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Release of a cohesively strong, general purpose hot-melt pressure sensitive adhesive from a silicone liner

机译:从硅树脂衬里中释放出一种内聚力强的通用型热熔压敏胶

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摘要

Rubber based block copolymers styrene isoprene styrene (SIS) was used as rubber vehicles for the adhesive system. Wingtack ET (C5 hydrocarbon resin) in addition to rosin ester resin was the tackifier system. Naphthenic oil piasticizer was an additional processing aid of the adhesive system. Hydrophobic fumed nano-silica was used as flow hindering agent for the adhesives. The hotmelt adhesives were mixed in electrically heated sigma blender at 90 °C for 1 h. The adhesive system was coated with ETI Cohesio~(TM) Machine at 177 °C onto Boise facestock at 20 g/m~2, and then laminated with Boise liner which was coated online with UV curable acrylated poly dimethyl siloxane (silicone) at 1.6 g/m~2. Laminates were cut and left to cool down and condition at room temperature for 48 h before testing. Thermally aged and humidity aged release forces were measured at 180° angle. Loop tack and 90° peel from corrugated card board surface were measured at room temperature. Dynamic mechanical thermal analysis was carried out from-100 to 100 °C at 1 Hz and 0.25% strain for formulations 5 and 6 which correspond to unacceptable and acceptable release force build up respectively.
机译:橡胶基嵌段共聚物苯乙烯异戊二烯苯乙烯(SIS)用作粘合剂体系的橡胶载体。除松香酯树脂外,还有Wingtack ET(C5碳氢树脂)是增粘剂体系。环烷油增塑剂是粘合剂体系的另一种加工助剂。使用疏水性气相纳米二氧化硅作为粘合剂的阻流剂。将热熔粘合剂在90°C的电加热sigma混合器中混合1 h。该粘合剂体系在177°C下用ETI Cohesio〜™Machine涂布在Boise面材上,涂布量为20 g / m〜2,然后用Boise衬垫层压,该衬垫在线涂有1.6的紫外线可固化丙烯酸聚二甲基硅氧烷(硅酮)。 g / m〜2。切割层压板,使其冷却,并在测试前在室温下放置48小时。在180°角测量热老化和湿气老化的释放力。在室温下测量毛圈粘性和从瓦楞纸板表面的90°剥离。对于制剂5和6,分别在1Hz和0.25%应变下于-100至100℃进行动态机械热分析,这分别对应于不可接受的和可接受的释放力的建立。

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