EP0535720A2

Method and apparatus for production of three-dimensional objects by stereolithography.

Abstract

A system for generating three-dimensional objects by creating a cross-sectional pattern of the object to be formed at a selected surface of a fluid medium capable of altering its physical state in response to appropriate synergistic stimulation by impinging radiation, particle bombardment or chemical reaction, successive adjacent laminae, representing corresponding successive adjacent cross-sections of the object, being automatically formed and integrated together to provide a step-wise laminar buildup of the desired object, whereby a three-dimensional object is formed and drawn from a substantially planar surface of the fluid medium during the forming process.

EP0535720A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 6 August 2005, 21.1 years ago.

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35 claims: 11 independent, 24 dependent

  1. 1
    A method of generating three-dimensional objects, said method comprising:generating individual solid laminae representing cross-sections of the three-dimensional object to be formed;and    cohesively integrating successive adjacent ones of said laminae to form said three-dimensional object.
  2. 2
    A method as set forth in Claim 1, wherein said step of cohesively integrating involves forming each lamina directly upon the immediately preceding lamina.
  3. 3
    A method for providing a three-dimensional object from a fluid medium, said method comprising:selectively solidifying a fluid medium at a prescribed surface thereof to generate a lamina representing a cross-section of a three-dimensional object to be formed;and    automatically combining successive adjacent laminae to form said three-dimensional object from said fluid medium.
  4. 4
    A method for providing a three-dimensional object from a fluid medium, said method comprising:containing a body of fluid medium capable of solidification in response to prescribed synergistic stimulation;and    solidifying successive layers of said medium at a designated surface of said medium to form corresponding successive laminae defining said three-dimensional object.
  5. 5
    A system for producing a three-dimensional object from a fluid medium capable of solidification when subjected to prescribed synergistic stimulation, said system comprising:means for drawing upon and forming successive cross-sections of said object at a two-dimensional interface;and    means for moving said cross-sections as they are formed and building up said object in step wise fashion, whereby a three-dimensional object is extracted from a substantially two-dimensional surface.
  6. 6
    An improved system for producing a three-dimensional object from a fluid medium capable of solidification when subjected to prescribed synergistic stimulation, said system comprising:a body of fluid medium capable of transforming its physical state in response to synergistic stimulation;object support means immersed within said fluid medium for supporting a three-dimensional object to be formed;translational means for selectively moving said object support means progressively away from a designated surface of said fluid medium;and    reaction means capable of altering the physical state of said fluid medium and operating in a prescribed pattern upon said designated surface of said fluid medium to provide a thin solid lamina at said surface representing a corresponding cross-sectional lamina of said three-dimensional object to be formed,    whereby successive adjacent laminae are provided to form said three-dimensional object on said object support means as said translational means moves said support means away from said designated surface.
  7. 7
    A system as set forth in Claim 6, and further including:programmed control means for varying the graphic pattern of said reaction means operating upon said designated surface of said fluid medium.
  8. 8
    A system as set forth in Claim 6, wherein said reaction means includes any of:a beam of impinging radiation;an electron beam;a beam of high energy particles;a beam of light;x-rays;a beam of ultraviolet light;or a jet of a reactive chemical to induce solidification of said fluid medium.
  9. 9
    A system as set forth in Claim 6, wherein said reaction means includes:a patterned mask overlying said designated surface for selectively applying a chemical to induce solidification of said fluid medium, for selectively exposing said surface to synergistic stimulation, or for selectively exposing said surface to radiation.
  10. 10
    A system as set forth in Claim 6, wherein said translation means moves said object as it is formed away from said designated surface and further into said fluid medium, or away from said surface and out of said fluid medium.
  11. 11
    A system as set forth in Claim 6, wherein exposure to said reaction means at said designated surface is through a second non-reactive medium.
  12. 12
    A system as set forth in Claim 6, and further including:a container for said fluid medium, wherein exposure of said designated surface to said reaction means is through the bottom of said container and a second non-reactive medium adjacent said designated surface.
  13. 13
    A system as set forth in Claim 12, wherein said second non-reactive medium is heavy water, or ethylene glycol.
  14. 14
    A system as set forth in Claim 6, and further including:rotational means, supplementing said translational means for altering the orientation of said object relative to said designated surface at which laminae are being formed.
  15. 15
    A system as set forth in Claim 6, wherein the level of said fluid medium locating said designated surface is variable;or the level of said fluid medium locating said designated surface is maintained constant.
  16. 16
    A system as set forth in Claim 6, wherein said translational means has multiple degrees of freedom of movement.
  17. 17
    A system as set forth in Claim 8, wherein said reaction means includes said beam of impinging radiation and precise focus of said beam upon said designated surface is maintained.
  18. 18
    A system as set forth in Claim 6, wherein said prescribed pattern is formed upon said designated surface by radiation emanating from the face of a cathode ray tube.
  19. 19
    A system as set forth in Claim 6, wherein said prescribed pattern is formed by light directly emanating from a phosphor image.
  20. 20
    A system for directly producing a three-dimensional object as it is designed by a computer, comprising:deriving graphic image output from said computer, said graphic image defining successive adjacent cross-sections of the three-dimensional object designed by said computer;means for drawing upon and forming successive cross-sections, corresponding to said computer designed cross-sections of said object, at a two-dimensional interface;and    means for moving said cross-sections as they are formed and building up said object in a stepwise fashion, whereby the three-dimensional object designed by said computer is automatically extracted from a substantially two-dimensional surface.
  21. 21
    A method for providing a three-dimensional object from a fluid medium capable of altering its physical state when subjected to prescribed radiation, said method comprising:a body of fluid medium capable of altering its physical state;means for forming said three-dimensional object from said fluid medium by irradiating a designated surface of said medium to provide integrated, successive surface laminae at said surface, said laminae together defining said three-dimensional object.
  22. 22
    A method for providing a three-dimensional object from a fluid medium capable of altering its physical state when subjected to prescribed radiation, said method comprising:containing a body of fluid medium capable of altering its physical sate;irradiating a designated surface of said fluid medium with a prescribed pattern to provide a thin cross-sectional lamina at said designated surface;and    repeatedly forming a series of such laminae in succession to build the desired three-dimensional object from successive adjacent laminae which together define said object.
  23. 23
    An improved system for producing a three-dimensional object from a fluid medium, said system comprising:a body of fluid medium capable of altering its physical state in response to prescribed radiation;a radiation source for impinging said prescribed radiation in a selected pattern upon a designated surface of said fluid medium to provide only at said surface a think solid lamina representing a cross-sectional lamina of a three-dimensional object to be formed;and    means for combining successive adjacent laminae to form said three-dimensional object from said fluid medium.
  24. 24
    A system as set forth in Claim 23, wherein said radiation source includes any of:a beam of impinging radiation;an electron beam;a beam of high energy particles;a beam of light;a beam of ultraviolet light, or x-rays.
  25. 25
    A system as set forth in Claim 23, wherein said radiation source and pattern includes:a patterned mask overlying said designated surface for selectively exposing said surface to synergistic stimulation;or a patterned mask overlying said designated surface selectively exposing said surface to radiation.
  26. 26
    A system as set forth in Claim 23, wherein exposure to said prescribed radiation at said designated surface is through a second non-reactive medium.
  27. 27
    A system as set forth in Claim 23, and further including:a container for said fluid medium, wherein exposure of said designated surface to said prescribed radiation is through the bottom of said container and a second non-reactive medium adjacent said designated surface, said second non-reactive medium preferably being heavy water or ethylene glycol.
  28. 28
    A system as set forth in Claim 23, wherein the level of said fluid medium locating said designated surface is maintained constant.
  29. 29
    A system as set forth in Claim 23, wherein said translational means has multiple degrees of freedom of movement.
  30. 30
    A system as set forth in Claim 23, wherein precise focus of said prescribed radiation upon said designated surface is maintained.
  31. 31
    A system as set forth in Claim 23, wherein said selected pattern is formed upon said designated surface by radiation emanating from the face of a cathode ray tube.
  32. 32
    A system as set forth in Claim 23, wherein said selected pattern is formed by light directly emanating from a phosphor image.
  33. 33
    A system as set forth in Claim 23, and further including:programmed control means for varying the pattern of said impinging radiation upon said designated surface of said fluid medium.
  34. 34
    Method for producing a three-dimensional object (30) from a body (30) from a body of fluid medium (22) capable of solidifying in response to synergistic stimulation by repeatedly exposing a designated working surface (23) of the medium to the synergistic stimulation in a predetermined pattern, thereby generating individual solid laminae representing cross-sections (30a, 30b, 30c) of the object, whereby successive adjacent laminae (30a, 30b, 30c) are cohesively integrated to form said three-dimensional object (30) characterized in that a previous solid lamina is subsequently coated, in preparation for the formation of the next successive lamina at said working surface (23), over at least a portion of said lamina with an excess thickness of said medium (22) which is subsequently decreased to a layer of the correct thickness for the next lamina.
  35. 35
    An apparatus for producing a three dimensional object (30) from a fluid medium capable of solidification when subjected to prescribed synergistic stimulation, said system comprising:a body of medium (27) capable of transforming its physical state in response to synergistic stimulation;object support means (29) for supporting a three-dimensional object to be formed;reaction means (26, 28) for producing synergistic stimulation capable of altering the physical state of said medium and operating in a prescribed pattern upon a designated working surface (23) of said medium to provide a solid, first cross-sectional lamina of structure at said working surface (23) representing a corresponding cross-sectional lamina (30a, 30b, 30c) of said three-dimensional object (30) to be formed;and    coating means (28, 29) for coating over said first cross-sectional lamina of structure in preparation for formation of a solid, second cross-sectional lamina of structure adhered to said first cross-sectional lamina of structure, whereby a plurality of successively adjacent adhered laminae (30a, 30b, 30c) are provided to form said three-dimensional object (30) on said object support means (29) characterised in that the coating means includes means for coating over at least a portion of the first cross-sectional lamina of structure with an excess thickness of said medium and for decreasing said excess thickness of said medium to a successive layer of correct thickness.
Independent claims35