A three-dimensional (3D) needled carbon/carbon (C/C) preform was achieved after one cycle of precursor infiltration-pyrolysis. The mixture of phenolic resin and 8 vol% graphite with an average particle size of 2.5 m was employed as the carbon precursor. The C/SiC composite, made from the as-obtained
Dynamic mechanical properties of polycrystalline graphites and a 2D-C/C composite by plate impact
β Scribed by Keisuke Fujii; Eiichi Yasuda; Yasuhiro Tanabe
- Publisher
- Elsevier Science
- Year
- 2001
- Tongue
- English
- Weight
- 320 KB
- Volume
- 25
- Category
- Article
- ISSN
- 0734-743X
No coin nor oath required. For personal study only.
β¦ Synopsis
In order to obtain dynamic mechanical properties of carbon materials, i.e., two kinds of polycrystalline graphites and a C/C composite, plate impact experiments with simultaneous three poly vinylidene di#uoride (PVDF) stress gauges were conducted using a one-stage powder gun system. By this measurement system, Hugoniot curves, rarefaction wave velocities and stress}strain (S}S) curves could be obtained. The Hugoniot curves were valid, rarefaction wave velocities increased with the plateau stress in the specimen, and the slope of the S}S curve was consistent with that of the Hugoniot curve. These dynamic mechanical properties of the carbon materials are useful not only for the understanding of the dynamic behavior but also for impact fracture behavior.
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