9. Inspection & Maintenance Japanese Used Machinery & Heavy Equipment Guide

How to Inspect Tires on Used Wheel Loaders

Used wheel loader tires being inspected for tread wear, sidewall cuts, cracks, pressure and overall condition

Tires can represent a major replacement cost on a used wheel loader, so they should be checked as carefully as the engine or hydraulic system. A tire can still have visible tread but also have deep sidewall cuts, cracking, uneven wear, previous repairs or incorrect pressure that affects its remaining service life.

Before buying, inspect every tire individually and compare all tires as a set. Check the size, construction type, tread pattern and application rating first. Then inspect tread depth, cuts, cracks, sidewalls, shoulders, bead areas and rims. Compare front and rear wear, look for mismatched tires and check pressure when appropriate. Finally, consider the machine's previous working environment. Quarry, mining, recycling and load-and-carry work can create very different tire wear patterns. This guide explains what overseas buyers should check before purchasing used wheel loaders and other wheeled heavy equipment from Japan.

Start by Identifying the Exact Tires Installed

Before judging wear, record the information printed on each tire sidewall.

Useful information can include:

  • Manufacturer
  • Tire model or pattern
  • Tire size
  • Radial or bias construction
  • Load or star rating where applicable
  • Application or tread classification
  • Tubeless or tube-type marking
  • Production information where available

Michelin notes that earthmover tire sidewalls contain information about size, load capability, construction and intended application.

Do not assume all four tires are identical simply because they look similar from a distance.

Compare All Tires as a Set

A wheel loader normally works through all four tires as one system.

Compare:

  • Brand
  • Model
  • Size
  • Tread pattern
  • Construction
  • Remaining tread
  • Overall diameter

A mixed set is not automatically unacceptable, but large differences deserve investigation.

Unequal tire dimensions or wear can affect traction, machine behavior and drivetrain loading depending on the machine design.

Check Whether the Tire Size Matches the Machine

Do not judge compatibility from physical appearance alone.

Confirm the installed size against the machine manufacturer's permitted tire specifications.

The correct tire can vary according to:

  • Machine model
  • Axle specification
  • Wheel size
  • Application
  • Load
  • Optional tire package

Specifications vary by model year and configuration. Exact specifications should be confirmed for each individual machine.

Radial vs Bias Tires: Know What You Are Looking At

Wheel loaders can use radial or bias-ply tires depending on the application.

Caterpillar explains that radial tires generally suit loading applications on finished surfaces where traction, tread wear and travel distance matter.

Bias tires use a different casing construction and can offer thicker sidewalls.

Caterpillar notes that bias tires may make sense in abrasive work such as gravel, pits and quarries where sidewall cuts are a major concern.

Work Condition Direction to Consider
Finished surface and longer travel Radial tires may be attractive
Severe rock and high sidewall-cut risk Bias construction may make sense
Mixed construction work Match tire specification to actual application

This is general buying guidance, not a universal rule.

Inspect the Tread Across the Full Width

Do not look only at the center of the tire.

Check tread condition across:

  • Inner shoulder
  • Center
  • Outer shoulder

Look for:

  • Low tread depth
  • Uneven wear
  • Chunking
  • Cuts
  • Torn lugs
  • Missing tread blocks
  • Embedded stones or metal

The tread can reveal how the machine was operated and whether inflation or application conditions were suitable.

Measure Remaining Tread Instead of Guessing a Percentage

A listing may describe tires as “70%” or “80%.”

Ask how that number was calculated.

A better approach is to measure remaining tread depth and compare it with:

  • Original tread depth for that exact tire
  • Tread wear indicator where fitted
  • Manufacturer replacement criteria

Bridgestone uses tread wear indicators on some severe-service OTR tires specifically to help identify remaining tread depth.

Do not create a precise remaining-life percentage from photographs alone.

Tread Depth Is Not the Same as Remaining Tire Life

A tire can still have deep tread while suffering serious structural damage.

Examples include:

  • Deep sidewall cuts
  • Separation
  • Large impact damage
  • Exposed reinforcement
  • Bead damage

For this reason, tread measurement should be only one part of the inspection.

Look Closely for Sidewall Cuts

Sidewall damage is especially important on loaders working around rock.

Bridgestone develops specific OTR tire designs around sidewall cut resistance because loaders can contact rocks during loading and reversing.

Inspect both the inner and outer sidewalls for:

  • Cuts
  • Gouges
  • Bulges
  • Exposed cords
  • Previous repair areas
  • Separation

A shallow surface mark and a deep structural cut are not the same condition.

When damage is difficult to judge, ask a qualified OTR tire professional to inspect it.

Inner Sidewalls Are Easy to Miss

Photographs often show only the outside of each wheel.

The inner sidewall can also suffer:

  • Rock cuts
  • Contact damage
  • Heat damage
  • Cracking

For an overseas purchase, request photographs of the inner sidewalls where practical.

Check the Tire Shoulders

The shoulder connects the tread and sidewall and is exposed to significant stress during loading and turning.

Look for:

  • Chunking
  • Cracks
  • Cuts
  • Uneven wear
  • Missing rubber

Repeated tight turns and abrasive ground can contribute to accelerated shoulder wear.

Cracks Need Context

Not every visible surface crack means immediate tire replacement.

However, investigate:

  • Deep cracking
  • Cracks reaching reinforcement
  • Cracks around the bead
  • Long circumferential cracks
  • Cracking combined with bulging

Structural condition cannot always be confirmed from an exterior photograph.

Look for Bulges and Distortion

An abnormal bulge or distortion can indicate internal structural damage.

Do not operate or purchase a questionable tire based on appearance alone without suitable professional evaluation.

Michelin specifically recommends isolating a tire when abnormal distortion or uncertain structural damage is found during inspection.

Check for Tread Separation

Look for areas where tread appears to lift, deform or separate from the casing.

Possible warning signs include:

  • Raised tread areas
  • Unusual bulges
  • Long cracks along tread edges
  • Irregular casing shape

Separation deserves specialist assessment.

Check for Embedded Material

Quarry and construction tires regularly encounter:

  • Sharp stones
  • Metal
  • Wire
  • Scrap
  • Concrete reinforcement

Look closely at grooves and tread blocks.

Embedded debris can hide punctures or continue working deeper into the casing.

Rocky Applications Need Different Tires

Tire tread pattern and casing design should match the environment.

Bridgestone offers OTR loader tires specifically designed for severe rocky surfaces, quarry work and mining.

These designs can use:

  • Deep tread
  • Cut-resistant compounds
  • Protected sidewalls
  • Reinforced casing structures

If a used loader has spent its life in rock, inspect cuts and impact damage particularly closely.

Check for Uneven Wear

Irregular tire wear can provide useful clues.

Wear Pattern Possible Areas to Investigate
Heavy center wear Inflation condition and application
Heavy shoulder wear Inflation, turning, loading or alignment
One tire wearing faster Pressure, axle condition, machine loading or replacement history
Front tires much more worn Loading application and machine use
Irregular blocks Ground conditions, pressure, wheel or drivetrain issues

Wear patterns should be treated as clues, not as a final diagnosis.

Front and Rear Wear Can Be Different on Wheel Loaders

The front tires of a wheel loader often experience high loads during bucket filling and carrying.

Compare front and rear tires carefully.

Ask whether tires have been:

  • Rotated
  • Replaced in pairs
  • Replaced individually

A large difference may simply reflect replacement history, but the buyer should understand it.

Check Tire Pressure Correctly

Pressure directly affects tire shape and load support.

Michelin recommends checking earthmover tire pressure when the tires are cold.

Caterpillar also explains that incorrect pressure changes the contact shape of a wheel loader tire and contributes to uneven wear.

Underinflation can contribute to:

  • Outer tread wear
  • Sidewall stress
  • Heat
  • Higher rolling resistance

Overinflation can contribute to:

  • Center tread wear
  • Reduced traction
  • Harsher ride
  • Skidding

Never Reduce Pressure Simply Because a Tire Is Hot

Tire pressure rises as the tire heats during work.

Michelin specifically warns against deflating a hot earthmover tire simply to return it to a cold-pressure reading.

Pressure checks should follow the tire and machine manufacturer's specified procedure.

Correct Pressure Depends on Load and Application

There is no single correct PSI for every wheel loader.

Required pressure can depend on:

  • Tire model
  • Tire size
  • Machine load
  • Material handled
  • Terrain
  • Cycle distance
  • Operating speed

Do not copy the pressure from another loader with a similar tire size.

Check for Signs of Running Flat or Severely Underinflated

A tire operated with very low pressure can suffer internal damage even if it is later reinflated.

Possible clues include:

  • Severe sidewall flex damage
  • Heat marks
  • Abnormal casing distortion
  • Bead damage

Michelin notes that a tire run underinflated or flat may require an internal inspection before its serviceability can be determined.

Inspect the Rim as Part of the Tire Inspection

A good tire on a damaged rim is still a concern.

Inspect visible wheel components for:

  • Cracks
  • Heavy corrosion
  • Bending
  • Impact damage
  • Missing nuts
  • Loose hardware
  • Previous welding or repair

Bridgestone recommends inspecting both OTR tires and rims or wheels as part of pre-shift checks.

Multi-Piece Rims Require Extra Safety

Large OTR equipment can use multi-piece rim assemblies.

These assemblies can store significant energy when inflated.

Mounting, demounting and repair should be carried out by trained personnel using the correct procedures and equipment.

Do not dismantle or loosen rim components while the tire is pressurized.

Check the Bead Area

Where visible, inspect the area where the tire meets the rim.

Look for:

  • Rubber damage
  • Irregular seating
  • Corrosion
  • Air leakage evidence
  • Previous repair

A full bead inspection may require tire removal.

Look for Previous Tire Repairs

OTR tires can sometimes be repaired successfully.

Michelin notes that repairability depends on the location, dimensions and severity of the damage.

A professionally repaired tire is not automatically unacceptable.

However, ask:

  • Where was the damage?
  • What repair was performed?
  • Was the casing internally inspected?
  • Who performed the repair?

Severe sidewall damage, deep cuts or structural deformation may not be repairable.

Check Whether the Tires Match the Job You Plan to Do

A tire can be in good condition but still be the wrong tire for your application.

Consider:

  • Construction
  • Quarry
  • Mining
  • Waste and recycling
  • Load-and-carry work
  • Soft ground
  • Hard finished surfaces

A deep rock tire optimized for cut resistance is solving a different problem from a tire designed for longer travel and reduced rolling resistance.

Tread Classification Can Help Explain Intended Use

Loader OTR tires may use tread classifications such as L-2, L-3, L-4 or L-5.

In general, these classifications relate to tread depth and intended loader service.

However, do not select a tire only from the L-number.

Consult the tire manufacturer's exact application guidance because tread pattern, casing, compound and operating limits also matter.

Deep Tread Is Not Automatically Best

Extra-deep tread can offer more cut protection and wear material in severe environments.

However, the best tire still needs to match:

  • Cycle length
  • Speed
  • Heat generation
  • Surface
  • Load

Bridgestone's OTR data differentiates loader applications by tread class, load, cycle distance and operating speed.

Heat Can Shorten Tire Life

OTR tires generate heat during repeated loading, flexing and travel.

Risk can increase with:

  • Long travel cycles
  • High speed
  • Heavy load
  • Low pressure
  • High ambient temperature

A loader used mainly for short loading cycles can place different demands on its tires than one used for repeated load-and-carry work.

Previous Working Environment Matters

Previous Application Tire Areas to Check Closely
Quarry Sidewall cuts, tread cuts, rock damage and tread depth
Mining Heat, impact damage, casing condition and cuts
Waste / recycling Punctures, embedded metal and sidewall damage
General construction Tread wear, pressure history and cuts
Load-and-carry Heat, tread wear and matching
Rental fleet Mixed tires, repairs, pressure history and replacement records

If previous use cannot be confirmed, treat it as unknown.

Operating Hours Do Not Tell You Tire Life

Two wheel loaders with the same operating hours can have completely different tire condition.

Tire life depends on:

  • Ground material
  • Load
  • Travel distance
  • Speed
  • Inflation pressure
  • Turning style
  • Heat
  • Tire specification

Also remember that tires may already have been replaced during the machine's life.

Judge the tires installed now.

Ask About Replacement History

Useful questions include:

  • Are these the original tires?
  • When were they replaced?
  • Were all four changed together?
  • Has one tire been replaced after damage?
  • Have any tires been professionally repaired?

Maintenance records may not always be available, so treat unavailable history as unknown.

Replacement Cost Should Affect the Purchase Decision

Large OTR tires can represent a meaningful additional cost.

If several tires are near replacement, compare:

  • Vehicle price
  • Local tire price
  • Availability of the correct size
  • Mounting cost
  • Transport or handling cost

A low purchase price may be less attractive if a full set of suitable tires is immediately required.

Check Tire Availability at the Destination

Before buying an older or uncommon machine, confirm whether the correct tire size is available in your market.

Also consider:

  • Radial or bias availability
  • Suitable tread patterns
  • Required load rating
  • OTR tire service capability

Do not assume that a common tire size in Japan is equally easy to source at the destination.

A Practical Used Heavy Equipment Tire Checklist

  1. Size: Confirm the exact tire size on every wheel.
  2. Type: Identify radial or bias construction.
  3. Pattern: Confirm the tread pattern and application.
  4. Matching: Compare all tires for size, model and wear.
  5. Tread: Measure remaining tread depth.
  6. Shoulders: Check chunking and irregular wear.
  7. Sidewalls: Inspect cuts, cracks and bulges.
  8. Inner Sidewalls: Inspect areas hidden from normal photos.
  9. Separation: Look for abnormal distortion.
  10. Embedded Material: Check for stones, metal and wire.
  11. Pressure: Check using the correct cold-tire procedure.
  12. Uneven Wear: Compare center, shoulders and each tire.
  13. Front vs Rear: Compare wear levels.
  14. Repairs: Identify patches or previous damage where possible.
  15. Rims: Check cracks, corrosion and damage.
  16. Beads: Look for visible seating or damage issues.
  17. Previous Use: Consider quarry, mining or construction conditions.
  18. Hours: Do not estimate tire life from operating hours alone.
  19. Replacement Cost: Estimate the cost of tires that may soon be needed.
  20. Availability: Confirm suitable replacement tires at the destination.

What Should an Overseas Buyer Request?

If you cannot inspect the machine personally in Japan, request clear photographs of every tire.

Useful images include:

  • Full view of each tire
  • Close-up of tread
  • Outer sidewalls
  • Inner sidewalls where practical
  • Cuts or repaired areas
  • Tire size markings
  • Tire model markings
  • Rims and wheel nuts

A short travel video can also reveal excessive vibration or other irregular behavior, although it cannot replace a detailed tire inspection.

Buying Used Wheel Loaders and Heavy Equipment from Japan

Japanese used machinery can include compact, medium and large wheel loaders as well as other wheeled construction equipment with many different tire sizes and OTR specifications.

You can check current Japanese used machinery available at EVERYCAR.jp. Inventory changes regularly, so a particular model, tire size or tire specification should not be assumed to remain available.

For broader information about checking engines, hydraulics, undercarriages and other major systems before purchase, visit the Japanese Used Machinery & Heavy Equipment Guide.

Judge the Tires as a Set, Not as Four Separate Tread Photos

A useful tire inspection combines tread condition, structural condition, inflation, application and matching.

Start by identifying the tire size and construction. Then measure tread, inspect sidewalls and shoulders, compare front and rear wear and look for repairs or rim damage.

Finally, ask whether the installed tires suit your intended terrain and whether replacements are available locally.

If you are looking for a used wheel loader or other heavy equipment from Japan, you can contact EVERY with your preferred manufacturer, model, size, budget and destination. Exact tire specification, tire condition and machine configuration should be confirmed for each individual unit before purchase.

-9. Inspection & Maintenance, Japanese Used Machinery & Heavy Equipment Guide