Ronen Berkovich

Senior Academic

The beta distribution as a generalized statistical model for adhesion force

Roy Almog, Valery Babin, Ronen Berkovich, Ziv Klausner

The adhesive interaction between colloidal particles and surfaces is a fundamental phenomenon that governs a wide range of processes in natural and engineered systems. Adhesion measurements display variability and complex, often multimodal, or highly non-Gaussian force distributions. However, classical contact models and simple empirical descriptions typically assume uniform contacts and focus on a mean value of the adhesion force. In this study, we address these inconsistencies and introduce a novel approach in which we propose the beta distribution as a generalized adhesion force distribution that encapsulates the full spectrum of adhesion strengths between colloids and surfaces. By applying the beta distribution to adhesion data, we demonstrate that a more accurate and flexible description of surface forces can be implemented without the need to pre-assume a specific statistical distribution. By quantitatively describing the adhesion variability, the proposed model offers improved predictive capability for adhesion-mediated phenomena (such as filtration fouling, coating adhesion, and particle resuspension) under realistic surface conditions for the design of advanced materials and microdevices.

Publication language English
Volume 705
Publication status Published - 01.03.2026

Keywords

Adhesion
Colloids
Force distribution
Nanoscale interactions

ASJC Scopus subject areas

Electronic, Optical and Magnetic Materials
Biomaterials
Surfaces, Coatings and Films
Colloid and Surface Chemistry
Access to Document
10.1016/j.jcis.2025.139451
Other files and links
Link to publication in Scopus