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[미국특허] Method and apparatus for production of high resolution three-dimensional objects by stereolithography 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G06F-015/46
  • B29C-035/08
  • B29C-067/00
출원번호 US-0331644 (1989-03-31)
발명자 / 주소
  • Hull Charles W. (Santa Clarita CA) Spence Stuart T. (So. Pasadena CA) Albert David J. (Aptos CA) Smalley Dennis R. (Baldwin Park CA) Harlow Richard A. (Marina Del Rey CA) Stinebaugh Phil (Sunnyvale C
출원인 / 주소
  • 3D Systems, Inc. (Valencia CA 02)
인용정보 피인용 횟수 : 93  인용 특허 : 0

초록

An improved stereolithography system for generating a three-dimensional object 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, pa

대표청구항

A system for producing a three-dimensional object comprising: means for deriving data descriptive of cross-sections of the object from data descriptive of the object, including at least some skin data descriptive of at least part of at least one cross-section; a container containing at least in part

이 특허를 인용한 특허 (93) 인용/피인용 타임라인 분석

  1. Sanders ; Jr. Royden C. ; Forsyth John L. ; Philbrook Kempton F., 3-D model making.
  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. Russell,David; Hernandez,Andres; Kinsley,Joshua; Berlin,Andrew, Apparatus and methods for 3D printing.
  4. Davidson, Thomas, Apparatus and methods for handling materials in a 3-D printer.
  5. Davidson, Thomas, Apparatus and methods for handling materials in a 3-D printer.
  6. Davidson, Thomas; Hernandez, Andres T.; Kinsley, Joshua; Sanchez, Jennifer, Apparatus and methods for handling materials in a 3-D printer.
  7. Davidson, Thomas; Villegas, Robert, Apparatus and methods for handling materials in a 3-D printer.
  8. Hickerson,Kevin P.; Bedal,Bryan; Diephuis,Richard J., Apparatus for three dimensional printing using image layers.
  9. Phillips, John; Saini, Varinder Singh; Gafken, Scott; Urban, Richard Raymond; Susalla, Paul Christopher; Ma, Lixing; Hu, Yuan-Ping; Boren, David Michael, Automated cad process for creating mold packages.
  10. Guertin, Michelle D.; Manners, Chris R., Automatic determination and selection of build parameters for solid freeform fabrication techniques based on automatic part feature recognition.
  11. Saarela, Timothy; Abernathy, Kevin; Wells, Richard; Carbonera, Carlos, Bezel for a ring.
  12. Snead David E. ; Smalley Dennis R. ; Cohen Adam L. ; Allison Joseph W. ; Vorgitch Thomas J. ; Chen Thomas P., Boolean layer comparison slice.
  13. 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.
  14. 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.
  15. 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.
  16. Donaldson, Patricia J.; Chopra, Naveen; Folkins, Jeffrey J., Digital manufacturing system for printing three-dimensional objects on a rotating core.
  17. Donaldson, Patricia J.; Folkins, Jeffrey J., Digital manufacturing system for printing three-dimensional objects on a rotating surface.
  18. Yu, Ching-Fang; Hsu, Ting-Hao; Chin, Sheng-Chi, EUV mask and method for forming the same.
  19. Hull, Charles W.; Partanen, Jouni P.; Sperry, Charles R.; Dunne, Patrick; Scott, Suzanne M.; McNamara, Dennis F.; Manners, Chris R., Edge smoothness with low resolution projected images for use in solid imaging.
  20. Hull, Charles W.; Partanen, Jouni P.; Sperry, Charles R.; Dunne, Patrick; Scott, Suzanne M.; McNamara, Dennis F.; Manners, Chris R., Edge smoothness with low resolution projected images for use in solid imaging.
  21. Jouni P. Partanen ; Nansheng Tang ; Xingkun Wu, Electronic spot light control.
  22. Partanen, Jouni P.; Wu, Xingkun; Reynolds, Gary; Hug, William F., Extended lifetime frequency conversion crystals.
  23. Xingkun Wu ; Jouni P. Partanen ; William F. Hug ; Hamid Hemmati, Laser with absorption optimized pumping of a gain medium.
  24. Wu Xingkun ; Partanen Jouni P. ; Hug William F. ; Hemmati Hamid, Laser with optimized coupling of pump light to a gain medium in a side-pumped geometry.
  25. Farnworth, Warren M., Layer thickness control for stereolithography utilizing variable liquid elevation and laser focal length.
  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. Bredt, James F.; Anderson, Timothy; Russell, David B.; Clark, Sarah L.; DiCologero, Matthew J., Material systems and methods of three-dimensional printing.
  30. Buzanoski Edmund L., Mechanism for removing resinous sludge from a liquid resin vat.
  31. Gielis, Johan, Method and apparatus for creating timewise display of widely variable naturalistic scenery on an amusement device.
  32. Earl, Jocelyn M.; Manners, Chris R., Method and apparatus for forming three-dimensional objects using line width compensation with small features retention.
  33. 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.
  34. 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.
  35. Frasier, Donald J.; Kush, Matthew; Schlienger, Max Eric; Baldwin, Michael, Method and apparatus for production of a cast component.
  36. Frasier, Donald J.; Schlienger, M. Eric; Brady, Guy Allen; Kush, Matthew T.; Vessely, Patrick A., Method and apparatus for production of a cast component.
  37. Frasier, Donald J.; Schlienger, M. Eric; Brady, Guy Allen; Kush, Matthew T.; Vessely, Patrick A., Method and apparatus for production of a cast component.
  38. Frasier, Donald J.; Schlienger, M. Eric; Kush, Matthew T., Method and apparatus for production of a cast component.
  39. Frasier, Donald J.; Schlienger, M. Eric; Vessely, Patrick A., Method and apparatus for production of a cast component.
  40. Hull Charles W. ; Spence Stuart T. ; Albert David J. ; Smalley Dennis R. ; Harlow Richard A. ; Stinebaugh Phil ; Tarnoff Harry L. ; Nguyen Hop D. ; Lewis Charles W. ; Vorgitch Tom J. ; Remba David Z., Method and apparatus for production of high resolution three-dimensional objects by stereolithography.
  41. Hull, Charles W.; Spence, Stuart T.; Albert, David J.; Smalley, Dennis R.; Harlow, Richard A.; Stinebaugh, Phil; Tarnoff, Harry L.; Nguyen, Hop D.; Lewis, Charles W.; Vorgitch, Tom J.; Remba, David Z, Method and apparatus for production of high resolution three-dimensional objects by stereolithography.
  42. Michelle D. Guertin ; Charles W. Hull ; Hop D. Nguyen, Method and apparatus for stereolithographically forming three dimensional objects with reduced distortion.
  43. Gielis, Johan Leo Alfons, Method and apparatus for synthesizing and analyzing patterns.
  44. Gielis, Johan Leo Alfons, Method and apparatus for synthesizing and analyzing patterns utilizing novel "super-formula" operator.
  45. Thomas Stan W. ; Key Roger D. ; Fluegel Kyle G. ; Jackson Willie K. ; Elwell Keith D. ; White Gary L., Method for manufacturing fiber-reinforced parts utilizing stereolithography tooling.
  46. Iverson Norma Jean, Method for manufacturing physical objects using precision stereolithography.
  47. Maguire, Michael Christopher; Baldwin, Michael Dean; Schlienger, Max Eric, Method for producing ceramic stereolithography parts.
  48. Nguyen Hop D. ; Smalley Dennis R., Method of and apparatus for deriving data intermediate to cross-sectional data descriptive of a three-dimensional object.
  49. Illston, Trevor John, Method of forming an article.
  50. Tanaka Kazuhiko,JPX ; Uchiyama Mitsuo,JPX ; Shibazaki Teishirou,JPX ; Fukumura Teruo,JPX, Method of producing a three-dimensional object.
  51. 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.
  52. Fogel, Effi; Adler, Arik Maman; Basil, Zohar, Methods and system for enabling printing three-dimensional object models.
  53. 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.
  54. 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.
  55. 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.
  56. Manners, Chris R.; Kulkarni, Rajeev B., Micro-slicing contour smoothing technique.
  57. 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.
  58. Carbonera, Carlos D., Modeling using thin plate spline technology.
  59. Zeng, Jun; Del Angel, Ana; White, Scott; Cortes I Herms, Sebastia, Object data representations for additive manufacturing.
  60. 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.
  61. Miller, Todd W., Printing system with retractable screen assembly.
  62. 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.
  63. Kulkarni Rajeev B. ; Manners Chris R., Rapid prototyping method and apparatus with simplified build preparation for production of three dimensional objects.
  64. Dennis R. Smalley ; Thomas J. Vorgitch ; Chris R. Manners ; Jocelyn M. Earl ; Bryan J. L. Bedal ; Charles W. Hull ; Stacie L. VanDorin, Simultaneous multiple layer curing in stereolithography.
  65. Holmboe, Scott B.; Reynolds, Gary L.; Stonesmith, Matthew K.; Hull, Charles W.; Reichental, Abraham N., Stereolithographic apparatus.
  66. 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.
  67. Nguyen Hop D. ; Manners Chris R., Stereolithographic method and apparatus for production of three dimensional objects using recoating parameters for groups of layers.
  68. Beers Ross D. ; Partanen Jouni P. ; Tang Nansheng, Stereolithographic method and apparatus with enhanced control of prescribed stimulation and application.
  69. Beers Ross D. ; Chari Arvind ; Partanen Jouni P. ; Tang Nansheng, Stereolithographic method and apparatus with enhanced control of prescribed stimulation production and application.
  70. Beers Ross D. ; Guertin Michelle D., Stereolithographic method and apparatus with enhanced control of prescribed stimulation production and application.
  71. Everett Michael A. ; Beers Ross D., Stereolithographic method and apparatus with enhanced control of prescribed stimulation production and application.
  72. Kerekes Thomas A. ; Beers Ross D., Stereolithographic method and apparatus with enhanced control of prescribed stimulation production and application.
  73. Farnworth, Warren M., Stereolithographic method for applying materials to electronic component substrates and resulting structures.
  74. Burhop, Mark R.; Madeley, David; Musuvathy, Suraj; Arisoy, Erhan; Slavin, Edward; Bank, Hasan, Support structures for additive manufacturing of solid models.
  75. Levy, Avraham; Regev, Keren; Rottman, Claudio; Hirsch, Shai, System and method for additive manufacturing of an object.
  76. 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.
  77. Wilde, John C.; Oskowski, Alan D., Textured surfaces.
  78. Wilde, John Christopher; Oskowski, Alan D., Textured surfaces.
  79. Bredt, James F.; Clark, Sarah L.; Williams, Derek X.; DiCologero, Matthew J., Thermoplastic powder material system for appearance models from 3D printing systems.
  80. Chen, Peng-Yang; Ding, Ming-Hsiung, Three dimensional printing apparatus and printing method thereof.
  81. Bredt,James F.; Anderson,Timothy C.; Russell,David B., Three dimensional printing material system and method.
  82. Williams, Derek X., Three dimensional printing material system and method using peroxide cure.
  83. Giller, Eugene; Williams, Derek X., Three dimensional printing material system and method using plasticizer-assisted sintering.
  84. Giller, Eugene; Williams, Derek X., Three dimensional printing material system and method using plasticizer-assisted sintering.
  85. Masumoto, Jun, Three-dimensional model data generation device, method and program.
  86. Davidson, Thomas; Phillips, Robert A.; Hernandez, Andres T.; Russell, David B.; Roche, Kevin; Zengerle, III, Walter H.; Berlin, Andrew; Kinsley, Joshua P.; Sweet-Block, Benjamin Daniel; Kisai, Darul, Three-dimensional printer.
  87. Davidson, Thomas; Phillips, Robert A.; Russell, David B., Three-dimensional printer.
  88. Davidson,Thomas; Phillips,Robert A.; Hernandes,Andres T.; Russell,David B.; Roche,Kevin; Zengerle, III,Walter H.; Berlin,Andrew; Kinsley,Joshua P.; Sweet Block,Benjamin Daniel; Kisai,Darul, Three-dimensional printer.
  89. 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.
  90. Daily Carl S. ; Lees Daniel A. ; McKitterick Dennis Donald, Truss structure design.
  91. Hembree, David R.; Farnworth, Warren M., Underfill and encapsulation of semiconductor assemblies with materials having differing properties.
  92. Beard Douglas R. (Eleva WI) Phelps Andrew E. (Eau Claire WI) Woodmansee Michael A. (Eau Claire WI) Blewett Richard G. (Altoona WI) Lohman Jeffrey A. (Eau Claire WI) Silbey Alexander A. (Eau Claire WI, Vector/scalar processor with simultaneous processing and instruction cache filling.
  93. Kerekes, Thomas Alan; Partanen, Jouni P.; Chen, Yong; Hull, Charles W., Wall smoothness, feature accuracy and resolution in projected images via exposure levels in solid imaging.

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