If you have been following this Blog any bit at all in the past, you will have seen my continuing efforts and Struggles with the challenges of maintaining, improving, and upgrading the Electricfly!
From my discoveries about the much lower really Usable Energy Ratings of the Batteries I was using, that I bought 100 Ah Batteries, to discover they were rated at just 30 Amps for 1 hour! In any case - I was still trying to move forward, and improve the Safety of the Battery Boxes that were inside the Hatch Portion of the car; working on Body Work with the Roof, and the Hood, having more rust than I realized!
Past Experiences, and much reading had me realizing that the DC Motor in the car, while it worked, did not give me anything back, in the form of Regenerative Braking when I slowed down, causing greater use of Mechanical Brakes than should be required in an EV, so I renewed my investigation of AC Motors for Electricfly! I started Considering the largest Large Format Lithium Iron Phosphate (LiFePO4) Cells for the Car that I could fit in the Empty Gas Tank Area under the Rear Seat, in an attempt to get reasonable priced energy storage, lighter weight, and more energy into the car!
I then started comparing
Sunday, April 17, 2016
My Electricfly and steps leading to reserving a Tesla Model 3!
Tuesday, September 15, 2009
Pursuing a Battery So Electric Vehicles Can Go the Extra Miles
The New York Times: Published September 14, 2009
SAN JOSE, Calif. — A future generation lithium-air battery might be the much sought after power source for electric vehicles with ranges that match gasoline powered cars of today.
The interest in the as-yet-unproven technology was underscored this summer when I.B.M. said it had begun to pursue a tenfold improvement in battery storage, with hopes of reaching the goal before the end of the next decade.
I.B.M. executives said the company was unlikely to enter the battery business directly but was aiming toward a partnership that would marry its hardware and systems design expertise with ultralight battery technology.
Such a strategy would follow the lead of Tesla Motors, a new California company that produced a high-end electric roadster based on a computerized and sensor-based battery system. Tesla put 6,800 standard lithium-ion battery cells designed for consumer electronic products into a 992 pound package.
“I strongly believe that climbing this Mount Everest of 10 times better, given resources, time and patience, will happen,” said Winfried Wilcke, a physicist and I.B.M.’s senior manager for nanoscale science and technology here at the Almaden Research Center. “This is simply so overwhelming in its simplicity and its clarity and the socioeconomic consequences it would have, that it deserves a Manhattan-like effort.” Continue reading the Original Post Here
