• ASTM B 348 : 2013 : REDLINE

    Superseded A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

    Standard Specification for Titanium and Titanium Alloy Bars and Billets

    Available format(s):  PDF

    Superseded date:  13-02-2020

    Language(s):  English

    Published date:  01-07-2013

    Publisher:  American Society for Testing and Materials

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    Abstract - (Show below) - (Hide below)

    CONTAINED IN VOL. 02.04, 2015 Defines annealed titanium and titanium alloy bars and billets.

    Scope - (Show below) - (Hide below)

    1.1This specification2 covers annealed titanium and titanium alloy bars and billets as follows:

    1.1.1Grade 1—UNS R50250. Unalloyed titanium,

    1.1.2Grade 2—UNS R50400. Unalloyed titanium,

    1.1.2.1Grade 2H—UNS R50400. Unalloyed titanium (Grade 2 with 58 ksi (400 MPa) minimum UTS),

    1.1.3Grade 3—UNS R50550. Unalloyed titanium,

    1.1.4Grade 4—UNS R50700. Unalloyed titanium,

    1.1.5Grade 5—UNS R56400. Titanium alloy (6 % aluminum, 4 % vanadium),

    1.1.6Grade 6—UNS R54520. Titanium alloy (5 % aluminum, 2.5 % tin),

    1.1.7Grade 7—UNS R52400. Unalloyed titanium plus 0.12 to 0.25 % palladium,

    1.1.7.1Grade 7H—UNS R52400. Unalloyed titanium plus 0.12 to 0.25 % palladium (Grade 7 with 58 ksi (400 MPa) minimum UTS),

    1.1.8Grade 9—UNS R56320. Titanium alloy (3 % aluminum, 2.5 % vanadium),

    1.1.9Grade 11—UNS R52250. Unalloyed titanium plus 0.12 to 0.25 % palladium,

    1.1.10Grade 12—UNS R53400. Titanium alloy (0.3 % molybdenum, 0.8 % nickel),

    1.1.11Grade 13—UNS R53413. Titanium alloy (0.5 % nickel, 0.05 % ruthenium),

    1.1.12Grade 14—UNS R53414. Titanium alloy (0.5 % nickel, 0.05 % ruthenium),

    1.1.13Grade 15—UNS R53415. Titanium alloy (0.5 % nickel, 0.05 % ruthenium),

    1.1.14Grade 16—UNS R52402. Unalloyed titanium plus 0.04 to 0.08 % palladium,

    1.1.14.1Grade 16H—UNS R52402. Unalloyed titanium plus 0.04 to 0.08 % palladiumm (Grade 16 with 58 (400 MPa) ksi minimum UTS),

    1.1.15Grade 17—UNS R52252. Unalloyed titanium plus 0.04 to 0.08 % palladium,

    1.1.16Grade 18—UNS R56322. Titanium alloy (3 % aluminum, 2.5 % vanadium) plus 0.04 to 0.08 % palladium,

    1.1.17Grade 19—UNS R58640. Titanium alloy (3 % aluminum, 8 % vanadium, 6 % chromium, 4 % zirconium, 4 % molybdenum),

    1.1.18Grade 20—UNS R58645. Titanium alloy (3 % aluminum, 8 % vanadium, 6 % chromium, 4 % zirconium, 4 % molybdenum) plus 0.04 %–0.08 % palladium,

    1.1.19Grade 21—UNS R58210. Titanium alloy (15 % molybdenum, 3 % aluminum, 2.7 % niobium, 0.25 % silicon),

    1.1.20Grade 23—UNS R56407. Titanium alloy (6 % aluminum, 4 % vanadium with extra low interstitial elements, ELI),

    1.1.21Grade 24—UNS R56405. Titanium alloy (6 % aluminum, 4 % vanadium) plus 0.04 % to 0.08 % palladium,

    1.1.22Grade 25—UNS R56403. Titanium alloy (6 % aluminum, 4 % vanadium) plus 0.3 % to 0.8 % nickel and 0.04 % to 0.08 % palladium,

    1.1.23Grade 26—UNS R52404. Unalloyed titanium plus 0.08 to 0.14 % ruthenium,

    1.1.23.1Grade 26H—UNS R52404. Unalloyed titanium plus 0.08 to 0.14 % ruthenium (Grade 26 with 58 ksi (400 MPa) minimum UTS),

    1.1.24Grade 27—UNS R52254. Unalloyed titanium plus 0.08 to 0.14 % ruthenium,

    1.1.25Grade 28—UNS R56323. Titanium alloy (3 % aluminum, 2.5 % vanadium plus 0.08–0.14 % ruthenium),

    1.1.26Grade 29—UNS R56404. Titanium alloy (6 % aluminum, 4 % vanadium, extra low interstitial, ELI plus 0.08 to 0.14 % ruthenium),

    1.1.27Grade 30—UNS R53530. Titanium alloy (0.3 % cobalt, 0.05 % palladium),

    1.1.28Grade 31—UNS R53532. Titanium alloy (0.3 % cobalt, 0.05 % palladium),

    1.1.29Grade 32—UNS R55111. Titanium alloy (5 % aluminum, 1 % tin, 1 % zirconium, 1 % vanadium, 0.8 % molybdenum),

    1.1.30Grade 33—UNS R53442. Titanium alloy (0.4 % nickel, 0.015 % palladium, 0.025 % ruthenium, 0.15 % chromium),

    1.1.31Grade 34—UNS R53445. Titanium alloy (0.4 % nickel, 0.015 % palladium, 0.025 % ruthenium, 0.15 % chromium),

    1.1.32Grade 35—UNS R56340. Titanium alloy (4.5 % aluminum, 2 % molybdenum, 1.6 % vanadium, 0.5 % iron, 0.3 % silicon),

    1.1.33Grade 36—UNS R58450. Titanium alloy (45 % niobium),

    1.1.34Grade 37—UNS R52815. Titanium alloy (1.5 % aluminum), and

    1.1.35Grade 38—UNS R54250. Titanium alloy (4 % aluminum, 2.5 % vanadium, 1.5 % iron).

    Note 1H grade material is identical to the corresponding numeric grade (that is, Grade 2H = Grade 2) except for the higher guaranteed minimum UTS, and may always be certified as meeting the requirements of its corresponding numeric grade. Grades 2H, 7H, 16H, and 26H are intended primarily for pressure vessel use.

    1.2The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard.

    General Product Information - (Show below) - (Hide below)

    Committee B 10
    Document Type Redline
    Publisher American Society for Testing and Materials
    Status Superseded
    Superseded By

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    ASTM F 3302 : 2018 Standard for Additive Manufacturing – Finished Part Properties – Standard Specification for Titanium Alloys via Powder Bed Fusion
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    BS ISO 27186:2010 Active implantable medical devices. Four-pole connector system for implantable cardiac rhythm management devices. Dimensional and test requirements
    AWS D1.9/D1.9M:2015 STRUCTURAL WELDING CODE - TITANIUM
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    SAE AS 4623 : 2016 HOSE ASSEMBLY, POLYTETRAFLUOROETHYLENE, PARA-ARAMID REINFORCED, 3,000 PSI, 275 DEGREES F, HEAVY DUTY, AIRCRAFT HYDRAULIC SYSTEMS
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    EN ISO 4126-2:2003/AC:2006 SAFETY DEVICES FOR PROTECTION AGAINST EXCESSIVE PRESSURE - PART 2: BURSTING DISC SAFETY DEVICES
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    ASTM F 1155 : 2010 : R2015 Standard Practice for Selection and Application of Piping System Materials
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    BS PD5500(2015) : 2015 SPECIFICATION FOR UNFIRED FUSION WELDED PRESSURE VESSELS
    BS PD5500(2018) : 2018 SPECIFICATION FOR UNFIRED FUSION WELDED PRESSURE VESSELS
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    ASTM F 3122 : 2014 Standard Guide for Evaluating Mechanical Properties of Metal Materials Made via Additive Manufacturing Processes
    ASTM B 363 : 2014 : REDLINE Standard Specification for Seamless and Welded Unalloyed Titanium and Titanium Alloy Welding Fittings
    SAE AS 1975 : 2016 Hose Assembly, Polytetrafluoroethylene, Para-Aramid Reinforced, 3000/4000 psi, 275 °F, Standard Duty, Hydraulic, Aircraft Systems
    I.S. EN ISO 4126-2:2003 SAFETY DEVICES FOR PROTECTION AGAINST EXCESSIVE PRESSURE - PART 2: BURSTING DISC SAFETY DEVICES
    ASTM B 381 : 2013 : REDLINE SPECIFICATION FOR TITANIUM AND TITANIUM ALLOY FORGINGS
    ISO 27186:2010 Active implantable medical devices Four-pole connector system for implantable cardiac rhythm management devices - Dimensional and test requirements
    NASA HDBK 6025 : 2014 GUIDELINES FOR THE SPECIFICATION AND CERTIFICATION OF TITANIUM ALLOYS FOR NASA FLIGHT APPLICATIONS
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    TR 4661 : 2009 AEROSPACE SERIES - HINGES, FLIGHT CONTROLS MATERIALS AND SURFACE TREATMENTS
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    SAE MA 1975 : 2015 HOSE ASSEMBLIES, POLYTETRAFLUOROETHYLENE, ARAMID REINFORCED, 135 DEGREE C, STANDARD DUTY, 28000/21000 KPA, HYDRAULIC, AIRCRAFT SYSTEMS
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    UNE-EN ISO 7153-1:2017 Surgical instruments - Materials - Part 1: Metals (ISO 7153-1:2016)
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    AAMI ISO 27186 : 2010 ACTIVE IMPLANTABLE MEDICAL DEVICES - FOUR-POLE CONNECTOR SYSTEM FOR IMPLANTABLE CARDIAC RHYTHM MANAGEMENT DEVICES - DIMENSIONAL AND TEST REQUIREMENTS
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    SAE AS 4604 : 2003 HOSE ASSEMBLY, 3000 PSI, POLYTETRAFLUOROETHYLENE, METALLIC REINFORCED, 400 DEGREES F, HEAVY DUTY, AIRCRAFT HYDRAULIC SYSTEMS
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    ASTM E 2371 : 2013 Standard Test Method for Analysis of Titanium and Titanium Alloys by Direct Current Plasma and Inductively Coupled Plasma Atomic Emission Spectrometry (Performance-Based Test Methodology)
    ASTM E 1409 : 2013 : REDLINE Standard Test Method for Determination of Oxygen and Nitrogen in Titanium and Titanium Alloys by Inert Gas Fusion
    ASTM E 8 : 2004 Standard Test Methods for Tension Testing of Metallic Materials
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