Skip to main content

Spark plugs may be replaced by lasers

For more than 150 years, spark plugs have powered internal combustion engines. Automakers are now one step closer to being able to replace this long-standing technology with laser igniters, which will enable cleaner, more efficient, and more economical vehicles.
May 21, 2012 Read time: 3 mins
For more than 150 years, spark plugs have powered internal combustion engines. Automakers are now one step closer to being able to replace this long-standing technology with laser igniters, which will enable cleaner, more efficient, and more economical vehicles.

In the past, lasers strong enough to ignite an engine’s air-fuel mixtures were too large to fit in a vehicle’s engine compartment. At this year's Conference on Lasers and Electro Optics (CLEO: 2011) - %$Linker: External 0 0 0 oLinkExternal www.cleoconference.org Cleo Confernece false http://cleoconference.org/ false false%> - being held in Baltimore, USA from 1-6 May, researchers from Japan will describe the first multibeam laser system small enough to screw into an engine's cylinder head.

Equally significant, the new laser system is made from ceramics, and could be produced inexpensively in large volumes, according to one of the presentation's authors, Takunori Taira of Japan's National Institutes of Natural Sciences.

According to Taira, conventional spark plugs pose a barrier to improving fuel economy and reducing emissions of nitrogen oxides (NOx), a key component of smog. If engines ran leaner – burnt more air and less fuel – they would produce significantly smaller NOx emissions.

Spark plugs can ignite leaner fuel mixtures, but only by increasing spark energy. Unfortunately, these high voltages erode spark plug electrodes so fast, the solution is not economical. By contrast, lasers, which ignite the air-fuel mixture with concentrated optical energy, have no electrodes and are not affected.

Lasers also improve efficiency. Conventional spark plugs sit on top of the cylinder and only ignite the air-fuel mixture close to them. The relatively cold metal of nearby electrodes and cylinder walls absorbs heat from the explosion, quenching the flame front just as it starts to expand.

Lasers, Taira explains, can focus their beams directly into the centre of the mixture. Without quenching, the flame front expands more symmetrically and up to three times faster than those produced by spark plugs.

Equally important, he says, lasers inject their energy within nanoseconds, compared with milliseconds for spark plugs. “Timing – quick combustion – is very important. The more precise the timing, the more efficient the combustion and the better the fuel economy,” he says.

Lasers promise less pollution and greater fuel efficiency, but making small, powerful lasers has, until now, proven hard. Taira’s team built its laser from two yttrium-aluminum-gallium (YAG) segments, one doped with neodymium, the other with chromium. They bonded the two sections together to form a powerful laser only 9 millimeters in diameter and 11 millimeters long (a bit less than half an inch).

The composite generates two laser beams that can ignite fuel in two separate locations at the same time. This would produce a flame wall that grows faster and more uniformly than one lit by a single laser.
The laser is not strong enough to light the leanest fuel mixtures with a single pulse. By using several 800-picosecond-long pulses, however, they can inject enough energy to ignite the mixture completely.

A commercial automotive engine will require 60 Hz (or pulse trains per second), Taira says. He has already tested the new dual-beam laser at 100 Hz. The team is also at work on a three-beam laser that will enable even faster and more uniform combustion.

The laser-ignition system, although highly promising, is not yet being installed into actual automobiles made in a factory. Taira’s team is, however, working with a large spark-plug company and with 4306 Denso Corporation, a member of the 1686 Toyota Group. This work is supported by the Japan Science and Technical Agency (JST).

For more information on companies in this article

Related Content

  • Australian road pricing, road funding needs more debate
    January 31, 2012
    Everyone in the road transport industry in Australia is talking road pricing - everyone, that is, except the politicians. Christine Keyes reports. At the end of 2008, Australia's road transport industry was wringing its collective hands, unable to raise more than $100 million from an individual bank for any Public Private Partnership (PPP). The A$750 million Peninsula Link project, announced by the Victoria Government in March 2009, was the first road project in the country to be put out to market as an ava
  • Nashville meeting smooth path to Tokyo
    May 29, 2013
    Plans for each ITS World Congress to smoothly transition into its successor took a step forward at the April 2013 ITS America Annual Meeting in April. Dr Hiroyuki Watanabe, organising committee chairman for the 2013 event in Tokyo met Jim Barbaresso, his counterpart for the 2014 follow-on in Detroit, Michigan to progress high-level cooperation. Barbaresso, vice president for ITS at engineering company HNTB and a former president of ITS Michigan, told ITS International there will be a common focus on lesson
  • Are truck bans the wrong move in the battle for air quality
    June 29, 2016
    Low emission zones and heavy goods vehicles’ access to city centres may at first glance appear attractive but how effective are such controls? Jon Masters reviews emerging trends across Europe. Around 1,700 European cities have implemented low emission zones (LEZs) and in addition some have restricted city centre access for heavy goods vehicles (HGVs). Even those that restrict HGV access, such as Paris and Rome, allow exemptions at certain times and for particular classes of vehicle. But with what effect?
  • ITS America Annual Meeting - setting the scene
    May 1, 2012
    Gloria J. Jeff, District of Columbia Department of Transportation, and one of the co-chairs of the 2012 Annual Meeting Organizing Committee, sets the scene on what will be this year’s most important event for the ITS industry.