首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Tack and fracture energy of tackified SIS (styrene-isoprene-styrene)-based hot-melt pressure sensitive adhesives (HMPSAs)
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Tack and fracture energy of tackified SIS (styrene-isoprene-styrene)-based hot-melt pressure sensitive adhesives (HMPSAs)

机译:增粘型SIS(苯乙烯-异戊二烯-苯乙烯)基热熔压敏胶(HMPSA)的粘性和断裂能

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The relationship between probe tack and fracture energy for SIS (styrene-isoprene-styrene)-based HMPSAs (hot-melt pressure-sensitive adhesives) made using various SIS and tackifiers was investigated.Generally,HMPSAs made using low-T_g tackifiers have higher probe tack than using high-T_g tackifiers,except in the case of Sukorez SU 100.In the case of Kraton blends,blends made using Quintone U 185,Hikorez A 1100S and Sukorez SU 100 exhibit a maximum probe tack at 60 wt% tackifier content,while the blends made using GA-100 and Regalite R 125 exhibit a maximum probe tack at 40 wt% tackifier content.In the case of the Vector blends,similar results are observed,except that those HMPSAs made using Hikorez A 1100S and Sukorez SU 100 have a maximum probe tack at 50 wt% tackifier content.Because tri-bock SIS (Vector 4111) has a higher cohesion than the diblock containing SIS (Kraton D 1107),Vector 4111/tackifier blends exhibit a maximum tack at higher tackifier contents than Kraton D 1107/tackifier blends.In terms of the fracture energy of blends,similar results were observed.Generally,the fracture energy (w) of the SIS-based HMPSAs was closely related to the maximum probe tack.Because of the effects of failure mode on fracture energy and probe tack,there is some variation in the fracture energy between the different blends,because of their different failure modes.
机译:研究了使用各种SIS和增粘剂制造的基于SIS(苯乙烯-异戊二烯-苯乙烯)的HMPSA(热熔压敏胶)的探针粘性与断裂能之间的关系。通常,使用低T_g增粘剂制造的HMPSA具有更高的探针与使用高T_g增粘剂相比,增粘剂除外(对于Sukorez SU 100而言除外)。对于科腾共混物,使用Quintone U 185,Hikorez A 1100S和Sukorez SU 100制成的混合物在增粘剂含量为60 wt%时显示出最大的探针增粘性,而使用GA-100和Regalite R 125制成的共混物在增粘剂含量为40 wt%时表现出最大的探针粘性。在使用Vector共混物的情况下,除了使用Hikorez A 1100S和Sukorez SU 100制造的HMPSA以外,观察到的结果相似。在增粘剂含量为50 wt%时具有最大的探针粘性。由于三块SIS(Vector 4111)的内聚性高于含SIS的二嵌段(Kraton D 1107),Vector 4111 /增粘剂混合物在高于增粘剂含量的情况下表现出最大粘性科腾D 1107 / tackif从共混物的断裂能方面观察到相似的结果。通常,基于SIS的HMPSA的断裂能(w)与最大探针粘性密切相关。由于破坏模式对断裂能的影响和探针粘性,由于不同的破坏模式,不同混合物之间的断裂能会有所不同。

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