System and method for fabricating an electrode with separator
A system and method for providing a ceramic-based separator onto an electrode is disclosed. A separator is formed on the electrode via a dry, solvent-free application of a ceramic-based separator to the electrode. An electrode is provided to an application area via a feed mechanism and a separator layer is then applied to the electrode that is comprised of a binder including at least one of a thermoplastic material and a thermoset material and an electrically non-conductive separator material, with the separator layer being applied to the electrode via a dry dispersion application.
1. A method of applying a dry, solvent-free ceramic-based separator to an electrode, the method comprising:
providing an electrode to an application area via a feed mechanism;
applying a separator layer comprised of a binder and an electrically non-conductive separator material to the electrode via a dry dispersion application, wherein the binder includes at least one of a thermoplastic material and a thermoset material; and
heating the electrode to adhere the separator layer to the electrode;
wherein applying the separator layer comprises spraying the binder and the electrically non-conductive separator material onto the electrode at between 2 and 20 pound-force per square inch (psi).
2. A method of manufacturing a battery cell that includes an electrode and a separator, the method comprising:
providing an electrode;
advancing the electrode toward an application region;
coating a mixture of an electrically non-conductive ceramic-based separator material and a binder onto the electrode in the application region via a dry, solvent-free coating process, so as to form a separator layer; and
heating the electrode to adhere the separator layer to the electrode, the electrode being heated prior to, during, and/or after coating of the mixture onto the electrode;
wherein coating the mixture onto the substrate comprises powder coating the mixture of the separator material and the binder onto the electrode such that the separator layer is formed on the electrode as a distinct layer from the electrode; and
wherein the mixture of the separator material and the binder is sprayed onto the electrode at a pressure of between 2 and 20 pound-force per square inch (psi).