H6CNF is a ceramic composite material that likely combines carbon nanofibers (CNF) with a ceramic matrix, designed to leverage the strength and electrical properties of nanofibers within a ceramic binder system. This material class is typically investigated in research and advanced manufacturing contexts for applications requiring lightweight structures with enhanced mechanical performance and potential thermal or electrical functionality. The low density relative to traditional ceramics makes it particularly attractive for weight-sensitive applications where conventional ceramic brittleness needs to be mitigated by reinforcement.
Compliance & Regulations
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Bulk Modulus(K) | 3,601.3 | ksi | — | ||
Poisson's Ratio(ν) | 0.3700 | - | — | ||
Shear Modulus(G) | 1,055.9 | ksi | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Density(ρ) | 0.04050 | lb/in³ | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Band Gap(Eg) | 6.163 | eV | — | ||
Dielectric Constant (Relative Permittivity)(εr) | 4.237 | - | — | ||
Magnetic Moment(μB) | 0.000 | µB | — | ||
Piezoelectric Modulus(eij)2 entries | 0.1548 | C/m² | — | ||
| ↳ | 0.1019 | C/m² | — | ||
Piezoelectric Stress Tensor(eij) | Matrix (redacted) | C/m² | — | ||
Seebeck Coefficient(S) | -230.1 | µV/K | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Energy Above Hull(ΔEhull) | 0.06420 | eV/atom | — | ||
Formation Energy(ΔHf) | -0.5825 | eV/atom | — |