Location History:
- Spondon, EN (1977)
- Spondon, GB (1982)
Company Filing History:
Years Active: 1977-1982
Title: Michael D Hames: Innovator in Sodium Sulphur Cell Technology
Introduction
Michael D Hames is a notable inventor based in Spondon, GB. He has made significant contributions to the field of energy storage, particularly through his innovative work on sodium sulphur cells. With a total of 2 patents, Hames has demonstrated a commitment to advancing technology in this area.
Latest Patents
Hames' latest patents include groundbreaking designs for sodium sulphur cells. One of his patents describes a sodium sulphur cell that utilizes beta alumina solid electrolyte material to separate an anodic region containing sodium from a cathodic region. This design features a pretreated electrolyte surface with a first metal, such as lead, which forms an alloy with sodium. The anodic region also contains a second metal, like titanium or aluminum, which reacts with sodium oxide to enhance the cell's performance by preventing resistance rise during discharge.
Another patent focuses on alkali metal-sulphur cells, which are designed with an outer tubular casing and an inner tubular solid electrolyte. This configuration creates an anode compartment that is effectively separated from the cathode compartment. The design includes mechanisms for distributing alkali metal over the solid electrolyte's surface and barrier means to protect the sulphur material from the outer casing.
Career Highlights
Michael D Hames is currently associated with Chloride Silent Power, Ltd., where he continues to innovate in the field of energy storage solutions. His work has been instrumental in developing more efficient and reliable energy systems.
Collaborations
Throughout his career, Hames has collaborated with notable colleagues, including Alec R Tilley and Michael L Wright. These partnerships have contributed to the advancement of his research and the successful development of his patents.
Conclusion
Michael D Hames is a distinguished inventor whose work on sodium sulphur cells has the potential to revolutionize energy storage technology. His innovative designs and collaborative efforts highlight his significant contributions to the field.