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V6 E3D Clone Titanium Nozzle 1.75mm-0.4mm
The V6 E3D Clone Titanium Nozzle (1.75mm, 0.4mm) is a high-performance nozzle designed for 3D printing applications, offering a balance of durability, thermal efficiency, and precision.
Key Features:
- Material: Titanium alloy construction for excellent heat resistance and durability.
- Filament Compatibility: Supports 1.75mm filament, suitable for a wide range of materials including PLA, ABS, PETG, TPU, and more.
- Nozzle Diameter: 0.4mm, providing a balance between speed and print resolution.
- Heat Resistance: Titanium offers lower thermal conductivity than brass, reducing heat creep and improving print quality with high-temperature filaments.
- Lightweight & Durable: Titanium is stronger and lighter than brass, offering improved longevity and reduced thermal expansion.
Ideal for users who need a high-performance nozzle for detailed prints and reliable extrusion, especially when working with high-temperature filaments.
$6.60
V6 E3D Clone Titanium Nozzle 1.75mm-0.4mm—
$6.60
Product Information
Product Information
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Shipping & Returns
Description
The V6 E3D Clone Titanium Nozzle (1.75mm, 0.4mm) is a high-performance nozzle designed for 3D printing applications, offering a balance of durability, thermal efficiency, and precision.
Key Features:
- Material: Titanium alloy construction for excellent heat resistance and durability.
- Filament Compatibility: Supports 1.75mm filament, suitable for a wide range of materials including PLA, ABS, PETG, TPU, and more.
- Nozzle Diameter: 0.4mm, providing a balance between speed and print resolution.
- Heat Resistance: Titanium offers lower thermal conductivity than brass, reducing heat creep and improving print quality with high-temperature filaments.
- Lightweight & Durable: Titanium is stronger and lighter than brass, offering improved longevity and reduced thermal expansion.
Ideal for users who need a high-performance nozzle for detailed prints and reliable extrusion, especially when working with high-temperature filaments.














