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OBM Indexable Chamfer PCD Milling Cutter End Mill Router Bit For Aluminium & Copper

OBM Indexable Chamfer PCD Milling Cutter End Mill Router Bit For Aluminium & Copper
Basic Properties
Country Of Origin
Anhui China
Brand Name
Palton
Certificate
ISO
Trading Properties
MOQ
10pcs
Unit Price
31.5
Payment Method
T/T
Supply Capacity
1000 pcs 25days
Product Summary

Palton PCD Flat Router Bits Straight Diamond End Milling Cutters Suitable for Stone Aluminum Silicon Plastic Wood Glass TECHNICAL BRIEF: PCD Straight Router Bit Purpose Single- and dual-flute polycrystalline diamond straight router bits for CNC nesting, grooving, and edge-finishing operations on ...

Product Details
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OBM PCD Milling Cutter

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Indexable PCD Milling Cutter

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Indexable chamfer router cutter

Customization Capability: OEM / ODM / OBM — Full Spectrum Support
Manufacturing Base: Bozhou, Anhui Province, China
MOQ: 10 Pcs
Product Series: MGMN / MGFV — Indexable Grooving & Parting
Advantage: Sharp, Wear Resistant,longer Tool Life,high Speed
Surface Treatment: Uncoated / TiN / TiAlN / TiCN — Per Workpiece Requirement
Lead Time: 5-8 Days
Cutting Application: CNC Milling Machining
Insert Grade: Tungsten Carbide (K10–K20) / HSS (M2/M42) — Application-Selected
Cutting Edge Material: 2 Mm To 20 Mm (Extended On Request)
Brand: Palton Precision Tools
Manufacturing Origin: Bozhou, Anhui Province, China
Product Description

Palton PCD Flat Router Bits Straight Diamond End Milling Cutters Suitable for Stone Aluminum Silicon Plastic Wood Glass

        • TECHNICAL BRIEF: PCD Straight Router Bit

          Purpose

          Single- and dual-flute polycrystalline diamond straight router bits for CNC nesting, grooving, and edge-finishing operations on panel materials, non-ferrous metals, fiber composites, and engineering plastics. Designed to replace carbide tooling where edge wear drives excessive spindle downtime.

          The Wear Problem, Quantified

          A carbide straight bit cutting MDF at standard production parameters loses measurable edge sharpness within 30–90 linear meters of cutting, depending on panel density and resin content. By 200 meters, groove bottom quality has degraded to the point where rework or secondary sanding is required by most quality standards. The operator responds by indexing or replacing the tool — typically 3–8 times

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          per shift on high-output nesting lines.

          Each tool change consumes 5–8 minutes of non-productive spindle time (deceleration, removal, installation, touch-off, first-part check). Across three shifts producing 7,000–12,000 cabinet parts daily, accumulated tool-change downtime represents 5–8% of available production capacity.

          A PCD straight bit of equivalent geometry operating on the same production line reaches 2,000–5,000 linear meters before edge degradation begins to affect surface quality, and 8,000–15,000+ linear meters before geometry change approaches dimensional limits. Tool changes become scheduled preventive events, not reactive interruptions.

          Material Structure

          Substrate: K10–K20 grade tungsten carbide (6% cobalt), HIP-sintered to full density. Hardness 91.5–92.0 HRA.

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          Transverse rupture strength ≥ 3,500 MPa. Shank tolerance h6, concentricity ≤ 3 μm.

          Cutting element: HPHT polycrystalline diamond blank, 10–25 μm average grain size (fine grade), diamond volume fraction ≥ 90%. Hardness 8,000–10,000 HV. Thermal conductivity 500–560 W/m·K. Coefficient of friction vs. aluminum: 0.05–0.10 (dry).

          Bond interface: Vacuum furnace brazed, active filler metal system, process temperature 680–720°C, chamber pressure ≤ 10⁻³ Pa. Bond shear strength ≥ 200 MPa. Interface free of porosity and intermetallic embrittlement phases.

          Edge preparation: Pulsed fiber laser, 1,064 nm wavelength, 0.01 mm spot diameter, multi-pass contour ablation. Edge radius controllable from sharp (≤ 5 μm) to honed (10–25 μm) per application requirement. No grinding-induced subsurface

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          micro-crack network.


          Cutting Geometry

          Parameter 1-Flute 2-Flute
          Rake angle 5–8° positive 3–5° positive
          Primary clearance 10–12° 8–10°
          Secondary clearance 18–22° 15–18°
          Helix angle 0° (straight) 0° (straight)
          Gullet volume ratio 1.0 (reference) 0.55 (per flute)
          Core diameter ~60% of cutting Ø ~65% of cutting Ø
          Recommended feed (MDF) 0.15–0.30 mm/tooth 0.10–0.20 mm/tooth
          Recommended RPM (Ø6–12 mm) 16,000–24,000 14,000–22,000

          Application-By-Application Guidance

          Cabinet Nesting (MDF/Melamine/Plywood)

          Primary operation: through-cutting and dado grooving nested cabinet parts on vacuum-table CNC routers. Key requirement: chip-free edges on decorative surface layers. 1-flute recommended

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          for finish-critical edges on face-frame panels. 2-flute recommended for internal structural grooves where post-processing is standard. PCD eliminates melamine micro-peeling at the cut boundary for the full tool life window.

          Aluminum Panel and Plate Milling

          Applicable to 1xxx through 7xxx series aluminum in sheet, plate, and extrusion form. PCD edge does not accumulate aluminum deposit (built-up edge absent due to chemical inertness of diamond to aluminum). Dry or MQL cutting is standard. Flood coolant optional but not required. Surface finish Ra achievable: 0.4–0.8 μm on 6061-T6 at production feed rates.

          Composite Panel Trimming

          CFRP and GFRP laminates cut without fiber pull-out at entry or delamination at exit. Diamond edge severs individual fibers rather than displacing them into

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          the matrix. Tool life in continuous glass-fiber-reinforced panel cutting exceeds carbide by factor of 30–80× depending on glass content and fiber orientation.

          Acrylic and Polycarbonate Machining

          Cast and extruded acrylic, PETG, and polycarbonate sheet cut without localized melting at the groove interface. Edge remains optically clear with no stress whitening. Suitable for display, signage, and light-guide panel manufacturing where edge clarity is a cosmetic requirement.

          Thermal Behavior — The Data

          At 18,000 RPM and 0.15 mm/tooth feed cutting 18 mm MDF:

          • Steady-state PCD edge temperature: 120–180°C (well below diamond graphitization threshold of ~700°C in air)

          • Steady-state carbide edge temperature (equivalent parameters): 280–380°C

          • PCD tool body temperature 40 mm from

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          tip: ≤ 65°C

          • Carbide tool body temperature 40 mm from tip: 120–160°C

          The temperature gradient matters: cooler tool body = less thermal expansion = more stable cutting diameter = more consistent groove width.


          Dimensional Stability Over Tool Life

          Measurement Point New Tool After 2,000 Linear Meters After 5,000 Linear Meters
          Cutting diameter (Ø10 mm) 10.000 mm 9.998 mm 9.994 mm
          Edge radius 5 μm 7 μm 12 μm
          Groove bottom Ra (MDF) 2.1 μm 2.4 μm 3.0 μm
          Groove width tolerance ±0.02 mm ±0.02 mm ±0.03 mm

          Carbide equivalent at 200 linear meters: edge radius ≥ 25 μm, groove bottom Ra ≥ 6.0 μm, dimensional shift ≥ 0.05 mm.


          Qualification & Ordering

          From stock: Standard diameters 1–20 mm, shank 6/8/10/12 mm, length

OBM Indexable Chamfer PCD Milling Cutter End Mill Router Bit For Aluminium & Copper
OBM Indexable Chamfer PCD Milling Cutter End Mill Router Bit For Aluminium & Copper