Multi Rib Gear Grinding Wheel

Best

CUMI Multi Rib Grinding Wheels delivers precise tooth profiles, consistent dimensions, and superior surface finishes. Made with premium abrasives, it ensures durability, efficiency, and an extended lifespan for both small-scale and high-volume gear production.
Brand: CUMI

Information Material:

Gear Module Good Better Best
upto 1.5 M RA120 I12 V736/50 - 1CUMISA120 V736/50
1.75 M - 2.25 M SA100 I7 V677/50 - 3CUMISA100 I12 V736 /50
2.5 M - 4 M SA 80 K5 V677/50 - 3CUMISA 80 I12 V736 /50
Above 4.25 M SA 60 K5 V677/50 - 3CUMISA 80 J12 V736 /50
Gear Module Good Better Best
upto 1.5 M 24R120 I12 V736/80 3CSA120 I12 V736/80 2CN120 I12 V736/80
1.75 M - 2.25 M 24R100 J12 V736/80 3CSA100 J12 V736/80 2CN100 J12 V736/80
2.5 M - 4 M 24R80 J12 V736/80 3CSA80 J12 V736/80 2CN80 J12 V736/80
Above 4.25 M 24R80 J12 V736/80 3CSA80 J12 V736/80 2CN80 J12 V736/80
CUMI Code Structure Speed Grit Range Diameter Thickness Hardness
(mps) (mm) (inch) (mm) (inch)
CN 10 - 12 50, 63 & 80 60 - 120 80 - 450 10 - 16 80 - 250 31/4 - 10 I - K
CUMISA/ CSA
24R
SA

Product Information

Feature
- High force regime bond with new generation materials
- Microcrystalline grains that stays sharper for a longer time
- Engineered porosity providing excellent coolant penetration and anti-clogging
- Profiled wheel – Fit to use without any ‘Pre-grinding’ requirements
Benefits
- Burn Free Components
- Excellent profile and lead accuracy
- Suited for high DIN Class needs
- Extended tool life
Advantage
- Higher Feed Rates for improved productivity
- Lesser dressing stock and no. of passes
- More parts / dress
Product Description

About CUMI Multi Rib Gear Grinding Wheels

CUMI Multi Rib Gear Grinding Wheels  are engineered for high-accuracy generative gear grinding, where profile precision, thermal stability, and productivity are critical. Built with a high-force regime bond system and next-generation materials, these wheels withstand demanding grinding forces while maintaining profile integrity throughout the wheel life.

The use of microcrystalline abrasive grains ensures the cutting edges remain sharper for longer durations, enabling consistent grinding performance and reduced wheel dressing frequency. Engineered porosity enhances coolant penetration and prevents wheel loading, ensuring stable temperatures and a clean cutting action during continuous operations.

Designed as a profiled, ready-to-use wheel, the multi rib gear grinding wheel eliminates the need for pre-grinding, reducing setup time and improving overall process efficiency.

As a result, manufacturers achieve:

  • Precise gear tooth profiles with tight dimensional control
  • Superior surface finish across small and high-volume production
  • Extended wheel life with reduced dressing frequency
  • Higher productivity and lower operational costs
FAQs
01.
What is a multi rib gear grinding wheel used for? A multi rib gear grinding wheel is used in generative gear grinding to produce precise gear tooth profiles with consistent dimensions and high surface finish in automotive, aerospace, transmission, and renewable energy applications.
02.
How does a generative gear grinding wheel improve accuracy? Generative gear grinding wheels maintain continuous profile engagement during grinding, ensuring accurate tooth geometry, uniform material removal, and repeatable dimensional control across high-volume gear production.
03.
What are the advantages of microcrystalline grains in gear grinding wheels? Microcrystalline grains remain sharper for longer periods, enabling stable cutting performance, reduced dressing frequency, longer wheel life, and consistent surface finish during precision gear grinding.
04.
Why is engineered porosity important in gear grinding wheels? Engineered porosity improves coolant penetration and chip clearance, reducing heat generation and wheel loading. This results in better surface finish, thermal stability, and extended wheel life.
05.
Which industries use multi rib gear grinding wheels? Multi rib gear grinding wheels are widely used in automotive and auto ancillary manufacturing, aerospace components, transmission systems, and renewable energy gear applications, where high precision and durability are essential.

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