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Small Size Specimens Methods for Evaluation of Mechanical Properties

机译:用于评估机械性能的小尺寸样本方法

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The evaluation of actual mechanical properties of the in-service structures after some time of operation or determination of local properties for detailed FEM simulation yields the necessity to obtain relevant material data with high accuracy from small volume of the experimental material. Therefore, non-destructive or semi-destructive techniques using small size samples are being developed. The use of small-scale samples also enables the evaluation of material properties in various locations of tested component; for example, the mechanical properties of the individual regions of welds, local properties determination for properties anisotropy assessment and properties determination in cases when small volume of the experimental material is available e.g. residual service life assessment of in service components, bulk nanostructured materials… There are shown results of small size tensile tests (M-TT) and small sized fatigue tests (SFT). In the case of small size specimens testing a machining becomes more pronounced that in the case of standard sized specimens. The current study brings information on the machining influence on the expected results obtained by small size specimens in the case of quasi-static tensile tests and fatigue test.
机译:在一段时间操作或确定局部特性的局部性能后,对局部结构的实际机械性能的评价产生了从小体积的实验材料的高精度获得相关材料数据的必要性。因此,正在开发使用小尺寸样本的非破坏性或半破坏性技术。使用小规模样品还使得能够评估测试成分的各种位置的材料特性;例如,焊缝各个区域的机械性质,局部特性测定属性的各向异性评估和性能测定在小体积的实验材料中可获得的情况下。剩余使用寿命评估在使用组件中,散装纳米结构材料......显示出小尺寸拉伸试验(M-TT)和小尺寸疲劳试验(SFT)的结果。在小尺寸的样本测试的情况下,在标准尺寸样本的情况下,加工变得更加明显。目前的研究提出了关于在准静态拉伸试验和疲劳试验的情况下通过小尺寸样本获得的加工影响的加工影响。

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