Product Specification

|
Parameter |
Specification |
|
Build Size |
294 × 212 × 150 mm |
|
Resolution |
1200 × 1200 × 1600 dpi, (3200 dpi at 8 μm / 1600 dpi at 16 μm) |
|
Accuracy |
± 0.08 mm per 20 mm of part dimension |
|
Slicing Software |
ORI3DPrint |
|
File Formats |
STL, SLC, OBJ |
|
Material Packaging |
Build material: 3 kg per bottle; support material: 3.6 kg per bottle (2 bottles of each material can be loaded per machine) |
|
Machine Dimensions |
1310 × 770 × 1670 mm |
|
Machine Weight |
Gross weight: 630 kg, Net weight: 480 kg |
|
Power Requirements |
220-240V AC, 50/60Hz, 23A |
|
I/O Interface |
220-240V AC, 50Hz, 10A, single C14 socket |
Hangzhou Originator 3D Technology Co., Ltd. is one of the leading manufacturers and suppliers of 3d printer for high-end jewelry casting in China. Welcome to wholesale durable 3d printer for high-end jewelry casting made in China here from our factory. If you have any enquiry about cooperation, please feel free to email us.
ORI 3000 3D Printer for High-End Jewelry Casting
As a professional 3D Printer for High-End Jewelry Casting, the new ORI 3000 MJP 3-Printhead Wax 3D Printer makes production volume by an impressive 280%, redefining efficiency in high-end jewelry and craft manufacturing. Equipped with three MJP printheads, it features a larger build volume and faster batch printing speed, perfectly tailored for mass production of high-end jewelry and exquisite crafts.
Focusing on ultra-fine wax model molding, this high-efficiency, high-precision wax 3D printer achieves layer thicknesses as low as 8 μm / 16 μm. Its printed wax patterns boast smooth surfaces, delicate detail reproduction and high dimensional accuracy, supporting rapid workflows and large-scale customization. The 3D-printed wax models can be directly used for lost-wax casting, which significantly improves casting efficiency, reduces manual labor, and greatly shortens the time-to-market for new high-end jewelry products.

How does wax 3D printing work?
3D lost-wax casting starts with designing the final part via 3D modeling software or object scans, which is then printed with a special 3D printer using wax. Complex designs may need print supports, which are removed after printing, followed by cleaning and smoothing the model's surface. Unlike traditional lost-wax casting-where the wax model is hand-crafted-the rest of the process is identical.
After cleaning, the wax model is attached to a "casting tree" (a hollow bar with fixed elements), which is immersed in a liquid material (such as ceramic, clay or plaster) to form the outer shell and casting mold. The material layer around the wax is dried or fired, melting or burning off the wax and leaving a mold impression. Molten material is poured into the mold; once solidified, the mold is broken to get the finished product, which may require further reworking based on its application and material.

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