详细信息
基于响应面法与NSGA-Ⅱ的重组竹翻转夹爪优化设计 被引量:2
Optimization Design of Flipping Grippers for Bamboo Scrimber Based on Response Surface Methodology and NSGA-Ⅱ
文献类型:期刊文献
中文题名:基于响应面法与NSGA-Ⅱ的重组竹翻转夹爪优化设计
英文题名:Optimization Design of Flipping Grippers for Bamboo Scrimber Based on Response Surface Methodology and NSGA-Ⅱ
作者:于文吉[1,2] 石昌玉[1] 魏明[3] 张亚慧[2] 曹永建[4] 丁禹程[1] 杨春梅[1]
第一作者:于文吉
机构:[1]东北林业大学,哈尔滨150040;[2]中国林业科学研究院木材工业研究所,北京100091;[3]新港木业发展有限公司,山东临沂276000;[4]广东省林业科学院,广州510520
年份:2023
卷号:44
期号:19
起止页码:187-195
中文期刊名:包装工程
外文期刊名:Packaging Engineering
收录:北大核心:【北大核心2020】;
基金:广东省重大专项研发计划项目(2020B020216001)。
语种:中文
中文关键词:纤维化竹单板;响应面;NSGA-Ⅱ;轻量化;重组竹翻转夹爪
外文关键词:fibrotic bamboo veneer;response surface;NSGA-Ⅱ;light weight;bamboo scrimber flipping gripper
分类号:TB486
摘要:目的 解决纤维竹单板翻面问题,同时保证竹单板的完整性及夹爪的轻量化。方法 设计一款专用翻转机械手,将重组竹翻转夹爪作为研究对象,提出一种基于响应面法与NSGA-Ⅱ相结合的优化设计方法;建立夹爪模型,进行有限元分析并进行优化实验方案的设计,优化中将夹爪质量和最大变形量设定为目标,其许用应力设定为约束,对其进行多目标优化,得到Pareto最优解集。结果 对重组竹翻转夹爪进行优化设计,优化后单个夹爪的质量减少了11.19%,达到了轻量化目的。结论 优化改进后的重组竹翻转夹爪能够在保证其工作可靠的情况下,实现重组竹翻转夹爪的轻量化,同时减小对竹单板造成的破损,为纤维化竹单板集装箱底板包装的规模化发展提供一定基础。
The work aims to solve the flipping problem of fibrotic bamboo veneers and guarantee the completeness of bamboo veneers and the lightweight of grippers.A dedicated flipping manipulator was designed.A bamboo scrimber flipping gripper was used as the research object.An optimization design method based on the combination of NSGAⅡand response surface methodology was proposed.A gripper model was established to conduct finite element analysis and design an optimized experimental plan.The gripper mass and maximum deformation were set as goals in the optimization.Constrained by allowable stress,and multi-objective optimization was performed to obtain the Pareto optimal solution set.The optimized design of the bamboo scrimber flipping grippers reduced the weight of a single gripper by 11.19%,achieving the goal of lightweight.The optimized and improved bamboo scrimber flipping grippers can achieve lightweight,reduce power consumption,and reduce damage to bamboo veneers while ensuring its reliable operation.
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