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The Zajac Engine Breakthroughs

  • Zajac Motor Section
Intellectual Property and Patents

    ART holds 23 US and international patents issued and more pending. The ART Zajac Engine technology represents a breakthrough approach with numerous efficiency and ecological advantages. The ART Zajac Engine reflects the company’s commitment to forward thinking and creative, "out-of-the-box" problem solving around issues of waste, energy, and environmental rehabilitation.

    Concept
      The ART Zajac Engine Technology concept is to create a zero emissions engine that can burn any liquid carbon-based fuel to deliver increased power and efficiency.
    Components
      The ART Zajac approach utilizes advanced valve, combustion chamber, material, and computer technologies. Without these “enabling” components, the ART Zajac Engine would not be possible and thus could not be built before now.
    Intellectual Property
      Here is a partial list of ART's patents. For more information contact us.

          June 2006     Engine cylinder configuration flexibility and methods
          July 2007    Valve sealing flange which can be sealable while being adjustable
          February 2008    Belt and chain drive movement for adjustable engine valves
          February 2008    Gear drive movement for adjustable engine valves
          July 2008    Engine with software control system
          July 2008     Silent and efficient Jake engine braking
          September 2008    Constant pressure engine purpose and methods
          September 2008    Low idling RPM, easy starting engine
          September 2008     Valves and seals description and movement
          September 2008    Valves description and operation
          October 2008    Constant temperature engine method and purpose
          November 2008    High constant compression ratio engine with low head clearance
          January 2009    Overall engine description, method, operation and configuration
          February 2009     High efficiency, work recovery, acceleration, high altitude operation
          April 2009     Folded combustion chamber with rough wall
          July, 2010    Combustion chamber requirements and methods in combination with engine
          July, 2010    Combustion chamber using ceramic side-wall to reduce losses
          July, 2010     Combustion chamber using protrusions and flow turbulators for better mixing
          Pending    Combustion chamber flow separation and method
          Pending    Low force, lubrication free, high temperature valve design
          Pending    Engine method for boosting air intake an increasing power

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Douglas, Isle of Man
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