[Chinese instrument network instrument research and development] A few days ago, the research group of the Superconductivity and Energy New Materials Research Division of the Institute of Electrical Engineering of the Chinese Academy of Sciences Ma Yanwei used a multi-stage graphene composite electrode and an ionic liquid gel polymer electrolyte to develop a 3.5V voltage window for the first time. High energy density flexible solid super capacitor.
Cyclic voltammograms of high voltage flexible solid supercapacitors
Researchers successfully fabricated a flexible solid-state supercapacitor with a wide voltage window by regulating the microstructure of the electrode and introducing an ionic liquid gel electrolyte, effectively increasing the energy density of the device. This research provides an effective strategy for improving the energy density of flexible solid supercapacitors in the future.
The multi-stage graphene composite electrode used in this study is composed of graphene and carbonized polyaniline nanowires. This composite electrode material not only realizes multi-dimensional composition of one-dimensional nanomaterials and two-dimensional nanomaterials, but also has abundant The nano-hole structure facilitates the diffusion and storage of large-sized ionic liquid electrolyte ions inside the material. In addition, the composite material has a large specific surface area of ​​2416 m2/g and an excellent conductivity of 7246 S/m, and is particularly suitable as an electrode material for supercapacitors of organic systems. The flexible solid supercapacitor assembled based on the electrode material and the ionic liquid gel electrolyte film exhibits high specific capacitance (180 F/g) and good rate performance, as well as excellent energy density (75 Wh/kg). After 10,000 cycles of charge and discharge, the capacity can still be maintained above 85%. In addition, by in-situ testing of the capacitor performance under repeated bending conditions, it was found that the flexible solid state supercapacitor exhibited good bending resistance performance, and the capacity can still be maintained at 88% after continuous bending 1000 times. This shows that the flexible solid super capacitor not only has good electrochemical performance but also exhibits excellent mechanical bending resistance.
The study was conducted in collaboration with Prof. Ge Shibo from Southwest Petroleum University. The results of the relevant research were published in the internationally renowned journal "Adv. Funct. Mater, 2017, DOI: 10.1002/adfm.201704463". The above research has received strong support from the National Natural Science Foundation of China, the Beijing Municipal Science and Technology Commission, the Chinese Academy of Sciences Youth Promotion Association and the Institute of Electrician Innovation Talents.
(Original Title: Electrician Research Institute Prepares a Flexible Solid Supercapacitor with High Potential Window)
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Feature:
Both the dynamic load rating and rating life equations contain no difference regarding cage design and material (brass or steel).
Design used for medium size bearings operating at medium to high speeds and featuring high load carrying capacities
Two-piece window type pressed steel cage guided on the inner ring
When the rolling bearing is equipped with a steel cage, hard contaminants might appear as a result of the adhesive wear at the cage-rolling element contact.
Consequently the cage design has evolved to achieve higher and higher bearing load rating capacities, by incorporating more rollers, and lower costs, by replacing brass with cheaper low carbon steel, probably also for reasons connected to the economies of scale pursued by the biggest bearing manufacturers.
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