毛坯位置 的英文怎麼說

中文拼音 [máowèizhì]
毛坯位置 英文
bland position
  • : hairdownfeatherfur
  • : 名詞1 (未經燒制的磚、瓦、瓷等的製品) base 2 (土坯) unburnt brick; earthen brick; adobe 3 [方...
  • : Ⅰ名詞1 (所在或所佔的地方) place; location 2 (職位; 地位) position; post; status 3 (特指皇帝...
  • : 動詞1. (擱; 放) place; put; lay 2. (設立; 布置) set up; establish; arrange; fix up 3. (購置) buy; purchase
  • 毛坯 : semifinished product; [機械工程] blank; [冶金學] bloom; slug
  1. This paper focuses on the core part of the il & sm fixture system - information process system ( ips ). after relevant information is obtained from the current part, ips designs the roughcast and the parameters of stuffing, matches or designs rational locating box, positions all the locating bolt, finishes the procedure of datum conversion and ensures the communications between state shaping system, part fixing system and nc programming system

    本文的研究對象為il & sm夾具系統的核心部分? ?信息處理系統( informationprocessingsystem ? ips ) ,它通過獲取零件的相關信息,進行與填料厚度的設計,設計或配出合理的尋箱,智能布元件,完成基準轉換,並負責與狀態成型系統、工件安裝系統、 nc編程系統等模塊的通訊。
  2. In the solid model building program, based on the cutting tooth theory of double circular arc profile spiral bevel gear and autocad software, a series of computer simulations about solid model building and cutting tooth process of the gear were curried out. the cutter ' s tooth shape, the processed gear blank shape and its conjugated tooth profile shape as well as visual movement relationship between generating gear and processed gear blank etc. were obtained. the relative position of cutter and processed gear as well as the movement trace and rule in the cutting process can be showed dynamically on screen

    在實體建模程序中,以雙圓弧弧齒錐齒輪的加工原理為基礎,藉助繪圖軟體autocad ,模擬了雙圓弧弧齒錐齒輪銑刀盤刀齒形狀、輪齒形狀等,進而根據產形輪與被加工齒之間的共軛嚙合關系,進行了雙圓弧弧齒錐齒輪的實體建模及加工過程模擬,在屏幕上動態顯示刀具及被加工齒輪的相對及其加工時的運動軌跡和規律。
  3. Fem modeling of the die, punch and the binder is discussed for a typical industrial application. ( 3 ) method for the determination of trimming line - bring forward the method predicating the location of the trimming line based on the simulation

    提出了基於模擬的修邊線確定方法,該方法利用反求理論,通過多次有限元計算,獲得比較理想的修邊線和尺寸。
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