• RNC Nano Coating Dual Drive Gear
  • RNC Nano Coating Dual Drive Gear
  • RNC Nano Coating Dual Drive Gear
  • RNC Nano Coating Dual Drive Gear
  • RNC Nano Coating Dual Drive Gear
  • RNC Nano Coating Dual Drive Gear
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  • RNC Nano Coating Dual Drive Gear
  • RNC Nano Coating Dual Drive Gear
  • RNC Nano Coating Dual Drive Gear
  • RNC Nano Coating Dual Drive Gear
  • RNC Nano Coating Dual Drive Gear
  • RNC Nano Coating Dual Drive Gear

RNC Nano Coating Dual Drive Gear

TriangleLab RNC Nitrogen-based chain Nano Coating Dual Drive Gear Extruder Kit Upgrade for Prusa 3d Printer DDB Sherpa Extruder
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RNC nano coating Drivegear KIT
(RNC nitrogen-based chain super wear-resistant extrusion wheel)

HRC60+,Ultra-high hardness HV3300

The overall hardness of the hardened steel substrate reaches HRC60+

The more wear-resistant surface adopts RNC-based nano-coating, ultra-high hardness HV3300

 

 

 

Trianglelab RNC nano coating gears, compared to other brands of gears tested

 

Curved teeth beat 0.03mm

Which is closely matched with the shaft and has high concentricity

The driving force is 15KG.

Hardened steel.

RNC Nano Coating

 


Size of gears

All-metal high-temperature printing at 500+℃, compatible with multiple models.


 

▉Package list:

1.TriangLab - RNC nano coating Drivegear X 1
*It is more durable and durable. The biting teeth are very sharp and not easy to slip.
2.Pulley shaft X 1(3MM*20MM)
3.Pulley bearings X 2
The dimensional accuracy of the inner hole is 0.02mm, which is closely matched with the shaft and has high concentricity

 

 

Product Show

TriangLab - RNC nano coating Drivegear KIT

 

 

Thank you very much for purchasing high quality accessories manufactured by trianglelab. Although our accessories are more expensive, we do not sell low-quality cheap products to our customers. Every customer is our good friend. We will treat every friend who trusts us sincerely.

 

 

Conclusion

 

1.In terms of appearance, compared with other products, Triangle Lab are smoother and finer, followed by the extrusion wheel of manufacturer B. Although there are knife lines, they are relatively fine and even

 

2.From the analysis of tooth profile, compared with triangular teeth, curved teeth can engage with filaments more deeply for grip force. In contrast, the tooth shape of Triangle Lab is more smoother and more symmetrical, while the other tooth shapes have obvious knife lines, and the tooth bases are uneven. After a long time, there will be serious wear, resulting in the reduction of tooth life. The tooth shape of manufacturer D can not be distinguished, and the tooth tip can not be clearly distinguished, so the durability of manufacturer D is insufficient compared with other manufacturers’ products. The tooth surface and shaft of manufacturer C's product are slightly inclined, which may be due to the machining accuracy.

 

3.From the dimension analysis, the tooth diameter of manufacturer A, manufacturer B and Triangle Lab is similar. Triangle Lab tooth tip is thinner, makes it easier to cut into the filaments, and the next best is Manufacturer B, but manufacturer B's tooth beat is higher than Triangle Lab. Manufacturer C's tooth tip is wider, so it is not conducive to access filaments. The tooth length analysis shows that the tooth length of Triangle Lab is shorter and closer to the diameter of filaments, so the meshing of filaments is better than other’s.

 

4.Tension test method: Use DDB extruder, tighten the spring after the motor is energized, draw filaments. The filaments squeezed by the extrusion wheels of manufacturer A, C and D all slipped, and the filaments were pulled off by Triangle Lab and manufacturer B.

 

5.In the hardness test, except the products of Triangle Lab reached HRC50 or above, the highest hardness of the other products was HRC30, which is easy to wear, especially for printing composite fiber filaments.

 

6.Based on the above analysis, Triangle Lab and manufacturer B’s appearance and size is better, Triangle Lab hardness is higher, and the curved teeth of Triangle Lab are recommended.

 

Comparison of prints before and after the upgrade

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