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首页> 外文期刊>European Polymer Journal >UV-curing behavior and adhesion performance of polymeric photoinitiators blended with hydrogenated rosin epoxy methacrylate for UV-crosslinkable acrylic pressure sensitive adhesives
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UV-curing behavior and adhesion performance of polymeric photoinitiators blended with hydrogenated rosin epoxy methacrylate for UV-crosslinkable acrylic pressure sensitive adhesives

机译:聚合光引发剂与氢化松香环氧甲基丙烯酸酯共混的紫外线固化性能和粘合性能,用于可紫外线交联的丙烯酸压敏胶

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UV-crosslinkable polyacrylates were synthesized for use as pressure sensitive adhesives (PSAs). These polyacrylates acted as polymeric photoinitiators due to the benzophenone incorporated into their backbones. Hydrogenated rosin epoxy methacrylate (HREM; based on hydrogenated rosin and glycidyl methacrylate) was also synthesized as a tackifier, and blended at different levels with the synthesized, UV-crosslinkable polyacrylates for use as PSAs. The effect of the new tackifier, HREM, on the properties of the UV-crosslinkable PSAs was examined in comparison with the properties exhibited by PSA/hydrogenated rosin blends. The characteristics of these PSA/tackifier blends were examined by Fourier-transform infrared (FTIR) spectroscopy, differential scanning calorimetry (DSC) and an advanced rheometric expansion system (ARES). In addition, the adhesion performance of the PSA blends was investigated using probe tack tests. DSC and ARES revealed all the PSA blends with HREM or hydrogenated rosin to be miscible at the molecular level. The glass transition temperature (T-g) of HREM was -25.6 degrees C, which is lower than that of other commercially available rosin tackifiers. FTIR revealed changes in the relative concentration of benzophenone groups in the PSAs at 1580 cm(-1), which demonstrated that the crosslinking efficiency is proportional to the benzophenone content and UV dose, but decreases with increasing hydrogenated rosin content. However, the reduced crosslinking reaction efficiency was improved in the PSA/HREM blends due to the low Tg of HREM which only slightly increased the Tg of the PSA blends. Moreover, the relative initial decrease in the probe tack of the PSA/HREM blends was lower than that of the PSA/hydrogenated rosin blends after UV irradiation. (c) 2008 Elsevier Ltd. All rights reserved.
机译:合成了可紫外线交联的聚丙烯酸酯,用作压敏胶(PSA)。这些聚丙烯酸酯由于并入其主链中的二苯甲酮而充当聚合光引发剂。还合成了氢化松香环氧甲基丙烯酸酯(HREM;基于氢化松香和甲基丙烯酸缩水甘油酯)作为增粘剂,并以不同的含量与合成的可紫外线交联的聚丙烯酸酯共混用作PSA。与PSA /氢化松香共混物表现出的性能相比,研究了新型增粘剂HREM对可紫外线交联的PSA性能的影响。通过傅立叶变换红外(FTIR)光谱,差示扫描量热法(DSC)和先进的流变膨胀系统(ARES)检查了这些PSA /增粘剂混合物的特性。另外,使用探针粘性测试研究了PSA共混物的粘合性能。 DSC和ARES表明,所有PSA与HREM或氢化松香的共混物在分子水平上都是可混溶的。 HREM的玻璃化转变温度(T-g)为-25.6℃,低于其他市售松香增粘剂的玻璃化转变温度。 FTIR揭示了PSA中1580 cm(-1)处二苯甲酮基团相对浓度的变化,这表明交联效率与二苯甲酮含量和UV剂量成正比,但随着氢化松香含量的增加而降低。但是,由于HREM的Tg低,在PSA / HREM共混物中降低的交联反应效率得到改善,这仅稍微增加了PSA共混物的Tg。而且,PSA / HREM混合物的探针粘性的相对初始降低低于UV照射后的PSA /氢化松香混合物的相对粘性。 (c)2008 Elsevier Ltd.保留所有权利。

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