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Commercial composites containing a higher percentage of charged particles per volume tend to produce higher stress values.
This paper investigates the ultimate tensile failure strength of laminated composites containing a central circular hole.
Both electrical conductivity and storage modulus improve in composites containing a 1 2 clay CB (wt/wt) ratio.
We present an analytical micromechanical model designed to simulate the tensile stress strain behaviour and failure of damaging composites containing a high volume fraction of reinforcing particles.
The Zr map, Zn map and a combined Zr and Zn map, as shown in Figure 2b,c, and d, demonstrate that most of the elongated particles were composites containing a Zn-rich part and a Zr-rich segment.
This paper describes the fabrication of high density (ρ ∼ 1.75 g/cc) composites containing a hybrid (carbon and boron nitride), or complete boron nitride matrix.
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Here, we systematically study the influence of the polymer properties on the mechanics of nacre-like composites containing an intermediate fraction of mineral phase (57 vol%).
The EDS data demonstrated that the composites contain a certain amount of Au (or Pt) element.
The MnO/RGO composites contain a uniform RGO coating and possess a high specific surface area of up to 42.4 m2 g−1.
The composite is much more conductive than the most conductive cement matrix composite containing a conductive admixture.
A novel Mg42Li23Cu25Y10 nanostructure-bcc ductile phase composite containing a Mg2Cu phase and amorphous zones has been obtained by injection casting.
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