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This collection covers Land Rover and Range Rover hardware and fasteners, including bolts, nuts, washers, clips, rivets, and fixing kits used across chassis, suspension, body, and drivetrain assemblies. Fitment depends on thread standard, grade, and application, particularly between Series-era imperial systems and later metric platforms.
Fuel Tank Plug, M12 threaded, fitted to the fuel tank body. It seals a threaded port in the tank associated with the fuel pump, sender and filler ...
View full detailsCoupling Assembly - union fitting for the engine oil cooler pipe circuit. This union connects adjacent oil cooler pipe sections in the engine bay,...
View full detailsHandbrake Carrier Spacer for the handbrake assembly on Series II, IIA, III and Defender 90/110. This spacer fits within the handbrake carrier mech...
View full detailsSpring Washer is a split spring lock washer used at the top of the steering column, at the steering box. Fitted under the securing nut, it maintai...
View full detailsFlanged Clip Nut is an M6 captive nut retained in a spring-steel clip. The clip pushes onto a panel edge or into a mounting hole to hold the nut c...
View full detailsGrille Retainer Nut secures the radiator grille panel to its mounting points on the front body. It threads onto the grille fixing stud to hold the...
View full detailsM16 Hex Nut is a plain hexagonal fastening nut used across the towing and body hardware. It is most commonly used to secure the tow ball to the to...
View full detailsNut is a metric M12 threaded nut used as a general-purpose fastener across multiple vehicle assemblies. It runs onto a matching M12 male thread to...
View full detailsFoam Gasket seals the door lockface, part of the door latch and lock assembly. It fits between the latch mechanism and the lockface panel, sealing...
View full detailsVertical Drain Channel is a body-side glazing channel fitted to the rear side door. It runs vertically within the door frame to guide the edge of ...
View full detailsSpare Wheel Clamp Plate for the Defender underbody spare wheel carrier assembly. This steel plate forms part of the underfloor spare wheel mountin...
View full detailsUpper Hinge Bolt secures the upper hinge leaf to the door pillar in the door hinge assembly. On Defender, this bolt attaches the upper rear end do...
View full detailsEdge Clip is a fixing used within the body and chassis assembly to secure components to the edge of a panel or flange. The clip pushes onto a pane...
View full detailsFoam Spacer for the front door trim panel assembly on the Defender 90 and 110. This foam spacer fits between the door trim panel and the inner doo...
View full detailsSpring for Land Rover body and chassis application.
Rear Side Filler Panel is the left-hand filler panel that closes the rear side body aperture, forming part of the rear side door and body assembly....
View full detailsRear Side Filler Panel is the right-hand filler panel that closes the rear side body aperture, forming part of the rear side door and body assembly...
View full detailsSteering Column Top Clamp in the steering column mounting, securing the upper end of the steering column to its support bracket. The clamp holds t...
View full detailsBonnet Lock Striker for the hand-operated bonnet latch assembly. This striker pin is the fixed catch component in the bonnet locking system, engag...
View full detailsNut Plate for the body-side striker mountings, part of the door and tailboard latch assembly. The plate provides captive threaded anchor points be...
View full detailsRear Body Lower Mounting Nut Plate used in the rear body mounting assembly on the Land Rover Defender. This pressed steel plate sits behind the bo...
View full detailsHeater Air Intake Spacer Tube fitted within the cabin heating system on the Land Rover Defender 90 and 110. This flanged tube locates within the h...
View full detailsNut Plate for the tailgate hinge mounting assembly. This weld nut plate provides captive threaded retention points for the tailgate closing bracke...
View full detailsU-Bolt within the rear door spare wheel carrier assembly. This U-shaped fastener clamps around the spare wheel rim to secure it against the carrie...
View full detailsFlywheel Timing Pin - an engine timing tool for 4-cylinder diesel engines that locks the flywheel at top dead centre (TDC) so the crankshaft is hel...
View full detailsGear Lever Spacer for the manual gearbox gear change assembly. It sets the position of the gear lever within the gear change housing, maintaining t...
View full detailsFlywheel Bolt - hex-head bolt that secures the flywheel to the rear crankshaft flange within the flywheel and crankshaft assembly. Application: 2....
View full detailsCooler EGR Gasket
Injector Bolt for the 2.2L Td4 (Puma) diesel fuel injection system. The bolt retains a fuel injector in its bore in the cylinder head, clamping th...
View full detailsgasket EGR PUMA 2.4 OEM
Crankshaft Pulley Bolt - M12 x 80mm fastener that secures the crankshaft pulley (torsional vibration damper) to the front nose of the crankshaft on...
View full detailsExhaust Gasket for the flanged joint between the exhaust front pipe and the catalyst section. It seals the bolted flange where the front pipe meet...
View full detailsClip retains the heater and air-conditioning control cable within the HVAC control assembly, holding the cable on its correct routing.
Paint-clearing screw from the standard fastener range. The thread is formed so that it cuts through the paint film as the screw is driven, leaving...
View full detailsFlanged Nut - M10 flanged fastener. The integral flange spreads the clamping load over a wider area and resists loosening under vibration, removin...
View full detailsFlanged Nut - M12 for use in Land Rover fastener applications. A metric M12 flanged nut with an integrated washer flange that distributes clamping...
View full detailsGrommet for the bonnet release cable. This rubber grommet seals the aperture where the bonnet release cable passes through the bulkhead or body pa...
View full detailsDrive Flange Nut - Front secures the front drive flange (driving member) to the wheel hub, as part of the front hub assembly. It retains the drivi...
View full detailsHexagonal Plug for the swivel pin housing oil level and drain. This hex-head plug is used in the front axle swivel pin housing as both an oil leve...
View full detailsFixing Screw used in the flywheel, drive plate and clutch assembly. It is one of the threaded fasteners securing the flywheel or automatic drive p...
View full detailsBolt - M8 x 40mm for the front seat rail mounting. This bolt secures the front seat rails to the floor pan. M8 thread, 40mm length. Sold as a sing...
View full detailsSpherical Bush for the LT77 and R380 manual gearbox gearchange mechanism. It seats the spherical pivot at the base of the gear lever inside the re...
View full detailsThrust Washer 1.45mm Diff - LT230
Bearing transfer box OEM TIMKEN
Mainshaft Nut Staked retaining nut securing the shaft assembly within the manual gearbox. Tightened and staked to lock the gearbox shaft component...
View full detailsThrust Washer and Pin for the LT95 four-speed gearbox, 3.55mm thickness. This selective-thickness washer, with its locating pin, sets the end-float...
View full detailsWheel Stud for the front and rear wheel hubs. This M16 threaded hub stud locates the road wheel on the hub and retains it with the wheel nut.
Front flange LT230
A Land Rover is held together by several thousand individual fasteners. Bolts, nuts, washers, clips, and rivets carry structural loads across the chassis, suspension, body, and drivetrain. On vehicles used off-road, towed regularly, or stored outdoors, these components see vibration, repeated load cycles, and exposure to mud, road salt, and water. Replacing them with the correct grade and coating during service or rebuild work is part of keeping the vehicle safe and rattle-free.
The Series I, II, and III generation use a mix of imperial Whitworth and UNF threads from the 1948 to 1985 production run, switching to metric on some later Series III assemblies. Defender, Discovery, Range Rover, and Freelander production from 1989 onwards uses metric throughout, with ISO 898-1 property class markings (8.8, 10.9, 12.9) standard across the range. This collection groups fasteners by application: chassis and structural mounts, suspension and steering linkages, body panels and bulkhead, brake and underbody, and interior trim. Use the filter to narrow by model or part category.
Categories on this pageFive main groups cover the parts in this collection.
Bolts, nuts, and studs. Standard threaded fasteners across the vehicle. Suspension arm bolts, engine mount studs, gearbox crossmember bolts, body-to-chassis mounts. Grade is selected to ISO 898-1 property classes: 8.8 and 10.9 are the most common in chassis and suspension applications on Defender, Discovery, and Range Rover, with 12.9 used where higher tensile strength is required. Stainless variants (A2 and A4) appear in body and interior locations where corrosion resistance matters more than peak tensile strength.
Washers and spacers. Plain washers, spring washers, locking washers, and shim spacers. These distribute clamping load, prevent galling on softer surfaces, and resist loosening from vibration. Mismatched or missing washers are a common cause of post-rebuild rattles and slow joint fatigue.
Clips, clamps, and rivets. Wiring harness clips, hose and pipe clamps, body panel rivets, and bulkhead fixings. The Freelander 1 and Freelander 2 use a high proportion of plastic clip fixings on the interior trim and underbonnet wiring; most are single-use and break on removal. Rivets are non-serviceable once set and must be drilled out to remove.
Fixing kits. Pre-grouped sets of fasteners for specific repair sections. Bulkhead repair kits, door hinge sets, body mount kits, suspension rebuild kits. Useful where a single specification list covers an entire repair area and individual SKU lookup would be slow.
Specialist fixings. Torque-to-yield bolts, single-use stretch bolts, lock nuts with metal or nylon inserts, and vibration-resistant hardware. These are called out in the Land Rover workshop manual for specific applications and should be replaced with new parts rather than reused.
Selection guideThree rules cover most situations.
For load-bearing chassis, suspension, and drivetrain work, use property class 8.8 or 10.9 carbon-steel bolts unless the workshop manual specifies a different grade. Property class 12.9 is reserved for applications where the manual calls for it. Carbon-steel bolts in exposed underbody locations need a corrosion-resistant coating: zinc plating is the most common, with phosphate or geomet coatings used where coating thickness matters for torque accuracy.
For body panels, interior fittings, and any joint between dissimilar metals, A2 (304-grade) or A4 (316-grade) stainless is the standard choice. A4 has better salt-water resistance and is the better option for coastal use or recovery vehicles.
For brake and steering hardware, follow the manual. These are safety-critical and frequently specify exact part numbers rather than generic grade equivalents. Mixing a stainless bolt into a brake assembly is rarely correct.
When ordering hardware for a Series I, II, or early Series III, confirm thread standard before adding to cart. Imperial Whitworth and UNF threads dominate on pre-1980 production, and modern metric replacements will not engage correctly. Restoration suppliers typically list thread standard alongside the part description, so check before ordering.
Mixing materials matters. Stainless and aluminium in direct contact, with road salt as the electrolyte, sets up galvanic corrosion that eats the aluminium. Anti-seize paste or dielectric grease at the joint slows this significantly.
Fastener property class designations (8.8, 10.9, 12.9, A2, A4) are defined in the ISO 898-1 mechanical properties standard, which sets minimum proof load, tensile strength, and hardness requirements for each class.
Four checks reduce the risk of ordering the wrong fastener for the job.
Hardware in this collection is used throughout Land Rover and Range Rover vehicles. Common applications by category:
Three guides cover repair areas where hardware selection and torque specification matter for the result.
The rear crossmember is a known corrosion point and a regular APK failure cause. Repair sections fit with new fasteners and require the right grade for the load path.
Discovery 2 rear crossmember repair guideBall joint work on Discovery 3, Discovery 4, and Range Rover Sport involves pinch bolts, castle nuts, and cotter pins that are commonly single-use. Diagnostic guide covers symptoms and replacement hardware.
Land Rover ball joint diagnosis and replacementRestoration and off-road preparation work brings the full hardware inventory into play: chassis fixings, body mount renewals, recovery point bolts, spare hardware to carry.
Defender 90 off-road prep and spares guideFor load-bearing and safety-critical fasteners (suspension, brakes, steering, drivetrain mounting), use Genuine or OEM. These are produced to Land Rover's material grade, dimensional, and torque tolerance specifications, which matters for joints that carry road load or yield under torque. For non-critical body and interior fixings (trim clips, panel screws, low-load brackets), well-specified aftermarket fasteners that match the original property class and coating are commonly used and perform reliably. The deciding factor is the load path, not the brand on the box.
ISO 898-1 specifies minimum tensile and yield strength for each property class. Grade 8.8 carbon-steel bolts have a minimum tensile strength of 800 MPa and minimum yield strength of 640 MPa in the M5 to M16 range. Grade 10.9 minimum tensile is 1040 MPa, and grade 12.9 minimum tensile is 1220 MPa. For Land Rover chassis and suspension applications the workshop manual normally specifies 8.8 or 10.9. Grade 12.9 is reserved for applications that explicitly call for it.
No. Series I, II, and pre-1980 Series III production uses imperial Whitworth and UNF threads inherited from the 1948 to 1985 production run. Defender from 1983 onwards, Discovery from 1989, Range Rover, and Freelander all use metric threads to ISO standards. Imperial and metric of the same nominal diameter look similar but will cross-thread if mixed. Restoration suppliers list thread standard alongside Series-era parts; confirm before ordering.
Some can be reused, some cannot. Many factory bolts in suspension, drivetrain, and engine mounting positions are torque-to-yield: they stretch into their plastic deformation range when first torqued and lose accuracy if reused. The Land Rover workshop manual marks these as single-use. Standard non-yield bolts in low-stress positions can usually be reused if threads, head, and shank are undamaged and any locking compound is cleaned off.
Zinc plating gives carbon-steel bolts moderate corrosion resistance and is the most common coating on underbody Land Rover hardware. Stainless steel (A2 grade is 304, A4 grade is 316) gives higher corrosion resistance and is preferred for body panels, interior fittings, and coastal-use vehicles, with A4 being the better choice for salt-air exposure. Black oxide is a thin conversion coating used mainly on interior and low-exposure parts; it offers minimal corrosion protection on its own and is usually paired with an oil film.
Galvanic corrosion happens when two metals with different electrochemical potentials sit in direct contact with an electrolyte (water with road salt or mud). Aluminium loses material to steel under those conditions. To slow it down: clean both surfaces before assembly, apply anti-seize paste or dielectric grease at the contact face, and where possible use a nylon or fibre washer to isolate the two metals. This is especially relevant on alloy suspension components and aluminium body panels secured by steel hardware.
A fixing kit groups every fastener needed for a specific repair section into a single bagged set. Common examples include bulkhead repair kits, body mount renewal kits, door hinge sets, and suspension overhaul kits. Kits are worth buying when a single repair touches multiple fastener types and sizes: it removes the SKU-by-SKU lookup, ensures the right grade is used across the joint set, and usually costs less than buying each fastener individually. For single-bolt replacements, individual parts are normally the better route.
Updated: May 2026