Forced infiltration of silica beads into densely-packed glass fibre beds for thin composite laminates

Author:

Chan Kim Ye1234,Min Hyunsung5674,Yu Jeongsu5674,Hong Sung Yong8234,Wang Mei1234,Kim Sang Hoon1234,Suhr Jonghwan12348,Lee Young Kwan9234,Kim Kwang J.10111213,Nam Jae-Do12348

Affiliation:

1. Department of Energy Science

2. Sungkyunkwan University

3. Suwon-si

4. Republic of Korea

5. Information Technology & Electronic Materials Research Institute

6. LG Chem, Ltd

7. Yuseong-gu

8. Department of Polymer Science and Engineering

9. Department of Chemical Engineering

10. Department of Mechanical Engineering

11. University of Nevada Las Vegas

12. Las Vegas

13. USA

Abstract

The secondary filler particles were migrated by ultrasonic bubble implosion and microjetting. The migrated fillers facilitated stress transfer among the beads and fibres, and subsequently altered the thermo-mechanical properties to a great extent.

Funder

Korea Evaluation Institute of Industrial Technology

National Research Foundation of Korea

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemical Engineering,General Chemistry

Reference29 articles.

1. G. Gao , Nanostructures and nanomaterials: synthesis, properties and applications, London: Imperial College Press, London, 2004

2. R. F. Gibson , Principles of composite material mechanics, CRC press, Florida, 2011

3. Understanding the effect of nano-modifier addition upon the properties of fibre reinforced laminates

4. Preparation and characterization of modified-clay-reinforced and toughened epoxy-resin nanocomposites

5. Preparation and properties of hybrids of organo-soluble polyimide and montmorillonite with various chemical surface modification methods

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