UFIBER® TECHNICAL INFORMATION

UFIBER® Point Brush – Technical Specifications & Machining Guide

UFIBER® Point Brushes are compact ceramic-fiber tools designed for precision deburring, polishing and finishing in small bores, grooves, recesses, corners and other narrow or localized features.

Available in diameters from Ø1.0 to Ø3.0 mm for CNC machines, robotic systems and controlled hand-held rotary operation.

Compatible models

It can be used in the following environments.

CONFIGURATOR MODE
Selected environments:

Features

Precision Access

Designed for accurate deburring, polishing and finishing in small, narrow and complex areas.

CNC & Robotic Ready

Suitable for automated machining on CNC machines, machining centers and robotic systems.

Ø

Ø1–3 mm Range

Five compact diameters provide controlled access to localized features and small bores.

Localized Finishing

Ideal for narrow bores, grooves, recesses, corners and detailed internal features.

Up to 12,000 RPM

Maximum spindle speed is 12,000 RPM when correctly mounted and securely operated.

Wide Grit Range

Supports controlled deburring through very fine polishing depending on material and finish requirements.

Point Brush Product Range

Dimensions for Ød=1.0-2.0mm (0.039-0.079″)

Dimensions for Ød=2.5-3.0mm (0.098-0.118″)

DescriptionDiameter mmDiameter inchMaximum Spindle Speed
UF-PB-…-D1-L20Ø1.00.039"12,000 RPM
UF-PB-…-D1.5-L20Ø1.50.059"12,000 RPM
UF-PB-…-D2-L20Ø2.00.079"12,000 RPM
UF-PB-…-D2.5-L20Ø2.50.098"12,000 RPM
UF-PB-…-D3-L20Ø3.00.118"12,000 RPM

Point Brush Application & Contact Methods

TIP CONTACT

Axial Contact

Use the brush tip for localized finishing of recess bottoms, small flat areas and precise axial-contact applications.

SIDE CONTACT

Radial / Side Contact

Use controlled side contact for groove walls, bore walls and narrow internal surfaces. Avoid excessive lateral loading.

ANGLED CONTACT

Angled / Localized Contact

Use light angled contact for corners, transitions and complex local features where direct axial access is limited.

AVOID

Avoid Excessive Side Loading

Do not force the brush strongly against an edge or wall. Excessive lateral bending can reduce process stability and accelerate brush wear.

Grit Selection by Burr Condition & Material

GritCodeRelative ActionTypical Application
#150GVery aggressiveHeavy burrs and hardened materials
#200PAggressiveHardened steels and difficult burrs
#400VMedium-coarseSteel, stainless steel and heat-resistant alloys
#600OGeneral deburringGeneral-purpose metal deburring
#800BFine deburringFine burr removal and pre-finishing
#1000WFine finishingControlled surface finishing
#1200RFine polishingFinal finishing and non-ferrous materials
#2000MVery fineAluminum, plastics and delicate surfaces
#3000ZUltra-fineComposites and high-finish applications
#6000AMicro-finishFinal polishing of composites and plastics

How to Use the UFIBER® Point Brush

1. Select the Diameter

Choose the smallest brush diameter that provides stable access and sufficient contact with the target feature.

2. Start with Light Engagement

Begin with minimum brush engagement. For Ø1.0 and Ø1.5 mm brushes, start at the lower end of the recommended feed and engagement ranges.

3. Maintain Controlled Movement

Keep the brush moving through the target area and avoid excessive side loading or prolonged contact at one point.

Brush Engagement: The engagement value represents approximate contact or deflection of the ceramic fibers against the workpiece. It does not represent the amount of workpiece material removed.

UFIBER® POINT BRUSH — MACHINING RECOMMENDATIONS

Search by material, condition, grade, DIN number, grit or recommended method, or filter by ISO material group.

41 of 41 conditions
Starting parameters for CNC deburring and polishing • Ø1–3 mm Point Brushes • Metric and imperial units • Use the lower value first and optimize on the actual component
WORKPIECE MATERIAL DEBURRING POLISHING COOLANT
ISO Material Group Material Details Condition Grade
AISI / SAE / ASTM + DIN
RPM Feed
mm/min • in/min
Engagement
mm • inch
UFIBER Deburring Grit RPM Feed
mm/min • in/min
Engagement
mm • inch
UFIBER Polishing Grit Recommended Method
P Non-alloy steel and cast steel, free cutting steel <0.25% C Annealed 10201.0044 8,000–12,000 250–500
9.8–19.7
0.03–0.10
0.001–0.004"
#400 (V) / #600 (O)
#800 (B) for fine burrs
8,000–12,000 180–400
7.1–15.7
0.02–0.06
0.001–0.002"
#800 (B) → #1200 (R) Air / Wet
P Non-alloy steel and cast steel, free cutting steel ≥0.25% C Annealed 10351.0501 8,000–12,000 250–500
9.8–19.7
0.03–0.10
0.001–0.004"
#400 (V) / #600 (O)
#800 (B) for fine burrs
8,000–12,000 180–400
7.1–15.7
0.02–0.06
0.001–0.002"
#800 (B) → #1200 (R) Air / Wet
P Non-alloy steel and cast steel, free cutting steel <0.55% C Quenched and tempered 10451.1201 7,000–10,000 200–450
7.9–17.7
0.03–0.09
0.001–0.004"
#150 / #200 / #400
#150 heavy • #200 general • #400 controlled
7,000–10,000 150–350
5.9–13.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Air / Wet
P Non-alloy steel and cast steel, free cutting steel ≥0.55% C Annealed 10551.0535 7,000–10,000 200–450
7.9–17.7
0.03–0.09
0.001–0.004"
#150 / #200 / #400
#150 heavy • #200 general • #400 controlled
7,000–10,000 150–350
5.9–13.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Air / Wet
P Non-alloy steel and cast steel, free cutting steel ≥0.55% C Quenched and tempered 10601.1221 6,000–9,000 180–400
7.1–15.7
0.03–0.08
0.001–0.003"
#150 / #200 / #400 6,000–9,000 120–300
4.7–11.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Air / Wet
P Low alloy and cast steel (<5% alloying elements) Annealed G926001.5028 7,000–10,000 200–450
7.9–17.7
0.03–0.09
0.001–0.004"
#400 / #600 7,000–10,000 150–350
5.9–13.8
0.02–0.06
0.001–0.002"
#800 → #1200 Air / Wet
P Low alloy and cast steel (<5% alloying elements) Quenched and tempered 41301.7218 6,000–9,000 180–400
7.1–15.7
0.03–0.08
0.001–0.003"
#150 / #200 / #400 6,000–9,000 120–300
4.7–11.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Air / Wet
P Low alloy and cast steel (<5% alloying elements) Quenched and tempered 41421.2332 6,000–9,000 180–400
7.1–15.7
0.03–0.08
0.001–0.003"
#150 / #200 / #400 6,000–9,000 120–300
4.7–11.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Air / Wet
P Low alloy and cast steel (<5% alloying elements) Quenched and tempered 50451.7006 6,000–9,000 180–400
7.1–15.7
0.03–0.08
0.001–0.003"
#150 / #200 / #400 6,000–9,000 120–300
4.7–11.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Air / Wet
P High alloyed steel, cast steel and tool steel Annealed H131.2344 5,000–8,000 150–350
5.9–13.8
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 120–280
4.7–11.0
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet preferred
P High alloyed steel, cast steel and tool steel Quenched and tempered M331.3249 5,000–8,000 150–350
5.9–13.8
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 120–280
4.7–11.0
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet preferred
P Stainless steel and cast steel Ferritic / martensitic 4201.4021 6,000–9,000 180–400
7.1–15.7
0.03–0.08
0.001–0.003"
#150 / #200 / #400 6,000–9,000 150–320
5.9–12.6
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet preferred
P Stainless steel and cast steel Martensitic 5,000–8,000 150–350
5.9–13.8
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 120–280
4.7–11.0
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet preferred
M Stainless steel Austenitic, duplex 304L1.4306 7,000–10,000 180–400
7.1–15.7
0.03–0.08
0.001–0.003"
#400 / #600
#800 for fine burrs
7,000–10,000 150–350
5.9–13.8
0.02–0.06
0.001–0.002"
#800 → #1200 Wet recommended
K Gray cast iron (GG) Ferritic / pearlitic Class 250.6015 7,000–10,000 200–450
7.9–17.7
0.03–0.09
0.001–0.004"
#200 / #400
#600 for fine burrs
7,000–10,000 150–350
5.9–13.8
0.02–0.06
0.001–0.002"
#600 → #1000 Air preferred
K Gray cast iron (GG) Pearlitic / martensitic Grade H2036037 6,000–9,000 180–400
7.1–15.7
0.03–0.08
0.001–0.003"
#150 / #200 / #400 6,000–9,000 120–300
4.7–11.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Air preferred
K Nodular cast iron (GGG) Ferritic 60-40-180.7043 7,000–10,000 220–480
8.7–18.9
0.03–0.10
0.001–0.004"
#400 / #600 7,000–10,000 160–350
6.3–13.8
0.02–0.06
0.001–0.002"
#800 → #1200 Air preferred
K Nodular cast iron (GGG) Pearlitic F335000.705 6,000–9,000 180–400
7.1–15.7
0.03–0.08
0.001–0.003"
#150 / #200 / #400 6,000–9,000 120–300
4.7–11.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Air preferred
K Malleable cast iron Ferritic A470.8135 7,000–10,000 220–480
8.7–18.9
0.03–0.10
0.001–0.004"
#400 / #600 7,000–10,000 160–350
6.3–13.8
0.02–0.06
0.001–0.002"
#800 → #1200 Air preferred
K Malleable cast iron Pearlitic A220 Class0.8155 6,000–9,000 180–400
7.1–15.7
0.03–0.08
0.001–0.003"
#150 / #200 / #400 6,000–9,000 120–300
4.7–11.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Air preferred
N Aluminum-wrought alloys Not hardenable 50053.3315 9,000–12,000 300–600
11.8–23.6
0.02–0.08
0.001–0.003"
#800 / #1200 9,000–12,000 250–500
9.8–19.7
0.02–0.05
0.001–0.002"
#1200 → #2000 Wet / MQL
N Aluminum-wrought alloys Hardenable 70753.4365 9,000–12,000 300–600
11.8–23.6
0.02–0.08
0.001–0.003"
#800 / #1200 9,000–12,000 250–500
9.8–19.7
0.02–0.05
0.001–0.002"
#1200 → #2000 Wet / MQL
N Aluminum-cast alloys ≤12% Si Not hardenable 5183.3292 9,000–12,000 300–600
11.8–23.6
0.02–0.08
0.001–0.003"
#800 / #1200 9,000–12,000 250–500
9.8–19.7
0.02–0.05
0.001–0.002"
#1200 → #2000 Wet / MQL
N Aluminum-cast alloys ≤12% Si Hardenable 5153.3241 8,000–11,000 280–550
11.0–21.7
0.02–0.08
0.001–0.003"
#800 / #1200 8,000–11,000 220–450
8.7–17.7
0.02–0.05
0.001–0.002"
#1200 → #2000 Wet / MQL
N Aluminum-cast alloys >12% Si High temperature 390 8,000–11,000 220–450
8.7–17.7
0.02–0.07
0.001–0.003"
#600 / #800 7,000–10,000 180–400
7.1–15.7
0.02–0.05
0.001–0.002"
#1000 → #1200 Wet / MQL
N Copper alloys >1% Pb Free cutting C360002.0375 8,000–12,000 250–500
9.8–19.7
0.02–0.08
0.001–0.003"
#800 / #1200 8,000–12,000 200–400
7.9–15.7
0.02–0.05
0.001–0.002"
#1200 → #2000 Air / Wet
N Copper alloys Brass C220002.023 8,000–12,000 250–500
9.8–19.7
0.02–0.08
0.001–0.003"
#800 / #1200 8,000–12,000 200–400
7.9–15.7
0.02–0.05
0.001–0.002"
#1200 → #2000 Air / Wet
N Copper alloys Electrolytic copper C630002.0966 8,000–11,000 220–450
8.7–17.7
0.02–0.07
0.001–0.003"
#800 / #1200 7,000–10,000 180–400
7.1–15.7
0.02–0.05
0.001–0.002"
#1200 → #2000 Air / Wet
N Non-metallic Duroplastics, fiber plastics Bakelite 6,000–9,000 200–450
7.9–17.7
0.02–0.07
0.001–0.003"
#2000 / #3000 5,000–8,000 150–350
5.9–13.8
0.02–0.05
0.001–0.002"
#3000 → #6000 Dry air + extraction
N Non-metallic Hard rubber Ebonite 5,000–8,000 180–400
7.1–15.7
0.02–0.07
0.001–0.003"
#2000 / #3000 5,000–8,000 150–350
5.9–13.8
0.02–0.05
0.001–0.002"
#3000 → #6000 Dry air + extraction
S High temperature alloys Fe based Annealed 3301.4864 6,000–9,000 150–350
5.9–13.8
0.03–0.08
0.001–0.003"
#150 / #200 / #400 6,000–9,000 120–300
4.7–11.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet recommended
S High temperature alloys Fe based Hardened S5901.4977 5,000–8,000 130–300
5.1–11.8
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 100–250
3.9–9.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet recommended
S High temperature alloys Ni or Co based Annealed Incoloy 8252.4858 5,000–8,000 120–300
4.7–11.8
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 100–250
3.9–9.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet recommended
S High temperature alloys Ni or Co based Hardened Inconel 7182.4668 5,000–8,000 120–280
4.7–11.0
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 100–240
3.9–9.4
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet recommended
S High temperature alloys Ni or Co based Cast Nimocast K242.4674 5,000–8,000 120–280
4.7–11.0
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 100–240
3.9–9.4
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet recommended
S Titanium alloys Pure Titanium G.13.7024 5,000–8,000 140–320
5.5–12.6
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 110–260
4.3–10.2
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet recommended
S Titanium alloys Alpha+beta alloys, hardened Titanium G.53.7165 5,000–8,000 120–280
4.7–11.0
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 100–240
3.9–9.4
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet recommended
H Hardened steel Hardened HARDOX 500 5,000–8,000 120–300
4.7–11.8
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 100–250
3.9–9.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet preferred
H Hardened steel Hardened HARDOX Extreme 5,000–8,000 100–250
3.9–9.8
0.03–0.06
0.001–0.002"
#150 / #200 / #400 5,000–8,000 90–220
3.5–8.7
0.02–0.04
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet preferred
H Chilled cast iron Cast A532 IIIA 25% Cr0.965 5,000–8,000 120–300
4.7–11.8
0.03–0.07
0.001–0.003"
#150 / #200 / #400 5,000–8,000 100–250
3.9–9.8
0.02–0.05
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet preferred
H Hardened cast iron Hardened A532 IID 20% CrMo0.9645 5,000–8,000 100–250
3.9–9.8
0.03–0.06
0.001–0.002"
#150 / #200 / #400 5,000–8,000 90–220
3.5–8.7
0.02–0.04
0.001–0.002"
#400 → #800
#1000 / #1200 final
Wet preferred
No matching material found Try another material, grade, DIN number, grit or ISO group.
  • Coolant Selection: Use the coolant method shown in the machining table as the starting recommendation. Coolant can assist with heat control, chip evacuation and surface-finish consistency. Always confirm compatibility with the workpiece material and the production process.

  • Point Brush starting parameters: Use the lower value first and optimize on the actual component. For Ø1.0 mm and Ø1.5 mm brushes, start at the lower end of the feed and brush-engagement ranges.

  • Recommended RPM vs. Maximum RPM: The machining table provides recommended starting RPM ranges by material. 12,000 RPM is the absolute maximum spindle speed and should not be interpreted as the recommended speed for every application.
  • Controlling Deburring & Polishing Performance

    Increase Deburring Action

    Coarser grit → slightly greater engagement → lower feed → additional controlled pass

    Reduce Aggressiveness

    Finer grit → lighter engagement → higher feed → fewer passes

    Improve Surface Finish

    Finer grit sequence → light contact → stable feed → controlled finishing passes

    Improve Brush Life

    Reduce side loading → use minimum required engagement → maintain correct alignment

    Important: Do not compensate for insufficient cutting action only by increasing pressure or side loading. Excessive fiber deflection can reduce process stability and brush life.
    ?

    Point Brush Troubleshooting

    ProblemRecommended Adjustment
    Burr remainsUse a coarser grit → slightly increase engagement → reduce feed → add another controlled pass.
    Excessive edge roundingIncrease feed → reduce brush engagement → select a finer grit → reduce RPM if necessary.
    Brush marksUse a finer grit → reduce engagement → maintain a stable finishing feed → add a light final pass.
    Excessive brush wearReduce engagement → check alignment → minimize side loading → verify runout and clamping.
    Poor surface finishUse a progressive grit sequence → lighter final engagement → stable feed → verify brush cleanliness.
    Vibration / unstable contactStop operation → check chuck, runout, brush condition and workholding before restarting.

    Brush Wear & Maintenance

    WEAR

    Brush Wear Changes Cutting Behavior

    As the ceramic fibers wear and become shorter, brush stiffness and contact behavior may change. Re-check the process when the brush has visibly shortened.

    PROCESS CONTROL

    Compensate Gradually

    If the process becomes too aggressive, reduce brush engagement, increase feed, reduce RPM if required, or move to a finer grit.

    CLEANING

    Keep the Brush Clean

    Remove accumulated machining debris, dust and coolant residue. Contamination can reduce consistency and surface-finish quality.

    INSPECTION

    Inspect Before Production

    Check the brush tip, shank, clamping condition and runout before use. Replace a damaged or unstable brush before production machining.

    Process stability: Do not maintain performance by increasing pressure alone as the brush wears. Optimize engagement, feed, RPM and grit together.

    Point Brush Installation & Usage

    01. Shank Grip

    Grip the brush shank by at least 20 mm to ensure secure clamping.

    02. Chuck Matching

    Use a chuck or collet that correctly matches the brush shank diameter.

    03. Minimize Runout

    Keep spindle and tool runout as low as practical for stable contact.

    04. Initial Engagement

    Begin with minimum contact and increase engagement gradually only when required.

    05. Secure Workholding

    Ensure the brush and workpiece are securely clamped before CNC operation.

    06. Validate the Process

    Confirm the selected parameters on the actual component before production use.

    Manual & CNC Operating Speed Guidelines

    HAND-HELD

    Manual Operation

    1,000 → 3,000 RPM

    Start at approximately 1,000 RPM. Once stable control is established, increase gradually up to 3,000 RPM. Speeds above 3,000 RPM are not recommended for hand-held operation.

    CNC / ROBOTIC

    Automated Operation

    Up to 12,000 RPM

    For securely clamped CNC or robotic applications, follow the machining recommendation table and never exceed 12,000 RPM.

    Point Brush Safety Precautions & Instructions

    Operation Safety

    • Do not exceed the specified maximum spindle speed.
    • Do not use pneumatic-powered hand tools.
    • Stop immediately if abnormal vibration occurs.
    • Avoid prolonged machining at one fixed point.
    • Avoid excessive side loading.

    Operator & Work Area Safety

    • Wear suitable eye, skin and respiratory protection.
    • Use suitable dust and particle extraction.
    • Keep flammable materials away from the machining area.
    • Ensure secure workholding and controlled access to the work area.

    Process validation required: Actual performance depends on brush diameter, grit, workpiece material, hardness, burr geometry, machine rigidity, tool condition and operating conditions.

    Technical Downloads & 3D Models