The Cohesion Glyph: A Recursive Framework for Structural Integrity, Rupture, and Renewal in Living and Mechanical Systems

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1. Verfasser: Gilbert, Dexter
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Gilbert, Dexter
author_facet Gilbert, Dexter
contents <p>This paper presents the Cohesion Glyph, a recursive and multi-scale framework designed<br>to model the lifecycle of structural coherence in both biological and mechanical systems.<br>The framework establishes a set of interlinked operators: the Cohesion Constant,<br>Saturation Point, Lifespan Function, Elasticity Gradient Map, and Recovery Loop. By<br>integrating these elements, the Cohesion Glyph provides a unified logic for growth, rupture,<br>and regeneration, all within a single symbolic topology. Validation is demonstrated through<br>applications in soft robotics and mechanobiology, where the framework supports<br>predictive modeling of failure, adaptive tensioning, and regenerative design. Importantly,<br>the glyph functions as a recursive operator—encoding the logic of coherence across<br>nested scales—and is not intended as a metaphor. This work bridges the divide between<br>living tissues and engineered machines, serving as a canonical reference for systems that<br>are designed to endure, adapt, and heal.</p>
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spellingShingle The Cohesion Glyph: A Recursive Framework for Structural Integrity, Rupture, and Renewal in Living and Mechanical Systems
Gilbert, Dexter
Physics
Physics
Mathematical physics
Physics/methods
Physics/standards
Particle physics
Quantum physics
Theoretical physics
Health Physics
Ontology
Engineering
Engineering
Electrical engineering, electronic engineering, information engineering
Materials engineering
Electronic engineering
Mechanical engineering
Aerospace engineering
<p>This paper presents the Cohesion Glyph, a recursive and multi-scale framework designed<br>to model the lifecycle of structural coherence in both biological and mechanical systems.<br>The framework establishes a set of interlinked operators: the Cohesion Constant,<br>Saturation Point, Lifespan Function, Elasticity Gradient Map, and Recovery Loop. By<br>integrating these elements, the Cohesion Glyph provides a unified logic for growth, rupture,<br>and regeneration, all within a single symbolic topology. Validation is demonstrated through<br>applications in soft robotics and mechanobiology, where the framework supports<br>predictive modeling of failure, adaptive tensioning, and regenerative design. Importantly,<br>the glyph functions as a recursive operator—encoding the logic of coherence across<br>nested scales—and is not intended as a metaphor. This work bridges the divide between<br>living tissues and engineered machines, serving as a canonical reference for systems that<br>are designed to endure, adapt, and heal.</p>
title The Cohesion Glyph: A Recursive Framework for Structural Integrity, Rupture, and Renewal in Living and Mechanical Systems
topic Physics
Physics
Mathematical physics
Physics/methods
Physics/standards
Particle physics
Quantum physics
Theoretical physics
Health Physics
Ontology
Engineering
Engineering
Electrical engineering, electronic engineering, information engineering
Materials engineering
Electronic engineering
Mechanical engineering
Aerospace engineering
url https://doi.org/10.5281/zenodo.18275116