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Author: Vitali Vișanu

  • MACHINES

    Wear Performance of Agricultural Harrow Discs Coated by Plasma-Jet Thermal Deposition

    • Corneliu Munteanu
    • Iurie Melnic
    • Vlad Nicolae Arsenoaia
    • Bogdan Istrate
    • Fabian Cezar Lupu
    • Vitali Vișanu
    • Constantin Zîrnescu
    • Vladimir Badiul
    Machines. Technologies. Materials., Vol. 20 (2026), Issue 3, pg(s) 81-84
    • Abstract
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    •  Article PDF

    A comparative analysis of wear performance of coated harrow discs by plasma-jet thermal deposition was evaluated under agricultural conditions to assess the performance of atmospheric plasma spraying systems. This paper presents a long-term comparative field evaluation under identical operating conditions on a quartz-rich argic luvisol soil. Disc wear was quantified by periodic measurements of mass loss and diameter of the studied discs.
    The uncoated disc showed the most severe degradation, with a total mass loss of approximately 700 g and a rapid acceleration of wear after the first 5-10 ha of harrowing. The results obtained under field conditions demonstrate that the microstructural integrity of the coating is more critical than the nominal hardness and highlight the superior effectiveness of APS ceramic coatings for extending disc life in abrasive agricultural soils.

  • MECHANIZATION IN AGRICULTURE

    Study of harrow discs coated by plasma-thermal method

    • Corneliu Munteanu
    • Iurie Melnic
    • Bogdan Istrate
    • Fabian Cezar Lupu
    • Vitali Vișanu
    • Vladimir Badiul
    • Constantin Zîrnescu
    Mechanization in agriculture & Conserving of the resources, Vol. 69 (2025), Issue 2, pg(s) 46-49
    • Abstract
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    •  Article PDF

    This study presents a comparative analysis of three types of coatings taken from the active area of the coted harrow disks using atmospheric plasma spray deposition method (APS). The resulting coatings increase the durability of the harrow discs and the inclusion in the componence of coatings of carbides and powdered ceramic compounds will enhance the mechanical characteristics. This study focused on scanning electron microscopy of the coated samples from the harrow discs and their tribological properties. SEM imaging and EDS analysis have been carried out to clarify the morphological characteristics and study of disc cross-section. Tribological tests were carried out to determine the following main parameters: adhesion to the substrate, coefficient of friction (COF), modulus of elasticity and hardness of the material.
    The development and implementation of modern technologies for improving the mechanical and chemical properties of materials for
    coated harrow discs will increase resistance to abrasive wear in modern agricultural conditions.

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