Metal 3D Printing Centrifugal Pump Impeller
High-strength alloys including carbon steel, titanium, duplex stainless steel, and the super alloy Inconel are among the materials used in the SLM 3D metal printing technique. The titanium used to print the centrifugal pump impeller has low density, high specific strength, outstanding toughness, strong corrosion resistance, and processing performance benefits.
Product Details
Product: Centrifugal pump impeller
Material: Titanium TC4
Technology: 3D metal printing
Printing machine: EOS M290
The centrifugal pump impeller is printed by titanium which has the advantages of low density, high specific strength, excellent toughness, good corrosion resistance, and processing performance.

Compared with the traditional material reduction process, the combination of reduction materials with this 3D metal printing can better improve efficiency and greatly reduce cost.

The specification
Technology | Metal 3D Printing |
Max building volume | 250*250*300mm |
Accuracy | ±0.1mm |
Material Performance | Very close to the performance of forged parts |
High-temperature resistance | 300~1100℃ |
Printing time | Depending on the structure, usually 5 business days |
Application | Mold, medical, aerospace, robotics, consumer electronics, drone, vehicles, mechanical devices, electric tools, dental, automotive, entertainment, etc. |
Export country | USA, Germany, UK, France, Italy, Switzerland, Sweden, Netherlands, Canada, Japan, etc., |
Country of origin | Shenzhen of China |
About Material
Titanium has the advantages of being lightweight, high strength, and beautiful appearance, and it is widely used in aviation, chemical, medical, shipbuilding, and other industries.

It exhibits high chemical activity and is highly reactive with airborne oxygen, nitrogen, hydroxyl, co2, carbon dioxide, water vapor, and ammonia. In titanium alloy, hard tic will occur when the carbon content is higher than 0.2%; at high temperatures, a hard surface will also form from internal interactions. Titanium absorbs oxygen at temperatures above 600 °C to create a hardened layer with high hardness; the embrittlement layer also develops as the hydrogen level rises. The hardening degree is 20% to 30%, and the depth of the hard and brittle surface generated by gas absorption can reach 0.1 to 0.15 mm. Moreover, titanium is highly chemically affine and readily adheres to the friction surface.

For more information about 3D printing technology, head to the Shenzhen Jr Technology co., Ltd website for more.
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