ASTM A1023 A1023M-2007 Standard Specification for Stranded Carbon Steel Wire Ropes for General Purposes.pdf
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1、Designation: A 1023/A 1023M 07Standard Specification forStranded Carbon Steel Wire Ropes for General Purposes1This standard is issued under the fixed designation A 1023/A 1023M; the number immediately following the designation indicates theyear of original adoption or, in the case of revision, the y
2、ear of last revision. A number in parentheses indicates the year of lastreapproval. A superscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope*1.1 This specification covers the general requirements forthe more common types of stranded steel wire ropes. Inc
3、ludedin this specification are wire ropes in various grades andconstructions from14 in. (6 mm) to 238 in. (60 mm) manufac-tured from uncoated or metallic coated wire. Also included arecord products from132 in. (0.8 mm) to38 in. (10 mm)manufactured from metallic coated wire. For specific applica-tion
4、s, additional or alternative requirements may apply.1.2 The values stated in either inch-pounds or SI units are tobe regarded separately as standard. Within the text, the SI unitsare shown in brackets. The values stated in each system are notexact equivalents; therefore, each system shall be used in
5、de-pendently of the other. Combining values from the two systemsmay result in nonconformance with the specification.2. Referenced Documents2.1 ASTM Standards:2A 931 Test Method for Tension Testing of Wire Ropes andStrandA 1007 Specification for Carbon Steel Wire for Wire Rope2.2 ISO Standards:3ISO 2
6、232 Round Drawn Wire for General-Purpose Non-alloy Steel Wire RopesISO 3108 Steel Wire Ropes for General PurposesDetermination of Actual Breaking3. TerminologyDescription of Terms Specific to this Specification3.1 inserts, nfiber or solid polymer so positioned as toseparate adjacent strands or wires
7、 in the same or overlyinglayers or to fill interstices of the rope.3.2 Lubrication:3.2.1 impregnating compound, nmaterial used in themanufacture of natural fiber cores, covers, or inserts for thepurpose of providing protection against rotting and decay ofthe fiber material.3.2.2 preservation compoun
8、d, nmaterial, usually contain-ing some form of blocking agent, applied during, after, or bothduring and after manufacture of the rope to fiber inserts, fillers,and coverings for the purpose of providing protection againstcorrosion.3.2.3 rope lubricant, ngeneral term used to signify mate-rial applied
9、 during the manufacture of a strand, core, or ropefor the purpose of reducing internal friction, providing protec-tion against corrosion, or both.3.3 rope cores, ncentral element, usually of fiber or steel(but may be a combination of both), of a round rope aroundwhich are laid helically the strands
10、of a stranded rope or theunit ropes of a cable-laid rope (Fig. 1).3.3.1 fiber core (FC), nan element made from eithernatural or synthetic fibers.3.3.2 solid polymer core, na single element of solidpolymer material that is either cylindrical or shaped (grooved).It may also include an element or eleme
11、nts of wire or fiber.3.3.3 steel core, na stranded rope (IWRC), or a roundstrand (WSC) construction. The round strand or the strandedrope core or its outer strands, or both, may also be covered orfilled with either fiber or solid polymer. Steel cores arenormally made as a separate independent elemen
12、t, the excep-tion being rope with a stranded rope core closed parallel withthe outer strands.3.4 strand, nan element of rope normally consisting of anassembly of wires of appropriate shape and dimensions laidhelically in one or more layers around a center. The center mayconsist of one round or shape
13、d wire, of several round wiresforming a built-up center, or of fiber or some other material. Ifmultiple wires are used in a strand center, they may be countedas one wire.3.4.1 Cross-Section Shape:3.4.1.1 compacted strand, na strand that has been sub-jected to a compacting process such as drawing, ro
14、lling, orswaging (Fig. 2).1This specification is under the jurisdiction of ASTM Committee A01 on Steel,Stainless Steel and Related Alloys and is the direct responsibility of SubcommitteeA01.03 on Steel Rod and Wire.Current edition approved Sept. 1, 2007. Published October 2007. Originallyapproved in
15、 2002. Last previous edition approved in 2002 asA 1023/A 1023M 02.2For 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 web
16、site.3Available from International Organization for Standardization (ISO), 1 rue deVaremb, Case postale 56, CH-1211, Geneva 20, Switzerland, http:/www.iso.ch.1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Cons
17、hohocken, PA 19428-2959, United States.3.4.1.2 round strand, nstrand having a perpendicularcross-section that is approximately the shape of a circle (Fig.3).3.4.1.3 triangular strand, nstrand having a perpendicularcross-section that is approximately the shape of a triangle(formerly referred to as fl
18、attened strand) (Fig. 4).(a) Style BSolid center wire(b) Style G332or332+3F center(c) Style H3 or 3+3F center(d) Style V137 center3.4.2 strand lay direction, nthe direction right (z) or left(s) corresponding to the direction of lay of the outer wires inrelation to the longitudinal axis of the strand
19、 (Fig. 5).3.4.3 Type and Constructions:3.4.3.1 multiple operation lay, nconstruction containingat least two layers of wires in which successive layers are laidin more than one operation, with different lay lengths. Thereare two basic types of multiple operation strand:(a) compound lay, nstrand that
20、contains a minimum ofthree layers of wires where a minimum of one layer is laid ina separate operation, but in the same direction, over a parallellay center.(b) cross-lay, nstrand in which the wires are laid in thesame direction. The wires of superimposed wire layers crossone another and make point
21、contact.3.4.3.2 parallel lay, nstrand that contains at least twolayers of wires, all of which are laid in one operation (in thesame direction). The lay length of all the wire layers is equal,and the wires of any two superimposed layers are parallel toeach other, resulting in linear contact. There ar
22、e four types ofparallel lay constructions:(a) combined, adjdescribes a parallel lay constructionhaving three or more layers laid in one operation and formedfrom a combination of the above, for example, Warrington-Seale construction (Fig. 6a).(b) filler (F), adjdescribes a construction having outerla
23、yer containing twice the number of wires than the inner layer,with filler wires laid in the interstices between the layers. Fillerwires are designated with the letter “F” (Fig. 6b).(c) Seale (S), adjdescribes a construction having samenumber of wires in each layer, for example, 9-9-1 (Fig. 6c).(d) W
24、arrington (W), adjdescribes a construction havingouter (Warrington) layer containing alternately large and smallwires and twice the number of wires as the inner layer.Warrington layers are designated by listing the number of largeand small wires with a + sign in between and bracketing()thelayer, for
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