Structural Optimization of Polyurethane Sponge Cutting Machine Based on Modular Design
DOI:
https://doi.org/10.54097/h4d2ez39Keywords:
Structural optimization; Modular design; Ergonomics.Abstract
Polyurethane sponge has excellent properties and is widely used in home decoration, automotive, construction, packaging and other fields. With the improvement of people's living standards and their demand for a more comfortable environment, the demand for polyurethane sea surface has been increasing year by year in recent years. The increasing demand for polyurethane sponge has led to a surge in demand for polyurethane sponge cutting machines, and the competition for polyurethane sponge cutting machines in the market is becoming increasingly fierce. In addition to the functional requirements of the product, the appearance structure of the polyurethane cutting machine is also a hot topic of concern. Currently, the polyurethane sponge cutting machine has a simple structure and unreasonable design, which makes the cutting machine vulnerable to damage. And unreasonable structural design can affect users' work efficiency, increase production costs, and in severe cases, cause safety hazards. Therefore, this article analyzes the existing problems in the structure of gantry style polyurethane sponge cutting machines on the market, modularizes the polyurethane cutting machine, optimizes the structure of the cutting machine according to ergonomics, and designs an aesthetically pleasing design that can improve the efficiency and safety performance of the polyurethane sponge cutting machine.
Downloads
References
[1] Yue Zhang, Jose A. Robles-Linares, Lei Chen, Zhirong Liao, Albert J. Shih, Chengyong Wang. Advances in machining of hard tissues–From material removal mechanisms to tooling solutions [J]. International Journal of Machine Tools and Manufacture, 2022, 103838.
[2] Helina Research on the Theory and Method of Personalized Product Design Driven by Customer Value [D]. Shanghai Jiao Tong University, 2016
[3] Zhang Meng Research on Key Technologies for Modular Configuration Design of Mechanical Products Based on Product Family [D]. National University of Defense Science and Technology, 2013
[4] Liu Jiqing Research on Key Technologies and Integrated Applications of Product Configuration for Mass Customization [D]. Hefei University of Technology, 2013
[5] Hu S J. Evolving Paradigms of Manufacturing: From Mass Production to Mass Customization and Personalization[J]. Procedia CIRP, 2013, 7: 3-8
Downloads
Published
Issue
Section
License

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.