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A New Invention Method to Determine the Reduction Factor for Low Fabric Tension Properties for Head Garment Fabrication

机译:确定用于头服装制造的低织物张力性能的降低因子的新发明方法

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This paper proposes a new method to determine the reduction factor for producing a head garment with specified targeted pressure output. Pressure garment fabric mostly supplied to the local hospitals with no information of the material properties and the fabrication method generally used a single reduction factor at various body segments. Reduction factor defined as the percentage of reducing the garment size from the original circumference of the body part which contributes to the compression. The objective of this study is to compare the fabrication method of head garment using reduction factor equation from previous research with the new proposed method. The equation to predict the reduction factor requires the parameter of the fabric tension which is obtained from tensile test and radius of curvature of the human body parts. In the new proposed method, a 3D scanning was used for data acquisition to obtain the geometry of the head area. The pressure outputs are measured by a pressure measurement system developed from Flexiforce sensor and Arduino circuit board. By using the equation, the result shows the calculated reduction factor produced an extremely tight head garment compared to the conducted experiments which manage to produce an adequate reduction factor with a targeted pressure output of 20mmHg. The result of the experiment indicates that the reduction factor ranging from 17% to 23% compared to the equation which produces 20% to 47% of reduction factor. As an additional, the proposed experimental method can be used for different type of pressure garment fabrics in order to obtain the relationship between the reduction factor and the circumference of the body parts.
机译:本文提出了一种新的方法来确定生产具有指定目标压力输出的头饰的折减系数。压力服装面料主要提供给当地医院,而没有材料特性的信息,制造方法通常在各个身体部位使用单一的折减系数。缩小系数定义为从衣服的原始圆周减小衣服尺寸的百分比,这有助于压缩。这项研究的目的是将先前研究中使用减少因子方程式的头饰制造方法与新提出的方法进行比较。预测减小因子的方程式需要织物张力的参数,该参数是从拉伸试验和人体部位的曲率半径获得的。在新提出的方法中,将3D扫描用于数据采集以获得头部区域的几何形状。压力输出由Flexiforce传感器和Arduino电路板开发的压力测量系统测量。通过使用该方程式,结果表明,与进行的实验相比,所计算出的减少系数可生产出极为紧身的头部服装,从而可以在目标压力输出为20mmHg的情况下产生足够的减少系数。实验结果表明,与产生20%到47%的减少因子的方程式相比,减少率在17%到23%的范围内。另外,所提出的实验方法可以用于不同类型的压力服装织物,以便获得减小因子与身体部位的周长之间的关系。

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