Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

What Will Be the Future of Powder Metallurgy?

View through CrossRef
Abstract Traditionally, powder metallurgy has been based on two major industrial sectors – ferrous precision parts and hardmetals. Both of them relied heavily on the automotive industry, with focus on internal combustion engines. Today, there is an increasing trend towards alternative drivetrain systems, and powder metallurgy faces the challenge to find new applications to replace those lost with the decrease of classical internal combustion drives. In this presentation it is shown that the main strength of powder metallurgy lies in its enormous flexibility regarding materials, geometries, processing and properties. This enables PM to adapt itself to changing requirements in a changing industrial environment. Examples given are PM parts in alternative drivetrain systems, new alloying concepts and processing routes offering distinct advantages. With hardmetals, innovative microstructures as well as sophisticated coatings offer increased lifetime, applications ranging from metalworking to rockdrilling and concrete cutting. A particularly wide area is found in functional materials which range from components for high power switches to such for fuel cells. Soft and hard magnets are accessible by PM with particularly good properties, PM having in part exclusivity in that respect, such as for NdFeB superhard magnets as well as soft magnetic composites (SMCs). Metal injection moulding (MIM) is gaining further ground, e.g. in the medical area which is a fast-growing field, due to demographic effects. Finally, most additive manufacturing techniques are powder based, and here, the knowledge in powder handling and processing available in the PM community is essential for obtaining stable processes and reliable products. Conclusively it can be stated that PM is on the way to fully exploit its potential far beyond its traditional areas of applications.
Title: What Will Be the Future of Powder Metallurgy?
Description:
Abstract Traditionally, powder metallurgy has been based on two major industrial sectors – ferrous precision parts and hardmetals.
Both of them relied heavily on the automotive industry, with focus on internal combustion engines.
Today, there is an increasing trend towards alternative drivetrain systems, and powder metallurgy faces the challenge to find new applications to replace those lost with the decrease of classical internal combustion drives.
In this presentation it is shown that the main strength of powder metallurgy lies in its enormous flexibility regarding materials, geometries, processing and properties.
This enables PM to adapt itself to changing requirements in a changing industrial environment.
Examples given are PM parts in alternative drivetrain systems, new alloying concepts and processing routes offering distinct advantages.
With hardmetals, innovative microstructures as well as sophisticated coatings offer increased lifetime, applications ranging from metalworking to rockdrilling and concrete cutting.
A particularly wide area is found in functional materials which range from components for high power switches to such for fuel cells.
Soft and hard magnets are accessible by PM with particularly good properties, PM having in part exclusivity in that respect, such as for NdFeB superhard magnets as well as soft magnetic composites (SMCs).
Metal injection moulding (MIM) is gaining further ground, e.
g.
in the medical area which is a fast-growing field, due to demographic effects.
Finally, most additive manufacturing techniques are powder based, and here, the knowledge in powder handling and processing available in the PM community is essential for obtaining stable processes and reliable products.
Conclusively it can be stated that PM is on the way to fully exploit its potential far beyond its traditional areas of applications.

Related Results

Evaluation of TRICHONEMTM as Anti-Dandruff and Hair growth promoter in young adults
Evaluation of TRICHONEMTM as Anti-Dandruff and Hair growth promoter in young adults
The aim of the present study is to formulate and evaluate herbal Anti dandruff hair wash powder containing eighteen herbal ingredients and soluble egg shell membrane in a proportio...
Mutu teh celup dengan campuran bubuk sereh (Cymbopogon citratus) dan bubuk kelor (Moringa oleifera)
Mutu teh celup dengan campuran bubuk sereh (Cymbopogon citratus) dan bubuk kelor (Moringa oleifera)
Moringa is one of potential raw material of  herbal tea. Moringa tea had disadvantage is a off-flavour aroma. The addition of lemongrass hopefully can reduce the off-flavour aroma ...
Performance evaluation of graphite and titanium oxide powder mixed dielectric for electric discharge machining of Ti–6Al–4V
Performance evaluation of graphite and titanium oxide powder mixed dielectric for electric discharge machining of Ti–6Al–4V
AbstractTi–6Al–4V is the most commonly used titanium alloy in aerospace, marine, and biomedical applications. Due to the properties of poor machinability in conventional machining,...
Optimization methods in powder metallurgy for enhancing the mechanical properties: a systematic literature review
Optimization methods in powder metallurgy for enhancing the mechanical properties: a systematic literature review
Abstract Powder metallurgy offers several advantages over traditional manufacturing methods, such as improved material utilization and waste reduction. The powder me...
A Combined Experimental-Numerical Method to Evaluate Powder Thermal Properties in Laser Powder Bed Fusion
A Combined Experimental-Numerical Method to Evaluate Powder Thermal Properties in Laser Powder Bed Fusion
Powder bed metal additive manufacturing (AM) utilizes a high-energy heat source scanning at the surface of a powder layer in a pre-defined area to be melted and solidified to fabri...
Effect the Ratio and Particle Size of Glass Powder from Fluorescent Tubes Waste on Electrical Properties of PVA-Glass Composites
Effect the Ratio and Particle Size of Glass Powder from Fluorescent Tubes Waste on Electrical Properties of PVA-Glass Composites
The polymer composites used in the present study were made of polyvinyl alcohol (PVA) as a matrix and glass powder as a filler. The glass powder was obtained from fluorescent tubes...
Powder Metallurgy and Additive Manufacturing: Fundamentals and Advancements
Powder Metallurgy and Additive Manufacturing: Fundamentals and Advancements
Powder Metallurgy and Additive Manufacturing: Fundamentals and Advancements contains practical information on powder-based production techniques and the materials and applications ...
Influence of Powder Parameters on Powder Bed and Productivity of l-pbf
Influence of Powder Parameters on Powder Bed and Productivity of l-pbf
While L-PBF offers advantages in terms of geometrical freedom or lightweight construction, its use is often limited by economic constraints or currently achievable part costs. With...

Back to Top