We ship worldwide — Singapore, Australia, Malaysia, Indonesia, Philippines, India, Middle East & more

3G Electric
SCOTCH-BRITE CF-HA Hook-and-Loop Surface Conditioning Disc - Blending & Finishing Discs for All Metals
SCOTCH-BRITEBlending & Finishing Discs for All Metals

SCOTCH-BRITE CF-HA Hook-and-Loop Surface Conditioning Disc

The SCOTCH-BRITE Hook-and-Loop Surface Conditioning Disc (6 in Dia, Series CF-HA) is a silicon carbide, ultra fine, 40-pack blending and finishing disc for all metals. 3G Electric interprets your demand and sources…

SKU 3G-OTH-541712

Brand
SCOTCH-BRITE
Item
CF-HA Hook-and-Loop Surface Conditioning Disc
Part Number
7100138330
Category
Blending & Finishing Discs for All Metals
Available to Order
Trade pricing by quote — replies within 24h
Qty
WhatsApp an engineerMessage via Telegram
No account needed — your quote request goes straight to our engineers. A free account lets you track quotes and re-order faster.
Worldwide Shipping
Air & sea freight
Datasheet on Request
Technical specs
1-Day Quote
Replies within 24h

Local availability & support

Delivery
Worldwide DHL shipping from Singapore; 7–14 business days door-to-door for most destinations.
Payment
Invoicing in USD. Bank transfer (SWIFT) and corporate PO accepted.

Technical Specifications

SCOTCH-BRITE
Manufacturer Part Number
7100138330
Series
CF-HA
Type
Silicon Carbide, Ultra Fine, 40 PK

Technical Documents

No technical documents available for this product.
Request documentation →
Not sure this is the right part? Get a recommendation.

Need installation or engineering help?

Installation, commissioning, maintenance plans, system design, and bundled product + service quotes — one team handles the full scope.
Talk to an engineer

Ask a question

SCOTCH-BRITE Products
3G Electric (S) Pte. Ltd. — Singapore

Product Description

The SCOTCH-BRITE Hook-and-Loop Surface Conditioning Disc (6 in Dia, Series CF-HA) is a silicon carbide, ultra fine, 40-pack blending and finishing disc for all metals. 3G Electric interprets your demand and sources this genuine industrial abrasive, backed by specialist expertise across 14 departments—including combustion, pumps, and controls—to ensure you get the right solution, not just a catalog.

Frequently Asked Questions

What is the SCOTCH-BRITE Hook-and-Loop Surface Conditioning Disc used for?

This 6-inch silicon carbide ultra-fine disc is used for blending and finishing all metals. It removes light scratches, oxidation, and surface imperfections without altering the base material, ideal for automotive, aerospace, and general fabrication applications.

What are the specifications of the SCOTCH-BRITE 7100138330 disc?

The SCOTCH-BRITE CF-HA disc is 6 inches in diameter, made of silicon carbide, ultra-fine grade, and comes in a 40-pack. It uses a hook-and-loop attachment system for quick changes on compatible backing pads.

Where to buy SCOTCH-BRITE surface conditioning discs worldwide?

3G Electric supplies and delivers genuine SCOTCH-BRITE surface conditioning discs worldwide. We handle full logistics and customs clearance, ensuring you receive the correct abrasive for your metal finishing needs, backed by our specialist expertise across 14 industrial departments.

How to select the right SCOTCH-BRITE disc for metal finishing?

Choose the disc grade based on desired finish: ultra-fine for final blending and light deburring. Ensure your backing pad matches the 6-inch hook-and-loop interface. For heavy stock removal, consider coarser grades; for mirror finishes, follow with finer abrasives.

Not sure this is the right part? Photo-identify it→

SCOTCH-BRITE Products

3G Electric supplies SCOTCH-BRITE blending & finishing discs for all metals. We supply genuine products with in-stock availability on common SKUs, technical documentation, commissioning support, and warranty service — worldwide.

You might also need

Burners & Combustion →Pumps & Compressors →Spare Parts →All Products →

More from SCOTCH-BRITE

View all SCOTCH-BRITE parts →

Customer reviews

No reviews yet — be the first

Questions & answers

No questions yet — ask us the first