Skip Nav Destination
ASM Handbook
Powder Metallurgy
Edited by
ASM International
Volume
7
ISBN electronic:
978-1-62708-175-7
Publication date:
2015
Book Chapter
Compacting of Stainless Steel Powders
By
Richard R. Phillips
;
Richard R. Phillips
Engineered Pressed Materials
Search for other works by this author on:
-
Published:2015
Abstract
This article provides an overview of the compaction of metal powder in a rigid die and reviews the compaction characteristics of stainless steel powders, including green density, compressibility, green strength, apparent density, flow rate, and sintered density. It describes the influence of compaction characteristics of stainless steel powders in tool materials selection, lubrication, annealing, double pressing/double sintering, and warm compaction.
Topics
Presses,
Powder metallurgy,
Die compaction,
Metal injection molding,
Full density consolidation,
Powder processing,
Sintering,
Powder metal alloys,
Stainless steel powder,
Annealing,
Warm compaction,
Compressibility,
Mechanical properties,
Flow rate,
Density,
Apparent density,
Sintered density
You do not currently have access to this chapter.
Citation
Richard R. Phillips, Prasan K. Samal, Compacting of Stainless Steel Powders, Powder Metallurgy, Vol 7, ASM Handbook, Edited By P. Samal, J. Newkirk, ASM International, 2015, p 427–432, https://doi.org/10.31399/asm.hb.v07.a0006097
Download citation file:
Related Book Content
Bulk Properties of Powders
Powder Metallurgy
Compressibility and Compactibility of Metal Powders
Powder Metallurgy
Manufacture of Stainless Steel Powders
Powder Metallurgy
Sintering and Corrosion Resistance
Powder Metallurgy Stainless Steels Processing, Microstructures, and Properties
Modeling and Simulation of Press and Sinter Powder Metallurgy
Metals Process Simulation
Warm Compaction and Warm Die Compaction
Powder Metallurgy
Compacting and Shaping
Powder Metallurgy Stainless Steels Processing, Microstructures, and Properties
Modeling of Powder Metallurgy Processes
Metals Process Simulation
Introduction to Characterization of Powders
Materials Characterization (2019 Edition)
Introduction and Basic Theory of Wear
Friction, Lubrication, and Wear Technology