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Ambu AS
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ibidi GmbH
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Straumann GmbH
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ANSYS inc
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Image Search Results
Journal: International Journal of Implant Dentistry
Article Title: The impact of impression coping geometrical design on accuracy of implant impressions: an experimental study
doi: 10.1186/s40729-020-00256-0
Figure Lengend Snippet: Horizontal measurement in the open and closed tray impression techniques
Article Snippet: ,
Techniques:
Journal: International Journal of Implant Dentistry
Article Title: The impact of impression coping geometrical design on accuracy of implant impressions: an experimental study
doi: 10.1186/s40729-020-00256-0
Figure Lengend Snippet: Effect of implant angulation on accuracy in the closed tray impression coping design in the horizontal measurements
Article Snippet: ,
Techniques:
Journal: International Journal of Implant Dentistry
Article Title: The impact of impression coping geometrical design on accuracy of implant impressions: an experimental study
doi: 10.1186/s40729-020-00256-0
Figure Lengend Snippet: Effect of impression coping design and implant angulation on accuracy
Article Snippet: ,
Techniques:
Journal: International Journal of Implant Dentistry
Article Title: The impact of impression coping geometrical design on accuracy of implant impressions: an experimental study
doi: 10.1186/s40729-020-00256-0
Figure Lengend Snippet: Effect of impression coping design on vertical discrepancy
Article Snippet: ,
Techniques:
Journal: International Journal of Implant Dentistry
Article Title: The impact of impression coping geometrical design on accuracy of implant impressions: an experimental study
doi: 10.1186/s40729-020-00256-0
Figure Lengend Snippet: Effect of implant angulation of the closed tray coping designs on the vertical discrepancy
Article Snippet: ,
Techniques:
Journal: Materials
Article Title: Transverse Deflection for Extreme Ultraviolet Pellicles
doi: 10.3390/ma16093471
Figure Lengend Snippet: Schematic sketch of transverse deflection in a rectangular pellicle with clamped edges due to pressure: ( a ) a pellicle frame concept , ( b ) a schematic sketch of a mask and pellicle, and ( c ) schematic pellicles without pressure and with pressure using ANSYS. L is width length of a pellicle and w m a x is maximum transverse deflection of a pellicle.
Article Snippet: presents maximum transverse deflections in
Techniques:
Journal: Materials
Article Title: Transverse Deflection for Extreme Ultraviolet Pellicles
doi: 10.3390/ma16093471
Figure Lengend Snippet: Maximum transverse deflections in a rectangular pellicle with clamped edges: ( a ) a 8 m × 4 m × 0.2 m plate structure, ( b ) a three-dimensional plot of deflection using a Python program, and plots of the schematic mesh and the transverse deflection contours using ( c ) ANSYS and ( d ) SIEMENS, respectively.
Article Snippet: presents maximum transverse deflections in
Techniques:
Journal: Materials
Article Title: Transverse Deflection for Extreme Ultraviolet Pellicles
doi: 10.3390/ma16093471
Figure Lengend Snippet: Maximum transverse deflections in a rectangular pellicle of 10 m m × 10 m m × t h i c k n e s s ( t ) with clamped edges using a Python program: ( a , c ) three-dimensional contours of deflection for silicon nitride ( S i N x ) rectangular plates at thickness t = 54 - n m and 540 - n m , and ( b ) and ( d ) plots of deflection vs. pressure at t = 54 - n m and 540 - n m , respectively. The thickness ratio of width length ( t / L ) is 0.0000054 at t = 54 - n m and t / L is 0.000054 at 540 - n m .
Article Snippet: presents maximum transverse deflections in
Techniques:
Journal: Materials
Article Title: Transverse Deflection for Extreme Ultraviolet Pellicles
doi: 10.3390/ma16093471
Figure Lengend Snippet: Maximum transverse deflections in a rectangular pellicle ( 10 m m × 10 m m × t h i c k n e s s ( t ) ) with clamped edges using ANSYS: for a silicon nitride ( S i N x ) structure of 10 m m × 10 m m × 5.4 μ m , ( a ) a schematic mesh and ( b ) a transverse deflection contour at a pressure of 50 P a , and for various materials, plots of maximum transverse deflection vs. pressure at ( c ) t = 5.4 μ m ( t / L = 0.00054 ) and ( d ) t = 54 μ m ( t / L = 0.0054 ) .
Article Snippet: presents maximum transverse deflections in
Techniques: