Composite Spinneret Plates High Precision Conjugate Spinneret Spinning Nozzles

Merknaam: Meet Precision
Plaats van herkomst: Hunan, China
Certificering: ISO9001
MOQ: Geen moq
Standaard verpakking: HOUTEN KIST
Productdetails
Markeren:

Composite Spinneret Plates

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Spinneret Plates High Precision

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Conjugate Spinneret Spinning Nozzles

Product Name: Vezelspindop/spindop/spindopplaat/filamentenspindop
Application: vezelproductielijn
Industry: Textielmachines / Composietmateriaalapparatuur
Base Material: Roestvrij staal / gelegeerd staal / nikkellegering
Surface Treatment: Polijsten / harde coating / keramische coating
Optional Material: Wolfraamcarbide/keramisch inzetstuk
Corrosion Resistance: Uitstekend
Wear Resistance: Hoog
Working Temperature: aangepast
Chemical Resistance: Zuur-/oplosmiddelbestendig
Productbeschrijving
Gedetailleerde specificaties en kenmerken
Product Overview

Composite spinneret plates represent the pinnacle of precision spinning technology, engineered specifically for the production of bicomponent and multi-component fibers. Unlike conventional monocomponent spinnerets, these advanced assemblies integrate two or more different polymer streams within a single spinning orifice, enabling the creation of high-performance fibers with specialized cross-sectional architectures .

By combining distinct polymers with different chemical, physical, or thermal properties within each filament, our composite spinneret plates enable the production of advanced functional fibers—including ultra-fine microfibers, self-crimping stretch fibers, heat-sealable binders, conductive fibers, and dissolvable sea-island structures—that are impossible to achieve with single-component spinning .

Each composite spinneret assembly comprises multiple precision-machined distribution plates, flow-guiding components, and a spinneret plate with specifically configured orifices. These components work in concert to deliver separate polymer streams to the exact point of confluence, maintaining precise control over layer distribution, interface geometry, and volumetric ratios at the individual filament level.

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