SAE AMS 4898D-2014 Titanium Alloy Sheet 6Al - 2Sn - 2Zr - 2Mo - 2Cr - 0 15Si Annealed (UNS R56222)《退火6Al - 2Sn - 2Zr - 2Mo - 2Cr - 0 15Si钛合金板材》.pdf
《SAE AMS 4898D-2014 Titanium Alloy Sheet 6Al - 2Sn - 2Zr - 2Mo - 2Cr - 0 15Si Annealed (UNS R56222)《退火6Al - 2Sn - 2Zr - 2Mo - 2Cr - 0 15Si钛合金板材》.pdf》由会员分享,可在线阅读,更多相关《SAE AMS 4898D-2014 Titanium Alloy Sheet 6Al - 2Sn - 2Zr - 2Mo - 2Cr - 0 15Si Annealed (UNS R56222)《退火6Al - 2Sn - 2Zr - 2Mo - 2Cr - 0 15Si钛合金板材》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
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 entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising theref
2、rom, is the sole responsibility of the user.”SAE reviews each technical report at least every five years at which time it may be revised, reaffirmed, stabilized, or cancelled. SAE invites your written comments and suggestions.Copyright 2013 SAE InternationalAll rights reserved. No part of this publi
3、cation may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE.TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada)Tel: +1 724-776-4970 (out
4、side USA)Fax: 724-776-0790Email: CustomerServicesae.orgSAE WEB ADDRESS: http:/www.sae.orgSAE values your input. To provide feedbackon this Technical Report, please visithttp:/www.sae.org/technical/standards/AMS4898DAEROSPACE MATERIAL SPECIFICATIONAMS4898 REV. DIssued 1996-09Revised 2014-01Supersedin
5、g AMS4898CTitanium Alloy, Sheet6Al - 2Sn - 2Zr - 2Mo - 2Cr - 0.15SiAnnealed(Composition similar to UNS R56222)RATIONALEAMS4898D results from a Five Year Review and update of this specification.1. SCOPE1.1 FormThis specification covers a titanium alloy in the form of sheet in nominal thicknesses 0.01
6、6 through 0.1874 inch (0.41 through 4.760 mm).1.2 ApplicationThis sheet has been used typically for parts requiring high strength, toughness, and fatigue strength up to 750 F (399 C), but usage is not limited to such applications. The product can be superplastically formed above 1500 F (816 C) and i
7、t can be aged after air cooling from the solution treatment or super-plastic forming temperature to increase the strength.1.2.1 Certain processing procedures and service conditions may cause this sheet to become subject to stress-corrosion cracking; ARP982 recommends practices to minimize such condi
8、tions.2. APPLICABLE DOCUMENTSThe issue of the following documents in effect on the date of the purchase order forms a part of this specification to the extent specified herein. The supplier may work to a subsequent revision of a document unless a specific document issue is specified. When the refere
9、nced document has been cancelled and no superseding document has been specified, the last published issue of that document shall apply.2.1 SAE PublicationsAvailable from SAE International, 400 Commonwealth Drive, Warrendale, PA 15096-0001, Tel: 877-606-7323 (inside USA and Canada) or 724-776-4970 (o
10、utside USA), www.sae.orgAMS2242 Tolerances, Corrosion and Heat-Resistant Steel, Iron Alloy, Titanium, and Titanium Alloy Sheet, Strip, and PlateAMS2368 Sampling and Testing of Wrought Titanium Raw Material, Except Forgings and Forging StockSAE INTERNATIONAL AMS4898D Page 2 of 7AMS2750 PyrometryAMS28
11、09 Identification, Titanium and Titanium Alloy Wrought ProductsARP982 Minimizing Stress-Corrosion Cracking in Wrought Titanium Alloy Products2.2 ASTM PublicationsAvailable from ASTM International, 100 Barr Harbor Drive, P.O. Box C700, West Conshohocken, PA 19428-2959, Tel: 610-832-9585, www.astm.org
12、ASTM E 8 / E 8M Tension Testing of Metallic MaterialsASTM E 290 Bend Testing Material for DuctilityASTM E 1409 Determination of Oxygen and Nitrogen in Titanium and Titanium Alloys by the Inert Gas Fusion TechniqueASTM E 1447 Determination of Hydrogen in Titanium and Titanium Alloys by the Inert Gas
13、Fusion Thermal Conductivity/Infrared Detection MethodASTM E 1941 Determination of Carbon in Refractory and Reactive Metals and Their Alloys by Combustion AnalysisASTM E 2371 Analysis of Titanium and Titanium Alloys by Direct Current Plasma and Inductively Coupled Atomic Emission Plasma Spectrometry3
14、. TECHNICAL REQUIREMENTS3.1 CompositionShall conform to the percentages by weight shown in Table 1; carbon shall be determined in accordance with ASTM E 1941, hydrogen in accordance with ASTM E 1447, oxygen and nitrogen in accordance with ASTM E 1409, and other elements in accordance with ASTM E 237
15、1. Other analytical methods may be used if acceptable to the purchaser.TABLE 1 - COMPOSITIONElement min maxAluminumTinZirconiumMolybdenumChromiumSiliconIronOxygenCarbonNitrogenHydrogenOther Elements, each (3.1.1)Other Elements, total (3.1.1)Titanium5.251.751.751.751.750.10-remainder6.252.252.252.252
16、.250.200.150.150.080.050.0150.100.40(500 ppm)(150 ppm)3.1.1 Determination not required for routine acceptance.3.2 Melting PracticeAlloy shall be multiple melted. The first melt shall be made by vacuum consumable electrode, nonconsumable electrode, electron beam cold hearth, or plasma arc cold hearth
17、 melting practice. The subsequent melt or melts shall be made under vacuum using vacuum arc remelting (VAR) practice. Alloy additions are not permitted in the final vacuum arc remelting (VAR) melt. SAE INTERNATIONAL AMS4898D Page 3 of 73.2.1 The atmosphere for nonconsumable electrode melting shall b
18、e vacuum or shall be argon and/or helium at an absolute pressure not higher than 1000 mm of mercury.3.2.2 The electrode tip for nonconsumable electrode melting shall be water-cooled copper.3.3 ConditionHot rolled, annealed, ground, and pickled. Surface appearance shall be comparable to a commercial
19、corrosion-resistant steel No. 2D finish (See 8.4).3.3.1 AnnealingHeat to a temperature within the range 1300 to 1650 F (704 to 899 C), hold at the selected temperature within 25 F (14 C) for a time commensurate with product thickness and the heating equipment and procedure used, and cool to room tem
20、perature at a rate equivalent to an air cool or faster. Pyrometry shall be in accordance with AMS2750.3.4 PropertiesThe product shall conform to the following requirements, determined in accordance with AMS2368, except tensile testing shall be determined in accordance with 3.4.1.1 and bending shall
21、be determined in accordance with 3.4.1.2.3.4.1 As Annealed3.4.1.1 Tensile PropertiesShall be as shown in Table 2, determined in accordance with ASTM E 8 / E 8M with the rate of strain set at 0.005 inch/inch/minute (0.005 mm/mm/minute) and maintained within a tolerance of 0.002 inch/inch/minute (0.00
22、2 mm/mm/minute) through the 0.2% offset yield strain. Tensile property requirements apply in both the longitudinal and transverse directions.TABLE 2A - MINIMUM TENSILE PROPERTIES, INCH/POUND UNITSNominalThicknessInchTensileStrengthksiYield Strengthat 0.2% OffsetksiElongation in2 Inches%0.016 to 0.02
23、5, inclOver 0.025 to 0.032, inclOver 0.032 to 0.080, inclOver 0.080 to 0.1874, incl1551551551551501501501505678TABLE 2B - MINIMUM TENSILE PROPERTIES, SI UNITSNominalThicknessMillimetersTensileStrengthMPaYield Strengthat 0.2% OffsetMPaElongation in50.8 Millimeters%0.41 to 0.64, inclOver 0.64 to 0.81,
24、 inclOver 0.81 to 2.03, inclOver 2.03 to 4.760, incl1069106910691069103410341034103456783.4.1.1.1 Mechanical property requirements for product thinner than the sizes covered by Tables 2 and 3 shall be agreed upon between purchaser and producer.SAE INTERNATIONAL AMS4898D Page 4 of 73.4.1.2 BendingPro
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