Asics
ASCIS SonicBlast Mens
ASCIS SonicBlast Mens
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The SONICBLAST™ shoe offers a lightweight and responsive ride that makes it functional for tempo runs, workouts and races. This boosted trainer has a more stable heel and more flexible forefoot transition compared to other plated models, making it a more accessible option to many runners.
The midsole features a two-layered foam with FF BLAST™ MAX and FF TURBO™ SQUARED cushioning to help create a lightweight, bouncy, and advanced cushioning running experience.
Additionally, an ASTROPLATE™ (PEBAX plate) is centered in the foam. This helps propel your momentum forward, creating a faster feel underfoot.
Neutral
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Foot Type
Normal to high arches -
Push Off
There is even distribution from the front of the foot. -
How your foot contacts the ground
The foot lands on the outside of the heel, then rolls inward to absorb shock anSBR Collectived support body weight, or pressure remains on outside of the foot through to toe-off. -
For those who appreciate cushioning and don’t require additional support.
Underpronation
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Foot Type
High arches -
Push Off
The pressure is on smaller toes on outside of foot. -
How your foot contacts the ground
The outer side of the heel hits the ground at an increased angle with little or no normal pronation, causing a large transmission of shock through the lower leg.
Tech & Materials
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Engineered mesh upperA lightweight, breathable mesh material helps reduce the need for additional overlays.
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ASTROPLATEPEBAX plate balances propulsion with flexibility for versatility in everyday training.
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FF BLAST MAX™ cushioningOne of our most energetic midsole foams that's complemented with cloud-like softness and a responsive energy return in each step.
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FF TURBO™ SQUARED cushioningThis foam features a high-energy return midsole material. It's designed to help provide excellent cushioning and bounce for your run.
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ASICSGRIP™ outsole rubberASICS proprietary outsole that provides advanced grip on a variety of terrain.
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The sockliner is produced with the solution dyeing process that reduces water usage by approximately 33% and carbon emissions by approximately 45% compared to the conventional dyeing technology








