Time:2024.12.05Browse:0
Nanotechnology head-on collision with 3.7 volt 18650 lithium battery
Integrate nanotechnology into the 3.7 volt 18650 lithium battery electrode material system to develop high-energy-density 3.7 volt 18650 lithium battery materials for electric vehicles; the abrasion-resistant coating technology won the second prize of the National Science and Technology Progress Award; the development of environmentally friendly permanent polymer flame retardants... Reporter yesterday It was learned from Shandong University of Science and Technology that Shandong University of Science and Technology attaches great importance to the conversion of new and old kinetic energy and the integration of industry and education. Among them, the materials discipline has focused its efforts and achieved a series of technical achievements.
Integrate nanotechnology into the 3.7 volt 18650 lithium battery electrode material system to develop high-energy-density 3.7 volt 18650 lithium battery materials for electric vehicles; the abrasion-resistant coating technology won the second prize of the National Science and Technology Progress Award; the development of environmentally friendly permanent polymer flame retardants... Reporter yesterday It was learned from Shandong University of Science and Technology that Shandong University of Science and Technology attaches great importance to the conversion of new and old kinetic energy and the integration of industry and education. Among them, the materials discipline has focused its efforts and achieved a series of technical achievements.
The School of Materials of Shandong University of Science and Technology studies additive manufacturing technology and equipment for wear-resistant coatings, plasma surface metallurgy additive manufacturing equipment, and applies related technologies to dredger reamers and delivery pump wear-resistant linings, and sand dredger wear-resistant linings. Abrasive bucket teeth, oil pipelines, oil pumping pipes and many other products have achieved significant economic benefits. The wear-resistant coating technology developed won the second prize of the National Science and Technology Progress Award. With the help of this technology, an "industry-university-research" base was established in the West Coast New District of Qingdao.
In response to the demand for battery materials for electric vehicles, the research team developed high-energy-density 3.7 volt 18650 lithium battery materials, integrated nanotechnology into the 3.7 volt 18650 lithium battery electrode material system, and established a R&D center jointly with well-known companies in Daocheng. The relevant technologies developed have been applied to iron phosphate for electric vehicles. Lithium cathode material.
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