ASTM F3302-18
Standard for Additive Manufacturing – Finished Part Properties – Standard Specification for Titanium Alloys via Powder Bed Fusion

Standard No.
ASTM F3302-18
Release Date
2018
Published By
American Society for Testing and Materials (ASTM)
Latest
ASTM F3302-18
Scope
1.1 This specification covers additive manufacturing of components via full-melt powder bed fusion processing of titanium alloys. Components made using this processing method are typically used in applications that require mechanical properties similar to wrought products. Products built to this specification may require additional post-processing in the form of machining, polishing, etc., to meet necessary surface finish and dimensional requirements. 1.2 This specification is intended for the use of purchasers or producers, or both, of additively manufactured titanium components for defining the requirements and ensuring component properties. 1.3 Users are advised to use this specification as a basis for obtaining components that will meet the minimum acceptance requirements established and revised by consensus of committee members. 1.4 User requirements considered more stringent may be met by the addition to the purchase order of one or more supplementary requirements, which include, but are not limited to, those listed in Supplementary Requirements S1-S16. 1.5 The values stated in SI units are to be regarded as the standard. Other units are included only for informational purposes. 1.6 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

ASTM F3302-18 Referenced Document

  • ASME B46.1 Surface Texture (Surface Roughness, Waviness, and Lay) ( - 2009)
  • ASTM B213 Standard Test Method for Flow Rate of Metal Powders
  • ASTM B214 Standard Test Method for Sieve Analysis of Metal Powders
  • ASTM B243 Standard Terminology of Powder Metallurgy*2023-05-01 Update
  • ASTM B311 Test Method for Density Determination for Powder Metallurgy (P/M) Materials Containing Less Than Two Percent Porosity
  • ASTM B348 Standard Specification for Titanium and Titanium Alloy Bars and Billets*2024-04-22 Update
  • ASTM B600 Standard Guide for Descaling and Cleaning Titanium and Titanium Alloy Surfaces
  • ASTM B769 Standard Test Method for Shear Testing of Aluminum Alloys
  • ASTM B822 Standard Test Method for Particle Size Distribution of Metal Powders and Related Compounds by Light Scattering
  • ASTM B855 Standard Test Method for Volumetric Flow Rate of Metal Powders Using Arnold Meter and Hall Funnel
  • ASTM B964 Standard Test Methods for Flow Rate of Metal Powders Using the Carney Funnel*2023-02-01 Update
  • ASTM D3951 Standard Practice for Commercial Packaging
  • ASTM E10 Standard Test Method for Brinell Hardness of Metallic Materials*2023-08-03 Update
  • ASTM E11 Standard Specification for Wire Cloth and Sieves for Testing Purposes
  • ASTM E1409 Standard Test Method for Determination of Oxygen in Titanium and Titanium Alloys by the Inert Gas Fusion Technique
  • ASTM E1417 Standard Practice for Liquid Penetrant Examination
  • ASTM E1447 Standard Test Method for Determination of Hydrogen in Titanium and Titanium Alloys by the Inert Gas Fusion Thermal Conductivity Method
  • ASTM E1450 Standard Test Method for Tension Testing of Structural Alloys in Liquid Helium
  • ASTM E1742 Standard Practice for Radiographic Examination*2024-04-22 Update
  • ASTM E18 Standard Test Methods for Rockwell Hardness of Metallic Materials*2022-05-01 Update
  • ASTM E1820 Standard Test Method for Measurement of Fracture Toughness
  • ASTM E1941 Standard Test Method for Determination of Carbon in Refractory and Reactive Metals and Their Alloys
  • ASTM E21 Standard Test Methods for Elevated Temperature Tension Tests of Metallic Materials
  • ASTM E23 Standard Test Methods for Notched Bar Impact Testing of Metallic Materials
  • ASTM E2368 Standard Practice for Strain Controlled Thermomechanical Fatigue Testing*2024-04-22 Update
  • ASTM E2371 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)*2024-04-22 Update
  • ASTM E238 Standard Test Method for Pin-Type Bearing Test of Metallic Materials
  • ASTM E2626 Standard Guide for Spectrometric Analysis of Reactive and Refractory Metals*2024-04-22 Update
  • ASTM E29 Standard Practice for Using Significant Digits in Test Data to Determine Conformance with Specifications
  • ASTM E3 Standard Practice for Preparation of Metallographic Specimens
  • ASTM E384 Standard Test Method for Microindentation Hardness of Materials
  • ASTM E399 Standard Test Method for Plane-Strain Fracture Toughness of Metallic Materials
  • ASTM E407 Standard Practice for Microetching Metals and Alloys
  • ASTM E466 Standard Practice for Conducting Force Controlled Constant Amplitude Axial Fatigue Tests of Metallic Materials
  • ASTM E539 Standard Test Method for X-Ray Emission Spectrometric Analysis of 6AI-4V Titanium Alloy
  • ASTM E606 Standard Practice for Strain-Controlled Fatigue Testing
  • ASTM E647 Standard Test Method for Measurement of Fatigue Crack Growth Rates
  • ASTM E8/E8M Standard Test Methods for Tension Testing of Metallic Materials*2024-01-01 Update
  • ASTM E9 Standard Test Methods of Compression Testing of Metallic Materials at Room Temperature
  • ASTM F136 Standard Specification for Wrought Titanium-6 Aluminum-4 Vanadium ELI (Extra Low Interstitial) Alloy (UNS R56401) for Surgical Implant Applications
  • ASTM F1472 Standard Specification for Wrought Titanium -6Aluminum -4Vanadium Alloy (UNS R56400) for Surgical Implant Applications
  • ASTM F2971 Standard Practice for Reporting Data for Test Specimens Prepared by Additive Manufacturing*2021-07-15 Update
  • ASTM F3049 Standard Guide for Characterizing Properties of Metal Powders Used for Additive Manufacturing Processes*2021-10-01 Update
  • ASTM F3122 Standard Guide for Evaluating Mechanical Properties of Metal Materials Made via Additive Manufacturing Processes*2022-04-01 Update
  • ISO 1099 Metallic materials - Fatigue testing - Axial force-controlled method
  • ISO 12108 Metallic materials - Fatigue testing - Fatigue crack growth method*2018-07-01 Update
  • ISO 12111 Metallic materials - Fatigue testing - Strain-controlled thermomechanical fatigue testing method
  • ISO 12135 Metallic materials - Unified method of test for the determination of quasistatic fracture toughness*2021-06-30 Update
  • ISO 12737 Metallic materials — Determination of plane-strain fracture toughness
  • ISO 13485 *2018-05-15 Update
  • ISO 148-1 Metallic materials - Charpy pendulum impact test - Part 1: Test method
  • ISO 19819 Metallic materials - Tensile testing in liquid helium
  • ISO 4545-1 Metallic materials — Knoop hardness test — Part 1: Test method*2023-08-01 Update
  • ISO 5832-3 Implants for surgery — Metallic materials — Part 3: Wrought titanium 6-aluminium 4-vanadium alloy*2021-11-18 Update
  • ISO 6506-1 Metallic materials - Brinell hardness test - Part 1: Test method
  • ISO 6507-1 Metallic materials — Vickers hardness test — Part 1: Test method*2023-08-01 Update
  • ISO 6508 Metallic materials; Hardness test; Rockwell test (scales A - B - C - D - E - F - G - H - K)
  • ISO 6892-1 Metallic materials — Tensile testing — Part 1: Method of test at room temperature*2019-11-15 Update
  • ISO 9001 Quality management systems - Requirements [Spanish version]
  • ISO 9044 Industrial woven wire cloth - Technical requirements and tests
  • SAE AMS2249 CHEMICAL CHECK ANALYSIS LIMITS Titanium and Titanium Alloys
  • SAE AMS2801 HEAT TREATMENT OF TITANIUM ALLOY PARTS

ASTM F3302-18 history

  • 2018 ASTM F3302-18 Standard for Additive Manufacturing – Finished Part Properties – Standard Specification for Titanium Alloys via Powder Bed Fusion
Standard for Additive Manufacturing – Finished Part Properties – Standard Specification for Titanium Alloys via Powder Bed Fusion



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