SKU | 7100115840 |
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Legacy SKU | 61500314986 |
UPC | 00076308457938 |
Product Number | LB-UW |
The Scotch-Brite Laser Braze Finishing Wheel is designed to blend and finish imperfections left by laser brazing during automotive production. It combines Scotch-Brite nonwoven material with 3M Precision-Shaped Grain for faster cutting action and greater durability on Silicon Bronze and other metals.
- Designed to blend and finish silicon bronze parts during laser brazing
- Open web construction resists loading and extends effective service life
- Flexible Scotch-Brite™ material reduces need for recalibration and adjustments
- 3M precision shaped grains provide excellent cut rate and a smooth finish
Product Dimensions |
Imperial | Metric |
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Width | 0 null | |
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Diameter | 4 in | 101.6 mm |
Center Hole Diameter | 1/4 in | 6.35 mm |
Shipping Dimensions |
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Weight | 1.67 lb |
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Length | 8.62205 in |
Width | 8.62205 in |
Height | 2.6378 in |
Maximum Speed | 12,100 rpm |
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PRODUCT FAQ
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What are the dimensions of the Scotch-Brite™ Laser Braze Finishing Wheel?
The wheel has a diameter of 4 inches, thickness of 3.5mm, and a quarter-inch arbor hole.
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How many wheels come in each case of Scotch-Brite™ Laser Braze Finishing Wheels?
Each case contains 20 wheels.
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What applications is this product suitable for?
This finishing wheel is ideal for preparing surfaces before brazing, weld seam blending, and creating decorative finishes on various metals such as stainless steel and aluminum.
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Is it compatible with most angle grinders available in the market?
Yes, this finishing wheel can easily fit into your standard angle grinder due to its quarter-inch arbor hole size.
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Can I use it for dry sanding processes too or just wet grinding & polishing techniques
. You can use OGS products like the Scotch-Brite ™ treated type to carry out dry sanding purposes but not perfectly suited since waste doesn't shift from abrasive quickly enough compared to fluids such as coolant sprays that help transfer heat away from work sites while also neutralizing excess materials effectively.
The Scotch-Brite™ Laser Braze Finishing Wheel is a crucial tool in the automotive industry, specifically in the finishing of metal parts assembled by laser brazing. Laser brazing is a recent development in the industry where body panels are brazed together with silicon bronze. The resulting brazed surface is then blended to create a more uniform segment. The Scotch-Brite™ Laser Braze Finishing Wheel is used to remove excess metal and finish the brazed parts, resulting in a clean and smooth surface that looks uniform and futuristic.
The Many Benefits of Open Web AbrasivesScotch-Brite™ industrial abrasives are unique due to their nonwoven technology. The combination of fiber strands, resin, and abrasive mineral in the Scotch-Brite™ Laser Braze Finishing Wheel forms a durable web. The fibers respond to contours and effectively remove unwanted burrs, soils, and contaminants while maintaining the geometry of the workpiece. This reduces rework and boosts productivity. Gaps in the web allow swarf to escape, so debris does not clog the mineral. The fibers in the web continually break down with use to reveal fresh mineral for exceptional consistency, superior cut performance, and extremely long service life. Scotch-Brite products may enhance productivity while reducing the need for cleaning chemicals and wire brushes. From aesthetic finishing to weld blending, deburring, and more, Scotch-Brite abrasives work fast and deliver consistent results, part after part.
3M™ Precision Shaped GrainThe non-woven strands of the Scotch-Brite™ Laser Braze Finishing Wheel are filled with 3M™ Precision Shaped Grain. This technology is designed to deliver improved output on light to heavy stock removal, allowing operators to finish tasks faster. The grain wears evenly and stays sharp, ensuring extended high performance in production applications. Abrasives with 3M™ Precision Shaped Grain last significantly longer than their conventional ceramic counterparts, making them a cost-effective solution for production applications.