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相关论文: Failure of Mineralized Collagen Microfibrils Using…

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Natural hard composites like human bone possess a combination of strength and toughness that exceeds that of their constituents and of many engineered composites. This augmentation is attributed to their complex hierarchical structure,…

Mineralized collagen microfibrils in human bone provide its mechanical properties (stiffness, elasticity, ductility, energy dissipation and strength). However, detailed 3D finite element models describing the mechanical behaviour of the…

组织与器官 · 定量生物学 2012-03-01 Ridha Hambli , Abdelwahed Barkaoui

The mineralized collagen fibril is the main building block of hard tissues and it directly affects the macroscopic mechanics of biological tissues such as bone. The mechanical behavior of the fibril itself is determined by its structure:…

组织与器官 · 定量生物学 2024-03-19 Julia Kamml , Claire Acevedo , David Kammer

Collagen is a key structural protein in the human body, which undergoes mineralization during the formation of hard tissues. Earlier studies have described the mechanical behavior of bone at different scales highlighting material features…

应用物理 · 物理学 2021-07-02 Mario Milazzo , Gang Seob Jung , Serena Danti , Markus J. Buehler

Complexity and heterogeneity of bone tissue require a multiscale modelling to understand their mechanical behaviour and their remodelling mechanism. Human cortical bone structure consists of six structural scale levels which are the…

医学物理 · 物理学 2011-12-07 Abdelwahed Barkaoui , Ridha Hambli

Bone is mineralized tissue constituting the skeletal system, supporting and protecting body organs and tissues. At the molecular level, mineralized collagen fibril is the basic building block of bone tissue, and hence, understanding bone…

原子与分子团簇 · 物理学 2021-06-16 Mario Milazzo , Alessio David , Gang Seob Jung , Serena Danti , Markus J. Buehler

The aim of this work is to develop a 3D finite elements model to study the nanomechanical behaviour of mineralized collagen microfibrils, which consists of three phases, (i) collagen phase formed by five tropocollagen (TC) molecules linked…

医学物理 · 物理学 2011-12-06 Abdelwahed Barkaoui , Ridha Hambli

Sacrificial bonds and hidden length (SBHL) in structural molecules provide a mechanism for energy dissipation at the nanoscale. It is hypothesized that their presence leads to greater fracture toughness than what is observed in materials…

软凝聚态物质 · 物理学 2014-08-05 Wenyi Wang , Ahmed Elbanna

Modeling of cancellous bone has important applications in the detection and treatment of fatigue fractures and diseases like osteoporosis. In this paper, we present a fully coupled multiscale approach considering mechanical, electrical and…

计算工程、金融与科学 · 计算机科学 2021-06-14 Mischa Blaszczyk , Klaus Hackl

Finite element models of the thorax are under development to assist vehicle safety researchers with the design of countermeasures such as advanced restrain systems. Computational models have become more refined with increasing geometrical…

The complexity and heterogeneity of bone tissue require a multiscale modelling to understand its mechanical behaviour and its remodelling mechanisms. In this paper, a novel multiscale hierarchical approach including microfibril scale based…

医学物理 · 物理学 2014-03-13 Abdelwahed Barkaoui , Abdessalem Chamekh , Merzouki Tarek , Ridha Hambli , Mkaddem Ali

Collagen fibrils are the most important structural component of tendons. Their crimped structure and parallel arrangement within the tendon lead to a distinctive non-linear stress-strain curve when a tendon is stretched. Microstructural…

组织与器官 · 定量生物学 2021-03-09 James Gregory , Tom Shearer , Andrew L. Hazel

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

This paper describes a two-dimensional (2D) finite element simulation for fracture and fatigue behaviours of pure alumina microstructures such as those found at hip prostheses. Finite element models are developed using actual Al2O3…

医学物理 · 物理学 2012-04-03 Kyungmok Kim , Bernard Forest , Jean Géringer

Finite element analysis is one of the most used tool for studying femoral neck fracture. Nerveless, consensus concerning either the choice of material characteristics, damage law and /or geometric models (linear on nonlinear) still remains…

We study the fatigue fracture of disordered materials by means of computer simulations of a discrete element model. We extend a two-dimensional fracture model to capture the microscopic mechanisms relevant for fatigue, and we simulate the…

无序系统与神经网络 · 物理学 2009-11-11 H. A. Carmona , F. Kun , J. S. Andrade , H. J. Herrmann

Composite structures must endure a great variety of multi-axial stress states during their lifespan while guaranteeing their structural integrity and functional performance. Understanding the fatigue behavior of these materials, especially…

应用物理 · 物理学 2019-07-25 Yao Qiao , Antonio Alessandro Deleo , Marco Salviato

This paper presents two main results. The first result indicates that in materials with broadly distributed microscopic heterogeneities, the fracture strength distribution corresponding to the peak load of the material response does not…

材料科学 · 物理学 2015-06-25 Phani Kumar V. V. Nukala , Srdjan Simunovic

While crack nucleation and propagation in the brittle or quasi-brittle regime can be predicted via variational or material-force-based phase field fracture models, these models often assume that the underlying elastic response of the…

计算工程、金融与科学 · 计算机科学 2020-08-13 Hyoung Suk Suh , WaiChing Sun , Devin O'Connor

Quasi-brittle behavior where macroscopic failure is preceded by stable damaging and intensive cracking activity is a desired feature of materials because it makes fracture predictable. Based on a fiber bundle model with global load sharing…

材料科学 · 物理学 2016-04-07 Ehud D. Karpas , Ferenc Kun
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