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Cyclic loading and fracture mechanics of Ductal? concrete

机译:导管混凝土的循环荷载与断裂力学

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Reactive Powder Concrete (RPC) is a special type of ultra high strength, superplasticized, silica fume concrete, often fibre-reinforced, with improved homogeneity because the traditional coarse and fine aggregate are replaced by fine sand with particle sizes in the range of 100–400 μm [4–16 thousandths of an inch]. RPC properties are attractive because compressive strengths up to 800 MPa [116 ksi] have been recorded, but more typically in excess of 200 MPa [29 ksi]. Flexural strengths up to 141 MPa [20.4 ksi] and fracture energy of 40 kJ/m2[kJ/in.2] have been reported—the latter achieved when steel or stainless steel fibres were included in the mix (Baché (1998) Proceedings of the 2nd international conference on superplasticizers in concrete, Ottawa, pp 35–41; Coppola et al. L’Industria Ital Cemento 707:112–125 (1996); Blais and Couture PCI J 44(5):60–71 (1999); Richard and Cheyrezy (1994) Proceedings of V. Mohan Malhotra symposium on concrete technology: past, present, and future (SP 144). American Concrete Institute, Detroit, pp 507–518; Richard and Cheyrezy Cement Concrete Res 25(7):1501–1511 (1995)). Ductal?, a commercial RPC, has a compressive strength of approximately 150 MPa [22 ksi] with metallic or organic fibres. All tests described here were performed on 40 × 40 × 160 mm [1.6 × 1.6 × 6.3 in.] (Width (b) × Depth (d) × length (L)) prisms with Poly Vinyl Alcohol (PVA) fibres. Ductal? is a family of RPC and micro-defect-free concretes containing micro silica, silica fume, cement, Quartz sand, superplasticizer, and PVA fibres. Mechanical and fracture parameters were investigated using four point bending. Low and high cyclic fatigue tests were conducted in three stages, starting from low to high strain cycles. Cracks generated by cyclic fatigue tests were monitored periodically in order to evaluate the rate of crack propagation. Cracks were also investigated using a high magnification microscope. Three pairs of specimens were tested, notched and un-notched to evaluate fracture parameters. Four point bending was used again because determination of the J-Integral (J IC ) requires the application of pure bending over a portion of the beam. Load was applied at the third points over a span (S) of 120 mm [4.7 in.], providing a span to depth ratio (S/d) of 3.0. Specimens were notched using a 1 mm [0.04 in.] thick diamond saw. The crack tip generated was circular and the crack length (s) was approximately 10 mm [0.4 in.]. Tests on the notched specimens included measurement of the crack mouth opening displacement (CMOD). Closed-loop testing was developed using a feed back signal from the (CMOD) clip gauge attached to the notched specimens and from strain gauges attached to the un-notched specimens. The weight (w) of each specimen was obtained prior to testing. Fracture parameters were calculated from the load–deflection curves obtained from the notched and un-notched specimens.
机译:活性粉末混凝土(RPC)是一种特殊类型的超高强度,超增塑的硅粉混凝土,通常是纤维增强的,具有改善的均质性,因为传统的粗骨料和细骨料被粒径范围为100- 400μm[4–16千分之一英寸]。 RPC性能具有吸引力,因为已记录了高达800 MPa [116 ksi]的压缩强度,但更典型的是超过200 MPa [29 ksi]。据报道,其弯曲强度高达141 MPa [20.4 ksi],断裂能为40 kJ / m2 [kJ / in.2 ],而后者是在钢或不锈钢纤维中加入后获得的。 mix(Baché(1998),第二届国际混凝土高效减水剂会议论文集,渥太华,第35-41页; Coppola等人,L'Industria Ital Cemento 707:112-125(1996); Blais和Couture PCI J 44(5) ):60-71(1999); Richard和Cheyrezy(1994)V. Mohan Malhotra关于混凝土技术的研讨会论文集:过去,现在和未来(SP 144)。美国混凝土研究所,底特律,第507-518页; Richard和Cheyrezy Cement Concrete Res 25(7):1501-1511(1995))。商用RPC Ductal?具有金属或有机纤维的抗压强度约为150 MPa [22 ksi]。此处描述的所有测试都是在40×40×160 mm [1.6×1.6×6.3 in。](宽(b)×深度(d)×长度(L))的棱镜上用聚乙烯醇(PVA)纤维进行的。 Ductal?是RPC和无微瑕疵的混凝土系列,包含微硅石,硅粉,水泥,石英砂,高效减水剂和PVA纤维。使用四点弯曲研究了力学和断裂参数。从低应变循环到高应变循环,共分三个阶段进行了低循环疲劳试验和高循环疲劳试验。定期监测由循环疲劳试验产生的裂纹,以评估裂纹扩展的速率。还使用高倍显微镜研究了裂纹。测试了三对试样,分别开槽和开槽以评估断裂参数。再次使用四点弯曲是因为确定J积分(J IC )需要对部分光束进行纯弯曲。在120 mm [4.7 in。]的跨度(S)的第三个点上施加了载荷,跨度与深度之比(S / d)为3.0。使用1毫米[0.04英寸]厚的金刚石锯切开样品。产生的裂纹尖端是圆形的,裂纹长度约为10毫米[0.4英寸]。缺口试样的测试包括裂纹口张开位移(CMOD)的测量。闭环测试是使用来自附有缺口样品的(CMOD)夹规和未附缺口样品的应变仪的反馈信号开发的。在测试之前获得每个样品的重量(w)。断裂参数是根据有缺口和无缺口试样的荷载-挠度曲线计算得出的。

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