Jacking & Lifting

Jacking and lifting equipment raises and supports vehicles for wheel, brake, suspension and underbody work. Trolley jacks, bottle jacks, scissor jacks, axle stands, ramps, wheel chocks and lifting pads have different roles. A jack lifts; it is not a safe substitute for correctly placed rated stands or a locked professional lift.

Select equipment by vehicle mass, load distribution, ground clearance, lift point and required height. Confirm working load limit, minimum and maximum reach, saddle shape, stand adjustment, ramp width and floor suitability. The rating must cover the actual supported load with margin; attachments and crossbeams require their own compatible ratings.

Use only the vehicle manufacturer's lifting and support points. Sills, battery trays, floor pans, suspension arms, differentials and subframes are not generic lift points. Electrified vehicles can have high-voltage batteries across the underside and specified pads that protect their enclosure.

Work on firm, level, load-bearing ground. Select park or gear as instructed, apply the parking brake where compatible with the job and chock wheels remaining on the floor in both directions. Loosen wheel fasteners only as the procedure recommends before lifting, and never enter beneath a vehicle on a roadside emergency jack.

Inspect jacks and stands for leakage, cracks, bent frames, damaged welds, worn pawls and missing pins. Position the saddle centrally, raise slowly while watching vehicle movement and place stands at paired approved points. Lower gently onto them, verify full seating and test stability from outside before working underneath.

Keep people out of the vehicle and never rely on hydraulic pressure alone. Do not stack loose timber, bricks or sockets for extra height. If any support settles, tilts or marks the lift point, stop and rebuild the lifting plan before continuing. After work, clear tools, raise enough to remove stands, lower in control and torque wheels on the ground by specification. Suitable jacking and lifting equipment is listed below.

Your Current Vehicle

Or

Select Your Vehicle

51 Products

Raising and supporting are separate safety functions

A jack applies upward force through a small saddle and moves as its arm follows an arc. Hydraulic seals or mechanical threads can fail or settle. Stands provide a locked load path after lifting.

A workshop lift uses multiple arms, locks and defined pads. Every system still depends on stable ground, correct load distribution and exact vehicle lift points.

Equipment roles

EquipmentPrimary useStrengthKey limitation
Trolley jackControlled workshop lifting.Low entry and rolling chassis.Needs hard level floor and room to move.
Bottle jackHigh force from compact base.Large capacity and vertical stroke.High minimum height and small footprint.
Vehicle scissor jackEmergency wheel change.Compact and matched to vehicle point.Not intended for underneath maintenance.
Axle standMechanical support after lifting.Positive pin or ratchet height.Needs approved support point and stable base.
Drive-on rampRaises a pair of wheels.Broad support with no hydraulic hold.Approach clearance and rollback risk.
Wheel chockPrevents tyres rolling.Simple essential restraint.Must match tyre and surface.
Two-/four-post liftProfessional full-vehicle access.High productivity and controlled geometry.Installation, inspection and trained operation required.

Capacity and load distribution

Vehicle mass is not shared equally

Front-heavy vehicles can place far more than half their mass on the front axle. Lifting at one corner or centrally changes the load on the jack and each stand. Use axle weights and equipment calculations, not simple division by four.

Working load limits

Ratings apply in stated configurations on suitable surfaces. An extension, adaptor or inclined load can reduce capacity. Never exceed the lowest-rated component in the system.

Equipment selection checks

CheckQuestionRisk if wrong
CapacityWhat load reaches this jack/stand pair?Structural or hydraulic failure.
Lift rangeCan saddle enter and reach required support height?Unstable blocks or over-extension.
Saddle/padDoes shape match sill, pin or subframe point?Slippage and body damage.
Base/floorIs ground level and able to carry point load?Tilting or sinking.
Vehicle geometryWill the car move fore/aft as jack rises?Chocks or saddle displaced.
Work scopeWhich wheels/suspension parts must hang or carry load?Support placed on component being removed.
Battery/underbodyAre EV battery and cables near pads?High-voltage damage and fire.

Vehicle lift points

Consult handbook or workshop information for emergency jacking, workshop lifting and stand support points; they can differ. Pinch welds may need a slotted pad that loads their reinforced area.

A central subframe or differential lift is permitted only where explicitly stated. Cast aluminium housings and thin suspension arms can crack or deform.

Floor and surface condition

Concrete must be sound, level and thick enough for point loads. Asphalt softens in heat; gravel and soil allow wheels or stand feet to sink. A rated load-spreading plate may be specified, but improvised loose boards can split or slide.

Trolley-jack wheels need to roll as the arm rises. If they catch in a joint, the saddle can pull sideways from the vehicle.

Chocking and vehicle restraint

Place correctly sized chocks firmly against tyres that remain grounded, commonly on both sides of a wheel. Transmission park and parking brakes have play and can act only through particular wheels.

If rear brakes or driveshafts are being removed, the parking brake or transmission may no longer restrain the vehicle. Update the chocking and support plan before dismantling.

Inspection before use

FindingRiskAction
Hydraulic leak/creepJack lowers without command.Remove from service for repair/test.
Bent stand post/baseLoad no longer transfers vertically.Replace; do not straighten casually.
Cracked weldSudden structural failure.Quarantine immediately.
Worn ratchet tooth/pawlStand can drop a height step.Remove from use.
Missing locking pinSubstitute bolt may shear.Obtain exact manufacturer pin.
Damaged saddle padSlippage or sill damage.Fit approved replacement.
Unreadable rating labelCapacity cannot be verified.Identify formally or remove from service.

Safe lifting sequence

  1. Plan lift and support points from vehicle information.
  2. Confirm equipment capacity, reach, inspection and floor condition.
  3. Unload occupants and unnecessary cargo and close doors.
  4. Select gear/park, parking brake status and chock arrangement.
  5. Position jack squarely with saddle centred on approved point.
  6. Raise slowly, watching saddle, jack wheels and vehicle balance.
  7. Place matching stands at approved paired support points.
  8. Lower in control until weight is fully seated on stands.
  9. Keep jack as secondary support only if it does not obstruct work; never rely on it.
  10. Test stability gently from outside before entering the work zone.

Axle-stand placement

Set stands to equal height on paired points unless the procedure specifies otherwise. The saddle must sit fully beneath the reinforced feature, not touch on one corner.

Use the provided locking pin or fully engaged ratchet. Do not place a stand beneath a suspension component that will be unbolted during the job.

Emergency roadside jacks

Use only to change a wheel in accordance with the handbook. Park away from traffic on firm level ground, use hazard controls and never place any part of the body beneath the vehicle.

If the ground, traffic or weather is unsafe, call recovery. A puncture does not justify working beside live traffic or on a slope.

Drive-on ramps

Check tyre width, vehicle clearance and ramp capacity. Align squarely, use a spotter outside the vehicle's path and drive slowly without sudden throttle. Stop blocks are not intended to absorb high-speed impact.

Once positioned, select park/gear, apply the brake as appropriate and chock the grounded end. Never use damaged ramps or stack ramps for height.

Electrified-vehicle precautions

Battery enclosures can cover most of the floor. Jacking on them can crush cells, creating delayed thermal runaway. Use the exact marked pads and adaptors.

Orange high-voltage cables and coolant lines may pass near lift arms. If the underside has been struck or deformed, isolate the area and follow manufacturer emergency and high-voltage assessment procedures.

Suspension loading decisions

Some work needs suspension hanging; other procedures require normal ride-height load before final bush torque. A hub or spring can move when load is transferred.

Support springs, axles and subframes independently before releasing fasteners. Stored spring energy needs dedicated compressors and procedures, not the vehicle jack alone.

Lowering sequence

StageCheckHazard prevented
Work completeTools, drains and people clear.Crushing and spillage.
Wheels fittedFasteners seated and hand/run-down complete.Wheel displacement.
Raise from standsJack centred and takes load gradually.Stand binding or vehicle shift.
Remove supportsAll stands and chocks accounted for appropriately.Driving over equipment.
LowerSlow descent with tyres landing evenly.Vehicle jump or jack movement.
Final torqueVehicle stable and specified sequence used.Incorrect wheel clamp.

Maintenance and inspection records

Keep lifting equipment clean and dry, lubricated only as its maker specifies. Hydraulic oil and bleeding procedures are model-specific. Do not weld or modify rated structures.

Workplace lifting equipment may require statutory examination and recorded inspections under applicable UK regulations. Owner visual checks do not replace competent formal examination.

Common mistakes

  • Working under a vehicle supported only by a jack.
  • Jacking on an unapproved sill, sump, battery or differential.
  • Using bricks, sockets or loose timber as extensions.
  • Lifting on gravel, soft asphalt or a slope.
  • Assuming four stands share vehicle mass equally.
  • Removing the component that a stand is supporting.
  • Using a substitute bolt in place of a stand pin.
  • Entering beneath a roadside emergency jack.

Safety and UK legal responsibilities

Vehicle falls cause fatal injuries. Keep a clear exclusion zone, never allow occupants inside and stop immediately if equipment tilts, creaks or settles. Re-plan rather than trying to reposition supports while loaded.

Commercial equipment use is subject to workplace safety duties, inspection and training. A safe lift also prevents damage that could create braking, steering, structural or high-voltage roadworthiness defects.

Jacking and lifting FAQs

Q: Is a hydraulic jack safe to work under?
A: No. Support the vehicle on correctly placed rated stands or a locked lift.

Q: How is jack capacity selected?
A: Calculate the actual load at the lift point and stay within every component rating.

Q: Can any subframe point be used?
A: No. Use only points specified for that lifting/support method.

Q: Can wood blocks increase jack height?
A: Do not use improvised loose blocks; use approved equipment and adaptors.

Q: Why must trolley-jack wheels roll?
A: The lift arm moves in an arc and the jack must reposition under the load.

Q: Are axle stands rated individually or as pairs?
A: Follow the specific maker's rating statement and never assume.

Q: Should wheels be chocked?
A: Yes, use an arrangement appropriate to the wheels and driveline remaining grounded.

Q: Can I crawl under a car on its scissor jack?
A: Never. It is for handbook emergency lifting only.

Q: Can an EV be jacked under its battery?
A: No. Use the exact designated pads and approved adaptors.

Q: What if the ground is gravel?
A: Do not lift until a suitable engineered level load-bearing surface is available.

Q: Can a cracked stand be welded?
A: Remove it from service; unapproved repair invalidates rated integrity.

Q: When are wheel bolts finally torqued?
A: Follow the vehicle procedure, normally with the wheel securely loaded and correct sequence.

Q: Do workshop lifts need inspection?
A: Yes, applicable competent examination, maintenance and workplace rules must be followed.