
Была определена конÑтрукциÑ, подходÑÑ‰Ð°Ñ Ð´Ð»Ñ Ð½Ð°ÐºÐ»Ð¾Ð½Ð½Ð¾Ð³Ð¾ подъемника, работающего в пеÑчаном карьере, а так же на оÑнове анализа техничеÑких требований, предъÑвлÑемых к типу Ñлектропривода, был выбран ÑоответÑтвующий Ñлектропривод наклонного подъемника. Произведены вычиÑÐ»ÐµÐ½Ð¸Ñ ÑƒÑилий в ÑиÑтеме на каждом учаÑтке Ð´Ð²Ð¸Ð¶ÐµÐ½Ð¸Ñ Ñ‚ÐµÐ»ÐµÐ¶ÐºÐ¸. Ðа оÑнове вычиÑÐ»ÐµÐ½Ð¸Ñ Ð¼Ð¾Ñ‰Ð½Ð¾Ñти, выбран двигатель Ñлектропривода наклонного подъемника ÑоответÑтвующего типа. Подобран тип редуктора. Произведено поÑтроение уточненной нагрузочной диаграммы, и также оÑущеÑтвлена проверка Ð´Ð²Ð¸Ð³Ð°Ñ‚ÐµÐ»Ñ Ð¿Ð¾ перегрузочной ÑпоÑобноÑти и нагреву. Выбран чаÑтотный преобразователь и преобразователь ÑлектроÑнергии. Разработана ÑиÑтема управлениÑ.
Design, working in a sandpit, suitable for inclined lift was determined, as well as based on the analysis of the technical requirements for the drive type, the appropriate electric inclined lift was selected. Computation efforts made in the system in each region of the trolley. Based on the computation power of the electric motor is selected corresponding inclined lift type. Picked up the type of gear. Produced refined building load charts, and also carried out checks on motor overload capacity and heat. Selected inverter and power converter. A control system.
reducers, ÐлекÑÑопÑиводÑ, ÐÑеобÑазоваÑели ÑаÑÑоÑÑ, engine, РедÑкÑоÑÑ, ÐлекÑÑодвигаÑели аÑÐ¸Ð½Ñ ÑоннÑе, electric drives, inclined elevanors, ÐодÑемники, frequency converters, control systems
reducers, ÐлекÑÑопÑиводÑ, ÐÑеобÑазоваÑели ÑаÑÑоÑÑ, engine, РедÑкÑоÑÑ, ÐлекÑÑодвигаÑели аÑÐ¸Ð½Ñ ÑоннÑе, electric drives, inclined elevanors, ÐодÑемники, frequency converters, control systems
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