TiC/316L stainless steel (316Lss) metal matrix composite parts have been formed using selective laser melting (SLM). In this study, we have investigated the influence of the TiC mass fraction on the microstructure evolution, microhardness, friction properties, wear properties, and corrosion resistance of the TiC/316Lss composites. The results show that the microhardness increased by the addition of the TiC mass fraction. In terms of friction and wear properties, the corrosion resistance initially increased, and then decreased. Compared with the pure 316Lss (298.3 HV0.2), the microhardness of the TiC/316Lss composites, which were formed with 2 wt% TiC, was raised to 335.2 HV0.2, which was a 12.4% increase, while the average friction coeffici...
Austenitic 316L stainless steel alloy is an attractive industrial material combining outstanding cor...
The addition of hard ceramic particles of nc-(Ti, Mo)C in carbon network into Ti matrix has been pro...
The goal of this study is to investigate different hardening routes for 316L stainless steel by lase...
Laser cladding was used to fabricate 316L/TiC composite coatings after optimizing the feedstock powd...
In order to improve the abrasion performance of 316Lss, make full use of its advantages and broaden ...
In this study, we have fabricated a TiC particle strengthened 316L stainless steel metal matrix comp...
By adding ceramic particles to the metal matrix, the metal matrix composites (MMC) could be prepared...
The poor wear resistance of 316L stainless steel restricts further practical application. In this st...
316L austenitic stainless steel is widely used because of its excellent corrosion resistance, but it...
Additive manufacturing is becoming more well used to create various product that is otherwise compli...
WC-9Co-4Cr+TiC particles reinforced 304L austenitic stainless steel (ASS) matrix composites (MMCs) w...
Selective Laser Melting (SLM) is one of the popular Additive Manufacturing (AM) techniques used owin...
Bulk-form nanocomposites of TiC-reinforced 316L stainless steel matrix were fabricated by selective ...
In this paper, the 316L stainless steel matrix composite strengthened by TiB2 was successfully fabri...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
Austenitic 316L stainless steel alloy is an attractive industrial material combining outstanding cor...
The addition of hard ceramic particles of nc-(Ti, Mo)C in carbon network into Ti matrix has been pro...
The goal of this study is to investigate different hardening routes for 316L stainless steel by lase...
Laser cladding was used to fabricate 316L/TiC composite coatings after optimizing the feedstock powd...
In order to improve the abrasion performance of 316Lss, make full use of its advantages and broaden ...
In this study, we have fabricated a TiC particle strengthened 316L stainless steel metal matrix comp...
By adding ceramic particles to the metal matrix, the metal matrix composites (MMC) could be prepared...
The poor wear resistance of 316L stainless steel restricts further practical application. In this st...
316L austenitic stainless steel is widely used because of its excellent corrosion resistance, but it...
Additive manufacturing is becoming more well used to create various product that is otherwise compli...
WC-9Co-4Cr+TiC particles reinforced 304L austenitic stainless steel (ASS) matrix composites (MMCs) w...
Selective Laser Melting (SLM) is one of the popular Additive Manufacturing (AM) techniques used owin...
Bulk-form nanocomposites of TiC-reinforced 316L stainless steel matrix were fabricated by selective ...
In this paper, the 316L stainless steel matrix composite strengthened by TiB2 was successfully fabri...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
Austenitic 316L stainless steel alloy is an attractive industrial material combining outstanding cor...
The addition of hard ceramic particles of nc-(Ti, Mo)C in carbon network into Ti matrix has been pro...
The goal of this study is to investigate different hardening routes for 316L stainless steel by lase...