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Studying of the Dynamic Behavior of Pile Cushioning Materials in Pile Driving

机译:打桩中垫层材料动力特性的研究

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摘要

The dynamic behavior of cushioning materials such as hardwood, particle board, pinewood, asbestos-rubber board, and disk springs are fully characterized by different experimental methods. These include static elastic modulus by static loading, dynamic elastic modulus by natural frequency using the cantilever method, dynamic stress-strain curve method, dynamic recovery coefficient by normal impact between a spherule and a plate, and the pile-driving test in a sand pit. The experimental results show that the relationships between dynamic stresses and strains of the pinewood and asbestos-rubber board are quite different compared with the static ones and subsequently result in greater elastic modulus and recovery coefficients. In comparison to the minor effect on reducing pile-driving stresses of the pile body for pinewood, disk springs are a preferred cushioning material because of their stable dynamic properties that can greatly reduce the driving compressive stresses of the pile body.
机译:缓冲材料(例如硬木,刨花板,松木,石棉-橡胶板和碟形弹簧)的动力学行为可以通过不同的实验方法来充分表征。这些包括静态载荷的静态弹性模量,悬臂法通过固有频率的动态弹性模量,动态应力-应变曲线方法,球体和板之间的法向冲击产生的动态恢复系数以及沙坑中的桩身试验。实验结果表明,松木和石棉-橡胶板的动应力与应变之间的关系与静态的有很大的不同,从而导致更大的弹性模量和恢复系数。与减少松木桩体的桩驱动应力的较小影响相比,碟形弹簧是一种首选的缓冲材料,因为它们的动态特性稳定,可以大大降低桩体的驱动压应力。

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