DocumentCode :
2024570
Title :
The integration of 3D digitizing and LCD panel display based rapid prototyping system for manufacturing automation
Author :
Luo, Ren C. ; Tzou, Jyh Hwa ; Chang, Yi Cheng
Author_Institution :
Dept. of Electr. Eng., Nat. Chung Cheng Univ., Chia-Yi, Taiwan
Volume :
2
fYear :
2000
fDate :
2000
Firstpage :
1255
Abstract :
3D digitization is the process of developing a CAD model and a manufacturing database from an existing part. This process is appealing because it could be difficult to create models of complex objects using CAD software without the aid of a 3D digitizer. The 3D CAD models that are generated from the scanned data can be edited and modified in the CAD system. The 3D model can also be put in multimedia or animation software as a learning or assembly aid. Rapid prototyping is widely known as being able to fabricate 3D objects with complex geometric shapes. Rapid prototyping can shorten the product development cycle and improve the design process by providing rapid and effective feedback to the designer, thus helping a company to keep ahead in a rapidly changing market. In the application of concurrent engineering and reverse engineering, the integration of 3D digitization and rapid prototyping can greatly shorten the product development cycle time. The 3D CAD model from the 3D digitizer can be modified by CAD software and the prototype can be manufactured using rapid prototyping to save lots of time and money. In a 3D digitizing system, we use a 3D laser scanner - Modelmaker - which combines a manually-operated arm with 6 degrees of freedom, a stripe 3D laser scanner and a contact probe. This fast and flexible 3D digitizer can produce complex models. By using post-processing software and a CAD system, an STL file can be produced, so we can produce a physical part by using the rapid prototyping system. In addition, this paper presents software and hardware technologies to build an LCD panel display-based rapid prototyping system. Software design for the system includes a slicing algorithm, LCD photomask display process, user interface and motion control program. The hardware configuration of the architecture includes an LCD photomask, optical system, z-axis elevator, resin supply system and PC-based control system
Keywords :
analogue-digital conversion; concurrent engineering; factory automation; industrial manipulators; liquid crystal displays; rapid prototyping (industrial); 3D digitization; CAD model; LCD panel display-based rapid prototyping system; LCD photomask; Modelmaker; PC-based control system; STL file; animation software; assembly aid; complex geometric shapes; concurrent engineering; contact probe; display process; learning aid; manually operated arm; manufacturing automation; manufacturing database; motion control; multimedia software; optical system; post-processing software; product development cycle; rapidly changing market; resin supply system; reverse engineering; slicing algorithm; stripe 3D laser scanner; user interface; z-axis elevator; Computer aided manufacturing; Design automation; Hardware; Laser modes; Liquid crystal displays; Product development; Prototypes; Software prototyping; Three dimensional displays; Virtual manufacturing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics Society, 2000. IECON 2000. 26th Annual Confjerence of the IEEE
Conference_Location :
Nagoya
Print_ISBN :
0-7803-6456-2
Type :
conf
DOI :
10.1109/IECON.2000.972302
Filename :
972302
Link To Document :
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