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Stereolithography method and apparatus employing various penetration depths 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B29C-035/08
  • B29C-041/02
출원번호 US-0429911 (1989-10-27)
발명자 / 주소
  • Spence Stuart T. (S. Pasadena CA) Smalley Dennis R. (Baldwin Park CA)
출원인 / 주소
  • 3D Systems, Inc. (Valencia CA 02)
인용정보 피인용 횟수 : 114  인용 특허 : 0

초록

An improved stereolithographic apparatus (SLA) and an improved method for generating a part from curable material. The invention utilizes control and/or knowledge of depths of penetration of actinic radiation into a vat of photopolymer to determine and/or control and/or produce desirable characteris

대표청구항

An improved stereolithographic method for producing a three-dimensional object by forming layers of material curable in response to synergistic stimulation adjacent to previously formed layers of material and successively curing the layers of material by exposing the layers of material to a pattern

이 특허를 인용한 특허 (114)

  1. Dean, H. David; Siblani, Al; Mott, Eric J.; Fisher, John P.; Wang, Martha O.; Mikos, Antonios G., Absorbant and reflecting biocompatible dyes for highly accurate medical implants.
  2. Partanen Jouni P. ; Smalley Dennis R., Apparatus and method for controlling exposure of a solidifiable medium using a pulsed radiation source in building a three-dimensional object using stereolithography.
  3. Hagenau William R., Apparatus and method for production of three-dimensional models by spatial light modulator.
  4. Widman, Michael F.; Enns, John B.; Powell, P. Mark; Sites, Peter W., Apparatus for formation of an ophthalmic lens precursor and lens.
  5. Widman, Michael F.; Enns, John B.; Powell, P. Mark; Sites, Peter W., Apparatus for formation of an ophthalmic lens precursor and lens.
  6. Widman, Michael F; Enns, I, John B; Powell, P Mark; Sites, Peter W, Apparatus for formation of an ophthalmic lens precursor and lens.
  7. Widman, Michael F; Enns, John B; Powell, P. Mark; Sites, Peter W, Apparatus for formation of an ophthalmic lens precursor and lens.
  8. Widman, Michael F; Enns, John B; Powell, P. Mark; Sites, Peter W, Apparatus for formation of an ophthalmic lens precursor and lens.
  9. Hickerson,Kevin P.; Bedal,Bryan; Diephuis,Richard J., Apparatus for three dimensional printing using image layers.
  10. Tang, Nansheng; Partanen, Jouni P., Calibrating a focused beam of energy in a solid freeform fabrication apparatus by measuring the propagation characteristics of the beam.
  11. Wang, Hongqing V.; Kuek, Soon-Chun; Hull, Charles W.; Gregory, II, Richard Ora; Kerekes, Thomas Alan, Compensation of actinic radiation intensity profiles for three-dimensional modelers.
  12. Wang, Hongqing V.; Kuek, Soon-Chun; Hull, Charles W.; Gregory, II, Richard Ora; Kerekes, Thomas Alan, Compensation of actinic radiation intensity profiles for three-dimensional modelers.
  13. Lyons, Brett Ian, Continuous linear production in a selective laser sintering system.
  14. Wildsmith, Christopher; Widman, Michael F, Customized lens device and method.
  15. McLeod, Robert R.; Bowman, Christopher N.; Scott, Timothy F.; Sulivan, Amy C., Diffraction unlimited photolithography.
  16. Yu, Ching-Fang; Hsu, Ting-Hao; Chin, Sheng-Chi, EUV mask and method for forming the same.
  17. Jouni P. Partanen ; Nansheng Tang ; Xingkun Wu, Electronic spot light control.
  18. Gibson, Michael Andrew; Myerberg, Jonah Samuel; Fulop, Ricardo; Verminski, Matthew David; Fontana, Richard Remo; Schuh, Christopher Allan; Chiang, Yet-Ming; Hart, Anastasios John, Fabricating an interface layer for removable support.
  19. Schmitt, Peter Alfons; Myerberg, Jonah Samuel; Fulop, Ricardo; Gibson, Michael Andrew; Verminski, Matthew David; Fontana, Richard Remo; Schuh, Christopher Allan; Chiang, Yet-Ming; Hart, Anastasios John, Fabricating multi-part assemblies.
  20. Schmitt, Peter Alfons; Myerberg, Jonah Samuel; Fulop, Ricardo; Gibson, Michael Andrew; Verminski, Matthew David; Fontana, Richard Remo; Schuh, Christopher Allan; Chiang, Yet-Ming; Hart, Anastasios John, Fabricating multi-part assemblies.
  21. Widman, Michael F.; Enns, John B.; Powell, P. Mark; Sites, Peter W., Free form ophthalmic lens.
  22. Myerberg, Jonah Samuel; Fulop, Ricardo; Gibson, Michael Andrew; Hart, Anastasios John; Fontana, Richard Remo; Schuh, Christopher Allan; Chiang, Yet-Ming; Verminski, Matthew David; Sachs, Emanuel Michael; Chin, Ricardo, Fused filament fabrication.
  23. Davis, Joseph Dale, Image transfer by sublimation to powder coated articles.
  24. Calderon,Edward Lewis; Hernadez Guerra,Francisco M.; Bani Hashemi,Ali; Ghelmansarai,Farhad A., Imaging mode for linear accelerators.
  25. Kruijt Stegeman,Yvonne Wendela; Kolesnychenko,Aleksey Yurievich; Loopstra,Erik Roelof; Dijksman,Johan Frederik; Van Santen,Helmar; Wuister,Sander Frederik, Imprint lithography.
  26. Farnworth, Warren M., Layer thickness control for stereolithography utilizing variable liquid elevation and laser focal length.
  27. Farnworth, Warren M., Layer thickness control for stereolithography utilizing variable liquid elevation and laser focal length.
  28. Farnworth, Warren M., Layer thickness control for stereolithography utilizing variable liquid elevation and laser focal length.
  29. Farnworth,Warren M., Layer thickness control for stereolithography utilizing variable liquid elevation and laser focal length.
  30. Bredt, James F.; Anderson, Timothy; Russell, David B.; Clark, Sarah L.; DiCologero, Matthew J., Material systems and methods of three-dimensional printing.
  31. Hopkinson, Neil; Erasenthiran, Poonjolai, Method and apparatus for combining particulate material.
  32. Hopkinson, Neil; Erasenthiran, Poonjolai, Method and apparatus for combining particulate material.
  33. Gielis, Johan, Method and apparatus for creating timewise display of widely variable naturalistic scenery on an amusement device.
  34. Earl, Jocelyn M.; Manners, Chris R., Method and apparatus for forming three-dimensional objects using line width compensation with small features retention.
  35. Vermeer, Adrianus Johannes Petrus Maria; Maalderink, Herman Hendrikus; Jamar, Jacobus Hubertus Theodoor; Rijfers, Andries; Vaes, Mark Herman Else, Method and apparatus for layerwise production of a 3D object.
  36. Vermeer, Adrianus Johannes Petrus Maria; Maalderink, Herman Hendrikus; Jamar, Jacobus Hubertus Theodoor; Rijfers, Andries; Vaes, Mark Herman Else, Method and apparatus for layerwise production of a 3D object.
  37. Frasier, Donald J.; Kush, Matthew; Schlienger, Max Eric; Baldwin, Michael, Method and apparatus for production of a cast component.
  38. Frasier, Donald J.; Schlienger, M. Eric; Brady, Guy Allen; Kush, Matthew T.; Vessely, Patrick A., Method and apparatus for production of a cast component.
  39. Frasier, Donald J.; Schlienger, M. Eric; Brady, Guy Allen; Kush, Matthew T.; Vessely, Patrick A., Method and apparatus for production of a cast component.
  40. Frasier, Donald J.; Schlienger, M. Eric; Kush, Matthew T., Method and apparatus for production of a cast component.
  41. Frasier, Donald J.; Schlienger, M. Eric; Vessely, Patrick A., Method and apparatus for production of a cast component.
  42. Hull Charles W. (Arcadia CA), Method and apparatus for production of three-dimensional objects by stereolithography.
  43. Michelle D. Guertin ; Charles W. Hull ; Hop D. Nguyen, Method and apparatus for stereolithographically forming three dimensional objects with reduced distortion.
  44. Gielis, Johan Leo Alfons, Method and apparatus for synthesizing and analyzing patterns.
  45. Gielis, Johan Leo Alfons, Method and apparatus for synthesizing and analyzing patterns utilizing novel "super-formula" operator.
  46. Wildsmith, Christopher; Widman, Michael; Adams, Jonathan P., Method and apparatus of forming a translating multifocal contact lens having a lower-lid contact surface.
  47. Chen, Peng-Yang; Lin, Wen-Ten, Method and apparatus of three-dimensional printing and electronic apparatus.
  48. Partanen Jouni P. ; Smalley Dennis R., Method for controlling exposure of a solidfiable medium using a pulsed radiation source in building a three-dimensional object using stereolithography.
  49. Templeman, Cynthia Gazepis; Scranton, Alec B.; Ficek, Beth Ann; Hoppe, Cynthia, Method for determining the production parameters for a substrate coating process.
  50. Andino, Rafael Victor; Meece, Robert Scott; Rosen, David; Sager, Benay, Method for making opthalmic devices.
  51. Andino,Rafael Victor; Meec,Robert Scott, Method for making opthalmic devices.
  52. Iverson Norma Jean, Method for manufacturing physical objects using precision stereolithography.
  53. Langer Hans,DEX ; Reichle Johannes,DEX, Method for producing a three-dimensional object.
  54. Maguire, Michael Christopher; Baldwin, Michael Dean; Schlienger, Max Eric, Method for producing ceramic stereolithography parts.
  55. Tomimatsu, Shuji; Nishide, Daisuke, Method for producing metal ingot, method for controlling liquid surface, and ultrafine copper alloy wire.
  56. Nguyen Hop D. ; Smalley Dennis R., Method of and apparatus for deriving data intermediate to cross-sectional data descriptive of a three-dimensional object.
  57. Manners, Chris R.; Bhatia, Kabir; Nguyen, Hop D.; Vu Phan, Cathy Yenly; Moussa, Khalil M., Method to reduce differential shrinkage in three-dimensional stereolithographic objects.
  58. Bredt, James F.; Clark, Sarah L.; Uy, Evert F.; DiCologero, Matthew J.; Anderson, Timothy; Tarkanian, Michael; Williams, Derek X., Methods and compositions for three-dimensional printing of solid objects.
  59. Widman, Michael F.; Enns, John B.; Powell, P. Mark; Sites, Peter W., Methods for formation of an ophthalmic lens precursor and lens.
  60. Widman, Michael F.; Enns, John B.; Powell, P. Mark; Sites, Peter W., Methods for formation of an ophthalmic lens precursor and lens.
  61. Widman, Michael F.; Enns, John B.; Powell, P. Mark; Sites, Peter W., Methods for formation of an ophthalmic lens precursor and lens.
  62. Widman, Michael F.; Enns, John B.; Powell, P. Mark; Sites, Peter W., Methods for formation of an ophthalmic lens precursor and lens.
  63. Wood,Alan G.; Farnworth,Warren M.; Watkins,Charles M.; Benson,Peter A., Methods for packaging a plurality of semiconductor dice using a flowable dielectric material.
  64. Adzima, Brian, Methods for stereolithography three-dimensional printing.
  65. Wood, Alan G.; Farnworth, Warren M.; Watkins, Charles M.; Benson, Peter A., Methods of fabricating a microlens including selectively curing flowable, uncured optically trasmissive material.
  66. Wood,Alan G.; Farnworth,Warren M.; Watkins,Charles M.; Benson,Peter A., Methods of forming conductive elements using organometallic layers and flowable, curable conductive materials.
  67. Rolland, Jason P.; Chen, Kai; Poelma, Justin; Goodrich, James; Pinschmidt, Robert; DeSimone, Joseph M.; Robeson, Lloyd M., Methods of producing EPOXY three-dimensional objects from materials having multiple mechanisms of hardening.
  68. Rolland, Jason P.; Chen, Kai; Poelma, Justin; Goodrich, James; Pinschmidt, Robert; DeSimone, Joseph M.; Robeson, Lloyd M., Methods of producing polyurea three-dimensional objects from materials having multiple mechanisms of hardening.
  69. Rolland, Jason P.; Chen, Kai; Poelma, Justin; Goodrich, James; Pinschmidt, Robert; DeSimone, Joseph M.; Robeson, Lloyd M., Methods of producing polyurethane three-dimensional objects from materials having multiple mechanisms of hardening.
  70. Rolland, Jason P.; Chen, Kai; Poelma, Justin; Goodrich, James; Pinschmidt, Robert; DeSimone, Joseph M.; Robeson, Lloyd M., Methods of producing three-dimensional objects from materials having multiple mechanisms of hardening.
  71. Wood,Alan G.; Farnworth,Warren M.; Watkins,Charles M.; Benson,Peter A., Microlenses including a plurality of mutually adhered layers of optically transmissive material and systems including the same.
  72. White, Dawn, Object consolidation through sequential material deposition.
  73. Widman, Michael F.; Enns, John B.; Powell, P. Mark; Sites, Peter W., Ophthalmic lens precursor and lens.
  74. Caratelli, Diego; Gielis, Johan Leo Alfons; Paraforou, Vasiliki; Mescia, Luciano; Bia, Pietro, Patch antenna, method of manufacturing and using such an antenna, and antenna system.
  75. Lawton,John A.; Nebe,William J.; Thommes,Glen A.; Caspar,Jonathan V., Photohardenable epoxy composition.
  76. Flaum, Richard, Photopolymer stamp manufacturing process and preparation system and photopolymer stamp dies.
  77. Flaum, Richard V., Photopolymer stamp manufacturing process and preparation system and photopolymer stamp dies.
  78. Kress, Ekkehard, Polymerization device.
  79. Rolland, Jason P.; Chen, Kai; Poelma, Justin; Goodrich, James; Pinschmidt, Robert; DeSimone, Joseph M.; Robeson, Lloyd M., Polyurea resins having multiple mechanisms of hardening for use in producing three-dimensional objects.
  80. Rolland, Jason P.; Chen, Kai; Poelma, Justin; Goodrich, James; Pinschmidt, Robert; DeSimone, Joseph M.; Robeson, Lloyd M., Polyurethane resins having multiple mechanisms of hardening for use in producing three-dimensional objects.
  81. Venkataraman Ravi, Printer and method of using same to print on thermoplastic medium.
  82. Bishop Raymond J. ; Everett Michael A. ; Chari Arvind ; Ferris Timothy A., Rapid prototyping apparatus with enhanced thermal and/or vibrational stability for production of three dimensional objects.
  83. Kulkarni Rajeev B. ; Manners Chris R., Rapid prototyping method and apparatus with simplified build preparation for production of three dimensional objects.
  84. Venkataraman Ravi, Releasable photopolymer printing plate and method of forming same.
  85. Hanna, Stephen D.; Moussa, Khalil M., Selective control of mechanical properties in stereolithographic build style configuration.
  86. Chris R. Manners ; Michelle D. Guertin ; Hop D. Nguyen ; Jouni P. Partanen ; Nansheng Tang ; Michael A. Everett, Stereolithographic method and apparatus for production of three dimensional objects using multiple beams of different diameters.
  87. Nguyen Hop D. ; Manners Chris R., Stereolithographic method and apparatus for production of three dimensional objects using recoating parameters for groups of layers.
  88. Beers Ross D. ; Partanen Jouni P. ; Tang Nansheng, Stereolithographic method and apparatus with enhanced control of prescribed stimulation and application.
  89. Beers Ross D. ; Chari Arvind ; Partanen Jouni P. ; Tang Nansheng, Stereolithographic method and apparatus with enhanced control of prescribed stimulation production and application.
  90. Beers Ross D. ; Guertin Michelle D., Stereolithographic method and apparatus with enhanced control of prescribed stimulation production and application.
  91. Everett Michael A. ; Beers Ross D., Stereolithographic method and apparatus with enhanced control of prescribed stimulation production and application.
  92. Kerekes Thomas A. ; Beers Ross D., Stereolithographic method and apparatus with enhanced control of prescribed stimulation production and application.
  93. Farnworth, Warren M., Stereolithographic method for applying materials to electronic component substrates and resulting structures.
  94. Bloomstein, Theodore M.; Kunz, Roderick R.; Palmacci, Stephen T., Stereolithographic patterning by variable dose light delivery.
  95. Bloomstein, Theodore M.; Kunz, Roderick R.; Palmacci, Stephen T., Stereolithographic patterning with interlayer surface modifications.
  96. Bloomstein, Theodore M.; Kunz, Roderick R.; Palmacci, Stephen T., Stereolithographic patterning with variable size exposure areas.
  97. Mark, Gregory Thomas, Supports for sintering additively manufactured parts.
  98. Mark, Gregory Thomas, Supports for sintering additively manufactured parts.
  99. Mark, Gregory Thomas, Supports for sintering additively manufactured parts.
  100. Mark, Gregory Thomas, Supports for sintering additively manufactured parts.
  101. Mark, Gregory Thomas, Supports for sintering additively manufactured parts.
  102. Vermeer, Adrianus Johannes Petrus Maria; Maalderink, Herman Hendrikus; Jamar, Jacobus Hubertus Theodoor; Rijfers, Andries; Vaes, Mark Herman Else; Bauman, Brian; Thomas, Richard, System and method for layerwise production of a tangible object.
  103. Gothait, Hanan, System and method for three dimensional model printing.
  104. Gothait,Hanan; Napadensky,Eduardo; Zeytoun,Igal, System and method for three dimensional model printing.
  105. Webster, Clayton P., Systems, methods and apparatus for generating and modifying support structures.
  106. Bredt, James F.; Clark, Sarah L.; Williams, Derek X.; DiCologero, Matthew J., Thermoplastic powder material system for appearance models from 3D printing systems.
  107. Bredt,James F.; Anderson,Timothy C.; Russell,David B., Three dimensional printing material system and method.
  108. Williams, Derek X., Three dimensional printing material system and method using peroxide cure.
  109. Giller, Eugene; Williams, Derek X., Three dimensional printing material system and method using plasticizer-assisted sintering.
  110. Giller, Eugene; Williams, Derek X., Three dimensional printing material system and method using plasticizer-assisted sintering.
  111. Alam, Amir; Bredt, James F.; Clark, Nanette; Flynn, Mary; Sprauer, Jean; Williams, Derek X., Three-dimensional printing material system with improved color, article performance, and ease of use.
  112. Daily Carl S. ; Lees Daniel A. ; McKitterick Dennis Donald, Truss structure design.
  113. White, Dawn, Ultrasonic object consolidation.
  114. Hembree, David R.; Farnworth, Warren M., Underfill and encapsulation of semiconductor assemblies with materials having differing properties.
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