電氣和壞工程 的英文怎麼說

中文拼音 [diànhuàigōngchéng]
電氣和壞工程 英文
ingerieria electrica y mecanica
  • : Ⅰ名詞1 (有電荷存在和電荷變化的現象) electricity 2 (電報) telegram; cable Ⅱ動詞1 (觸電) give...
  • : Ⅰ名詞1 (氣體) gas 2 (空氣) air 3 (氣息) breath 4 (自然界冷熱陰晴等現象) weather 5 (氣味...
  • : 和動詞(在粉狀物中加液體攪拌或揉弄使有黏性) mix (powder) with water, etc. : 和點兒灰泥 prepare some plaster
  • : Ⅰ形容詞1 (不好的; 惡劣的; 使人不滿意的) bad 2 (表示程度深 多用在表示心理狀態的動詞或形容詞後面...
  • : Ⅰ名詞1 (工人和工人階級) worker; workman; the working class 2 (工作; 生產勞動) work; labour 3 ...
  • : 名詞1 (規章; 法式) rule; regulation 2 (進度; 程序) order; procedure 3 (路途; 一段路) journe...
  • 電氣 : [電學] electrical; electric電氣安裝 electric mounting; 電氣保護 electric protection; 電氣保護裝置...
  1. Sicp / al matrix composites, with 5, 15 and 25 % volume fraction of sic particles, were prepared by vacuum hot - pressing sintering processing in this paper. based on mechanics properties, sem observation and energy dispersive x - ray analysis, the interface reaction phenomenon of sicp / al composites made by vacuum hot - pressing sintering, as well as the reinforcement and fracture mechanisms of this composite were analyzed. the dynamic responses of sipc / al composites were studied by a split hopkinson high - speed pressure bar impact system which strain rate was from quasistatic state strain rate ( 3. 3 10 - 3s - 1 ) to dynamic state strain rate ( 5. 2 103 s - 1 )

    本研究以武裝直升飛機防護裝甲材料為研究對象,採用真空熱壓粉末冶金燒結藝制備了含sic顆粒體積分數分別為5 、 1525的sic顆粒增強鋁基復合材料,結合其力學性能、掃描界面微區能譜分析結果,分析了sic _ p al復合材料的真空燒結過中的界面現象,以及材料增強斷裂機理,並利用hopkinson高速壓桿沖擊實驗系統對其從靜態到動態(應變率為3 . 3 10 ~ ( - 3 ) s ~ ( - 1 ) 5 . 2 10 ~ 3s ~ ( - 1 ) )的壓縮破響應進行了研究,分析了不同體積分數sic _ p al復合材料高應變率壓縮載荷下,材料的變形微觀損傷機理,以及利用高速沖擊空炮測定了改復合材料制備剃度復合板的穿透性能。
  2. How to deal with fatigue loads of main mechanism of wind turbine is always an important problem for designers and manufacturers. and for different location, various terrain conditions, with uncertainty of weather, all these increase difficulties for lay - out men and maintenance personnel when they check and measurement huge wind turbine

    而在大型風力發機組的運行維護過中,由於其所安裝位置不同,運行情況千差萬別,再加上天情況的不確定性,使設計人員、維護人員以及檢測人員很難很好的跟蹤了解具體部件的情況。
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