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首页> 外文期刊>Rock Mechanics and Rock Engineering >An Approach to Compensate for the Influence of the System Normal Stiffness in CNS Direct Shear Tests
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An Approach to Compensate for the Influence of the System Normal Stiffness in CNS Direct Shear Tests

机译:一种弥补系统正常刚度在CNS直接剪切试验中的影响的方法

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Applying accurate normal load to a specimen in direct shear tests under constant normal stiffness (CNS) is of importance for the quality of the resulting data, which in turn influences the conclusions. However, deficiencies in the test system give rise to a normal stiffness, here designated as system normal stiffness, which results in deviations between the intended and actual applied normal loads. Aiming to reduce these deviations, this paper presents the effective normal stiffness approach applicable to closed-loop control systems. Validation through direct shear tests indicates a clear influence of the system normal stiffness on the applied normal load (13% for the test system used in this work). The ability of the approach to compensate for this influence is confirmed herein. Moreover, it is demonstrated that the differences between the measured and the nominal normal displacements are established by the normal load increment divided by the system normal stiffness. This further demonstrates the existence of the system normal stiffness. To employ the effective normal stiffness approach, the intended normal stiffness (user defined) and the system normal stiffness must be known. The latter is determined from a calibration curve based on normal loading tests using a stiff test dummy. Finally, a procedure is presented to estimate errors originating from the application of an approximate representation of the system normal stiffness. The approach is shown to effectively reduce the deviations between intended normal loads and the actual applied normal loads.
机译:在恒定正常刚度(CNS)下将精确的正常载荷施加到直接剪切试验中的标本对所得数据的质量非常重要,这反过来影响了结论。然而,测试系统的缺陷导致正常刚度,这里指定为系统正常刚度,这导致预期和实际施加的正常负载之间的偏差。旨在减少这些偏差,本文提出了适用于闭环控制系统的有效正常刚度方法。通过直接剪切测试验证表示系统正常刚度对施加的正常负载上的明显影响(在本工作中使用的测试系统13%)。本文确认了方法来补偿这种影响的能力。此外,证明测量和标称正常位移之间的差异由正常负荷增量除以​​系统正常刚度来建立。这进一步证明了系统正常刚度的存在。为了采用有效的正常刚度方法,必须知道预期的正常刚度(用户定义)和系统正常刚度。基于使用刚性测试假的正常负载测试,后者由校准曲线确定。最后,提出了一种过程来估计源自应用于系统正常刚度的近似表示的误差。示出了这种方法,以有效地降低预期正常载荷与实际施加的正常负载之间的偏差。

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