Liberate Design Constraints
The application of 3D printing technology to the jewelry industry, to make up for the shortcomings of the traditional handmade can not complete the complex modeling, only through the establishment of three-dimensional model on demand into the software can be completed jewelry production, to meet the young market of personalized customization services, with lower production costs to complete more complex and more accurate craft jewelry.
Why choose 3D printing for the jewelry industry?
Reduce labor costs and shorten the production cycle with independent control
To compensate for the shortcomings of the traditional process, with the maturity of 3D printing technology, 3D printing technology can directly omit the traditional pressing mold, open mold, wax injection, mold repair, and other numerous manufacturing processes, as well as a series of time and energy costly manufacturing processes such as space and labor.
During printing, the complex molding process can be completed without the need for human supervision.
The uniform thickness of the jewelry is achieved through digital precision parameter control.
The design process does not need to consider production difficulty, which frees up design thinking.
In the jewelry design process, 3D printing reduces and makes up for the various technical difficulties and shortcomings of traditional jewelry making, and greatly shortens the production cycle.
- High efficiency - printing process without human intervention, night can also be independent printing
- No storage - no storage costs for on-demand, on-demand production, and no risk of jewelry theft or damage
- Personalization - can provide one-to-one service mode for consumer customers, analyze consumer preference information, and complete accurate marketing
- Design without limits - completely omit the traditional handmade, unleashing the creative minds of designers
Value Of Additive Manufacturing
Production Benefits
Production benefits focus on the manufacturing process and include reduced material consumption, shorter lead times, minimal tooling costs, reduced assembly costs, and the impact of automation, to name a few.
Combined Benefits
Gains from fuel efficiency such as weight reduction, higher performance and reliability, longer life, faster new product introductions, faster time-to-market when using only additively manufactured products, reduced inventory, and the added value of better adaptability and more attractive products, etc.
Key Benefits
Additive manufacturing provides new manufacturing benefits.