Benjamin Clauß
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View article: Milling of an Aluminium Matrix Composite Using MCD-Tipped Tools with Adjusted Corner and Minor Cutting Edge Geometries
Milling of an Aluminium Matrix Composite Using MCD-Tipped Tools with Adjusted Corner and Minor Cutting Edge Geometries Open
Aluminium matrix composites (AMCs) represent suitable materials for lightweight design applications. The abrasive ceramic reinforcements typically require diamond cutting materials to prevent excessive tool wear. In milling with diamond cu…
View article: Influence of the cutting material on tool wear, surface roughness, and force components for different cutting speeds in face turning of CoCrFeNi high-entropy alloys
Influence of the cutting material on tool wear, surface roughness, and force components for different cutting speeds in face turning of CoCrFeNi high-entropy alloys Open
High-entropy alloys (HEAs) provide advanced properties like a high resistance to corrosion and wear. Concerning this and the elevated material costs wear protection layers are a possible field of application. Finish machining of these laye…
View article: Process monitoring and impulse detection in face milling using capacitive acceleration sensors based on MEMS
Process monitoring and impulse detection in face milling using capacitive acceleration sensors based on MEMS Open
High-performance acceleration sensors acquire increasing relevance for process monitoring and crash detection. In this regard, a newly developed sensor system is realised comprising an 8 kHz and a 20 kHz high-acceleration MEMS-based sensor…
View article: Influence of the cutting parameters on the surface properties in turning of a thermally sprayed AlCoCrFeNiTi coating
Influence of the cutting parameters on the surface properties in turning of a thermally sprayed AlCoCrFeNiTi coating Open
High-entropy alloys (HEAs) represent a comparably novel class of materials composed of approximately equimolar fractions of at least four chemical elements. Applied by thermal spraying, the material can be used as a wear protection layer. …
View article: Investigation of surface properties in turn milling of particle-reinforced aluminium matrix composites using MCD-tipped tools
Investigation of surface properties in turn milling of particle-reinforced aluminium matrix composites using MCD-tipped tools Open
Aluminium matrix composites (AMCs) consist of a comparably soft matrix alloy which is typically reinforced with at least one ceramic component such as fibres, whiskers, or particles. The additional ceramic components allow improved materia…
View article: Influencing the Properties of the Generated Surface by Adjusted Rake and Clearance Angles in Side Milling of Aluminum Matrix Composites with MCD-Tipped Tools
Influencing the Properties of the Generated Surface by Adjusted Rake and Clearance Angles in Side Milling of Aluminum Matrix Composites with MCD-Tipped Tools Open
The application of aluminum matrix composites (AMCs) allows the reduction of moving loads for increased efficiency in modern technical systems. However, the presence of reinforcing particles leads to challenges in machining of AMCs, typica…
View article: Influence of SiC particle volume fraction and texture on the surface properties in milling of AMCs with MCD-tipped tools
Influence of SiC particle volume fraction and texture on the surface properties in milling of AMCs with MCD-tipped tools Open
Modern technical systems aim for increased performance and efficiency, which can be realised by applying lightweight materials to reduce moving loads. Regarding this, particle-reinforced aluminium matrix composites (AMCs) state a promising…
View article: Investigation of Surface Properties in Milling of SiC Particle Reinforced Aluminium Matrix Composites (AMCs)
Investigation of Surface Properties in Milling of SiC Particle Reinforced Aluminium Matrix Composites (AMCs) Open
AMCs offer a high potential for lightweight applications, but represent difficult-to-machine materials especially regarding the increased tool wear and imperfections on the generated surface. Based on a fractional factorial design using CV…