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首页> 外文期刊>Fibres & textiles in Eastern Europe >Effect of Perforated Polyurethane Foam on Moisture Permeability for Car Seat Comfort
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Effect of Perforated Polyurethane Foam on Moisture Permeability for Car Seat Comfort

机译:多孔聚氨酯泡沫对汽车座椅舒适性的透湿性的影响

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摘要

Polyurethane (PU) foams are the most essential part of a car seat cushion. PU foams are durable and easily moldable according to the shape of the car seat, but they are poorly permeable to moisture. This impermeability of PU foanz causes wetness of the microclimate between the person and car seat and makes it uncomfortable. In this research PU foams with two dfferent thicknesses and three dfferent hole sizes were obtained from industry by the moulding process. The foams were tested for moisture permeability by the standard cup method to determine the effect of the size of the hole on the overall moisture permeability. The foams were further tested with 11 of the most common top layer fabrics to check the effect of the top fabric layer on the overall moisture permeability of the car seat. All the top layers were first tested by means of a sweating guarded hot plate (SGHP) to measure the water vapour resistance (Ret) and then 4 materials with the minimum Ret values were tested with the most permeable foam. The results shows that the perforation of PU foam causes a significant increase in moisture permeability, whereas the top layer with the minimum Ret value decreases the overall moisture permeability and a maximum of 40g/m2 of moisture per hour is obtained with the most permeable foam with the least Ret value of the top layer. This research is an initial work on replacing the car seat with perforated PU foams.
机译:聚氨酯(PU)泡沫是汽车座垫最重要的部分。根据汽车座椅的形状,PU泡沫耐用且易于成型,但透湿性差。 PU泡沫的这种不渗透性会导致人和汽车座椅之间的微气候变湿,并使其不舒服。在这项研究中,通过成型工艺从工业上获得了两种不同厚度和三种不同孔径的聚氨酯泡沫。通过标准杯法测试泡沫的透湿性,以确定孔的尺寸对总体透湿性的影响。用11种最常见的顶层织物对泡沫进行了进一步测试,以检查顶层织物层对汽车座椅总体湿气渗透性的影响。首先使用防汗热板(SGHP)测试所有顶层,以测量耐水蒸气性(Ret),然后使用透气性最高的泡沫测试具有最小Ret值的4种材料。结果表明,PU泡沫的穿孔会导致透湿性显着增加,而具有最小Ret值的顶层会降低总体透湿性,而渗透性最高的泡沫则每小时可获得最大40g / m2的湿气。顶层的最小Ret值。这项研究是用多孔PU泡沫代替汽车座椅的初步工作。

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