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10435607

Image for Illustration purposes only. Actual product may vary

Link-Belt TSP1006 (10435607) TSP take-up frame, stainless steel construction, T-frame protected screw design for pillow block mounting. Frame length 10-3/8 in, travel length 6 in, adjusting screw 5/8-11 with 3/8 in square drive. Mounting bolt size 3/8 in, pad width 1-1/2 in. Designed for Link-Belt 200 series ball bearing units.

MODEL 10435607

BRAND

SKU

499627

WEIGHT

3.500 lb

UOM

each

UPC

662327985943

Contact supplier for technical support on: 800-626-2120

$1,011.99 Each

Prices are subject to change

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Typically Ships in: 1 day

Returnable: Yes

Adjusting Screw Square Drive (in)

3/8 in

Adjusting Screw Thread Size (in)

5/8 - 11 NC in

Bearing Type

No bearing

Centerline of Frame to Bottom of Mounting Pad (in)

3 11/16 in

Distance from Frame Bolt Hole Center to Mounting Plate Face (in)

1 1/2 in

Frame bolt hole spacing (in)

7 1/16 in

Frame bolt hole spacing in width direction (in)

2 5/8 in

Frame length (in)

10 3/8 in

Frame Material

Stainless steel

Frame type

T-Frame Protected Screw for Pillow Block Mounting

Maximum Mounting Plate Bolt Hole Spacing (in)

4 5/16 in

Minimum Mounting Plate Bolt Hole Spacing (in)

2 15/16 in

Mounting bolt size (in)

3/8 in

Mounting pad height (in)

1/4 in

Mounting pad width (in)

1 1/2 in

Mounting Plate Bolt Size (in)

3/8 in

Mounting Plate Length (in)

5 1/4 in

Mounting Plate Width (in)

7/8 in

Series

TSP Take-up Frames

Take-up frame assembly type

T-Frame Protected Screw Take-Up for Pillow Block Mounting

Travel length (in)

6 in

Take-Up Bearing Frames The Link-Belt (Rexnord) TSP1006 T-FRAME is a robust take-up bearing frame designed for enhanced stability and reliability in heavy-duty applications. Engineered with precision, this T-frame is essential for ensuring optimal alignment and support for your conveyor systems, making it a vital component in various industrial settings.
Key Features
Durable ConstructionMade from high-strength materials to withstand heavy loads and harsh environments, ensuring longevity and performance.
Design SpecificationsThe TSP1006 features a compact design with specific dimensions optimized for easy installation and maintenance.
Enhanced StabilityEngineered to provide superior support and alignment for bearings, minimizing wear and prolonging the life of your machinery.
CompatibilitySpecifically designed for use with Link-Belt conveyor systems, ensuring seamless integration and optimal performance.
Versatile ApplicationIdeal for various industrial applications, including mining, construction, and manufacturing, where reliable bearing support is critical.
Applications
Conveyor SystemsPerfectly suited for take-up applications in conveyor systems, providing essential support and alignment for consistent operation.
Heavy MachineryCompatible with a wide range of heavy machinery and equipment, ensuring efficient performance in demanding environments.
Industrial FacilitiesUtilized in industrial facilities where durability and reliability are paramount for smooth operations.
Benefits
Operational EfficiencyEnsures uninterrupted operation of conveyor systems, leading to increased productivity and reduced downtime.
Cost-Effective SolutionOffers long-term reliability which reduces maintenance costs and extends the lifespan of machinery.
Enhanced PerformanceProvides superior support that translates to improved performance of connected components, ensuring optimal productivity.

How do I choose the right type of bearing for my application?

Start with the load and how it’s applied. You need to know if you’re dealing with radial loads, axial loads, or a mix of both. Then look at speed, operating environment, and space constraints. For example, ball bearings are great for high speed and lighter loads, while roller bearings handle heavier loads but usually at lower speeds. If there’s contamination, moisture, or heat involved, you may need sealed bearings or specific materials. In most cases, the right choice comes down to matching load type, speed, and environment to the bearing design.

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