SAE J 464-1989 Magnesium Alloys《镁合金》.pdf
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1、SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirelyvoluntary, and its applicability and suitability for any particular use, including any patent infringement arising therefro
2、m, is the sole responsibility of the user.”SAE reviews each technical report at least every five years at which time it may be reaffirmed, revised, or cancelled. SAE invites your written comments and suggestions.QUESTIONS REGARDING THIS DOCUMENT: (412) 772-8512 FAX: (412) 776-0243TO PLACE A DOCUMENT
3、 ORDER; (412) 776-4970 FAX: (412) 776-0790SAE WEB ADDRESS http:/www.sae.orgCopyright 1989 Society of Automotive Engineers, Inc.All rights reserved. Printed in U.S.A.SURFACEVEHICLE400 Commonwealth Drive, Warrendale, PA 15096-0001INFORMATIONREPORTJ464REAF.JAN89Issued 1940-01Reaffirmed 1989-01Supercedi
4、ng J464cMAGNESIUM ALLOYSForewordThis Document has not changed other than to put it into the new SAE Technical Standards BoardFormat.1. ScopeThis report on magnesium alloys covers those alloys which have been more commonly used in theUnited States for automotive, aircraft, and missile applications. B
5、asic information on nomenclature and temperdesignation is given. Design data and many characteristics covered by a purchase specification are notincluded.2. References2.1 Applicable PublicationsThe following publications form a part of the specification to the extent specifiedherein. Unless otherwis
6、e indicated the lastest revision of SAE publications shall apply.2.1.1 ASTM PUBLICATIONSAvailable from ASTM, 100 Barr Harbor Drive, West Conshohocken, PA 19428-2959.ASTM B 275 Recommended Practice for Codification of Light Metals and Alloys, Cast and WroughtASTM B 296Recommended Practice for Temper
7、Designation of Magnesium Alloys, Cast and Wrought3. Sources Of MagnesiumMagnesium is the third most abundant structural element in the earths crust, andconsidered inexhaustible. Common sources are sea water, natural brines, magnesite, and dolomite. Threemethods of extraction are used in the United S
8、tates. One method involves treating sea water with a source ofalkalinity (lime or caustic soda) to precipitate the magnesium as hydroxide, which is then mixed withhydrochloric acid to produce magnesium chloride. The magnesium chloride is reduced electrolytically toproduce magnesium metal and a mixtu
9、re of chlorine and hydrochloric acid. A second method producescoproduct magnesium metal and pure chlorine in the electrolytic cell by the reduction of anhydrousmagnesium chloride. The anhydrous cell feed results from the dehydration of natural brines. Another methodof extraction which is also used i
10、n the United States and in other countries is a thermal reduction method,generally referred to as the ferro-silicon process, employing an alloy of iron and silicon to reduce magnesiumoxide. Most of the magnesium ingot sold is of 99.80% purity. Grades of magnesium of 99.90, 99.95, and99.98% purity ar
11、e also available. The higher purity grades are used mostly in nuclear applications and forreduction purposes.COPYRIGHT Society of Automotive Engineers, Inc.Licensed by Information Handling ServicesSAE J464 Reaffirmed JAN89-2-4. PropertiesMagnesium is extremely light with the common alloys having a s
12、pecific gravity of about 1.8compared to 2.7 for aluminum. The heavier structural metals like iron, copper, and zinc are approximately fourtimes as heavy as magnesium. Magnesium melts at 650C (1202F). The coefficient of thermal expansionbetween 20100C (68212F) is approximately 0.0000261/C (0.0000145/
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