ASTM B369-2006 Standard Specification for Copper-Nickel Alloy Castings《铜-镍合金铸件标准规范》.pdf
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1、Designation: B 369 06Standard Specification forCopper-Nickel Alloy Castings1This standard is issued under the fixed designation B 369; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parenthes
2、es indicates the year of last reapproval. Asuperscript epsilon (e) 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 specification establishes the requirements forcopper-nickel alloy
3、castings with nominal compositions shownin Table 1. These are as follows:2Copper Alloy UNS No.2Previous DesignationC96200 Alloy AC96400 Alloy B1.2 Castings of these alloys are used primarily forcorrosion-resistance applications such as in construction andfor pressure vessels, particularly in marine
4、pumps, valves, andfittings.1.3 These alloys are considered weldable, but they may beordered with a weld test to ensure weldability. When extensivewelding is to be performed on the casting, weldability testsshould be specified in the ordering information (4.2.6)toensure proper welding characteristics
5、.1.4 UnitsValues stated in inch-pound units are to beregarded as standard. The values given in parentheses aremathematical conversions to SI units, which are provided forinformation only and are not considered standard.1.5 The following hazard statement applies only to Section7, Weldability Test, of
6、 this specification. This standard does notpurport to address all of the safety concerns, if any, associatedwith its use. It is the responsibility of the user of this standardto establish appropriate safety and health practices anddetermine the applicability of regulatory limitations prior touse.2.
7、Referenced Documents2.1 ASTM Standards:3B 208 Practice for Preparing Tension Test Specimens forCopper Alloy Sand, Permanent Mold, Centrifugal, andContinuous CastingsB 824 Specification for General Requirements for CopperAlloy CastingsB 846 Terminology for Copper and Copper AlloysE 527 Practice for N
8、umbering Metals and Alloys (UNS)2.2 ASME Code:ASME Boiler and Pressure Vessel Code42.3 AWS Standard:AWS A5.6 Specification for Copper and Copper-Alloy Arc-Welding Electrodes53. Terminology3.1 For definitions of terms relating to copper alloys, refer toTerminology B 846.4. Ordering Information4.1 Ord
9、ers for castings under this specification shouldinclude the following information:4.1.1 Specification title, number, and year of issue,4.1.2 Quantity of castings,4.1.3 Copper Alloy UNS Number (Table 2),4.1.4 Pattern or drawing number and condition (as-cast,machined, and so forth),4.1.5 ASME Boiler a
10、nd Pressure Vessel Code Requirements(Section 12),4.1.6 When material is purchased for agencies of the U.S.Government, the Supplementary Requirements of this specifi-cation may be specified.4.2 The following are optional and should be specified inthe purchase order when required:4.2.1 Pressure test o
11、r soundness requirements (SpecificationB 824),4.2.2 Witness inspection (Specification B 824),4.2.3 Certification (Specification B 824),4.2.4 Foundry test report (Specification B 824),4.2.5 Product marking (Specification B 824),1This specification is under the jurisdiction ofASTM Committee B05 on Cop
12、perand Copper Alloys and is the direct responsibility of Subcommittee B05.05 onCastings and Ingots for Remelting.Current edition approved Oct. 1, 2006. Published October 2006. Originallyapproved in 1961. Last previous edition approved in 2003 as B 369 96 (2003).2The UNS system for copper and copper
13、alloys (see Practice E 527) is a simpleexpansion of the former standard designation system accomplished by the additionof a prefix “C” and a suffix “00”. The suffix can be used to accommodatecomposition variations of the base alloy.3For referenced ASTM standards, visit the ASTM website, www.astm.org
14、, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.4Available from American Society of Mechanical Engineers (ASME), ASMEInternational Headquarters, Three Park Ave., New York, NY 10
15、016-5990.5Available from The American Welding Society (AWS), 550 NW LeJeune Rd.,Miami, FL 33126.1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.4.2.6 Weldability test
16、(1.3, Section 7, and Table 2), and4.2.7 Approval of weld procedure and records of repairs(Section 8).5. Chemical Composition5.1 The castings shall conform to the chemical requirementsshown in Table 2 for the copper alloy UNS numbers specifiedin the purchase order.5.2 These specification limits do no
17、t preclude the presenceof other elements. Limits may be established and analysisrequired for unnamed elements agreed upon between themanufacturer or supplier and the purchaser. Copper may begiven as remainder and may be taken as the difference betweenthe sum of all elements analyzed and 100 %. When
18、all theelements in the table are analyzed, their sum shall be 99.5 %minimum.6. Mechanical Properties6.1 Mechanical properties shall be determined from sepa-rately cast test bar castings, and shall meet the requirementsshown in Table 3.7. Weldability Test7.1 When specified in the purchase order at le
19、ast one testcast as shown in Fig. 1 shall be prepared for each lot of weldinggrade castings (4.2.6).7.2 The block shall be molded, gated, and risered in amanner to produce a sound casting without defects that mightinterfere with welding or the interpretation of the results of thetest.7.3 The groove
20、in the test block shall be completely filledwith weld deposit metal, using the manual metallic-arc processwith18-in. (12.7-mm) or532-in. (3.97-mm) diameter copper-nickel (70-30) coated electrodes conforming to classificationAWS ECuNi of AWS Specification A5.6. The interpass tem-perature need not be
21、controlled, unless it is to be controlled infabrication.7.4 One38-in. (9.52-mm) minimum thick bend coupon (seeFig. 2), shall be removed longitudinally from the center of theTABLE 1 Nominal CompositionsCopper Alloy UNS No.Composition, %Copper Nickel Iron Silicon Manganese NiobiumC96200C9640087.567.01
22、0.030.01.50.70.10.50.90.8.1.0TABLE 2 Chemical RequirementsCopper Alloy UNS No.C96200Copper Alloy UNS No.C96400Min, % Max, % Min, % Max, %Copper balance balanceLead . 0.01 . 0.01Iron 1.0 1.8 0.25 1.5Nickel, incl cobalt 9.0 11.0 28.0 32.0Manganese . 1.5 . 1.5Silicon . 0.50 . 0.50Niobium . 1.0A0.50 1.5
23、Phosphorus . 0.02 . 0.02Sulfur . 0.02 . 0.02Carbon . 0.10 . 0.15AWhen product or casting is intended for subsequent welding applications, andso specified by the purchaser, the niobium content shall be 0.40 % max.TABLE 3 Mechanical RequirementsCopper Alloy UNS No.C96200Copper Alloy UNS No.C96400Tensi
24、le strength, min, ksiA(MPa) 45 (310) 60 (415)Yield strength,Bmin, ksiA(MPa) 25 (170) 32 (220)Elongation in 2 in. (50.8 mm), % 20 20Aksi = 1000 psi.BYield strength shall be determined as the stress producing an elongation underload of 0.5 %, that is 0.01 in. (0.254 mm) in a gage length of 2 in. (50.8
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