ASTM B848/B848M-21 PDF
Standard Specification for Powder Forged (PF) Ferrous Materials
Standard Specification for Powder Forged (PF) Ferrous Materials
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 10
- Дата публикации:
- 1 сентября 2021 г.
- Издание:
- B848/B848M
- ICS:
- 77.160
ABSTRACT This specification covers the powder forged ferrous materials fabricated by hot densification of atomized prealloyed or iron powders and intended for use as structural parts. The strcutural parts shall be made by hot forging of powder metallurgy preforms in confined dies with or without subsequent heat treatment. The materials shall conform to the required chemical composition for nickel, molybdenum, manganese, copper, chromium, sulfur, silicon, phosphorus, carbon, and oxygen. The mechanical properties such as yield strength, elongation, Rockwell hardness, impact energy, compressive yield strength and fatigue shal be determined using the tensile test method, Charpy V-notch impact energy test method, and hardness test method. The materials shall conform to the required surface finger oxide penetration, interparticle oxide networks, decarburization depth, and nonmetallic inclusion level. SCOPE 1.1 This specification covers powder forged ferrous materials fabricated by hot densification of atomized prealloyed or iron powders and intended for use as structural parts. 1.2 This specification covers powder forged parts made from the following materials: 1.2.1 Compositions: 1.2.1.1 PF-10XX Carbon Steel (produced from atomized iron powder and graphite powder), 1.2.1.2 PF-10CXX Copper-Carbon Steel (produced from atomized iron powder, copper and graphite powders), 1.2.1.3 PF-11XX Carbon Steel with manganese sulfide for enhanced machinability (produced from atomized iron powder, manganese sulfide, and graphite powders), 1.2.1.4 PF-11CXX, PF-1130CXX, and PF-1135CXX Copper-Carbon Steels with manganese sulfide for enhanced machinability (produced from atomized iron powder, copper, manganese sulfide, and graphite powders), 1.2.1.5 PF-42XX Nickel-Molybdenum Steel (produced from prealloyed atomized iron-nickel-molybdenum powder and graphite powder), 1.2.1.6 PF-46XX Nickel-Molybdenum Steel (produced from prealloyed atomized iron-nickel-molybdenum powder and graphite powder), 1.2.1.7 PF-44XX Molybdenum Steel (produced from prealloyed atomized iron-molybdenum powder and graphite powder), and 1.2.1.8 PF-49XX Molybdenum Steel (produced from prealloyed atomized iron-molybdenum powder and graphite powder). Note 1: Alloy composition designations are modifications of the AISI-SAE nomenclature. For example: 10CXX designates a plain carbon steel containing copper and XX amount of carbon. Compositional limits of alloy and impurity elements may be different from the AISI-SAE limits. Chemical composition limits are specified in Section 6. Note 2: XX designates the forged carbon content, in hundredths of a percent, that is specified by the purchaser for the application. For a given specified carbon content, the permissible limits shall be as specified in 6.2. Note 3: The old acronym for powder forging P/F has been replaced by PF throughout the document. The change in the prefix for the material designations is just to match the currently approved acronym for powder forging. No change has been made to the material specification and performance characteristics for the various powder forged materials. 1.2.2 Grades: 1.2.2.1 Grade A—Density equivalent to a maximum of 0.5 % porosity. The minimum density of those sections of the powder forged part so designated by the applicable part drawing shall not be less than the value specified in Table 1. 1.2.2.2 Grade B—Density equivalent to a maximum of 1.5 % porosity. The minimum density of those sections of the powder forged part so designated by the applicable part drawing shall not be less than the value specified in Table 1. 1.3 Units—The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in each system are not necessarily exact equivalents; therefore, to ensure conformance with the standard, each system shall be used independently of the other, and values from the two systems shall not be ...
Abstract
Overview
ASTM B848/B848M-21: Standard Specification for Powder Forged (PF) Ferrous Materials establishes requirements for the composition, mechanical properties, and quality of powder forged ferrous materials used as structural components. Developed by ASTM International, this standard applies to parts manufactured by hot densification of atomized prealloyed or iron powders, which are then hot forged within confined dies. Powder forged ferrous parts are increasingly favored for their mechanical performance, near-net shape capabilities, and cost efficiency in automotive and industrial applications.
Key Topics
-
Material Compositions: The specification covers a range of PF steel types, including:
- PF-10XX (carbon steel from iron powder and graphite)
- PF-10CXX (copper-carbon steel)
- PF-11XX and PF-11CXX series (carbon steel with manganese sulfide for machinability, copper additions)
- PF-42XX, PF-44XX, PF-46XX, PF-49XX (nickel-molybdenum and molybdenum alloy steels)
-
Grades and Density Requirements:
- Grade A: Maximum 0.5% porosity, higher minimum density.
- Grade B: Maximum 1.5% porosity, lower minimum density.
- Minimum densities depend on the material grade and composition.
-
Chemical Composition:
- Elements regulated include nickel, molybdenum, manganese, copper, chromium, sulfur, silicon, phosphorus, carbon, and oxygen.
- Specified limits ensure material consistency and performance.
- Analytical methods include spectrometry, X-ray fluorescence, and combustion techniques.
-
Mechanical Properties:
- Properties such as yield strength, elongation, Rockwell hardness, impact energy, compressive yield strength, and fatigue are determined by standardized test methods.
- Qualification testing and acceptance criteria must meet purchaser and drawing requirements.
-
Microstructural and Quality Requirements:
- Control of surface oxide penetration, interparticle oxide networks, decarburization, and nonmetallic inclusion levels.
- Supplementary requirements may address case hardening depth and microstructural uniformity as specified by the purchaser.
Applications
Powder forged (PF) ferrous materials produced under ASTM B848/B848M-21 are widely used for structural parts where strength, durability, and dimensional precision are essential. Key application areas include:
-
Automotive Industry: High-load gears, connecting rods, and chassis components benefit from PF materials' strength, fatigue resistance, and cost-effectiveness.
-
Industrial Machinery: Power transmission components, couplings, and supports that require toughness and reliability.
-
General Engineering: Any application demanding near full-density ferrous structural components with controlled properties.
The standard supports manufacturers and designers by offering predictable material performance, streamlined quality control, and compatibility with established powder metallurgy processes.
Related Standards
ASTM B848/B848M-21 references and works alongside several key ASTM and industry standards, such as:
- ASTM B243: Terminology for Powder Metallurgy
- ASTM B311: Test Method for Density of PM Materials
- ASTM B796/B797: Methods for assessing nonmetallic inclusions and oxide penetration
- ASTM E8/E8M: Tension Testing of Metallic Materials
- ASTM E18: Rockwell Hardness Testing
- ASTM E23: Notched Bar Impact Testing
- MPIF 35 & MPIF Standard 67: Powder Forged Materials and Sample Preparation Guidance
Using ASTM B848/B848M-21 ensures compatibility with these standards, facilitating quality assurance, sourcing, and specification compliance throughout the supply chain.
Keywords: powder forged steel, PF structural parts, ASTM B848, powder metallurgy, density standards, PF ferrous materials, mechanical properties, powder forging ASTM, automotive PF parts, quality requirements PF steel
Технические детали
- Технический комитет
- B09 - Metal Powders and Metal Powder Products
- SKU
- ASTM B848/B848M-21
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