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High-Performance Exhaust Header Manifold for 1955+ Chevy SBC Small Block Hugger V8 (262 265 283 305 327 350 400) - Compatible with Classic Car Restoration & Hot Rod Upgrades
High-Performance Exhaust Header Manifold for 1955+ Chevy SBC Small Block Hugger V8 (262 265 283 305 327 350 400) - Compatible with Classic Car Restoration & Hot Rod Upgrades
High-Performance Exhaust Header Manifold for 1955+ Chevy SBC Small Block Hugger V8 (262 265 283 305 327 350 400) - Compatible with Classic Car Restoration & Hot Rod Upgrades
High-Performance Exhaust Header Manifold for 1955+ Chevy SBC Small Block Hugger V8 (262 265 283 305 327 350 400) - Compatible with Classic Car Restoration & Hot Rod Upgrades
High-Performance Exhaust Header Manifold for 1955+ Chevy SBC Small Block Hugger V8 (262 265 283 305 327 350 400) - Compatible with Classic Car Restoration & Hot Rod Upgrades
High-Performance Exhaust Header Manifold for 1955+ Chevy SBC Small Block Hugger V8 (262 265 283 305 327 350 400) - Compatible with Classic Car Restoration & Hot Rod Upgrades
High-Performance Exhaust Header Manifold for 1955+ Chevy SBC Small Block Hugger V8 (262 265 283 305 327 350 400) - Compatible with Classic Car Restoration & Hot Rod Upgrades
High-Performance Exhaust Header Manifold for 1955+ Chevy SBC Small Block Hugger V8 (262 265 283 305 327 350 400) - Compatible with Classic Car Restoration & Hot Rod Upgrades

High-Performance Exhaust Header Manifold for 1955+ Chevy SBC Small Block Hugger V8 (262 265 283 305 327 350 400) - Compatible with Classic Car Restoration & Hot Rod Upgrades

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Description

Fitment:

Fits All Small Block Chevy V8 Engines from 1955+ using the Standard Exhaust Pattern - 283, 305, 327, 350, 400, etc.?

(except 1971 Chevrolet Nova,1972 Chevrolet Caprice,1983 Chevrolet Caprice Classic Sedan 4-Door 5.0L,1984 Buick Regal,1986 Chevrolet Caprice 5.7,1987 Chevrolet Caprice,1978 Chevrolet Corvette, 1973 Chevrolet Nova Base 5.7L 350)

    NOTE: Not fit 4WD


    Replacing or upgrading your exhaust header is necessary for both engine performance and sound. Whether on or off the track, exhaust headers provide more horsepower and improved exhaust sound. FLASHARK offers many products to help you create your own custom engine headers. It's really easy and convenient to use: direct bolt-on, no modification needed.

    --Made with 1 5/8" OD diameter heavy-duty mandrel bent 18 gauge tubing
    --Large 2 1/2" collectors. Reducers are 2"
    --4 1/4" length from the bottom edge of the head to the outside of the middle tubes
    --Made with thick 5/16" flanges to resist warpage

    Specifications:

    Brand Name: FLASHARK
    Certificate: ISO9001:2000
    Application: Automobile Exhaust Header
    Material: Stainless Steel
    Surface: Mirror Polish
    Model: EH28030
    Inlet/ Outlet: 1.5"/ 2.5"
    Primary Diameter: 1-1/2 in.
    Collector Diameter: 2-1/2 in.
    Head Flange Thickness:3/8 in. (9.5mm)
    Pipe Thickness: 16 gauge (1.5mm)


    Exhaust Header VS Manifold, which is the better choice?

    The structural differences between exhaust headers and manifolds are the material and size. From the material, exhaust headers are made of lighter, thinner steel, while exhaust manifolds are made of thick iron. Exhaust headers are also longer than exhaust manifolds. When in use, exhaust manifolds create back pressure, which lowers performance. Because each cylinder of the engine is given its own tube, however, headers eliminate this problem; thus, allowing the gases to exit without the creation of back pressure. Therefore, exhaust headers are a BETTER choice than an exhaust manifold.

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    In addition to purchasing this product, Flashark highly recommends that you purchase Flashark and Spelab's new collaborative product, the silicone coolant hose kit; to replace the stock rubber coolant hose in your car's cooling system.

    Are??better? Coolant hoses transport the coolant—a mixture of water and antifreeze—from the engine to the radiator and back. The coolant absorbs heat from the engine block and heads and then releases this heat through the radiator, where airflow dissipates it away from the vehicle. This continuous flow is crucial for preventing engine overheating, which can lead to severe damage or failure.