Engine Auxiliary Components

Spark Plug 4955850/4937472/5473010 for Cummins – Fleet Supply

<p><strong>Spark Plug 4955850/4937472/5473010, Cummins gas engine ignition, M14×1.25 thread, iridium-tipped electrode</strong> — replacement for C8.3 G, ISC8.3 G, ISL G, L9N, and QSL9 platforms (cross-reference only).</p> <ul> <li>Predictable wear item in natural gas engines — scheduling replacement before misfire codes prevents ECU derating and protects catalytic converters across your fleet.</li> <li>Iridium-tipped nickel alloy center electrode with high-purity alumina ceramic insulator supports extended intervals under continuous heavy-duty cycles.</li> <li>Plan stocking by cylinder count per engine and fleet unit quantity to consolidate procurement across mixed Cummins gas platforms.</li> </ul> <p>Replacement interval guidance ships with every order to support your scheduled maintenance planning.</p>

Lead Time

2-5 Days

Warranty

3-12 Months

Min. Order

1 Piece

Ships To

120+ Countries

4955850 Cummins Compatible Engine Auxiliary Fleet Supply spark plug Wear Part

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Product Details

Fleet Stocking Plans — Spark Plug 4955850 (cross-reference only) kept ready for natural gas engine service intervals across mixed fleets.

Technical Specifications

Parameter Value
Part Number 4955850 / 4937472 / 5473010
Product Type Spark Plug
Cross-Reference 4955850, 4937472, 5473010 (reference only)
Machine Fitment C GAS PLUS CM556, C8.3 G, ISB5.9G CM2180, ISC8.3 G CM2180, ISL G CM2180, L9N CM2380, QSL9 G CM558
Condition New Aftermarket
Thread Size M14×1.25
Hex Size 16mm
Electrode Gap Tolerance ±0.02 mm
Center Electrode Material Iridium-tipped nickel alloy
Insulator Material High-purity alumina ceramic (95% Al₂O₃)
Cylinder Pressure Rating Up to 120 bar
Combustion Temperature Rating Exceeding 2,200°C
Thermal Shock Resistance Up to 750°C/min ramp rate

Application Suitability

Service Interval What to Check
Cummins C8.3 G & ISC8.3 G Ignition wire condition and coil output before installing new Spark Plug service part maintenance components.
ISL G CM2180 & L9N CM2380 Catalytic converter backpressure; worn plugs often mask upstream emission system degradation.
QSL9 G CM558 Continuous Duty Electrode erosion rate under high-load landfill or mining genset cycles to adjust replacement timing.
ISB5.9G CM2180 Municipal Fleet Thread condition in cylinder head after repeated removal cycles to prevent cross-threading during scheduled swaps.

Reacting to Misfire Codes Instead of Planning Spark Plug Service Intervals

Waiting for the ECU to flag a misfire means the engine has already been running inefficiently for hundreds of hours.

Fleet managers who treat Spark Plug service part maintenance as a reactive purchase consistently face compounded downtime. The initial misfire on a Cummins L9N or ISL G engine doesn’t just cost idle time; it triggers ECU derating, which limits the machine’s power output and disrupts shift schedules. Furthermore, unburned fuel entering the exhaust stream accelerates the degradation of the catalytic converter, a component far more difficult to source for older platforms [NEED_CITE: impact of misfire on natural gas engine emission systems]. Running a mixed fleet of C8.3 and QSL9 engines without a synchronized stocking plan means a single unit’s failure can cascade into an emergency procurement cycle that leaves other machines vulnerable.

Spark Plug service part maintenance for Cummins gas engines

Predicting Wear Progression Across Cummins Gas Platforms

In natural gas engines like the ISC8.3 G or the L9N, the Spark Plug operates under higher thermal loads than in diesel applications. The iridium-tipped nickel alloy center electrode is designed to resist erosion under these conditions, but it still follows a predictable wear curve. Operators monitoring their fleet’s lifecycle should note that a gradual increase in fuel trim values often precedes a hard misfire code. Catching this symptom during a scheduled service allows the maintenance team to swap the plugs during a planned turnaround rather than pulling a machine off a construction site or waste route mid-shift.

Protecting Downstream Emission Components

The relationship between ignition health and the exhaust aftertreatment system is direct. When a Spark Plug fails to provide a consistent spark in a Cummins C GAS PLUS or QSL9 G engine, raw methane and unburned hydrocarbons pass into the catalyst. Over time, this thermal shock and chemical contamination can melt the catalyst substrate or cause it to plug [NEED_CITE: catalytic converter failure modes in natural gas heavy-duty engines]. By maintaining a strict replacement interval for the Spark Plug, fleet owners extend the service life of the entire emission system, avoiding the significant expense and downtime associated with replacing exhaust components on older machines where brand support may be thinning.

Material Resilience Under Combustion Stress

The high-purity alumina ceramic insulator, rated at 95% Al₂O₃, provides the necessary dielectric strength to handle combustion temperatures exceeding 2,200°C. This material choice ensures that the insulator does not crack under the rapid thermal cycling typical of heavy-duty gas engines, which can see ramp rates up to 750°C per minute. The M14×1.25 thread and 16mm hex size are standard for these Cummins platforms, but the internal geometry of the electrode gap is where the engineering matters. A tight gap tolerance of ±0.02 mm ensures the spark occurs precisely where the fuel-air mixture is most receptive, maintaining combustion stability even as cylinder pressures approach 120 bar during the compression stroke.

Insulator and electrode detail for Cummins compatible Spark Plug

The Hidden Cost of Emergency Procurement

When a fleet runs out of stock and a Cummins ISB5.9G or L9N unit throws a code, the immediate reaction is often to source the part locally at a premium or wait for a backorder. This reactive approach leads to repeated downtime events. A machine sitting in the yard while waiting for a single component is losing revenue every hour. More critically, if the maintenance team only replaces the single failed plug rather than the full set, the remaining older plugs will likely fail in succession, leading to a cycle of "whack-a-mole" repairs [NEED_CITE: best practices for ignition system component replacement]. This pattern prevents the fleet from achieving predictable uptime and inflates the total cost of ownership through labor inefficiency and expedited freight charges.

Sourcing Strategy for Mixed Fleet Operators

Maintaining a consistent supply of aftermarket Spark Plug components for a fleet ranging from C8.3 G to L9N CM2380 requires a supplier who understands the nuances of each engine variant. XUNPO provides these components with the same QC terms whether they are produced in our own facility or sourced from qualified partners, ensuring uniform performance across your inventory. We support fleet-level planning by offering cross-reference verification for superseded numbers, helping you consolidate your stocking list. Our technical team can assist in identifying the correct variant based on your specific control module numbers, such as CM2180 or CM2380, ensuring that your shelf stock matches your actual iron.

Documentation & Verification

  • Commercial invoice listing engine compatibility for Cummins C8.3, ISL, and L9N platforms.
  • Cross-reference sheet mapping 4955850 and 5473010 to current aftermarket designations (reference only).
  • Dimensional inspection report verifying thread pitch and electrode gap tolerance before dispatch.
  • Packing photographs showing protective caps on ceramic insulators to prevent transit damage.
  • HS code classification support for international customs clearance of ignition components.

Service Interval & Stocking Guidance

  • Calculate stocking quantity based on cylinder count per engine and total fleet size to avoid split orders.
  • Inspect electrode gap and ceramic insulator for hairline cracks during every scheduled oil change.
  • Replace plugs in complete sets to maintain balanced combustion across all cylinders of the Cummins engine.
  • Store inventory in a dry environment to prevent corrosion on the M14 threads and terminal nuts.
  • Align replacement intervals with the manufacturer’s recommended service hours for natural gas applications.

Planning Your Fleet’s Ignition Maintenance

To receive a proposal that fits your long-term maintenance budget, please provide your fleet list including engine models (e.g., ISL G CM2180, L9N) and current operating hours. This allows us to calculate the optimal stocking quantity and suggest a replacement schedule that aligns with your existing service windows.

Frequently Asked Questions

Q: How do I determine the correct Spark Plug variant for my Cummins L9N versus my ISL G?
A: The correct variant is determined by the engine control module (ECM) type and the specific engine serial number range. While many plugs look similar, the heat range and electrode projection can differ between the CM2180 and CM2380 systems. Providing the engine data plate information allows our technical team to verify the fitment against the cross-reference table to ensure the plug matches the combustion chamber requirements of your specific natural gas engine.

Q: What are the early signs that a Spark Plug is nearing the end of its service life?
A: Before a hard misfire code appears, operators often notice a gradual increase in fuel consumption or a slight roughness at idle. The engine may also exhibit hesitation under heavy load as the electrode gap widens due to erosion, requiring more voltage to bridge the gap. Monitoring fuel trim data through the diagnostic port can reveal these trends early, allowing for replacement during a scheduled service rather than waiting for the check engine light to illuminate.

Q: Is it necessary to replace all plugs at once, or can I just change the one causing a fault?
A: In a high-hour natural gas engine, all plugs experience similar thermal and electrical stress. If one plug has failed due to normal wear, the others are likely near the end of their service life as well. Replacing only the faulty unit often leads to repeated labor costs as the remaining plugs fail one by one over the following weeks. A full set replacement ensures balanced ignition performance and protects the catalytic converter from uneven combustion events.

Q: How should I calculate the stocking quantity for a mixed fleet of Cummins gas engines?
A: Start by multiplying the number of cylinders for each engine model by the number of units in the fleet. Then, factor in your planned service intervals and the typical lead time for resupply. It is prudent to hold at least one full set of spares for every three engines in the fleet to cover unexpected failures or expedited rebuilds. This buffer helps maintain uptime, especially for older models where aftermarket supply chains can occasionally experience delays.

Compatible Brands

CAT KOMATSU HITACHI VOLVO HYUNDAI DOOSAN KOBELCO SANY XCMG

Our parts are engineered to meet or exceed OEM specifications. Please provide your machine model number and serial number when inquiring to confirm exact compatibility.

How to Confirm Compatibility

  1. 1

    Find Your Machine Model

    Locate the model plate on your machine, typically near the cab or engine compartment.

  2. 2

    Note the Part Number

    Check your parts manual or existing part for the OEM part number.

  3. 3

    Contact Our Team

    Our technical team verifies compatibility within 2 hours. Send us the details via the inquiry form or WhatsApp.

Shipping Information

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Cost-effective option for bulk orders -- 15-35 days

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Tracking number provided after shipment. 24/7 support available.

Warranty Policy

3-12
Months Warranty

All parts come with manufacturer warranty. Duration varies by product category.

  • Manufacturing defects covered in full
  • Free replacement or full refund for defective parts
  • Post-delivery technical support included
  • Sample testing available for first-time buyers

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