文章摘要
李彦锋,薛志成,武吉梅,陈彦,武秋敏.基于康达效应的热缩烘箱流场分析及结构优化[J].包装工程,2017,38(3):83-88.
LI Yan-feng,XUE Zhi-cheng,WU Ji-mei,CHEN Yan,WU Qiu-min.Analysis and Structural Improvement of Flow Field of Heat-shrinkable Oven[J].Packaging Engineering,2017,38(3):83-88.
基于康达效应的热缩烘箱流场分析及结构优化
Analysis and Structural Improvement of Flow Field of Heat-shrinkable Oven
投稿时间:2016-02-25  修订日期:2017-02-10
DOI:
中文关键词: 烘箱  流场  FLUENT
英文关键词: oven  flow field  FLUENT
基金项目:国家自然科学基金(11272253);陕西省自然科学基金(2014JM7290)
作者单位
李彦锋 陕西北人印刷机械有限责任公司渭南 714000 
薛志成 陕西北人印刷机械有限责任公司渭南 714000 
武吉梅 西安理工大学西安 710048 
陈彦 西安理工大学西安 710048 
武秋敏 西安理工大学西安 710048 
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中文摘要:
      目的 对壁纸包装机烘箱进行建模与分析,优化烘箱结构。方法 基于流体力学,建立热收缩烘箱的能量方程和运动学方程。通过数值计算得到烘箱流场分布及仿真云图,进而研究烘箱喷口、底面、回风口的流场分布及对热缩性能的影响。基于计算结果,进行回风口尺寸和结构的改进与优化,对多种拟定的改进结构进行分析计算,提取计算数据并对比确定相对最优模型。结果 将确定的最优改进模型加入烘箱中进行整体模拟计算,提取优化后的计算数据,完成结构优化设计。结论 优化后的壁纸包装机烘箱结构在一定程度上改进了原结构中存在的不足,能够较好地满足壁纸包装工程中的工艺需要。
英文摘要:
      The work aims to build a model of the oven of wall-paper packaging machine and analyze it, so as to optimize its structure. Based on the fluid mechanics, the energy equation and kinematics equation of the heat-shrinkable oven were established. Through numerical calculation, the oven flow field distribution and simulation cloud chart were obtained. And then the flow field distribution of oven nozzle, bottom surface and return air inlet as well as its effects on heat shrinkage were researched. According to calculation results, the size and structure of return air inlet were improved and optimized, a variety of proposed improved structures were analyzed and calculated, and the relatively optimal model was determined by extracting and comparing the calculation results. Finally, the optimal improved model was applied to the oven for integral simulation and calculation. The optimized calculation data were extracted to complete the optimal structural design. In conclusion, the oven structure of the improved wall-paper packaging machine to some extent has improved the deficiencies in the original structure, which can better meet the process requirements in wall-paper packaging engineering.
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