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A Numerical Study of the Spring-Back Phenomenon in Bending with a Rebar Bending Machine

机译:钢筋弯曲机弯曲回弹现象的数值研究

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Recently, the rebar bending methodology started to change from field processing to utilizing rebar bending machines at plant sites prior to transport to the construction locations. Computerized control of rebar plant bending machines provides more accurate and faster bending of rebars than the low quality inefficient field processing alternative. The bending process involves plastic deformation of rebars, where bending stress beyond the yield point of the material is applied. When the bending stress is removed, spring back is caused by the elastic restoring stress. Therefore, an accurate numerical analysis of the spring-back process is required to reduce the bending process errors. The most sensitive factors affecting the spring-back process are the bending radius, the bending angle, the diameter of the rebar, the friction coefficient, and the yielding strength of material. In this paper, we suggest a numerical modeling method using these factors. The finite element modeling of the dynamic mechanical behavior of the material during bending is performed using a commercial dynamic analysis program "DAFUL." We use the least squares approach to derive the spring-back deflection as a function of the rebar bending parameters.
机译:最近,钢筋弯曲方法开始从现场处理转变为在工厂现场运送到施工现场之前在工厂使用钢筋弯曲机。与低质量,效率低下的现场处理替代品相比,计算机控制的钢筋工厂折弯机的计算机控制可提供更准确,更快的钢筋弯曲。弯曲过程涉及钢筋的塑性变形,其中施加超过材料屈服点的弯曲应力。消除弯曲应力后,弹性恢复应力会引起回弹。因此,需要对回弹过程进行精确的数值分析,以减少弯曲过程的误差。影响回弹过程的最敏感因素是弯曲半径,弯曲角度,钢筋直径,摩擦系数和材料的屈服强度。在本文中,我们建议使用这些因素的数值建模方法。使用商业动态分析程序“ DAFUL”对材料在弯曲过程中的动态机械行为进行有限元建模。我们使用最小二乘法来得出回弹挠度,该挠度是钢筋弯曲参数的函数。

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