In this study, AlSi10Mg samples produced by the direct metal laser sintering (DMLS) method were applied to heat treatment with different parameters (stress relief and T6). Heat‐treated and as‐built samples were subjected to intergranular corrosion test according to BS EN ISO 11846 standard. Hardness, tensile, electrical conductivity, scanning electron microscopy, energy‐dispersive X‐ray spectroscopy, and weight loss tests were applied to the samples. The corrosion, electrical conductivity, and mechanical properties of the DMLS‐AlSi10Mg material were investigated in detail depending on the heat‐treatment parameters
The use of additive manufacturing (AM) technique is recently increased due to its ability in produci...
Additive Manufacturing (AM) is the process of joining materials layer upon layer to produce parts fr...
The corrosion behaviour of AlSi10Mg alloy produced by selective laser melting (SLM) under two differ...
The paper deals with the effect of heat treatments on corrosion resistance of an AlSi10Mg alloy obta...
This article presents a study on the influence of temperature and time of multi-variant heat treatme...
A solution, quenching and ageing heat treatment is often performed on additive manufactured AlSi10Mg...
Additive Manufacturing (AM) has been developing with increasing interest recently. The development ...
The paper investigates the corrosion behavior of AlSi10Mg alloy produced by direct metal laser sinte...
Direct Metal Laser Sintering (DMLS) is capable of producing complex shaped metallic parts with super...
Purpose - The aim of this research is to reach a deep understanding on the effect of the process par...
This experimental work is aimed at studying the effect of microstructural modifications induced by p...
Purpose The purpose of this paper is to evaluate the effect of post process combinations, e.g. hot i...
AlSi alloys have a wide range of applications in the Additive Manufacturing area, including automoti...
Herein, direct aging (aged‐490 °C/6 h) and solution heat treatment and subsequent aging (SHT‐940 °C/...
Purpose – This paper aims to investigate the effects of various heat treatments on microstructure, h...
The use of additive manufacturing (AM) technique is recently increased due to its ability in produci...
Additive Manufacturing (AM) is the process of joining materials layer upon layer to produce parts fr...
The corrosion behaviour of AlSi10Mg alloy produced by selective laser melting (SLM) under two differ...
The paper deals with the effect of heat treatments on corrosion resistance of an AlSi10Mg alloy obta...
This article presents a study on the influence of temperature and time of multi-variant heat treatme...
A solution, quenching and ageing heat treatment is often performed on additive manufactured AlSi10Mg...
Additive Manufacturing (AM) has been developing with increasing interest recently. The development ...
The paper investigates the corrosion behavior of AlSi10Mg alloy produced by direct metal laser sinte...
Direct Metal Laser Sintering (DMLS) is capable of producing complex shaped metallic parts with super...
Purpose - The aim of this research is to reach a deep understanding on the effect of the process par...
This experimental work is aimed at studying the effect of microstructural modifications induced by p...
Purpose The purpose of this paper is to evaluate the effect of post process combinations, e.g. hot i...
AlSi alloys have a wide range of applications in the Additive Manufacturing area, including automoti...
Herein, direct aging (aged‐490 °C/6 h) and solution heat treatment and subsequent aging (SHT‐940 °C/...
Purpose – This paper aims to investigate the effects of various heat treatments on microstructure, h...
The use of additive manufacturing (AM) technique is recently increased due to its ability in produci...
Additive Manufacturing (AM) is the process of joining materials layer upon layer to produce parts fr...
The corrosion behaviour of AlSi10Mg alloy produced by selective laser melting (SLM) under two differ...