20240046907. COMPONENT FOR MANIPULATING AN INPUT SHOCKWAVE simplified abstract (FIRST LIGHT FUSION LIMITED)

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COMPONENT FOR MANIPULATING AN INPUT SHOCKWAVE

Organization Name

FIRST LIGHT FUSION LIMITED

Inventor(s)

Peter Allan of Yarnton (GB)

Matthew Betney of Yarnton (GB)

Hugo Doyle of Yarnton (GB)

Thomas Edwards of Yarnton (GB)

Nicholas Hawker of Yarnton (GB)

James Pecover of Yarnton (GB)

Jonathan Skidmore of Yarnton (GB)

COMPONENT FOR MANIPULATING AN INPUT SHOCKWAVE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240046907 titled 'COMPONENT FOR MANIPULATING AN INPUT SHOCKWAVE

Simplified Explanation

The patent application describes a component that can manipulate an input shockwave to produce a manipulated shockwave. The component is made of two materials, with the first material forming the body of the component and the second material filling a cavity within the body. The second material has a lower shock-impedance than the first material.

  • The component is designed to manipulate shockwaves.
  • It has a body made of a first material and a cavity filled with a second material.
  • The second material has a lower shock-impedance than the first material.
  • The cavity has an input for receiving the input shockwave and an output for outputting the manipulated shockwave.

Potential Applications:

  • Medical field: The component could be used in shockwave therapy to manipulate shockwaves for various medical treatments.
  • Aerospace industry: The component could be used in aircraft or spacecraft to manipulate shockwaves for improved aerodynamics or noise reduction.
  • Defense industry: The component could be used in military applications to manipulate shockwaves for stealth purposes or to redirect or disrupt incoming shockwaves.

Problems Solved:

  • Manipulating shockwaves: The component provides a means to manipulate shockwaves, which can be useful in various industries and applications.
  • Shockwave impedance: The use of two materials with different shock-impedance allows for better control and manipulation of shockwaves.

Benefits:

  • Improved shockwave manipulation: The component allows for precise control and manipulation of shockwaves, leading to improved outcomes in various applications.
  • Versatility: The component can be used in different industries and applications where shockwave manipulation is desired.
  • Potential for innovation: The use of different materials with varying shock-impedance opens up possibilities for further advancements and improvements in shockwave manipulation technology.


Original Abstract Submitted

a component for manipulating an input shockwave. the component includes a body comprising a first material. the body defines a cavity for manipulating the input shockwave so to produce a manipulated shockwave. the cavity comprises an input for receiving the input shockwave incident upon the component and an output for outputting the manipulated shockwave from the cavity. the cavity contains a second material having a shock-impedance that is lower than a shock-impedance of the first material.