carbon-strengthening 中文意思是什麼

carbon-strengthening 解釋
碳強化(作用)
  • carbon : n. 1. 【化學】碳。2. 【電學】碳精棒[片、粉];碳精電極。3. (一張)復寫紙。4. 復寫的副本。
  • strengthening : 加固件
  1. Carbon fiber laminate for strengthening and restoring structures

    結構加固修復用碳纖維片材
  2. Experiment research of carbon fiber reinforced plastic structure strengthening

    碳纖維對工程結構加固的試驗研究
  3. Research on carbon fibre reinforced plastic applied in strengthening concrete structure

    碳纖維布在銹蝕鋼筋混凝土結構加固中的應用研究
  4. Recently, an advanced composite material named carbon fiber reinforced plastic ( cfrp ) has emerged as an alternative to traditional strengthening materials. many advantages such as lightweight, non - corrosive, simple construction, and high tensile strength make it widely used in strengthening field

    碳纖維布( cfrp )加固修補混凝土結構技術是一項新興的結構加固技術,它是利用樹脂類膠結材料將碳纖維材料粘貼于混凝土表面,從而達到對結構構件補強加固及改善結構受力性能的目的。
  5. ( 4 ) according to the principle of " repair as the old ", the schemes of foundation strengthening, the schemes of the body structure, the schemes of the shear wall strengthening, the schemes of the floor strengthening, the schemes of the brace layout, the schemes of the switch floor construction and special strengthening scheme such as carbon fiber, the wall steel wire grid strengthening are achieved in this paper

    按照「修舊如舊」的原則實現了照舊色做舊,使新舊構件的色澤差別諧調。依據上述原則,論文實現了基礎加固施工方案,主體結構加固施工方案、剪力墻加固施工方案、樓板拆除支撐和砼施工方案、支撐布置方案、高層主體結構轉換層施工方案、木屋蓋拆除方案以及特殊加固工程施工技術如粘鋼加固、碳纖維布加固、墻面鋼絲網加固等。
  6. In 21st century, with the development of national - produced process and product technology of carbon fiber reinforced plastic ( cfrp ), no doubt, cfrp strengthening technique will bring huge economic profit to our society. so it is very important to study the design principle and method and construction technology of this new fiber - reinforced composites

    二十一世紀,隨著碳纖維材料的國產化進程和材料技術的不斷進步,碳纖維材料無疑將會帶來最大的經濟效益和社會效益,因此研究這種新興材料的設計原理和設計方法及有關施工技術措施具有十分重要的意義。
  7. The application of carbon fiber reinforced plastic in old bridge strengthening

    碳纖維材料在舊橋加固中的應用
  8. Responsible for or taking part in the research projects which have been spread and received scientific and technological progress rewards, such as " prestressed strengthening technology ", " oil - proof of the composite flooring for multi - storied industrial building ", " the strengthening technology with shotcrete ", " the strengthening technology with carbon fiber material ", " the diagnosis and treatment for leakage of exterior wall ", " the testing and identifying technology of energy - saving building ", " the testing technology of the actual strength of the bonding mortar in masonry structure "

    負責和參加了"預應力加固技術" 、 "多層工業廠房抗油滲復合樓地面技術" 、 "噴射混凝土加固技術" 、 "碳纖維加固技術" 、 "外墻滲漏診治技術" 、 "節能建築檢測鑒定技術" 、 "砌體結構砌築砂漿實際強度檢測鑒定技術"等多項科研成果,並得到推廣應用和獲得科技進步獎。
  9. Test research and theoretic study on shear strengthening of reinforced concrete restrained beams using externally applied carbon fabrics reinforced plastics under concentrated loads is presented in this thesis, which is part of the project of construction bureau of hunan province

    本文結合省建設廳課題碳纖維加固鋼筋混凝土結構的受力變形性能及加固方法研究,對鋼筋混凝土約束梁斜向貼cfrp抗剪加固進行了試驗研究和理論探討。
  10. In the paper, the study of strengthening reinforced concrete beam using prestressed carbon fiber reinforced plastic is introduced, which is the subsystem of repairing and strengthening reinforeed concrete structure using carbon fiber reinforced plastic, undertaken by college of civil engineering of hunan university

    本文結合省建設廳課題碳纖維加固鋼筋混凝土結構的受力變形性能及加固方法研究,對預應力碳纖維布加固受彎構件進行了試驗研究和理論分析。
  11. The application of carbon fiber sheet in strengthening to a commercial building

    碳纖維布在建築結構補強加固中的應用
  12. State - of - the - art in strengthening technology with carbon fiber reinforced polymers

    碳纖維材料加固技術的研究現狀
  13. Experimental research on strengthening steel structures with carbon fiber reinforced polymer

    碳纖維材料加固鋼梁的試驗研究
  14. Recent study of strengthening reinforced concrete structure using prestressed carbon fiber reinforced plastic

    粘接碳纖維材料加固混凝土結構設計方法
  15. Stick steel and carbon fiber reinforced plastic strengthening technique of old concrete roof truss

    粘鋼及碳纖維加固老廠房混凝土屋架的施工
  16. In the light of this, we decide to use imported carbon fiber ( cf ) and local high - strength glass fiber ( sgf ) to manufacture the hfrp which is adapted to concrete structure strengthening

    據此,決定以用進口碳纖維( cf )和國產高強玻璃纖維( sgf )混雜配製適于混凝土結構加固的hfrp作為第一階段研究任務。
  17. Based on the discussion above, a primary comparative experiment of concrete columns externally wrapped with hfrp, carbon fiber reinforced polymer ( cfrp ) and high - strength glass fiber reinforced polymer ( sgfrp ) was carried out to study the ductility, load carrying capacity, strengthening cost of strengthened columns and the exerting efficiency of cf. test results showed that the hfrp can fully exploit the advantages and overcome shortages of the materials

    在此基礎上,以加固柱的延性、承載力、加固價格和cf性能發揮效率為指標,設計並進行了hfrp 、碳纖維復合材料( cfrp )和高強玻璃纖維復合材料( sgfrp )加固柱的探索性對比實驗研究,結果表明hfrp充分發揮了兩種纖維各自的性能優勢,克服了單一frp的缺點。
  18. Enlarging concrete section, enveloping iron and strengthening with carbon fiber sheet are the widely - used methods to strengthen concrete column under axial compression, although these methods have their respective defects : wet - work in construction sit, long time for curing and deformation of appearance, the aging of pouring compounds and so on

    目前對軸心受壓混凝土構件而言,常用的加固方法有混凝土加大截面法、外包鋼加固法、碳纖維布加固法等。而這些方法各有其缺陷,如現場濕作業問題、養護及外觀問題、灌漿材料或粘接劑的老化問題等。
  19. Recently, an advanced composite material named carbon fiber reinforced plastic ( cfrp ) is becoming increasingly popular in the construction industry for strengthening purposes as an alternative to traditional strengthening material

    對現有結構的維修及受損結構的加固、修復是結構工程所面臨的主要問題之一。碳纖維布作為一種新型的復合材料用來代替傳統的加固材料,使用越來越普遍。
  20. Strengthening of concrete structures by bonding carbon fiber reinforced plastic ( cfrp ) to concrete surface using epoxy resins has been now recognized to be an effective and convenient method of improving their performance under service loads or to increase their ultimate strength and widely applied in practice

    目前在混凝土表面粘貼碳纖維布已作為改善鋼筋混凝土結構在使用階段性能或提高極限承載力的一種有效而簡單的加固方法已逐漸被應用。
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