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Weibull parameters of Yakuno basalt targets used in documented high-velocity impact experiments

机译:文献记载的高速撞击实验中使用的八野玄武岩靶的威布尔参数

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In this paper we describe our measurements of the Weibull parameters of a specific basalt material, called Yakuno basalt, which was used in documented high-velocity impact experiments. The outcomes of these experiments have been widely used to validate numerical codes of fragmentation developed in the context of planetary science. However, the distribution of incipient flaws in the targets, usually characterized by the Weibull parameters, has generally been implemented in the codes with values allowing to match the experimental outcomes; hence the validity of numerical simulations remains to be assessed with the actual values of these parameters from laboratory measurements. Here we follow the original method proposed by Weibull in 1939 to measure these parameters for this Yakuno basalt. We obtain a value of the Weibull modulus (also called shape parameter) m in the range 15–17 with a typical error of about 1.0 for each different trial. This value is larger than the one corresponding to simulation fits to the experimental data, generally around 9.5. The characteristic strength, which corresponds to 63.2% of failure of a sample of similar specimens and which defines the second Weibull or scale parameter, is estimated to be 19.3–19.4 MPa with a typical error of about 0.05 MPa. This parameter seems to not be sensitive to the different loading rates used to make the measurements. A complete database of impact experiments on basalt targets, including both the important initial target parameters and the detailed outcome of their disruptions, is now at the disposal of numerical codes of fragmentation for validity test.
机译:在本文中,我们描述了对称为玄野玄武岩的特定玄武岩材料的威布尔参数的测量,该材料已用于已记录的高速冲击实验中。这些实验的结果已被广泛用于验证在行星科学背景下开发的碎片化数字代码。但是,通常以威布尔参数为特征的目标中初期缺陷的分布通常已在代码中实现,其值允许与实验结果相匹配。因此,数值模拟的有效性仍需根据实验室测量得出的这些参数的实际值进行评估。在这里,我们遵循Weibull在1939年提出的原始方法来测量此Yakuno玄武岩的参数。我们获得的威布尔模量(也称为形状参数)m的值在15–17范围内,每个不同的试验的典型误差约为1.0。该值大于对应于模拟拟合实验数据的值,通常约为9.5。特征强度(相当于相似样本样品的63.2%的失效)定义了第二个Weibull或比例参数,估计为19.3-19.4 MPa,典型误差约为0.05 MPa。该参数似乎对用于进行测量的不同加载速率不敏感。现在,一个完整的影响玄武岩目标的实验数据库,包括重要的初始目标参数及其破坏的详细结果,都将用于破碎的数字代码用于有效性测试。

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