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Influence of Fabric Mechanical Property on Clothing Dynamic Pressure Distribution and Pressure Comfort on Tight-Fit Sportswear

机译:织物力学性能对紧身运动服服装动压分布和压力舒适性的影响

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摘要

Clothing pressure distribution in tight-fit sportswear was simulated by using numerical computational method. Three sets of tight-fit sportswears were simulated on the basis of their mechanical properties. In addition, a 3D human body was also simulated in order to investigate its interaction with sportswear in the wearing process. Result shows that pressure increases significantly around the waist girth until it passes through body pelvis during the wearing process. Meanwhile, pressure begins to increase for other tested body locations. Based on body contour plot, we found that pressure distribution was not uniformly distributed and high-pressure zone was concentrated around the waist girth at the end of the wearing process. The simulated pressure has no significant difference (p > 0.05) with the experimental pressure measurements. Furthermore, subjective pressure comfort rating was linearly correlated with the simulation, suggesting the simulation method can provide reliable prediction in term of pressure comfort. From the tight-fit sportswear manufacturer's point of view, simulation result would help them to satisfy consumers' physiological and psychological needs in term of pressure comfort at a lower cost.
机译:采用数值计算方法,模拟了紧身运动服的服装压力分布。根据三组紧身运动服的机械性能进行了模拟。此外,还模拟了3D人体,以研究其在穿着过程中与运动服的相互作用。结果表明,在穿着过程中,腰围周围的压力显着增加,直到穿过身体骨盆为止。同时,其他受测身体部位的压力开始增加。根据人体轮廓图,我们发现穿着过程结束时压力分布不均匀,并且高压区集中在腰围周围。模拟压力与实验压力测量值无显着差异(p> 0.05)。此外,主观压力舒适度与模拟线性相关,表明该模拟方法可以提供可靠的压力舒适性预测。从紧身运动服制造商的角度来看,模拟结果将有助于他们以较低的成本满足消费者在压力舒适性方面的生理和心理需求。

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