. Each glove, sleeve,or other article of rub

22、ber insulating equipment has a given safety factor forthe phase to phase voltage on which it may be used and the class or proofvoltage at which it is tested. Plastic guard equipment, however, is designedto provide a satisfactory safety factor only when used in a phase-to-groundexposure. If exposure

23、is phase-to-phase, then a satisfactory safety factor isonly provided if the exposure is covered-phase-to-covered-phase.4.4 Work practices vary from user to user, dependent uponmany factors. These may include, but are not limited to,operating system voltages, construction design, work proce-dure tech

24、niques, weather conditions, etc. Therefore, except forthe restrictions set forth in this specification because of designlimitations, the use and maintenance of this equipment isbeyond the scope of this specification.4.5 It is common practice and the responsibility of the userof this type of protecti

25、ve equipment to prepare completeinstructions and regulations to govern in detail the correct andsafe use of such equipment.5. Apparatus5.1 Voltage Source and Test TechniquesSee Test MethodD149. The test equipment shall have adequate power andprovide relatively stepless variable test voltage that can

26、 beraised at a rate of approximately 1000 Vs ac or 3000 Vs dc.5.2 Energized Inner Electrodes , in accordance with Table 3and Table 4. The length should be sufficient to extend past theends of the guard or guard assemblies where appropriate.5.3 Outer Ground ElectrodeA conductive material withsize and

27、 location as indicated in Table 3.5.4 Shielded CableTo reduce the “room influence” whenconducting ac leakage tests, the cable from the pickup elec-trode to the current-measuring device should be a shieldedcable with the cable shield grounded.6. Sampling6.1 Design tests of each product model shall be

28、 conductedto verify that the requirements of Table 1 and Table 2 are met.6.2 Design TestsSamples shall consist of sufficient speci-mens of each product used in a specific guard system to formone of each assembly intended for field use.6.2.1 The design tests will be used to qualify a specificproduct

29、model and normally will not be repeated duringproduction.6.2.2 Acceptance Tests A test sample shall consist of oneor more specimens dependent on the percentage of the lotbeing tested.6.2.3 A lot is represented either by all the guards producedin one production run or in one shipment.6.2.4 Lots of ne

30、w or unused guards shall have test speci-mens selected at random.7. Classification7.1 Guards are furnished in three types of materials speci-fied in Section 9 and explained as follows:TABLE 1 Withstand Voltage Proof TestAClass Rating,kVMax Use60 HzProof Test Withstand Voltage(in-service testing)Crit

31、eria0-0A0-Ground 0-Ground kVDuration,min60 Hz DC2 14.6 8.4 13.0 18 1 No flashoverother thanmomentaryas a result oftoo-closespacing ofelectrode3 26.4 15.3 24.0 34 14 36.6 21.1 32.0 45 15 48.3 27.0 42.0 60 0.56 72.5 41.8 64.0 91 0.25ACover-up materials are tested at values greater than the maximum use

32、 phase toground values. The maximum use phase to phase values relate to guarded phaseto guarded phase. The units are not rated for bare phase to guarded phasepotentials.TABLE 2 Minimum Flashover TestARating,kVMax Use60 HzMin Flashover VoltageTest -Ground kVCriteria0-0A0-Ground 60 Hz DC2 14.6 8.4 14.

33、0 20 No flashoverother thanmomentaryas a result oftoo-closespacing ofelectrode3 26.4 15.3 25.0 354 36.6 21.1 34.0 485 48.3 27.0 43.0 616 72.5 41.8 67.0 95ACover-up materials are tested at values greater than the maximum use phase toground values. The maximum use phase to phase values relate to guard

34、ed phaseto guarded phase. The units are not rated for bare phase to guarded phasepotentials.F712 06 (2018)27.1.1 Type I guards are constructed of plastic materialhaving mechanical impact properties suitable for cold weatherservice.7.1.2 Type II guards have self-extinguishing plastic con-struction.7.

35、1.3 Type III guards are constructed of self-extinguishingplastic material having mechanical impact properties suitablefor cold weather service.7.2 Guards are furnished in three grades in accordance withprovisions for installation as follows:7.2.1 Grade 1 guards have hot stick handles attached forins

36、tallation.7.2.2 Grade 2 guards are equipped with eyes for installationwith removable hot sticks.7.2.3 Grade 3 guards are intended for applications where theusual installation is by hand. These guards are equipped withrope loops, or their equivalent, so their removal may beaccomplished with hot stick

37、s.7.2.3.1 ExamplePole guards installed on a pole prior toraising it close to overhead line conductors. After the pole israised the guard is opened with hot sticks and allowed to slidedown the pole where it can be safely removed by hand.7.3 Guards are made in five classes in accordance with thevoltag

38、e ratings in Annex A1.8. Ordering Information8.1 Orders for guards under this specification shall includethe designation ASTM Specification F712 and should includethe following information.8.1.1 Quantity,8.1.2 Name-description of guard or cover,8.1.3 Type, see 7.1.1 through 7.1.3,8.1.4 Grade, see 7.

39、2.1 through7.2.3,8.1.5 Class, see Table 1, Table 2,orTable 4,8.1.6 Size, if applicable, see Section 11.NOTE 2Atypical ordering description is as follows: 100 Line Guards,ASTM Specification F712, Type I, Grade 1, Class 3A, 4.5-ft long.NOTE 3It is expected that manufacturers will publish catalog datac

40、onforming to this specification that will combine the requirements of8.1.2 and 8.1.6 in a single product number. With that system, a typicalorder description is: 100 (Smith Manufacturing Co., Product No. XXXX)Line Guards, ASTM Specification F712.9. Materials9.1 Principal construction of insulating b

41、ody shells shall bein accordance with the material requirements as follows:9.1.1 Type I GuardsMinimum 1.5 ftlbf/in. (80.06 J/m ofnotch) notched izod impact strength at 20F(29C); maxi-mum water absorption 0.1 % by weight; minimum 380 V/mL(0.025 mm) dielectric strength.9.1.2 Type II GuardsMinimum 1.0

42、ftlbf/in. (53.4 J/m)notched izod impact strength at 20F (29C); maximumwater absorption 0.5 % by weight; minimum 320 V/mL (0.025mm) dielectric strength; 94 V-O flame retardancy.9.1.3 Type III GuardsMinimum 3.0 ftlbf/in. (160.1 J/m ofnotch) notched izod impact strength at 20F(29C); maxi-mum water abso

43、rption 0.09 % by weight; minimum 300 V/mL(0.025 mm) dielectric strength; 94 V-O flame retardancy.TABLE 3 Typical Electrodes for Testing Plastic Guard EquipmentType of Guards Energized Inner Electrode for All TestsAOuter Ground ElectrodeAProof Test Flashover and Leakage TestsLine guards and line guar

44、d Round metal tube or bar. Complete electodeBshall be 4 by 6-in. flexible conductive padconnectors spaced back from openings placed alternately on all exteriorInsulator covers and deadened Maximum conductor, hardware and insulator assembly for through which the energized surfaces and across conducto

45、rcovers which rated or similar mock-up including mandrelCof electrode protrudes during the opening of guard and assembledconductive material approximate.Dtest only as necessary to avoid guard system joints spaced backPole guards, ridge pin andERound metal tube, fabricated mandrelCflashover. Therefor

46、e, the entire from openings through which theswitch blade covers or cluster small metal tubes.Darea of each cover shall be tested energized electrode protrudesas nearly as practical. during the test only as necessaryArm guards Round or rectangular metal tube or fabricated mandrel.DCto avoid flashove

47、r at outer ends.Cutout covers Largest cutout with bare leads covered with equal ratedline hose. Or similar mock-up including mandrelCofconductive material.DStructural barrier Rectangular metal sheets approximately 3 mm (0.06 in.)thick, having smoothly rounded edges and corners,have been found to be

48、satisfactory for this purpose.Also satisfactory are wet felt or sponge-top electodes.AMoistened electrodes may be secured with rubber straps or blanket pins. Pressure-sensitive tape is helpful in securing dry metal foil electrodes.BSuitable materials include: metal foil or screen; tap water-moistene

49、d sponge sheeting, or blanket made of wool, or similar material including synthetics.CThin metal sheet or screen wire secured on wood frames make suitable electrodes. Carved synthetic sponge moistened with tap water is suitable for small forms.DThe dimensions of the mandrel are to approximate the maximum size of equipment to which the guard system is to be applied.EMetal canisters made for storing rubber blankets make suitable electrodes for pole guard tests.TABLE 4 Inner Electrode SizesClassARatingMax Use Inner Electrode Diameter, in

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