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Investigation of important influencing factors on the tensile shear strength of two component polyurethane with distinct foaming behaviour

机译:不同泡沫行为两种组分聚氨酯的拉伸剪切强度的重要影响因素研究

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摘要

In this experimental research study, the tensile shear strengths of gap-filling two-component polyurethane (PUR) bonded lap joint specimens made out of spruce wood were investigated more closely. Based on a general full factorial design, the values of various possible influencing factors were systematically varied. These factors were the ratio of isocyanate to polyol, the amount of the additional water, water available from the wood substrate (wood moisture content), the press temperature and the thickness of the bond line. Two different types of bonding were examined, the foamed and the solid wood bonding. The foam bonded lap joint specimens had gaps with defined bond line thicknesses, allowing the PUR adhesive to foam between the two adherends. Furthermore, also solid wood specimens, where this foaming behaviour was prevented by the absence of predefined cavities, were investigated. Generally, the influences of the factors on the tensile shear strength were different for each type of bonding. The highest strength values of the foam bonded specimens were achieved with a high wood moisture content (21%), a low press temperature (20 degrees C), a high amount of isocyanate ( 85 wt%), an average amount of additional water (5.5%) and a low foam thickness (0.5 mm).
机译:在该实验研究研究中,更接近地研究了由云杉木制成的间隙填充双组分聚氨酯(PUR)键合的连杆标本的拉伸剪切强度。基于一般的完整因子设计,各种可能影响因素的值系统地变化。这些因素是异氰酸酯与多元醇的比例,额外的水量,可从木材基材(木材水分含量)的水,压力温度和粘合线的厚度。检查了两种不同类型的粘合,泡沫和实心的木材粘合。泡沫粘合的旋盖接头标本具有限定的粘合线厚度的间隙,允许PUR粘合剂在两者之间粘附到泡沫之间。此外,还研究了通过不存在预定刻度的固体木质标本,其中通过不存在预定腔。通常,对各种键合的抗拉剪切强度的因素的影响是不同的。通过高木质水分含量(21%),低压温度(20℃),大量异氰酸酯(& 85wt%),实现了最高强度值的泡沫键合标本的最高强度值,平均额外量水(5.5%)和低泡沫厚度(0.5mm)。

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