ANSI ASTM F1200-1988 Standard Specification for Fabricated (Welded) Pipe Line Strainers (Above 150 psig and 150 Degrees F)《装配式(焊接)管线滤网(大于150 psig和150℉)规范》.pdf

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ANSI ASTM F1200-1988 Standard Specification for Fabricated (Welded) Pipe Line Strainers (Above 150 psig and 150 Degrees F)《装配式(焊接)管线滤网(大于150 psig和150℉)规范》.pdf_第1页
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ANSI ASTM F1200-1988 Standard Specification for Fabricated (Welded) Pipe Line Strainers (Above 150 psig and 150 Degrees F)《装配式(焊接)管线滤网(大于150 psig和150℉)规范》.pdf_第3页
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ANSI ASTM F1200-1988 Standard Specification for Fabricated (Welded) Pipe Line Strainers (Above 150 psig and 150 Degrees F)《装配式(焊接)管线滤网(大于150 psig和150℉)规范》.pdf_第4页
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1、Designation: F1200 88 (Reapproved 2016) An American National StandardStandard Specification forFabricated (Welded) Pipe Line Strainers (Above 150 psigand 150F)1This standard is issued under the fixed designation F1200; the number immediately following the designation indicates the year oforiginal ad

2、option or, in the case of revision, 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.1. Scope1.1 This specification covers welded strainers in servicesabove 150 psig o

3、r 150F (1 MPa and 65C). For weldedstrainers in services at or below these ratings and cast strainers,see Specification F1199.1.2 This specification provides the minimum requirementsfor the design fabrication, rating, marking, and testing ofwelded pipe line strainers for services above 0F (18C).1.3 S

4、trainers manufactured to this specification are accept-able for use in the marine environment.1.4 The values stated in inch-pound units are to be regardedas standard. The values given in parentheses are mathematicalconversions to SI units that are provided for information onlyand are not considered

5、standard.1.5 The following safety hazards caveat pertains only to thetest methods portion, Section 8, 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 appropri

6、ate safety and healthpractices and determine the applicability of regulatory limita-tions prior to use.2. Referenced Documents2.1 ASTM Standards:2D93 Test Methods for Flash Point by Pensky-MartensClosed Cup TesterF722 Specification for Welded Joints for Shipboard PipingSystemsF1199 Specification for

7、 Cast (All Temperatures and Pres-sures) and Welded Pipe Line Strainers (150 psig and150F Maximum)2.2 ANSI Standards:3B2.1 Pipe ThreadsB16.1 Cast Iron Pipe Flanges and Flanged FittingsB16.3 Malleable Iron Threaded FittingsB16.4 Cast Iron Threaded FittingsB16.5 Steel Pipe Flanges and Flanged FittingsB

8、16.11 Forged Steel Fittings, Socket-Welding and ThreadedB16.15 Cast Bronze Threaded FittingsB16.24 Bronze Pipe Flanges and Flanged FittingsB16.25 Buttwelding EndsB31.1 Power Piping2.3 MSS Standards:4SP-51 150 lb Corrosion Resistant Cast Flanges and FlangedFittingsSP-63 High Strength Wrought Welding

9、Fittings2.4 ASME Standards:5ASME Boiler and Pressure Vessel Code, Section VIIIASME Boiler and Pressure Vessel Code, Section IX3. Terminology3.1 Definitions:3.1.1 basket or elementthe replaceable part in a strainerthat performs the barrier separation of solid particles fromflowing fluid. It is normal

10、ly removable for cleaning andservicing and can be furnished in a wide variety of materials,particle size removal capability, straining area, and types ofconstruction. Interchangeable baskets or elements are normallyavailable for a given make, model, and size strainer.3.1.2 maximum allowable working

11、pressure (MAWP)thehighest internal pressure that the strainer can be subjected to inservice. The maximum nonshock working pressure for which astrainer is rated by the manufacturer.3.1.3 maximum design temperaturethe maximum tem-perature (MAT) for which the strainer is rated by the manu-facturer.1Thi

12、s specification is under the jurisdiction of ASTM Committee F25 on Shipsand Marine Technology and is the direct responsibility of Subcommittee F25.11 onMachinery and Piping Systems.Current edition approved Sept. 1, 2016. Published September 2016. Originallyapproved in 1988. Last previous edition app

13、roved in 2004 as F1200 88 (2010).DOI: 10.1520/F1200-88R16.2For 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.3Av

14、ailable from American National Standards Institute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 10036, http:/www.ansi.org.4Available from Manufacturers Standardization Society of the Valve and FittingsIndustry (MSS), 127 Park St., NE, Vienna, VA22180-4602, http:/www.mss-hq.org.5Available from Amer

15、ican Society of Mechanical Engineers (ASME), ASMEInternational Headquarters, Two Park Ave., New York, NY 10016-5990, http:/www.asme.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States13.1.4 strainera device which, when installed in a

16、pipeline, provides a mechanical means of removing solids from aflowing liquid or gas by using a barrier element.3.1.5 straining open areathe net effective open area of theclean element through which the fluid can pass.4. Classification4.1 Strainers may be classified into three general construc-tion

17、categories, simplex, duplex (or multiplex), and automatic(self-cleaning), as follows:4.1.1 SimplexA strainer consisting of a single basket orelement chamber that normally requires the flow through theunit to be shut down before cleaning.4.1.1.1 Classifications of simplex strainers based on portalign

18、ment relative to basket or element chamber are Y, T, Z, andothers.4.1.2 Duplex (or Multiplex)A strainer usually consistingof at least two basket or element chambers separated by a valve(or valving) that permits continuous flow of fluid through onechamber while the other is accessible for cleaning.4.

19、1.3 Automatic (Self-Cleaning)Astrainer providing somemeans for back-flushing or cleaning of the straining elementwhile the unit is in service. It can have one or more elementsand may require periodic shutdown for maintenance andinspection.4.2 Strainers may be further classified by pressure ratingsan

20、d types of port connections, port alignments relative to unitcenter lines, cover closures, valve types (in duplex), types ofbaskets or elements, materials of construction, and otherfeatures of design.5. Ordering Information5.1 Orders for products under this specification shall includethe following i

21、nformation as applicable. If a manufacturersstandardized product is being ordered, include all data neededby the manufacturer to define the product.5.1.1 Make.5.1.2 Model (simplex or duplex).5.1.3 Port size.5.1.4 Port connections.5.1.5 Maximum allowable working pressure/temperaturerating.5.1.6 Body

22、and cover material.5.1.7 Type of cover closure.5.1.8 Basket (element) material.5.1.9 Basket hole size.5.1.10 Optional design features.5.1.11 Certification (see 6.4, 8.1.2.1, and Section 9).5.1.12 Nondestructive examination requirements (see 8.2).5.1.13 This ASTM standard designation number.5.1.14 Ad

23、ditional requirements or testing as contracted bythe manufacturer and purchaser.5.2 If a product is to be specified by performance criteriarather than model description, then the following should bespecified:5.2.1 Maximum allowable clean pressure loss at a givenflow capacity of a given liquid at a g

24、iven viscosity.5.2.2 Temperature and pressure.5.2.3 Straining area.5.2.4 Minimum basket rupture differential pressure (see7.9).5.2.5 Maximum valve seepage rates (see 7.8).5.2.6 Certification (see 6.4, 8.1.2.1, and Section 9).5.2.7 For self-cleaning strainers, specify basket cleaningeffectiveness and

25、 endurance testing.5.3 In general, the standard product description should notbe mixed with the performance criteria because conflictingspecifications can result (for example, maximum allowablepressure loss inconsistent with product size).6. Materials and Manufacture6.1 Strainer housings, as well as

26、 any pressure-retainingparts, including bolting used for pressure retention, shall beconstructed of materials listed in SectionVIII, Division 1 of theASME Boiler and Pressure Vessel Code (hereafter calledASME Code) or ANSI/ASME B3.1. Bolts, screws, and fasten-ers in contact with interior fluid shall

27、 be of appropriatecorrosion-resistant material.6.2 The pressure ratings established under this specificationare based on materials of high quality produced under regularcontrol of chemical and mechanical properties by a recognizedprocess. The manufacturer shall be prepared to submit acertificate of

28、compliance verifying that his product has beenmanufactured from material whose chemical and mechanicalproperties are at least equal to the requirements of an accept-able standard or specification.6.3 For materials not having values of allowable stresstabulated in Section VIII, Division 1 of the ASME

29、 Code,allowable stresses shall be determined in accordance with theprocedures outlined in Subsection C and Appendix P of thatsection. Where it can be shown that the values of allowablestress listed for a particular material in one product form(because of similar chemistry, mechanical properties, hea

30、ttreatment, and so forth) are applicable to the same material inan unlisted product form, the listed values of allowable stressmay be used.6.4 Seals and parts, other than pressure-retaining parts andbolting used for pressure retention, shall be of materialssuitable for the service.6.5 Users are caut

31、ioned against applications with fluidswhich may react chemically with any materials used in theseproducts in contact with the fluid.7. Other Requirements7.1 The maximum allowable working pressure (MAWP)and maximum design temperature rating of strainers coveredunder this specification shall be establ

32、ished by at least one ofthe following methods:7.1.1 Proof test in accordance with the requirements pre-scribed in paragraph UG-101 of Section VIII of the ASMECode. If burst-type tests as outlined in paragraph UG-101(m)are used, it is not necessary to rupture the component. In thiscase, the value of

33、B to be used in determining the MAWP shallbe the maximum pressure to which the component wassubjected without rupture. Safety of personnel shall be givenF1200 88 (2016)2serious consideration when conducting proof tests. Compo-nents that have been subjected to a proof test shall not beoffered for sal

34、e.7.1.2 Design calculations in accordance with the require-ments prescribed in Section VIII, Division 1 of the ASMECode.7.1.3 Extensive and successful performance experience un-der comparable service conditions with similar materials maybe used as a basis for rating provided all other provisions oft

35、his specification are met.7.2 Strainers may be cast, forged, or fabricated of plates,tubes, or pipes. Welding on pressure-retaining componentsshall be as specified below.7.3 Welded joint design details shall be in accordance withSection VIII, Division 1 of the ASME Code except as noted in7.4 and 7.5

36、. Supplemental radiography requirements are pre-sented in Section 8 of this specification. Welders and weldprocedures shall be qualified in accordance with Section IX ofthe ASME Code. Except for fillet welds, all welds shall be fullpenetration welds extending through the entire thickness of theshell

37、.7.4 Inlet and outlet connections consisting of welded flangesand fittings shall be in accordance with Specification F722.Pipe end connections for strainers shall be in accordance withone of the standards listed in 2.2 or 2.3. Where radiography isrequired by 8.2.2, all welded inlet and outlet connec

38、tions shallbe butt-weld joints as required by Specification F722 for Class1 piping systems.7.5 Welds on strainers greater than 6-in. (152-mm) internaldiameter or 1.5-ft3(0.042-m3) net internal volume rated above600 psi (4.14 MPa) or 400F (204C) shall be of the followingtypes as listed in Table UW-12

39、 of theASME Code: Type (1) forCategory A joints; Types (1) or (2) for Category B joints; andall Category C and D joints shall be full penetration weldsextending through the entire thickness of the vessel wall ornozzle wall.Welded joint categories are defined under UW-3 ofthe ASME Code.7.6 Post-weld

40、heat treatment shall be in accordance withSection VIII, Division 1 except as noted in 7.6.1.7.6.1 Strainers fabricated of carbon or low alloy steel,greater than 6-in. (152-mm) internal diameter or 1.5-ft3(0.042-m3) net internal volume, rated above 600 psi (4.14MPa) or 400F (204C), shall be post-weld

41、, heat-treatedregardless of thickness.7.7 Threaded pipe connections shall be limited to thefollowing pressures:34 in. (19 mm) NPS and below . . . 1500 psig (10.34 MPa) max1 in. (25 mm) NPS and below . . . 1200 psig (8.27 MPa) max2 in. (50 mm) NPS and below . . . 600 psig (4.14 MPa) max3 in. (76 mm)

42、NPS and below . . . 400 psig (2.76 MPa) max7.7.1 Threaded pipe joints above 2-in. (50-mm) nominalpipe size (NPS) shall not be used in systems that requireradiographic examination listed in 8.2.2.7.8 Duplex (or multiplex) strainer valve seepage rates shallbe minimized to prevent undue spillage of flu

43、id under normaloperating conditions while the element is being serviced orcleaned in accordance with the manufacturers procedures.Maximum seepage rates with a specified liquid at a specifiedpressure and temperature may be as contracted by the manu-facturer and purchaser (see 5.2.5), and provision ma

44、y be madeto include a test to determine acceptability before acceptancefor a given application.7.9 Baskets or elements shall withstand a minimum of10-psi (0.069-MPa) differential pressure without rupturing orsuch other differential pressure as contracted by manufacturerand purchaser (see 5.2.4) for

45、the application involved.8. Test Methods8.1 Test all strainers by one of the following methods:8.1.1 Conduct a hydrostatic test at 112 times the 100F(38C) rated MAWPof the strainer. Perform the test with wateror other liquid having a maximum viscosity of 40 SSU at125F (52C) with a maximum pressure t

46、est temperature of125F (52C). The minimum duration of the test shall be 15 sfor strainers less than 2-in. (50-mm) NPS, 1 min for strainers212 through 8 in. (63 through 203 mm), and 3 min for largersizes. The purpose of this test is to detect leaks and structuralimperfections. No visible leakage is p

47、ermitted.8.1.2 Strainers of 2-in. (50-mm) NPS and smaller with otherthan flanged connections may, at the option of themanufacturer, be air tested to the lesser of 1.2 times MAWP or80 psig (0.55 MPa). The minimum duration of the test shall be15 s. Visually detectable leakage is not acceptable.8.1.2.1

48、 If this option is exercised, the manufacturer shall beable to certify that a prototype of the same size strainer wassubjected to a hydrostatic test in accordance with 8.1.1.8.2 Examine welds as follows:8.2.1 Visually examine all welds in accordance with ANSIB31.1.F1200 88 (2016)38.2.2 Welded inlet

49、and outlet connections of a strainer thatare equal to or greater than 4-in. (100-mm) nominal diameteror 0.375-in. (9.5-mm) nominal wall thickness in the followingservices shall be 100 % radiographically examined in accor-dance with UW-51 of the ASME Code.Service Pressure, psig (MPa) Temperature, F (C)Liquefied flammable gas above 150 (1.03).and.above 0 (18)Fuels above 150 (1.03).or.above 150 (66)Liquids with a flash pointA150F (66C) or belowabove 225 (1.55).or.above 150 (66)Liquids with a flash point above150F (66C)Babove 225 (1.55).or.above

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