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Analysis of loading history influence on fatigue and fracture surface parameters using the method of induction trees

机译:用感应树法分析加载历史对疲劳和断裂表面参数的影响

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In fatigue life testing under various loading conditions, researchers observe the profile, surface and morphology of materials. In this study authors research the fatigue life of material and the surface fracture geometry. Areal field and fractal based characterisation are evaluated for the whole fracture surfaces. Results of this test were correlated to notch geometry and loading conditions. It was confirmed, for notched specimens, that the change from torsion to proportional bending with torsion fatigue life increase significantly, the same as changing loading from bending with torsion to bending. The measurement device was equipped with a motorised nosepiece using five dedicated microscopic objective lenses from 2.5× to 100× magnification. This paper presents the application of the induction tree method for analysis of loading history influence on fatigue and fracture surface parameters. In a decision tree, nodes store tests checking values of example attributes and leaves store categories assigned to them. For each of possible test results, there is one branch coming from a node to a subtree. In this way, it is possible to represent any attributes of the hypothesis admissible for a given set. Analysis of selected parameters will estimate their impact on the surface structure.
机译:在各种载荷条件下的疲劳寿命测试中,研究人员观察材料的外形,表面和形态。在这项研究中,作者研究了材料的疲劳寿命和表面断裂的几何形状。对整个裂缝表面评估了基于视场和分形的特征。该测试的结果与缺口的几何形状和加载条件相关。对于带缺口的样品,已经证实,从扭转到成比例弯曲,随着扭转疲劳寿命的增加显着增加,与从扭转到弯曲的载荷变化到弯曲的载荷相同。测量设备配备了电动物镜转接头,该物镜转接头使用了五个专用的显微物镜,放大倍率从2.5倍至100倍。本文介绍了感应树方法在分析载荷历史对疲劳和断裂表面参数的影响中的应用。在决策树中,节点存储检查示例属性值的测试,并保留分配给它们的类别。对于每个可能的测试结果,从节点到子树都有一个分支。这样,可以表示给定集合可允许的假设的任何属性。所选参数的分析将估计它们对表面结构的影响。

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