This chapter extends the digital analysis of breast-bra interactions to dynamic movements. Using the methods developed in Chapter 9 for creating individualised, deformable finite element human models, as well as 4D scan data and BodyTex4D, dynamic models are created. The same test subject from Chapter 10 is used, and two bra models, along with breast deformation without a bra, are examined during movement. Material calibration for the breast and skin is performed using 4D scan data and BodyTex4D, proving to be a highly promising approach. Finally, the dynamic human-clothing models are compared, revealing the effects of different bras and their properties. Once again, 4D scan data and BodyTex4D contribute significantly to model validation, enhancing the accuracy of digital simulations. The digital models offer great potential for clothing development, as they enable rapid and resource-efficient testing of various garment designs before physical production.

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Analysing the Breast-Bra Interaction in Motions Using Finite Element Models, 4D Scan Data and BodyTex4D

  • Ann-Malin Schmidt

摘要

This chapter extends the digital analysis of breast-bra interactions to dynamic movements. Using the methods developed in Chapter 9 for creating individualised, deformable finite element human models, as well as 4D scan data and BodyTex4D, dynamic models are created. The same test subject from Chapter 10 is used, and two bra models, along with breast deformation without a bra, are examined during movement. Material calibration for the breast and skin is performed using 4D scan data and BodyTex4D, proving to be a highly promising approach. Finally, the dynamic human-clothing models are compared, revealing the effects of different bras and their properties. Once again, 4D scan data and BodyTex4D contribute significantly to model validation, enhancing the accuracy of digital simulations. The digital models offer great potential for clothing development, as they enable rapid and resource-efficient testing of various garment designs before physical production.