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LOCATION OF INITIATION SITES IN FRACTURE TOUGHNESS TESTING SPECIMENS - THE EFFECT OF SIZE AND SIDE GROOVES

机译:断裂韧性试样中发起位点的位置 - 尺寸和侧沟的效果

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Cleavage fracture initiates usually at single locations in front of the fatigue crack in some position along the crack front. If the crack driving force along the crack front is uniform, one should expect the initiation sites to be randomly located along the crack front. Finite element analyses have, however, shown that the crack driving force varies along the crack front. Thus, the location of the cleavage initiation sites should reflect this variation in crack driving force. Fracture toughness specimens differ both in geometry and size. Also, the specimens may be side grooved or plane sided. All this can be expected to affect the local crack driving force along the crack front. The local crack driving force for cleavage fracture initiation can be divided into two components. The local K_J value describes the local effective stress intensity, whereas Q or T_(stress) describes the local constraint. To make things even more complicated, the local constraint is also affected by the local effective stress intensity. All of these are also affected by any ductile tearing occurring prior to cleavage initiation. The testing standards contain specific limitations on specimen sizes and their measuring capacity in order to ensure that the crack driving force in different specimens is sufficiently similar to make the results from different specimen types and sizes comparable. Classically, the fracture toughness test specimens have been comparatively large. Recently more and more work has been devoted to diminish the size of the specimens, to save material. One very promising specimen type is the miniature C(T) specimen with a 4 mm thickness and total height of 10 mm. Based on a recent international round-robin, the miniature C(T) specimen appears to provide compatible Master Curve T_0 values as large specimens, but further validation regarding the similitude of the cleavage initiation is required, since the Master Curve is based on the assumption that specimen size does not affect this similitude. In this work, the location of cleavage initiation sites along the crack front are examined for different size and type of fracture toughness specimens, focusing on the miniature C(T) specimen. The location distributions are evaluated in terms of load level, specimen type, size and possible side grooving. It is shown that, as long as the standard requirements are fulfilled, the initiation location distributions for the miniature C(T) specimens are similar to larger conventional specimens. Side grooving is shown to have a minor effect on the initiator locations.
机译:裂解骨折通常在疲劳裂缝前面的单个位置处于沿裂缝前沿的某个位置。如果沿着裂缝前线的裂缝驱动力是均匀的,则应期望启动位点沿着裂缝前方随机定位。然而,有限元分析表明,裂纹驱动力沿着裂缝前方变化。因此,切割引发位点的位置应反映裂纹驱动力的这种变化。断裂韧性样本在几何形状和尺寸中不同。而且,样品可以是侧沟或平面的。所有这些都可以预期影响沿着裂缝前沿的局部裂缝驱动力。用于切割骨折引发的局部裂缝驱动力可分为两个组分。本地K_J值描述了局部有效的应力强度,而Q或T_(应力)描述了本地约束。为了使事情更加复杂,局部约束也受到局部有效压力强度的影响。所有这些也受到在发酵开始之前发生的任何延性撕裂的影响。测试标准含有关于样品尺寸的具体限制及其测量能力,以确保不同标本中的裂纹驱动力足够相似,以使不同标本类型的结果和尺寸可比具有相当的尺寸。经典上,断裂韧性试样相对较大。最近越来越多的工作已经致力于减少标本的大小,以节省材料。一个非常有前途的样品类型是微型C(t)样品,具有4毫米的厚度和10mm的总高度。基于最近的国际循环罗宾,微型C(T)标本似乎提供兼容的主曲线T_0值作为大型标本,但是需要进一步验证,因为主曲线基于假设,因此需要进行切割启动的相似性标本尺寸不会影响这种类似的影响。在这项工作中,针对不同尺寸和裂缝韧性标本进行检查沿裂缝前部的切割发起位点的位置,重点是微型C(T)样本。在负载水平,样品类型,尺寸和可能的侧槽方面评估位置分布。结果表明,只要满足标准要求,微型C(T)样本的起始位置分布类似于较大的常规样本。示出侧槽对发起者位置具有微小的影响。

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