Збірники наукових праць ЦНТУ

Permanent URI for this communityhttps://dspace.kntu.kr.ua/handle/123456789/1

Browse

Search Results

Now showing 1 - 2 of 2
  • Item
    Розмірна обробка твердосплавних волок
    (КНТУ, 2014) Сіса, О. Ф.; Осипенко, М. В.; Стебліна, К. В.; Sisa, Oleg; Osipeko, Marina; Steblina, Katerina
    Виконано обґрунтування технологічних схем формоутворення поверхонь твердосплавної волоки способом розмірної обробки електричною дугою з урахуванням особливостей фізичних механізмів їх утворення та гідродинамічних явищ в між електродному проміжку. Встановлені аналітичні зв’язки технологічних характеристик процесу чорнової розмірної обробки електричною дугою сплаву ВК8, з режимами обробки і геометричними параметрами. Article is dedicated to the development of technology and equipment of mode of roughing of carbide drawplate by electric arc as an alternative to traditional methods of high performance choice of roughing. During operation, in the hole of drawplate along with uniform abrasion, occurs severe wear, as a consequence of welding of the processed material to the material of drawplate. As a result of the periodic separation of these places the structure obtained by sintering is broken by chipping of the carbide grains. Torn carbide particles leave marks on the wire, with such wear the drawplate does not meet the specified size and it is to bore with larger diameter by the grinding with the diamond tool at the roughing. It is proposed to bore carbide drawplate by dimensional electric arc as at roughing chisel carbide dies dimensional arc of electricity that can take large allowances of material at the lowest time expenditure for processing. At that the machining cycle was down by 4,4-5,2 times. It was made the justifications of the technological scheme of forming of holes of carbide drawplate in the way of sizing by arc taking into account the features of physical formation mechanism and hydrodynamic phenomena in the electrode gap. Analytical roots of technological characteristics of the process of rough sizing with the arc VK8 alloy with treatment regimens and geometrical parameters established.
  • Item
    Біполярна обробка електричною дугою твердосплавних прокатних валків
    (КНТУ, 2015) Сіса, О. Ф.; Sisa, Oleg
    Виконано обґрунтування технологічної схеми формоутворення бічних поверхонь твердосплавних валків способом біполярної розмірної обробки електричною дугою з урахуванням особливостей фізичних механізмів їх утворення та гідродинамічних явищ в міжелектродному проміжку. Встановлені аналітичні зв’язки технологічних характеристик процесу чорнової розмірної обробки електричною дугою сплаву ТС-15 з режимами обробки і геометричними параметрами. The article is dedicated to development of technology and equipment of rough machining method by electric arc of hard-alloy forming roll side surface, as high performance alternative to traditional methods of rough machining. During operation, the damage to the surface of the hard alloys roll caliber occurs by abrasion and chipping of carbide particles. The development of net shaped roll marks occurs by the occurrence of hotbeds of accelerated cluster abrasion and chipping of smaller particles with subsequent growth of these areas and unification in a closed net shaped roll marks. The turned out particles of hard alloy leave the machining marks on the wire, in such a worn the hard alloy roll does not meet the specified dimensions and it is reground to a smaller diameter by grinding of diamond tool on the rough machining stage. It is proposed on the stage of rough machining to remove the worn-out profile of hard alloy roll side surface with help of dimensional electric arc, which allows you to remove big allowances of material at the lowest treatment costs. The justification of technical scheme of forming the hard alloy roll side surface by electric arc sizing method is done taking into account features of physical formatting mechanism and hydrodynamic phenomena in the electrode gap. The analytical communication of technological characteristics of rough machining process by electric arc alloy TS-15, with the modes of processing and geometric parameters are established.