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Parametric design and process parameter optimization for bra cup molding via response surface methodology

机译:通过响应面法对胸罩杯成型进行参数设计和工艺参数优化

摘要

Seamless and traceless undergarments have rendered foam sheet molding as an important manufacturing technique for the intimate apparel industry. Seamless bra cups are made by one-step forming technology. The three-dimensional (3D) cup shape is formed by using high temperatures and pressures with flexible polyurethane foams. Nevertheless, the mold head design process and control of the bra cup molding process are highly complicated and error prone. There is limited knowledge about the effects of foam properties, molding parameters and foam cup geometric parameters on molding process optimization. This research presents a response surface methodology as the approach for parametric design and process parameter optimization of bra cup molding. The proposed approach integrates 3D scanning via reverse engineering, parameterized-based remeshing and registration algorithm, non-linear mathematical prediction models for cup shape conformity, a model of foam shrinkage and example-based bra cup design and grading to optimize the bra cup development and production process. The experimental results show that this method is highly effective and more timesaving in the design and development of new products, as well as providing consistent quality control of the bra cup molding process.
机译:无缝无痕的内衣已使泡沫片成型成为内衣行业的重要制造技术。无缝文胸罩杯通过一步成型技术制成。三维(3D)杯子形状是通过使用高温高压和柔性聚氨酯泡沫形成的。然而,模头设计过程和胸罩杯模制过程的控制非常复杂且容易出错。关于泡沫性能,成型参数和泡沫杯几何参数对成型工艺优化的影响的知识有限。这项研究提出了一种响应面方法,作为胸罩杯成型参数设计和工艺参数优化的方法。拟议的方法将3D扫描,反向工程,基于参数化的重新定型和配准算法,用于杯形一致性的非线性数学预测模型,泡沫收缩模型以及基于示例的胸罩杯设计和分级集成在一起,以优化胸罩杯的开发和集成生产过程。实验结果表明,该方法在新产品的设计和开发中非常有效且节省时间,并且可以对胸罩罩杯成型过程进行一致的质量控制。

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