Results 101 to 109 of about 144 (109)
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2018
Ð¦ÐµÐ»Ñ Ð²ÑпÑÑкной квалиÑикаÑионной ÑабоÑÑ - ÑÑавниÑелÑÐ½Ð°Ñ Ð¾Ñенка каÑеÑÑва ÑÑÑдней, поÑÑавлÑемÑÑ Ð½Ð° поÑÑебиÑелÑÑкий ÑÑнок. РаÑÑмоÑÑÐµÐ½Ñ Ð²Ð¾Ð¿ÑоÑÑ ÑÑнка и ÑовÑеменного аÑÑоÑÑименÑа мÑÑнÑÑ ÑоваÑов, Ñ
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Ð¦ÐµÐ»Ñ Ð²ÑпÑÑкной квалиÑикаÑионной ÑабоÑÑ - ÑÑавниÑелÑÐ½Ð°Ñ Ð¾Ñенка каÑеÑÑва ÑÑÑдней, поÑÑавлÑемÑÑ Ð½Ð° поÑÑебиÑелÑÑкий ÑÑнок. РаÑÑмоÑÑÐµÐ½Ñ Ð²Ð¾Ð¿ÑоÑÑ ÑÑнка и ÑовÑеменного аÑÑоÑÑименÑа мÑÑнÑÑ ÑоваÑов, Ñ
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СÑдовой двигаÑÐµÐ»Ñ Ð¼Ð¾ÑноÑÑÑÑ 1300 кÐÑ
2020This work is devoted to the development of a marine diesel engine with a power of 1300 kW. Tasks that were solved during the research: 1. Calculation and optimization of the engine working process. 2. Dynamic calculation of the engine. 3. The engine balance analysis. 4. Strength analysis of the crankshaft and engine connecting rod. 5.
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ÐизелÑнÑй двигаÑÐµÐ»Ñ Ð¼Ð¾ÑноÑÑÑÑ 150 кÐÑ
2019This work is devoted to the development of diezel engine capacity of 150 kW. In this work I calculated: the working process of the engine according to the method Hrynevetskyi-Masing, the forces and moments arising in the elements of the engine and balance analysis.
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1992
ÐзлагаÑÑÑÑ Ð¾ÑновнÑе пÑинÑÐ¸Ð¿Ñ Ð¿Ð¾ÑÑÑÐ¾ÐµÐ½Ð¸Ñ ÑиÑÑовÑÑ Ñзлов ÑадиоÑÐµÑ Ð½Ð¸ÑеÑкой аппаÑаÑÑÑÑ Ð½Ð° поÑледоваÑелÑноÑÑнÑÑ ÑÑÑÑойÑÑÐ²Ð°Ñ , ÑеализÑÑÑÐ¸Ñ ÑÑнкÑионалÑнÑÑ ÑвÑÐ·Ñ Ð¼ÐµÐ¶Ð´Ñ Ð¿Ð¾ÑледоваÑелÑноÑÑÑми Ð²Ñ Ð¾Ð´Ð½Ñ
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ÐзлагаÑÑÑÑ Ð¾ÑновнÑе пÑинÑÐ¸Ð¿Ñ Ð¿Ð¾ÑÑÑÐ¾ÐµÐ½Ð¸Ñ ÑиÑÑовÑÑ Ñзлов ÑадиоÑÐµÑ Ð½Ð¸ÑеÑкой аппаÑаÑÑÑÑ Ð½Ð° поÑледоваÑелÑноÑÑнÑÑ ÑÑÑÑойÑÑÐ²Ð°Ñ , ÑеализÑÑÑÐ¸Ñ ÑÑнкÑионалÑнÑÑ ÑвÑÐ·Ñ Ð¼ÐµÐ¶Ð´Ñ Ð¿Ð¾ÑледоваÑелÑноÑÑÑми Ð²Ñ Ð¾Ð´Ð½Ñ
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ÐизелÑнÑй двигаÑÐµÐ»Ñ Ð¼Ð¾ÑноÑÑÑÑ 100 кÐÑ
2019In this work the automobile diesel engine with power of 100 kW was designed. The calculation of the working process of the engine by the method of Grinevetsky-Mazing was made. The forces and moments acting in the cycle of the engine working was determined, strength analysis was determined too.
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ÐизелÑнÑй двигаÑÐµÐ»Ñ Ð¼Ð¾ÑноÑÑÑÑ 100 кÐÑ
2016РазÑабоÑан дизелÑнÑй двигаÑелÑ, ÑпÑоекÑиÑÐ¾Ð²Ð°Ð½Ñ ÑиÑÑÐµÐ¼Ñ Ð¾Ñ Ð»Ð°Ð¶Ð´ÐµÐ½Ð¸Ñ Ð¸ Ñмазки, ÑопливоподаÑÑÐ°Ñ Ð°Ð¿Ð¿Ð°ÑаÑÑÑа. ÐÑполнен Ñепловой ÑаÑÑÐµÑ Ð´Ð²Ð¸Ð³Ð°ÑелÑ. ÐÑÐ¾Ð¸Ð·Ð²ÐµÐ´ÐµÐ½Ñ Ð¿ÑовеÑоÑнÑе ÑабоÑÑ Ð½Ð° пÑоÑноÑÑÑ Ð´ÐµÑал
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СпоÑÑивно-оздоÑовиÑелÑнÑй комплекÑ
2018ÐÐ¸Ð¿Ð»Ð¾Ð¼Ð½Ð°Ñ ÑабоÑа вклÑÑÐ°ÐµÑ Ð² ÑебÑ: аÑÑ Ð¸ÑекÑÑÑно-планиÑовоÑнÑе ÑеÑениÑ, где ÑазÑабоÑÐ°Ð½Ñ Ð¾Ð±Ñемно планиÑовоÑнÑе и конÑÑÑÑкÑивнÑе ÑеÑÐµÐ½Ð¸Ñ Ð·Ð´Ð°Ð½Ð¸Ñ; конÑÑÑÑкÑивнÑй Ñаздел, ÑодеÑжаÑий ÑаÑÑеÑÑ Ð¾Ñ ...
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СÑдовой двигаÑÐµÐ»Ñ Ð¼Ð¾ÑноÑÑÑÑ 180 кÐÑ
Explanatory notes include: 1.Abstract on the topic of work 2. settlement workflow according to the Grinevetsky-Masing method. 3.dynamic calculations 4.balanced analysis 5. strength calculations of the main engine components 6.calculation of lubrication, cooling, start-up elements 7.openaire +1 more source
ÐонÑÐ¿ÐµÐºÑ Ð»ÐµÐºÑий по ÑеоÑеÑиÑеÑкой Ð¼ÐµÑ Ð°Ð½Ð¸ÐºÐµ
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