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MODELLING OF SLANT FAILURE USING SMALL SIZE SPECIMEN

机译:使用小尺寸样本对倾斜失效进行建模

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The instability of a pipeline crack eventually leads to brittle or ductile crack propagation. The resistance to ductile crack propagation is assessed by the energy dissipated in the CVN test. However the Charpy specimen exhibits mainly mode I failure, with no small shear lips, while real failure is a combined mode often described as slant failure. In the present investigation, instrumented Charpy tests with nominal and reduced thickness down to 2.5 mm are carried out. Instrumented Battelle drop weight tear tests where also performed with nominal and reduced thickness, in order to vary the ligament versus thickness ratio. The results of the Charpy tests are simulated by the finite element method. The results are then discussed in terms of energy dissipated during crack initiation and crack propagation. It is shown that by reducing the size of the Charpy specimen, slant failure is promoted, which results in a decrease of the specific energy absorbed. However, most of the difference of absorbed energy is in the crack initiation mode, and only marginally in crack propagation. Consequently, the fraction of the total energy dissipated in crack propagation is increased by reducing the sample thickness, making it a possible tool to assess the resistance of a material to crack propagation, provided that brittle fracture is avoided and no separation is present.
机译:管道裂纹的不稳定性最终会导致脆性或延性裂纹扩展。通过CVN测试中消耗的能量来评估对延性裂纹扩展的抵抗力。但是,夏比试样主要表现出模式I破坏,没有小的剪切唇,而实际破坏是一种组合模式,通常被描述为倾斜破坏。在本研究中,已进行了仪器化的夏比测试,其名义厚度和厚度减小至2.5毫米。仪器化的Battelle落锤撕裂测试也以标称厚度和减小的厚度进行,以改变韧带与厚度的比率。夏比测试的结果是通过有限元方法模拟的。然后根据裂纹萌生和裂纹扩展过程中的能量耗散来讨论结果。结果表明,通过减小夏比试样的尺寸,可以促进倾斜破坏,从而导致所吸收的比能降低。但是,吸收能量的大部分差异是在裂纹萌生模式中,而在裂纹扩展中仅是微不足道的。因此,通过减少样品的厚度,可以增加在裂纹扩展过程中所耗散的总能量的比例,这是评估材料抗裂纹扩展性的一种可能的工具,前提是要避免脆性断裂并且不存在分离现象。

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