2019
DOI: 10.1016/j.surfcoat.2019.01.079
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Effect of the deformation on nitrocarburizing microstructure of the cold deformed Ti-6Al-4V alloy

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Cited by 10 publications
(3 citation statements)
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“…Based on the research in the past few years [24][25][26], we figured that low-temperature (≤550 • C) plasma-nitriding treatment could be used as the preferred surface modification process for titanium alloy, and cold-rolling deformation can promote plasma nitriding. In this paper, a treatment process of cold-rolling deformation and low-temperature nitriding at 450 • C, causing simultaneous recrystallizations, was designed to perform compound modification treatment on TA2 industrial pure titanium alloy.…”
Section: Introductionmentioning
confidence: 99%
“…Based on the research in the past few years [24][25][26], we figured that low-temperature (≤550 • C) plasma-nitriding treatment could be used as the preferred surface modification process for titanium alloy, and cold-rolling deformation can promote plasma nitriding. In this paper, a treatment process of cold-rolling deformation and low-temperature nitriding at 450 • C, causing simultaneous recrystallizations, was designed to perform compound modification treatment on TA2 industrial pure titanium alloy.…”
Section: Introductionmentioning
confidence: 99%
“…Chemical heat treatment is a process in which the material is placed in a medium containing a particular active element for heating and heat preservation, and a concentration gradient is formed on the surface to make the active ingredient enter the surface of the material to form a layer [ 164 , 165 , 166 , 167 ]. Chemical heat treatment can effectively improve the thermal fatigue resistance, wear resistance, and corrosion resistance of materials, and chemical heat treatment has a low cost, wide application, and mature technology [ 168 , 169 , 170 , 171 , 172 , 173 , 174 , 175 ]. After chemical heat treatment, the surface composition of the material will change [ 176 , 177 ].…”
Section: Surface Modification Methodsmentioning
confidence: 99%
“…Termokimyasal bir yüzey işlemi olan Nitrokarbürizasyon (NK) mühendislik malzemelerinin aşınma, korozyon ve yorulma hasarlarını önlemek için tercih edilen bir ısıl işlem tekniğidir [6][7][8]. Karbon ve azot atomlarının eşzamanlı difüzyonu temeline dayanan NK işlemi, malzeme yüzeyinde 10-20μm kalınlığında beyaz bir tabaka oluşturur.…”
Section: Gi̇ri̇ş (Introduction)unclassified