Graphite containing article
Cookware and other heating articles are included herein. The article may have a substrate forming a bottom surface of the cookware. The article may also have a graphite intermediate layer and cooking/heating surface disposed above the intermediate layers. The graphite layer may have one or more of the following properties: (1) a density of at least 0.64 g/cm 3 ; (2) a water pick-up of a less than 30% by weight after a 2.5 hour soak in water at ambient conditions; (3) a Taber stiffness in the machine direction at least 25% higher than in the transverse direction; and (4) a sulfur content of less than 350 ppm and any combination thereof.
1. Cookware comprising:
a substrate comprising a bottom surface of the cookware;
an intermediate layer comprising a layer of graphite having a sulfur content of less than 350 ppm; and
a cooking surface disposed above the intermediate layer,
wherein the layer of graphite comprises at least one of a sheet of graphitized polymer, a sheet of compressed particles of exfoliated graphite, a mass of compressed particles of exfoliated graphite, or combinations thereof.
2. The cookware of claim 1 wherein the graphite has a density of at least 0.64 g/cm 3 .
3. The cookware of claim 2 wherein the sulfur content comprises no more than 200 ppm.
4. The cookware of claim 2 further comprising insulation disposed between the substrate and the intermediate layer.
5. The cookware of claim 2 wherein an amount of the graphite in the layer comprises a sufficient amount to generate heat when exposed to a magnetic field of a frequency of at least 15 KHz.
6. The cookware of claim 1 wherein the substrate comprises an insufficient amount of ferromagnetic material to cook by induction.
7. The cookware of claim 1 wherein a surface area of the graphite layer comprises at least seven square inches.
8. The cookware of claim 1 wherein the substrate having a through plane thermal conductivity of less than about 75 W/m·K.
9. The cookware of claim 1 wherein the substrate comprises a structural architecture to support the graphite of the intermediate layer, the structural architecture devoid of an effective amount of a material to effectively couple for cooking applications when exposed to a magnetic field of at least 15 KHz.
10. The cookware of claim 1 wherein a Taber stiffness of the graphite comprises at least 30% more in a machine direction of the graphite layer as compared to a transverse direction of the graphite layer.
11. The cookware of claim 1 wherein a water pickup of the graphite layer comprises less than 30% by weight after a 2.5 hour soak in room temperature water at ambient pressure.
12. The cookware of claim 11 wherein a Taber stiffness of the graphite comprises at least 25% more in a machine direction of the graphite layer as compared to a transverse direction of the graphite layer.
13. The cookware of claim 1 further comprising wire mesh embedded within the layer of graphite.
14. A cookware article comprising:
a substrate comprising a bottom surface of the cookware;
an intermediate layer comprising a layer of graphite; and
a cooking surface disposed above the intermediate layer,
wherein the layer of graphite comprises at least one of a sheet of graphitized polymer, a sheet of compressed particles of exfoliated graphite, a mass of compressed particles of exfoliated graphite, or combinations thereof, and wherein the layer of graphite has a thickness of more than 7 microns and a water pickup of less than 30% by weight after a 2.5 hour soak in water at ambient conditions.
15. The cookware article of claim 14 wherein the graphite layer has a thickness of more than 7 microns and a Taber stiffness in a machine direction at least 25% higher than in a transverse direction.
16. An article comprising:
a substrate comprising a bottom surface of the article;
an intermediate layer comprising a layer of graphite having a sulfur content of less than 350 ppm; and
a top surface disposed above the intermediate layer,
wherein the layer of graphite comprises at least one of a sheet of graphitized polymer, a sheet of compressed particles of exfoliated graphite, a mass of compressed particles of exfoliated graphite, or combinations thereof.
17. The article of claim 16 wherein at least one of the substrate or the top surface has a thermal conductivity of less than 75 W/mK.
18. The article of claim 16 further comprising wire mesh embedded within the layer of graphite.
19. The article of claim 16 the graphite layer having at least one major planar surface, the graphite having a machine direction and a transverse direction, wherein a Taber stiffness of the graphite layer comprises at least 25% more in the machine direction as compared to the transverse direction.
20. The article of claim 16 , the layer of graphite having a water pickup of less than 30% by weight after a 2.5 hour soak in water at ambient conditions.