ASI Performance 3 Row Aluminum Radiator for 1962-63 Buick Special V8 Engine AT CC6263
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Fitment:
Package Include
1 × 3-Row Aluminum Radiator
Technical Specifications
| Core Design | 3-Row Tube Core Racing Design |
| Tank Material | AA5052 Aluminum |
| Core Material | AA5052 Aluminum |
| Core Size | 12 1/4" H × 22 3/4" W |
| Overall Size | 18 1/8" H × 23 3/8" W |
| Inlet Location | Passenger Side |
| Inlet Diameter | 1 1/2" |
| Outlet Location | Passenger Side |
| Outlet Diameter | 1 1/2" |
| Transmission Oil Cooler | 1/4-18NPT |
| Drain Plug | OEM Style Brass Petcock Drain |
Vehicle Fitment
For 1962-1963 Buick Skylark Special 3.5L (215ci) V8
Advantages of Our Radiator
Made from aircraft-grade AA5052 aluminum for extended lifespan and finished with a raw aluminum surface.
Brazed core technology ensures optimum performance and reliability.
AA5052 aluminum tanks and fittings with 2mm thickness provide increased strength and durability.
Billet aluminum CNC-machined fill neck provides a rugged and durable design.
CNC-machined radiator cap with engraved craftsmanship and anodized treatment.
OEM-style brass petcock drain provides better durability compared with plastic drain designs.
Carefully crafted to meet OE standards for improved fitment accuracy.
Description
Our radiator is made from AA5052 aircraft-grade aluminum, which is different from the commonly used T-3303 aluminum series.
AA5052 aluminum is an Al-Mg alloy featuring excellent corrosion resistance, reliability, strength, and cold-working performance. It is widely used in transportation, marine, and industrial applications where durability is required.
This AA5052 Aluminum Radiator is designed to provide maximum cooling efficiency and help prevent premature engine failure. Its lightweight aluminum construction with a tube-and-fin design increases heat dissipation efficiency.
Compared with stock radiators, this radiator provides improved cooling performance and increased coolant capacity, helping the cooling system maintain stable temperatures and resist temperature surges in demanding applications.
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