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首页> 外文期刊>Journal of Materials Processing Technology >Quick prediction of the folding defect in transitional region during isothermal local loading forming of titanium alloy large-scale rib-web component based on folding index
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Quick prediction of the folding defect in transitional region during isothermal local loading forming of titanium alloy large-scale rib-web component based on folding index

机译:基于折叠指数的钛合金大型肋腹板构件等温局部载荷成形过程中过渡区折叠缺陷的快速预测

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摘要

Forming quality of transitional region determines the performance of titanium alloy large-scale rib-web component under isothermal local loading forming. As folding defect is the most sensitive defect in transitional region, its prediction is very critical to the precision shape forming in isothermal local loading forming. In this paper, a quick prediction model for the folding defect in transitional region was established to replace the traditional defect prediction method by time-consuming FE simulation. First of all, the FE model of local eigen model of transitional region during local loading forming of large-scale rib-web component was established and validated by physical experiment. Then, an adaptive folding index was proposed to measure the possibility and severity of folding defect based on the mechanism that there exists a local increase of strain rate when a folding tends to appear. Availability of the adaptive folding index was checked by large numbers of uniform experiments designed by the space-filling Maximin Latin hypercube designs (maximin LHDs). Furthermore, a judging criterion for folding defect based on the folding index was developed and validated by random samples. Subsequently, the folding index was correlated with the geometrical characteristic parameters of transitional region model by RSM model, through which the folding index can be predicted quickly without the time-consuming FE simulation. Finally, a quick prediction model was established for folding defect judgment under various geometrical parameters by combination of the RSM model for folding index and proposed judging criterion. Prediction results are quite consistent with the results of FE simulation and experiment. The folding prediction model can greatly facilitate the design space exploration and engineering design thereby providing guideline to the precision shape forming. Besides, the adaptive folding index and corresponding judging criteria for folding defect put forward in this work have reference significance to the study on folding defect in other forging processes. (C) 2014 Elsevier B.V. All rights reserved.
机译:过渡区的成形质量决定了钛合金大型肋腹板构件在等温局部载荷作用下的性能。由于折叠缺陷是过渡区域中最敏感的缺陷,因此其预测对于等温局部载荷成形中的精确形状成形至关重要。本文建立了过渡区域折叠缺陷的快速预测模型,通过费时的有限元仿真代替了传统的缺陷预测方法。首先,建立了大型肋腹板构件局部荷载成形过程中过渡区局部本征模型的有限元模型,并通过物理实验对其进行了验证。然后,提出了一种自适应的折页指数,根据折页容易出现时应变率局部升高的机理来测量折页缺陷的可能性和严重性。自适应折叠指数的可用性通过大量填充Maximin Latin超立方体设计(maximin LHD)设计的统一实验进行检查。此外,建立了基于折叠指数的折叠缺陷判断标准,并通过随机样本进行了验证。随后,通过RSM模型将折叠指数与过渡区域模型的几何特征参数相关联,从而可以快速预测折叠指数,而无需进行费时的有限元模拟。最后,通过结合折叠指数的RSM模型和提出的判断标准,建立了在各种几何参数下折叠缺陷判断的快速预测模型。预测结果与有限元仿真和实验结果十分吻合。折叠预测模型可以极大地促进设计空间的探索和工程设计,从而为精确形状的形成提供指导。此外,本文提出的自适应折页指数和相应的折页缺陷判断标准对其他锻造工艺中折页缺陷的研究具有参考意义。 (C)2014 Elsevier B.V.保留所有权利。

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