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本文(ASTM A325M-2009 Standard Specification for Structural Bolts Steel Heat Treated 830 MPa Minimum Tensile Strength [Metric]《最小抗拉强度为830Mpa的热处理钢结构螺栓标准规范(米制)》.pdf)为本站会员(boatfragile160)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ASTM A325M-2009 Standard Specification for Structural Bolts Steel Heat Treated 830 MPa Minimum Tensile Strength [Metric]《最小抗拉强度为830Mpa的热处理钢结构螺栓标准规范(米制)》.pdf

1、Designation: A 325M 09Standard Specification forStructural Bolts, Steel, Heat Treated 830 MPa MinimumTensile Strength (Metric)1This standard is issued under the fixed designation A 325M; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revisi

2、on, 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.This standard has been approved for use by agencies of the Department of Defense.1. Scope*1.1 This specification2c

3、overs two types of quenched andtempered, steel, metric heavy hex structural bolts having aminimum tensile strength of 830 MPa (Note 1).1.2 The bolts are intended for use in structural connections.These connections are comparable to those covered under therequirements of the Specification for Structu

4、ral Joints usingASTM A 325 or A 490 bolts, approved by the ResearchCouncil on Structural Connections; endorsed by the AmericanInstitute of Steel Construction and by the Industrial FastenerInstitute.31.3 The bolts are furnished in sizes M12 to M36 inclusive.They are designated by type denoting chemic

5、al composition asfollows:1.3.1 Type 1Medium-carbon, carbon boron, medium car-bon alloy, or alloy boron steel.1.3.2 Type 2Withdrawn in 2003.1.3.3 Type 3Weathering Steel.1.4 This specification is applicable to metric heavy hex,structural bolts only.1.5 Terms used in this specification are defined in T

6、ermi-nology F 1789.1.6 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.NOTE 1This specification is the metric companion to the inch poundSpecification A 325.1.7 The following safety hazard caveat pertains only to thetest methods

7、 portion, Section 10, of this specification. Thisstandard does not purport to address all of the safety concerns,if any, associated with its use. It is the responsibility of the userof this standard to establish appropriate safety and healthpractices and determine the applicability of regulatory lim

8、ita-tions prior to use.2. Referenced Documents2.1 ASTM Standards:4A 153/A 153M Specification for Zinc Coating (Hot-Dip) onIron and Steel HardwareA 490M Specification for High-Strength Steel Bolts,Classes 10.9 and 10.9.3, for Structural Steel Joints (Metric)A 563M Specification for Carbon and Alloy S

9、teel Nuts(Metric)A 751 Test Methods, Practices, and Terminology forChemical Analysis of Steel ProductsB 695 Specification for Coatings of Zinc MechanicallyDeposited on Iron and SteelD 3951 Practice for Commercial PackagingF 436M Specification for Hardened Steel Washers (Metric)F 606M Test Methods fo

10、r Determining the MechanicalProperties of Externally and Internally Threaded Fasteners,Washers, and Rivets (Metric)F 788/F 788M Specification for Surface Discontinuities ofBolts, Screws, and Studs, Inch and Metric SeriesF 959M Specification for Compressible-Washer-Type Di-rect Tension Indicators for

11、 Use With Structural Fasteners(Metric)F 1136M Specification for Zinc/Aluminum Corrosion Pro-tective Coatings for Fasteners (Metric)F 1470 Practice for Fastener Sampling for Specified Me-chanical Properties and Performance InspectionF 1789 Terminology for F16 Mechanical FastenersG 101 Guide for Estim

12、ating the Atmospheric CorrosionResistance of Low-Alloy Steels2.2 ASME Standards:51This specification is under the jurisdiction of ASTM Committee F16 onFasteners and is the direct responsibility of Subcommittee F16.02 on Steel Bolts,Nuts, Rivets and Washers.Current edition approved Jan. 1, 2009. Publ

13、ished January 2009. Originallyapproved in 1979. Last previous edition approved in 2008 as A 325M 08 .2For ASME Boiler and Pressure Vessel Code applications, see related Specifi-cation SA-325M in Section II of that Code.3Available from American Institute of Steel Construction (AISC), One E.Wacker Dr.

14、, Suite 700, Chicago, IL 60601-2001, http:/www.aisc.org.4For 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 website.5Avai

15、lable from American Society of Mechanical Engineers (ASME), ASMEInternational Headquarters, Three Park Ave., New York, NY 10016-5990, http:/www.asme.org.1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohoc

16、ken, PA 19428-2959, United States.B 1.13M Metric Screw ThreadsB 18.2.3.7M Metric Heavy Hex Structural BoltsB 18.18.3M Inspection and Quality Assurance for SpecialPurpose FastenersB 18.24 Part Identifying Number (PIN) Code System Stan-dard for B18 Fastener Products3. Ordering Information3.1 Orders fo

17、r heavy hex structural bolts under this speci-fication shall include the following:3.1.1 Quantity (number of pieces of bolts and accessories).3.1.2 Size, including nominal bolt diameter, thread pitchand bolt length.3.1.3 Name of product, heavy hex structural bolts.3.1.4 When bolts threaded full leng

18、th are required, Supple-mentary Requirement S1 shall be specified.3.1.5 Type of bolt; Type 1 or Type 3. When the type is notspecified, either Type 1 or Type 3 shall be furnished at thesuppliers option.3.1.6 ASTM designation and year of issue.3.1.7 Other components such as nuts, washers, and com-pres

19、sible washer-type direct-tension indicators, if required.3.1.8 Zinc CoatingSpecify the zinc-coating process re-quired, for example, hot-dip, mechanically deposited, ZincAluminium Corrosion Protective Coating or no preference (see4.3).3.1.9 Other FinishesSpecify other protective finish, ifrequired.3.

20、1.10 Test reports, if required (see Section 13).3.1.11 Supplementary or special requirements, if required.3.1.12 For establishment of a part identifying system, seeASME B 18.24.NOTE 2A typical ordering description follows: 1000 pieces,M24333100, heavy hex structural bolts, Type 1 ASTM A 325M - 03,ea

21、ch with one hardened washer and one heavy hex nut, mechanicallydeposited zinc coating (see 3.1.8 for any special requirements).3.2 Recommended Nuts:3.2.1 Nuts conforming to the requirements of SpecificationA 563M are the recommended nuts for use with A 325Mmetric heavy hex structural bolts. The nuts

22、 shall be of the classand have a surface finish for each type of bolt as follows:Bolt Type and Finish Nut Class and Finish Specification1, plain (noncoated) A 563M8S or 8S3, plain1, zinc-coated A 563M10S, zinc-coated1, coated in accordance withSpecificationF 1136M, Grade 3A 563M10S coated in accorda

23、nce withSpecification F 1136M, Grade 53, plain A 563M8S3, plain3.3 Recommended Washers:3.3.1 Washers conforming to Specification F 436M are therecommended washers for use with Specification A 325MMetric heavy hex structural bolts. The washers shall have asurface finish for each type of bolt as follo

24、ws:Bolt Type and Finish Washer Finish1, plain (uncoated) plain (uncoated)1, zinc-coated zinc-coated1, coated in accor-dance withSpecificationF 1136M, Grade 3coated in accor-dance withSpecificationF 1136M3, plain weatheringsteel, plain3.4 Other Accessories:3.4.1 When compressible washer type direct t

25、ension indica-tors are specified to be used with these bolts, they shallconform to the requirements in Specification F 959M Type 8.8.4. Materials and Manufacture4.1 Heat Treatment:4.1.1 Type 1 bolts produced from medium carbon steel shallbe quenched in a liquid medium from the austenitizingtemperatu

26、re.TABLE 1 Chemical Requirements for Type 1 BoltsElementCarbon SteelHeatAnalysisProductAnalysisCarbon 0.300.52 0.280.55Manganese, min 0.60 0.57Phosphorus, max 0.040 0.048Sulfur, max 0.050 0.058Silicon 0.150.30 0.130.32ElementCarbon Boron SteelHeatAnalysisProductAnalysisCarbon 0.300.52 0.280.55Mangan

27、ese, min 0.60 0.57Phosphorus, max 0.040 0.048Sulfur, max 0.050 0.058Silicon 0.100.30 0.080.32Boron 0.00050.003 0.00050.003ElementAlloy SteelHeatAnalysisProductAnalysisCarbon 0.300.52 0.280.55Manganese, min 0.60 0.57Phosphorus, max 0.035 0.040Sulfur, max 0.040 0.045Silicon 0.150.35 0.130.37Alloying E

28、lementsAAAlloy Boron SteelHeatAnalysisProductAnalysisCarbon 0.300.52 0.280.55Manganese, min 0.60 0.57Phosphorus, max 0.035 0.040Sulfur, max 0.040 0.045Silicon 0.150.35 0.130.37Boron 0.00050.003 0.00050.003Alloying ElementsAAASteel, as defined by theAmerican Iron and Steel Institute, shall be conside

29、redto be alloy when the maximum of the range given for the content of alloyingelements exceeds one or more of the following limits: Manganese, 1.65 %; silicon,0.60 %; copper, 0.60 % or in which a definite range or a definite minimum quantityof any of the following elements is specified or required w

30、ithin the limits of therecognized field of constructional alloy steels: aluminum, chromium up to 3.99 %,cobalt, columbium, molybdenum, nickel, titanium, tungsten, vanadium, zirconium,or any other alloying elements added to obtain a desired alloying effect.A325M0924.1.2 Type 1 bolts produced from car

31、bon steel to whichchromium, nickel, molybdenum, or boron were intentionallyadded shall be quenched only in oil from the austenitizingtemperature.4.1.3 Type 3 bolts shall be quenched only in oil from theaustenitizing temperature.4.1.4 Type 1 bolts, regardless of the steel used, and Type 3bolts, shall

32、 be tempered by reheating to not less than 427C.4.2 ThreadingThreads shall be cut or rolled.4.3 Zinc Coatings, Hot-dip and Mechanically Depositedand Zinc/Aluminum Corrosion Protective Coating:4.3.1 When zinc-coated fasteners are required, the pur-chaser shall specify the zinc coating process, for ex

33、ample, hotdip, mechanically deposited, Zinc/Aluminum Corrosion Pro-tective Coating, or no preference.4.3.2 When hot-dip is specified, the fasteners shall bezinc-coated by the hot-dip process and the coating shallconform to the coating weight/thickness and performancerequirements of Class C of Specif

34、ication A 153/A 153M.4.3.3 When mechanically deposited is specified, the fasten-ers shall be zinc-coated by the mechanical deposition processand the coating shall conform to the coating weight/thicknessand performance requirements of Class 55 of SpecificationB 695.4.3.4 When Zinc/Aluminum Corrosion

35、Protective Coatingis specified, the coating shall conform to the coating weight/thickness and performance requirements of Grade 3 of Speci-fication F 1136M.4.3.5 When no preference is specified, the supplier shallfurnish either a hot-dip zinc coating in accordance withSpecification A 153/A 153M, Cla

36、ss C, or a mechanicallydeposited zinc coating in accordance with Specification B 695,Class 55, or a Zinc/Aluminum Corrosion Protective Coating inaccordance with Specification F 1136M, Grade 3. Threadedcomponents (bolts and nuts) shall be coated by the samezinc-coating process and the suppliers optio

37、n is limited to oneprocess per item with no mixed processes in a lot.TABLE 2 Chemical Requirements for Type 3 Heavy Hex Structural BoltsAElementComposition, %Type 3 BoltsAABCDEFCarbon:Heat analysisProduct analysis0.330.400.310.420.380.480.360.500.150.250.140.260.150.250.140.260.200.250.180.270.200.2

38、50.190.26Manganese:Heat analysisProduct analysis0.901.200.861.240.700.900.670.930.801.350.761.390.401.200.361.240.601.000.561.040.901.200.861.24Phosphorus:Heat analysisProduct analysis0.035 max0.040 max0.060.120.060.1250.035 max0.040 max0.035 max0.040 max0.035 max0.040 max0.035 max0.040 maxSulfur:He

39、at analysisProduct analysis0.040 max0.045 max0.040 max0.045 max0.040 max0.045 max0.040 max0.045 max0.040 max0.045 max0.040 max0.045 maxSilicon:Heat analysisProduct analysis0.150.350.130.370.300.500.250.550.150.350.130.370.250.500.200.550.150.350.130.370.150.350.130.37Copper:Heat analysisProduct anal

40、ysis0.250.450.220.480.200.400.170.430.200.500.170.530.300.500.270.530.300.600.270.630.200.400.170.43Nickel:Heat analysisProduct analysis0.250.450.220.480.500.800.470.830.250.500.220.530.500.800.470.830.300.600.270.630.200.400.170.43Chromium:Heat analysisProduct analysis0.450.650.420.680.500.750.470.

41、830.300.500.270.530.501.000.451.050.600.900.550.950.450.650.420.68Vanadium:Heat analysisProduct analysisBBBB0.020 min0.010 minBBBBBBMolybdenum:Heat analysisProduct analysisBB0.06 max0.07 maxBB0.10 max0.11 maxBBBBTitanium:Heat analysisProduct analysisBBBBBB0.05 max0.06 maxBBBBAA, B, C, D, E, and F ar

42、e classes of material used for Type 3 bolts. Selection of a class shall be at the option of the bolt manufacturer.BThese elements are not specified or required.A325M0934.4 LubricationWhen zinc coated nuts are ordered withthe bolts, the nuts shall be lubricated in accordance withSpecification A 563M,

43、 Supplementary Requirement S1, tominimize galling.4.5 Secondary Processing:4.5.1 If any processing, which can affect the mechanicalproperties or performance of the bolts is performed after theinitial testing, the bolts shall be retested for all specifiedmechanical properties and performance requirem

44、ents affectedby the reprocessing.4.5.2 When the secondary process is heat treatment, thebolts shall be tested for all specified mechanical properties. Hotdip zinc coated bolts shall be tested for all specified mechanicalproperties and rotational capacity. If zinc coated nuts arerelubricated after th

45、e initial rotational capacity tests, theassemblies shall be retested for rotational capacity. See 10.2,Note 3.5. Chemical Composition5.1 Type 1 bolts shall be plain carbon steel, carbon boronsteel, alloy steel, or alloy boron steel at the manufacturersoption, conforming to the chemical composition s

46、pecified inTable 1.5.2 Type 3 bolts shall be weathering steel and shall conformto one of the chemical compositions specified in Table 2. Theselection of the chemical composition,A, B, C, D, E, or F, shallbe at the option of the bolt manufacturer. See Guide G 101 formethods of estimating the atmosphe

47、ric corrosion resistance oflow alloy steels.5.3 Product analyses made on finished bolts representingeach lot shall conform to the product analysis requirementsspecified in Table 1 or Table 2, as applicable.5.4 Heats of steel to which bismuth, selenium, tellurium, orlead has been intentionally added

48、shall not be permitted forbolts.5.5 Compliance with 5.4 shall be based on certification thatheats of steel having any of the listed elements intentionallyadded were not used to produce the bolts.5.6 Chemical analyses shall be performed in accordancewith Test Methods, Practices, and Terminology A 751

49、.6. Mechanical Properties6.1 HardnessThe bolts shall conform to the hardnessspecified in Table 3.6.2 Tensile Properties:6.2.1 Except as permitted in 6.2.2 for long bolts, and 6.2.3for short bolts, sizes M24 and smaller having a length of 2-14D and longer; and sizes larger than M24 having a length of 3Dand longer; shall be wedge tested full size and shall conform tothe minimum wedge tensile load, and proof load or alternativeproof load specified in Table 4. The load achi

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