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Cyclic Tension Compression Testing of AHSS Flat Specimens with Digital Image Correlation System

机译:具有数字图像相关系统的AHSS平面样本的循环张力压缩测试

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A cyclic tension-compression testing program was conducted on flat specimens of TPN-W 780 (Three Phase Nano) and DP980 (Dual Phase) Advanced High Strength Steels (AHSS). This experimental method was enabled utilizing an anti-buckling clamping device performed in a test machine, and the surface strains along the thickness edge are measured with a three-dimensional Digital Image Correlation (DIC) system. The in-plane pre-strain and reversed strain values, at specified strain rates, are investigated to observe the potential plastic flow and the nonlinear strain hardening behavior of the materials. The validity of the test results is established with the monotonic tension tests, to substantiate the true stress-strain curves corrected for the frictional and biaxial stresses induced by the clamping device. A process method for analyzing the correction using a macro script is shown to simplify the output of the true stress-strain results for material model calibration. An in progress study to validate the forming and spring-back predictive capabilities of a calibrated TPN-W 780 complex material model to an actual stamping of an automotive component will demonstrate the usefulness of the experimental cyclic test method. Suggestions to improve the testing, strain analysis and calibration of the model parameters are proposed for augmented use of this test method.
机译:在TPN-W 780(三相纳米)和DP980(双相)先进的高强度钢(AHSS)的平面样本上进行循环张力压缩测试程序。利用在试验机中执行的抗弯曲夹紧装置,通过三维数字图像相关(DIC)系统测量沿着厚度边缘的表面应变来实现该实验方法。研究以特定的应变速率的平面前菌株和反向应变值,以观察材料的潜在塑性流量和材料的非线性应变硬化行为。用单调张力试验建立测试结果的有效性,以证实夹紧装置诱导的摩擦和双轴应力校正的真实应力 - 应变曲线。示出了用于使用宏脚本分析校正的过程方法,以简化材料模型校准的真实应力 - 应变结果的输出。验证校准的TPN-W 780复杂材料模型的成形和回弹预测能力验证校准的TPN-W 780复杂材料模型,以实际冲压将证明实验循环试验方法的有用性。提出了提高模型参数的测试,应变分析和校准的建议,以增强使用该测试方法。

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