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Finite Element Modeling of Superplastic Sheet Forming Processes.Identification of Rheological and Tribological Parameters by Inverse Method

机译:超塑片形成过程的有限元建模。逆方法识别流变学和摩擦学参数

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Superplastic forming is a thermoforming-like process commonly applied to titanium and aluminum alloys at high temperature and in specific conditions.This paper presents the application of an inverse analysis technique to the identification of Theological and tribological parameters.The method consists of two steps.First,two different kinds of forming tests have been carried out for Theological and tribological identification,using specific mold shapes.Accurate instrumentation and measurements have been done in order to feed an experimental database(values of appropriate observables).In a second step,the development of an inverse method has been carried out.It consists of the minimization of an objective function representative of the distance-in a least squares sense-between measured and calculated values of the observables.The algorithm,which is coupled with the finite element model FORGE2~R,is based on a Gauss-Newton method,including a sensitivity matrix calculated by the semi-analytical method.
机译:超塑性成型是一种热成型的方法,通常适用于高温和特定条件下的钛和铝合金。本文介绍了逆分析技术在神学和摩擦学参数的识别中。方法包括两个步骤。首先,两种不同类型的成型试验的已经进行了用于神和摩擦学鉴定,使用特定的模具shapes.Accurate仪器和测量已经为了。在第二步骤中供给的实验数据库(的适当的观测值),开发已经完成已经进行了逆方法。它包括代表距离最小二乘感应的目标函数的目标函数的最小化与可观察到的测量值和计算值之间的距离。该算法,其与有限元模型Forge2耦合〜R,基于高斯 - 牛顿方法,包括由半分析计算的灵敏度矩阵ICE方法。

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