1601131 Air / Fuel Equipment Inferno Air-fuel Quick Connect Swirl Tip model HT-3i No.1601131 Inferno Air-fuel Quick Connect Swirl Tip model HT-3i No.1601131
The revolutionary Inferno tip has a specially-designed insert that delivers reliable swirl combustion performance every time. Contractors get a consistent, hotter flame that will engulf and wrap around the work piece for maximum efficiency. The swirl combusion of the Inferno tip is unlike anything offered on the market.
Gas Flow
3.10 @14 PSI SCFH / 0.09 @0.9 bar M3/HR
Features
Durable, long-life design crafted from strong 304 stainless steel tube stock and designed to stand up in the field
Quality, precision manufacturing for consistent production and each tip is tested to ensure a perfect orifice and again to ensure flame quality
Hottest tip, everytime based on exacting standards to eliminate irregular heating, "horns" and other inconsistencies
Proof positive - The Perfect Flame - the tips are configured to produce reliable and repeatable flame performance and are evaluated using thermal photography techniques
http://www.buyweld.com1601131.html $56.84
Inferno Air-fuel Quick Connect Swirl Tip model HT-3i No.1601131
The revolutionary Inferno tip has a specially-designed insert that delivers reliable swirl combustion performance every time. Contractors get a consistent, hotter flame that will engulf and wrap around the work piece for maximum efficiency. The swirl combusion of the Inferno tip is unlike anything offered on the market.
Gas Flow
3.10 @14 PSI SCFH / 0.09 @0.9 bar M3/HR
Features
Durable, long-life design crafted from strong 304 stainless steel tube stock and designed to stand up in the field
Quality, precision manufacturing for consistent production and each tip is tested to ensure a perfect orifice and again to ensure flame quality
Hottest tip, everytime based on exacting standards to eliminate irregular heating, "horns" and other inconsistencies
Proof positive - The Perfect Flame - the tips are configured to produce reliable and repeatable flame performance and are evaluated using thermal photography techniques