ASTM B891-1998(2004) Standard Specification for Seamless and Welded Titanium and Titanium Alloy Condenser and Heat Exchanger Tubes With Integral Fins《带集成散热片的无缝和焊接钛及钛合金冷凝器和热交换器管的标准规.pdf
《ASTM B891-1998(2004) Standard Specification for Seamless and Welded Titanium and Titanium Alloy Condenser and Heat Exchanger Tubes With Integral Fins《带集成散热片的无缝和焊接钛及钛合金冷凝器和热交换器管的标准规.pdf》由会员分享,可在线阅读,更多相关《ASTM B891-1998(2004) Standard Specification for Seamless and Welded Titanium and Titanium Alloy Condenser and Heat Exchanger Tubes With Integral Fins《带集成散热片的无缝和焊接钛及钛合金冷凝器和热交换器管的标准规.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: B 891 98 (Reapproved 2004)Standard Specification forSeamless and Welded Titanium and Titanium AlloyCondenser and Heat Exchanger Tubes With Integral Fins1This standard is issued under the fixed designation B 891; the number immediately following the designation indicates the year oforigi
2、nal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This specification2covers seamless and welded titaniumand titan
3、ium alloy tubing on which the external or internalsurface, or both, has been modified by a cold forming processto produce an integral enhanced surface for improved heattransfer. The tubes are used in surface condensers, evaporators,heat exchangers and similar heat transfer apparatus in unfinnedend d
4、iameters up to and including 1 in. (25.4 mm).1.2 The values stated in inch-pound units are to be regardedas the standard. The values given in parentheses are forinformation only.1.3 The following precautionary statement pertains to thetest method portion only: Section 9 of this specification: Thisst
5、andard 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 limita-tions prior to use.2. Referenced Documents2.1 A
6、STM Standards:3B 338 Specification for Seamless and Welded Titanium andTitanium Alloy Tubes for Condensers and Heat Exchang-ersE 426 Practice for Electromagnetic (Eddy-Current) Exami-nation of Seamless and Welded Tubular Products, Austen-itic Stainless Steel and Similar AlloysE 1316 Terminology for
7、Nondestructive Examinations3. Ordering Information3.1 Purchase orders for tubes described in this specificationshould include the following, to describe the tubes adequately.3.1.1 ASTM designation and year of issue3.1.2 Welded or Seamless3.1.3 Grade number3.1.4 Dimensions; diameter, wall thickness (
8、ave. or min.specified), length and location of unenhanced surfaces and thetotal tube length. Configuration of enhanced surfaces (fins perunit length, fin height, wall thickness under fin, etc.) shall be asagreed upon between the manufacturer and purchaser. (Refer toFigs. 1 and 2)3.1.5 Quantity3.1.6
9、Packaging3.1.7 Nondestructive tests3.1.8 Mill test report3.1.9 Certification4. General Requirements4.1 Tubes described by this specification shall be furnishedwith unenhanced ends.4.2 Enhanced sections of the tube are normally supplied inthe “as-finned” condition (cold worked condition produced byth
10、e enhancing operation). The unenhanced sections of the tubeshall be in the annealed condition and shall be suitable forrolling-in operations.5. Materials and Manufacture5.1 The integrally enhanced (finned) tubes shall be manu-factured from seamless, welded, or welded/cold worked(WCW) plain tubes tha
11、t conform to all requirements asspecified in Specification B 338.5.2 Enhanced areas shall be produced by cold forming.6. Condition6.1 The tube after enhancing shall normally be supplied inthe “as-finned” condition. When specified by the purchaser, forcoiling or other fabricating operations, the tube
12、 may beannealed after enhancing.1This specification is under the jurisdiction of ASTM Committee B10 onReactive and Refractory Metals and Alloys and is the direct responsibility ofSubcommittee B10.01 on Titanium.Current edition approved May 1, 2004. Published May 2004. Originallyapproved in 1998. Las
13、t previous edition approved in 1998 as B 891 98e1.2For ASME Boiler and Pressure Vessel Code applications, see related Specifi-cation SB-_ in Section II of that Code.3For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Bo
14、ok of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.7. Chemical Composition7.1 The grade titanium or titanium alloy specified shallco
15、nform to the chemical requirements prescribed in Specifica-tion B 338.8. Tensile Requirements8.1 The tube prior to the finning operation, or unenhancedportions of the finned tube, shall conform to the graderequirements for tensile properties prescribed in SpecificationB 3389. Nondestructive Tests9.1
16、 After enhancing operations, subject each tube to anondestructive electromagnetic test, and either a pneumatic orhydrostatic test as specified in the purchase order. Tubes shallnormally be tested in the as-fabricated condition but, at theoption of the manufacturer or purchaser, may be tested in thea
17、nnealed condition.9.1.1 Eddy Current TestEddy current inspect the tube inaccordance with Practice E 426 by passing it through anencircling coil designed to test the entire cross section of thetube.9.1.1.1 The reference standard used to adjust the sensitivitysetting of the apparatus shall be sound an
18、d of the same nominalalloy, enhanced configuration, condition and nominal dimen-sions as the lot of tubes to be tested on a production basis. Drillfour holes not larger than 0.031 in. (0.787 mm) in diameterradially through the enhanced wall in each of four successiveplanes at 0, 90, 180 and 270. Use
19、 a suitable drill jig to guidethe drill, taking care to avoid distortion of the adjacent fins.Locate one hole in the weld for welded material. Spaceartificial discontinuities at least 16 in. (406 mm) apart toprovide signal resolution adequate for interpretation. Discardthe reference standard and rep
20、lace when erroneous signals areproduced from mechanical, metallurgical or other damage tothe tube.9.1.1.2 Adjust the eddy current test unit to obtain anoptimum signal-to-noise ratio with the minimum sensitivityrequired to detect all four artificial defects in the referencestandard on a repeatable ba
21、sis. Equipment adjustments andtube speed maintained during calibration shall be the same forproduction tubes.9.1.1.3 Set aside tubes showing an eddy current indicationin excess of any signal obtained from artificial defects in thereference standard and subject them to retest or rejection.9.1.1.4 Tub
22、es causing irrelevant signals because of mois-ture, debris and like effects shall be considered to conform,should they not cause output signals beyond acceptable limitswhen retested. Tubes causing irrelevant signals because ofvisible and identifiable handling marks shall be considered toconform, pro
23、vided the wall thickness in the enhanced andunenhanced areas is not less than the minimum specified.9.1.1.5 Tubes causing relevant signals because of injuriousdefects that reduce the wall thickness below the minimumspecified shall be rejected. If, after retest and examination, nosource for the rejec
24、t signal can be discerned, the tube shall berejected.9.1.2 Pneumatic TestEach tube so tested shall withstand aminimum internal air pressure of 250 psi (1.72 MPa) for aminimum of 5 s without showing evidence of leakage. The testmethod used shall permit easy detection of any leakage byplacing the tube
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