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CNC Machining Polyethylene

Polyethylene is a family, not a single material. Low-density PE is film and squeeze bottles and is almost never machined. High-density PE (PE 300) is the everyday machining grade. PE 500 and PE 1000 — the latter better known as UHMW — are the wear materials: chain guides, liners, star wheels and sliding pads that outlast steel in abrasive service. Picking the right one is most of the job.

Polyethylene sheet stock in several grades and colours
Grades

Which polyethylene

Molecular weight goes up the table; so do wear resistance, impact strength and machining difficulty.

Form / gradeBest forNotes
LDPEFlexible parts, seals, prototypesVery soft, hard to hold and to get a clean edge on; rarely worth machining
HDPE / PE 300General machined parts, tank fittings, food-contactBest all-round machinability; see the HDPE page
PE 500 (HMW-PE)Wear strips, guides with moderate abrasionNoticeably better wear than PE 300, still cuts cleanly
PE 1000 (UHMW-PE)Chain guides, wear pads, liners, star wheels, impact partsOutstanding abrasion and impact resistance, self-lubricating; gummy under the cutter, long stringy chips, will not hold a sharp edge on thin sections
UHMW anti-static / glass / oil-filledConveyor and packaging machineryModified grades for static dissipation, stiffness or lower friction; name the grade on the drawing
At the machine

Sharp tools, light clamping, patience with UHMW

All polyethylenes machine with the same rules: very sharp, high-rake tooling, high spindle speed, a definite feed so the cutter cuts rather than rubs, and air or a light mist to carry heat away. Heat is the enemy — the material softens around 80 °C, and a rubbing tool melts the surface into a smeared edge.

UHMW-PE adds its own habits. The chips come off as long, tough ribbons that wrap the tool, so chip breaking and clearing matter. Drilled holes close up slightly after the drill leaves, so we drill and then ream or bore to size. Sawn or milled edges carry a stubborn burr that is trimmed by hand.

None of the polyethylenes like clamping pressure. Plates are held on vacuum or with many light clamps, machined, released, and skimmed again to remove the distortion the first pass introduced. Thermal expansion is high, so we state the temperature at which tight dimensions were measured.

At a glance
Service temperatureLDPE around 60 °C; HDPE and UHMW around 80 °C continuous
Chemical resistanceExcellent across the family; attacked only by strong oxidisers
Moisture absorptionNone
WeaknessSoft, high thermal expansion, creep under load, poor UV resistance unless black, cannot be glued or painted
Typical partsChain and belt guides, wear strips and pads, liners, star wheels, spacers, cutting boards, food-contact parts
Design notes

Three rules for a polyethylene part that stays flat

01

Match the grade to the job

PE 300 for anything static or chemical, PE 1000 for anything that slides or is hit. Specifying UHMW for a simple bracket costs more and machines worse for no gain.

02

Design flat parts with room to move

Long thin plates in polyethylene warp as stress releases and as temperature changes. Slotted holes, generous clearances and a stiffer backing plate save arguments later.

03

Use inserts and shoulders, not adhesive

Nothing bonds to polyethylene. Threaded inserts, through-bolts with washers and dovetail keys are the reliable joints.

Finishing

Finishes that work on polyethylene

Polyethylene parts are delivered machined and deburred; small parts can be tumbled. Coatings and paints do not adhere, so the sheet colour is the finish.

Send the polyethylene drawing

Send the drawing and the grade, or the drawing and a sentence about what the part has to survive. You get a price, a lead time, and an engineer’s note on anything that will fight the tolerances.

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