The Cerbide Medium Venturi Blast Nozzle (V-Series) is engineered for balanced blasting performance, combining efficient abrasive acceleration with controlled air consumption. Designed for operators who need both productivity and precision, the medium venturi profile delivers a stable blast pattern without the higher air demand of long venturi nozzles.
Its optimized venturi length ensures smooth air expansion and consistent abrasive flow, resulting in reliable cleaning power across a wide range of surface preparation and maintenance applications. This makes it an ideal choice for facilities operating mid-range compressors or environments where air efficiency and operational control are just as important as speed.
Manufactured from high-density tungsten carbide, the Medium Venturi nozzle offers exceptional wear resistance and extended service life under continuous blasting conditions. The precision-machined internal bore minimizes turbulence and pressure loss, allowing operators to maintain predictable performance while reducing fatigue during prolonged use.
The V-Series Medium Venturi is widely used across fabrication shops, maintenance yards, coating removal operations, and general industrial blasting, making it one of the most versatile nozzles in the Cerbide lineup.
Performance Characteristics
Balanced abrasive velocity for controlled surface cleaning
Efficient air usage compared to long venturi designs
Consistent blast pattern for uniform results
Reduced turbulence for stable abrasive flow
Designed for mid-range compressor systems
Ideal Applications
General surface preparation
Paint and coating removal
Maintenance and repair blasting
Structural steel cleaning
Industrial refurbishment projects
Cerbide Medium Venturi Blast Nozzle (CMVE)
- Cerbide Medium Venturi Series (CMVE)
Part Number | Bore Diameter | Length |
CMVE-3 | 3/16″ | 4-1/4” |
CMVE-4 | 1/4″ | 4-1/4” |
CMVE-5 | 5/16″ | 4-1/4” |
CMVE-6 | 3/8″ | 4-1/4” |
CMVE-7 | 7/16″ | 4-1/4” |
CMVE-8 | 1/2″ | 4-1/4” |
High-efficiency venturi blast nozzles designed to increase abrasive velocity, reduce air consumption, and deliver longer service life in high-production blasting environments.

