首页> 外文会议>Tenth International Conference on Computational Methods and Experimental Measurements, 10th, 2001, Alicante >The combination of numerical simulations and experiments in dynamic material research
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The combination of numerical simulations and experiments in dynamic material research

机译:动态材料研究中数值模拟与实验的结合

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In civil engineering structures quasi brittle materials, such as concrete and some composites, are often used. In most applications these materials are loaded dynamically. Consequently, the study of the dynamic behaviour of quasi brittle materials is of major importance. Based on a series of experiments, a material model to describe the dynamic tensile behaviour of quasi brittle materials was developed within the framework of damage mechanics. The constitutive equations describing the dynamic material behaviour have been implemented in a finite element program. The equations contain some material parameters. These material parameters are determined by means of a combined experimental-numerical technique. The necessary experimental results are obtained by means of split Hopkinson bar tests. Although, the test technique has some limitations, certainly when testing quasi brittle materials, Hopkinson tests are used very often in high strain rate material testing, because practical test execution is rather simple, and because Hopkinson type tests give rise to relatively easy interpretation of test results. An automatic procedure has been worked out. With guess-values of the parameters a numerical simulation of a Hopkinson experiment is performed. Well-chosen results of the simulation are compared with experimental signals, a new set of parameters is proposed, a new simulation performed, the results are again compared with the experiment. The parameters are adapted just until sufficient agreement between the experiment and the simulation is obtained. It has been found that the combination of experiments and numerical simulations of the complex stress states and time histories involved in Hopkinson tests is an adequate and essential tool for material modelling.
机译:在土木工程结构中,经常使用准脆性材料,例如混凝土和某些复合材料。在大多数应用中,这些材料是动态加载的。因此,研究准脆性材料的动力学行为至关重要。基于一系列实验,在损伤力学的框架内建立了描述准脆性材料动态拉伸行为的材料模型。描述动态材料行为的本构方程已在有限元程序中实现。这些方程式包含一些材料参数。这些材料参数是通过组合实验数字技术确定的。必要的实验结果是通过分开的Hopkinson条形测试获得的。尽管测试技术有一定的局限性,但是在测试准脆性材料时,肯定会在高应变率材料测试中经常使用Hopkinson测试,因为实际的测试执行非常简单,并且因为Hopkinson类型测试相对容易地解释了测试结果。已经制定了自动程序。利用参数的猜测值,对Hopkinson实验进行数值模拟。将选择好的模拟结果与实验信号进行比较,提出一组新的参数,进行新的模拟,然后将结果再次与实验进行比较。仅在获得实验和模拟之间的足够一致性之前,才对参数进行调整。已经发现,霍普金森试验中涉及的复杂应力状态和时间历史的实验和数值模拟相结合是材料建模的充分必要工具。

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