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Micromechanical Properties Investigation of Rabbit Carotid Aneurysms by Atomic Force Microscopy
The lack of research on the micromechanical properties of cerebral aneurysms limits observing the mechanism of aneurysm rupture. The aim of this... -
The influence of micromechanical parameters considering the interfacial phase on effective elastic properties of microencapsulated self-healing composite
The microencapsulated self-healing composite (SHC) has received much attention for their ability to automatically detect and repair cracks. However,...
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Stability analysis of functionally graded plates considering different micromechanical models
Functionally Graded Materials (FGM) are a new class of composites that present a continuously varying composition. Once the constituents and the...
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Micromechanical asymptotic homogenization modeling of glass fiber-reinforced cement-based material incorporating HGB
Glass fiber-reinforced cement-based material incorporating hollow glass beads (GFRC-HGB) is an innovative lightweight building material with...
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Micromechanical based model for predicting aged rubber fracture properties
Environmental aging induces a slow and irreversible alteration of the rubber material’s macromolecular network. This alteration is triggered by two...
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Micromechanical Properties Assessment of Slag Blended Cements Using Nanoindentation and Scanning Electron Microscopy
Sustainability concerns related to the CO2 emissions of Portland cement production led to the exploitation of some by-products as replacement... -
Influence of Hydration on the Micromechanical Properties of Silica Spicules from the Venus Flower Basket (Euplectella Aspergillum)
The spicules of the deep-sea sponge Euplectella aspergillum show exceptional mechanical properties due to their unique layered structure. In the...
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Synergistic effect of carbon nanotube/graphene nanoplatelet hybrids on the elastic and viscoelastic properties of polymer nanocomposites: finite element micromechanical modeling
A micromechanics procedure performed by the finite element method (FEM) was developed for the sake of examining the synergistic effects of carbon...
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Estimation of Effective Mechanical Properties of Plain Woven Composites Using Direction-Selective Micromechanical Models
The directional elastic properties of composite yarn calculated by micromechanical models depend on the type of the models directionally adopted, and...
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On a Novel Micromechanical Modeling of the Elastic Behavior of Nanocomposites
This work aims to the introduction of a new micromechanical modeling of the elastic behavior of nanocomposite materials with coated nanoparticles.... -
3D computational grains with embedded fibers for the direct micromechanical modeling of fiber composites
For the integrated design of composite material and structures, it is essential to have an effective micromechanical numerical tool to link...
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Exceptional points enhance sensing in silicon micromechanical resonators
Exceptional points (EPs) have recently emerged as a new method for engineering the response of open physical systems, that is, systems that interact...
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A micromechanical model for the effective properties of two-phase magnetoelectric composites
A micromechanical model based on the bridging theory is proposed for predicting the effective coefficients of two-phase magnetoelectric composites....
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A micromechanical investigation of diagenetically-induced changes to the anisotropic elastic properties of calcareous mudstones
Microscale diagenetic changes that occur during burial exert a profound influence on the elastic and mechanical properties of sediments—but are...
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Establishment and simplification of micromechanical material model for viscoelastic woven fabric/hybrid composite
The present research focuses on proposing a novel theoretical micromechanical model (TMM) designed to derive the frequency-dependent storage and loss...
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Micromechanical finite element analysis of Young’s modulus, yield strength and thermal expansion coefficient of nano-sized ceramic particle/metal matrix nanocomposites
The micromechanical finite element method (FEM) is used to investigate Young’s modulus, yield strength and coefficient of thermal expansion (CTE) of...
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Wear and micromechanical performance of novel mono/bi-layered PVD-coated WC tools in high-speed turning of Ti-5Al-5V-5Mo-3Cr alloy
The Ti-5Al-5V-5Mo-3Cr alloy is utilized in the aerospace, biomedical, and military industries for its exceptional thermomechanical properties....
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Orthogonal Cutting of UD-CFRP Using Micromechanical Modeling
The specific properties of composite materials have attracted the attention of researchers and manufacturers in several fields. Understanding the... -
Study on the micromechanical and crack characteristics of granite based on nanoindentation test and discrete element method
Exploring the mechanical properties and crack characteristics of granite at the grain scale is of greatly significant to understand brittle failures,...
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Micromechanical simulation of thermal expansion, elastic stiffness and piezoelectric constants of graphene/unidirectional BaTiO3 fiber reinforced epoxy hybrid nanocomposites
One mechanism that is expected to play a key role in the enhanced properties of fiber-reinforced composites is adding nano-scale fillers as the...