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pink 95 alumina textile ceramic oil nozzle for spinning machines-0

Textile Ceramic

Home >  Products >  Industrial Ceramics >  Textile Ceramic

Pink 95% Alumina Textile Ceramic Oil Nozzle for spinning machines

Textile Aluminum Oxide Ceramic Oiling nozzle with good wear resistance. Request a free demo today.

Introduction

Production Core Advantages

  • Precise & Uniform Oil Application

Engineered with high-precision holes and surfaces, our textile ceramic oil nozzles ensure a consistent, controlled film of spin finish or lubricant is applied to the yarn. This eliminates streaking or uneven application, which is critical for downstream processing efficiency and final fabric quality.

  • Exceptional Wear Resistance for Consistent Performance

Made from advanced ceramics like 95% Alumina or 99% alumina or zirconia ,these textile ceramic oil nozzles are highly resistant to abrasive wear from high-speed yarn passage. This preserves the critical nozzle geometry and surface finish over a long lifespan, guaranteeing consistent oil pickup and application without performance degradation.

  • Superior Corrosion & Chemical Resistance

Ceramics are inherently inert and resistant to the various oils, additives, and chemical agents used in spin finishes. They will not rust or corrode, ensuring long-term stability and preventing contamination of the lubricant that could lead to yarn defects or nozzle clogging.

  • Ultra-Smooth, Low-Friction Surface

The perfectly polished ceramic surface minimizes drag and friction as the yarn passes through. This protects delicate filaments from damage and broken ends while also facilitating a smooth, uniform coating of the oil onto the yarn.

  • Reduced Maintenance & Downtime

The combination of extreme durability and chemical resistance makes these nozzles virtually maintenance-free. They resist clogging, wear, and corrosion, leading to fewer line stoppages for cleaning or replacement,  significantly boosting overall equipment effectiveness (OEE).

  • High Precision

Precise flow control and uniform spraying guarantee consistent quality of yarns or fabrics, reducing production defects.

  • Thermal Stability

Maintains structural integrity and performance under wide temperature ranges, making it suitable for high-temperature environments in textile processing without deformation or cracking.

  • Anti-Clogging Design

Optimized internal geometry and non-stick ceramic surface minimize oil residue accumulation, ensuring consistent oil flow and reducing maintenance frequency.

  • Energy Efficiency & Lubrication Optimization

Precise oil spray control reduces lubricant consumption, lowers operational costs, and supports eco-friendly manufacturing by minimizing oil waste.

  • Electrostatic Dissipation (Optional Feature)

Some advanced ceramic nozzles are engineered to reduce static buildup in dry textile environments, helping prevent fiber adhesion and machine malfunctions.

  • Compatibility with High-Speed Textile Equipment

Specifically designed to meet the demands of modern high-speed spinning, weaving, and knitting machines, ensuring reliable and consistent performance under dynamic conditions.

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Applications Fields

  • Precision Lubrication in Textile Machinery

The ceramic oil nozzle is widely used for precise and controlled lubrication of moving parts in textile machines such as looms, spinning frames, knitting machines, and warping equipment. It ensures a consistent and fine mist or drop of oil is applied exactly where needed.

  • Fiber and Yarn Processing

Used to lubricate guides, eyelets, and tensioning devices that handle delicate fibers (e.g., cotton, wool, silk, synthetic fibers), helping to reduce friction, prevent fiber breakage, and maintain smooth yarn flow during high-speed processing.

  • Prevention of Static Buildup

By applying a fine layer of lubricant, the nozzle helps minimize static electricity generation in dry processing environments, which is crucial for avoiding fiber clinging, misalignment, or machine stoppages.

  • Maintenance of Machine Efficiency

Installed in critical lubrication points, the ceramic nozzle reduces wear and heat generation in machine components, thereby extending equipment life and reducing downtime due to mechanical failure.

  • High-Speed Textile Production

Specifically designed to perform reliably under high-speed operation, the ceramic oil nozzle maintains stable lubrication performance even at elevated machine speeds, supporting continuous and efficient production.

  • Clean and Controlled Oil Application

Prevents oil overflow or dripping due to its precise flow control, ensuring a clean working environment and avoiding oil stains on fabrics or yarns.

  • Use in Sensitive Textile Processes

Ideal for applications requiring minimal and clean lubrication, such as in the production of high-quality garments, technical textiles, and medical textiles, where contamination must be avoided.

  • Integration into Automatic Lubrication Systems

Compatible with centralized or automated lubrication systems in modern textile factories, allowing for timed, metered, and maintenance-free oil delivery.

  • Protection of Delicate Components

The smooth ceramic surface and non-corrosive properties protect sensitive machine parts such as ceramic guides, metal rollers, and polymer components from wear and chemical damage.

  • Improvement of Fabric Quality

By ensuring smooth and consistent machine operation, the nozzle contributes to uniform fabric structure, fewer defects, and higher overall product quality.

In summary, the textile ceramic oil nozzle plays a vital role in maintaining the efficiency, reliability, and quality of textile manufacturing processes. Its ability to deliver precise, clean, and durable lubrication makes it an essential component in modern textile production environments.

 

Technical Specifications

Main content

99% alumina

95% alumina

Zirconia

Physical properties

Density

g/cm3

3.9

3.6

6

Moisture absorption

%

0

0

0

Sintering temperature

1700

1680

1600

Mechanical

properties

Hardness

HV

1700

1500

1300

Flexural Strength

Kgf/cm2

3500

3000

11000

Compressive strength

Kgf/cm2

30000

25000

25000

Fracture toughness

Mpa.m3/2

4

3-4

3-4

Thermal

properties

Maximum

use temperature

1500

1450

1450

Thermal expansion coefficient(0-1000)

/

8.0x10.6

8.0x10.6

9.5x10.6

Thermal shock resistance

T()

200

220

360

Thermal Conductivity

W/m.k

(25-300)

15.9

14

14

Electrical properties

Volume resistivity

Ohn/cm2

-

-

-

20

1012

1012

1012

100

1012-1013

1012-1013

1012-1013

300

1012

1010

5x109

Dielectric breakdown strength

KV/mm

18

18

18

Dielectric constant (100MHZ)

(E)

10

9.5

9.5

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