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DC testing of electrochemical capacitors has been reviewed with emphasis on the test procedures used by the USABC, IEC, and the University of California-Davis (USA).
DC testing of the 5-m cable includes V–I curves for each of the concentric HTS phases, cable heat loads at varying DC currents, liquid nitrogen flow-pressure measurements, and over-current tests.
From DC testing result, we can find that single Zr:SiO2 exhibits no current self-limiting property but GO SiO2/Zr:SiO2, Zr:SiO2/GO SiO2, and GO SiO2/Zr:structureiO2 structure devices own intrinsic current restriction ability.
In this study in vitro DC testing proved to be valuable to screen for immunogenicity of the adjuvant.
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Deformation and failure mechanisms involved in the DC tests of the titanium scaffolds were examined.
The current leads and superconducting MgB2 cable passed high voltage DC test up to 50 kV DC.
Diametral compression (DC) tests were performed to generate stress-strain diagrams that could be used to determine the elastic moduli and yield strengths of the scaffolds.
DC tests showed that the titanium scaffolds with elastic moduli and yield strengths of 0.64 3.47 GPa and 28.67 80 MPa, respectively, could be achieved.
The DC test was performed using a three-electrode electrochemical workstation (Solartron 1280C).
The equipment consists of two basic units: the direct current (DC) test part and the AC interference part.
An inductor of 20 H was also used in the DC test unit to eliminate the influence of AC current on the electrochemical workstation.
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