Use of Inorganic Polymer to Improve the Fire Response of Balsa Sandwich Structures

Author:

Giancaspro James123,Balaguru P. N.123,Lyon Richard E.123

Affiliation:

1. Scientist/Engineer, The Boeing Company–Structural Damage Technology, P.O. Box 3707, M/C 03-JL, Seattle, WA 98124-2207.

2. Distinguished Professor, Civil and Environmental Engineering, Rutgers Univ., 623 Bowser Rd., Piscataway, NJ 08854.

3. Program Manager for Fire Research, W. J. Hughes Technical Center, Federal Aviation Administration, Atlantic City, NJ 08405.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Mechanics of Materials,General Materials Science,Building and Construction,Civil and Structural Engineering

Reference12 articles.

1. ASTM. (2001a). “Standard terminology of fire: ASTM Specification E176.” Annual book of ASTM standards Vol. 4.07 West Conshohocken Pa. 651–665.

2. ASTM. (2001b). “Standard test method for density of sandwich core materials: ASTM Test Method C271.” Annual book of ASTM standards Vol. 15.03 West Conshohocken Pa. 1–2.

3. ASTM. (2001c). “Standard test method for heat and visible smoke release rates for materials and products: ASTM Test Method E906.” Annual book of ASTM standards Vol. 4.07 West Conshohocken Pa. 756–781.

4. ASTM. (2001d). “Standard test method for specific optical density of smoke generated by solid materials: ASTM Test Method E662.” Annual book of ASTM standards Vol. 4.07 West Conshohocken Pa. 707–723.

5. Federal Aviation Administration and Dept. of Transportation. (2000). Aircraft materials fire test handbook Office of Aviation Research Washington D.C.

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