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Leading Hollow Fiber Membrane Spinning Machine and Spinneret Manufacturer - Trustech

Trustech Hemodialysis Hollow Fiber Membrane Spinneret 32 Holes
Trustech Hemodialysis Hollow Fiber Membrane Spinneret 128 Holes
Trustech Hemodialysis Hollow Fiber Membrane Spinneret 32 Holes
Trustech Hemodialysis Hollow Fiber Membrane Spinneret 128 Holes

Hollow Fiber Spinneret by Trustech

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Product details of the hollow fiber spinneret


Product Information

Trustech hollow fiber spinneret is well-controlled in every detail of the production. The features and functionality of the product are second to none. Trustech has constructed a relatively complete hollow fiber spinneret process line to ensure the quality.

Main structure and mechanism 

Hollow Fiber Spinneret by Trustech 3  Split design: decouples the spin core from the flow channel plate; no locating pins; quick removal and installation like screwing in a bolt.

Hollow Fiber Spinneret by Trustech 4  Monolithic high precision spin core: one-pass machining of critical geometries of spinneret; machining accuracy up to 0.002 mm and concentricity of 0.003 mm; bore needle resists runout and is less prone to damage.

Hollow Fiber Spinneret by Trustech 5  Iso-pressure distribution and flow straightening: multi-stage damping chambers with equal resistance distribution reduce pulsation and inter hole flow deviation, ensuring a consistent annular gap shear field.

Hollow Fiber Spinneret by Trustech 6  Optimized orifice: micro-cone + cylindrical hybrid outlet with chamfers and mirror polishing to minimize shear discontinuities and filament hang up, supporting a wide process phase inversion window.

Hollow Fiber Spinneret by Trustech 7  Multi-hole modularity: supports expansion to 8/12/16/20/32 holes;

symmetric layout and optimized thermal paths reduce the impact of thermal

drift and assembly stress on uniformity.

00Trustech hollow fiber spinneret 16hole spinning  (2)
00Trustech hollow fiber spinneret 16hole spinning (2)
Trustech hollow fiber spinneret
Trustech hollow fiber spinneret

Trustech Spinneret Key Design Elements Trustech

These parameters are fundamental to spinneret design and directly determine the membrane’s final performance:

Parameter Description Influence on membrane performance
Flow channel (R) The runner for transporting, buffering, and distributing the dope and bore fluids.  Different structures should be optimized according to material properties, viscosity, spinneret orifice size, and hole quantities to achieve optimal spinning performance.
Annular gap width (d) The gap (thickness) of the dope flow channel.  It primarily determines the hollow fiber wall thickness. Narrower gaps yield thinner walls and lower mass-transfer resistance, but may reduce mechanical strength.
Bore tube outer diameter (d₁) The outer diameter of the central tube forming the inner wall of the annular gap. Together with the outer sleeve inner diameter, it defines the annular gap width.
Outer sleeve inner diameter (d₂) The inner diameter of the spinneret outer sleeve forming the outer wall of the annular gap. Together with the bore tube outer diameter, it defines the annular gap width and the fiber outer diameter.
Central tube inner diameter (d₃) The diameter of the bore fluid channel.  It primarily determines the fiber inner diameter. The inner diameter affects membrane module packing density and the pressure drop of fluid inside the fiber.
Length-to-gap ratio (L/d) The ratio of the flow channel length (L) to the annular gap width (d). It affects spinning stability. Designing an appropriate L/d according to material properties and process conditions helps stabilize flow and eliminate entry effects, resulting in more uniform extruded fibers membrane.
Concentricity The coaxial alignment among the dope layer inner diameter at the spinneret outlet and the bore tube inner and outer diameters. It affects wall-thickness uniformity and bubble point pressure.
Extrusion face geometry The foremost geometry of the spinneret, such as flat or micro-tapered. It influences draw-down and deformation after extrusion, especially important for the air-gap segment in dry-wet spinning.
201-1 (2)

The Advantages of Trustech Dual Layer Spinneret Trustech

The spinneret design covers a wide dope viscosity range, offers strong versatility, high spinning stability, and effectively reduces issues such as filament breaks.

Hollow Fiber Spinneret by Trustech 11  Modular Design with Separate Spinneret Core and Flow Channel Plate:

No positioning pins needed, making assembly and disassembly as simple as using a screw.

Hollow Fiber Spinneret by Trustech 12  Integrated Spinneret Core:High precision and good concentricity.

Hollow Fiber Spinneret by Trustech 13  Robust Needle Design:The Bore liquid needle is not easily damaged.

Hollow Fiber Spinneret by Trustech 14  Easy Cleaning and Maintenance:User-friendly cleaning and maintenance ,friendly for non-professional operators

Hollow Fiber Spinneret by Trustech 15  High Reliability:Stable and consistent performance.

Hollow Fiber Spinneret by Trustech 16  Extended Service Life:

Longer operational lifespan.

Product Parameters

Brand Trustech Application NIPS
Material SUS304,SUS630,SUS316L Holes/Pack 1-32
Dope inlet Thread G1/8, BSP1/8,NPT1/8 Minimum membrane OD 0.20mm
Bore liquid inlet thread G1/8, BSP1/8,NPT1/8 Customize thread Yes
Precision ±0.002mm Concentricity 0.003mm
Design FCT design Connections Standard
Viscosity application 1000-300000cp Roughness Ra 0.4-0.8
Solvent DMAC, DMF, NMP Temperature 70℃

Common Specifications

No.

General Specification

Application

Design Type

Type

1

0.35/0.19/0.13

NIPS

FCT design

Single-aperture/ Multi-aperture

2

0.40/0.19/0.13

NIPS

FCT design

Single-aperture/ Multi-aperture

3

0.5/0.28/0.15

NIPS

FCT design

Single-aperture/ Multi-aperture

4

0.6/0.4/0.2

NIPS

FCT design

Single-aperture/ Multi-aperture

5

0.8/0.4/0.2

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

6

1.3/0.7/0.4

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

7

1.4/0.8/0.6

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

8

1.5/0.9/0.6

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

9

1.6/1.0/0.6

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

10

1.8/1.1/0.5

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

11

1.9/1.2/0.6

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

12

2.0/1.0/0.7

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

13

3.1/1.8/1.5

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

14

3.1/1.8/1.5

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

15

3.2/2.2/1.8

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

16

3.3/1.1/0.9

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

17

3.4/2.4/2.0

NIPS

Conventional design/ FCT design

Single-aperture/ Multi-aperture

Suitable Materials

PVDF (Polyvinylidene Fluoride), CA (cellulose acetate), PVC (Polyvinyl chloride), PES (Polyethersulfone), PSF/PSU (Polysulfone), PA (Nylon, Polyamide), PAN (polyacrylonitrile)

FCT Design  FCT

We can offer FCT designs that allow the spinneret core to be removed, replacing conventional designs where each spinneret hole cannot be independently replaced or disassembled. If one hole has a quality issue, the entire spinneret traditionally needs repair or scrapping. Our FCT spinnerets are independently designed so each hole can be individually replaced if needed. The FCT 6th-generation spinneret enables independent on/off control of the dope feed for each spinneret core, and the 8th-generation FCT spinneret cores can be changed online within a few minute down to 50 seconds when problems occur,to ensure continuous production without downtime.

Conventional design
Conventional design
FCT design
FCT design

Customer Membrane Examples

Read More Cases
Hollow Fiber Spinneret by Trustech 19
COOPERATIONACHIEVEMENTS
Things we have accomplished
Trustech hollow fiber mambrane spinneret (2)
Trustech hollow fiber mambrane spinneret (2)

FAQ

1
What is the Non-solvent Induced Phase Separation method?
Non-solvent induced phase separation (NIPS) is a process in which a polymer is dissolved in a solvent to form a homogeneous solution. An extracting agent that is more miscible with the solvent is then added to extract the solvent, forming a two-phase structure where the polymer is the continuous phase and the solvent is the dispersed phase. The solvent is subsequently removed to obtain a new polymer with a specific pore structure.


Company Advantage

• Over the years, Trustech receives trust and favor from the domestic and foreign customers with quality products and thoughtful services.
• Trustech enjoys developed telecommunication and traffic convenience. The geographic location is superior and the natural conditions are good.
• Since the beginning in Trustech has been focusing on the research and production of Spinning Machine,Hollow Fiber Spinneret,Gear Metering Pump for years.
• Trustech has a dedicated management team with strict style and high efficiency. Our team pays great attention to practical work and greatly supports our company to develop healthily in the long term.
We have high production efficiency, and we look forward to the cooperation with you.

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we welcome custom designs and ideas and is able to cater to the specific requirements. for more information, please visit the website or contact us directly with questions or inquiries.
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