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        1. Industry applications

          3D scanning of silverware

          Silver 3D scanning case

          Traditional silverware has many production steps and is cumbersome to work. It takes a long time for the master to make it. Use the 3D scanner to scan the 3D data of the silverware, and make any enlarged and reduced version of the silverware based on the acquired 3D data. The designer can also customize the jewelry for them.

          Practical problems

          1. The customer has very high precision requirements for the three-dimensional data of the silverware. The overall error needs to be controlled below 0.02mm to provide data support for subsequent product design.

          2. the traditional measurement method, the silver jewelry data is limited and can not accurately express the three-dimensional data of the surface, can not carry out the secondary design of the silver decoration later.

          Hualang solutions



          The customer extracts the 3D data of the existing silverware through the 3D scanner, and performs 3D data processing through the reverse software. The processed silverware data can be imported into the 3D printer for printing, and can also be designed in secondary design software such as Pro/E and UG.

          With the 3D scanner HL-3DM, you can do:

          1. Ensure the perfect embodiment of the details of the silverware

          2. greatly improve the designer's design efficiency

          3. Do not cause any physical damage to the silver sample.

          Therefore, the reverse design engineer provides a professional solution - 3D scanner HL-3DM (quickly obtain high-precision 3D data of silverware) + reverse design software Geomagic Studio (convert silver point cloud data to triangular mesh surface data) + Pro / E, UG and other mainstream design software for post-processing / direct 3D printing, speeding up the secondary design and production efficiency of silver jewelry.


          Silver STL data

          Obtaining a wide range of silverware 3D data for follow-up applications:
          1. Product improvement;
          2. Rapid prototyping;

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