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A Preliminary Study on the Optimal Preform Design in the Forging Process Using Equivalent Static Loads

机译:使用等效静载荷的锻造过程中最佳预制件设计的初步研究

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The forging process is the shaping of a workpiece using dynamic loads and typically consists of the multi-step process with the preforming process. Defects such as flash and unfilling occur and the distribution of effective strains is not even in the workpiece after the forging process. An optimized preform is necessary for reduction of the defects in the desired final forging. Optimization of the forging process is nonlinear dynamic response optimization because nonlinearities are involved in the analysis. When the conventional method is utilized in optimization of the forging process, the cost is extremely high due to repeated nonlinear analyses for function and sensitivity calculation. In this paper, the equivalent static loads method for non linear static response structural optimization (ESLSO) is employed to determine the preform shape which leads to reduction of the unfilled area and even distribution of the effective strain in the final forging shape. ESLSO is a structural optimization method where nonlinear dynamic loads are transformed to equivalent static loads (ESLs). ESLs are defined as the loads for linear analysis, which generate the same response field as that of nonlinear analysis. Two kinds of ESLs are proposed and they are the ESLs for the displacements and the ESLs for the effective strains. Examples of the forging process are solved using these ESLs and the results are discussed.
机译:锻造过程是使用动态载荷的工件的成形,并且通常由具有预成型过程的多步骤组成。发生诸如闪光和未填充的缺陷,并且在锻造过程之后,有效菌株的分布甚至不是在工件中。优化的预成型件是为了减少所需的最终锻造中的缺陷。锻造过程的优化是非线性动态响应优化,因为非线性参与了分析。当在优化锻造过程中使用传统方法时,由于反复的非线性分析用于功能和灵敏度计算,成本非常高。在本文中,采用了用于非线性静态响应结构优化(ESLSO)的等效静载方法来确定预制件形状,从而导致未填充区域的减小甚至在最终锻造形状中的有效应变的分布。 ESLSO是一种结构优化方法,其中非线性动态载荷转换为等效静态负载(ESLS)。 ESLS被定义为线性分析的负载,其产生与非线性分析相同的响应区域。提出了两种ESL,并且它们是流离失所的ESL和有效菌株的ESL。使用这些ESLS求解锻造过程的实例,并讨论结果。

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