Analysis and optimisation of internal combustion engine cooling systems to improve thermal efficiency and operational reliabilityViktor Duhanets, Oleksandr Hovorov, Vitaliy Pukas
Duhanets, V., Hovorov, O., & Pukas, V.
(2026).
Analysis and optimisation of internal combustion engine cooling systems to improve thermal efficiency and operational reliability.
Machinery & Energetics,
17(2),
7-21.
https://doi.org/10.31548/machinery/2.2026.1
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Design and modification of a combined grass cutting and grinding machineKhandakar Akhter Hossain, Md. Jobayer Mia, Mohammad Farhad Hossen, Md. Masudur Rahman
Hossain, K.A. , Mia, M.J. , Hossen, M.F. , & Rahman, M.M.
(2026).
Design and modification of a combined grass cutting and grinding machine.
Machinery & Energetics,
17(2),
22-38.
https://doi.org/10.31548/machinery/2.2026.2
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Economic efficiency of the Net Billing model for solar power plants in the private sector of Ukraine (using houses of 120-200 m² as an example)Taras Bilas, Volodymyr Yaras
Bilas, T., & Yaras, V.
(2026).
Economic efficiency of the Net Billing model for solar power plants in the private sector of Ukraine (using houses of 120-200 m² as an example).
Machinery & Energetics,
17(2),
39-49.
https://doi.org/10.31548/machinery/2.2026.3
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Analysis of the influence of the geometry of the working zone on the distribution of the electric field in powder coating systemsVitalii Naumenko, Leonid Сhervinsky
Naumenko, V., & Сhervinsky, L.
(2026).
Analysis of the influence of the geometry of the working zone on the distribution of the electric field in powder coating systems.
Machinery & Energetics,
17(2),
50-64.
https://doi.org/10.31548/machinery/2.2026.4
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Synthesis and decomposition of a mechatronic system with hydro-pneumatic automation devicesOksana Hanpantsurova, Oleksandr Hubarev, Kostyantyn Bielikov, Alyona Murashchenko, Oleh Levchenko
Hanpantsurova, O., Hubarev, O., Bielikov, K., Murashchenko, A., & Levchenko, O.
(2026).
Synthesis and decomposition of a mechatronic system with hydro-pneumatic automation devices.
Machinery & Energetics,
17(2),
65-77.
https://doi.org/10.31548/machinery/2.2026.5
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Methodological framework of indicators for functional elements of smart technical diagnostic system for grain harvesting combinesOleh Velhas
Velhas, O.
(2026).
Methodological framework of indicators for functional elements of smart technical diagnostic system for grain harvesting combines.
Machinery & Energetics,
17(2),
-.
https://doi.org/10.31548/machinery/2.2026.6
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Intelligent system of operational parameters for monitoring the technical condition of grain harvestersOleksandr Shvidun
Shvidun, O.
(2026).
Intelligent system of operational parameters for monitoring the technical condition of grain harvesters.
Machinery & Energetics,
17(2),
-.
https://doi.org/10.31548/machinery/2.2026.7
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Analytical structural-energy model of agrotronics for combine harvesting of grain cropsRuslan Shatrov
Shatrov, R.
(2026).
Analytical structural-energy model of agrotronics for combine harvesting of grain crops.
Machinery & Energetics,
17(2),
-.
https://doi.org/10.31548/machinery/2.2026.8
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Routing of agricultural drones based on bee colon swarm intelligenceMikhailo Umansky
Umansky, M.
(2026).
Routing of agricultural drones based on bee colon swarm intelligence.
Machinery & Energetics,
17(2),
-.
https://doi.org/10.31548/machinery/2.2026.9
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Analyticality of machine use of shredder of plant materialsVadim Hrytsiuk
Hrytsiuk, V.
(2026).
Analyticality of machine use of shredder of plant materials.
Machinery & Energetics,
17(2),
-.
https://doi.org/10.31548/machinery/2.2026.10
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