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Solution

Central Desiccant Drying and Gravimetric Glass Fiber Compounding System

Central desiccant drying, dry-air conveying, and gravimetric side-stuffing system for glass-fiber reinforced PA66, PBT, and PC engineering plastics.

  • Compounding
  • Extrusion and Melt Processing
  • Feeding and Material Transfer
  • Raw Material Preparation
  • Capacity Expansion
  • New Production Line
  • Modified Plastics
  • PA66
  • PBT
  • PC
  • PET
  • Pellets
  • Powder
  • Intermittent or inaccurate feeding
  • Internal moisture in hygroscopic resin
  • Moisture re-absorption in conveying
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Solution scope
Multi-Function System
Flow and installation
Continuous · Inline
Capacity
300–1500 kg/h

This turnkey solution provides an automated central drying, conveying, and loss-in-weight compounding feeding system engineered specifically for hygroscopic engineering plastics (PA6, PA66, PBT, PET, PC, PPS) reinforced with high percentages (15% to 50%) of chopped glass fibers and mineral flame retardants.

Engineering thermoplastics like polyamides (PA6/PA66) and polyesters (PBT/PET) are aggressively hygroscopic. Even 0.05% of absorbed ambient moisture triggers severe hydrolytic chain scission at melt temperatures (260°C–300°C), destroying tensile strength, inducing splay silver marks on molded parts, and causing extrusion foaming. Furthermore, glass fibers are brittle: if introduced through main extruder throats, severe shear attrition pulverizes fiber length below the critical reinforcement threshold (Lc < 200 µm), degrading mechanical stiffness. This engineered solution integrates closed-loop honeycomb desiccant drying (-40°C to -50°C dew point), dry-air pneumatic conveying, and synchronized gravimetric twin-screw side feeding to preserve fiber aspect ratio and guarantee zero hydrolytic degradation.

The problem

What the section changes

Eliminates hydrolytic degradation and preserves glass fiber reinforcement length for high-performance engineering plastics.

Dónde empieza el cliente

Compounding plants run hygroscopic engineering plastics (PA66/PBT) using basic hot-air hopper dryers located next to the extruder. On humid summer days, ambient air contains 20–30 g/m³ of moisture, and hot air merely warms the pellets without drying them below the critical 0.02% threshold.

Furthermore, operators manually dump chopped glass fibers into the main extruder throat along with resin pellets. As brittle glass fibers encounter unmolten solid resin pellets in the melting zone, intense mechanical shear grinds the fibers into short powder (fiber length < 100 µm), drastically reducing tensile strength and causing severe barrel and screw wear.

Por qué ocurre el problema

Polyamide and polyester polymer chains contain polar amide and ester linkages that rapidly absorb moisture from ambient humidity. When melted at 260°C–300°C under extruder pressure, water molecules react hydrolytically with the polymer backbone, cleaving polymer chains and collapsing molecular weight (causing catastrophic loss of tensile and impact strength).

Simultaneously, feeding brittle chopped glass fibers together with hard, unmolten resin pellets into the main feed throat forces fibers to act as grinding media against solid polymer chunks. High shear forces snap glass filaments from an initial 3 mm down to sub-100 µm fragments, destroying the critical aspect ratio (L/D) required for load bearing and fiber pull-out resistance.

Producción o estado objetivo

Bone-dry resin feed with zero hydrolytic degradation and maximum fiber reinforcement retention, producing ultra-high-strength, bubble-free engineering plastic compounds matching virgin tier-1 automotive specifications.

Process

The steps, in the order the material flows

The equipment named here is maintained on the step it belongs to, so the list and the quotation cannot disagree.

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  1. Honeycomb Desiccant Deep Dehumidifying Drying

    Required

    Raw Material Preparation

    Extracts ambient moisture from hygroscopic pellets down to ≤ 0.02% (200 ppm) under continuous low-dew-point hot air.

    Función del equipo

    Molecular sieve honeycomb desiccant rotor continuously delivers dehumidified air at -40°C to -50°C dew point. Insulated drying hopper heats resin to 80°C–120°C for 4–6 hours, purging internal bound moisture.

    Equipos Vacuum Loader

  2. Closed-Loop Dry-Air Pneumatic Conveying

    Required

    Feeding and Material Transfer

    Transfers bone-dry pellets from the central drying hopper to the extruder feed hopper without contact with humid ambient air.

    Función del equipo

    Closed-loop dry-air conveying system utilizes dried process air (-40°C dew point) to propel dried resin, preventing moisture re-absorption during in-plant conveying runs.

    Equipos Central Feeding System Vacuum Loader

  3. Gravimetric Loss-in-Weight Main Feeding

    Required

    Compounding

    Accurately meters dried resin and powdered additives into the extruder main throat using continuous loss-in-weight gravimetric feedback.

    Función del equipo

    High-precision twin-screw loss-in-weight feeders dynamically weigh and control component discharge rates, maintaining recipe accuracy within ±0.5% regardless of bulk density variations.

    Equipos Twin Screw Pelletizer

  4. Downstream Melt-Zone Glass Fiber Side Stuffing

    Required

    Extrusion and Melt Processing

    Gently introduces brittle chopped glass fibers into the fully molten polymer stream downstream, preserving fiber retention length.

    Función del equipo

    Dedicated twin-screw side stuffer injects glass fibers into Zone 5/6 of the twin-screw extruder where polymer is completely melted. Gentle distributive mixing coats fibers with molten matrix without shear fracturing.

    Equipos Twin Screw Pelletizer

Material

What goes in, what comes out

Condición y requisitos de alimentación

Hygroscopic thermoplastic pellets: PA6, PA66, PBT, PET, PC, PPS (pellet moisture up to 0.8%). Reinforcements and additives: E-glass chopped strands (3–4.5 mm), brominated or phosphorus flame retardant powders, and color masterbatches. Feedstock must be un-agglomerated and dry-flowing.

Condición y límites de salida

Uniformly dried base resin (moisture content ≤ 0.02% / 200 ppm) fed to the extruder throat under dry-air blanket; glass fibers accurately metered into molten polymer downstream without breakage, yielding reinforced pellets with superior tensile strength and impact toughness.

300–1500 kg/h

Base de las cifras de capacidad

Based on a continuous twin-screw compounding line output from 300 kg/h up to 1,500 kg/h, with central honeycomb desiccant drying hopper volumes sized for 4 to 6 hours continuous residence time at 80°C–120°C air temperature.

Fit

Where this section belongs — and where it does not

The boundaries are part of the solution: they keep a machine from being quoted into a case it cannot serve.

Adecuada cuando

Essential for automotive, electronic, and industrial engineering plastic compounders manufacturing 15%–50% glass-fiber reinforced PA6, PA66, PBT, PET, and PC grades.

Crucial for flame-retardant (UL94 V-0) compounding lines where hygroscopic brominated or phosphorus additives and resin must be dried to exact limits to prevent blister formation and flame test failures.

No adecuada cuando

Not suitable for continuous long glass fiber roving direct pultrusion (LFT-D / LFT-G lines), which require specialized long-fiber impregnation crosshead dies rather than chopped strand side stuffers.

Not suitable for non-hygroscopic polyolefins (PP/PE) where standard hot-air drying or ambient storage silos are fully adequate, avoiding the higher capital cost of honeycomb desiccant wheels.

Condiciones pendientes de confirmar

Design specifications assume standard engineering thermoplastic pellets (PA6, PA66, PBT, PET, PC) with initial pellet moisture ≤ 0.8% and bulk density between 0.60 kg/L and 0.75 kg/L. Glass fiber corresponds to standard E-glass chopped strands (length 3.0–4.5 mm, filament diameter 10–13 µm, bulk density approx. 0.50–0.60 kg/L).

For high-temperature polymers like PPS, PEEK, or PEI requiring drying temperatures above 140°C, high-temperature insulated hopper shells and high-temp desiccant wheels rated up to 180°C are configured.

Site and connections

What the section assumes around it

Servicios auxiliares

Suministro eléctrico
380 V / 415 V / 460 V, 50/60 Hz, 3-phase AC.
Agua
Process cooling water loop: 20°C–25°C, flow rate 3–8 m³/h to cool drying return air.
Aire comprimido
0.6–0.7 MPa clean, dry compressed air (ISO 8573-1 Class 2:4:2) for pneumatic receiver valves and side-feeder venting (approx. 0.3 m³/min).
Extracción y ventilación
Side-feeder de-aeration vent filter port DN80 connected to light dust collector to exhaust entrained air without pulling fibers.

Total connected electrical power: 45 kW to 110 kW (depending on drying hopper volume and heater sizing).

Limitaciones de la planta

Superficie ocupada
Approximately 25–40 m² required for desiccant drying skid, conveying blower station, and side-feeder mezzanine.
Altura libre
Clear height of 4.5 m to 5.5 m above extruder for drying hopper and gravimetric feeder installation.
Entorno
Clean engineering plastics workshop; air-conditioned or well-ventilated dry room; compressed air available nearby.

Maintain straight runs on glass fiber side-stuffer feeder chute to prevent mechanical fiber bridging.

Interfaces

Mecánico
Side-feeder flanged barrel mounting plate (Zone 5 or 6 of twin screw); clamp connections for dry-air conveying tubes.
Control
Profinet / Ethernet-IP interface between gravimetric feeder master controller and extruder PLC for master-slave line speed matching.
Aguas arriba y aguas abajo
Upstream: 25 kg bag dump or big-bag unloader. Downstream: twin-screw extruder main feed throat and side-entry melt barrel.

Targets

What the section is judged on

The numbers are targets agreed per project, not a general promise.

Resin Moisture at Extruder Throat (Karl Fischer)
≤ 0.02% (200 ppm) % ASTM D6869 Karl Fischer coulometric titration test
Drying Process Air Dew Point
≤ -40 °C Inline continuous digital ceramic dew point sensor with display
Retained Glass Fiber Number-Average Length (Ln)
≥ 320 µm Muffle furnace resin burn-off followed by optical image analysis on 500 fibers

Cómo se evalúa la aceptación

Acceptance testing is conducted across an 8-hour continuous extrusion compounding run on PA66 with 30% or 50% chopped glass fiber reinforcement. Resin moisture content sampled at the extruder main throat must register ≤ 0.02% (200 ppm) via Karl Fischer coulometric titration (ASTM D6869).

Gravimetric dosing accuracy: each loss-in-weight feeder (resin, flame retardants, glass fiber) must maintain feeding stability within ±0.5% of setpoint over 1-minute sampling intervals. Molded test bars produced from the compound must meet ISO 527 tensile strength and ISO 178 flexural modulus specifications, confirming preserved glass fiber retention length (number-average fiber length Ln ≥ 320 µm).

Scope of supply

What is in the delivery — and what is not

The confirmed scope is stated in the quotation; this is the boundary of the section as designed.

Incluido en el alcance del suministro

  • Central Honeycomb Rotor Desiccant Dryer Station Molecular sieve honeycomb desiccant wheel maintaining continuous -40°C to -50°C dew point, dual electric heaters, and insulated drying hopper.
  • Closed-Loop Dry-Air Pneumatic Conveying System Pneumatic conveying line utilizing dried return air (-40°C dew point) to prevent pellet re-absorption during transfer to the extruder.
  • Multi-Component Loss-in-Weight Feeder Array High-precision gravimetric feeders for polymer pellets and mineral powders, with digital load cells and recipe-controlled dosing.
  • Specialized Gravimetric Twin-Screw Side Feeder Skid Twin-screw side stuffer with nitrided wear-resistant flights and de-aeration vent, introducing glass fibers downstream into fully molten resin.
  • Integrated Master PLC Control Cabinet Centralized touchscreen control managing drying dew point monitoring, feeder gravimetric synchronization, and extruder communication.

No incluido en el alcance del suministro

  • Co-rotating twin-screw extruder and strand pelletizing line Twin-screw extruder machinery, water strand bath, and strand pelletizer are covered under the main extrusion machine contract.
  • Plant central air compressor and refrigeration air dryer Primary shop-floor compressed air compressor station is on the customer side.
  • Chilled water supply to desiccant cooler jacket Standard plant industrial cooling water loop to cool the closed-loop process air return circuit.
  • Injection molding testing machine and test specimen molds Laboratory injection molding press for tensile/flexural bar preparation is customer scope.

Before a price

What we confirm before this becomes a quotation

  1. 01 Polymer formulation and filler percentages Base resin grade (PA6, PA66, PBT, PC), percentage of chopped glass fiber (e.g., 15%, 30%, 50%), and mineral flame retardant loading.
  2. 02 Extruder line throughput and barrel layout Compounding line maximum capacity (kg/h), twin-screw extruder center-distance, and barrel zone position for side feeder entry.
  3. 03 Factory building layout and floor-to-crane clearance Floor plan showing raw material storage area, drying mezzanine location, and crane clearance above the extruder barrel.
  4. 04 Available compressed air quality specs Flow rate and dew point of plant instrument air (ISO 8573-1 Class 2:4:2 recommended for pneumatic components).

Request a Quote Send these points with your inquiry; the section can then be quoted against your line, not against an assumption.

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Photos

The section in the workshop

Photos go here once the section has been built and the material is cleared to publish.

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Details

Further details

Problema de producción principal
  • Intermittent or inaccurate feeding
  • Internal moisture in hygroscopic resin
  • Moisture re-absorption in conveying
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