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Numerical Simulation and Analysis to the behavior of Inner Hole Defect of Integral Top Cover for Pressure Vessel

机译:压力容器整体顶盖内孔缺损行为的数值模拟与分析

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The integral top cover for nuclear reactor pressure vessel is an important force component in the pressure vessel. It works under the HPHT and radiation long time, which increases forging difficultly and needs extremely high quality. Due to the effect of bi-directional tensile stress in spherical part during the shape forming stage of the integral top cover, it is easy to make holes and other defects of the blank extend. Then, it is necessary to study the behavior of the inner hole defect of integral top cover. This paper, by numerical simulation technology, concrete analyses the volume of the hole defect, the size of the hole defect and variation of the hole edges in the stress-strain fields during the shape forming stage of the integral top cover. It researches the control scope of the original size of blank holes when the integral top cover forging meet the requirements of the flaw detection. Research results show that, according to the requirements of volume and maximum size permissible value, the diameter of holes in the integral top cover blank should be respectively less than 1.8 mm, 1.5 mm.
机译:用于核反应堆压力容器的一体顶盖是在压力容器中的重要的分力。它的工作原理HPHT和辐射时间长,这增加了困难锻造和需要极高的品质下。由于双向拉伸应力在球形部分的形状成形所述一体顶罩的阶段期间的效果,很容易使坯件的孔和其他缺陷延伸。然后,有必要研究一体顶罩的内孔缺陷的行为。本文中,通过数值模拟技术,具体分析孔缺陷的体积,在应力 - 应变场的孔边缘的孔缺陷和变形的期间所述一体顶罩的形状形成阶段的大小。它研究的空白孔的原始尺寸的控制范围时,整体顶盖锻件满足探伤的要求。研究结果表明,根据体积和最大尺寸允许值的要求,在所述一体顶罩空白孔的直径应大于1.8毫米,1.5毫米分别以下。

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