Critical Review of Early Age Cycling Effects on the Capacity of Pile to Sleeve Grouted Connections As Treated in ISO 19902

Andi Merxhani, J. Jensen, João Caetano, Casper Klintø Christiansen
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引用次数: 1

Abstract

The treatment of early age cyclic loading (EAC) on pile-sleeve grouted connections is one of the challenging problems encountered in the design of offshore jacket structures. ISO 19902 appears to be the only offshore structural design code that quantifies the strength de-rating due to EAC. However, the mechanism of EAC considered in the ISO standard is little understood. Main provision is that the strength reduction due to EAC is considered to be linearly proportional to the compressive strength of the grout. This provision is conservatively applicable for medium strength grouts. However, it is over-conservative when modern high-performance grouts are used, and it can be further argued that it actually loses its physical meaning. Thus, a further investigation into the mechanics of the problem is deemed beneficial in order to understand better its underlying mechanism. Using existing experimental evidence and a simple mechanical model, it is shown that the EAC mechanism considered in ISO 19902 triggers the grout matrix failure mechanism of the grouted connections. This behavior is characteristic of segregating grout materials. The benefit of the approach followed is that it links the interpretation of EAC to the grout material properties. The phenomenon is then understood using methods and experimental results that are well established in concrete mechanics. After a comparison with existing experimental evidence on grouted connections and concrete members, it is suggested that the strength drop for the specific shearing mechanism is independent of the uniaxial compressive strength of the grout material.
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ISO 19902中处理的早期循环对桩-套筒灌浆连接承载力的影响的评述
桩套灌浆连接的早期循环荷载处理是海上导管架结构设计中遇到的难题之一。ISO 19902似乎是唯一的海上结构设计规范,量化了由于EAC造成的强度下降。然而,人们对ISO标准中EAC的机制知之甚少。主要规定是,由于EAC的强度降低被认为与浆液的抗压强度成线性比例。这一规定保守地适用于中等强度浆料。然而,当使用现代高性能注浆时,它就过于保守了,而且可以进一步认为它实际上失去了它的物理意义。因此,为了更好地理解其潜在机制,对问题机制的进一步调查被认为是有益的。利用已有的实验证据和一个简单的力学模型,表明ISO 19902中考虑的EAC机制触发了注浆连接的浆液基质破坏机制。这种行为是浆液材料分离的特征。接下来的方法的好处是,它将EAC的解释与灌浆材料的特性联系起来。然后,使用在具体力学中已经确立的方法和实验结果来理解这种现象。通过与已有的注浆节点和混凝土构件的试验证据进行对比,认为特定剪切机制的强度下降与注浆材料的单轴抗压强度无关。
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