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John Deere Forestry · Feller buncher

John Deere 859M

Heavy tracked feller buncher, ~36 t, offered with disc-saw heads from ~510 mm into the high-600 mm class.

8 published specifications

Positioning

Where this machine sits

At roughly 36 tonnes with a tracked base, the 859M sits at the heavy end of purpose-built felling rather than in the crossover territory occupied by excavators carrying shears. Everything in its published specification points the same way: 373 kN of tractive effort, 494 litres per minute of pump flow and an 870 litre fuel capacity describe a machine designed to work a full shift in demanding ground rather than move between small jobs.

That is a commitment, not a feature list. A machine of this class only makes sense where felling hours are measured in thousands per year and the chain behind it can absorb what it produces. Where either of those fails, a smaller carrier with a shear will usually beat it commercially despite producing far less per hour.

Published figures

Specifications

Indicative published manufacturer and distributor information. Confirm every figure, lift chart and hydraulic requirement with the manufacturer or authorised dealer before purchase.

Peak power~224 kW
Operating weight~36 t
Maximum boom reach8.49 m
Tractive effort373 kN
Pump flow~494 L/min
Fuel capacity~870 L
Head optionsMultiple disc-saw heads including FS50 and FR50
Cutting capacity~510 mm to high-600 mm class, depending on head

Interpretation

What the published figures actually constrain

A specification table tells you what the machine is. This is what each of those numbers means for the work you would put it to.

Published figureWhat it means commercially
~36 t operating weight on tracksStability under a large disc-saw head, and the ability to work steep, broken or soft ground that would stop a wheeled machine. It also means a transport bill that recurs on every move, which is why scattered small blocks suit it poorly.
373 kN tractive effortThe machine can position itself confidently on grade with a head loaded. Tractive effort is what lets a feller buncher work where it is most valuable, and it is frequently more decisive than power.
~494 L/min pump flowEnough hydraulic capacity to run a large disc saw at working speed continuously. This is what separates sustained felling rate from the peak figure a demonstration produces.
Cutting capacity ~510 mm to the high-600 mm class, by headThe head, not the base machine, sets what can be cut. For a contractor working 180-300 mm stems the more useful figures are accumulation per cycle and travel time between trees, neither of which appears in a maximum-diameter rating.

Design intent

Built for sustained felling, not for moving

A ~36 t tracked base with 373 kN of tractive effort and an 870 L fuel capacity describes a machine designed to work a full shift in demanding ground rather than to travel between small jobs. The published figures all point the same way, and so does the commercial case.

Sustained duty it is built around

  • High annual felling hours in one place
  • Steep, broken or soft terrain
  • Continuous disc-saw duty
  • A downstream chain sized to absorb the output

Commercial fit

Where this machine earns its cost

Right machine when

  • Clearfell with high annual felling hours — 3,000+ productive hours makes the capital defensible
  • Broken, steep or soft terrain where a tracked base earns its cost over a wheeled machine
  • Heavy timber where stability under a large head is the binding constraint
  • Operations feeding a skidder-and-processor chain that can actually absorb the output

Wrong machine when

  • Annual felling hours are in the hundreds rather than the thousands — a 25 t excavator with a shear will beat it commercially
  • The downstream chain (skidding, processing, trucking) tops out well below the machine's felling rate
  • Work is scattered across small blocks where a 36-tonne transport bill recurs constantly

Before you sign

Verify these for this specific model

Beyond the standard buying criteria for the class, these are the questions this machine in particular raises.

  • Average stems per hour in your dominant stem class, witnessed — not quoted
  • Accumulation per cycle with the specific head being offered (FS50 and FR50 differ)
  • Fuel per tonne, not just fuel per hour
  • Disc-saw tooth consumption and saw maintenance cost in your timber
  • Transport width and height with the head fitted, and whether it must come off to travel

Running cost

What drives the cost of owning this machine

Depreciation dominates. Applying the guide's ownership model — capital less residual, spread across the ownership period and divided by productive hours — a machine in this class carries a fixed hourly cost that only becomes defensible at high annual utilisation. That is why the commercial-fit note points at 3,000-plus productive hours rather than at any specification.

Disc-saw consumables are the variable most likely to differ from a model built on someone else's experience. Tooth consumption moves with timber type, soil contact and operator technique, and it is worth tracking per tonne rather than per hour so a change in it is visible.

The 870 litre fuel capacity is a productivity figure as much as a cost one: fewer refuelling stops on a remote coupe is recovered production. Fuel per tonne, not fuel per hour, is the number to compare against alternatives.

In practice

Ownership considerations in Australian conditions

Transport is a standing cost, not an occasional one

Confirm transport width and height with the head fitted, and whether the head has to come off to travel. On estates with scattered coupes, machine moves can consume more days per year than breakdowns do.

The head choice is a separate decision

The published head options differ in accumulation behaviour as well as capacity. Witness the specific head being offered working your dominant stem class rather than accepting a quoted stems-per-hour figure.

Support is a production input at this capital level

In an interdependent chain, parts availability and technician access convert directly into production days. Ask what is held locally and what response is guaranteed in writing before comparing purchase prices.

Questions

Common questions about this machine

Is a 36 tonne tracked feller buncher overkill for Australian plantation work?

It depends entirely on annual felling hours and terrain, not on the plantation. Where a contractor has the hours and works ground that is steep, broken or soft, the tracked base earns its cost in stability and access. Where felling hours are in the hundreds, or the blocks are small and scattered, the transport and depreciation burden usually makes a 25 tonne excavator with a shear the better commercial answer despite much lower production.

Why does the guide say not to buy on maximum cutting diameter?

Because maximum diameter describes the largest stem the head can sever, not the stems that fill the working day. A contractor in 180-300 mm timber spends almost no time at the head's limit, so accumulation per cycle and travel between trees govern production. Buying on the headline figure means paying for capacity that the stand never asks for.

What should I witness before committing to this machine?

Average stems per hour in your dominant stem class, observed rather than quoted; accumulation per cycle with the exact head being offered; fuel per tonne rather than per hour; and disc-saw tooth consumption in your timber. Those four are what determine cost per tonne, and none of them can be read off a specification sheet.

In service

Fleet packages that use this class