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Equipment

Plastic Pulverizer

High-speed industrial plastic pulverizer (disc-type and turbo-type) for micronizing PVC regrind, LLDPE, HDPE, and engineering polymers into 20–120 mesh powder for rotomolding, extrusion, and compounding.

  • Size Reduction Equipment
  • Raw Material Preparation
  • ABS
  • PE(Polyethylene)
  • PP(Polypropylene)
  • PVC
  • Resin
  • Pellets
  • Off-spec pellet size and fines
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Rango de capacidad
0.1–1.2 Ton/Hour
Models
NC-MF30 · NC-MF60 · NC-MF80 · NC-MF1000
Potencia nominal
40–135 kW
Base de las cifras de capacidad
Pellets

Reference values for the model or models named above. The confirmed configuration, the capacity basis and the scope of supply are stated in the quotation and the drawings.

Overview

What this machine does

Micronizes plastic pellets and regrind flakes into high-quality fine powder (20 to 120 mesh) for PVC compounding, rotomolding, and coating processes.

The Plastic Pulverizer (high-speed disc-type / turbo-type plastic micronizer) is specialized size-reduction equipment designed to mill thermoplastic pellets and pre-crushed regrind flakes into uniform, high-quality fine powder ranging from 20 to 120 mesh (approx. 125 μm to 850 μm). It plays an essential role in PVC pipe/profile recycling, rotational molding (rotomolding), carpet backing, textile coating, and high-speed compounding applications where fine, consistent particle size and rapid thermal fusion are critical.

Operating under high-velocity centrifugal and aerodynamic shear, the pulverizer features precision-balanced rotors, high-wear alloy steel grinding elements, integrated water cooling, and pneumatic negative-pressure conveying. To match the distinctive thermal and rheological properties of different polymer families, the equipment is engineered around two core milling configurations:

1. Disc-Type Plastic Pulverizer (High-Shear Serrated Tooling)

Engineered predominantly for Rigid and Semi-Rigid PVC (pipes, window profiles, vinyl sheets, foam boards), ABS, PC, and general post-industrial regrinds. It employs a stationary grinding disc and a high-speed rotating disc fitted with interlocking radial serrated teeth. As material enters the central feed throat, centrifugal force accelerates the particles through progressively tightening tooth clearances. The high-frequency shear and attrition micronize rigid regrind into 20–40 mesh powder in a single pass. Both discs and housings incorporate internal water-cooling jackets to suppress friction heat and prevent polymer softening or thermal discoloration.

2. Turbo-Type Plastic Pulverizer (Vortex Aerodynamic Milling)

Specially developed for heat-sensitive polyolefins, particularly Linear Low-Density Polyethylene (LLDPE), LDPE, HDPE, EVA, and PP used in rotational molding (rotomolding). Utilizing a high-speed multi-wing impeller spinning inside a circular serrated stator ring, the turbo rotor generates powerful aerodynamic micro-vortices and rapid impact forces. This fluid-energy milling action produces smooth, spherical particles with excellent dry-flow rates and high bulk density (critical for bubble-free rotomolding fusion) while maintaining lower chamber temperatures than traditional mechanical disc mills.

Closed-Loop Classification & Dust-Free Operation

Both disc and turbo pulverizer systems operate under continuous pneumatic negative pressure. Pulverized powder is immediately extracted from the milling chamber by an induced-draft blower, passed through an aerodynamic cyclone separator, and fed into an integrated rotary vibrating sifter (vibro-screen). Particles meeting the target mesh discharge continuously via an airtight rotary valve into big bags or silos, while coarse tailings are automatically routed via closed-loop pneumatic transfer back to the grinding throat for re-milling. A reverse pulse-jet baghouse filter captures all ultra-fine dust, ensuring 100% dust-free workplace emissions and total material recovery.

Key features

The parts that do the work

Each picture names one part of the machine and what it does for the material and the batch.

Placeholder image: equipment feature photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

High-Shear Serrated Grinding Discs (Disc-Type)

Precision CNC-machined dynamic and stationary grinding discs fabricated from premium vacuum heat-treated alloy steel (Cr12MoV / D2 / SKD-11, 58–62 HRC). Interlocking serrated tooth profiles shear and grind plastic pellets into ultra-fine powder in a single high-speed pass.

Placeholder image: equipment feature photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

High-Speed Multi-Wing Turbo Rotor & Stator (Turbo-Type)

High-velocity dynamic rotor equipped with multiple aerodynamic impact blades spinning inside a circular serrated stator liner. Creates intense micro-vortex shearing forces that pulverize LLDPE/HDPE into smooth, spherical powder with outstanding dry-flow properties for rotomolding.

Placeholder image: equipment feature photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

Comprehensive Dual-Jacket Water Cooling System

Dual-jacket water cooling wraps the entire stationary disc housing and bearing pedestals, continuously circulating chilled water to dissipate frictional heat. Prevents polymer melting, thermal degradation, and internal disc agglomeration.

Placeholder image: equipment feature photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

External Micrometer Disc Gap Adjustment Mechanism

Precision exterior micrometer adjustment bolts allow fine tuning of the cutting gap between rotary and stationary discs down to fractional millimeters without dismantling the grinding chamber, ensuring precise output particle distribution.

Placeholder image: equipment feature photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

Pneumatic Negative-Pressure Discharge & Vibro-Screen Sifting

High-performance pneumatic fan continuously evacuates pulverized powder from the milling chamber through ductwork into an aerodynamic cyclone separator and high-frequency rotary vibrating screen, isolating oversized tailings for automatic closed-loop regrinding.

Placeholder image: equipment feature photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

Intelligent PLC Load-Sensing Feeder Control

Smart PLC control panel monitors main motor load current, bearing temperatures, and milling chamber temperature in real time. Automatically modulates the variable-speed vibratory/screw feeder to prevent motor overload, thermal jamming, or disc burn.

Material and process

Where it fits — and where it does not

Read the conditions together: a machine is selected for the material and the output, not from its name alone.

Materiales y condiciones adecuados

Engineered for high-efficiency, continuous pulverizing and micronizing of thermoplastic polymers into uniform powders ranging from 20 mesh to 120 mesh (approximately 125 μm to 850 μm).

Specifically optimized for two primary industrial applications across the plastics processing and recycling industries:

  • Rigid & Semi-Rigid PVC Pulverizing (Disc-Type): Micronizing rigid PVC pipe and profile scrap, edge trims, foam boards, window profiles, and vinyl siding regrind into 20–40 mesh powder for direct reintroduction into high-speed turbomixers and twin-screw extrusion lines.
  • Rotational Molding (Rotomolding) Powder Preparation (Turbo-Type): Grinding virgin and recycled Polyethylene (LLDPE, LDPE, HDPE), EVA, and Polypropylene pellets into 35–50 mesh spherical powders with superior bulk density and dry flowability, ideal for rotomolding tanks, marine products, containers, and toys.
  • Engineering Plastics & Specialty Masterbatch: Processing ABS, PS, PC, and nylon pellets/regrinds into fine powders (50–100 mesh) for carpet backing, textile coating, compounding additives, and rotational sintering.

Limitaciones y cuándo no aplica

High-speed precision micronizing mill; operational boundaries include:

  • No oversized lumps: Cannot mill large purgings or uncrushed scrap directly; feedstock must be pre-granulated to under 6–8 mm regrind.
  • Moisture & sticky polymers: High moisture (>0.5%–1%) causes disc caking; tacky elastomers melt without cryogenic cooling and plug disc teeth.
  • Strict tramp metal exclusion: Ferrous debris entering the chamber destroys disc teeth; dual-stage hopper drawer magnets are mandatory upstream.
  • Abrasive mineral wear: Formulations with >30%–40% mineral fillers (CaCO3, talc, glass fibers) require carbide-hardfaced wear tooling.

Condición y requisitos de alimentación

Accepts clean, dry rigid or semi-rigid thermoplastic polymers and pre-processed regrinds, including:

  • Pelletized Feedstock: Standard virgin or recycled polymer pellets (typically 3–4 mm diameter), such as LLDPE, LDPE, HDPE, EVA, ABS, and PC.
  • Pre-Crushed Regrind Flakes: Clean regrind flakes (typically 6–8 mm particle size) derived from rigid PVC pipe/profile offcuts, edge trims, window profiles, foam boards, and molded sprues.
  • Moisture & Contamination Limits: Feedstock surface moisture must be below 0.5% (wt) to prevent screen blinding and agglomeration. Input materials must be 100% free of ferrous/non-ferrous tramp metals, uncrushed large chunks, and stones.

Condición y límites de salida

Discharges uniform, free-flowing dry plastic powder with calibrated particle distribution:

  • Particle Fineness Range: 20 mesh to 120 mesh (approximately 125 μm to 850 μm), customizable via interchangeable rotary vibro-screen meshes and micro-gap adjustment.
  • Powder Morphology: Produces irregular, high-surface-area granules for PVC extrusion blending, or rounded, smooth-edge spherical particles with superior dry-flow rate (> 25–30 s / 100g) and high bulk density for rotational molding.
  • Discharge Method: Continuous dust-free discharge via pneumatic cyclone and motorized rotary airlock valve into collection bins, big bags, or pneumatic conveying lines.

Throughput

Rango de capacidad

Read a figure together with the basis below it: the same machine reaches different numbers on different materials.

0.1–1.2 Ton/Hour

Base de las cifras de capacidad

Pulverizing throughput typically spans from 100 kg/h up to 800+ kg/h depending on grinding rotor diameter (400 mm to 800 mm), installed drive power (37 kW to 90+ kW), polymer rheology, and target discharge mesh fineness.

Capacity is determined by polymer hardness, thermal softening point, and screen mesh size. Hard, rigid PVC profile regrind (producing 20–30 mesh) processes at high throughput rates, whereas low-density polyethylenes (LLDPE/LDPE producing 35–50 mesh for rotomolding) require continuous chilled water cooling, controlled feed rates, and higher specific energy to prevent thermal agglomeration.

Models

Models in this range

The figures are the reference values entered for each model. The model for your line is confirmed against your material and output before it is quoted.

Scroll the table sideways to read every column →

Model Rango de capacidad Potencia nominal Shaft rotate speed Feeding material size Final material size
NC-MF30 0.1-0.2 Ton/Hour 40 kW 3800 r/min < 10 mm 80-320 mesh
NC-MF60 0.2-0.5 Ton/Hour 75 kW 3200 r/min < 12 mm 80-320 mesh
NC-MF80 0.5-0.8 Ton/Hour 95 kW 2800 r/min < 12 mm 80-320 mesh
NC-MF1000 0.8-1.2 Ton/Hour 135 kW 2000 r/min < 12 mm 80-320 mesh

Scope of supply

What is included, and what is not

The quotation states the scope for the confirmed configuration; the groups below describe how a supply is normally split.

Incluido de serie

  • Heavy-duty precision milling chamber with water jacket Precision-machined cast steel milling housing with integral labyrinth water cooling channels and hinged front door.
  • High-alloy dynamic rotor and stationary grinding tooling Vacuum heat-treated alloy steel cutting elements (serrated discs or multi-wing turbo rotor and stator liner, 58–62 HRC).
  • Variable-speed automatic material feeder Inverter-controlled vibratory feeder or metering screw feeder with stainless steel hopper and level sensor.
  • High-pressure induced draft pneumatic blower Heavy-duty pneumatic conveying fan with wear-resistant impeller for negative-pressure powder evacuation.
  • Aerodynamic cyclone separator with rotary airlock valve High-efficiency cyclone collector with inspection sight glass and motorized rotary airlock discharge valve.
  • High-frequency rotary vibrating screen (Vibro-sifter) Stainless steel rotary vibro-screen with closed-loop pneumatic tailings return piping back to the feed throat.
  • Pulse-jet reverse air baghouse dedusting station Automated compressed-air pulse baghouse filter with needle-felt bags, exhaust silencer, and dust hopper.
  • Integrated PLC electrical control console Siemens / Schneider electrical components with motor current load meters, digital temperature controllers, and emergency stop circuitry.

Elementos opcionales

  • Process air vortex refrigeration chiller unit Inline cold air refrigeration chiller providing sub-ambient process airflow into the milling chamber, essential for processing low melting point polymers (LDPE, EVA) in tropical ambient climates.
  • Dual-deck ultrasonic vibrating sifter Ultrasonic anti-blinding mesh excitation system preventing electrostatic fine powder agglomeration when sieving high-mesh powders (80–120 mesh).
  • Drawer-type high-intensity neodymium hopper magnets Multi-tier 12,000 Gauss rare-earth magnetic grate installed at the feed inlet to trap tramp ferrous contaminants before entering the grinding discs.
  • Big-bag (bulk bag) automated filling & weighing station Dust-tight dual big-bag suspension framework with automated switchover dampers and load-cell weight control below the cyclone discharge airlock.
  • Disc-Type vs. Turbo-Rotor Milling Architecture Precision high-shear serrated disc design for PVC profile/pipe regrind, EVA, and rigid polymers; high-velocity multi-wing turbo impeller and stator liner design for LLDPE/HDPE rotomolding powders and heat-sensitive polyolefins.
  • Chilled Water & Air Refrigeration Cooling Package Dual-jacket cooling on both stationary and rotary disc housings paired with in-line vortex process air chillers for processing heat-sensitive polymers and high-temperature environments.
  • High-Efficiency Rotary Vibro-Screen with Tailings Recycling Loop Single- or dual-deck ultrasonic vibro-sifter integrated with a closed-loop pneumatic tailings return conveyor to automatically re-feed off-spec coarse particles back to the milling chamber.
  • Pulse-Jet Dedusting & Fine Powder Filtration Station Automated reverse-pulse compressed air baghouse collector ensuring 100% dust-free workplace emissions, clean air discharge, and maximum fine powder recovery.
  • Wear-Resistant Hardfacing & Tungsten Carbide Cladding High-hardness tungsten carbide or chromium carbide hardfacing on grinding disc teeth and stator liners for processing highly abrasive mineral-filled (e.g., 20–50% CaCO3) PVC and masterbatch compounds.

No incluido

  • Civil foundation engineering and floor anchoring Level reinforced concrete flooring, machine trenching, and expansion/chemical anchor bolt installation.
  • Chilled water generator / external chiller unit Industrial water chiller, external cooling tower, circulation pumps, and piping to the pulverizer supply connections unless explicitly quoted in the scope.
  • Interconnecting plant electrical cabling Main supply wiring connecting the factory power distribution transformer to the pulverizer main control cabinet breaker.
  • Product storage silos and downstream mixing equipment Downstream powder storage silos, vacuum transfer systems to high-speed mixers, or big-bag filling scales unless specified in an integrated plant proposal.

Installation planning

Utilities, interfaces and site readiness

These are the connections the machine and the line around it have to agree on before the layout is fixed.

Requisitos de servicios auxiliares

Suministro eléctrico
380 V / 415 V / 460 V / 220 V (customizable), 50/60 Hz, 3-phase industrial AC.
Agua
Circulating chilled cooling water: 1.5–3.0 m³/h at 12–18°C, inlet pressure 0.2–0.3 MPa (closed loop).
Aire comprimido
0.5–0.7 MPa (5–7 bar), clean, dry instrument air for pulse-jet baghouse filter cleaning (consumption: 0.2–0.3 m³/min).
Extracción y ventilación
Self-contained closed-loop negative-pressure system; no external plant exhaust required. Standard clean air venting through top baghouse exhaust silencer.
Otras notas
Main mill motor ranges from 37 kW to 90 kW; auxiliary motors (blower, vibro-screen, airlock, feeder) total 11 kW to 18.5 kW. Chilled water supply at 12–18°C is strongly recommended for polyolefins.

Requisitos de interfaz

Mechanical: Rigid steel base mounted on anti-vibration rubber pads on a level concrete floor; cyclone bottom flange connected to rotary airlock valve and vibro-screen infeed chute; pneumatic ducting clamped with quick-release airtight couplings.

Electrical & Automation: Three-phase industrial power supply brought to the main control console; interlocking auxiliary signals between main mill motor, induced draft blower, vibro-screen, and variable-speed feeder.

Cooling Water & Pneumatics: Chilled water supply and return lines (12–18°C, 0.2–0.3 MPa) connected to standard BSP/NPT water jacket inlet/outlet flanges; compressed air supply (0.5–0.7 MPa) for the pulse-jet baghouse filter.

Lo que el cliente prepara en obra

The buyer provides a reinforced level concrete industrial floor, main power cabling connected to the isolator breaker in the pulverizer control cabinet, continuous chilled cooling water supply (12–18°C) piped to the machine inlet/outlet manifolds, compressed air connection for pulse-jet filter cleaning, and product collection containers or big-bag packing stations below the cyclone discharge.

Spare parts

Wear parts and recommended spares

The parts that wear in normal service, and the spares worth keeping on site. How often a part is replaced depends on the material and the duty the machine runs, so the basis is confirmed for each machine.

Wear parts

Placeholder image: spare part photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

Rotary & Stationary Grinding Disc Set (Cr12MoV / D2 / SKD-11)

Inspect tooth sharpness weekly; re-sharpen or replace every 1,500–3,000 operating hours or when production throughput drops by > 20% at equal motor load.

Precision CNC-machined serrated tool-steel discs. Direct cutting wear part. Discs can be precision re-ground 2–3 times before replacement. Keep one spare matched set in plant stock.

Placeholder image: spare part photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

Turbo Rotor Blades & Serrated Stator Liner Set (Turbo-Type)

Inspect blade tips and liner teeth every 1,000 hours; replace when clearance widens significantly or when powder morphology degrades.

Multi-wing alloy impact blades and wear-resistant circular stator liner plates for turbo-type pulverizers.

Placeholder image: spare part photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

Vibrating Screen Mesh & Support Gaskets

Inspect screen daily for tears, holes, or blinding; replace immediately upon rupture to prevent coarse particles from contaminating finished powder.

High-tensile stainless steel (SUS304) sifting screens (available in 20, 30, 40, 50, 60, 80, 100 mesh) and silicone seal rings.

Placeholder image: spare part photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

Rotary Airlock Valve Rubber Vanes / Seals

Inspect quarterly; replace when air blow-by reduces cyclone separation efficiency.

Flexible sealing vanes for the cyclone discharge rotary airlock valve, maintaining pneumatic negative pressure.

Placeholder image: spare part photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

Pulse-Jet Filter Bags / Cartridges

Inspect every 6 months; replace annually or when differential pressure indicates fabric blinding.

Antistatic needle-felt filter bags for the dedusting baghouse collector.

Recommended spares

Placeholder image: spare part photo, 960 × 720 px (4:3). It shows the space reserved for approved material and is not a photograph of our equipment.

High-Speed Spindle Bearing Assembly (SKF / NSK)

Inspect lubrication grease and vibration levels monthly; replace every 8,000–12,000 operating hours.

Precision high-speed angular contact ball / cylindrical roller bearings for the main drive spindle.

Blades, screens and other normal consumables are outside the standard warranty. How a spare part is identified and ordered is set out under Warranty & Spare Parts.

Selection

How to choose a model

Work through what you already know. The rest is settled in the conversation, not before the first message.

Selecting the optimal industrial plastic pulverizer requires evaluating polymer thermal properties, required mesh size, particle morphology, and hourly throughput:

  • Disc Pulverizer vs. Turbo Pulverizer Selection:
    • Choose Disc-Type Pulverizers (SMF / SMP Series): The industry standard for Rigid and Semi-Rigid PVC (pipes, window profiles, vinyl flooring, siding, foam sheets), EVA, PC, and general regrind. Serrated alloy discs provide high shear and friction cutting, producing 20–60 mesh irregular powder ideal for PVC dry-blend high-speed mixing and extruder feed.
    • Choose Turbo-Type Pulverizers (SMP / MF Series): Specifically engineered for heat-sensitive polyolefins (LLDPE, LDPE, HDPE, PP). The multi-wing high-velocity rotor creates aerodynamic vortex shear and air-cushion cooling, producing uniform 35–50 mesh spherical powder with exceptional dry flowability and high bulk density—essential for rotational molding (rotomolding) of water tanks, toys, and kayaks.
  • Chamber Diameter & Motor Sizing: Grinding disc diameters range from 400 mm to 800 mm, with drive motors from 37 kW to 90+ kW. Match chamber size to required throughput (e.g., 150–250 kg/h for PVC profile scrap; 350–600+ kg/h for continuous rotomolding lines).
  • Thermal Management & Water Cooling: For ambient operating environments exceeding 30°C or when processing polymers with low melting thresholds (LDPE, EVA), double-jacket water cooling connected to an industrial chilled water unit (12–18°C) is mandatory to prevent thermal softening and disc burn.
  • Classification & Screening Configuration: Pair the pulverizer with a closed-loop rotary vibro-screen and pneumatic tailings return system to guarantee that 100% of discharged product meets the exact mesh specification without manual screening.

Información que necesitamos de usted

  1. 01 Raw material polymer grade, formulation, and melt flow index (MFI) Specify exact resin family (e.g., LLDPE, HDPE, Rigid PVC, Soft PVC, EVA, ABS), additives present (CaCO3 filler %, lubricants, stabilizers), and melt index. Temperature sensitivity directly impacts mill design and cooling requirements.
  2. 02 Physical input format and particle dimensions Specify whether feeding standard virgin pellets (3–4 mm) or pre-crushed regrind flakes (typically 6–8 mm). Feeding uncrushed thick chunks or oversized scrap will cause feeding throat bridging and disc stalling.
  3. 03 Target mesh size, particle distribution, and dry flow requirements Target screen mesh (e.g., 20–30 mesh for PVC pipe/profile extrusion; 35–50 mesh for rotomolding LLDPE; 60–100 mesh for carpet backing/masterbatch coating) and bulk density/flowability standards.
  4. 04 Required continuous production throughput (kg/h) Specify target output in kilograms per hour (kg/h) and operating shift model (e.g., 8-hour batch or 24/7 continuous duty).
  5. 05 Plant power and cooling water utilities Site electrical supply voltage, frequency (50/60 Hz), total available breaker capacity, and available chilled water flow rate/temperature for mill jacket cooling.

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