Hot Pressed Turbo Diamond Blade with Reinforced Ring Core for Ceramic/Porcelain
Short Description:
This product series comprises hot-pressed turbo diamond blades with reinforced ring cores designed for precise cutting of ceramic, porcelain, marble, and artificial stone. The range includes multiple models (JC394040812, JC394450812, JC394050812, JC394070816) with diameters from 4″ (105mm) to 7″ (180mm), segment height of 8mm, thickness of 1.2mm (for 4″-5″ models) to 1.6mm (for 7″ model), and a standard bore of 22.23mm, catering to various cutting depths and precision requirements in tile and stone processing.
a. Product Features and Advantages:
Enhanced Durability: Utilizes high-quality diamond particles and an optimized formula to extend blade lifespan, ensuring long-term performance.
Reinforced Core Design: Features double-layered reinforced rings on both sides of the blade, enhancing stability during cutting, reducing vibration for smoother finishes.
Hot-Pressed Construction: Employs a hot-pressing technique to securely bond diamond segments, improving structural integrity and heat dissipation.
Precision Cutting with Turbo Rim: Adopts a turbo rim design for efficient material removal while minimizing chipping (ideal for delicate tile surfaces), paired with a 4.5° cutting angle and ultra-thin 1.2MM kerf for accuracy.
Versatile Compatibility: Segments are tailored for ceramic, porcelain, marble, artificial stone, and granite applications, balancing cutting speed and precision.
Cooling & Fine Cut Performance: Core includes multiple circular cut-outs for heat dissipation; outer edge has a continuous row of closely packed light beige-to-silver diamond segments, enabling “FINE CUT” for hard tile materials.
b. Product Applications:
Ideal for professional and DIY cutting tasks on ceramic/porcelain tiles, marble slabs, artificial stone, and granite tiles. Suitable for creating clean, chip-free edges in countertop installations, tiling projects, and decorative stonework, delivering efficient and precise cutting for hard tile materials.

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