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Extrusion 3D-printing of biopolymers and natural fiber-based biocomposites allows for the fabrication of complex structures, ranging from gels for healthcare applications to eco-friendly structural materials. However, traditional polymer…

生物物理 · 物理学 2024-11-26 Israel Kellersztein , Daniel Tish , John Pederson , Martin Bechthold , Chiara Daraio

Hierarchical microstructures are often invoked to explain the high resilience and fracture toughness of biological materials such as bone and nacre. Biomimetic material models inspired by those structural arrangements face the obvious…

材料科学 · 物理学 2022-07-29 Seyyed Ahmad Hosseini , Paolo Moretti , Michael Zaiser

We study the mechanical stiffening behavior in two-dimensional (2D) cross-linked networks of semiflexible biopolymer filaments under simple shear. Filamental constituents immersed in a fluid undergo thermally excited bending motions.…

生物物理 · 物理学 2007-05-23 T. Van Dillen , P. R. Onck , E. Van der Giessen

Entanglement of polymer chains is ubiquitous in elastomers, gels, and biological tissues. While the effects of chain entanglement on elasticity and viscoelasticity of polymer networks have been intensively studied, it remains elusive how…

软凝聚态物质 · 物理学 2021-12-24 Dongchang Zheng , Shaoting Lin , Jiahua Ni , Xuanhe Zhao

We investigate the role of microstructural bridging on the fracture toughness of composite materials. To achieve this, a new computational framework is presented that integrates phase field fracture and cohesive zone models to simulate…

应用物理 · 物理学 2022-01-11 W. Tan , E. Martínez-Pañeda

Entangled networks of stiff biopolymers exhibit complex dynamic response, emerging from the topological constraints that neighboring filaments impose upon each other. We propose a class of reference models for entanglement dynamics of stiff…

软凝聚态物质 · 物理学 2008-06-23 Felix Höfling , Tobias Munk , Erwin Frey , Thomas Franosch

For their resilience and toughness, filamentous entanglements are ubiquitous in both natural and engineered systems across length scales, from polymer-chain- to collagen-networks and from cable-net structures to forest canopies. Textiles…

The mechanics of animal cells is strongly determined by stress fibers, which are contractile filament bundles that form dynamically in response to extracellular cues. Stress fibers allow the cell to adapt its mechanics to environmental…

Entangled matter displays unusual and attractive properties and mechanisms: tensile strength, capabilities for assembly and disassembly, damage tolerance. While some of the attributes and mechanisms share some traits with traditional…

软凝聚态物质 · 物理学 2025-04-09 Saeed Pezeshki , Youhan Sohn , Vivien Fouquet , Francois Barthelat

Self-healing of polymer films often takes place as the molecules diffuse across a damaged region, above their melting temperature. Using molecular dynamics simulations we probe the healing of polymer films and compare the results with those…

软凝聚态物质 · 物理学 2015-06-22 Ting Ge , Mark O. Robbins , Dvora Perahia , Gary S. Grest

Entangled networks are ubiquitous in tissues, polymers, and fabrics. However, their mechanics remain insufficiently understood due to the complexity of the topological constraints at the network level. Here, we develop a mathematical…

软凝聚态物质 · 物理学 2025-09-23 Juntao Huang , Jiabin Liu , Shaoting Lin

Brittle materials fail catastrophically. In consequence of their limited flaw-tolerance, failure occurs by localized fracture and is typically a dynamic process. Recently, experiments on epithelial cell monolayers have revealed that this…

软凝聚态物质 · 物理学 2017-02-07 Alessandro Lucantonio , Giovanni Noselli

Soft materials capable of large inelastic deformation play an essential role in high-performance nacre-inspired architectured materials with a combination of stiffness, strength and toughness. The rigid "building blocks" made from glass or…

软凝聚态物质 · 物理学 2021-02-16 Shibo Zou , Daniel Therriault , Frédérick P. Gosselin

Structural hierarchy, in which materials possess distinct features on multiple length scales, is ubiquitous in nature; diverse biological materials, such as bone, cellulose, and muscle, have as many as ten hierarchical levels. Structural…

软凝聚态物质 · 物理学 2019-06-19 Jonathan Michel , Peter Yunker

Entangled materials offer attractive structural features including tensile strength and large deformations, combined with infinite assembly and disassembly capabilities. How the geometry of individual particles governs entanglement, and in…

软凝聚态物质 · 物理学 2025-10-14 Saeed Pezeshki , Francois Barthelat

We investigate the sliding strength of thin filaments in frictional contact with a translating cylinder, perpendicular to the filaments' axes, in knotted (clove hitch) and unknotted (capstan) configurations. Recent work reported superlinear…

软凝聚态物质 · 物理学 2026-04-09 Javier Sabater , Ji-Sung Park , Jérôme Crassous , Sébastien Neukirch , Pedro M. Reis

Filamentous bio-materials such as fibrin or collagen networks exhibit an enormous stiffening of their elastic moduli upon large deformations. This pronounced nonlinear behavior stems from a significant separation between the stiffnesses…

软凝聚态物质 · 物理学 2019-05-21 Robbie Rens , Carlos Villarroel , Gustavo Düring , Edan Lerner

Entangled matter provides intriguing perspectives in terms of deformation mechanisms, mechanical properties, assembly and disassembly. However, collective entanglement mechanisms are complex, occur over multiple length scales, and they are…

软凝聚态物质 · 物理学 2024-12-10 Youhan Sohn , Saeed Pezeshki , Francois Barthelat

Many biological tissues feature a heterogeneous network of fibers whose tensile and bending rigidity contribute substantially to these tissues' elastic properties. Rigidity percolation has emerged as a important paradigm for relating these…

We present experimental evidence for an anomalous decrease in stiffness in a fiber-reinforced polymer composite because of the embedded fiber. A shell with carbon fiber showed about 20% less stiffness and 100% more strength under…

软凝聚态物质 · 物理学 2025-08-12 Vivek Khatua , Debashish Das , G. K. Ananthasuresh
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