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Application of Self-balanced loading test to Socketed Pile in Weak rock

机译:自平衡荷载试验在软岩嵌岩桩中的应用。

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Method of self-balanced loading test differs from the traditional methods of pile test. The key equipment of the test is a cell. The cell specially designed is used to exert load which is placed in pile body. During the test, displacement values of the top plate and the bottom plate of the cell are recorded according to every level of load. So Q-S curves can be obtained. In terms of test results, the bearing capacity of pile can be judged. Equipments of the test are simply and cost of it is low. Under some special conditions, the method will take a great advantage. In Guangxi Province, tertiary mudstone distributes widely which is typical weak rock. It is usually chosen as the bearing stratum of pile foundation. In order to make full use of its high bearing capacity, pile is generally designed as belled pile. Foundations of two high-rise buildings which are close to each other are made up of belled socketed piles in weak rock. To obtain the bearing capacity of the belled socketed pile in weak rock, loading test in situ should be taken since it is not reasonable that experimental compression strength of the mudstone is used for design. The self-balanced loading test was applied to eight piles of two buildings. To get the best test effect, the assembly of cell should be taken different modes in terms of the depth that pile socketed in rock and the dimension of the enlarged toe. The assembly of cells had been taken three modes, and tests were carried on successfully. By the self-balanced loading test, the large bearing capacities of belled socketed piles were obtained. Several key parameters required in design were achieved from the tests. For the data of tests had been analyzed, the bearing performance of pile tip, pile side and whole pile was revealed. It is further realized that the bearing capacity of belled socketed pile in the mudstone will decrease after the mudstone it socketed in has been immerged. Among kinds of mineral ingredient in the mudstone, montmorillonite is much. And in the size composition, content of cosmid is high. For specific surface area of cosmid is large and water intake capacity of it is strong, water content has great effect on strength of the mudstone. Along with water content increasing, strength of the mudstone declines nonlinear apparently. Since effective measures had been taken, the mudstone was prohibited from being immerged during construction. And valuable experience has been accumulated for similar projects construction henceforth.
机译:自平衡载荷测试的方法与传统的桩基测试方法不同。测试的关键设备是一个电池。专门设计的单元用于施加载荷,该载荷置于桩体中。在测试过程中,根据每个负载水平记录电池的顶板和底板的位移值。这样就可以得到Q-S曲线。根据测试结果,可以判断桩的承载力。测试设备简单,成本低。在某些特殊条件下,该方法将具有很大的优势。在广西,第三系泥岩分布较广,是典型的弱岩。通常选择它作为桩基的承载层。为了充分利用其高承载力,通常将桩设计为钟形桩。彼此靠近的两座高层建筑的地基由薄弱的岩石中的钟形套筒桩组成。为了获得钟形承插桩在弱岩中的承载力,应采用原位荷载试验,因为采用泥岩的试验抗压强度进行设计是不合理的。自平衡荷载测试应用于两栋建筑物的八堆桩。为了获得最佳的测试效果,应根据嵌在岩石中的桩深度和脚趾扩大的尺寸,采用不同的方式组装电池。电池的组装采用了三种模式,并成功进行了测试。通过自平衡载荷试验,获得了钟形承插桩的大承载力。从测试中获得了设计中所需的几个关键参数。为了分析测试数据,揭示了桩尖,桩侧和整个桩的承载性能。进一步认识到,在其承接的泥石被浸没之后,钟形承插桩在泥岩中的承载能力将降低。在泥岩中的各种矿物成分中,蒙脱石多。并且在胶料组成中,粘粒含量高。由于粘粒的比表面积大并且其吸水能力强,所以含水量对泥岩的强度有很大的影响。随着含水量的增加,泥岩强度明显地非线性下降。由于已采取有效措施,禁止在施工过程中将泥岩浸入水中。此后,在类似项目的建设中积累了宝贵的经验。

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