1/2" 316 Stainless Steel Close Nipple
N6W4-08-CL Close Nipple fitting made from durable 316 Grade Stainless Steel. Features 1/2" Male NPT threads on both ends
SKU: P-CHE-2116
This Stainless Steel Close Nipple is a critical plumbing component designed to connect two fittings or pipes in close proximity where there is little or no exposed pipe surface between them. The 316 Stainless Steel construction offers superior performance in highly corrosive environments, especially those involving chlorides, making it ideal for the harsh conditions of a car wash.
The detailed, precise threading ensures reliable, leak-proof connections, which are crucial for maintaining the functionality of high-pressure hydraulic and fluid delivery systems.
Key features and benefits include:
- Superior Material: Constructed from 316 Stainless Steel, providing excellent corrosion resistance, particularly against acids and chlorides, which is vital for longevity in car wash chemical applications.
- Close Nipple Design: Allows for the connection of two female-threaded components with minimal length, ensuring a compact assembly.
- Standard Sizing: Features identical 1/2 inch Male NPT threads on both ends for easy integration into half-inch pipe runs.
- Reliable Connections: Precision threading ensures a secure, leak-proof joint when properly sealed.
- Critical Application: Used specifically within the powerful Triple Threat Wheel Blaster system to ensure durable and reliable fluid delivery connections.
- Manufacturer Part # (MPN): N6W4-08-CL
- Product Type: Pipe Nipple / Close Nipple
- End Connections: 1/2 in Male NPT (MNPT) on both ends
- Material Grade: 316 Stainless Steel
- Function: Connects two female-threaded fittings in a minimal space.
- Application: Used within the Tommy Car Wash Systems Triple Threat Wheel Blaster.
- 316 Stainless Steel: Maximum resistance to corrosion and chemicals.
- Close Nipple: Minimal length for compact assemblies.
- 1/2" MNPT: Standard size for versatile fluid connections.
- Wheel Blaster Use: Ensures robust connections in high-impact areas.