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Premium belts have the highest power density of any V-belt and stretch dramatically less than standard cross sections. That's why they're ideal for use on problem drives requiring high-impact strength and load-carrying power. Replaces several belts with the strength of a single belt. Banded belts feature a multiple layer tie band that provides excellent lateral rigidity to prevent belts from turning over or from coming off of the drive.

JASON® BX54 Cogged Classical V-Belt, BX Section, 21/32 in W Top, 54 in L Outside, 13/32 in THK

JASON® 3VX560 Cogged Deep Wedge V-Belt, 3VX Section, 3/8 in W Top, 56 in L Outside, 7/8 in THK

Introducing Gates® new patented high performance molded notch V-belt. Transmits an average 50% more horsepower than our standard Super HC® molded notch belts, which helps reduce the overall drive width, weight and cost.

Introducing Gates® new patented high performance molded notch V-belt. Transmits an average 50% more horsepower than our standard Super HC® molded notch belts, which helps reduce the overall drive width, weight and cost.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

The PowerBand® construction allows multiple belts to function as a single unit, with even load distribution and each strand fitting securely in the sheave groove.

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Laminated steel padlock. 9/32 in (7 mm) Dia, 3/4 in (19 mm) high, 5/8 in (16 mm) wide shackle. 1-9/16 in (40 mm) wide laminated steel body for superior strength. Hardened steel shackles for extra cut resistance. Keyed different. Non-rekeyable, 4-pin tumbler cylinder helps prevent picking. Dual locking levers provide extra pry resistance. Retail carded packaging, shelf pack quantity 4, master carton quantity 24.

Master Lock® 3KA-3210 Commercial Grade Non-Rekeyable Safety Padlock, Alike Key, 9/32 in Shackle, Laminated Steel Body, 4-Pin Tumbler Locking

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3-KA-3162 MASTER LOCK PRODUCTS

Deadbolt Locks
$15.39

#3 KEYED ALIKE #3162 PADLOCK - MAS3KA3162 >

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7-KA-P-772 MASTER LOCK PRODUCTS

Deadbolt Locks
$12.27

#7 KEYED ALIKE #P-772 PADLOCK - MAS7KAP772 >

American Lock® aluminum padlock. 1-1/2 in (3.8cm) wide red anodized aluminum body, 1/4 in (6 mm) chrome plated, boron alloy shackle with 1 in (2.5cm) clearance. Anodized finish suitable for lockout in food processing facilities. Corrosive resistant finish for tough environments. High visibility color plus high security. Keyed different 5-pin tumbler rekeyable cylinder. commercial boxed packaging, shelf pack quantity 6, master carton quantity 24.

410 thermoplastic safety padlock. 1-1/2 in (3.8cm) wide 1-3/4 in (4.4cm) tall thermoplastic green body, shackle with 1-1/2 in (3.8cm) clearance. Designed exclusively for Lockout/Tagout applications. Durable, lightweight, non-conductive Thermoplastic lock body. Customize on-site with permanent, write-on labels. Compliance with OSHA inone employee, one lock, one key in directive. High security, reserved-for-safety cylinder. Key retaining-ensures that padlock is not left unlocked. Keyed different 6-pin tumbler cylinder. commercial boxed packaging, shelf pack quantity 6, master carton quantity 36.

If you need any additional information, prices, availability, etc. please contact us at 1-800-290-9908 or e-mail us at

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