Dimas D A, Dallas P P, Rekkas D D, Choulis N H
School of Pharmacy, Department of Pharmaceutical Technology, University of Athens, Panepistimiopolis Zografou, Athens 15771, Greece.
AAPS PharmSciTech. 2000 Jun 18;1(2):E16. doi: 10.1208/pt010216.
The effects of coating thickness, type of adhesive, and type and concentration of enhancer on the mechanical properties of two acrylic pressure-sensitive adhesives (PSAs) were investigated using a 2(4) factorial design and an optimization technique. Sixteen formulations containing 0% or 10% of either caprylic acid or methyl laurate in two different PSAs, namely Duro-Tak 87-2196 and Duro-Tak 87-2097, were prepared. The adhesive properties of these laminates were evaluated by applying the 90 degrees Dynamic Adhesive Strength Peel Test (90 degrees DASPT) and 1800 Release Liner Peel Test (180 degrees RLPT). Coating thickness, concentration of enhancer, and type of adhesive did affect the 90 degrees DASPT. For the 180 degrees RLPT, the most significant factors were coating thickness and concentration of enhancer, with a strong interaction observed between the two. Coating thickness and concentration of enhancer were also used to create mathematical models that correlated these factors with the mechanical properties of the PSAs. For this purpose, the optimization technique 3(2) was applied. It was found that the correlation of the above factors can be adequately described with polynomial equations, which can be used for predicting the mechanical properties of the laminates containing the above PSAs and methyl laurate (0%-10%).
采用2(4)析因设计和优化技术,研究了涂层厚度、粘合剂类型以及增强剂类型和浓度对两种丙烯酸类压敏胶粘剂(PSA)力学性能的影响。制备了16种配方,在两种不同的PSA(即Duro-Tak 87-2196和Duro-Tak 87-2097)中分别含有0%或10%的辛酸或月桂酸甲酯。通过进行90度动态胶粘强度剥离试验(90度DASPT)和180度离型纸剥离试验(180度RLPT)来评估这些层压板的胶粘性能。涂层厚度、增强剂浓度和粘合剂类型确实会影响90度DASPT。对于180度RLPT,最显著的因素是涂层厚度和增强剂浓度,二者之间存在强烈的相互作用。涂层厚度和增强剂浓度还被用于建立将这些因素与PSA力学性能相关联的数学模型。为此,应用了3(2)优化技术。结果发现,上述因素之间的相关性可以用多项式方程充分描述,这些方程可用于预测含有上述PSA和月桂酸甲酯(0%-10%)的层压板的力学性能。