Development of separators for lithium-ion secondary batteries and new advancements in structural control and materials.
S30363
★What is the new structure of the separator? What is the manufacturing method of polyimide separators!? ★Technology for improving functionality using silica glass coating and aramid fibers.
**Lecture Summary** Lithium-ion batteries are increasingly being used in electric vehicles and hybrid electric vehicles, as well as for large-scale applications in smart grids and energy storage. As batteries become larger, there is a growing demand for further improvement in the properties of their components, particularly for separators, which require enhancements in heat resistance, strength, and chemical resistance. This paper introduces the characteristics and applicability of silica glass-coated fibers and aramid fibers as next-generation resin-based separators to replace polyolefin-based separators.
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basic information
Venue: Kawasaki City Industrial Promotion Hall, 10th Floor, Room 1 - 7 minutes on foot from JR Kawasaki Station Date and Time: March 18, 2013 (Monday) 11:00 AM - 4:00 PM [Instructors] Part 1: Fukui University Part 2: Teijin Limited Part 3: KRI Corporation
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After March 4th, the regular price will be 55,650 yen (including tax and text costs) for 2 people from 1 company.
Price range
P2
Delivery Time
P2
Applications/Examples of results
Part 1: Characteristics and Applicability of Next-Generation Resin-Based Separator with Silica Glass Coated Fibers, Aramid Fibers, etc. [11:00-12:15] Instructor: Takashi Ogiwara, Ph.D., Professor, Department of Materials Development Engineering, Graduate School of Engineering, Fukui University [Keywords] 1. Separator 2. Safety 3. Coating Part 2: High-Functionality Technology and Latest Development Trends for Separators Used in Lithium-Ion Secondary Batteries [13:15-14:30] Instructor: Representative, Functional Materials Development Office, New Business Development Group, Teijin Limited [Keywords] 1. Separator 2. Coating 3. High functionality, heat resistance, oxidation resistance, adhesion, wettability Part 3: Potential of LIB Separators Using Electrospinning Method [14:45-16:00] Instructor: Representative, Senior Researcher, Nano Hybrid Research Department, KRI Corporation [Keywords] 1. Electrospinning 2. LIB Separator 3. Prototype Cell Evaluation
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