Along with the low carbon environmental protection concepts’ widely spread, the market of derivative paper, such as corrugated props, is gradually causing the focus of the society. The method of system design and advanced tools mean that the use of paper props can be promoted. Combining the design experience of related fields, this paper focuses on standardized method in designing paper props and studying of parametric design based on the software of Box-Vellum.
The qualification of packaging dimensions was obtained by reverse analyzing the logistics chain, and on this basis, the model design of packaging container was going on by using behavioral modeling theory. This design process synthetically using software as Pro / ENGINEER and TOPS Pro, reflects typical features of digital design in packaging. By this way, the design efficiency can be improved effectively and the actual logistics costs can be reduced.
Corrugated fiberboard is considered as the world’s environmentally acceptable packaging that has a wide range of applications in packaging field. Through studying the characteristics of elastic wave propagation in the Corrugated fiberboard, this paper inferences variations of displacement and stress with time, when the corrugated fiberboard suffering the uniform load. It provides theoretical and mathematical basis for the design of cushioning package.
By using AutoLISP language based on Autocad, the development process of the tray /carton CAD system should focus on software workflow and overall development program. The system uses nodes descript by a relatively polar coordinate, parametric design, the combination of box/carton-type library with box/carton components library, splicing design methods, etc. With the program designed by AutoLISP language, paper box/carton structure parametric drawing can be achieved according to the mathematical model. The system has the input data legality verification, error handling function, output expansion plan, and automatic dimensioning features.
In this paper, a method is proposed for the cushioning package design of notebook computers with total corrugated cardboard through the market survey currently. A way of the evaluation for cushion package design for notebook computers is mentioned as simulation technology. A simple simulation model of the cushioning package of notebook computers has been made drop analysis and stress analysis by use of simulation software ANSYS. It has verified the feasibility and practicality of the method of whole corrugated cardboard cushioning package design. It has pointed out the direction of the development of the cushioning package design for notebook computers.
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