SKU | 7010294494 |
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Legacy SKU | 60440167900 |
UPC | 00051125118484 |
Product Number | 237AA |
3M Trizact Cloth Belt 237AA uses proprietary microreplication technology by 3M where micron-graded aluminum oxide particles are formed into tiny pyramids of abrasive mineral and then coated on an X weight cloth backing. As these pyramids wear, fresh, sharp mineral is continually exposed to produce a consistent cut and a predictable, fine finish.
- Self-sharpening pyramids start sharp, stay sharp, and run cooler than conventional abrasives
- Flexible backing for consistent finish over contours
- Three-dimensional design enables very consistent finishes throughout the abrasive life in robotic applications
- For intermediate finishing and fine polishing prior to plating or buffing
- Ideal for intermediate finishing and fine polishing prior to plating or buffing
- Produces finer finishes than conventional electrostatically coated abrasives
Product Dimensions |
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Weight | 2.64996 lb |
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Length | 12.00787 in |
Width | 12.00787 in |
Height | 9.25197 in |
Color | Gray |
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PRODUCT FAQ
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What kind of abrasive material does the 3M™ Trizact™ Cloth Belt have?
The abrasive material used in our 3M™ Trizact™ Cloth Belt is aluminum oxide.
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Can this belt be used to grind on metal surfaces?
No, it is not recommended to use our 3M™ Trizact™ Cloth Belt for grinding and shaping purposes. The cloth belt has been optimized for finishing applications only.
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Is a specific tool required when using this belt or can it be attached to various tools?
Our 3M™ Trizact™ Cloth Belt can be used with a variety of different power tools equipped with compatible size specifications.
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Is there any risk of overheating the surface during usage?
With proper usage, you should not encounter any overheating issues as these belts are engineered to minimize heat generation while sanding.
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Is it possible to purchase just one individual cloth belt instead of having an entire case delivered?
A :Yes! You are more than welcome to place an order for individual units according your requirements or procure them from local DIY stores or retailers carrying our products. However, purchasing by unit would result in higher per-unit pricing compared may-to wholesale levels.
The 3M™ Trizact™ Cloth Belt 237AA is designed to provide consistent finishes on hard metals such as carbon and stainless steel. The abrasive and resin structure is formulated to break down under medium pressure and keep fresh, sharp mineral cutting. The belt also features a grinding aid that helps prevent heat buildup, warping, and discoloration. The X-weight, durable cloth backing helps provide control, conformability, and effective medium-pressure grinding. The resin bonded abrasive gives you greater heat resistance and helps prevent delamination.
Runs Smooth, Finishes ConsistentlyThe belt uses a Film Media Splice, a strong secure bond joining the belt ends, consisting of a thin film-joining media that minimizes "chatter marks," ensures a smooth running belt, and consistent finishing results. Proprietary Trizact™ abrasives produce a finer finish, achieve results faster, and last longer when compared to conventional abrasive products.
Ideal for Robotic Finishing and Polishing3M™ Trizact™ abrasives can consistently deliver near-mirror finishes while also delivering the abrasive life that helps reduce changeouts and downtime in robotic cells. This helps maximize the efficiency of the cell, allowing you to produce more parts per belt. Robotic metal polishing demands the most consistent, refined cut and long abrasive life.
The Science of Flawless Finishes3M™ Trizact™ belts start sharp and stay sharp, resulting in more predictable finishes and improved, consistent quality. They can last up to five times longer than conventional belts and provide precise finish control such that operators can reduce grade sequences, requiring fewer process steps and fewer abrasive products. Three-dimensional structures uniformly distributed over the entire surface of 3M™ Trizact™ abrasives ensure consistent performance and eliminate part to part variation.