Redding Reloading Equipment 6.5x55mm Swedish Rifle Competition Bushing Neck Sizing Die Set

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Redding Reloading Equipment 6.5x55mm Swedish Rifle Competition Bushing Neck Sizing Die Set - Redding Reloading Equipment

Product Details

MSRP $488.74
MPN 58132
UPC 611760581328

Description

The Redding Reloading Equipment 6.5x55mm Swedish Rifle Competition Bushing Neck Sizing Die Set is a precision-engineered tool designed for competitive shooters and precision reloaders. This die set is specifically tailored for the 6.5x55mm Swedish cartridge, ensuring optimal performance and accuracy. The set includes a bushing neck sizing die, which allows for precise control over neck tension by utilizing interchangeable bushings (sold separately). This feature enables reloaders to fine-tune the neck sizing process to match specific bullet diameters and brass thicknesses, thereby enhancing consistency and accuracy in ammunition performance. Constructed from high-grade steel, the die set is built to withstand rigorous use while maintaining its precision. The die's internal components are meticulously machined to exacting tolerances, ensuring smooth operation and reliable results. Additionally, the set is designed to minimize brass work-hardening, thereby extending the life of the cartridge cases. The Redding die set is compatible with standard reloading presses and is an essential tool for those seeking to achieve superior accuracy in competitive shooting scenarios. Its robust construction and precise engineering make it a valuable addition to any reloader's toolkit. The competition bushing neck die set comprises the advanced competition bushing neck die, precision-engineered competition seating die and robust body die for optimal reloading performance The competition seating die is equipped with a universal seating stem, engineered to be compatible with a wide range of bullet profiles, ensuring optimal versatility and precision in reloading applications The competition seating die is not designed for application with compressed loads and should be avoided to ensure optimal performance and prevent potential damage

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