Optimal Value Determination for a Shape Changeable Furniture Design Parameters Using Full Factorial Design of Experiment Analysis

Mobasshira Zaman
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Abstract

Optimization and selecting effective design parameters are a big issue in the field of product design and development. The optimal value determination for design parameters is a challenge for the furniture industry. Therefore, an appropriate statistical approach is required. In this research the full factorial two-level four-factor design of experiment method was used to determine the optimal values for a shape changeable furniture. For the m-chair’s- which can be used as a chair, floor bed, and table, four design parameters- bending axis material surface roughness, density of body material, width of the surface plane, and the number of bending axis were evaluated on basis of the performance time of shape changing where the optimal value of influential parameters were determined for a minimum reshaping time using minitab. This method can be implemented for unique product design. But for further study, different form changing times should be considered individually.
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用试验分析的全析因设计确定可变形家具设计参数的最优值
优化和选择有效的设计参数是产品设计与开发领域的一个重要问题。设计参数的最优值确定是家具行业面临的一个挑战。因此,需要一种适当的统计方法。本研究采用全因子二水平四因素设计试验法确定可变形家具的最优值。对于可作为椅子、地板床和桌子的m-chair 's,根据形状变化的性能时间,评估了弯曲轴材料表面粗糙度、体材密度、表面平面宽度和弯曲轴数量四个设计参数,并利用minitab确定了影响参数的最佳值,以实现最小的重塑时间。该方法可实现独特的产品设计。但为了进一步研究,不同的形式变化时间应该单独考虑。
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