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composite materials
Nanocarbon-poly(methyl methacrylate) composite materials
      
The composite latex particles and composite materials were determined and characterized using a laser particle size analyzer, transmission electron microscopy or scanning electron microscopy.
      
When the general mechanical properties of the composite materials increase, the thermal stabilities decrease a little.
      
The analysis of the electromagnetic characteristics of composite materials with negative effective permittivity
      
A new method based on the finite difference time domain (FDTD) method is presented to numerically analyze the transmission and reflection characteristic of composite materials with negative effective permittivity.
      
The feasibility of analyzing the composite materials using the FDTD method is validated.
      
It is useful for the design and application of the composite materials.
      
Under a laser-induced ultra-high pressure and high strain rate, structural steels and composite materials undergo plastic deformation.
      
Calculation of the Effective Properties of Porous and Composite Materials
      
Criteria for Optimization of Processing and Fabrication of Polymer Composite Materials
      
The reaction formation of ZrB2- and SiO2-based composite materials and coatings upon heat treatment of the initial components in open air is investigated.
      
The reaction formation of TiB2-and SiO2-based composite materials and coatings upon heat treatment of initial components in air is investigated.
      
Hydroxyapatite-collagen and fluorohydroxyapatite-collagen composite materials are synthesized using directed diffusion of ions from solutions on collagen fibers.
      
According to the electron microscopic data, the composite materials involve salt nanocrystals (less than 1 μm in size), which are uniformly distributed between collagen fibers.
      
Manufacture of high-strength composite materials from prepregs prepared by radiation processing
      
Scientific principles of the manufacture of high-strength heat-resistant polymer composite materials with the successive ionizing-radiation and heat treatment (via the step of long-lived prepregs) were developed.
      
Simulation of the Thermal State of Composite Materials
      
A general approach to determining the thermal state of composite materials is suggested.
      
Results are given of numerical simulation of the heating of decomposing polymer-based composite materials in a high-temperature gas flow.
      
The characteristics of the new composite materials based on various gels saturated with scintillating solutions are presented.
      
 

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