首页> 外文会议>Sheet metal 2011 >Blank Optimization in Elliptical-Shape Sheet Metal Forming Using Response Surface Model Coupled with Reduced Basis Technique and Finite Element Analysis
【24h】

Blank Optimization in Elliptical-Shape Sheet Metal Forming Using Response Surface Model Coupled with Reduced Basis Technique and Finite Element Analysis

机译:响应面模型结合简化基技术和有限元分析的椭圆形钣金成形中的坯料优化

获取原文
获取原文并翻译 | 示例

摘要

The present study aims to determine the optimum blank shape design for the deep drawing of Elliptical-shape cups with a uniform trimming allowance at the flange i.e. cups without ears. This earing defect is caused by planar anisotropy in the sheet and the friction between the blank and punch/die. In this research, a new method for optimum blank shape design using finite element analysis has been proposed. Present study describes the approach of applying Response Surface Methodology (RSM) with Reduced Basis Technique (RBT) to assist engineers in the blank optimization in sheet metal forming. The primary objective of the method is to reduce the enormous number of design variables required to define the blank shape. RBT is a weighted combination of several basis shapes. The aim of the method is to find the best combination using the weights for each blank shape as the design variables. A multi-level design process is developed to find suitable basis shapes or trial shapes at each level that can be used in the reduced basis technique. Each level is treated as a separated optimization problem until the required objective - minimum earing function - is achieved. The experimental design of RSM method is used to build the approximation model and to perform optimization. MATLAB software has been used for building RSM model. Explicit non-linear finite element (FE) Code Abaqus/CAE is used to simulate the deep drawing process. FE models are constructed incorporating the exact physical conditions of the process such as tooling design like die profile radius, punch corner radius, etc., material used, coefficient of friction, punch speed and blank holder force. The material used for the analysis is Stainless steel Stl2. A quantitative earing function is defined to measure the amount of earing and to compare the deformed shape and target shape set for each stage of the analysis. The cycle is repeated until the converged results are achieved. This iterative design process leads to optimal blank shape. So through the investigation the proposed method of optimal blank design is found to be very effective in the deep drawing process and can be further applied to other stamping applications.
机译:本研究旨在为椭圆形杯子的深冲压确定最佳的毛坯形状设计,在凸缘(即无耳的杯子)上具有均匀的修边余量。这种耳部缺陷是由板材中的平面各向异性以及毛坯和冲头/模具之间的摩擦引起的。在这项研究中,提出了一种使用有限元分析优化毛坯形状设计的新方法。本研究描述了使用响应面方法学(RSM)和减基技术(RBT)来帮助工程师在钣金成形中进行毛坯优化的方法。该方法的主要目的是减少定义毛坯形状所需的大量设计变量。 RBT是几种基本形状的加权组合。该方法的目的是使用每种毛坯形状的权重作为设计变量来找到最佳组合。开发了多层次的设计过程,以在每个层次上找到合适的基础形状或可用于简化基础技术的试验形状。在实现所需的目标(最小耳功能)之前,将每个级别视为一个单独的优化问题。 RSM方法的实验设计用于建立近似模型并进行优化。 MATLAB软件已用于构建RSM模型。显式非线性有限元(FE)代码Abaqus / CAE用于模拟深拉伸过程。有限元模型的构建结合了过程的精确物理条件,例如模具轮廓半径,冲头拐角半径等工具设计,所用材料,摩擦系数,冲头速度和毛坯夹持器力。用于分析的材料是不锈钢Stl2。定义了定量的入耳函数,以测量入耳量并比较分析的每个阶段设置的变形形状和目标形状。重复该循环,直到获得收敛的结果。这种反复的设计过程可产生最佳的毛坯形状。因此,通过研究发现,所提出的最佳坯料设计方法在深冲压过程中非常有效,并且可以进一步应用于其他冲压应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号