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首页> 外文期刊>Journal of wood science >A numerical simulation on multi-spot pressure tensioning process of circular saw blade
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A numerical simulation on multi-spot pressure tensioning process of circular saw blade

机译:圆锯片多点压力张紧过程的数值模拟

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The multi-spot pressure tensioning process of circular saw blade was built by dynamic/explicit solution module of the finite element software called ABAQUS for avoiding non-convergence and improving the computational efficiency. The stress field of circular saw blade during loading process was calculated based on the finite element model. The model which could both meet the requirement of computational efficiency and accuracy was established by adjusting the step time and density of circular saw blade. The unloading process of circular saw blade was built by static/general solution module of ABAQUS using the stress field of loading process calculated by dynamic/explicit finite element method as initial conditions. The tangential tensioning stress field of circular saw blade tensioned by multi-spot pressure which showed the same trend with the measured result was calculated based on the two above-mentioned models. A more ideal distribution of tangential tensioning stress could be produced by the multi-spot pressure tensioning process. The feasibility of multi-spot pressure tensioning process was theoretically proved in this paper.
机译:利用有限元软件ABAQUS的动态/显式求解模块构建了圆锯片的多点压力张伸过程,避免了收敛不,提高了计算效率。基于有限元模型计算了圆锯片在加载过程中的应力场。通过调整圆锯片的步进时间和密度,建立了既能满足计算效率又能满足精度要求的模型。以动态/显式有限元法计算的加载过程应力场为初始条件,利用ABAQUS的静态/通用求解模块构建了圆锯片的卸荷过程。基于上述两个模型计算了多点压力拉伸的圆锯片的切向张拉应力场,该应力场与实测结果呈相同趋势。多点压力拉伸工艺可以产生更理想的切向拉伸应力分布。本文从理论上证明了多点压力张紧工艺的可行性。

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