PMI 폼 절단 매개변수: 다이아몬드 와이어 루프 설정 참고문헌

ESH600-4T 다이아몬드 와이어 쏘 제어판 PMI 폼 절단 매개변수 표시: 0.80 mm 슬라이스 두께, 145.0 N 와이어 장력, 100.0 mm/min 공급

PMI 폼 절단 매개변수: 다이아몬드 와이어 루프 설정 참고문헌

추상적인: This reference sheet lists the process window validated in Ensoll’s PMI
(폴리메타크릴리마이드) structural foam slicing test on an ESH600-4T horizontal
다이아몬드 와이어 톱 기계: a 0.60 x 3460 mm fully coated
다이아몬드 와이어 루프, 100 mm/min wire travel speed, 145 N 와이어 장력, 25 m/s wire speed,
60 s wire-bow tensioning time, 17 N·m cutting load and 400 mm cutting width, with dry cutting. It explains
what each parameter does on a cellular foam, which way to move it when a defect appears, and how to establish a
starting set for a new foam grade or slice thickness.

주요 요점

  • Validated window for 0.8 mm PMI foam slices on an ESH600-4T: 0.60 x 3460 mm fully coated wire loop, 100 mm/min 공급, 400 mm cutting width, 145 N tension, 25 m/s wire speed, 60 s wire-bow time, 17 N·m load, dry cutting.
  • PMI foam fails by compression and tearing of the cell skeleton, not by brittle fracture, so feed ratethe load-setting parameteris the first thing to reduce when a defect appears.
  • Dry cutting is the default for PMI foam: coolant would enter the cells and would have to be cleaned and dried out afterwards.
  • The load readout is a monitor, not a setting; a rising load trace during a cut is the earliest warning that a parameter has drifted out of band.
  • This window produced TTV 0.013-0.050 모델 번호 (mean 0.036 모델 번호), thickness tolerance +/-0.043 모델 번호, average Ra 0.68-0.82 um and maximum chipping 5.5-7.1 um.

Why PMI Foam Needs Its Own Parameter Set

PMI foam is a low-density structural foam with a uniform cellular structure and good specific strength and
specific stiffness. Under a diamond wire it does not behave like a dense material: the abrasive grains act on the
foam skeleton, and the failure mode at excessive load is compression and tearing of the cells rather than clean
shearing. That is why parameters that work on a dense thermoplastic cannot simply be copied across. 이
validated PMI window below was established by matching machine structure, wire, cutting method and parameters to
the cellular structure of the material.

Validated Parameter Window for 0.8 mm PMI Foam Slices

매개변수
Wire diameter x loop length (모델 번호)0.60 x 3460
Wire travel speed / feed rate (mm / 분)100
절단 폭 (모델 번호)400
와이어 장력 (N)145
와이어 속도 (유튜브)25
Wire-bow tensioning time (초)60
절단 부하 (N·m)17
냉각 방식Dry cutting
ESH600-4T 다이아몬드 와이어 쏘 제어판 PMI 폼 절단 매개변수 표시: 0.80 mm 슬라이스 두께, 145.0 N 와이어 장력, 100.0 mm/min 공급
Parameter interface of the ESH600-4T during the
PMI foam slicing test

Workpiece conditions for this window: PMI foam at approximately MH 2 경도, workpiece
400 mm x 400 mm x 50 모델 번호, target slice 400 mm x 400 mm x 0.8 모델 번호.

What Each Parameter Does

Wire diameter and loop length (0.60 x 3460 모델 번호)

The wire diameter sets the kerf and the stiffness of the cutting edge. 에이 0.60 mm fully coated wire loop gives a
stable abrasive edge for a 400 mm wide cut while keeping the kerf small. Loop length must match the machine’s
pulley geometry and is fixed by the machine model rather than chosen per job.

Wire travel speed / feed rate (100 mm / 분)

This is the parameter that governs cutting load most directly, and on foam it is the first one to reduce when a
defect appears. Feed too high and the skeleton takes a large local force; feed too low and the wire polishes
rather than cuts, which raises heat and wear without improving quality. 100 mm/min is the validated value for
0.8 mm slices.

절단 폭 (400 모델 번호)

The cutting width is the length of wire in contact with the workpiece. It scales the total load and therefore
the machine rigidity and tensioning required. 에이 400 mm contact length on a lightweight foam also raises the risk
of the workpiece moving, which is why the fixture and workpiece support matter as much as the numbers.

와이어 장력 (145 N)

Tension keeps the wire straight under load. Too low and the wire bows, so kerf width wanders and the cut face
becomes uneven; too high and the wire and pulleys wear faster and break risk rises. The ESH600-4T uses spring
tensioning with force-sensor feedback, so tension can be held constant or varied with the cutting state, and is
reduced automatically in standby and during wire changes to limit wire fatigue.

와이어 속도 (25 유튜브)

Wire speed sets how many abrasive grains pass the interface per second. On a low-density foam the removal rate
is limited by load rather than by abrasive delivery, so raising wire speed alone does not fix a poor cutit
mostly adds wear. Keep it in the validated band and manage quality through feed and tension.

Wire-bow tensioning time (60 초)

The tensioning time lets the wire settle into a stable bow before the cut starts. Skipping it leaves the first
millimetres of the cut under different conditions from the rest, which shows up as a thickness step at the entry
edge of a thin slice.

절단 부하 (17 N·m)

The load reading is the process monitor rather than a setting: it is what you watch to confirm that the
combination of feed, tension and wire speed is actually delivering a stable cut. A drifting or rising load during
a cut is the earliest warning that a parameter has moved out of band.

Adjustment Guide: Symptom, Cause, Action

SymptomMost likely causeAction
Ragged or torn slice edgeCutting load too high for a cellular foamReduce feed rate; verify wire tension before changing wire speed
Uneven cut face, wandering kerfWire bowingtension too lowRaise tension toward 145 N and confirm the bow settles before entry
Thickness step at the entry edgeCut started before the wire bow settledKeep the full 60 s wire-bow tensioning time before feed engages
Slices consistently thin or thickDimensional offset, not instabilityApply thickness compensation on the machine target; do not fight it with feed
Load trace rising during a cutParameter drift or wire wearStop, check wire condition and load, re-establish the validated window
Surface polished rather than cutFeed rate too low for the wire speedRaise feed within the validated band; check grain condition on the wire

Establishing a Parameter Set for a New Foam or Thickness

The validated window is a starting point, not a universal answer. PMI grades differ in density and cell size,
and slice thickness changes the stiffness of the part being cut. Work in this order:

  1. Fix the fixture first. Support the workpiece across its full area so that the wire cannot
    push it. On foam, deflection of the workpiece reads as thickness variation and is easily mistaken for a
    parameter problem.
  2. Start from the validated window. 0.60 x 3460 mm 와이어, 100 mm/min 공급, 145 N tension,
    25 m/s wire speed, dry cutting.
  3. Cut one slice and measure TTV. Use the same nine-point grid method described in our
    TTV measurement guide so results are comparable with the reference data.
  4. Move one parameter at a time. Feed rate first, then tension. Change wire speed only if feed
    and tension are already at their limits.
  5. Record the load curve. A stable load trace at the chosen settings is the evidence that the
    process, not the operator, is controlling the cut.

Results Achieved with This Window

MeasureResult across four 0.8 mm slices
Total thickness variation (TTV)0.013-0.050 모델 번호, average 0.036 모델 번호
두께 허용+/-0.043 mm against 0.800 mm nominal
Average surface roughness Ra0.68-0.82 um
Maximum edge chipping5.5-7.1 um

The thickness data showed a systematic negative offset rather than random scatterthe slices ran thin by
0.031 받는 사람 0.043 mm against a 0.800 mm nominal. That is a dimensional-compensation problem, not a stability
problem, and is corrected by adjusting the machine target thickness on the next run. The full measurement set
including all nine-point readings is published in the
PMI foam precision slicing test report.

관련 공정 데이터

The same nine-point methodology applied to a dense thermoplastic, with cutting fluid instead of dry cutting,
is documented in the PEEK 정밀 절단 테스트. A side-by-side comparison of the two
materials and their parameter sets is in
PEEK vs PMI foam: diamond wire cutting comparison.

자주 묻는 질문

What cutting parameters were used to slice PMI foam to 0.8 모델 번호?

와이어 0.60 x 3460 모델 번호, wire travel speed (feed rate) 100 mm / 분, cutting width 400 모델 번호, wire tension 145 N, wire speed 25 유튜브, wire-bow tensioning time 60 s and cutting load 17 N·m, on an ESH600-4T horizontal 다이아몬드 와이어 톱 기계 using dry cutting and a fully coated wire.

Should PMI foam be cut dry or wet?

마른. PMI foam is porous, lightweight and prone to absorbing liquids. Dry cutting keeps coolant out of the cells and removes the cleaning and drying steps that follow a wet cut, which helps preserve structural integrity and slice dimensional accuracy. This is the opposite of a dense thermoplastic such as PEEK, which is cut with continuous cutting fluid.

What wire type is used for PMI foam?

A fully coated diamond wire loop. The fully coated build raises grain bonding strength and distribution stability, sustaining continuous cutting capability and reducing the fluctuation caused by wire wear and grain pull-out. See the diamond wire loop product range.

What results did this parameter set achieve?

Four 400 mm x 400 mm PMI foam slices at 0.8 mm nominal thickness gave TTV 0.013-0.050 모델 번호 (average 0.036 모델 번호), thickness tolerance +/-0.043 모델 번호, average Ra 0.68-0.82 um and maximum edge chipping 5.5-7.1 um. Full data is in the PMI foam slicing test report.

What is the first setting to change if the PMI foam edge tears?

Reduce the feed rate. Tearing, local compression and an uneven cut face on a cellular foam are load-driven problems, not speed-driven ones: excessive load compresses the foam skeleton instead of shearing it. Lower the feed first, then re-check wire tension before touching wire speed.

Ensoll 엔지니어링 팀이 검토한 기술 내용 – 다이아몬드 와이어 루프 제조사와 함께 10+ 다년간의 생산 경험을 가진 회사.