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Drop Tower Adaptation for Medium Strain Rate Tensile Testing

机译:适用于中应变率拉伸试验的吊塔适配

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摘要

A novel drop tower modification was designed and implemented in order to enable tensile coupon testing at medium strain rate regime (1-200/s), using a drop weight apparatus, instead of intermediate strain rate servo-hydraulic tensile machines. The developed tensile device, which consists of one movable and one rigid frame, has the ability to transform the compression loading of a drop tower machine into tension loading on the specimen. A simulation model of the proposed concept has been developed in the explicit FE code LS-DYNA and validated by experimental measurements of load and displacement histories. During the development phase, the model was used for the device preliminary design, i.e. the selection of the optimal acquisition sensor locations and the introduction of an absorber material in order to avoid undesired vibrations, as well as for the sizing of the main components of the device. During the testing phase, the numerical model was used for the determination of the appropriate testing parameters which lead to the desired testing conditions (velocity, strain rate and load level). The final design of the tensile device was implemented in an Instron drop tower machine and initial experimental tests were performed for the assessment of the proposed method. Details of the material types and specimen geometries that were tested, as well as impact testing parameters, such as range of strain rate, energy and velocity are comprehensively described in this paper. It was demonstrated that the proposed device can serve as a cost effective alternative of servo-hydraulic tensile machines, is compatible to Digital Image Correlation optical devices due to the good optical access to the tested specimen and does not introduce significant ringing effects in the piezoelectric load cell; therefore, it is suitable for medium strain rate tensile testing.
机译:设计并实施了一种新型的滴水塔改进方案,以便能够使用滴重仪器代替中等应变速率的伺服液压拉伸机,在中等应变速率条件下(1-200 / s)进行拉伸试件测试。研制的拉伸装置由一个可移动的框架和一个刚性的框架组成,具有将滴水塔机器的压缩载荷转换成试样上的拉伸载荷的能力。拟议概念的仿真模型已在显式有限元代码LS-DYNA中开发,并通过实验测量载荷和位移历史进行了验证。在开发阶段,该模型用于设备的初步设计,即,选择最佳的采集传感器位置并引入吸收剂材料,以避免不必要的振动,以及用于确定主要部件的尺寸。设备。在测试阶段,将数值模型用于确定适当的测试参数,从而得出所需的测试条件(速度,应变率和载荷水平)。拉伸装置的最终设计是在Instron落塔机中进行的,并进行了初步实验测试以评估所提出的方法。本文全面介绍了所测试材料类型和样品几何形状以及冲击测试参数(例如应变率,能量和速度范围)的详细信息。结果表明,所提出的装置可以作为伺服液压拉伸机的一种经济有效的替代产品,由于与被测样品的良好光学接触而与数字图像相关光学装置兼容,并且不会在压电负载中引入明显的振铃效应细胞;因此,它适用于中等应变率拉伸测试。

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