耐久混凝土结构用钢筋:思考要点

A. K. Kar
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引用次数: 1

摘要

钢筋混凝土是建筑的第一介质。重要的是要有优质的混凝土和钢筋。钢筋与混凝土之间良好的粘结也同样重要。大约60年前,高强度的带肋钢筋开始取代普通的圆形低碳钢钢筋,这种钢材的使用使钢筋混凝土建筑更加耐用。人们忽视了碳钢的带肋钢筋在加速的情况下极易受到腐蚀。这不仅会使钢筋混凝土结构更早地陷入困境,还会破坏或减少钢筋与混凝土之间的联系。继续使用高强度碳钢的带肋钢筋表明普遍缺乏对钢筋和混凝土之间粘结现象的理解。由于缺乏对粘结的理解,导致了环氧涂层带肋钢筋、带肋不锈钢钢筋、玻璃纤维增强钢筋和花岗岩增强聚合物钢筋的引入,所有这些都允许钢筋混凝土承受静载荷,因为这些钢筋和混凝土之间的接合。但在振动荷载作用下,钢筋混凝土构件的承载能力下降,容易发生局部甚至完全破坏。使用PSWC-BAR,其特点是其表面平坦,波浪型结构,允许使用中等强度和高强度钢。在没有肋的情况下,腐蚀速度大大降低。使用PSWC-BARs,在不增加努力或成本的情况下,代替传统的肋筋,导致增强这种钢筋和混凝土之间的有效结合或接合,从而导致增加的承载能力,几倍的寿命,延展性和吸收能量的能力,并大大降低生命周期成本和施工对环境和全球气候的不利影响。由于对钢筋与混凝土之间的粘结缺乏了解,在选择所需水平的钢筋伸长率和延性方面存在随意性。
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Rebars for Durable Concrete Construction: Points to Ponder
Reinforced concrete is the number one medium of construction. It is important to have good quality concrete and reinforcing bar (rebar). It is equally important to have competent bond between rebar and concrete. About six decades ago ribbed rebars of high strength steel started replacing plain round bars of mild steel, the use of which had made reinforced concrete constructions durable. It was overlooked that ribbed rebars of carbon steel would be highly susceptible to corrosion at accelerated rates. That would not only make reinforced concrete constructions reach states of distress early, that could also destroy or reduce bond between ribbed rebars and concrete. The continued use of ribbed rebars of high strength carbon steel demonstrates a widespread lack of understanding of the phenomenon of bond between rebars and concrete. This lack of understanding of bond has led to the introduction of epoxy coated ribbed rebars, ribbed stainless steel bars and glass fiber reinforced and granite reinforced polymer rebars, all of which permit reinforced concrete carry static loads because of engagement between such rebars and concrete. But the load-carrying capacity of reinforced concrete elements is impaired, and such elements become vulnerable to local or even total failure during vibratory loads. The use of PSWC-BAR, characterized by its plain surface and wave-type configuration, permits the use of medium strength and high strength steel. In the absence of ribs, the rate of corrosion is greatly reduced. The use of PSWC-BARs, at no added effort or cost, in lieu of conventional ribbed bars, leads to enhancement of effective bond or engagement between such rebars and concrete, thereby leading to increased load-carrying capacity, several-fold higher life span, ductility and energy-absorbing capacity, and great reduction in life cycle cost and adverse impact of construction on the environment and the global climate. In keeping with a lack of understanding of bond between rebars and concrete, there is arbitrariness in the selection of the required level of percent elongation and ductility of rebars.
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