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Japan probe finds miswiring of Boeing 787 battery

By R&D Editors | February 20, 2013

A probe into the overheating of a lithium ion battery in an All Nippon Airways Boeing 787 found it was improperly wired, Japan’s Transport Ministry said Wednesday.

The Transport Safety Board said in a report that the battery of the aircraft’s auxiliary power unit was incorrectly connected to the main battery that overheated, although a protective valve would have prevented power from the APU from doing damage.

Flickering of the plane’s tail and wing lights after it landed and the fact the main battery was switched off led the investigators to conclude there was an abnormal current traveling from the APU due to miswiring.

The agency said that more analysis was needed to determine what caused the main battery to overheat and emit the smoke that prompted the Jan. 16 emergency landing of the ANA domestic flight and the worldwide grounding of Boeing 787 jets. They said they are consulting Boeing about the issue.

The Federal Aviation Administration and aviation authorities in other countries grounded 787 fleets because of the ANA incident which followed a battery fire earlier in January in a 787 parked in Boston.

The 787, dubbed the Dreamliner by Boeing, is the first airliner to make extensive use of lithium ion batteries, which are lighter weight, charge faster and contain more energy than conventional batteries similar in size. However, the batteries also are more prone to overheating and catching fire.

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Lithium iron phosphate (LFP) is a mineral of the olivine family. LFP is one of the materials used as the cathode in a lithium ion battery. The structure of LFP includes Fe(III)O6 octahedra (green) sharing bridged oxygen atoms (red) with tetrahedral phosphate groups (PO4, orange). The channels formed by the interlocking polyhedra are filled with rows of Li(+) ions (gray). (The anode of a lithium ion battery is carbon graphite with intercalated lithium ions. LFP batteries deliver a constant voltage of ~3.2 V over entire life of the battery. They are particularly well-suited for electric vehicles because the high discharge rates for these batteries are need for acceleration. LFP batteries are also lower in weight and have longer lifetimes than other Li ion batteries.
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