多功能面条成型机三维模型整体装配图

2D3D源文件

参考论文
【摘要】家用面条自动成型机能够有效提升面食制作效率与使用便捷性。针对市面同类设备功能偏少、操作繁琐、清理不便等缺陷,本文设计一款多功能电动面条自动成型机。设计围绕功能多元、操作简便、使用安全等原则展开,对比手摇式、轧切式、对辊式机型性能后,选定对辊式电动结构作为整机基础。本文完成传动机构、面辊、底板、箱体等核心结构设计与零部件参数核算。设备采用带轮搭配齿轮的组合传动方式,实现压面、切面动力分流;面辊、底板分别选用耐磨铸铁与 304 不锈钢材质,箱体采用可拆卸结构。整机搭载 750W 伺服电机,完成变位齿轮、传动轴、轴承等配件选型与强度、寿命校核,各项指标均符合使用标准。借助 SolidWorks 完成零件三维建模与虚拟装配,经干涉检验证实结构设计合理可靠。该成型机结构小巧、功能丰富,可适配家庭多样化面食制作场景。
【关键词】面条成型机 结构设计 传动系统 三维模型
3D Modeling and Structural Design of Automatic Noodle Forming Machine
[Abstract] Household automatic noodle-making machines can effectively improve the efficiency and convenience of noodle preparation. Addressing shortcomings of existing market devices—such as limited functionality, complicated operation, and difficult cleaning—this paper presents a multifunctional electric noodle-forming machine. The design follows principles of multifunctionality, ease of operation, and user safety. After comparing the performance of hand-cranked, roller-cutting, and counter-roller types, the counter-roller electric structure was selected as the foundation for the machine. Core components including the transmission mechanism, noodle rollers, base plate, and housing were designed, and component parameters were calculated. The device employs a combined drive system using pulleys and gears to achieve separate power distribution for dough pressing and cutting. The noodle rollers are made of wear-resistant cast iron, while the base plate is constructed from 304 stainless steel; the housing features a detachable design. A 750W servo motor powers the unit, with careful selection and strength/life verification of components such as shifting gears, drive shafts, and bearings, all meeting required standards. Using SolidWorks, three-dimensional modeling and virtual assembly were completed, and interference checks confirmed the structural design’s rationality and reliability. This machine is compact in size, rich in functions, and suitable for diverse household noodle-making scenarios.
[Keywords]Noodle forming machine, structural design, transmission system, 3D model
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