Weiler® 6 X 045 Tiger Inox Ty1C-O Whl 7/8 Ah Part# - 58102

1 PK (25 EA = 1 PK)
Manufacturer: Weiler®
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Weiler® 6 X 045 Tiger Inox Ty1C-O Whl 7/8 Ah Part# - 58102

Brand: WEILER®

Part Number: 58102

Weight: 0.15 lbs

Country of Origin: SLOVENIA

Minimum Order Qty: 1 PK (25 EA = 1 PK)

Features: CONTAMINANT-FREE INOX WHEELS: Contains less than 0.1% iron, sulfur, and chlorine, resulting in a worry-free solution for stainless steel applications | DUAL REINFORCEMENT: Provides added strength for aggressive cutting | SHARP, CLEAN, CUT RATE: Premium aluminum oxide grains provide an even, sharp, clean cut rate and consistent performance | APPLICATION: The flat profile allows for deep cuts and .045 inch wheel thickness is ideal for cutting tubes, bar stock and large cross-sections with a right angle grinder. The 7/8" open arbor offers a cost-effective mounting option when using adapting nuts | SPECIFICATIONS: 6 inch dia, 0.45 inch thickness, Tiger INOX Type 1 Cut-Off Wheel, INOX60S, 7/8 inch A.H., Max RPM 10,200

Tiger INOX 6 inch type 1 cutting wheels are specifically designed for high performance when cutting stainless steel. These wheels incorporate a Contaminant-free bond that delivers a worry-free solution for stainless steel applications. The flat type 1 profile allows for deep cuts commonly required when cutting metal. The .045 wheel thickness is ideal for cutting tubes, bar stock, and large cross-sections with a right angle grinder. Weiler’s diverse line of cutting wheels provide a consistent, well balanced, high quality solution. From our 1 millimeter cutting wheels that slice through metal, to our large diameter wheels for the biggest cuts, professionals get the most demanding jobs done right and done fast. Industrial Grade - Engineered and manufactured to maximize performance and minimize operating costs in the most demanding surface conditioning applications. The use of superior construction, the highest quality materials and the most stringent manufacturing processes deliver the lowest cost-of-use and most consistent performance in heavy production environments.