螺旋扣合式PE膜悬浮收纳盒设计与研究
Design and Research of Spiral Fastening PE Film Suspension Organizer Box
摘要: 针对现有悬浮收纳盒制造价格昂贵、难以回收利用的问题,设计一种新型悬浮收纳盒。该设计采用上下环形框与内环形框螺旋旋合结构,配合圆柱形可脱卡扣与弹簧卡扣实现盒体锁紧,选用高透明食品级PE膜为悬浮承载材料,本文采用PETG材料3D打印增材制造盒体,通过螺旋周向压力实现膜体均匀张紧和方便拆卸,完成结构设计与性能测试。该收纳盒可徒手快速拆装,PE膜张紧均匀无褶皱,密封防尘防潮性能良好,膜体可单独更换,承载精细小件时悬浮稳定。该结构简洁可靠、操作效率高、可循环使用,能够满足回收再利用、方便拆卸、快速更换膜体等要求。
Abstract: Aiming at the existing levitation storage box manufacturing expensive, difficult to recycle the problem, design a new type of levitation storage box. The design adopts the upper and lower annular frame and the inner annular frame spiral screw structure, with cylindrical removable buckle and spring buckle to realize the box body locking, selecting high transparent food-grade PE membrane as the levitation bearing material, this paper adopts the PETG material 3D printing additive manufacturing box, through the spiral circumferential pressure to realize the membrane body uniform tension and convenient disassembly, to complete the structural design and performance testing. The organizer can be quickly disassembled with bare hands, the PE membrane is uniformly tensioned without wrinkles, has good sealing, dustproof and moisture-proof performance, the membrane can be replaced individually, and the levitation is stable when carrying fine and small parts. The structure is simple, reliable, efficient and recyclable, which can meet the requirements of recycling, easy disassembly and quick replacement of membrane.
参考文献
|
[1]
|
巩桂芬, 王露露, 王古月, 陈宁. 新型悬浮包装的设计与实现[J]. 包装工程, 2017, 38(23): 102-105.
|
|
[2]
|
高友超, 陈正勇, 常方杰. 一种带异形环叉的螺旋扣[P]. 中国, CN96248762.7. 1998-09-02.
|
|
[3]
|
全国人类工效学标准化技术委员会. GB/T 16252-2023成年人手部尺寸分型[S]. 北京: 中国质检出版社, 2023.
|
|
[4]
|
杨娟, 刘灵祥. 汽车内饰手握件舒适性的截面设计[J]. 汽车与驾驶维修(维修版), 2022(4): 29-33.
|
|
[5]
|
陈辉洪. U形凸头弹簧卡扣[P]. 中国, CN99240766.4. 2001-06-20.
|
|
[6]
|
东莞高宝模具有限公司. 一种无弹簧的按压式自锁卡扣[P]. 中国, CN202420401433.7. 2024-10-15.
|
|
[7]
|
林杨明. 塑料制品悬臂卡扣连接件设计方法的研究[D]: [硕士学位论文]. 哈尔滨: 哈尔滨工业大学, 2009.
|
|
[8]
|
于海华. 悬臂钩卡扣装配有限元分析及优化设计[D]: [硕士学位论文]. 南京: 南京理工大学, 2009.
|
|
[9]
|
Zhang, Y., Sheng, L., Bai, Y.Z., et al. (2022) Experimental Investigation and Numerical Simulation for Structural Evolution and Stress Distribution during the Stretching Process. Polymer Engineering & Science, 62, 2622-2640.
|
|
[10]
|
陈向明, 姚辽军, 果立成, 等. 3D打印连续纤维增强复合材料研究现状综述[J]. 航空学报, 2021, 42(10): 174-198.
|