This scientific research deals with lattice structures manufactured with laser powder bed fusion. Laser powder bed fusion is part of additive manufacturing. The so called layered construction is an increasingly used innovative manufacturing process that can be used to realize new design possibilities. Lightweight structures or bionic structures play a key role here. The focus of this work is on periodic lattice structures. In addition to saving resources and reducing the weight of components, lattice structures have particularly pronounced mechanical properties. However, little is known about their thermo- and fluid-dynamic properties. This work describes the first influencing factors of lattice structures ina thermo- and fluid-dynamic cont...
Forced convection heat transfer in four structured porous materials produced by selective laser melt...
Metal-based additive manufacturing techniques offer the ability to produce complex, near net shape p...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
This scientific survey is about periodic lattice structures which are made by Selective Laser Meltin...
AbstractThis survey is about the requirements of lattice structures which are made by Selective Lase...
As a type of powder-bed-based Additive Manufacturing (AM), Selective Laser Melting (SLM) is widely u...
In the aerospace industry, thermal management concerns numerous components but is bounded to the lim...
The development of additive manufacturing technologies enables the production of a new type of porou...
More commonly known as 3D printing, the additive manufacturing (AM) technologies attract increasing ...
This study investigates the potential of functionally graded lattice structures (FGLs) fabricated by...
This study includes experimental research conducted to produce lattice structures and to examine the...
Thermal management is a crucial part in the aviation industry. It is also essential that the compone...
The lattice structure is promising for the application as heat exchange media due to its porous and ...
Additive manufacturing technologies allow manufacturing of complex structures which are near impossi...
In recent years, additive manufacturing (AM) has slowly been gaining ground and changing current man...
Forced convection heat transfer in four structured porous materials produced by selective laser melt...
Metal-based additive manufacturing techniques offer the ability to produce complex, near net shape p...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
This scientific survey is about periodic lattice structures which are made by Selective Laser Meltin...
AbstractThis survey is about the requirements of lattice structures which are made by Selective Lase...
As a type of powder-bed-based Additive Manufacturing (AM), Selective Laser Melting (SLM) is widely u...
In the aerospace industry, thermal management concerns numerous components but is bounded to the lim...
The development of additive manufacturing technologies enables the production of a new type of porou...
More commonly known as 3D printing, the additive manufacturing (AM) technologies attract increasing ...
This study investigates the potential of functionally graded lattice structures (FGLs) fabricated by...
This study includes experimental research conducted to produce lattice structures and to examine the...
Thermal management is a crucial part in the aviation industry. It is also essential that the compone...
The lattice structure is promising for the application as heat exchange media due to its porous and ...
Additive manufacturing technologies allow manufacturing of complex structures which are near impossi...
In recent years, additive manufacturing (AM) has slowly been gaining ground and changing current man...
Forced convection heat transfer in four structured porous materials produced by selective laser melt...
Metal-based additive manufacturing techniques offer the ability to produce complex, near net shape p...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...