Two-Part Bracelet with Screws JDBCo 3D print model
Home Catalog Two-Part Bracelet with Screws JDBCo 3D print model

Publication date: 2024-08-10

Buy Two-Part Bracelet with Screws JDBCo 3D print model

$49.74

License: Royalty Free

Rigged PBR Realtime Animated Free
author:

jdbco

Renders and source materials belong to the author jdbco.
Specifications
Platform
cgtrader
Animated
Rigged
3D Print ready
VR / AR / Low-poly
PBR
Textures
Materials
UV Mapping
Polygons
0
Vertices
0
Geometry
Manifold geometry | No N-gons |
Usage recommendations
Realtime rendering
PC Game development
Mobile Game Development
VR/AR applications
Visualisation
Cinema
Advertising
3D Printing
CAD Engineering
E-Commerce & Interactive 3D Web
FAQ
Is this a free 3D model?

No, this model costs $49.74.

How do I download this 3D model?

Click the "Go to purchase" button to buy and download this model.

What license applies to this model?

This model comes with a Royalty Free license. See the seller's page (via "Go to purchase") for the full terms.

Does it include rigging and animation?

This model has no rig or animation. It is a static 3D object.

Does this model have UV mapping?

No, this model does not have UV mapping.

What textures and materials does this 3D model include?

This model has no textures or materials.

Can I use it for 3D printing?

Yes, this model is ready for 3D printing. See the Specifications block for exact numbers and Additional information for more context.

Additional information
Innovative Two-Part Bracelet With Precision Screw Fastening
(Ready To Print 3D-Model For Jewelry Manufacturing)

Discover the fusion of engineering and elegance with our two-part bracelet featuring screws. This expertly crafted piece showcases a unique design where two parts are seamlessly joined together using precision screws, creating a bold statement piece that exudes both modernity and sophistication. The functional screw fastening ensures secure wear while adding an intriguing industrial touch, making this bracelet perfect for tech enthusiasts and fashion-forward individuals alike. Whether you’re dressing up for a formal event or looking to add an edge to your everyday attire, this bracelet stands out as a versatile accessory that redefines contemporary jewelry.
Designed by JDBCo

Our models are optimized for easy production. All technical aspects have been meticulously considered.
Please feel free to ask any questions about our designs, discounts or technical support.

Gemstones:
Round: 3.5 mm - 10 pcs

Our jewelry designs can generally be produced with any of the following gemstones: diamond, emerald, sapphire, ruby, pearl, garnet, topaz, onyx, turquoise, amethyst, aquamarine, opal, peridot, malachite, other gemstones.

Model details:
(calculated)

Model file: model_main.stl
Size X: 90.163 mm
Size Y: 22.816 mm
Size Z: 57.763 mm
Polygons: 61928
Vertices: 30950
Volume: 3697.378 mm³
Surface Area: 5153.400 mm²

Weights in materials:
(calculated without gemstones)
Platinum: 79.12 g
Gold 18K: 62.49 g
Gold 14K: 47.33 g
Silver: 38.82 g

Our jewelry designs can generally be produced with any of the following metals: gold (yellow, white, rose), silver, platinum, other metals.

Actual sizes and weights may vary from the calculated values.

Our jewelry designs can generally be manufactured using the following primary methods:

1. 3D Printing (Additive Manufacturing)

Method: Using 3D printers with materials like PLA (Polylactic Acid), resin, wax, plastic, or metal.

Applications: Creating detailed prototypes and final models. High precision, capable of producing complex geometries.

Materials: PLA for easy printing and eco-friendliness, resin for high detail and smooth surface finishes, wax and plastic for prototyping, metal for final pieces.

2. Investment Casting

Method: Creating a wax model via 3D printing or CNC machining, then casting metal.

Applications: Producing high-quality metal pieces suitable for mass production. Uses 3D printed models made from PLA, resin, or wax.

3. CNC Machining

Method: Using computer-controlled machines to cut and shape metal.

Applications: Producing precise and larger items. Suitable for complex designs and high precision.

Materials: Metal for final products.

Also, possible to use the secondary methods:

4. Electrical Discharge Machining (EDM)

Method: Shaping metal using electrical discharges.

Applications: Creating very complex shapes with high precision.

Materials: Metal for detailed and intricate designs.

5. Laser Cutting and Engraving

Method: Using lasers to cut and engrave materials.

Applications: High precision cutting and engraving for various materials, fast processing.

Materials: Metal, plastic, and other suitable materials for detailed cuts and engravings.

Please have no hesitation to reach out with any questions or proposals regarding our models, prices and special offers.
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