ASTM F711-2002(2013) Standard Specification for Fiberglass-Reinforced Plastic (FRP) Rod and Tube Used in Live Line Tools&8201 《带电作业工具用玻璃纤维增强塑料 (FRP) 棒和管的标准规范》.pdf
《ASTM F711-2002(2013) Standard Specification for Fiberglass-Reinforced Plastic (FRP) Rod and Tube Used in Live Line Tools&8201 《带电作业工具用玻璃纤维增强塑料 (FRP) 棒和管的标准规范》.pdf》由会员分享,可在线阅读,更多相关《ASTM F711-2002(2013) Standard Specification for Fiberglass-Reinforced Plastic (FRP) Rod and Tube Used in Live Line Tools&8201 《带电作业工具用玻璃纤维增强塑料 (FRP) 棒和管的标准规范》.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F711 02 (Reapproved 2013)Standard Specification forFiberglass-Reinforced Plastic (FRP) Rod and Tube Used inLive Line Tools1This standard is issued under the fixed designation F711; the number immediately following the designation indicates the year of originaladoption or, in the case of
2、 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 This specification covers insulating rods and foam-filledtubes made from fiberglass-reinforced plas
3、tic (FRP) that areintended for use in live line tools.1.2 This specification does not include insulating foam-filled tubes and rods from other materials. Specifications forfittings and attachments to rods and foam-filled tubes forcomplete tools are not covered in this specification.1.3 This specific
4、ation establishes the technical characteris-tics that the tubes and rods must satisfy.1.4 The following safety hazards caveat pertains only to thetest method portion, Section 12, of this specification.Thisstandard does not purport to address all of the safety concerns,if any, associated with its use
5、. It is the responsibility of the userof this standard to establish appropriate safety and healthpractices and determine the applicability of regulatory limita-tions prior to use.2. Referenced Documents2.1 ASTM Standards:2D149 Test Method for Dielectric Breakdown Voltage andDielectric Strength of So
6、lid Electrical Insulating Materialsat Commercial Power FrequenciesD638 Test Method for Tensile Properties of PlasticsD695 Test Method for Compressive Properties of RigidPlastics3. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 acceptance testa type of test made at the option oft
7、he purchaser.3.1.2 design testa type of test made on a sample treated asrepresentative of an industrial product. These tests will notgenerally be repeated in quantity production.3.1.3 insulating tubes and rodsfiberglass-reinforced plas-tic (FRP) products manufactured using processes so that thetubes
8、 and rods produced will meet the electrical and mechani-cal tests prescribed in this specification.3.1.4 interior foam-filled tubehomogeneous unicellularthermosetting foam filling with closed cells blown with non-combustible gases. The foam filling shall be bonded to theinterior tube wall. The foam
9、filling should be free of voids,separations, holes, cracks, etc.3.1.5 routine testa type of test made regularly on produc-tion material.3.1.6 visual inspectiona visual check made to detectconstructional defects.4. Ordering Information4.1 Outside Diameter SizesFoam-filled FRP tube andsolid FRP rod sh
10、all meet the outside diameter dimensionsshown in Table 1. The tolerances shown will assist in ensuringinterchangeability with interfacing equipment.4.2 Inspection of the material shall be agreed upon betweenthe purchaser and the seller as part of the purchase contract.5. Materials and Manufacture5.1
11、 Except for those test methods leading to destruction,neither the FRP tube, foam, or the bond between them shalldeteriorate during the prescribed mechanical and electricaltests of this specification.6. Physical Requirements6.1 The materials shall conform to the diameters prescribedin Table 1 for tub
12、e and rod.6.2 The standard sizes listed by nominal diameter arerecommended and do not preclude the manufacture of othersizes or shapes.7. Weight7.1 It has not been found necessary to specify the weight ofthe product produced under this specification in order for it tocomply with performance requirem
13、ents.1This specification is under the jurisdiction of ASTM Committee F18 onElectrical Protective Equipment for Workers and is the direct responsibility ofSubcommittee F18.35 on Tools the high-potential end of the sample shall be the same forboth tests.12.2.4.3 Test ResultsThe currents (I1) measured
14、shall beless than the values in Table 2. The difference between I1 andI2 shall be less than 20 A.12.2.5 Electrical Withstand Routine TestsEither Method 1or Method 2 shall be used to perform the routine electricalwithstand test for both FRP rods and FRP foam-filled tubes.12.2.5.1 Electrical Withstand
15、 Acceptance Test (Method 1)Without Dielectric Current MonitoringThe typical test setupis shown in Fig. 10. Horizontally mount the test specimen atleast 3 ft (0.9 m) above the floor on an insulating support. Theelectrodes shall be spaced 12 in. apart.FIG. 6 Electrode Cap DetailFIG. 7 Brass Electrode
16、DetailFIG. 8 Nylon Electrode Support DetailFIG. 9 Brass Screw DetailF711 02 (2013)5(a) During the electrical withstand acceptance test, thetubes or rods shall be subjected to an alternating voltage of 100kV rms at power frequency in accordance with Test MethodD149 at a maximum voltage rise of 3000 V
17、/s. The test voltageshall be applied between electrodes for 5 min.(b) During the course of the testing, there shall be no signof flashover, puncture, tracking, or erosion on the surface ofany sample. There shall be no perceptible temperature rise ofany sample.12.2.5.2 Electrical Withstand Test (Meth
18、od 2) With Dielec-tric Current MonitoringThe typical test set-up is shown inFigs. 11 and 12.The necessary equipment should be adequatelyshielded to provide accurate readings. The test fixture shouldbe enclosed for worker protection and equipped with anexhaust fan to provide a stable atmosphere. A mo
19、tor driveshould be utilized to ensure a uniform rate of feed. The feedrate should be proportional to the response time of the meteringcircuit; that is, it shall be run slowly enough that maximumreadings are obtained. At no time should this rate of feedexceed 40 ft/min.(a) With 6-in. electrode spacin
20、g, the applied voltage willbe 50 kV. The equipment shall be designed such that aflashover, excessive dielectric current will disable the motordrive so that intentional action on the part of the operator isrequired to reset the equipment.(b) Acceptable rise above ambient of less than I1 as listedin T
21、able 2. During the course of the testing, there shall be nosign of flashover, puncture, tracking, or erosion on the surfaceof any sample.12.3 Mechanical Testing of FRP Tube:12.3.1 Bending Deflection Test (design)A tube 8 ft 5 in.(2.6 m) or longer shall be placed in a testing device such thatthe over
22、hang arm is 60 in. (1.5 m) in length, and the distancebetween supports is as shown in Fig. 13.12.3.1.1 The support shall be of the pole clamp-type (ap-proximately 4-in. (100-mm) long) with the back clamp tight-ened to hold specimen in place while the front clamp remainsloose and serves only as a ful
23、crum. Both clamps shall be freeTABLE 2 Flexure Forces and Leakage CurrentATYPEOutside Diameter Flexure ForcesLeakageCurrent, I1in. (mm) lbf (N) ATube 1 (25.4) 220 (978.6) 5114 (31.8) 270 (1201.0) 6112 (38.1) 370 (1645.8) 8134 (44.5) 550 (2446.5) 92 (50.8) 670 (2980.3) 10212 (63.5) 1680 (7473.0) 123
24、(76.2) 3030 (13 478.1) 14Rod38 (9.5) 50 (222.4) 612 (12.7) 150 (667.2) 658 (15.9) 375 (1668.0) 634 (19.1) 800 (3058.6) 6AValues listed for maximum I1 are based on pole constructed of a relatively thinwall and filled internally with foam. Some special applications require a thicker wall,denser foam,
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