IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0644465
(2000-08-23)
|
우선권정보 |
DE-0041905 (1999-09-02) |
발명자
/ 주소 |
- Eichele, Gregor
- Herzig, Uwe
|
출원인 / 주소 |
- Max-Planck-Gesellschaft zur Forderung der Wissenschaften e.V.
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
13 인용 특허 :
11 |
초록
▼
A specimen chamber (10) for the liquid treatment of at least one specimen (90) comprises a base plate (20) and a carrier plate (30), between which a gap-formed accommodation space is formed for the specimen, whereby the base plate and carrier plate (20, 30) are held together with a clamping device (
A specimen chamber (10) for the liquid treatment of at least one specimen (90) comprises a base plate (20) and a carrier plate (30), between which a gap-formed accommodation space is formed for the specimen, whereby the base plate and carrier plate (20, 30) are held together with a clamping device (60) in a frame arrangement (50), and in order to form the accommodation chamber are separated from one another by spacer elements (40), and the base plate (20) features, at an intake (11) on the side pointing towards the carrier plate (30), a tapering shape in order to form a wedge-shaped liquid reservoir (21).
대표청구항
▼
A specimen chamber (10) for the liquid treatment of at least one specimen (90) comprises a base plate (20) and a carrier plate (30), between which a gap-formed accommodation space is formed for the specimen, whereby the base plate and carrier plate (20, 30) are held together with a clamping device (
A specimen chamber (10) for the liquid treatment of at least one specimen (90) comprises a base plate (20) and a carrier plate (30), between which a gap-formed accommodation space is formed for the specimen, whereby the base plate and carrier plate (20, 30) are held together with a clamping device (60) in a frame arrangement (50), and in order to form the accommodation chamber are separated from one another by spacer elements (40), and the base plate (20) features, at an intake (11) on the side pointing towards the carrier plate (30), a tapering shape in order to form a wedge-shaped liquid reservoir (21). ww.msoe.edu/rpc/sla.htm (Undated). The Selective Laser Sintering Process Third-Generation Desk Top Manufacturing, DTM Corporation, Austin, TX, (undated). Scott Hill, Selective Laser Sintering: Understanding and Applying the Technology, Oct. 23, 1990, Presented to: The First National Conference on Desktop Manufacturing, Cambridge, MA. Rapid Prototyping Systems, The Solider Solution for Prototyping and Manufacturing, Jan. 11, 1992, Cubital Ltd. Preliminary Product Data, Cibatool SL, XB 5170, 3D Systems, Inc. (Undated). Cibatool SL 5180, 3D Systems, Inc., Ciba-Geigy Corporation, 1994. SLS Model 125, DTM Corporation, Austin, TX, 1989. Dr. Paul Jacobs, Stereolithography 1993: Epoxy Resins, Improved Accuracy & Investment Casting, 3D Systems, Inc., Valencia, CA. Dr. Adrian Schulthess, New Resin Developments for Stereolithography, Rapid Prototyping and Manufacturing Conference '94, Apr. 26, 1994. William E. Boyes, Low Cost Jigs Fixtures & Gauges for Limited Production, Chapter 10, Plastic Tool Construction, Society of Manufacturing Engineers, pp. 157-183, (undated). Application Brief, Nylon Material Properties, DTM Corporation, (undated). Jim Tobin, Chris Schneider, Bob Pennisi and Steve Hunt, Rapid Sterolithography Molds, May 15, 1992, vol. 15, p. 38, Motorola Inc. Technical Developments. V.R. Gervasi and R.S. Crockett, Composites With Gradient Properties From Solid Freeform Fabrication, Rapid Prototyping Center, Aug. 10, 1998, pp. 729-735, Milwaukee School of Engineering, Solid Freeform Fabrication Symposium. Eric Fodran, Martin Koch and Unny Menon, Mechanical and Dimensional Characteristics of Fused Deposition Modeling Build Styles, Aug. 12, 1996, pp. 419-442, Solid Freeform Fabrication Symposium. Richard Hague and Phill Dickens, Finite Element Analysis & Strain Gauging of the Stereolithography/Investment Casting System, Aug. 12, 1996, pp. 523-537, Solid
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