Application
Soft-Touch SEBS & TPE Overmolding Compound Underwater Pelletizing Line
High-oil extended SEBS /…
Solution
Closed-loop underwater pelletizing and precision chilled-water system for soft TPE, TPU, EVA, and hot-melt adhesives, eliminating die smearing and pellet agglomeration.
This solution establishes a specialized closed-loop underwater pelletizing and process water thermal management system engineered specifically for thermoplastic elastomers (TPE, TPU, TPV), polyolefin elastomers (POE), high-VA ethylene-vinyl acetate (EVA), and hot-melt pressure-sensitive adhesives. Integrating an enclosed underwater cutting chamber (Underwater Pelletizer), high-pressure bypass water piping, an inline centrifugal dewatering spin dryer (Underwater Pelletizing Dehydrator), and a dedicated closed-loop industrial refrigeration chiller (Industrial Chiller), it delivers instantaneous surface freezing and precision cutting for polymers that cannot be processed via traditional strand or water-ring cutting.
Soft elastomers with low Shore hardness (< 85A), low melting points, or high tackiness present notorious processing challenges. When cut via strand pelletizers, elastomeric strands stretch like elastic rubber bands, break unevenly, wrap around feed rollers, or stick together in the cooling bath. In water-ring die-face systems, hot tacky melt smears across the die plate and fuses onto cutting blades, triggering catastrophic line shutdowns. By immersing high-speed rotating cutter blades directly against a thermally isolated die plate within a high-velocity chilled-water stream, this solution instantly freezes molten droplets into perfectly uniform micro-spheres or mini-pellets, preventing agglomeration and strand snapping.
The problem
Eliminates strand stretching and die smearing for soft TPE, TPU, and hot-melt adhesives, producing spherical non-stick pellets.
Compounders attempting to produce soft TPE/TPU/EVA on traditional strand lines suffer continuous production halts. Strands neck down, stretch, and break inside the water bath, requiring manual re-threading by operators every 15 minutes, which exposes operators to hot melt splash hazards.
If switched to water-ring pelletizers, the tacky melt adheres to the hot die plate, wrapping blades into a fused molten blob (“hockey puck”) that instantly jams the drive motor. The resulting downtime, cutter regrinding, and barrel purgings create massive scrap losses and severely cap plant productivity.
Soft elastomers and hot-melt resins have extremely low elastic modulus and high surface tackiness in the semi-molten state. In open air or standard water troughs, the cooling rate is slow and non-uniform, allowing hot polymer cores to transfer heat to the surface, causing strands to stick together or stretch irreversibly.
Moreover, on a die face, if water flow is insufficient or water temperature fluctuates by even 2°C–3°C, the die holes either “freeze off” (polymer solidifies inside the die hole, blocking flow) or “smear” (molten polymer wraps around the blade). Maintaining a high-velocity, temperature-controlled water blanket directly over the cutting face is the only method to achieve instantaneous droplet skin freezing.
Flawless, non-stick, perfectly spherical elastomer micro-pellets with zero die-face smearing, low surface moisture (≤ 0.05%), and uninterrupted 24/7 extrusion run times.
Process
The equipment named here is maintained on the step it belongs to, so the list and the quotation cannot disagree.
Extrusion and Melt Processing
Delivers a stable, surge-free, and precisely pressurized molten elastomer stream to the underwater die plate.
Co-rotating twin-screw extruder plasticizes and devolatilizes the elastomeric blend, discharging through a melt gear pump to ensure pulseless melt feed to the underwater die.
Equipment Twin Screw Pelletizer
Pelletizing
Cuts molten polymer droplets in a high-velocity chilled water blanket, instantly freezing the pellet outer surface into a spherical geometry.
The cutter head rotates at 1,500–4,500 RPM with pneumatic blade pressure against the thermally insulated die plate. Chilled water flowing through the chamber carries frozen pellets away within milliseconds, preventing die wrap.
Equipment Underwater Pelletizer
Cooling
Continuously extracts process heat from the recirculating water loop, maintaining precise water temperature (±0.5°C) to prevent die freeze or pellet stickiness.
Dedicated industrial refrigeration chiller circulates 8°C–18°C water through a plate heat exchanger, ensuring stable cooling capacity regardless of summer factory temperatures.
Equipment Industrial Chiller
Post-Pellet Treatment
Separates pellets from the high-volume water slurry, expels surface moisture, and discharges dry, cooled elastomer pellets.
Pellet-water slurry flows into the centrifugal dehydrator. High-g centrifugal acceleration removes 99.9% of surface water through the screen basket, discharging dry pellets at < 38°C.
Equipment Underwater Pelletizing Dehydrator
Material
Molten thermoplastic elastomer or polymer melt pumped through a melt gear pump or twin-screw extruder at melt pressures up to 15–25 MPa and melt temperatures of 150°C to 240°C. Resins: TPU, TPE, TPV, POE, EVA (VA up to 40%), SIS, SBS, hot melt adhesives.
Highly uniform, spherical micro-pellets or standard granules (Ø1.2 mm to Ø3.0 mm) with smooth, defect-free outer skin. Residual surface moisture ≤ 0.05% (500 ppm), exit pellet temperature ≤ 38°C, zero doublets or stringers. Pellets flow freely without blocking or clumping in storage bags.
150–2000 kg/h
Based on continuous underwater cutting linked to a co-rotating twin-screw extruder compounding line, with pelletizing throughput capacity from 150 kg/h up to 2,000 kg/h, producing uniform spherical pellets Ø1.8 mm to Ø3.2 mm.
Fit
The boundaries are part of the solution: they keep a machine from being quoted into a case it cannot serve.
Indispensable for compounders producing soft thermoplastic elastomers (TPU, TPE, TPV, TPR) with hardness between Shore 30A and Shore 85A where strand cutting is impossible.
Essential for packaging and hygiene adhesive manufacturers pelletizing low-softening-point hot-melt adhesives (EVA / POE / SIS) into non-blocking spherical beads.
Not suitable for rigid, brittle thermoplastics with high crystallinity and high melting points (e.g., PPS, PEEK, unplasticized PVC) where low-cost strand pelletizing or air-cooled die-face cutting is far more economical.
Not suitable for un-melted solid plastic scrap or regrind flakes; must receive fully homogenized melt stream from an extruder.
Specifications assume thermoplastic elastomer or adhesive grades with Shore hardness between 30A and 95A, melt index between 0.5 and 50 g/10 min, and processing melt temperatures between 150°C and 230°C.
For ultra-tacky, low-viscosity hot-melt adhesives (EVA / metallocene POE with ring-and-ball softening points < 85°C), process water must be treated with food-grade anti-sticking liquid surfactant dosing, and a plate heat exchanger with glycol chiller circuit (operating water down to 5°C–8°C) must be configured.
Site and connections
Total connected electrical power: 30 kW to 90 kW (including cutter motor, water pump, spin dryer, and chiller compressor).
Closed-loop water skid eliminates shop-floor water spills and open gutter trenches.
Targets
The numbers are targets agreed per project, not a general promise.
Continuous commissioning trial run of 4 hours at maximum rated capacity on the customer’s soft elastomer formulation (e.g., Shore 50A–70A TPE or TPU). Pellets must show 0.00% doublets/triplets (agglomerates) and zero thermal smearing or wrap-around on the die face.
Process water temperature entering the cutting chamber must be maintained within ±1.0°C of the target setpoint (typically 12°C–18°C) under full extruder load. Discharged dried pellets must have residual surface moisture ≤ 0.05% with packaging temperature ≤ 38°C without pellet-to-pellet blocking inside containers.
Scope of supply
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Details
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