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Evaluation of Shear Strength of RC Beams with Multiple Interfaces Formed before Initial Setting Using 3D Printing Technology

机译:使用3D打印技术评估在初始设置之前形成的具有多个界面的RC梁的抗剪强度

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摘要

With the recent development of 3D printing technology, concrete materials are sometimes used in 3D printing. Concrete structures based on 3D printing have been characterized to have the form of multiple layer build-up. Unlike general concrete structures, therefore, the 3D-printed concrete can be regarded as an orthotropic material. The material property of the 3D-printed concrete’s interface between layers is expected to be far different from that of general concrete bodies since there are no aggregate interlocks and weak chemical bonding. Such a difference finally affects the structural performance of concrete structures even though the interfaces are formed before initial setting of the concrete. The current study mainly reviewed the changes in fracture energy (toughness) with respect to various environmental conditions of such interface. Changes in fracture energies of interfaces between concrete layers were measured using low-speed Crack Mouth Opening Displacement (CMOD) closed loop concrete fracture test. The experimental results indicated reduction in fracture energy as well as tensile strengths. To improve the tensile strength of interfaces, the use of bridging materials is suggested. Since it was assumed that reduction in fracture energy could be a cause of shear strength, to evaluate the reduced structural performance of concrete structure constructed with multiple interfaces by 3D printing technology, the shear strength of RC beam by 3D printing technology was predicted and compared with that of plain RC beam. Based on the fracture energy measured in this study, Modified Compression Field Theory (MCFT) theory-applied Vector 2 program was employed to predict the degree of reduction in shear strength without considering stirrups. Reduction factors were presented based on the obtained results to predict the reduction in shear strength due to interfaces before initial setting of the concrete.
机译:随着3D打印技术的最新发展,混凝土材料有时用于3D打印中。基于3D打印的混凝土结构已被表征为具有多层堆积的形式。因此,与一般的混凝土结构不同,可以将3D打印的混凝土视为正交异性材料。预计3D打印混凝土各层之间的界面的材料特性将与普通混凝土体有很大差异,因为它不存在聚集体互锁和弱化学键合。即使在混凝土的初始凝固之前就形成了界面,这种差异最终也会影响混凝土结构的结构性能。当前的研究主要回顾了相对于这种界面的各种环境条件的断裂能(韧性)的变化。使用低速裂纹口位移(CMOD)闭环混凝土断裂试验测量了混凝土层之间界面的断裂能变化。实验结果表明断裂能和抗张强度降低。为了提高界面的拉伸强度,建议使用桥接材料。由于假定断裂能的降低可能是剪切强度的原因,为了评估3D打印技术降低的具有多个界面的混凝土结构的结构性能,预测并比较了3D打印技术对RC梁的剪切强度,并与之比较。普通RC梁的。基于这项研究中测得的断裂能,采用修正压缩场理论(MCFT)理论应用Vector 2程序来预测抗剪强度的降低程度,而不考虑箍筋。根据获得的结果提出了折减系数,以预测混凝土初始凝固之前由于界面引起的抗剪强度的降低。

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