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Drill Bit MEGA SDS+ 22 mm for Concrete, model 82260
Drill Bit MEGA SDS+ 22 mm for Concrete, model 82260
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Drill Bit MEGA SDS+ 22 mm for Concrete, model 82260
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Drill Bit MEGA SDS+ 22 mm for Concrete, model 82260
Drill Bit MEGA SDS+ 22 mm for Concrete, model 82260
MEGA SDS+ 22 mm drill bit for concrete, model 82260, is a rotary-hammer accessory designed for drilling 22 mm diameter holes in concrete, masonry and other mineral substrates. The bit features an SDS+ shank that ensures secure seating in compatible hammer drills and efficient energy transfer during percussion drilling. It is intended for general construction, installation and repair tasks where reliable 22 mm holes are required.
The SDS+ shank provides quick and secure mounting in SDS+ chucks, reducing bit slippage and improving drilling efficiency. The tip geometry and flute design are optimized for removal of dust and debris, which helps maintain drilling speed and accuracy in dense mineral materials. The bit is built to withstand the impact forces of rotary hammers, offering consistent performance when drilling into reinforced concrete and masonry.
Fit the drill bit into the SDS+ chuck of a compatible rotary hammer until it locks in place. Select the hammer-drilling mode on the tool and position the bit perpendicular to the work surface. Begin drilling at low speed to establish the hole, then apply steady pressure and allow the rotary hammer to deliver percussion action; avoid forcing the bit. Withdraw the bit periodically to clear dust and prevent clogging, and use appropriate cutting or cooling intervals when drilling deep holes.
Use appropriate personal protective equipment, including eye protection, hearing protection and dust mask. For reinforced concrete, use progressive drilling with light pressure and occasional withdrawal to flush out debris. Match drill diameter to required anchor or conduit size and ensure the rotary hammer selected has sufficient impact energy for the substrate.
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