确定原子能机构穿刺杆跌落试验中正确穿刺杆长度的数值方法

M. Weber, V. Ballheimer, F. Wille, U. Zencker
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引用次数: 0

摘要

在其他机械试验中,应考虑将1米落到钢穿刺棒上作为运输放射性物质的事故安全包装。根据国际原子能机构的规定,“棒材应采用实心的圆形低碳钢,直径15.0±0.5厘米,长20厘米,除非更长的棒材会造成更大的破坏……”。在数值模拟中,可采用迭代法估计出最具破坏性的穿刺杆长度。一方面,足够的穿刺杆长度必须保证减震器或其他附件不会阻止或减少对包装的局部负载,另一方面,较长的因此较不硬的杆会导致较小的最大接触力。如果将减震器直接放置在目标区域,则应考虑增加穿刺杆长度和增加有效落差高度的相反影响。本文提出了一种确定对包装造成最大损伤的杆长的数值方法。以两个典型的包装质量为例,根据国际原子能机构的包装安全要求,计算和评价了接触力和穿刺杆变形对初始长度的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Approach to Determine the Correct Puncture Bar Length for the IAEA Puncture Bar Drop Test
Among other mechanical tests the 1 meter drop onto a steel puncture bar shall be considered for accident safe packages for the transport of radioactive material. According with the IAEA regulations “the bar shall be of solid mild steel of circular section, 15.0 ± 0.5 cm in diameter and 20 cm long, unless a longer bar would cause greater damage ...”. The most damaging puncture bar length can be estimated by iterative processes in numerical simulations. On the one hand, a sufficient puncture bar length has to guarantee that shock absorbers or other attachments do not prevent or reduce the local load application to the package, on the other hand, a longer and thus less stiff bar causes a smaller maximum contact force. The contrary influence of increasing puncture bar length and increasing effective drop height shall be taken into account if a shock absorber is directly placed in the target area. The paper presents a numerical approach to identify the bar length that causes maximum damage to the package. Using the example of two typical package masses the sensitivity of contact forces and puncture bar deformations to the initial length are calculated and assessed with regard to the international IAEA package safety requirements.
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