Method for preparing composite flexible graphite material
An improved method enables preparation of articles for a variety of applications, including embossing or otherwise shaping to form a variety of articles. A plurality of thin, preferably resin-impregnated, flexible graphite sheets are arranged to form zones in a composite material having a graded density or other characteristic. Variation of properties between zones in the stock material formed is useful for achieving a desired set of properties in the formation of articles such as those useful in electrochemical fuel cells and double-layer capacitors.
1. A material useful as a substrate for an embossed graphite article, the material comprising a composite of a plurality of graphite sheets which comprise compressed particles of exfoliated graphite, wherein at least one graphite sheet of said plurality has a density that differs by more than 5% from the density of a second graphite sheet of said plurality, the density of said one graphite sheet comprising between 0.1 g/cc up to 1.3 g/cc and the density of said second graphite sheet comprising at least 1.4 g/cc to no more than 1.8 g/cc, and further wherein said one graphite sheet comprises a top layer of said composite and said second graphite sheet comprises a bottom layer of said composite.
2. The material according to claim 1 wherein one graphite sheet of said plurality has a property other than density that differs by more than 5% from the property of a second graphite sheet of said plurality wherein said property comprises one selected from the group consisting of: electrical conductivity, thermal conductivity, void condition, area weight, gas permeability, water permeability, particle size, type of graphite starting material, presence and composition of filler materials, degree of graphite intumescence, latent intumescence potential, the presence and composition of intercalation compounds, the presence and composition of residues, resin content and composition, degree of resin drying, degree of resin cure or cross-link.
3. The material according to claim 1 wherein said property comprises resin content.
4. The material according to claim 1 wherein said property comprises void condition.
5. The material according to claim 1 wherein said composite comprises a second material, said second material comprises a nonporous material or a foraminous material.
6. The material according to claim 5 wherein said second material comprises an interlayer of said composite.
7. The material according to claim 1 wherein said difference comprises a value in the range of 10% up to 200%.