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COMPREHENSIVE EVALUATION OF THE CORROSION, EROSION, AND ABRASION RESISTANCE OF HVOF WC–CO–CR COATINGS ON 30X13 STEEL

Авторлар

Аты-жөні Жұмыс орны
Nazerke Muktanova PlasmaScience LLP
Małgorzata Rutkowska-Gorczyca Wrocław University of Science and Technology
Magazov Nurtoleu Magzumbekovich East Kazakhstan Technical University named after D. Serikbaev
Rakhadilov Bauyrzhan Korabayevich PlasmaScience LLP

Жүктеулер

Жарияланды:

2026-03-31

Журналдың саны:

Нөмір 1 № 1 (2026): CATMSP_1_2026

Бөлім:

Articles

Мақала тілі:

Ағылшын тілі

Қаралымдар:

17

Жүктеулер:

9

Кілт сөздер:

metal-ceramic coating, HVOF method, erosion, corrosion, abrasion resistance, microstructure, wear resistance

Аңдатпа

This study presents a comprehensive experimental investigation of the corrosion, erosion, and abrasive wear resistance of WC–Co–Cr coatings deposited on 30Kh13 martensitic steel using the high-velocity oxygen-fuel (HVOF) spraying method. Corrosion tests were performed under cyclic salt fog conditions in a 5% NaCl solution, while erosion tests were carried out under the impact of an abrasive particle flow. Abrasive wear was evaluated using a standard method with the calculation of relative wear resistance. The results showed that the WC–Co–Cr coating significantly reduces mass loss and slows the development of corrosion and erosion damage compared with uncoated steel. Under abrasive wear conditions, the relative wear resistance of the coated samples is approximately nine times higher than that of 30Kh13 steel. Microstructural analysis revealed that coating degradation is localized and mainly associated with the destruction of the binder phase. The obtained results confirm the effectiveness of WC–Co–Cr HVOF coatings for protecting parts operating under combined corrosion-mechanical influences.

Muktanova, N., Małgorzata Rutkowska-Gorczyca, Magazov Nurtoleu Magzumbekovich, & Rakhadilov Bauyrzhan Korabayevich. (2026). COMPREHENSIVE EVALUATION OF THE CORROSION, EROSION, AND ABRASION RESISTANCE OF HVOF WC–CO–CR COATINGS ON 30X13 STEEL. Central Asian Transactions on Materials Structure and Properties, 1(1), 85–98. Retrieved from https://journals.ektu.kz/catmsp/article/view/1723