Department of Biomedical Engineering and Mechanics, Virginia Tech, Blacksburg, VA 24061, USA.
Soft Matter. 2017 Oct 25;13(41):7529-7536. doi: 10.1039/c7sm01098b.
A generalized scaling law, based on the classical fracture mechanics approach, is developed to predict the bond strength of adhesive systems. The proposed scaling relationship depends on the rate of change of debond area with compliance, rather than the ratio of area to compliance. This distinction can have a profound impact on the expected bond strength of systems, particularly when the failure mechanism changes or the compliance of the load train increases. Based on the classical fracture mechanics approach for rate-independent materials, the load train compliance should not affect the force capacity of the adhesive system, whereas when the area to compliance ratio is used as the scaling parameter, it directly influences the bond strength, making it necessary to distinguish compliance contributions. To verify the scaling relationship, single lap shear tests were performed for a given pressure sensitive adhesive (PSA) tape specimens with different bond areas, number of backing layers, and load train compliance. The shear lag model was used to derive closed-form relationships for the system compliance and its derivative with respect to the debond area. Digital image correlation (DIC) is implemented to verify the non-uniform shear stress distribution obtained from the shear lag model in a lap shear geometry. The results obtained from this approach could lead to a better understanding of the relationship between bond strength and the geometry and mechanical properties of adhesive systems.
基于经典断裂力学方法,提出了一种广义的标度律来预测胶接体系的粘结强度。所提出的标度关系取决于与柔度相关的脱粘面积变化率,而不是面积与柔度的比值。这种区别可能对系统的预期粘结强度产生深远的影响,特别是在失效机制发生变化或载荷传递路径的柔度增加时。基于对率无关材料的经典断裂力学方法,载荷传递路径的柔度不应影响胶接体系的承载能力,而当使用面积与柔度比作为标度参数时,它直接影响粘结强度,因此需要区分柔度的贡献。为了验证标度关系,对具有不同粘结面积、背衬层数量和载荷传递路径柔度的给定压敏胶(PSA)带试样进行了单搭接剪切试验。采用剪切滞后模型推导了系统柔度及其对脱粘面积导数的闭合形式关系。实施数字图像相关(DIC)以验证在搭接剪切几何形状中从剪切滞后模型获得的非均匀剪切应力分布。这种方法得到的结果可以更好地理解粘结强度与胶接体系的几何形状和力学性能之间的关系。