Dodge 2009-2019 Ram 6.7L Cummins Coolant Bypass Hose Barb Adapter

$36.88

SKU: C183-A023

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Specifics:
100% Brand New.
Material: Aluminum alloy,silicone.
Proudly made in the USA from aerospace grade billet aluminum.
Aluminum material can resist corrosion and rust for a long time and has good heat dissipation.

Package Content:
1 x hose barb adapter,
1 x hose,
2 x stainless hose clamps,
1 x Oring,
1 x bolt,
1 x lock plate.

Fitment:
For Dodge Ram 6.7L Cummins Diesel Engines 2009-2019

Shipping Details:
Free Shipping.
Estimated Time of Arrival: 3-6 days.

Warrenty:
Customers have the right to apply for a return within 60 days after the receipt of parcel.
24-Hour Expert online 

Customer Notification and Disclaimer of Liability.
This is a race-only product. It is not legal for sale or use on pollution controlled vehicles that are driven on public streets, roads, or highways. Buyer's use or installation of this product for itself or for Buyer's customer is at Buyer's own risk. The Buyer is responsible for obeying federal, state, and local laws. Only Buyer can determine end customer's use and thus assumes any and all liability hereby waiving any and all claims against VCarPart in the sale of this product to the maximum extent permissible by law. Make sure to abide by all local, state, and federal laws, including emissions, vehicle safety, and traffic laws. It is Buyer's responsibility to know what those laws are and how they apply to Buyer or Buyer's customer. This product is designed and intended solely for legally-organized and sanctioned, closed-course, off-road competition use and is not for use on public streets, roads, or highways. This Product is capable of disabling the emissions system on some vehicles. Use on public streets, roads, or highways is a violation of federal and certain state (including California) and local environmental laws.

Customer Reviews

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Sandra Downard

It's precision engineering at play, ensuring a perfect fit that streamlines the coolant's path. What impressed me was how such a simple modification could have a noticeable impact on maintaining optimal engine temperatures.