3D Scanner Application - Solutionix

 
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3D scanning solutions to the industry

our system provides high precision by white light measurement technology, enhanced detail with
high-resolution twin-camera and fast and easy process throughout the automation.

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Reverse Engineering
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  Motor bike fender
Dental Application
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Motor bike fender
ARTA Engineering Complex is an engineering service provider which provides design and molding services to customers in Iran. This company used to out source all scanning services, and has spent considerable resources. But lately, they terminated this by introducing Rexcan III into the working process and scan dozens of parts in-house every month, which greatly saved both time and money.
Besides, the quality of the 3D scan data obtained with the Rexcan III noticeably surpasses previously out sourced ones, in terms of edge data sharpness, accuracy, and data completeness. Now ARTA Engineering Complex is very satisfied with the improved quality of their services and reduced investment.
3D Measurement with Rexcan III
 
 
 
3D measurement
with Rexcan III
 
3D scan data obtain by Rexcan III
Attach 5 ~ 6 reference targets on lateral sides of both front and rear parts of the fender for data auto-alignment, and scan the front and the rear parts with Rexcan III separately.
2 data groups (front part and rear part) will be aligned automatically using reference targets in the ezScan software.
Make the 3D scan data into a single triangulation mesh with ‘Batch processing’ function, and export it to .STL format.
With Rexcan III, you can get data with high accuracy, high resolution with low noise at a high speed, which is ensured by its H/W technique and the algorithm in ezScan, hence the high quality of the exported STL data, which plays the primary important part in fine reverse engineering process.
Reverse engineering process
 
 
 
Reverse engineering software
 
Surface generation with points
 
Trimming with surfaces
Load scan data (.STL format) into the reverse design software.
Define the plane and its axis for coordinating the reference axis with them.
Fit the point data to create surfaces
Trim those surfaces for obtaining the complete 3D surface.
Add specific features on the 3D model such as holes and patterns to generate the final surface.
Convert the surface which was generated in the previous step into a model for mold production.
 
 
Completed 3D CAD data
 
die machined with CAD data in the previous step
The 3D data result from above processes can be used for restoring worn molds, analyzing distortions, benchmarking, and RP modeling.
- We would like to thank ARTA Engineering Complex (www.psarta.com) for this application material they provided us. -
 
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