2018
DOI: 10.1016/j.ceramint.2017.09.245
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Synthesis of Ni–TiN composites through ultrasonic pulse electrodeposition with excellent corrosion and wear resistance

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Cited by 52 publications
(12 citation statements)
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“…The PCE method was used for the deposition of Ni-W/TiN nanocomposites on X52 steel substrates in a modified electrolyte solution [20]. The main components of the X52 steel were listed as follows: 98.49 wt % Fe, 1.05 wt % Mn, 0.22 wt % Cr, 0.20 wt % Si, 0.031 wt % C, and 0.009 wt % P. A pure Ni plate (99.98 wt %) was used as the anode, and the X52 steel (50 mm × 25 mm × 5 mm) was used as the cathode.…”
Section: Experimental Methods 21 Materials Preparationmentioning
confidence: 99%
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“…The PCE method was used for the deposition of Ni-W/TiN nanocomposites on X52 steel substrates in a modified electrolyte solution [20]. The main components of the X52 steel were listed as follows: 98.49 wt % Fe, 1.05 wt % Mn, 0.22 wt % Cr, 0.20 wt % Si, 0.031 wt % C, and 0.009 wt % P. A pure Ni plate (99.98 wt %) was used as the anode, and the X52 steel (50 mm × 25 mm × 5 mm) was used as the cathode.…”
Section: Experimental Methods 21 Materials Preparationmentioning
confidence: 99%
“…Figure 2 shows the surface morphology and size distribution of TiN particles. The surface morphology of TiN particles was provided by the supplier [20]. TiN powder has a particle size of 30 nm on average.…”
Section: Materials Preparationmentioning
confidence: 99%
“…Composite electroplating is widely practiced in industries to limit the coating failures of the electrodeposition method in adverse environmental conditions subjected to the high potential of hydrogen (pH) and low temperature [ 43 ]. Composite electroplating techniques are best suited for the inclusion of metallic or non-metallic particles in the plated layer that enhance tribological, thermal and mechanical properties [ 44 , 45 ]. Therefore, experimental studies on composite-based electrodeposition or electroplating techniques could enhance the surface properties of coating materials that are of industrial relevance.…”
Section: Introductionmentioning
confidence: 99%
“…Metal/oksit kompozit malzeme üretmek için çok sayıda yöntem mevcuttur. Bu yöntemler arasında döküm [13], seçici korozyon [14], kimyasal indirgenme [15], elektrokaplama [16]…”
Section: Introductionunclassified
“…Metal/oksit kompozit malzeme üretmek için çok sayıda yöntem mevcuttur. Bu yöntemler arasında döküm [13], seçici korozyon [14], kimyasal indirgenme [15], elektrokaplama [16] ve yüksek enerjili dövme [17] [18]. Elde edilen maksimum doygunluk mıknatıslanma değeri (57 emu/g) literatürde benzer malzemelerden elde edilen değerlerin biraz altındadır [18]- [20].…”
Section: Introductionunclassified