PFI ES-42-2005 STANDARD FOR POSITIVE MATERIAL IDENTIFICATION OF PIPING COMPONENTS USING PORTABLE X-RAY EMISSION TYPE TEST EQUIPMENT《使用便携式X射线发射式试验设备鉴别管道部件阳性材料的标准》.pdf
《PFI ES-42-2005 STANDARD FOR POSITIVE MATERIAL IDENTIFICATION OF PIPING COMPONENTS USING PORTABLE X-RAY EMISSION TYPE TEST EQUIPMENT《使用便携式X射线发射式试验设备鉴别管道部件阳性材料的标准》.pdf》由会员分享,可在线阅读,更多相关《PFI ES-42-2005 STANDARD FOR POSITIVE MATERIAL IDENTIFICATION OF PIPING COMPONENTS USING PORTABLE X-RAY EMISSION TYPE TEST EQUIPMENT《使用便携式X射线发射式试验设备鉴别管道部件阳性材料的标准》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、CHARTER MEMBERS ACCO ENGINEERED SYSTEMS Glendale, California ACCORD PIPE FABRICATORS, INC. Jamaica, New YorkA & G PIPING, INC. Forth Worth, Texas ARMISTEAD MECHANICAL, INC. Mahwah, New Jersey BASSETT MECHANICAL, INC. Kaukauna, Wisconsin GEM INDUSTRIAL, INC. Walbridge, Ohio HUXTABLE & ASSOCIATES, INC
2、. Lawrence, Kansas IDEAL WELDERS, LTD. Delta, British Columbia (Canada) INDUSTRIAL POWER SYSTEMS, INC. Toledo, Ohio J. F. AHERN CO. Fond du Lac, Wisconsin JOHN E. GREEN COMPANY Highland Park, Michigan KINETIC SYSTEMS, INC. Union City, California MARELICH MECHANICAL CO. INC. Hayward, CaliforniaMC ABE
3、E CONSTRUCTION, INC. Tuscaloosa, Alabama MC CARLS, INC. Beaver Falls, Pennsylvania MECHANICAL INCORPORATED Freeport, Illinois MID STATES PIPE FABRICATING, INC. El Dorado, Arkansas MURPHY COMPANY St. Louis, Missouri NARDEI FABRICATORS, LTD. Calgary, Alberta (Canada) NEWMECH COMPANIES, INC. St. Paul,
4、Minnesota PIONEER PIPE, INC. Marietta, Ohio PIPE FABRICATING & SUPPLY CO. Woods Cross, Utah PIPING SYSTEMS, INC. New London, Wisconsin S & D / OSTERFELD MECHANICAL CONTRACTORS Dayton, Ohio S. A. COMUNALE COMPANY, INC. Barberton, Ohio SCHECK MECHANICAL WI CORP. Kaukauna, Wisconsin TEAM INDUSTRIES, IN
5、C. Kaukauna, Wisconsin UNIVERSITY MECHANICAL & ENGINEERING CO. San Diego, California W. J. ONEIL COMPANY Livonia, Michigan A current index of the latest revised ES Standards, Technical Bulletins and Safety Training Guideline is available from the Pipe Fabrication Institute. PFI Safety Training Guide
6、line, Standards and Technical Bulletins are published to serve proven needs of the pipe fabricating industry at the design level and in actual shop operations. Hence, such needs are continually considered and reviewed by the Engineering Committee of the Pipe Fabrication Institute to provide recommen
7、ded procedures, which have been demonstrated by collective experiences to fulfill requirements in a manner for Code compliance. However, as the PFI Standards are for minimum requirements the designer or fabricator always has the option of specifying supplementary conditions in the form of requiremen
8、ts beyond the scope of the PFI publications. PFI Standard ES-42 (Revised February 2005) STANDARD FOR POSITIVE MATERIAL IDENTIFICATION OF PIPING COMPONENTS USING PORTABLE X-RAY EMISSION TYPE TEST EQUIPMENT Prepared by Pipe Fabrication Institute Engineering Committee All PFI Standards are advisory onl
9、y. There is no agreement to adhere to any PFI Standard and their use by anyone is entirely voluntary. Copyright by PIPE FABRICATION INSTITUTE Dedicated to Technical Advancements and Standardization in the Pipe Fabrication Industry Since 1913 USA 666 Fifth Ave., #325 New York, NY 10103 CANADA 655, 32
10、ndAve., suite 201 Lachine, QC H8T 3G6 WEB SITE www.pfi-institute.org 2 STANDARD FOR POSITIVE MATERIAL IDENTIFICATION OF PIPING COMPONENTS USING PORTABLE X-RAY EMISSION TYPE TEST EQUIPMENT 1. SCOPE 1.1 This standard establishes basic requirements for conducting Positive Material Identification (PMI)
11、tests on ferrous and nonferrous metal alloy materials using portable x-ray emission type equipment, which is currently available for production shop and construction site verification of these materials. 1.1.1 X-ray emission instruments are not capable of determining the carbon content of an alloy.
12、Therefore, utilization of these instruments will not identify or confirm low-or high-carbon austenitic stainless steel (L-and H-type) alloy grades. Other methods must be used if such identification is required. 1.2 This standard does not address material verification by methods other than usage of p
13、ortable x-ray emission analysis equipment, nor is it intended to supplant the use of laboratory type testing methods as contained in ASTM A751, ASTM E353 and ASTM E354, if such level of accuracy is required. 1.3 This standard covers the verification of alloys in the form of pipe, flanges, fittings,
14、forgings, bar, castings, plate, valves, welds, pressure retaining and supporting components of an assembly or any other components or materials specifically designated for PMI. 1.4 This standard does not establish the extent of PMI verification. When PMI is required, the purchaser specifications or
15、purchase order, or other agreement between the purchaser and the contractor, should establish the requirement for, and the extent of the PMI testing. Definition should be given of the items to be verified by PMI and the percentage of each lot to receive PMI. 1.5 This standard does not address the sa
16、fety factors associated with use of portable x-ray emission analysis equipment. It is the responsibility of the user of this standard to establish appropriate safety and health practices and to determine the applicability of regulatory limitations prior to use. 2. PURPOSE OF POSITIVE MATERIAL IDENTI
17、FICATION 2.1 The purpose of PMI is to ensure that the nominal composition (i.e. type/grade) of the material specified has been correctly supplied and/or installed. PMI is not intended to establish certification of a material to a particular ASME/ASTM specification. PMI is not considered a substitute
18、 for required material test reports listing chemical composition. Material test reports are not to be considered PMI verification. 3. REFERENCES 3.1 The following publications are referenced in this standard. Unless otherwise specified herein, the latest edition shall be used: A. ASTM (American Soci
19、ety of Testing and Materials) Standard Test Methods. B. ASME Boiler and Pressure Vessel Code: Section II, Material Specifications (Parts A, B and C). C. PFI (Pipe Fabrication Institute), Recommended Practice for Color Coding of Piping Materials (ES-22). 4. DEFINITIONS 4.1 Alloy material - Any materi
20、al whose specification contains measurable quantities of alloying elements other than carbon, manganese, silicon, and niobium or vanadium. Steels are not considered alloy steels if they contain only carbon (up to 2 percent), silicon (usually limited to 0.60 percent), and manganese (to approximately
21、1.65 percent). 4.2 Positive Material Identification (PMI) (for x-ray emission type testing) - The process of determining the nominal composition of an alloy component. Positive Material Identification is a semi-quantitative analysis PFI Standard ES-42 |Denotes Revision (Revised February 2005) 7 PFI
22、Standard ES-42 |Denotes Revision (Revised February 2005) Table 1 Essential Elements for Positive Material Identification Material UNS No. Cr Ni Mo Cb Ti Cu W Al V Fe 1-1/4 Cr, 1/2 Mo K11597 X X 2-1/4 Cr, 1 Mo K21590 X X 5 Cr, 1/2 Mo K41545 X X 9 Cr, 1 Mo K90941 X X 9 Cr, 1 Mo, 0.2V K90901 X X X 9 Cr
23、, 1/2 Mo, 0.2V 2W K92460 X X X X 12 Cr, 4 Ni S41500 X X 304 S30400 X X X 308 S30800 X X X 309 S30900 X X X 310 S31000 X X X 316 S31600 X X X 317 S31700 X X X 321 S32100 X X X X 347 S34700 X X X X 2205 (“Duplex”) S31803 X X X Alloy B-2 N10665 X X Alloy C-22 N06022 X X X X X Alloy C-276 N10276 X X X X
24、 Alloy 20 N08020 X X X X X Alloy 600 N06600 X X X Alloy 625 N06625 X X X X X Alloy 800 N08800 X X X X X Alloy 825 N08825 X X X X Alloy 400 N04400 X X AL-6XN N08367 X X X 904L N08904 X X X X 90/10 CuNi C70600 X X 70/30 CuNi C71500 X X 6 10.1.6 Steel die stamps shall not be used on light-wall (less th
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