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首页> 外文期刊>Fibers and Polymers >Pressure Evaluation of 3D Seamless Knitted Bras and Conventional Wired Bras
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Pressure Evaluation of 3D Seamless Knitted Bras and Conventional Wired Bras

机译:3D无缝针织胸罩和常规有线胸罩的压力评估

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摘要

Seamless knitting for making bras is a novel approach. The fitting evaluation of these products remains unknown and there is limited knowledge about the effects of knitting parameters on the bra tension. This study developed 3 styles of seamless knitted bras with various loop length and elastic yarn tension based on a 2~2 full factorial experimental design with one additional centre level. Therefore, a total of 3 X 5= 15 new seamless bra samples have been knitted. The skin pressure exerted by the new bras was compared with 4 commercial bras including 2 "cut and sewn" wired bras and 2 seamless knitted bras. Six women subjects of breast size 75B* in our newly developed breast sizing system were invited to wear all the bra samples. The skin pressure exerted by the bra was measured by the Novel pliance-X pressure sensors on 11 body positions. The results indicated that newly developed seamless bras showed lower pressure than the commercial bras, but had a considerably higher pressure at the cup base point. The new seamless bras with the largest loop length presented the lowest pressure values. Furthermore, empirical equations were established to predict 2 critical pressure points at "apex" and "side bottom band" from two major knitting parameters. This study provides the new knowledge of seamless knitted bra fitting and the resulted bra pressure, as well as some guidelines for seamless knitted product design and manufacturing.
机译:用于制作胸罩的无缝编织是一种新颖的方法。这些产品的合身性评估仍然未知,并且关于编织参数对胸罩张力的影响的知识还很有限。本研究基于2〜2全因子实验设计和一个附加中心水平,开发了3种样式的无缝编织胸罩,它们具有不同的线圈长度和弹性纱线张力。因此,总共编织了3 X 5 = 15个新的无缝文胸样品。将新型文胸施加的皮肤压力与4种商用文胸进行了比较,其中包括2种“剪裁和缝合”有线文胸和2种无缝针织文胸。我们新开发的乳房定型系统中有六名乳房大小为75B *的女性受试者被邀请穿着所有胸罩样品。通过Novel pliance-X压力传感器在11个身体位置上测量了胸罩施加的皮肤压力。结果表明,新开发的无缝胸罩显示出比市售胸罩低的压力,但在杯基点处具有显着较高的压力。环长度最大的新型无缝文胸的压力值最低。此外,建立了经验方程,以根据两个主要的编织参数来预测“顶点”和“侧底带”的两个临界压力点。这项研究提供了无缝针织胸罩验配的新知识以及由此产生的胸罩压力,以及无缝针织产品设计和制造的一些准则。

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