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Tool path planning process for component by layered manufacture 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G06F-019/00
  • B28B-003/10
출원번호 US-0657134 (2000-09-07)
발명자 / 주소
  • Jamalabad, Vikram R.
  • Chard, Jeffrey A.
  • Gasdaska, Charles J.
출원인 / 주소
  • Honeywell International Inc.
대리인 / 주소
    Fredrick Kris T.
인용정보 피인용 횟수 : 22  인용 특허 : 42

초록

Methods for improving the manufacture of objects made by layered manufacturing techniques through improved tool path generation. A vertex improvement aspect improves tool paths used to form vertices. Outer perimeter vertices can be improved by automatically creating an outer boundary reflecting the

대표청구항

1. A method for generating additive tool paths to form a convex layer portion by layered manufacturing, wherein said convex layer portion has a outer perimeter defined by a perimeter first leg portion coupled to a perimeter vertex portion coupled to a perimeter second leg portion, wherein said perim

이 특허에 인용된 특허 (42)

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  31. Greul Mathias (Bremen DEX) Staskewitsch Ewald (Osterholz-Schambeck DEX) Steger Wilhelm (Stuttgart DEX) Pintat Theo (Ritterhude DEX) Geiger Martin (Stuttgart DEX) Melchior Klaus (Besigheim DEX), Process and apparatus for the free-forming manufacture of three dimensional components of predetermined shape.
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  42. Pomerantz Itzchak (Kefar Sava ILX) Gilad Shalev (Hod Hasharon ILX) Dollberg Yehoshua (Tel Aviv ILX) Ben-Ezra Barry (Ramat Hasharon ILX) Sheinman Yehoshua (Tel Aviv ILX) Barequet Gill (Herzlia ILX) Na, Three dimensional modelling apparatus.

이 특허를 인용한 특허 (22)

  1. Zhuang, Chuan-Sheng; Lin, Ching-Chih; Lin, Steven; Tai, Wei-Lun; Tseng, Wen-Peng; Horng, Ji-Bin, Device and method for powder distribution and additive manufacturing method using the same.
  2. Coleman, Glenn; Sherbrooke, Evan C., High performance milling.
  3. Coleman, Glenn; Sherbrooke, Evan C., High performance milling.
  4. Sherbrooke, Evan C.; Coleman, Glenn, High performance multi-axis milling.
  5. Priedeman, Jr.,William R.; Crump,Steven Scott, Layered deposition bridge tooling.
  6. Page, James Sherwood, Material deposition systems with four or more axes.
  7. Holzwarth, Donald J., Method for building three-dimensional objects with extrusion-based layered deposition systems.
  8. Holzwarth, Donald J., Method for building three-dimensional objects with extrusion-based layered deposition systems.
  9. Holzwarth, Donald J., Method for building three-dimensional objects with thin wall regions.
  10. Heide,Erik K.; Holzwarth,Donald J., Method for optimizing spatial orientations of computer-aided design models.
  11. Sherbrooke, Evan C.; Coleman, Glenn, Non-concentric milling.
  12. Sherbrooke, Evan C.; Coleman, Glenn, Non-concentric milling.
  13. Tang, Wei-Pai; Johnson, Brice; Gonsor, Daniel Edward, Optimizing non-productive part motion in an automated tape laydown machine.
  14. Valade, Cédric T.; Ionascu, Felicia G., Printing system for printing an object having a surface of varying height.
  15. Hopkins, Paul E.; Holzwarth, Donald J., Seam concealment for three-dimensional models.
  16. Hopkins, Paul E.; Holzwarth, Donald J., Seam concealment for three-dimensional models.
  17. Hopkins, Paul E.; Holzwarth, Donald J., Seam concealment for three-dimensional models.
  18. Burhop, Mark R.; Madeley, David; Musuvathy, Suraj; Arisoy, Erhan; Slavin, Edward; Bank, Hasan, Support structures for additive manufacturing of solid models.
  19. Zinniel, Robert L., Surface-treatment method for rapid-manufactured three-dimensional objects.
  20. Krause, Gregory Thomas, System, method, and apparatus for repair of components.
  21. Page, James Sherwood, Systems and methods for improved 3D printing.
  22. Burton, Gregory, Toolpath planning process for conductive materials.
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