Straight Swivel 1/8" MNPT x 1/8" F (Replaces Schmidt Axxiom 4201-500-00)
Model: 888-4201-50000PB
Category: Surface Preparation → Sandblasting Equipment → Hose & Fittings
Type: Straight Swivel / Pipe Fitting
The Straight Swivel 1/8" MNPT x 1/8" F (Part #888-4201-50000PB) is a precision-engineered fitting designed to provide flexible, secure connections in abrasive blasting systems and industrial air or fluid lines. Built as a direct replacement for Schmidt Axxiom 4201-500-00, this swivel fitting allows for rotational movement, reducing stress on hoses and connected components.
Key Features & Benefits
- Direct replacement for Schmidt Axxiom 4201-500-00
- 1/8" MNPT x 1/8" female connection for standard compatibility
- Swivel design reduces strain on hoses and fittings
- Allows rotational flexibility for easier installation and alignment
- Helps prevent hose twisting and premature wear
- Provides secure, leak-resistant connections
- Durable construction for industrial environments
- OEM-equivalent fit and performance
Technical Specifications
- Product Name: Straight Swivel
- Part Number: 888-4201-50000PB
- Connection Type: Male NPT x Female
- Size: 1/8" MNPT x 1/8" F
- Weight: 0.10 lbs
- Material: Industrial-Grade Metal
- Function: Flexible Pipe Connection / Rotation
- Application: Sandblasting / Abrasive Blasting Systems / Air & Fluid Lines
- Condition: New
OEM Compatibility
This product is compatible with the following OEM manufacturers:
-
Schmidt Manufacturing / U.S. Filter / Axxiom Manufacturing
- Replaces Part #: 4201-500-00
Typical Applications
- Connecting hoses and fittings where rotation or movement is required
- Reducing stress in air and fluid line connections
- Use in abrasive blasting systems and pneumatic setups
- General-purpose industrial swivel fitting applications
Performance Benefits
- Minimizes hose twisting and mechanical stress
- Extends the life of hoses and connected components
- Maintains consistent airflow and system efficiency
- Ensures leak-resistant, secure connections
- Supports reliable performance in high-vibration environments