SSANGYONG Car Parts

SsangYong part matching begins with VIN and generation because model names cover very different structures. Rexton is a large SUV whose chassis, engines and four-wheel-drive systems change across generations; Musso pickups add cab, bed, payload and towing variants; Tivoli is a compact crossover; Korando has been used for several unrelated eras. Later KG Mobility or KGM branding creates a catalogue boundary, not automatic interchange. Record the complete VIN, production date, original market, model/chassis code, body and wheelbase, steering side, engine and gearbox codes, driven axles and factory equipment.

Establish whether the vehicle is two-wheel drive, selectable four-wheel drive, or uses a controlled all-wheel-drive layout. Identify transmission, transfer or power-transfer unit, front and rear axle ratios, coupling or locking equipment and wheel-end hardware. Rexton/Musso parts should not be inferred for Tivoli or Korando because their powertrain orientation and suspension can differ. Keep tyres to approved dimensions and compatible rolling circumference; mismatch can load a coupling or transfer system and imitate a mechanical fault.

Diesel engine code and emissions stage determine injection, turbocharger, timing, oil, cooling, EGR, DPF and SCR/AdBlue equipment where fitted. A forced DPF regeneration is inappropriate until soot load, oil dilution, temperature sensing and the root engine fault are understood. Petrol and any electrified KGM-era vehicles require their exact powertrain and high-voltage identification. Disconnecting a 12-volt battery does not make orange-cable components safe.

For Musso and commercial Rexton variants, use plated gross, train and axle limits; driver, fuel, towbar, bed liner, canopy and trailer nose load reduce usable payload. Select engine, gearbox, transfer, axle, coolant and brake fluids by unit-specific specification rather than colour or viscosity. Stop for red oil-pressure, braking, overheating, steering or high-voltage warnings. UK MOT or commercial testing checks defined roadworthiness, but does not certify loading, towing setup, four-wheel-drive servicing, ADAS calibration or the technical quality of modifications.

Keep both brand names, original unit numbers and calibration or weighbridge evidence in the workshop record so later repairs remain traceable.

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Vehicle Models and Options for SSANGYONG

ssangyong car parts

KORANDO

manufactured from 02/2019

ssangyong car parts

REXTON

manufactured from 04/2002

ssangyong car parts

MUSSO

manufactured from 01/1993

ssangyong car parts

ACTYON

manufactured from 08/2012

ssangyong car parts

ACTYON SPORTS

manufactured from 11/2005

ssangyong car parts

KYRON

manufactured from 05/2005

ssangyong car parts

RODIUS

manufactured from 05/2005

ssangyong car parts

REXTON W

manufactured from 07/2012

ssangyong car parts

TIVOLI

manufactured from 01/2015

ssangyong car parts

XLV

manufactured from 04/2016

ssangyong car parts

TURISMO

manufactured from 06/2013

ssangyong car parts

MUSSO SPORTS

manufactured from 08/2004

ssangyong car parts

MUSSO GRAND

manufactured from 01/2019

ssangyong car parts

TIVOLI GRAND

manufactured from 06/2021

ssangyong car parts

STAVIC

manufactured from 02/2005

SSANGYONG Parts Catalogue Online

Browse catalogue-backed parts by vehicle system.

471 Products

Cross the SsangYong-to-KGM naming boundary with the VIN

Later UK branding uses KGM/KG Mobility, while the existing vehicle parc includes SsangYong badges and documentation. The corporate name change does not establish that a later KGM-labelled component fits an earlier vehicle. VIN, production date, model/chassis code and approved supersession remain the evidence. Keep both names in search notes where the official catalogue transitions between them.

Rexton, Musso, Tivoli and Korando must then be separated by generation and body. A Musso pickup has cab, wheelbase, bed and loading distinctions. A Rexton SUV can have commercial derivatives. Tivoli uses compact-crossover packaging, while Korando spans markedly different eras. Record market, steering side, engine, gearbox, driven axles, option data and installed unit numbers.

Identification itemQuestion answeredWhy badge data fails
VIN/build dateExact production phase and factory configurationModel names continue through major redesigns
Model/chassis/bodySUV, pickup, cab, bed and wheelbase applicationMusso and Rexton variants can share styling cues
Engine/gearbox codesPowertrain parts, fluids and control systemsCapacity or ratio count is not a unit identifier
4WD/axle dataTransfer, coupling, ratio, shafts and wheel endsA selector graphic does not prove installed hardware
Physical part tagConfirms the assembly fitted after previous repairsFactory records cannot show a later substitution

Generation matters more than a familiar model word

Early and late Korando vehicles cannot be treated as one mechanical family. Rexton generations alter suspension, electronics and emissions. Even within one Musso shape, gearbox, axle, brake and springs can depend on output and load package. Include facelift state and production month when a connector or lamp changed mid-generation.

Map the drive system before selecting shafts or oils

First establish engine orientation and whether the base vehicle drives two or four wheels. A selectable transfer system, an automatically controlled coupling and a permanent torque path have different housings, controls and lubricant needs. Tivoli/Korando crossover layouts should not inherit a Rexton/Musso transfer-case assumption.

On selectable systems, identify high/low ratios, shift motor or vacuum control as fitted, front-axle engagement and differential ratios. On controlled systems, check coupling code, pump or actuator and rear final drive separately. A flashing 4WD lamp can stem from battery voltage, wheel-speed data, selector input, actuator position or wiring rather than broken gears.

Drive layoutParts to identifyDiagnostic starting point
Two-wheel driveTransmission output, driven axle, shafts and hubsConfirm 4WD hardware is genuinely absent
Selectable 4WDTransfer case, controls, front/rear ratios and engagementRead position data and test actuator supply
Controlled AWDPower take-off, propeller shaft, rear coupling and final driveInspect four tyres and live wheel speeds
Locking/limited-slip axleDifferential type, actuator/friction unit and lubricantCheck build code and axle tag
Electrified later vehicleDrive unit, reduction gear, battery and thermal systemUse trained high-voltage safety information

Maintain approved tyre size, load/speed rating and pressure and avoid excessive circumference difference. A new tyre paired with three heavily worn ones can alter wheel speeds. Before condemning the centre drive, check brake drag, bearing play, tyres and stored faults. Do not use a locked or part-time mode on high-grip roads outside the handbook conditions.

Treat pickup payload and towing as an axle calculation

Musso payload depends on exact model, cab, bed, suspension and plated values. Canopy, liner, towbar, fuel, tools and occupants reduce remaining capacity. Trailer nose load acts on the vehicle and can overload the rear axle before gross mass is reached. Use the plate and VIN-specific towing data rather than a headline for another Musso version.

Weigh the working vehicle by axle when near limits. Load must be secured, and tyres and wheels must meet load requirements. Check towbar attachment, coupling, electrical socket and trailer brakes. Suspension aids do not increase certified axle or gross limits. An unlevel combination needs loading and coupling diagnosis, not simply stiffer springs.

Load componentLimit affectedRequired evidence
Canopy/bed equipmentKerb mass and rear axleAccessory weight and axle measurement
Occupants/toolsGross and individual axlesNormal working condition at weighbridge
Trailer nose loadRear axle, payload and couplingMeasured nose weight and approved tow data
Roof loadGross mass and centre of gravityRack plus cargo weight and roof limit
Tyre/wheel changeAxle capacity and stabilityLoad index, offset, pressure and clearance

Diagnose diesel injection and aftertreatment together

The full engine code controls fuel filter, injectors, turbocharger, timing, cooling and oil approval. High-pressure diesel equipment is sensitive to water and dirt. Use capped clean tools, the correct priming procedure and a fuel sample when contamination is suspected. Never loosen a high-pressure line on a running engine.

Aftertreatment varies by emissions stage and can use exhaust recirculation, catalytic oxidation, particulate filtration and urea/SCR dosing where fitted. A DPF pressure fault may originate in hoses, sensor offset, thermostat, injector imbalance or driving pattern. Assess differential pressure, temperature and calculated soot/ash values before selecting a repair.

Repeated regeneration can affect engine oil

A rising oil level or fuel odour can indicate dilution. Do not merely drain to the maximum mark. Investigate incomplete regeneration, injection and operating temperature. Forced regeneration creates severe exhaust heat and must only be carried out with acceptable soot load, safe surroundings and the initiating fault addressed.

Inspect chassis, suspension and brakes for the real duty

Rexton and Musso body/chassis arrangements need checks at mounts, crossmembers, suspension brackets, towbar and load areas. Tivoli and later Korando crossover structures use different repair methods. Identify high-strength or mixed-material body areas from repair data; drilling, heat or welding by habit can weaken a load path and remove corrosion protection.

Musso rear suspension and load rating vary by model. Match springs and dampers to axle and body, not visual ride height. Inspect leaf packs or coils as fitted, bushes, U-bolts/control arms, dampers and bump stops. On Rexton and crossovers, include ball joints, anti-roll links, subframes and alignment.

Measure brake rotors and identify calipers, pads, rear parking mechanism and wheel-speed encoder. Towing raises brake temperatures, while mud and standing reduce friction use or promote corrosion. Electronic parking-brake systems require the prescribed maintenance mode. A pedal change, fluid leak, severe disc cracking or brake warning makes continued use unsafe.

Keep fluids tied to the installed unit

Choose engine lubricant from the approval assigned to the complete engine and its exhaust-control configuration; an SAE grade by itself is incomplete. Manual, automatic and automated transmissions require code-specific fluids and level procedures. Transfer case, controlled coupling and front/rear final drives can each use a separate lubricant.

Coolant dye does not identify chemistry. Follow the current specification, concentration and bleeding route. Brake fluid, hydraulic steering fluid where fitted and air-conditioning refrigerant need their own data. Electrified KGM-era models introduce high-voltage coolant and compressor safety; do not assume a SsangYong combustion procedure applies.

Service areaIdentification basisRecord kept
Lubrication serviceInstalled engine, exhaust-treatment build, oil approval and scheduleSpecification, amount, date, mileage and level trend
TransmissionUnit identifier, filter arrangement, oil specification and thermal level processFluid, temperature and adaptation work
Transfer/couplingExact drive system and housing labelSeparate drain/fill record and oil
DifferentialsAxle tag, ratio and lock/limited-slip typeLubricant and debris inspection
CoolingPowertrain, approved chemistry and bleed methodPressure test and concentration
Brake/steeringSystem design and specified hydraulic fluidLeak, moisture and bleed results

Respond to warnings and preserve diagnostic evidence

Bring the vehicle to rest when a red message concerns lost lubrication pressure, excessive engine heat, braking, steering assistance or traction electricity. Do not tow or carry load with a structural tyre fault, failed wheel bearing, severe driveline vibration or damaged chassis attachment. Recover the vehicle if movement can increase risk.

For amber engine, DPF, ABS, airbag, 4WD or ADAS messages, save codes, event data, system voltage and live sensor values before clearing them. Low battery voltage can produce several network symptoms. Check powers, grounds and wiring before changing a controller.

Follow the VIN-specific schedule and add inspections appropriate to towing, dust, mud and load. A dashboard reset does not demonstrate correct axle oil, fuel filter, DPF history or brake measurements. Keep itemised records across the SsangYong/KGM name transition.

Keep modifications and UK use within evidence

Lifts, larger tyres, canopies, winches, tow equipment and engine tuning affect mass, geometry, brake demand, cooling, ADAS and insurance. Check wheel coverage, lamp aim, full-travel clearance and speed indication. Required catalysts, DPF and SCR equipment must remain operational.

Vehicle type and use determine MOT class and any commercial obligations. Apply current official guidance to the exact Rexton Commercial or Musso rather than guessing from appearance. The MOT can inspect roadworthiness, warning lamps and emissions but is not a payload calculation or towing approval.

A pass cannot validate transfer-fluid history, a suspension lift or high-voltage work. Owners and operators remain responsible for ongoing condition, loading and declared modifications.

SsangYong and KGM identification FAQs

Q: Does KGM branding mean every SsangYong part has a new equivalent?
A: No. Use VIN, production date and approved supersession for the exact vehicle.

Q: Can Rexton and Musso parts be selected from a shared platform claim?
A: No. Body, wheelbase, load, axle and equipment still govern fitment.

Q: Is every Korando mechanically related?
A: No. The name spans very different generations and architectures.

Q: Can 4WD type be read from a selector symbol?
A: No. Identify transfer/coupling, controls, ratios and installed axle hardware.

Q: Why must four tyres be compatible?
A: Circumference differences can load controlled AWD or transfer components.

Q: Does a Musso tow rating decide available payload?
A: No. Nose load, accessories, occupants and individual axle limits also apply.

Q: Can suspension aids increase plated mass?
A: No. They do not change certified gross, train or axle values.

Q: Should a DPF warning always lead to forced regeneration?
A: No. Establish soot load, oil dilution, sensor data and the initiating fault.

Q: Is oil viscosity enough for engine selection?
A: No. Match the complete specification to the engine and emissions stage.

Q: Can transfer and axle housings share one oil?
A: Never assume this; identify every unit and its lubricant requirement.

Q: Does disconnecting 12 volts isolate an electrified KGM?
A: No. Trained high-voltage shutdown and verification are required.

Q: Is a commercial MOT pass proof of safe payload?
A: No. Loading and axle distribution must be established separately.

Q: Does an MOT approve a lift or larger tyres?
A: No. Construction, geometry, insurer and roadworthiness duties remain.