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Study of thermal-mechanical properties of polyurethane foam and the three-dimensional shape of molded bra cups

机译:聚氨酯泡沫的热机械性能和成型文胸杯的三维形状研究

摘要

Molded bras nowadays are dominating the overall bra market place, while the bra cups are mostly made of polyurethane foam sheets. The smooth and seamless inner surface of a molded bra cup gives three-dimensional nice fit to the wearer and provides unlimited designs for different softness and thickness. However, it has been a difficult question to determine the optimum molding conditions for various types of foam and there was no reliable method to measure the cup shape conformity. In this study, the properties of five polyurethane foams were investigated by thermal-mechanical analysis (TMA) and their 3D shapes formed in various molding conditions were measured by a Steinbichler Comet scanner and a new parameterization-based remesh algorithm method. The results revealed that the optimal temperature and dwell time for molding bra cups were greatly affected by the thermal-mechanical properties of polyurethane foams. The softening temperature and deformation properties of the foams tested by TMA can facilitate the determination of optimal molding temperature for the desirable cup shape and thickness. This study provides an effective and quantitative approach to eliminate the time-consuming "trial-and-error" in the molding tests traditionally being used in the industry.
机译:如今,模压文胸在整个文胸市场中占据主导地位,而文胸杯大多由聚氨酯泡沫片制成。模压文胸罩杯的光滑无缝内表面使佩戴者感到三度贴合,并针对不同的柔软度和厚度提供了无限的设计。然而,确定各种泡沫的最佳成型条件是一个困难的问题,并且没有可靠的方法来测量杯形的一致性。在这项研究中,通过热机械分析(TMA)研究了五种聚氨酯泡沫的性能,并通过Steinbichler Comet扫描仪和一种基于参数化的新remesh算法方法测量了它们在各种成型条件下形成的3D形状。结果表明,成型文胸罩杯的最佳温度和保压时间受聚氨酯泡沫的热机械性能影响很大。通过TMA测试的泡沫的软化温度和变形特性可有助于确定所需杯形和厚度的最佳成型温度。这项研究提供了一种有效且定量的方法,以消除行业中传统上使用的成型测试中费时的“反复试验”。

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