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The appearance details and shape accuracy of animal toys are key to attracting consumers. Customers need to collect 3D data of two animal toys and check machining errors by comparing them with the processing model in 3D to control product quality. Since the toys have rich surface details and textures, and customers have high requirements for scanning speed and accuracy, traditional measurement methods can't meet the demand. So they chose the HOLON 3D smart 49 handheld 3D scanner to provide accurate data support for toy quality inspection and process optimization.

On-site scan map
The surface of animal toys is covered with tiny textures, scales, and folds on their limbs. Using regular measuring tools requires point-by-point manual operation, which is not only very inefficient but also makes it hard to quickly gather complete data on the toy. It’s easy to get inaccurate measurements if the angle or pressure isn’t right, meaning important details like the depth of textures or the curve of contours can’t be captured precisely. Contact measurement might even rub off the toy’s paint or wear down the fine textures, damaging its appearance. On top of that, traditional measurement data needs to be manually organized before it can be compared with the manufacturing model, making the process cumbersome and error-prone, which seriously affects the accuracy and efficiency of detecting production errors and limits improvements in product quality.

Scan Data Chart — Horse

Scan Data Chart — Horse
Using the HOLON 3D smart 49 handheld 3D scanner, we can efficiently and accurately capture the 3D data of two animal toys. This scanner offers high precision, clearly capturing fine surface textures, scale details, and limb wrinkles, accurately restoring the true shape of the toys and meeting the accuracy requirements for comparison with processed models. Its high-speed scanning capability greatly shortens data collection time, quickly obtaining full surface information of the toys to meet client efficiency needs. The non-contact scanning method avoids damaging the toy's surface coating and tiny details, effectively protecting the appearance. The handheld operation is flexible and convenient, easily covering complex structures and hidden areas of the toys, ensuring no details are missed. The generated 3D data is complete and precise, fully meeting the client's requirements for 3D comparison and processing error detection with models, providing a reliable digital foundation for quality control and process optimization of the animal toys.

Scan Data Chart — Turtle

Scan Data Chart — Turtle