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Dodge 069352 WSTU-IP-203R wide slot take-up bearing with 2-3/16" bore. Heavy-duty Imperial spherical roller bearing with push-pull adapter mount and clamp collar locking. Non-expansion fixed design for belt and chain tensioning applications. Uncoated finish.
MODEL 069352
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$625.68 Each
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Returnable:No
Brand
Dodge
Model
069643
Brand
Dodge
Model
066632
Brand
Dodge
Model
071394
Brand
Dodge
Model
071474
Bearing component
Mounted Bearing
Bearing type
Spherical roller, spherical roller
Bore length
3.0300 in, 76.962 mm
Expansion capability
Non-expansion (fixed)
Finish
Uncoated
Greasable
Yes
Housing construction
Solid
Housing type
Wide-slot take-up
I.D.
2 3/16 in
Insert material
Steel
Locking
Clamp collar
Lubrication type
Grease
Max Speed
3000 rpm
Rolling element
Spherical roller
Shaft attachment
Push-pull adapter
Shaft diameter
2.1875 in
Static load capacity
29000 lbf, 128998.427 N
Take-Up Bearing Assembly: The Dodge 069352 WSTU-IP-203R Take-Up Bearing Assembly is a precision-engineered component designed to provide reliable support and alignment in various industrial applications. With a robust construction and a bore size of 2 3/16 inches, this bearing assembly ensures optimal performance and durability in demanding environments.
Key Features
| Bore Size | 2 3/16 inches, specifically designed for efficient shaft support and alignment. |
|---|---|
| Durable Construction | Manufactured using high-quality materials to withstand wear and tear in industrial applications. |
| Easy Installation | Designed for straightforward mounting and adjustment, minimizing downtime during installation. |
| Versatile Compatibility | Suitable for various applications, including conveyor systems and industrial machinery. |
| Enhanced Performance | Engineered to reduce friction and improve operational efficiency, extending the lifespan of the assembly. |
Applications
| Industrial Machinery | Ideal for use in conveyor systems, textile manufacturing, and other heavy-duty machinery. |
|---|---|
| Agricultural Equipment | Compatible with various agricultural machinery requiring reliable bearing solutions. |
| Material Handling | Perfect for applications involving moving parts where alignment and support are critical. |
Benefits
| Increased Reliability | The robust design provides consistent performance, reducing the risk of failure in critical applications. |
|---|---|
| Operational Efficiency | Minimizes friction, enhancing the overall efficiency of machinery and equipment. |
| Durability | Built to withstand harsh conditions, ensuring a long service life and reduced maintenance costs. |
SKU: 127693
Re-seller discount needed
Quick delivery, but I think you should raise your prices for end users and lower your prices for resellers like myself!
Read moreSKU: 118299
Prompt & great service
As usual MRO Supply team are quick in shipping the ordered parts correctly without any delay.. Will shop online again confidently knowing they offer very good and prompt service!
Read moreSKU: 5005293
Dodge conveyor bushings
The right part, in stock, easy to find, quickly shipped.
Read moreSKU: 117408
P90 coupler
These where a perfect match saved me time and money by getting them fro you guys
Read moreHow much grease is in a Dodge bearing out of the box?
Most standard Dodge bearings ship with a 33–35% factory grease fill. Washdown bearings ship 100% full; Harsh Duty ball bearings ship at 66%. All are shaft-ready out of the box — no pre-lube needed before installation.
How do I keep water out of a bearing on a wet shaft (washers, washdown conveyors)?
Three factory-recommended angles: a more robust multi-lip seal option for the housing where one exists; Dodge's modern SAF-style mounted bearing, which installs faster than a traditional SAF assembly and seals better; and continuous lubrication with an automatic lubricator (IntelliLube), which keeps a positive grease purge at the seal so water is pushed out instead of drawn in.
Which Dodge bearings hold up on sand-and-gravel conveyors with regular washdown?
Dodge's Harsh Duty series (formerly the Defender series) was designed for aggregate duty. It's a seal upgrade over the standard product with identical mounting dimensions, so it drops into your existing footprint: Harsh Duty versions exist for Type E and TAF tapered-roller pillow blocks and for ball bearings (ED suffix). The tapered line carries a one-year performance guarantee against solid-particle-contamination failure when commissioned with a Dodge IntelliLube automatic lubricator.
What grease do Dodge bearings come with from the factory?
Standard Dodge mounted bearings ship shaft-ready with an NLGI #2 lithium-based grease. Ball bearing inserts are factory-filled with Mobil Unirex N2 (a lithium complex grease); roller bearings get a heavier grease, Mobil XHP 222. Bearings can also be ordered dry, or with a special grease, if your plant runs its own lubrication standard.
How does Dodge warranty evaluation work if a product fails?
Failed units go to Dodge's US plants for evaluation — about a week in transit plus one to two weeks of analysis, and you get the findings either way. Warranty covers workmanship and material defects; failures caused by the application (lubrication, installation) fall to the customer, but the failure analysis tells you the root cause so it doesn't repeat.
How do I select the correct bore size and load rating for my take-up bearing assembly?
Bore size must match your shaft diameter, while load rating depends on belt tension and system weight. Bearing width directly affects maximum load capacity—wider bearings support higher loads. Follow standard bearing dynamic load rating calculations (ISO 281) where rating life in hours is calculated as L10 = a1(C/P)^3 for ball bearings, with C being the dynamic load rating and P the equivalent load.
What are the main types of take-up bearing assemblies and when should I use each?
Common types include pillow block (versatile for light to heavy-duty), flange mount (space-saving for vertical), slider (extended adjustment range), and split designs (installable without shaft removal). Pillow blocks are standard for most conveyor applications, while sliders handle applications with significant wear compensation needs and split bearings simplify retrofits without disassembly.
What is the typical adjustment travel range of a take-up bearing assembly?
Adjustment range varies significantly by frame type and bore size (Conviber). Heavy-duty frames (1.5″–5″ bore) offer 12–48 inches of travel; light-duty frames (0.5″–3.5″ bore) provide 6–24 inches; center-pull frames offer 12–36 inches; and top-angle frames provide 12–24 inches of adjustment. Adequate travel must be available at installation to account for future belt wear.
How should I adjust and lock a take-up bearing assembly to maintain proper belt tension?
Loosen the adjustment bolt, reposition the bearing along the frame slot to achieve desired tension (typically 1–2% deflection under hand pressure), then secure with the locking pin or bolt and nut to prevent drift. Verify alignment after tensioning and recheck tension after initial run-in period as belts seat.
What material options are available for take-up bearing assemblies and which is best for corrosive environments?
Standard steel, stainless steel, and bronze are common options. Stainless steel housings with sealed bearings provide the best corrosion resistance for wet or chemical environments. Bearing cage material (brass, bronze, or synthetic) also affects performance in corrosive conditions and speed limitations.
What is a take-up bearing and what is its primary purpose?
A take-up bearing is a specialized mounted bearing unit designed to maintain proper tension in belts, chains, and other flexible drive elements while supporting rotating shafts. The bearing combines a standard ball or roller bearing insert with an adjustable housing that permits controlled movement along a linear path, enabling engineers to adjust shaft positioning and maintain optimal tension as components stretch or wear over time.
What types of take-up bearings are available and how do they differ?
Common types include frame-mounted take-ups (mounted within frame structures for conveyor systems), center-pull units (featuring a pull-style design for easy adjustment in space-constrained applications), and top-angle units (angled designs for addressing misalignment issues). Each type is optimized for different mounting configurations, load directions, and installation environments.
How do take-up bearings maintain proper tension in conveyor systems?
Take-up bearings feature a sliding slot or threaded adjustment mechanism in their cast iron or pressed steel housing that allows axial movement of the bearing assembly. By repositioning the bearing along the frame using a screw or similar device, operators can adjust the distance between pulleys to increase or decrease belt tension without extensive disassembly of the conveyor system.
What are common applications for take-up bearings?
Take-up bearings are essential in conveyor systems, agricultural machinery, material handling equipment, and industrial drive systems across food processing, manufacturing, mining, construction, and quarrying industries. They support both radial and axial loads while maintaining proper belt or chain tension to prevent slippage and reduce vibration and wear.
What specifications should I consider when selecting a take-up bearing?
Key specifications include bore diameter (shaft size), load capacity (static and dynamic ratings), speed rating (RPM limit), housing material (cast iron or pressed steel), and adjustment type (screw, eccentric collar, or adapter sleeve). Typical bore sizes range from 12mm to larger diameters, with load capacities and speed ratings varying based on the bearing type and housing design; pre-lubricated units often use premium greases like Chevron SRI-2 for extended intervals between relubrication.
What lubrication schedule should I follow?
Use the bearing manufacturer's recommended grease grade and relubricate at intervals matched to your speed and load—heavy-duty applications may need monthly service, while light-duty runs can extend to 6–12 months. Over-greasing creates drag and heat; under-greasing causes metal-to-metal contact. Wipe off excess grease to prevent contamination.
What's the difference between pillow block and flange mounted bearings?
Pillow blocks mount parallel to the shaft (shaft runs horizontally along the base), while flange blocks mount perpendicular to the shaft (shaft extends out from the face). Choose pillow blocks for shafts that are level with your mounting surface; choose flange blocks when the shaft is perpendicular to your mount point.
What's the difference between 2-bolt and 4-bolt flange mounts?
2-bolt (diamond) flanges fit tight spaces and light-to-moderate loads. Switch to 4-bolt (square) flanges for cantilevered (overhung) loads, torque reversal, or shafts over 50mm—the extra bolts distribute load more evenly and resist side thrust better.
How do I select the right bearing size and load rating for my application?
Match the bore diameter to your shaft size, then verify the dynamic load rating (C) exceeds your expected radial load. For radial loads, use C ≥ 3× your maximum load as a conservative starting point. Check speed rating against your RPM—pillow blocks typically handle 3,000–4,000 rpm while flange units can push 5,000+ rpm depending on bolt strength and bearing series.
How should I install and align a mounted roller bearing?
Align the bearing housing parallel to the shaft using a straightedge or dial indicator—misalignment is a leading cause of premature wear. Tighten mounting bolts in a cross pattern to seat the housing evenly. Use a soft mallet to tap the bearing unit into place; never force it. Check alignment after installation.
When should I replace a mounted bearing?
Replace based on condition: vibration signature analysis or ultrasonic emission (detected with a hand-held meter) indicates wear hours or days before audible noise appears, and is the actionable MRO signal. Other replacement triggers include continuous operation above 80°C housing temperature, visible grease leakage, or reaching the manufacturer's service interval for your duty cycle. Scheduled relubrication and temperature monitoring extend service life significantly — replacement is a last resort, not preventive maintenance.
What are the main types of mounted bearings?
Mounted bearings come in four main forms: pillow blocks (flat-base, shaft parallel to mounting surface), flange mounts (perpendicular shaft, available in 2-bolt and 4-bolt variants with different radial ratings), hanger bearings (overhead support for long horizontal shafts), and take-up frames (adjustable center-distance units for belt or chain drive tensioning). Select based on your shaft orientation, load direction, and space constraints.
How do I install a mounted bearing correctly?
Verify your shaft diameter is within the bearing bore tolerance (consult the NSK or SKF datasheet), then secure the bearing to the mounting surface using the specified bolt torque and engage the locking collar or set-screw on the shaft to prevent axial slip. Hand-rotate the shaft through several complete turns with a dial indicator, laser alignment tool, or feeler gauge to confirm smooth operation and proper shaft runout within spec.
How often should I grease a mounted bearing?
Use the formula (OD in mm) × (Width in mm) × 0.005 = grams for periodic relubrication of the bearing element only; initial housing cavity fill is separate and should be 30–50% of free volume. Over-greasing damages seals and generates excess heat—stick to the calculated quantity and recommended relubrication schedule.
What temperature should a mounted bearing run at?
Monitor housing surface temperature (the standard MRO measurement point): 40–65°C is normal, 70–75°C warrants investigation of misalignment or over-greasing, and 80°C requires immediate shutdown. The inner race runs 15–30°C hotter than the housing surface, so an 80°C housing reading means lubricant degradation is accelerating and the bearing requires emergency diagnosis.
What bearing materials are available and which should I use?
Standard bearing materials include: - Chrome Steel — Premium bearing steel used by SKF, NSK, Timken, and most manufacturers. Offers excellent hardness, fatigue resistance, and durability in standard industrial applications. Most common for ball and roller bearings. - Stainless Steel — Provides corrosion resistance for applications in wet, humid, or chemically corrosive environments. Used in food processing, marine, and pharmaceutical equipment. - Ceramic Hybrid Bearings — Combine steel races with ceramic rolling elements. Offer reduced friction, lower heat generation, and higher temperature capability. Used in high-speed, high-precision applications and aerospace. - Polymeric Bearings — Utilize fluoropolymer composites with embedded graphite or PTFE. Provide low friction in high-speed applications where lubrication film breakdown would be problematic. Material selection depends on operating environment (temperature, moisture, chemical exposure), speed, load, and precision requirements. Standard chrome steel bearings suit most industrial MRO applications.
What is a bearing and what does it do?
A bearing is a mechanical component that enables smooth rotational or linear motion by reducing friction between moving parts. Bearings support loads and facilitate the transfer of forces between moving elements, preventing direct metal-to-metal contact that would cause wear and heat buildup. Rolling element bearings contain balls or rollers that rotate within races (raceways) to minimize friction. Common types include ball bearings (used for moderate loads and high speeds), roller bearings (used for heavy loads at medium speeds), and angular contact bearings (designed for combined radial and axial loads). Bearings are essential in industrial equipment including motors, pumps, compressors, gearboxes, turbines, and conveyor systems.
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.
What are dynamic and static load ratings, and why do they matter?
Static Load Rating (C₀) — The maximum load a stationary or slowly rotating bearing can support without permanent deformation of its rolling elements or raceways. Defined by ISO 76 as the load producing 0.01% permanent deformation of the rolling element diameter. Static load capacity is the limiting factor when a bearing operates at very low speeds or remains stationary under heavy loads. Dynamic Load Rating (C) — The constant load a bearing can endure for a specified number of revolutions (the L10 life, at which 90% of identical bearings are expected to survive). Dynamic load rating determines how long a bearing will last under rotating or oscillating motion. ISO 281 defines the L10 calculation using the formula: L10 = (C/P)^p, where C is dynamic load rating, P is equivalent dynamic load, and p is the life exponent (3 for ball bearings, 10/3 for roller bearings). Why They Matter — Static load rating determines if a bearing can handle peak loads without permanent damage (even if not rotating). Dynamic load rating determines operational life. For high-speed applications, dynamic rating is critical. For low-speed or stationary loads, static rating may be the limiting factor. Always verify both ratings against your application's load profile.
How should I maintain and lubricate bearings?
Lubrication Importance — Improper lubrication causes over 40% of bearing failures. Proper bearing lubrication prevents friction damage, dissipates heat, protects against corrosion, and acts as a barrier against contaminants (dust, moisture, debris). Lubrication Selection — Choose between grease and oil based on: - Grease: Suitable for low-to-medium speed, sealed bearings, and applications without continuous circulation. Easier to apply and retain. Common for motors, household appliances, and sealed units. - Oil Mist or Circulating Systems: Better for high-speed applications, high-temperature environments, and heavy-load machinery where heat dissipation is critical. Best Practices: 1. Map all lubrication points and create a maintenance schedule. 2. Use the correct lubricant type and viscosity grade specified by the bearing manufacturer. 3. Store lubricants in sealed, labeled containers away from moisture and contaminants. 4. Monitor bearing temperature and vibration; unusual heat or noise may indicate inadequate lubrication or bearing wear. 5. Replace bearings before reaching L10 life if contamination or lubrication failure is detected.
How do I choose the right bearing for my application?
Bearing selection depends on five key factors: 1. Load Type and Direction — Determine whether your application has radial loads (perpendicular to shaft), axial loads (along the shaft), or combined loads. Deep groove ball bearings suit primarily radial loads; tapered roller bearings excel at combined loads; thrust bearings handle pure axial forces. 2. Rotational Speed — Ball bearings support higher speeds with lower friction. Roller bearings are better for medium-speed, heavy-load applications. Verify bearing speed ratings against your operating RPM. 3. Load Capacity — Select a bearing with adequate load capacity for your application. Basic dynamic load rating (C) and basic static load rating (C₀) determine how much load the bearing can safely carry. 4. Lubrication Requirements — Choose between grease and oil lubrication based on speed, temperature, and load. High-speed or high-temperature applications typically require oil circulation; lower-speed applications can use grease. 5. Precision and Rigidity — Evaluate your application's tolerance for runout deviation. High-precision applications require tighter tolerances and higher-grade bearings.
What is bearing life (L10) and how does it affect my equipment maintenance?
L10 Life Definition (ISO 281) — L10 is the basic rating life at which 90% of a large group of identical bearings are statistically expected to survive under constant load and speed. It is calculated in millions of revolutions using the formula: L10 = (C/P)^p, where C is the basic dynamic load rating, P is the equivalent dynamic bearing load, and p is the life exponent (3 for ball bearings). Converting L10 to Operating Hours — To express L10 life in hours: L10h = (L10 × 10^6) / (60 × n), where n is rotational speed in RPM. For example, a bearing with L10 = 1,000 million revolutions operating at 3,600 RPM has approximately L10h ≈ 4,630 hours. Modified Life (L10a) — Actual bearing life also depends on lubrication quality, contamination, speed, temperature, and bearing accuracy. ISO 281 defines a modified life factor (a₁ × aISO) that adjusts the theoretical L10 for these real-world conditions. High-quality lubrication and proper maintenance can extend bearing life significantly; poor lubrication or high contamination reduces it. Why It Matters for Maintenance — L10 life helps you schedule preventive maintenance, budget for bearing replacement, and select bearings adequate for your duty cycle.
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SKU: 127693
Re-seller discount needed
Quick delivery, but I think you should raise your prices for end users and lower your prices for resellers like myself!
Read moreSKU: 118299
Prompt & great service
As usual MRO Supply team are quick in shipping the ordered parts correctly without any delay.. Will shop online again confidently knowing they offer very good and prompt service!
Read moreSKU: 5005293
Dodge conveyor bushings
The right part, in stock, easy to find, quickly shipped.
Read moreSKU: 117408
P90 coupler
These where a perfect match saved me time and money by getting them fro you guys
Read moreItem must be unused and undamaged, in it's orginal package. For Dodge there is typically a 10% + $30 US re-stocking fee, although it may vary from case to case. Re-packing fees may apply. Re-stocking fee applies bor both returns for credit and return for exchange.
Warranty is redeemed directly with manufacturer. If your item was damaged during usage, please let us know and we will help you get in touch with your nearest service center, they will guide you about the steps to follow to redeem the manufacturer's warranty.
For further information on our returns/warranty policy, please visit:
https://www.mrosupply.com/page/returnwarranty-policy/