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2026-08-08

NMT Ltd.
Corporate Communications Department

NMT Split Bearings for Port & Terminal Equipment – Ship Unloaders, Stacker-Reclaimers, Belt Conveyors & Railcar Dumpers – No-Shaft-Removal Quick Replacement, Impact-Resistant & Corrosion-Resistant, In Stock & Customizable

1. Core Pain Points of Bearing Replacement in Port & Terminal Equipment

Ports and terminals are critical hubs for bulk cargo logistics. Ship unloaders, stacker-reclaimers, belt conveyors and railcar dumpers handle continuous loading and unloading of coal, ore, grain and other bulk materials, operating 24/7 year-round. In port, thermal power, mining and metallurgical industries, split bearings have become standardized retrofit components for bucket wheel machines, stacker-reclaimers, belt conveyors, railcar dumpers and other heavy-load material handling equipment. The 14,400 t/h reclaimer, currently the world‘s largest capacity reclaimer, is equipped with a super-large split thrust ball bearing. However, when bearings in these machines fail, maintenance teams face a far more complex dilemma than ordinary industrial equipment.

 

Typical pain points of traditional solid bearings in port equipment:

 

Inaccessible equipment locations – Conveyor head pulley bearings are trapped between drive pulleys and gearboxes or motors; stacker-reclaimer bearings are deep within boom and slewing mechanisms; ship unloader bearings are inside boom structures tens of meters high. In these locations, lifting equipment cannot access, and maintenance personnel working space is extremely limited. The advantage of split bearings is especially valuable in hard-to-reach or trapped places.

 

Enormous disassembly workload – Replacing one bearing requires disassembling couplings, motors, gearboxes, frames and numerous surrounding components. Traditional solid bearings have a closed-loop integrated structure – when failure occurs, the main shaft, frame, transmission system, drums and other core components must all be disassembled, with complex procedures and long construction periods. Port equipment bearing replacement typically requires renting large cranes, incurring high costs and transport time.

 

Downtime measured in days or even weeks – Traditional solid bearing replacement typically takes days or even weeks. At Pilbara Iron‘s Dampier Port, replacing bearings on bucket wheel excavator drives was a maintenance nightmare, typically requiring 72 hours, with downtime cost of 1,110 euros per hour. A Tianjin Port portal crane slewing bearing developing sudden abnormal noise required complete slewing ring replacement, causing 1-2 days of equipment downtime.

 

Port environment accelerates bearing failure – Port equipment is long-term exposed to high humidity, salt spray, wind, rain and sea sand – ordinary bearings with inadequate seals allow dust and salt spray to penetrate, accelerating wear and corrosion.

 

Production losses measured in tens of millions – One day of unplanned port downtime loses the entire loading/unloading line‘s throughput and vessel schedules. The hidden economic losses from downtime far exceed the bearing replacement cost itself.

 

2. NMT Split Bearings for Ports: No-Shaft-Removal Quick Replacement

NMT split bearings for ports perfectly combine the core advantage of split bearings – “no-shaft-removal installation“ – with the special requirements of port equipment. The inner ring, outer ring, rolling elements and cage are all split along the axial direction – installation requires no removal of shafts, couplings, gearboxes or any other core components – assembly is completed directly on the shaft in situ.

 

More critically – NMT split bearings can be replaced without removing drive motors, gearboxes, couplings, without moving shaft systems, without using heavy lifting equipment. Installation requires no movement of surrounding equipment or machinery – installation costs are low, replacement is convenient, downtime is reduced, and maintenance efficiency is improved. Split bearings disassemble into smaller components, easing lifting and handling tasks and making assembly or changeout simple even in the most cramped and inaccessible conditions.

 

▸ Full Split + Heavy-Duty Corrosion-Resistant Construction

 

Every component of an NMT split bearing for ports is split – split inner ring, split outer ring, split cage with rolling elements, split seals. During installation, these half-ring components are assembled sequentially around the shaft. After being locked with high-strength bolts, they form a precision transmission unit with performance fully equivalent to a solid bearing. Wire-cut inner and outer ring manufacturing techniques ensure precise geometric alignment of the two halves, with separate rolling elements accommodating axial loads independently of radial loads.

 

In terms of materials, NMT offers a complete impact-resistant and corrosion-resistant steel system for port high-dust, high-humidity, salt spray conditions – carburized bearing steel with deep-case hardening achieves uniform surface hardness HRC60-64 while the core maintains sufficient toughness to absorb impact loads. For coastal port salt spray corrosion environments, stainless steel or special anti-corrosion coatings are available.

 

▸ No-Shaft-Removal Installation: No Motor Removal, No Coupling Removal, No Heavy Lifting Equipment

 

The core value of NMT split bearings for ports is – bearing replacement without moving the shaft, without removing drive motors and couplings, without using heavy lifting equipment. This means for conveyor head pulley bearing replacement, no drive coupling or cantilevered drive disassembly is required. For stacker-reclaimer bearing replacement, large couplings or gearboxes can remain completely intact. Maintenance personnel simply open the bearing housing, remove the old bearing halves, install the new bearing halves, and tighten the bolts – complete.

 

▸ Interchangeable with Standard Heavy-Duty Solid Bearings

 

NMT split bearings for ports are designed with full interchangeability with standard heavy-duty solid bearings in mind. In most cases, the outer diameter and outer ring width of split bearings are identical to standard spherical roller bearings (222, 230, 231, 239, 240, 241 series). Split bearings can often directly replace a standard spherical bearing in an existing housed bearing housing without any machining modifications.

 

3. Product Series

NMT offers a complete split bearing product system covering multiple port equipment applications:

 

▸ Ship Unloader Split Spherical Roller Bearings

 

Ship unloaders are core equipment for bulk cargo handling – bearings in boom and hoist mechanisms endure continuous alternating loads and impacts. NMT split spherical roller bearings are specifically designed for ship unloaders, grab cranes and other heavy impact applications – inner rings, outer rings and cages with rollers are all split in half. Spherical outer ring raceways and barrel-shaped rollers provide self-aligning capability, effectively compensating for boom deflection and installation errors. The split structure allows bearing replacement without removing booms and hoist mechanisms.

 

▸ Stacker-Reclaimer Split Spherical Roller Bearings

 

Stacker-reclaimers are key equipment for port bulk storage yards – bearings in bucket wheel drives and slewing mechanisms are in hard-to-reach positions. In port, thermal power, mining and metallurgical industries, split bearings have become standardized retrofit components for bucket wheel machines, stacker-reclaimers, belt conveyors and other heavy-load material handling equipment. NMT split spherical roller bearings are typically used in shaft diameters from 240mm to 450mm for stacker-reclaimer applications, with the split structure allowing bearing replacement without disassembling the bucket wheel body and gearbox.

 

▸ Belt Conveyor Split Spherical Roller Bearings

 

Belt conveyors are the “arteries“ of port material handling – head and tail pulley bearings are often located between drive equipment and drums, making replacement extremely difficult. NMT split spherical roller bearings are specifically designed for conveyor drive and bend pulleys – no drive coupling disassembly is required for bearing replacement. Split bearings can be split directly along the split plane – simply separate the bearing components, fit them around the shaft journal and bearing housing, and tighten the connecting bolts to complete installation or replacement. NMT port split bearings are especially advantageous in “trapped“ positions.

 

▸ Railcar Dumper Split Bearings

 

Railcar dumpers handle bulk cargo unloading from railway wagons – bearings in slewing and tilting mechanisms endure heavy impact loads. NMT split bearings enable bearing replacement without disassembling the main dumper structure, dramatically shortening maintenance time.

 

▸ Split Housed Bearing Units

 

NMT offers split housed bearing units that integrate split bearings and housings as a complete assembly. The core advantage is “radial installation and disassembly“ – no need to disconnect and disassemble components around the bearing such as motors, gearboxes and couplings. The housing can swivel around the shaft, ensuring that the seals always remain concentric to the shaft, thus further extending the potential life of the bearing as contaminants are effectively excluded. Housings are available in cast iron, cast steel or stainless steel to suit different port conditions.

 

4. Specialized Sealing and Lubrication Systems

Port equipment operates year-round under harsh conditions of high dust, high humidity and salt spray. NMT split bearings for ports feature customized sealing and lubrication systems:

 

▸ Multi-Barrier Sealing – For high-contamination port environments, NMT can provide a multi-barrier sealing solution. The first barrier is the precision-machined seal itself, the second is a V-ring seal mounted directly on the bearing, and the third is grease surrounding the bearing. This multi-layer protection effectively excludes contaminants, further extending bearing service life. Sealed split bearings significantly extend service life through improved contamination resistance.

 

▸ Split Seals – Seals are also split for installation without shaft threading, assembled simultaneously with the bearing.

 

▸ Heavy-Duty Grease – Conventional grease is easily squeezed out under heavy impact conditions. NMT offers graded lubrication solutions: standard conditions use extreme-pressure heavy-duty grease; high-temperature conditions use high-temperature grease. Sealed split bearings reduce grease consumption.

 

5. Installation Efficiency Comparison

Traditional solid bearing: Shutdown → disassemble couplings, motors, gearboxes → move shaft → slide bearing on → realign → reassemble → recommission. Time: days to weeks (Pilbara Iron bucket wheel excavator requires 72 hours).

 

NMT split bearing: Shutdown → open housing → remove old halves → install new halves → tighten bolts → complete. Time: hours to days.

 

Port Industry Specific Data:

 

Pilbara Iron Dampier Port (Rio Tinto Group) : Bucket wheel excavator drive bearing replacement – traditional solid bearing took 72 hours, with downtime cost of 1,110 euros per hour. FAG split spherical roller bearings reduced downtime by 36 hours, saving 40,000 euros. Solid bearing cost 2,780 euros, split bearing 16,670 euros – minimum savings per replacement: 27,514 euros.

 

SKF Cooper Split Spherical Bearings: Can reduce mean time to repair (MTTR) by 70%. Traditional bearing replacement typically takes 24 hours, while split spherical bearings take just 8 hours. Fitting time is just 10%-15% of the time required for solid bearings.

 

Trapped Conveyor Bearing Positions: In coal mine conveyor head pulleys, unplanned downtime at trapped bearing positions is typically around one day. Replacing with SKF Cooper split bearings saved over 10 hours of downtime, avoiding over $100,000 in lost production.

 

6. Quality Control

NMT implements a strict quality control system for port split bearings:

 

Heavy-duty material certification – Each batch of bearing steel undergoes impact load testing and hardness inspection to ensure performance meets port heavy-duty requirements

 

Precision split surface machining – High-precision wire cutting for inner and outer ring split surfaces, ensuring concentricity and strength after assembly

 

High-strength locking system – High-strength steel clamp rings and multiple bolts ensure split surfaces remain secure during operation

 

Seal performance verification – Each batch undergoes salt spray and high-dust environment seal testing to ensure sealing effectiveness under harsh port conditions

 

Post-assembly precision inspection – Each split bearing is inspected for radial clearance, rotational accuracy and vibration after assembly – ensuring performance equivalent to solid bearings

 

7. Stock Availability & Customization

Common split spherical roller bearings and split cylindrical roller bearings kept in stock – covering over 80% of split bearing needs for ship unloaders, stacker-reclaimers, belt conveyors, railcar dumpers and other port equipment. Emergency failures receive rapid response – minimizing unplanned operational downtime.

 

Lead times for extra-large bearings can be as long as 12 to 18 months – pre-stocking split bearing spares can dramatically shorten emergency downtime. The 14,400 t/h world‘s largest capacity reclaimer‘s split bearing has an outer diameter of up to 11 meters.

 

Custom solutions available: special bore/OD/width (standard range 55mm to 11 meters+), custom heavy-duty materials (carburized bearing steel/heat-resistant steel/stainless steel), special split configurations, custom sealing solutions, custom clearance, split housed bearing units.

 

Rapid customization from samples or drawings. Cost-effective replacement for imported brands (SKF Cooper, FAG, Timken, NSK) with significant procurement savings.

 

8. Lifecycle Cost Optimization

Unplanned downtime in the port industry often costs tens of millions or even hundreds of millions of yuan. One day of ship unloader downtime loses the entire vessel unloading schedule and terminal throughput. Conveyor pulley bearing failure stops production, directly affecting subsequent vessel berthing plans. The hidden economic losses from downtime far exceed the bearing replacement cost itself. Split bearings dramatically shorten maintenance time, reduce maintenance difficulty and lower costs.

 

Hidden costs of cheap heavy-duty solid bearings:

 

Pilbara Iron replacement requires 72 hours of downtime – losing 1,110 euros per hour

 

Disassembly of motors, couplings and surrounding components is time-consuming and may cause secondary damage

 

Heavy lifting equipment rental costs are enormous

 

Ordinary bearings have limited life under harsh port conditions – frequent replacement compounds losses

 

NMT split bearings for ports deliver “no motor removal, no shaft removal, quick bearing replacement without production stoppage“ in ship unloaders, stacker-reclaimers, belt conveyors and railcar dumpers:

 

Downtime reduced by over 70% – From days/weeks to hours – annual unplanned downtime losses dramatically reduced. Traditional 24-hour replacement compressed to 8 hours, Pilbara Iron 72 hours → 36 hours

 

No motor or coupling removal – Drive systems and surrounding components stay in place – avoiding secondary damage and realignment

 

No heavy lifting equipment required – Bearings are handled in sections – no large cranes or wall removal

 

Heavy-duty steel withstands high impact and harsh environments – Carburized bearing steel and deep hardening resist impact loads and alternating stress

 

Multi-barrier sealing for high dust and salt spray environments – Effectively protects against coal dust, ore dust and salt spray intrusion

 

Improved worker safety – Simplified installation reduces exposure time at repair sites

 

Extended life of equipment (motors, gearboxes, couplings) – Fewer disassembly cycles – longer overall equipment overhaul intervals

 

For port operators, terminal management companies and bulk logistics enterprises, the total cost of ownership with NMT split bearings for ports is significantly lower than the repeated disassembly and replacement costs of traditional heavy-duty solid bearings – what you save is not bearing price difference, but the enormous operational risk and throughput loss of “replacing one bearing, shutting down an entire port line.“