cantilever stiffness 中文意思是什麼

cantilever stiffness 解釋
懸臂剛度
  • cantilever : n. 1. (橋梁的)懸臂,肱梁;支架。2. 電纜吊線夾板;紙條盤。
  • stiffness : 彈性剛度
  1. The mechanism of different strengthened story rigid cantilever styles is analyzed in this paper. several strengthened story models in common use are compared. the reasonable number and stiffness strengthened stories optimal position in high - rise frame - core tube structure are gained, and the dynamic response of structure with stiffness strengthened stories is analyzed

    本文通過分析不同形式的加強層剛臂的作用機理,並在對常用的幾種加強層模型進行分析比較的基礎上,提出了高層框架-核心筒結構剛性加強層的合理布置數量及其布置最佳層位的選擇。
  2. ( 2 ) based on the existing theory of lateral load distribution rule, and combined the structure characteristic of pre - stressed lager cantilever composite beam with corrugated steel webs, this thesis proposed the modified rigid beam method. taking this method, it is facilitated to compute the lateral load distribution factor of bearing composite cantilever beam with variable - stiffness under the load in arbitrarily position

    ( 2 )以現有的橫向分佈理論為基礎,結合大懸臂波形鋼腹板組合挑梁的結構特點,提出了修正剛接梁法的計算方法,能夠方便地計算變剛度懸臂組合梁任意點位的橫向分佈系數。
  3. The jinma bridge consists of a large single - towered structure rigidly connected to two balanced - cantilever approach structures. the symmetry, stiffness and efficiency of the arrangement made for a very economical, yet aesthetic solution

    金馬大橋採用的是一種獨塔斜拉橋與兩側剛構相連接的新型協作體系斜拉橋,不僅造型美觀、結構新穎而且工程造價也非常節省。
  4. In a big cantilever overhung structure, unbonded prestressing concrete technology can increase the stiffness of reinforced concrete brace, decreases the de - formation, cut down the column section area, save the cost, solve the difficult problems during the process of design and construction and also enlarge the range of unbonded prestressing concrete technology

    摘要在大懸臂懸挑結構中,利用無粘結預應力施工技術,提高鋼筋砼支撐的剛度,減小變形,減小柱截面面積,節約造價,解決了設計、施工中的難題,擴大了無粘結預應力技術的應用范圍。
  5. For the cantilever beam, the theoretical stiffness and limited capacity are slightly less than the test ones if considering only the steel beam and the reinforced bars in the negative moment zone with the concrete in the tension zone ignored

    結果表明:簡支組合扁梁,忽略彈性中和軸以下受拉的混凝土的影響,採用等效換算截面方法計算所得的剛度和極限承載力與試驗結果比較吻合;懸臂梁只考慮混凝土板中配置的負彎矩鋼筋,忽略混凝土,計算所得的剛度和極限承載力比試驗結果略微偏小,但相差不大。
  6. This paper uses of the actual mechanics form, cantilever bending stiffness is adopted in the mega structure, however shearing stiffness in the sub structure. based on the complex mode theory, this paper gains the expression of dynamical response of the system based the model of municipal no. l building of tokyo city and analyses the affection of the main parameters ( stiffness and damping ) on the two configurations ( sustaining type and hang type ). the results indicate that the rational stiffness of the sub structure can control the deformation of the mega structure perfectly, but the acceleration of the sub structure increases at the same time

    本文採用了更接近實際的力學模型,主結構採用彎曲剛度,子結構採用剪切剛度,利用隨機振動復模態理論,推導了巨型框架減振結構的動力響應表達式,並以日本東京市政一號樓為基本模型,討論了巨型框架減振結構兩種結構形式(座承式和懸掛式)的主要參數(剛度和阻尼)對減振效果的影響,結果表明:與普通巨型框架結構相比,減振結構通過合理選擇子結構剛度,可以較好的控制主結構在順風向脈動風作用下的位移響應,從而提高結構的安全性,但與此同時,子結構自身的加速度響應也有了一定程度的提高。
  7. At last, with the stiffness method, the effect of diaphragm density on restraining the distortion of thin - walled bar is analyzed. with different load cases of uniformly load and concentrated load and different boundary conditions of two fixed ends and two simply supported ends and cantilever, the distortion and torsion of the same rectangle thin - walled girder is examined

    在均布和集中兩種反對稱荷載情況下,按兩端固定、兩端簡支和懸臂三種不同的支承情況,採用剛度法對同一矩形截面薄壁桿件的畸變和剛性扭轉分別進行分析。
  8. Through the dynamic character analysis of the large annular cantilever beam string stadium roof structure, it was obtained that the stiffness of the structure was between the stiff structure and flexible structure and the frequencies were dense, vertical vibration was dominant and then the string beam ' s lateral vibration and torsion vibration

    通過對大型環狀懸臂型張弦梁挑蓬結構動力特性分析表明,該結構的剛度介於剛性結構與柔性結構之間,頻譜比較密集,以豎向振動為主,同時伴有張弦梁側向振動和扭轉振動。
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