Nova Patents
EP1580787A2

X-ray generating apparatus

Abstract

This invention relates to a microfocus X-ray tube having a heat-dissipation solid formed on the target adhesively. Specifically, the heat-dissipation solid (20) defining an opening is formed on the target (18) surface irradiated with an electron beam. Heat generated adjacent the target surface by impingement of an electron beam (B) having passed through the opening is promptly distributed by heat conduction through the surface solid. The heat-dissipation solid contributes to lowering of a surface temperature of the target layer with which the electron beam collides, and a reduction of evaporation of a material forming the target, thereby extending an X-ray generating time.

EP1580787A2, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Projected expiry passed 18 March 2025, 1.5 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

19 claims: 19 independent, 0 dependent

  1. 1
    An X-ray generating apparatus for generating X-rays by irradiating a target with an electron beam, comprising a heat-dissipation layer in contact with a surface of said target irradiated with the electron beam.
  2. 2
    An X-ray generating apparatus as defined in claim 1, wherein said heat-dissipation layer, while being in contact with the surface of said target irradiated with the electron beam, defines an opening or bore in an electron beam irradiating position.
  3. 3
    An X-ray generating apparatus as defined in claim 2, wherein said heat-dissipation layer is formed by a film forming method and a masking method.
  4. 4
    An X-ray generating apparatus as defined in claim 2, wherein said heat-dissipation layer is formed by a film forming method and precision machining.
  5. 5
    An X-ray generating apparatus as defined in claim 2, wherein, after forming said heat-dissipation layer on the surface of said target, said target is attached to an X-ray tube, and said opening is formed by colliding with an electron beam.
  6. 6
    An X-ray generating apparatus as defined in claim 2, wherein the opening of said heat-dissipation layer is formed within 17 times a radius of the electron beam from a center of the electron beam irradiating position.
  7. 7
    An X-ray generating apparatus as defined in claim 2, wherein said heat-dissipation layer has a thickness greater than a radius of the electron beam.
  8. 8
    An X-ray generating apparatus as defined in claim 1, wherein said opening is formed in said heat-dissipation layer to have a tapered shape so that an inner wall of said opening converges in a direction of movement of said electron beam.
  9. 9
    An X-ray generating apparatus as defined in claim 1, wherein said heat-dissipation layer includes a plurality of layers laminated upward from the surface of said target.
  10. 10
    An X-ray generating apparatus as defined in claim 1, wherein said heat-dissipation layer includes a plurality of layers arranged adjacent one another radially of said electron beam.
  11. 11
    An X-ray generating apparatus as defined in claim 9, wherein said layers constituting said heat-dissipation layer are formed from materials having the higher melting points, the closer said layers are to the electron beam irradiating position.
  12. 12
    An X-ray generating apparatus as defined in claim 1, wherein said heat-dissipation layer is formed from a material with a higher thermal conductivity than said target.
  13. 13
    An X-ray generating apparatus as defined in claim 2, wherein said heat-dissipation layer has the inner wall and edge regions of the opening covered by a protective film of high melting point.
  14. 14
    An X-ray generating apparatus as defined in claim 1, wherein the surface of said target exposed through a bore formed in said heat-dissipation layer is covered by a protective film having a high melting point or an easily penetrability for electrons.
  15. 15
    An X-ray generating apparatus as defined in claim 2, further comprising:detecting means for detecting a position of the opening formed in said heat-dissipation layer;moving means for moving the electron beam or the target;and control means for controlling detection the position of the opening by moving an electron colliding position, and performing a position adjustment for allowing the electron beam to irradiate the position of the opening detected.
  16. 16
    An X-ray generating apparatus as defined in claim 15, wherein said moving means comprises deflecting means for changing a course of the electron beam.
  17. 17
    An X-ray generating apparatus as defined in claim 15, wherein said detecting means includes, as part thereof, said target having an insulator layer.
  18. 18
    An X-ray generating apparatus as defined in claim 1, further comprising an internal heat-dissipation layer in contact with a reverse of the said target surface irradiated by the electron beam.
  19. 19
    An X-ray generating apparatus as defined in claim 18, wherein said internal heat-dissipation layer has a thickness set to 1 to 10µm.
Independent claims19