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Automated Real Time Correction of Motion Induced Dynamic Load Errors in the Force Readout of a Test Apparatus

机译:在测试装置的力读数中自动实时校正运动引起的动态负载误差

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In mechanical testing, it is often important to understand the dynamic characteristics of the test system to assess if there could be any error in the indicated force readout induced by the motions of the system. That these errors exist is readily apparent for load sensors which are mounted on the actuator; the actuator is expected to move during the course of the test. What may be less obvious is that these errors also exist in load measurements taken on the “grounded” side of a sample. Methods have been developed (such as ASTM E467-08e1) for the assessment and correction of these errors; however, these methods can be time consuming to implement. In some cases, they may not be practical or even possible (e.g., placing strain gauges on a biological sample). Existing methods using accelerometers to predict acceleration induced load have been used for some time. What is presented are a set of approaches to increase the simplicity and reliability of using acceleration sensors to address dynamic load errors. Using various modes of stimulation of the system, software algorithms are used to assess the correct compensation factors to use for both magnitude and phase of the acceleration signal, as a function of frequency. This has the additional benefit of allowing the use of load and acceleration sensors which may not be ideally phase matched. These methods also allow stimulation of both motor mounted load sensors as well as frame mounted sensors.
机译:在机械测试中,了解测试系统的动态特性通常很重要,以评估由系统的运动引起的指示力读数中可能有任何误差。对于安装在致动器上的负载传感器存在这些误差是显而易见的;预计执行器将在测试过程中移动。显而易见的是,在样品的“接地”侧的负载测量中也存在这些误差。已经开发了方法(例如ASTM E467-08E1),用于评估和纠正这些误差;但是,这些方法可能是耗时的实现。在一些情况下,它们可能不实际甚至可能(例如,将应变计放在生物样品上)。使用加速度计预测加速感应的现有方法已经使用了一段时间。所提出的是一组方法,可以提高使用加速度传感器来解决动态负载错误的简单性和可靠性。使用系统的各种刺激模式,软件算法用于评估适用于加速信号的幅度和相位的正确补偿因子,作为频率的函数。这具有允许使用负载和加速度传感器的额外益处,这可能不是理想相位匹配的。这些方法还允许刺激电动机安装的负载传感器以及框架安装的传感器。

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