Axiom
Eagle McMahon Tour of Terror Fission Pyro
Color | Foil | Weight
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Overstable Midrange
5 | 4 | 0 | 2.5 |
SPEED | GLIDE | TURN | FADE |
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Originally designed as functional decoration for masonry, the gargoyle later became a symbol to ward off evil spirits. However, don’t let that fool you. These grotesque figures can take on a life of their own, becoming the very thing they’re meant to keep away. As part of MVP's Tour of Terror, Mike Inscho brings this waiting horror to the first release of the Fission Pyro!
The Fission Pyro is a touch less stable than normal, allowing for a further pushing flight that still dependably fades. A favorite of Eagle McMahon, get the first release of this exceptional combination of mold and plastic before they’re carried off into the night!
The Pyro
The Pyro was designed as Axiom’s first overstable Midrange with more glide than the MVP Deflector and a commanding stable finish. The Pyro has enough stability for consistent flights in strong winds and powerful throws without losing its line and turning off target.
Pyro Specifications
- Diameter: 21.5 cm
- Height: 1.6 cm
- Rim Width: 1.6 cm
- Rim Depth: 1.3 cm
- Bead: None
- PDGA Approved: Feb 13, 2019
Fission Microbubble Technology
Fission™ Microbubble Technology produces an ultralight core with evenly distributed and imperceptible weight reduction microbubbles. The ultralight core allows an even higher GYRO® overmold density relative to the core.
This produces an entirely new type of lightweight disc never before seen in the sport, and beyond the capability of any other manufacturer. Weight distribution, stability, and durability of prior “bubble” discs are all improved upon by Fission. Skeptics of prior light or bubble plastics are in for a surprise, as Fission brings advanced disc physics and true high-tech molding into the lightweight plastics arena.
The Science of Gyro
Axiom's GYRO® Overmold Technology is a design that is produced through a two-step molding process that allows the outer ring to be made with a heavier material. The process of transferring mass away from the axis of rotation increases the disc’s moment of inertia at parabolic proportions.
Since linear and angular momentum and aerodynamics act upon each other simultaneously, an enhanced gyroscopic effect will improve all aspects of disc flight. Increased angular momentum of a disc in flight will allow the disc to stay on its rotational axis for a longer period of time, which means that its aerodynamic properties will be better exhibited for a longer period of time. When a thrower uses our discs, they will be able to achieve straighter, longer, and more accurate results.