Evaluation Strength Nano Geogrid Concrete Mats with High Resistance Using Nanotechnology Laboratory Model

Alireza Naseri , Ramin Vafaeipour Sorkhabi , Masoud Naseri
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引用次数: 1

Abstract

Crossing on the watery everglades zones is important and strategic matter in transit military equipment. Therefore, for first time construction geogrid concrete mats have been proposed. Concrete mats consist of light weight reinforced concrete beams with high strength which are connected using the geogrid network. Since geogrid networks have a high flexibility and resistance, can held together the concrete beams with lower thickness and be able to spread on watery land using crane. In this case, condition is prepared to cross military equipment and vehicles on the shallow and marshy river. In this study, how to design and build these mats has been studied .In this sense, the laboratory model which has been made by researchers has been utilized. Mats analysis done based on the machinery induced dynamic loads on in vitro models as well as the geogrid networks properties, their strength when crossing loads in construction stage, operation and transfer are analyzed. Strain gauges of TML Company set up on laboratory models then the amount of strain registries and are controlled.

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利用纳米技术实验室模型评价高阻纳米土工格栅混凝土垫块的强度
穿越沼泽地是运输军事装备的重要战略事项。因此,首次提出了土工格栅混凝土垫层的施工方案。混凝土垫层由高强度的轻质钢筋混凝土梁组成,这些梁由土工格栅网络连接。由于土工格栅网具有很高的弹性和阻力,可以将厚度较低的混凝土梁固定在一起,并且可以使用起重机在水陆上展开。在这种情况下,条件是准备在浅而泥泞的河流上越过军事装备和车辆。在本研究中,研究了如何设计和建造这些垫子,在这个意义上,利用了研究人员制作的实验室模型。在机械动力载荷作用下,对土工格栅网在施工阶段、运行和转移过程中的受力特性和强度进行了分析。TML公司的应变计建立在实验室模型上,然后对应变量进行登记和控制。
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Contents Preface Contents Contents Lactic Acid Production from Repeated-Batch and Simultaneous Saccharification and Fermentation of Cassava Starch Wastewater by Amylolytic Lactobacillus Plantarum MSUL 702
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