SMT925 disc grinding wheel
Flap discs for powerful angle grinders
The SMT 925 Special flap discs are characterised by a noticeably higher grinding performance and excellent service life. This is an abrasive material for grinding materials such as
stainless steel and
steel.
The product achieves its best results on these surfaces and convinces even the most demanding users. These are Special class flap discs. They are particularly aggressive and have a very long service life. This is appreciated by experienced professional users as well as hobby craftsmen who want to implement ambitious projects. Anyone looking for high-quality flap discs and wanting to achieve the best possible results should choose this excellent product.
Best results with zirconium electrocorundum
Flap discs of this type achieve their high performance thanks to the use of zirconium electrocorundum abrasive grain. The SMT 925 Special grinding discs achieve their best performance on powerful angle grinders. Their plastic plate is reinforced with glass fibre and impresses with its long service life, even under intensive use. The product is available in different grit sizes, from fine to coarse, and for high speeds.
Flap discs from the Special range \ nThis is a flap disc available from Klingspor in straight and convex versions. Convex flap discs grind with their narrower working surface. Because the work is more selective, they achieve a higher grinding performance per unit of time. This is the ideal solution for processing edges and welds. The straight versions, on the other hand, use the entire surface and are suitable for frontal grinding and surface grinding. In the Special series, Klingspor offers the right grinding disc for every application. These are high-performance products for use in industrial and craft enterprises, ensuring maximum performance and service life even under continuous load. Therefore, the SMT 925 Special flap disc grinding wheels are a reliable abrasive material with a wide range of applications.
Product inquiry form
- Group
- 66D3
