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Here, fatigue tests were conducted on 2.5D woven composites at an ambient temperature (AT) and an un-ambient temperature (U-AT) to investigate the fatigue characteristics and related damage mechanism.
Transmission electron microscopy (TEM, JEM-2010, JEOL) was used to observe the surface state and structure of the photocatalyst composites at an acceleration voltage of 200 kV.
This work provides a method to greatly improve the thermal, electrical and mechanical performances of graphene/polymer composites at an ultralow graphene content and proves that graphene foam filled poly methyl methacrylate) composite is effective as a thermal interface material (TIM).
Herein, we report that the complexes of single-layer graphene oxide (GO) and oxidized vapor-grown carbon fibers (OVGCFs), with dimensionalities of 2 and 1, respectively, simultaneously improve the strength and toughness of epoxy and multi-scale carbon fiber reinforced composites at an extremely low content (∼0.2 wt%).
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These properties will be beneficial to the design of electromagnetic composites at a desired working frequency.
Figure 7a represents the CV curves of the PEDOT and composites at a scan rate of 50 mV s−1.
Fig. 7b (left) shows the real part of the dielectric constant of BaTiO3/graphene composites at a frequency of 1 kHz.
Figure 2 shows transient absorption measurements for the pure P3HT polymer and P3HT/SWNT composites at a probing wavelength of 600 nm (2 eV).
Open image in new window Fig. 4 CO2 adsorption isotherms of MWCNT/Mg-MOF-74 composites at: a 273 K, b 298 K, and c 313 K Open image in new window Fig. 5 CO2 adsorption isotherms of MWCNT/MIL-100(Fe) composites at: a 273 K, b 298 K, and c 313 K.
The new model applies well to the composites at a large content of highly oriented graphite flakes.
A DX-2700 X-ray Dan Dong Hao Yuan CorporationYuan Corporation, Liaoning, China) was used to analyze the element content of CL-20-based composites at a voltage of 40 kV and a current of 30 mA using Cu-Kα radiation.
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