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Cutting parameters selection for sintered alloy AlSi10Mg longitudinal turning ScienceDirect

AlSi10Mg alloy is used for heavily and medium loaded castings with complex shape and high strength, for gearbox enclosures in motor vehicles, steering gear bodies in cars and engine fuselages in motor vehicles, for example. Table 2. Mechanical properties of the material AlSi10Mg for sintered and cast parts. Material.

Cutting parameters selection for sintered alloy AlSi10Mg longitudinal turning Semantic Scholar

The algorithm was verified on the example of the shaft turning, making the reduction of the initial feed value by 55, which also reduced the cutting force Fc by 47. Abstract The paper presents issues concerning the machined surface quality obtained after turning of two parts made of AlSi10MG alloy, the first manufactured by laser sintering of powder, the second one made as a cast.

Lunar regolith AlSi10Mg composite fabricated by selective laser melting ScienceDirect

Moreover, laser technology shows its superiority in cutting, welding, printing, and many other fields . It will have a bright future to develop laser technology on the Moon. Selective laser melting SLM is one of the laser additive manufacturing, which can fabricate 3D part with extremely complex shape, accuracy, and mechanical performances.

Machining induced residual stresses in AlSi10Mg component produced by Laser Powder Bed Fusion LPBF ScienceDirect

On the Effect of Part Orientation on Stress Distribution in AlSi10Mg Specimens Fabricated by Laser Powder Bed Fusion LPBF Procedia CIRP. , 67 2018 , pp. 191 196 Article Download PDF View Record in Scopus Google Scholar

Application study of AlSi10Mg alloy by selective laser melting: physical and mechanical properties, microstructure, heat treatments and

Metall. Res. Technol.112, 605 2015 c EDP Sciences, 2015 DOI: 10.1051/metal/2015039 .metallurgicalresearch.org Metallurgical Research Technology Application study of AlSi10Mg alloy by selective laser melting: physical and mechanical properties

PDF Dimensional Accuracy and Surface Roughness Analysis for AlSi10Mg Produced by Selective Laser Melting SLM

It is also discovered that AlSi10Mg parts fabricated by SLM achieved the highest density of 99.13 at the best setting parameters from a previous study of 350 watts laser power, 1650 mm/s scanning

Characterization of Geometry and Surface Texture of AlSi10Mg Laser Powder Bed Fusion Channels Using Xray Computed Tomography

Characterization of Geometry and Surface Texture of AlSi10Mg Laser Powder Bed Fusion Channels Using Xray Computed Tomography Christopher G. Klingaa 1,, Filippo Zanini 2, Sankhya Mohanty 1, Simone Carmignato 2 and Jesper H. Hattel 1 1 2800 Kgs.

Effect of laser remelting on surface roughness and microstructure of AlSi10Mg selective laser melting manufactured parts SpringerLink

Selective laser melting SLM allows to obtain components by a careful selection of process parameters. This technology is becoming more and more attractive because it is capable of producing dense and complex metallic parts. Considering that one of the main drawbacks of this technology is the high surface roughness, this research aims at reducing it by means of skin laser remelting performed

PDF Characterisation of structural properties for AlSi10Mg alloys fabricated by selective laser melting

dense AlSi10Mg samples i.e., relative density 99. The newly determined optimized processing parameters e.g., laser The thermal conductivity of AlSi10Mg made by laser powder bed fusion