點縱向移位 的英文怎麼說

中文拼音 [diǎnzōngxiàngwèi]
點縱向移位 英文
longitudianl shift pf fpcis
  • : Ⅰ名詞1 (液體的小滴) drop (of liquid) 2 (細小的痕跡) spot; dot; speck 3 (漢字的筆畫「、」)...
  • : Ⅰ動詞1 (釋放; 放走) release; set free; let go 2 (放任; 不約束) indulge; give oneself up to; l...
  • : Ⅰ動詞1. (移動) move; remove; shift 2. (改變; 變動) change; alter Ⅱ名詞(姓氏) a surname
  • : 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...
  • 縱向 : [造紙] direction; machine direction; endwise; longitudinal direction; vertical; longitudinal縱向...
  • 移位 : bit shift
  1. Visual observations showed that a horizontal displacement in the longitudinal direction of the bridge developed between the tie girder and the top flange of the floor beam at the end connection.

    肉眼觀察表明:在端節處的系梁和橫樑上翼緣之間產生一種沿橋梁的水平
  2. The kinematic performance of the macpherson suspension on a real vehicle is studied, and the changes of the front wheel alignment and the motion of the front wheel in the longitudinal and the transversal directions are figured. based on the requirements of general layout, a constrained optimization design model is set up with the steering cross rod ball joint position as the optimization variables ( design parameters ), and the sum of steering cross rod length interference while the left front wheel turning and bouncing as the objective function. and the optimization results are worked out by programming on computer

    針對一種實際車型上的麥弗遜式懸架,計算分析了轉輪跳動時前輪定角和車輪橫量的變化情況,並根據實際車型上麥弗遜式懸架的空間布置要求,建立了以轉橫拉桿斷開空間置坐標為優化變量,轉橫拉桿斷開空間布置坐標可變化范圍為約束條件,車輪轉和跳動時轉橫拉桿長度干涉量為目標函數的約束優化設計模型。
  3. Then using ansys analysis software, we are with an emphasis on studying stress and strain of up - press - board and low - press - board of main engine structure and find the rules for the stress and strain of up - press - board and low - press - board in the different boundary conditions. these rules provide theory for designing reasonable thickness of up - press - board and low - press - board. this article also discusses the best locations for installing vertical displacement sensors

    然後利用ansys分析軟體,重對系統中主機結構的上、下壓板的應力應變進行分析研究,找出在不同的邊界條件下,上、下壓板的應力應變變化規律,為設計出合理的上、下壓板厚度提供理論依據並確定了傳感器在上、下壓板的最佳安裝置。
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