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THE EFFECTS OF CONSTRAINT AND COMPRESSIVE OR TENSILE RESIDUAL STRESSES ON BRITTLE FRACTURE

机译:约束和压缩或拉伸残余应力对脆性断裂的影响

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Residual stress is a key feature in components containing defects which can affect the crack driving force and alter the crack tip constraint to give a modified fracture toughness. In this paper experimental and numerical investigations are performed on 'C shape fracture mechanics specimens, extracted from a high strength low alloy tubing steel, to examine the effects of constraint and tensile or compressive residual stress on brittle fracture. The residual stress is introduced into the specimens by a tensile or compressive mechanical pre-load to produce, respectively, a compressive or tensile residual stress in the region where the crack is introduced. Neutron diffraction measurements are performed on the pre-loaded specimens prior to introduction of a crack, and compared with predictions of the residual stress from finite-element analysis, using tensile properties derived at room temperature. Fracture toughness tests are carried out on the as-received (non-preloaded) and pre-loaded specimens and the effect of residual stress on crack driving force and constraint is evaluated using the two-parameter J-Q approach.
机译:残余应力是包含缺陷的组件中的关键特征,这些缺陷会影响裂纹驱动力并改变裂纹尖端的约束条件,从而产生改进的断裂韧性。在本文中,对从高强度低合金钢管中提取的C型断裂力学试样进行了实验和数值研究,以研究约束和拉伸或压缩残余应力对脆性断裂的影响。残余应力通过拉伸或压缩机械预紧力引入样品中,以在引入裂纹的区域分别产生压缩或拉伸残余应力。在引入裂纹之前,对预加载的样品进行中子衍射测量,并与在室温下得出的拉伸性能与有限元分析对残余应力的预测进行比较。在接收到的(未预加载的)和预加载的样品上进行断裂韧性测试,并使用两参数J-Q方法评估残余应力对裂纹驱动力和约束的影响。

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