ASTM A955 A955M-2017 Standard Specification for Deformed and Plain Stainless-Steel Bars for Concrete Reinforcement《钢筋混凝土用变形和光面不锈钢棒材的标准规格》.pdf
《ASTM A955 A955M-2017 Standard Specification for Deformed and Plain Stainless-Steel Bars for Concrete Reinforcement《钢筋混凝土用变形和光面不锈钢棒材的标准规格》.pdf》由会员分享,可在线阅读,更多相关《ASTM A955 A955M-2017 Standard Specification for Deformed and Plain Stainless-Steel Bars for Concrete Reinforcement《钢筋混凝土用变形和光面不锈钢棒材的标准规格》.pdf(17页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: A955/A955M 16aA955/A955M 17Standard Specification forDeformed and Plain Stainless-Steel Bars for ConcreteReinforcement1This standard is issued under the fixed designation A955/A955M; the number immediately following the designation indicates the yearof original adoption or, in the case
2、of revision, the year of last revision. A number in parentheses indicates the year of last reapproval.A superscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope*1.1 This specification covers deformed and plain stainless-steel bars for concrete reinforcement
3、 in cut lengths and coils used inapplications requiring resistance to corrosion or controlled magnetic permeability. The standard sizes and dimensions of deformedbars and their numerical designation shall be those listed in Table 1. The text of this specification references notes and footnoteswhich
4、provide explanatory material. These notes and footnotes (excluding those in tables and figures) shall not be considered asrequirements of the specification.1.1.1 Supplementary requirement (S1) of an optional nature is provided. It shall apply only when specified by the purchaser.In order to obtain a
5、 controlled magnetic permeability product, steel conforming to Supplementary Requirement S1 should beordered.1.2 The chemical composition of the stainless steel alloy shall be selected for suitability to the application involved byagreement between the manufacturer and the purchaser. This is an impo
6、rtant consideration in achieving the desired corrosionresistance or controlled magnetic permeability, or both, because these properties are not provided by all stainless steels.NOTE 1The alloys shown in Table 2 have found the most use in North America. Other alloys may also provide desired propertie
7、s; consult with themanufacturer for stainless steel alloy properties and availability.1.3 Requirements for the relative deformation area of three-sided deformed bars are contained in Annex A4.1.4 Bars are of two minimum yield strength levels, namely, 60 000 420 MPa and 75 000 psi 520 MPa, designated
8、 as Grade60 420 and Grade 75 520, respectively.1.5 Plain bars in sizes up to and including 2 in. 50.8 mm in diameter in coils or cut lengths, when ordered, shall be furnishedunder this specification in Grade 60 420 and Grade 75 520, respectively. Bending properties, when required, shall be byagreeme
9、nt between the manufacturer and purchaser. Requirements providing for deformations and marking shall not be applicableto plain bars.1.6 Weldability of most stainless steel compositions is generally good, however, pre-weld or post-weld procedures, or both, arenecessary. Where material is to be welded
10、, a welding procedure suitable for the chemical composition and intended use or serviceshall be used. Retesting of physical properties should be considered following welding procedures depending upon the steelcomposition and welding operation involved.NOTE 2It is recommended that the user consult th
11、e manufacturer for information available from the Nickel Development Institute (NIDI) (Toronto,Canada).1.7 This specification is applicable for orders in either inch-pound units (as Specification A955) or in SI units (as SpecificationA955M).1.8 The values stated in either inch-pound or SI units are
12、to be regarded separately as standard. Within the text, the SI units areshown in brackets. The values stated in each system are not exact equivalents; therefore, each system shall be used independentlyof the other. Combining values from the two systems may result in nonconformance with the standard.
13、1.9 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibilityof the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatorylimitations prior to use.1 This specificat
14、ion is under the jurisdiction ofASTM Committee A01 on Steel, Stainless Steel and RelatedAlloys and is the direct responsibility of Subcommittee A01.05on Steel Reinforcement.Current edition approved Sept. 15, 2016March 15, 2017. Published September 2016April 2017. Originally approved in 1996. Last pr
15、evious edition approved in 2016 asA955/A955M 16.A955/A955M 16a. DOI: 10.1520/A0955_A0955M-16A.10.1520/A0955_A0955M-17.This document is not an ASTM standard and is intended only to provide the user of an ASTM standard an indication of what changes have been made to the previous version. Becauseit may
16、 not be technically possible to adequately depict all changes accurately, ASTM recommends that users consult prior editions as appropriate. In all cases only the current versionof the standard as published by ASTM is to be considered the official document.*A Summary of Changes section appears at the
17、 end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1TABLE 1 Deformed Bar Designation Numbers, Nominal Weights Masses, Nominal Dimensions, and Deformation RequirementsBarDesignationNo.Nominal Weight, lb/ft Nominal Mass
18、,kg/mA Nominal DimensionsB Deformation Requirements, in. mm400 Series;Duplex Alloys 300 SeriesDiameter, in.mmCross-SectionalArea, in.2 mm2Perimeter, in.mmMaximumAverage SpacingMinimumAverage HeightMaximum Gap per SideCTwo-SidedBarThree-SidedBar3 10 0.374 0.556 0.378 0.562 0.375 9.5 0.11 71 1.178 29.
19、9 0.262 6.7 0.015 0.38 0.143 3.6 0.097 2.54 13 0.679 1.011 0.686 1.021 0.500 12.7 0.20 129 1.571 39.9 0.350 8.9 0.020 0.51 0.191 4.9 0.129 3.35 16 1.048 1.559 1.058 1.575 0.625 15.9 0.31 199 1.963 49.9 0.437 11.1 0.028 0.71 0.239 6.1 0.162 4.16 19 1.495 2.225 1.511 2.248 0.750 19.1 0.44 284 2.356 59
20、.8 0.525 13.3 0.038 0.97 0.286 7.3 0.194 4.97 22 2.038 3.032 2.059 3.064 0.875 22.2 0.60 367 2.749 69.8 0.612 15.5 0.044 1.12 0.334 8.5 0.226 5.88 25 2.685 3.995 2.713 4.037 1.000 25.4 0.79 510 3.142 79.8 0.700 17.8 0.050 1.27 0.383 9.7 0.259 6.69 29 3.396 5.053 3.441 5.106 1.128 28.7 1.00 645 3.544
21、 90.0 0.790 20.1 0.056 1.42 0.431 10.9 0.292 7.410 32 4.312 6.416 4.358 6.484 1.270 32.3 1.27 819 3.990 101.3 0.889 22.6 0.064 1.63 0.487 12.4 0.329 8.311 36 5.296 7.880 5.352 7.964 1.410 35.8 1.56 1006 4.430 112.5 0.987 25.1 0.071 1.80 0.540 13.7 0.365 9.314 43 7.64 11.37 7.72 11.49 1.693 43.0 2.25
22、 1452 5.32 135.1 1.185 30.1 0.085 2.16 0.648 16.5 0.438 11.118 57 13.59 20.22 13.72 20.43 2.257 57.3 4.00 2581 7.09 180.1 1.58 40.1 0.102 2.59 0.864 21.9 0.584 14.8A The 400 and Duplex-Alloy Series is based on a density of 489.59 lb/ft3 7833.4 kg/m3 .The 300 Series is based on a density of 494.78 lb
23、/ft3 7916.5 kg/m3. Density varies with alloy content which may result in a variationof several percent.B The nominal dimensions of a deformed bar are equivalent to those of a round bar having the same weight mass per foot metre as the deformed bar.C The maximum gap (measured as a chord) between the
24、ends of the deformations shall not exceed 25 % n of the nominal perimeter of the bar, where n is the number of longitudinal gaps or longitudinal ribs aroundthe perimeter of the bar.A955/A955M1721.10 This international standard was developed in accordance with internationally recognized principles on
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