...
首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Knowledge-based substep deterministic optimization of large diameter thin-walled Al-alloy tube bending
【24h】

Knowledge-based substep deterministic optimization of large diameter thin-walled Al-alloy tube bending

机译:大直径薄壁铝合金管弯曲的基于知识的子步确定性优化

获取原文
获取原文并翻译 | 示例

摘要

Regarding increasing applications with mass quantities, diverse specifications, and close quality tolerance, the precision bending of large diameter thin-walled (LDTW) Al-alloy tube should be efficiently achieved. However, bending of LDTW Al-alloy tube is a highly tri-nonlinear process with possible multi-defect, needing strict coordination of various bending tools and processing parameters. Considering the coupling effects of various forming parameters on multiple defects, this study developed a knowledge-based substep methodology to solve the deterministic optimization of LDTW Al-alloy tube bending with multi-objective and multi-variable under multiple factor constraints. Considering narrow forming window under small bending radii (R_b<2D, R_b - bending radius, D - initial tube diameter), a finite element (FE)-based stepwise iterative search method is proposed to optimize key forming parameters of LDTW Al-alloy tube under small R_b, and the search direction is based on bending knowledge. While for large R_b bending with wide optional ranges of forming parameters, a hybrid optimization approach is used by combining virtual design of experiment, FE simulation, approximate response surface model, sequential quadratic programming algorithm, or genetic algorithm. Using orthogonal experimental method, three-dimensional (3D)-FE simulation, experiential data, and analytical formulae, knowledge on key forming parameters, coupling effects on multiple defects, effect significance, and design rules are obtained as well as initial values and design ranges. By several practical bending scenarios with D up to 100 mm, the proposed substep deterministic optimization methodology for LDTW Al-alloy tube bending is evaluated.
机译:关于大量应用,多样化规格和接近质量公差的日益增长的应用,应该有效地实现大直径薄壁(LDTW)铝合金管的精密弯曲。但是,LDTW铝合金管的弯曲是高度三非线性过程,可能会出现多处缺陷,需要严格协调各种弯曲工具和加工参数。考虑到各种成形参数对多个缺陷的耦合作用,本研究开发了一种基于知识的分步方法,以解决在多因素约束下具有多目标和多变量的LDTW铝合金弯管的确定性优化。考虑到小弯曲半径(R_b <2D,R_b-弯曲半径,D-初始管径)下较窄的成形窗口,提出了基于有限元(FE)的逐步迭代搜索方法来优化LDTW铝合金管的关键成形参数R_b较小时,搜索方向基于弯曲知识。对于较大的R_b弯曲和较大的可选成形参数范围,使用混合优化方法,将实验的虚拟设计,有限元模拟,近似响应面模型,顺序二次规划算法或遗传算法相结合。使用正交实验方法,三维(3D)-FE模拟,经验数据和分析公式,获得有关关键成形参数,对多个缺陷的耦合效应,效应重要性和设计规则的知识,以及初始值和设计范围。通过几种D可达100 mm的实际弯曲方案,对LDTW铝合金管弯曲的拟定子步骤确定性优化方法进行了评估。

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