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Experimental Investigation of Ultra-high Performance Fiber Reinforced Concrete Slabs Subjected to Deformable Projectile Impact

机译:超高性能纤维钢筋混凝土板经受可变形射弹冲击的实验研究

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Ultra-High Performance Fiber Reinforced Concrete (UHPFRC) is currently one of the biggest challenging issues in modern concrete technology. The UHPFRC represents a concrete with improved durability and strength, which is significantly higher than in conventional normal strength concrete. This may result in reduced cross-sections and as a consequence smaller dead-load of the structure. The uniaxial compressive cylinder strength of UHPFRC used in this study exceeded 150 MPa and the uniaxial direct tensile strength exceeded 10 MPa. Several UHPFRC mixtures with different content of fibers were subjected to deformable projectile impact. The ogive-nose projectile weighed 8.04 grams and its average velocity was determined to be 710 m/s. It was shown that plain UHPC specimen failed in the brittle manner which caused that the slab split into several pieces. Further, it was demonstrated that addition of steel micro fibers enhanced the resistance to deformable projectile impact and it was specified that specimens containing 2% of fibers by volume have optimal resistance against impact loading. In addition, response of slabs made of conventional fiber reinforced concrete (FRC) and normal strength concrete (NSC) was studied for comparison. The magnitude of the damage was assessed based on the penetration depth, crater diameter and mass loss. Experimental results clearly showed that implementation of high strength steel micro fibers significantly increased the resistance to projectile impact. It was stated, that UHPFRC has much better resistance to projectile impact in comparison to conventional FRC.
机译:超高性能纤维钢筋混凝土(UHPFRC)目前是现代具体技术中最大的挑战性问题之一。 UHPFRC表示具有改进的耐久性和强度的混凝土,其显着高于传统的正常强度混凝土。这可能导致横截面减小,并且由于该结构的较小的死载。本研究中使用的UHPFRC的单轴压缩圆柱强度超过150MPa,单轴直接拉伸强度超过10MPa。对具有不同纤维含量的UHPFRC混合物进行可变形射弹冲击。初始鼻射精称重8.04克,其平均速度确定为710米/秒。结果表明,普通的UHPC样本以脆性方式失效,导致板坯分成几件。此外,证明了钢微纤维的添加增强了对可变形射弹肌的抗性,并指定含有2%的纤维的样品对冲击载荷的最佳抗性。此外,研究了由常规纤维钢筋混凝土(FRC)和正常强度混凝土(NSC)制成的板坯的响应进行比较。基于渗透深度,火山口直径和质量损失来评估损伤的大小。实验结果清楚地表明,高强度钢微纤维的实施显着提高了抗弹性抗冲击的抵抗力。与传统FRC相比,UHPFRC与射弹冲击有更好的抵抗力。

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