ASTM A254-1997(2002) Standard Specification for Copper-Brazed Steel Tubing《铜焊钢管规格的标准规范》.pdf
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1、Designation: A 254 97 (Reapproved 2002)Standard Specification forCopper-Brazed Steel Tubing1This standard is issued under the fixed designation A 254; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A num
2、ber in parentheses 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. Scope1.1 This specification covers double-wall, copper-brazedstee
3、l tubing suitable for general engineering uses, particularlyin the automotive, refrigeration, and stove industries for fuellines, brake lines, oil lines, heating and cooling units, and thelike.1.2 The values stated in inch-pound units are to be regardedas the standard.2. Referenced Documents2.1 ASTM
4、 Standards:A 370 Test Methods and Definitions for Mechanical Testingof Steel Products2E 30 Test Methods for Chemical Analysis of Steel, CastIron, Open-Hearth Iron, and Wrought Iron3E 59 Practice for Sampling Steel and Iron for Determinationof Chemical Composition42.2 Society of Automotive Engineers
5、Standard:J 533 Flares for Tubing53. Ordering Information3.1 Orders for material under this specification shouldinclude the following, as required to describe the desiredmaterial adequately:3.1.1 Quantity (feet, metres),3.1.2 Name of material (copper-brazed steel tubing),3.1.3 Type, where necessary (
6、see Fig. 1) (normally the typeis not specified),3.1.4 Size (outside diameter and wall thickness; normallyinside diameter should not be specified),3.1.5 Length (specific or random),3.1.6 Inside surface cleanliness where required (see Section8),3.1.7 External coating, where required (see Section 7 and
7、Supplementary Requirement S2), and3.1.8 Special or supplementary requirements or exceptionsto specification.4. Manufacture4.1 The steel may be made by any process.4.2 If a specific type of melting is required by the purchaser,it shall be as stated on the purchase order.4.3 The primary melting may in
8、corporate separate degas-sing or refining and may be followed by secondary melting,such as electroslag remelting or vacuum-arc remelting. Ifsecondary melting is employed, the heat shall be defined as allof the ingots remelted from a single primary heat.4.4 Steel may be cast in ingots or may be stran
9、d cast. Whensteel of different grades is sequentially strand cast, identifica-tion of the resultant transition material is required. Theproducer shall remove the transition material by an establishedprocedure that positively separates the grades.4.5 The tubing shall be made by rolling steel strip in
10、to theform of tubing and subsequently copper brazing in a reducingatmosphere.4.6 Tubing shall be constructed as shown in Fig. 1.4.7 Tubing shall be suitably tested after brazing by themanufacturer to ensure freedom from leaks and detrimentalflaws.5. Chemical Composition5.1 The steel shall conform to
11、 the requirements as tochemical composition prescribed in Table 1.5.2 Heat AnalysisAn analysis of each heat of steel shallbe made by the steel manufacturer to determine the percentagesof the elements specified. If secondary melting processes areemployed, the heat analysis shall be obtained from oner
12、emelted ingot or the product of one remelted ingot of eachprimary melt. The chemical composition thus determined, or1This specification is under the jurisdiction of ASTM Committee A01 on Steel,Stainless Steel, and Related Alloys and is the direct responsibility of SubcommitteeA01.09 on Carbon Steel
13、Tubular Products.Current edition approved Mar. 10, 1997. Published November 1997. Originallypublished as A 254 44. Last previous edition A 254 94.2Annual Book of ASTM Standards, Vol 01.03.3Discontinued 1995; see 1994 Annual Book of ASTM Standards, Vol 03.05.4Discontinued 1996; see 1995 Annual Book o
14、f ASTM Standards, Vol 03.05.Replaced by E 1806 (Vol 03.06).5Available from Society of Automotive Engineers, Inc. 400 Commonwealth Dr.,Warrendale, PA 15096-0001.Single-Strip Type Double-Strip TypeFIG. 1 Brazed Tubing, Double-Wall, 360-deg Brazed Construction1Copyright ASTM International, 100 Barr Har
15、bor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.that determined from a product analysis made by the tubularproduct manufacturer shall conform to the requirements speci-fied.5.3 Product AnalysisTubing of this quality is commonlyproduced in rimmed or capped steel which is chara
16、cterized bya lack of uniformity in its chemical composition. For thisreason, rejection for product analysis is not appropriate unlessmisapplication is clearly indicated.5.4 Methods of AnalysisMethods described in Test Meth-ods E 30 shall be used for referee purposes. Due allowanceshall be made for t
17、he presence of copper brazing metal.5.5 Samples for Product AnalysisExcept for spectro-graphic analysis, samples shall be taken in accordance withPractice E 59.6. Mechanical Requirements6.1 Tension TestTensile properties of tubing as manufac-tured (prior to cold working) shall conform to the require
18、mentsspecified in Table 2.6.1.1 The specimens and tension tests required shall bemade in accordance with Test Methods and Definitions A 370.6.1.2 Specimens shall be tested at room temperature.6.1.3 Test specimens shall be taken from the ends offinished tubes prior to upsetting, swaging, expanding, o
19、r otherforming operations, or being cut to length. They shall besmooth on the ends and free from burrs and flaws.6.1.4 If any test specimen shows flaws or defective machin-ing, it may be discarded and another specimen substituted.6.1.5 The yield strength shall be determined as that corre-sponding to
20、 a permanent offset of 0.2 % of the gage length ofthe specimen, or a total extension of 0.5 % of the gage lengthunder load.6.1.6 If the percentage of elongation of any test specimen isless than that specified and any part of the fracture is more than34 in. (19.0 mm) from the center of the gage lengt
21、h, asindicated by scribe marks on the specimen before testing, aretest shall be allowed.6.2 Flattening TestA section of tubing, not less than 212in. (64 mm) in length, shall stand being flattened betweenparallel plates until the inside walls are in contact withoutcracking or otherwise showing flaws.
22、6.3 Expansion TestA section of tubing approximately 4in. (100 mm) in length shall stand being expanded over atapered mandrel having a slope of 1 in 10 until the outsidediameter at the expanded end is increased 20 % withoutcracking or otherwise showing flaws. (Prior to the expansiontest, tubing shall
23、 be cut off square, edge crowned, anddeburred. It shall be held firmly and squarely in the die, andpunch must be guided on the axis of the tubing.)6.4 Bend TestThe finished tubing shall stand bending on acenterline radius equal to three times the tubing outsidediameter without kinking, cracking, or
24、developing other flawswhere proper bending fixtures are used.6.5 Pressure Proof TestsEach tube shall be capable ofwithstanding, without bursting or leaking, either of the follow-ing proof tests:6.5.1 An internal hydrostatic pressure sufficient to subjectthe material to a minimum fiber stress of 16 0
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