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[Example] Reverse engineering based on 3D scan data.

I will introduce two methods of reverse engineering based on 3D scan data.

There are various methods for reverse engineering, and the choice of method affects the output data. Therefore, it is necessary to select the optimal method according to the purpose of data use and required accuracy. We will introduce two methods of reverse engineering based on 3D scan data, along with their procedures and characteristics. <Reverse Engineering Based on Cross-Sectional Contour Shape> [Step 1] Acquisition of shape data (point cloud data) using a laser scanner. [Step 2] Polygonization and mesh correction. [Step 3] Modeling is performed using 3D modeling software and 3D CAD software. A sketch of the cross-section is created on a reference plane, and solid shapes are generated using functions such as extrusion and rotation. <Reverse Engineering Based on Surface Shape> [Step 1] Acquisition of shape data (point cloud data) using a laser scanner. [Step 2] Polygonization and mesh correction. [Step 3] Modeling is performed using 3D modeling software and 3D CAD software. A surface that fits the mesh to the surface shape is created for all surfaces to generate a solid shape.

  • Processing Contract
  • Contract measurement
  • 3D CAD

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[Example] High-Precision Reverse Engineering (Simple Shape Work)

We will introduce a method for reverse engineering simple-shaped workpieces with higher precision.

Commonly used methods for obtaining point cloud data for reverse engineering include 3D laser scanners and X-ray CT devices. However, regardless of how precise the equipment used is, an error of approximately ±0.05 to 0.1 mm occurs during data acquisition. Since the scan data is based on these initial errors, it can be said that achieving highly reproducible reverse engineering is nearly impossible. To improve reproducibility, there are methods to correct CAD drawings by incorporating actual measurements using calipers or micrometers, but there are limitations to the shapes and dimensional accuracy that can be measured with small tools. Our company has been providing measurement services using high-precision measuring instruments such as three-dimensional measuring machines and shape measuring machines for many years, enabling us to perform high-precision reverse engineering leveraging our advanced measurement technology. In this blog, we will introduce high-precision reverse engineering methods for simple-shaped workpieces.

  • Processing Contract
  • Contract measurement
  • 3D CAD

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