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Size effects on the ductile/brittle fracture properties of the pressure vessel steel 20 g

机译:尺寸对压力容器钢20 g的韧性/脆性断裂性能的影响

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摘要

Detailed un-standard experiments of fracture toughness in which SENB specimens of five different thicknesses were included were carried out to investigate the size effect on the ductile and brittle fracture. It is found that the ductile fracture toughness parameter-the critical strain energy release rate increases with the size of the specimens which have the similar geometry shape and then decreases gradually to the plane strain fracture toughness. On the upper shelf the critical strain energy release rate increases with the size in the range of 4-16 mm for the increment of the plastic deformation zone size and plastic fracture strain under general yielding conditions, and then drops down from 16 mm to 22 mm for the plastic deformation zone size not changing much which is less than the residual ligament width and the increase of the proportional of the high stress triaxiality zone to the whole specimen. While on the lower shelf the critical strain energy release rate increases with the thickness in the range of 4-8 mm for the plastic deformation zone size increasing under small scale yielding conditions, and then drops down from 8 mm to 22 mm for the increase of the high out-of-plane constraint. Theoretical analysis with the primary definition of the strain energy release rate, the constraint level and the plastic deformation volume was performed to investigate the different size effects for different temperatures. FEA simulations with continuum damage model of GTN models to get the results of the stress triaxiality as an important factor of fracture toughness increasing with the reduction of the thickness. Crown Copyright (c) 2008 Published by Elsevier Ltd. All rights reserved.
机译:进行了详细的非标准断裂韧性试验,其中包括五种不同厚度的SENB标本,以研究尺寸对延性和脆性断裂的影响。结果表明,延性断裂韧性参数-临界应变能释放速率随着几何形状相似的试样尺寸的增大而增大,然后逐渐减小至平面应变断裂韧性。在上部架子上,在一般屈服条件下,随着塑性变形区尺寸和塑性断裂应变的增加,临界应变能释放速率随着4-16 mm范围的增大而增加,然后从16 mm下降至22 mm由于塑性变形区的大小变化不大,小于残余韧带宽度,并且高应力三轴性区与整个试样的比例增加。在较低的架子上,临界应变能释放速率随厚度的增加而增大,在小规模屈服条件下,塑性变形区的尺寸在4-8 mm范围内增加,然后从8 mm下降至22 mm,从而增加高平面外约束。进行了以应变能释放速率,约束水平和塑性变形体积为主要定义的理论分析,以研究不同温度下不同的尺寸效应。用GTN模型的连续损伤模型进行有限元分析,得到应力三轴性的结果,这是断裂韧性随厚度减小而增加的重要因素。 Crown版权所有(c)2008,由Elsevier Ltd.发行。保留所有权利。

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