ASTM F2522-2012 Standard Test Method for Determining the Protective Performance of a Shield Attached on Live Line Tools or on Racking Rods for Electric Arc Hazards《测定带电线路工具或齿条上用于防电.pdf
《ASTM F2522-2012 Standard Test Method for Determining the Protective Performance of a Shield Attached on Live Line Tools or on Racking Rods for Electric Arc Hazards《测定带电线路工具或齿条上用于防电.pdf》由会员分享,可在线阅读,更多相关《ASTM F2522-2012 Standard Test Method for Determining the Protective Performance of a Shield Attached on Live Line Tools or on Racking Rods for Electric Arc Hazards《测定带电线路工具或齿条上用于防电.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F2522 12Standard Test Method forDetermining the Protective Performance of a ShieldAttached on Live Line Tools or on Racking Rods for ElectricArc Hazards1This standard is issued under the fixed designation F2522; the number immediately following the designation indicates the year oforigi
2、nal adoption or, in the case of revision, the year 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 test method is used to determine the heat attenua-tion fact
3、or (HAF), the effective heat attenuation factor (EHAF),and the shields mechanical strength (SMS) of a shield attachedon live line tools or racking rods intended for protection ofworkers exposed to electric arcs.1.2 The materials used in this test method of workerprotection are in the form of a shiel
4、d attached on live line toolsor on the racking rods.1.3 The protective shield described in this test method shallbe transparent and shall be easily attached and removed fromlive line tools or from racking rods.1.4 The protective shield described in this test method has24-in. (0.61-m) diameter and ca
5、n be used for most applications,however for special cases, the shield can have different sizes tosuit the protective requirements of the application.1.5 This standard shall be used to measure and describe theproperties of materials, products, or assemblies in response toincident energies (thermal-co
6、nvective, and radiant and pressurewave) generated by an electric arc under controlled laboratoryconditions and does not purport to predict damage from light,resultant pressure impact other than the pressure and thermalaspects measured.1.6 The values stated in inch-pound units are to be regardedas st
7、andard. The values given in parentheses are mathematicalconversions to SI units that are provided for information onlyand are not considered standard.1.7 This standard shall not be used to describe or appraisethe fire hazard or fire risk of materials, products, or assembliesunder actual fire conditi
8、ons. However, results of this test maybe used as elements of a fire assessment, which takes intoaccount all of the factors, which are pertinent to an assessmentof the fire hazard of a particular end use.1.8 This standard does not purport to address all of thesafety concerns, if any, associated with
9、its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. For specificprecautions, see Section 7.2. Referenced Documents2.1 ASTM Standards:2D4391 Terminology Relating to
10、 The Burning Behavior ofTextilesF1959/F1959M Test Method for Determining theArc Ratingof Materials for Clothing3. Terminology3.1 Definitions:3.1.1 arc, nconductive path in air for the electric currentcaused by ionization of air between two electrodes.3.1.2 arc duration, ntime duration of the arc, s.
11、3.1.3 arc energy, vi dt, nsum of the instantaneous arcvoltage values multiplied by the instantaneous arc currentvalues multiplied by the incremental time values during thearc, J.3.1.4 arc gap, ndistance between the arc electrodes, cmin.3.1.5 arc voltage, nvoltage across the gap caused by thecurrent
12、flowing through the resistance created by the arc gap,V. See also Terminology D4391.3.1.6 asymmetrical arc current, nthe total arc currentproduced during closure; it includes a direct component and asymmetrical component, A.3.1.7 blowout, nthe extinguishing of the arc caused by amagnetic field.3.1.8
13、 closure, npoint on supply current wave form wherearc is initiated.1This test method is under the jurisdiction of ASTM Committee F18 onElectrical Protective Equipment for Workers and is the direct responsibility ofSubcommittee F18.35 on Tools therefore, its mass shall be verysmall to reduce the chan
14、ce of molten metal burns. The fusewire shall be a copper wire with a diameter no greater than 0.02in. (0.0005 m).6.7 Electric SupplyThe electric supply should be suffi-cient to allow for the discharge of an electric arc with a gap ofup to 12 in. (0.305 m), with alternating arc current from 4000up to
15、 25 000 A and with arc duration from 3 cycles (0.05 s) upto 90 cycles (1.5 s) from a 60 Hz supply. The X/R ratio of thetest circuit shall be such that the test current contains a DCcomponent resulting in the first peak of the test current havinga magnitude of 2.3 times the symmetrical RMS value.6.8
16、Test Circuit ControlRepeat exposures of the arc cur-rents shall not deviate more than 2 % per test from the selectedtest level. The make switch shall be capable of point on waveclosing within 0.2 cycles from test to test, such that the closingangle will produce maximum asymmetrical current with anX/
17、R ratio of the test circuit as stated in 6.7. The arc current,duration, and voltage shall be measured. The arc, current,duration, voltage and energy shall be displayed in graph formand stored in digital format.6.9 Data Acquisition SystemThe system shall be capableof recording voltage, current, and s
18、ufficient calorimeter outputsas required by the test. The sensitivity and accuracy of the dataacquisition system shall be as described in Test MethodF1959/F1959M.6.10 Data Acquisition System ProtectionDue to the natureof this type of testing, the use of isolating devices on thecalorimeter outputs to
19、 protect the acquisition system is recom-mended.6.11 SensorsRefer to the calorimeters as described in TestMethod F1959/F1959M.7. Precautions7.1 The test apparatus discharges large amounts of energy.In addition, the electric arc produces very intense light. Cared1 = 24 in. (0.61 m), distance from the
20、 wall (back plate) to the arc electrodesd2=6in.(0.15m)(gap) between electrodesd3 = 53 in. (1.35 m), parallel distance of the hot stick or the racking rod above the floord4 = 24 in. (0.61 m), distance of the shield from the electrodesd5=4in.(0.10m),vertical distance between centers of S1 and S2S1 and
21、 S2 = 24.5 in. (0.62 m), approximate horizontal distance of the sensors from the electrodesS1, S2, S3, S4, S5, and S6 are located vertically, and S1 is 5 ft (1.52 m) from the arc centerFIG. 3 Test Set-up for EHAF Measurement with Shield on a Live Line ToolF2522 124should be taken to protect personne
22、l working in the area.Workers should be behind protective barriers or at a safedistance to prevent electrocution and contact with moltenmetal. Workers wishing to directly view the test should usevery heavily tinted glasses such as ANSI/ASC Filter Shade 12welding glasses. If the test is conducted ind
23、oors, there shall bea means to ventilate the area to carry away combustionproducts, smoke, and fumes. Air currents can disturb the arc,reducing the heat flux at the surface of any of the calorimeters.The test apparatus should be shielded by non-combustiblematerials suitable for the test area. Outdoo
24、r tests shall beconducted in a manner appropriate to prevent exposure of thetest specimen to moisture and wind (the elements). The leads tothe test apparatus should be positioned to prevent blowout ofthe electric arc. The test apparatus should be insulated fromground for the appropriate test voltage
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