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BRITTLE FRACTURE OF ROCKS IN COMPRESSION: NEUTRON EMISSIONS AND GEOMECHANICS EVIDENCES OF PIEZONUCLEAR REACTIONS

机译:压缩岩石的脆性断裂:中子发射和压电效应的地球力学证据

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Neutron emission measurements by means of helium-3 neutron detectors were performed on solid test specimens during crushing failure. The tests were carried out at the Laboratory of Fracture Mechanics of the Politecnico di Torino. The materials used were marble and granite, selected in that they present a different behaviour in compression failure (i.e., a different brittleness index) and a different iron content. All the test specimens were of the same size and shape. Neutron emissions from the granite test specimens were found to be of about one order of magnitude higher than the natural background level at the time of failure. These neutron emissions should be caused by nucleolysis or piezonuclear "fissions" that occurred in the granite, but did not occur in the marble: Fe~(30)_(26→2Al~(14)_(13) 2 neutrons. The present natural abundance of aluminum (7-8% in the Earth crust), which is less favoured than iron from a nuclear point of view, is possibly due to the above piezonuclear fission reaction.
机译:在破碎失败期间,通过氦3中子探测器对固体试样进行了中子发射测量。测试在都灵理工大学的断裂力学实验室进行。选择的材料是大理石和花岗岩,它们在压缩破坏中表现出不同的行为(即,不同的脆性指数)和不同的铁含量。所有测试样品均具有相同的尺寸和形状。发现花岗岩试样的中子发射比失效时的自然本底水平高约一个数量级。这些中子的排放应该是由花岗岩中发生的核解或压电核“裂变”引起的,而大理石中却没有发生:Fe〜(30)_(26→2Al〜(14)_(13)2个中子。从核的角度来看,铝的自然丰度(地壳中7-8%)比铁更受青睐,这可能是由于上述的压电核裂变反应所致。

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