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Ecological Properties of Glass Fibre Reinforced Materials Based On Architecture of Zaha Hadid

机译:基于Zaha Hadid建筑的玻璃纤维增​​强材料的生态特性

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Since 1977-the year of inventing a glass fibre reinforced gypsum-the progressive popularity of materials strengthened with glass fibre is noticed.Light,high sfrength resistant,manufactured in complex geometries at high tolerances,made from post-consumer recycled material makes it a perfect component of each dream,architectural project.Zaha Hadid was an exceptional author of GFRG and glass fibre reinforced concrete(GFRC)breathtaking objects.Her astonishing Heydar Aliyev Center in Baku(The Republic of Azerbaijan)owes its fluid form to GFR materials.Glass Fibre Reinforced Concrete(GFRC)and Glass Fibre Reinforced Polyester(GFRP)were chosen as ideal cladding materials,as they allow for the powerful plasticity of the building's design while responding to very different functional demands related to a variety of situations: plaza,transitional zones and envelope.These panels generate a single curving surface that appears to emerge from the topography.It rises,undulates,and wraps inward at its base to completely envelop the building's various volumes.Another magnificent project created by Zaha Hadid studio is a King Abdullah Petroleum Studies and Research Centre-a non-profit institution for independent research into policies that contribute to the most effective use of energy to provide social wellbeing across the globe.Adding an eco-friendly advantage gives this material a full right to be announced a superb brick of the future.Glass Fibre Reinforced Concrete(GFRC)contains materials that,taken from the soil,have no adverse effect on the environment.Concrete's components include Fly Ash,Silica Sand,Portland cement and aggregate.Providing cheaper substitute than concrete and bricks for construction and reducing the duration of overall construction and hence saving labour cost makes it a more and more popular building material in developing countries which suffers from low increase of housing estates.Throughout a thorough scientific research the author tries to confirm this thesis,although some disadvantages of GFRC,such as lateral stiffness have been found.The architecture of Zaha Hadid represents a beauty and complexity of material reinforced with fibre glass,whereas its popularity in impoverished and developing countries such as India makes it a new kind of low-cost building element.
机译:自1977年以来,该发明一种玻璃纤维的年增强石膏的与玻璃纤维加强材料渐进人气noticed.Light,高耐sfrength,在高容差在复杂几何形状的制造,从消费后回收的材料使得一个完美的制作部件的每个梦想,建筑project.Zaha哈迪德是GFRG的一个特殊的作者和玻璃纤维增​​强混凝土(GFRC)巴库惊险objects.Her惊人阿利耶夫中心(阿塞拜疆共和国)欠其流体形式GFR materials.Glass光纤钢筋混凝土(GFRC)和玻璃纤维增​​强聚酯(GFRP)被选为理想的包覆材料,因为它们允许建筑的设计的功能强大的可塑性,同时应对相关的各种情况非常不同的功能诉求:广场,过渡区和envelope.These面板生成单个弯曲表面看起来浮现在从topography.It上升,起伏,和包裹它的向内基地完全包裹由扎哈·哈迪德的工作室创造了建筑的各种volumes.Another宏伟项目是阿卜杜拉国王石油研究和研究中心 - 一个非营利性机构,独立研究的政策有助于最有效地利用能源提供社会福利整个globe.Adding生态友好的优势,给出了这样的材料完全有权宣布该future.Glass纤维混凝土(GFRC)的一个极好的砖包含,从土壤中吸收,对环境无不良影响的材料。具体的组件包括粉煤灰,石英砂,硅酸盐水泥和aggregate.Providing比混凝土更便宜的替代品,用于建筑用砖,并降低了整体建筑的持续时间,从而节省了人工成本使它成为一个越来越流行的建筑材料在发展中国家患有住房的低增长estates.Throughout深入科研作者试图证实这一日ESIS,扎哈·哈迪德,尽管GFRC的一些缺点,如横向刚度已经found.The架构代表了美丽和玻璃纤维增​​强材料的复杂性,而其贫困和发展中国家如印度的普及使得一种新的低成本的建筑元素。

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