首页> 外文期刊>Metal Physics and Advanced Technologies >Simulation of Interparticle Interfaces Approaching Each Other. 3. Formation of the Adhesion #alpha#-Fe-Contact under the Indentation of Atomic-Size Edge Roughness and Its Tensile Failure
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Simulation of Interparticle Interfaces Approaching Each Other. 3. Formation of the Adhesion #alpha#-Fe-Contact under the Indentation of Atomic-Size Edge Roughness and Its Tensile Failure

机译:相互接近的粒子间界面的仿真。 3.在原子尺寸的边缘粗糙度及其拉伸破坏的压痕下形成粘着力#alpha#-Fe-接触

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摘要

The processes of nanoindentation, pressing and stretching of the Q-Fe-roughness with (100) and (114) #alpha#-Fe-surface are simulated at an atomic level. An atomistic mechanism of the contact creation and breaking with formation of the fracture 'cup' is investigated. The correlation between structural transforma-tions and a change of the number of adhesive bonds, viscosity of contact, en-ergy and force of adhesion is analysed. The crowdion mechanism of plastic deformation under indentation is confirmed.
机译:在原子水平上模拟了纳米压痕,压制和拉伸具有(100)和(114)#alpha#-Fe表面的Q-Fe粗糙度的过程。研究了接触的产生和断裂以及断裂“杯”的形成的原子机理。分析了结构转变与胶粘剂键数,接触粘度,能量和胶粘力变化之间的相关性。确认了压痕下塑性变形的拥挤机理。

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