整體肋板 的英文怎麼說

中文拼音 [zhěnglèibǎn]
整體肋板 英文
solid plate frame
  • : Ⅰ形容詞1 (全部在內; 完整) whole; all; complete 2 (整齊) neat; tidy; orderly Ⅱ動詞1 (整理; 整...
  • : 體構詞成分。
  • : 肋構詞成分。
  • : Ⅰ名詞1 (片狀硬物體) board; plank; plate 2 (專指店鋪的門板) shutter 3 [音樂] (打拍子的樂器) ...
  • 整體 : ensemble; whole; entirety
  1. It is the key of ebfs, therefore, furthermore calculation about link are carried out in this thesis, introduced achieved research, summarized the affect of link on whole capability in the first, the second, numerical calculation are proceeded on link with ansys : with the purpose of discussing yielding mode critical length of link, established five different specimens ; with the purpose of discussing the influence of h / tw of web, b / tf of flange and h / b, established eighteen different specimens ; with the purpose of discussing the affect of stiffener, established four different specimens, and elaborated the affect of stiffener on link based on achieved test researches

    因此,本文對耗能梁段進行進一步計算分析,概述耗能梁段對性能的影響,並利用有限元程序ansys對耗能梁段進行數值計算:針對耗能梁段的屈服類型建立5種不同長度的模型,計算討論耗能梁段屈服類型的長度劃分;針對耗能梁段腹高厚比、翼緣寬厚比以及梁段截面形狀等因素共建立了18種模型進行計算分析;針對加勁對耗能梁段的作用建立了4種模型,並結合已有的試驗闡述了加勁對耗能梁段的影響。
  2. Reasons : firstly, sectional dimension is so little that torsional stiffness of single - beam is n ' t enough. secondly, protective layer thickness is too thin to protect concrete reinforced bar and reduce durability. lastly, each main beam is joined by cross girder and the more rigid of cross girder the more entirety of bridge

    橋梁局部損壞較嚴重,主要原因是主梁截面尺寸過小、過于薄弱,造成單梁抗扭剛度不足;保護層厚度不夠導致鋼筋外露引起銹蝕,降低了橋梁的耐久性;各主梁採用橫隔梁連接成,橫隔梁的剛度越大,橋梁的性越好,但調查結果顯示,實際情況中並不能達到理想的剛度。
  3. Then calculate the member individually, including the calculation of load - behavior capacity, the calculation of high strong bolt with the method of connection with beam, the design method of stiffening rib, etc. the text educed the above - mentioned formula theoretically. 5. linking with windmill flat engineering example in the third youth flat engineering of yi zhuang development area, beijing, it and steel frame constitute the steel frame ? steel shear wall with slit system respectively are analyzed the whole structure by ansys and satwe

    既利用剛度等效的原則,把其轉換為工程計算軟可以計算的支撐系,然後對構件進行單獨計算,包括承載力的計算、和梁接合方法? ?高強螺栓的計算、加強的設計方法等內容; 5 、帶縫鋼剪力墻與鋼框架形成鋼框架? ?帶縫鋼剪力墻結構系,結合北京亦莊經濟開發區青年公寓三期工程中的風車公寓工程實例,分別採用ansys和satwe進行了結構分析,兩者的計算結果相吻合。
  4. The experimental result indicate that the working characters of the test floor slab is typically two - way obviously, the floor slab that is reinforced two - way by setting transverse steels through the rectangular cores in the ribs of the precast slabs, has excellent bulking property, high bearing capacity, cracking resistance and so on

    試驗研究表明,試驗樓蓋在加載過程中呈現了明顯的雙向受力特徵; pk預應力疊合樓蓋通過在預制構件預留長方形孔穿置橫向鋼筋實現雙向配筋具有良好的性能,還具備承載力高和抗裂性能良好等特點。
  5. Because the intervals of two side girders are relatively large in the structure of the floor, it is not even and some and out of shape that its bridge of panels must be produced at the same time horizontally and crookedly and vertically except deforming wholly, level analyse can receive the satisfied result already at this moment, is it is it accord with floor structure real work state, girder of cable - stay bridge just to analyse with whole out of shape relevant non - linear space of function while being out of shape while being above - mentioned to consider only, but about this research rarely seen to report bridge worker is it understand their receive strength characteristic in an all - round way to need badly publicly

    由於結構中兩個邊主梁的間距較大,其橋面受力變形外必然同時產生橫向彎曲和縱向不均勻局部變形,此時平面分析已不能得到滿意的結果,只有考慮上述變形與變形相關作用的非線性空間分析才符合結構主梁斜拉橋的實際工作狀況,但有關這方面的研究鮮見公開報道,橋梁工作者急需全面了解其受力特性。
  6. With seismic loading tests on multi - rib composite walls and integer building models, this paper researches comprehensively on practical design methods for the structure of multi - rib panel, and provides the theoretical foundation for engineering application of this structure system

    本文結合密復合墻力學性能試驗及房屋模型試驗,較全面分析研究了多層密結構的實用設計方法,為該結構系的工程應用奠定了理論基礎。
  7. Second, on the base of large scale integer building model tests, anti - seismic property of structure of multi - rib panel is analyzed, and is contrasted with the property of the masonry structure. the research reveals that buildings in structure of multi - rib panel make shear deformation mainly, whose failure process is similar to the single composite panel and the tests result shows that, contracted to masonry structure, carrying capacity of buildings in this structure is 1. 5 times and deformation capacity is about 3 times. in addition, thanks to the lower self - weight, the seismic response of the buildings is far lower than masonry structure

    研究表明:多層密結構房屋以剪切變形為主,破壞過程與單塊墻相似;復合墻與后澆隱型框架連接成結構,協同工作;傳統的底部剪力法適用於本結構系的抗震計算;試驗結果還表明,該結構房屋最大承載能力是磚混結構的1 . 5倍,變形能力是磚混結構的3倍左右,而房屋自重比砌結構減少1 4以上,地震反應遠低於砌結構。
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