Nova Patents
IL89980A

Stereolithographic curl reduction

Abstract

This record has no abstract on file.

IL89980A, drawing sheet 1
Sheet 1 of 35

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

62 claims: 27 independent, 35 dependent

  1. 1
    A stereolithographic apparatus for forming a threedimensional object substantially layer by layer out of a material capable of selective physical transformation upon exposure to synergistic stimulation comprising:at least one computer programmed to modify object defining data, said data being descriptive of a desired object, to obtain tailored object defining data, wherein said tailored object defining data specifies forming at least a solid portion of said desired object having a structure adapted to provide reduction of pulling effects otherwise;transmitted along said solid portion so that curl distortion is reduced;a source of said synergistic stimulation;. means for successively forming layers of said material;and . . ;,. means for receiving said tailored object defining data and for selectively exposing said layers of said material to said synergistic stimulation from said source in accordance with said tailored object defining data to form said three-dimensional object substantially layer by layer.
  2. 4
    The apparatus of either of claims 1 or 2 wherein tailored object defining data specifies insertion of breaks in said solid portion and also specifies solid sub-portions between said breaks which are isolated -from each other by the breaks, to provide reduction of pulling effects Otherwise transmitted along said, solid portions :- . -
  3. 6
    The apparatus of either of clai1ns.:4 or 5 :wherein, said tai7-: lored object defining data specifies inserting breaks of about 5 to 50 mils in length, and specifies forming solid sub-portions between said breaks of about 40 to 300 mils in length.
  4. 7
    The apparatus of any of claims 4-6 wherein said tailored object defining data specifies breaks in first and second solid adjacent portions. 89980/2
  5. 9
    The apparatus of either of claims 1 or 2 wherein said tailored object defining data specifies insertion of bends in said solid portion, to provide reduction of pulling effects otherwise transmitted along said solid portion.... .. . . .
  6. 10
    The .apparatus of claim .9-wherein said tailored object- - ־ defining data specifies forming said solid portion with bends inserted in ;said solid portion upon’a first exposure .and exposing'said material --־-‘vbetween said bends,-upon at least a. second exposure, at a lower exposure . than said first exposure. ...... ... ------- . ..
  7. 11
    The apparatus of either of claims 9 or 10 wherein said - tailored object defining data specifies inserting bends along ah‘ otherwise “ straight line through said solid portion, resulting in gaps of about 5 to 50 mils in length, and solid sub-portions of about 40 to 300 mils in length between the gaps along said otherwise straight line.
  8. 12
    The apparatus of any of claims 9-11 wherein said tailored object defining data specifies bends in first and second adjacent solid portions. 89980/2
  9. 14
    A stereolithographic apparatus for forming a threedimensional object substantially layer by layer out of a material capable of selective physical transformation upon exposure to synergistic stimulation comprising^:' :... .... .. .. . ־ '־ ־. at /least one computer, programmed to modify objcct־defming...-״-.> ? data, said data being descriptive of a desired object comprising first and ^.second adjacent portions, to obtain tailored object defining-data, wherein ״ ->' ־- . said tailored object defining data specifies forming said first and second , . portions, and adhering said, second portion to said first portion in a ...... .. .: manner adapted to provide for reduction of pulling effects־otherwise ־ ־ g ?rJransmitted־along:at.least one of said portiorifr^^ ־ ... reduced;a source of said synergistic stimulation;means for successively forming layers of said material;and means for receiving said tailored object defining data and for selectively exposing said layers of said material to said synergistic stimulation from said source in accordance with said tailored object 89980/2 defining data to form said three-dimensional object substantially layer by layer.
  10. 18
    20. The apparatus of claim 18 wherein said plurality of exposures is two exposures.
  11. 19
    21. The apparatus of any of claims 18-20 wherein said plurality of exposures comprises at least one non-uniform exposure.
  12. 20
    22. The apparatus of:־any 0fTlaim־s T8-2T,׳ including forming' - - said .object utilizing״hatch :-vectors and boundary vectors;and said .at least : one computer is programmed to specify exposing at least one hatch vector with said plurality of. exposures and exposing at least one boundary . . vector with only one exposure. ’ : ~ ” . ....
  13. 21
    23. . The. apparatus of. any of claims .18-22-wherein said .second portion is divided into at least first־ and second־ parts' wherein' the־ first part _ is provided with said pluralityof :exposures prior to. supplying any exposure to said second part.
  14. 22
    24. The apparatus of any of claims 18-23 wherein exposure of the material occurs by scanning a beam of synergistic stimulation and wherein at least one successive exposure of said plurality of exposures occurs after scanning said beam of synergistic stimulation approximately a predetermined length over said material during a previous exposure. 89980/2
  15. 23
    25. The apparatus of any of claims 1, or 14-17 wherein said desired object has first and second adjacent portions, and said tailored object defining data specifies forming said first and second portions spaced from each other, and also specifies forming secondary structure to attach said first and second portions, to reduce pulling effects otherwise transmitted along at least one of said portions.
  16. 24
    26. The apparatus of־־claim־25־ ־־ wherein־ said tailored object defining :data, specifies forming said first ׳arid .second portions spaced fromeach other by about 40 to 300 mils
  17. 25
    27. The apparatus of־any of claims 14-17, 25; or 26 wherein .'־. said tailored object defining data specifies forming said first and second portions spaced from .each .other, and forming rivets-to -attach said first and second portions, to reduce pulling effects otherwise transmitted along at least one of said first and second portions::^ a;״.״ ;:t
  18. 27
    29. The apparatus of either claim 27 or 28 wherein said second portion of said desired object has a boundary comprising at least one vector, and said tailored data specifies said at least one rivet is to be offset from said at least one boundary vector to prevent said at least one 89980/2 rivet from otherwise extending beyond said boundary of said second portion.
  19. 28
    30. The apparatus of either claim 27 or 28 wherein said second portion includes at least two vectors having an intersection point, and said tailored object data specifies offsetting said at least one rivet from said intersection point by a predetermined distance.
  20. 29
    31. The apparatus of- claim 27 f wherein said desired object has... first, second, third,־ and fourth- adjacent portions, and said tailored object defining data specifies forming said first, second, third, and fourth portions spaced from;each ׳other,. forming 'a-first support line connecting ׳ ’ said first and second portions, forming a second support line connecting said third and fourth portions, and .forming rivets to attach said first and second׳support lines; ; ״ ״ ׳ - ־ ־.-־ ׳־ . י... ־; '“־־....יי י :. .
  21. 31
    33. The apparatus of any of claims 7, 8 or 12-32 wherein the first portion is at least part of a first layer and the second portion is at least part of a second layer adjacent to the first layer.
  22. 32
    34. The apparatus of any of claims 1-33 wherein the building material is a photopolymer and wherein the source of synergistic stimulation is a source of ultraviolet radiation. ־ .35- ־ A״ stereolithographic method for forming a three- ' ־....־׳׳ ' ...ד,. . . dimensional object substantially layer by layer out of a material capable -. .:of selective physical transformation upon exposure to synergistic stimulation comprising the steps .of: ;;. ־־־ ׳ ׳. י־ ׳' ־׳' :־' ״ י ־-. ־ י modifying at least a portion of object defining data, said ...... data being descriptive.of. a desired object, to obtain tailored object - . ״. ׳..׳. .-’ defining data, wherein said-tailored object defining data specifies forming 4 ;.<_.״:״ ;:: . :at least-־a solid portion of said :desired 5 object with.a structure adapted to provide reduction of pulling effects otherwise transmitted along said portion so that curl distortion is reduced;providing a source of said synergistic stimulation;successively forming layers of said material;and selectively exposing said layers of said material to said synergistic stimulation from said source in accordance with said tailored object defining data to form said three-dimensional object substantially layer by layer.
  23. 34
    38. The method of any of claims 35-37 wherein said tailored -. object defining data specificsTorming said, portion with breaks inserted in said portion, and also specifying forming solid sub-portions between said ' ,breaks specified to be isolated from each other by said breaks, to provide reduction of pulling effects״ otherwise transmitted along said solid portion. ־
  24. 37
    41. The method of any of claims 38-40 wherein said tailored object defining data specifies breaks in first and second solid adjacent portions.
  25. 39
    43. The method of any of claims 35-37 wherein said tailored object defining data^specifies forming said portion with bends׳inserted in־ ’ :said portion to provide reduction of pulling effects otherwise transmitted . along said portion. ־. .44 ״ ־The method oficlaim 43 wherein said tailored object ־ ~ .defining data.-specifies forming :said: portion with bends inserted in said portion upon a first exposure, and exposing said material between said bends, upon at least a second exposure, at a lower exposure than said first exposure.
  26. 40
    45. The method of either claim 43 or 44 wherein said tailored object defining data specifies inserting bends along an otherwise straight line through said solid portion resulting in gaps of about 5 to 50 mils in 89980/2 length and solid sub-portions of about 40 to 300 mils in length, between the gaps along said otherwise straight line.
  27. 41
    46. The method of any of claims 43-45 wherein said tailored object defining data specifies bends in first and second adjacent solid portions.
  28. 43
    48. A stereolithographic method for forming a three- .״ -. dimensional object substantially layer by layer out of a material capable ־־. י - .־ ״'־ ״.־ of selective physical transformation upon exposure to synergistic stimulation, comprising the steps of:.״.... .... ־ . .... modifying at least a portion ofobject defining data, said r ־ . . .. . data being descriptive: ofadesired .object,,.to. obtain tailored, .object : -: - defining data, wherein said desired object has first and second adjacent solid portions, and wherein said tailored objecLdefining data specifies forming said first and second portions, and adhering said first portion to said second portion in a manner adapted to provide reduction of pulling effects otherwise transmitted along at least one of said portions of said object so that curl distortion is reduced;providing a source of said synergistic stimulation;89980/2 successively forming layers of said material;and selectively exposing said layers of said material to said synergistic stimulation from said source in accordance with said tailored object defining data to form said three-dimensional object substantially layer by layer.
  29. 49
    56. The method of any of claims 52-55 includes forming said - ד ג .object utilizing hatch vectors and boundary vectors, and said tailored׳־:״ ־ - object defining data specifies exposing at least one hatch vector with said plurality of exposures, and exposing at least one boundary vector with only one exposure. ....— ז . ............ .:.
  30. 50
    57. . The method of any of claims 52-56 wherein said second ׳ ' -' ~ portion is divided into at least first and second parts wherein the first part .. 9 is provided with said plurality of exposures prior to supplying any exposure to said second part.
  31. 51
    58. The apparatus of any of claims 52-57 wherein exposure of the material occurs by scanning a beam of synergistic stimulation and wherein at least one successive exposure of said plurality of exposures occurs after scanning said beam of synergistic stimulation approximately a predetermined length over said material during a previous exposure.
  32. 52
    59. The method of any of claims 35-37 or 48-51 wherein said desired object has first and second adjacent portions, and wherein said tailored object defining data specifies forming said first and second portions spaced from each other, and also forming secondary structure to — attach said first portion to said second portion, to provide reduction of - . pulling effects otherwise, transmitted along at least one of said portions.
  33. 54
    61. The method of any of claims 48-51, 59, or. 60 wherein said • tailored object defining data specifies forming said first and second ' ... portions spaced from each other, and forming rivets to attach said first --and second portions, to reduce pulling effects otherwise transmitted along at least one of said first and second portions.
  34. 56
    63. The method of either claim 61 or 62 wherein said second portion of said desired object has a boundary comprising at least one 89980/2 vector, and said modifying step includes the substep of specifying that said at least one rivet is offset from said at least one vector to prevent said at least one rivet from otherwise extending beyond said boundary of said second portion.
  35. 57
    64. The method of either claim 61 or 62 wherein said second portion includes at least two vectors having an intersection point, and said modifying step includes the substep of specifying offsetting said at least one rivet from said intersection point by a predetermined distance.
  36. 60
    67. The method of any of claims 41, 42 or 46-66 wherein the first portion is at least part of a first layer and the second portion is at least part of a second layer adjacent to the first layer.
  37. 61
    68. The method of any of claims 35-67 wherein the building material is a photopolymer.
  38. 62
    69. The method of any of claims 35-68 wherein the synergistic stimulation is ultra-violet radiation.
Independent claims38