THE t-shark

T-+SHARK.jpg

The CORE T-Shark Grinding Cup stands out as a premium solution in the realm of concrete grinding cups, thanks to its innovative T-Shark Segment design. This unique feature sets it apart by incorporating an ingenious airflow mechanism that comes into play during operation. The T-Shark Segment not only exhibits exceptional grinding prowess but also generates a controlled airflow, enhancing the overall efficiency and performance of the grinding process. This innovative design not only aids in cooling the cup during prolonged use but also ensures a more consistent and precise grind. The T-Shark Grinding Cup caters to the needs of professionals and DIY enthusiasts alike, providing a top-tier solution for concrete grinding tasks that demand both precision and durability.

In addition to its groundbreaking T-Shark Segment, the CORE Grinding Cup boasts premium construction materials and craftsmanship. Crafted with precision and durability in mind, this cup is engineered to withstand the rigors of demanding grinding applications. Whether tackling tough concrete surfaces, smoothing out imperfections, or preparing for coating applications, the CORE T-Shark Grinding Cup delivers unparalleled performance. Professionals in the field can rely on its robust design and innovative features to streamline their workflows, ultimately achieving superior results in concrete grinding projects.

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CODES

PATSCW-4.5
PATSCW-5
PATSCW-7

SIZE

4.5”
5”
7”

MACHINE TYPE

VARIABLE SPEED GRINDER
VARIABLE SPEED GRINDER
VARIABLE SPEED GRINDER

APPLICATION

DRY AND WET GRINDING
DRY AND WET GRINDING
DRY AND WET GRINDING

T- SHARK VS MATERIAL GUIDELINE

The Chart above uses a rating system from 1 to 5. The rating value of 1 our lowest possible rating and the rating value of 5 is our highest possible rating.
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t-shark segment

The T-Shark Segment was designed to balance Grinding Ability and Heat Distribution. The shape and surface area of the segment maximizes the total grinding area while assisting the cup in generating a sufficient flow of air to minimizing the total friction created against the working material.