PRODUCT DESCRIPTION
Product details
Tan Fiberglass Exhaust Header Heat Wrap, 2" x 100' DEI 010103
USA-DEI-10103
An important first step to reducing under-hood, power-robbing heat is to wrap the headers and exhaust pipes. Less under-hood radiant heat results in a cooler air charge for improved performance, and keeping exhaust gases hotter within the exhaust system helps decrease exhaust density and increases exhaust flow.
Design Engineering stainless steel Locking Ties are the perfect way to fasten exhaust wrap for a clean, easy and professional-looking installation.
Reduces under hood temperatures a real 50%
Decreases exhaust density & increases exhaust flow
Improves horsepower
Withstands 1200°F direct/2000°F radiant heat
The only exhaust wrap with installation guide lines
Increased durability and heat retention
NOTE: Design Engineering HT Silicone Coating Spray is highly recommended for DEI Fiberglass Exhaust Wrap to penetrate, seal, protect and prolong the life of exhaust wrap.
NOTE: DEI fiberglass exhaust wrap penetrates, seals, protects and prolongs the life of exhaust wrap. Wrapping catalytic converters is not recommended as overheating may reduce converter life. Instead, try our Corvette catalytic converter shield or create your own shield with our Floor & Tunnel Shield II™.
Caution Note:
Exhaust wrap is not designed to be moved or removed after heat cycles. Upon heating, the fibers lose their original flexibility. This does not reduce the thermal properties of the wrap. Please keep this in mind before removing. For this reason, avoid wrapping flexible pipes or flex joints.
Titanium Exhaust Systems Note:
DEI DOES NOT recommend wrapping titanium exhausts. The alloys used in manufacturing titanium exhaust systems are usually thin and designed to dissipate heat quickly. Wrapping any titanium exhaust, regardless of brand, can retain too much heat and cause the titanium alloy to become brittle and prone to premature cracking. If you wish to reduce heat on a titanium exhaust system, DEI recommends using alternatives such as our flexible heat shields.
Direct Heat Resistance:
1200°F