首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >ELASTO-PLASTIC ANALYSIS OF A MINIATURE CIRCULAR DISK BENDING SPECIMEN
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ELASTO-PLASTIC ANALYSIS OF A MINIATURE CIRCULAR DISK BENDING SPECIMEN

机译:微型圆盘弯曲试样的弹塑性分析

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Miniature disk bending test is used to evaluate the mechanical behavior of irradiated materials and its properties - mainly ductility loss due to irradiation in steel. In Miniature Disk Bending Machine the specimen is firmly held between the two horizontal jaws of punch, and an indentor with spherical ball travels vertically.rnResearchers have observed reasonable correlations between values of the yield stress, strain hardening and ultimate tensile strength estimated from this test and mechanical properties determined from the uniaxial tensile test. Some methods for the analysis of miniature disk bending, proposed by various authors have been discussed in the paper.rnIt is difficult to distinguish between the regimes of elastic and plastic deformation since local plastic deformation occurs for very small values of load when the magnitude of spatially averaged stress will be well below the yield stress. Also, the analytical solution for large amplitude, plastic deformation becomes rather unwieldy. Hence a finite element analysis has been carried out.rnThe finite element model, considers contact between the indentor and test specimen, friction between various pairs of surfaces and elastic plastic behavior. The load is increased in steps and converged solution has been obtained and analysis terminated at a load beyond which a stable solution cannot be obtained. A sensitivity study has been carried out by varying the various parameters defining the material properties by ±10% around the base values. Thisrnstudy has been carried out to generate a data base for the load-deflection characteristics of similar materials from which the material properties can be evaluated by an inverse calculation.rnIt is seen that the deflection obtained by analytical elastic bending theory is significantly lower than that obtained by the elasto-plastic finite element solution at relatively small values of load. The FE solution and experimental results are in reasonably good agreement.
机译:微型圆盘弯曲试验用于评估被辐照材料的机械性能及其性能-主要是由于钢的辐照导致的延展性损失。在微型圆盘弯曲机中,试样被牢固地固定在两个水平的冲头钳之间,一个带有球形球的压头垂直移动。研究人员观察到,根据该试验估算的屈服应力,应变硬化和极限拉伸强度之间存在合理的相关性。机械性能由单轴拉伸试验确定。本文讨论了由不同作者提出的一些用于分析微型圆盘弯曲的方法。rn由于在空间大小的情况下,当载荷值很小时,局部塑性变形会发生,因此很难区分弹性变形和塑性变形的状态。平均应力将远低于屈服应力。同样,对于大幅度塑性变形的解析解决方案变得相当笨拙。因此,进行了有限元分析。有限元模型考虑了压头与试样之间的接触,各对表面之间的摩擦以及弹性塑性行为。逐步增加负载,并已获得收敛解,并且在无法获得稳定解的负载下终止分析。通过将定义材料性能的各种参数更改为基本值的±10%,进行了敏感性研究。已经进行了这项研究以生成类似材料的载荷-挠度特性的数据库,可以通过逆计算从中评估材料性能。rn可以看出,通过分析弹性弯曲理论获得的挠度显着低于获得的挠度。通过弹塑性有限元解决方案在相对较小的载荷值下进行。 FE解决方案和实验结果相当吻合。

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