Ningbo Kaxite Sealing Materials Co., Ltd.
Ningbo Kaxite Sealing Materials Co., Ltd.
Products

Aramid Fiber Packing

What is Aramid Fiber Packing?

Aramid fiber packing is a high-performance sealing material made from synthetic aramid fibers, known for their exceptional strength, thermal stability, and chemical resistance. It is widely used in industrial applications to prevent leaks in pumps, valves, and other equipment under demanding conditions. This packing material is engineered to withstand extreme temperatures, high pressures, and aggressive media, making it a reliable choice for industries such as oil and gas, chemical processing, power generation, and marine engineering. Its unique properties stem from the molecular structure of aramid fibers, which provide a combination of toughness and flexibility not found in traditional packing materials like asbestos or graphite.

Key Features and Benefits

  • High Temperature Resistance: Capable of operating continuously at temperatures up to 300°C (572°F), with short-term peaks up to 400°C (752°F), making it suitable for hot applications.
  • Excellent Chemical Resistance: Resists degradation from a wide range of chemicals, including acids, alkalis, solvents, and hydrocarbons, ensuring longevity in corrosive environments.
  • Superior Mechanical Strength: Offers high tensile strength and abrasion resistance, reducing wear and extending service life in dynamic sealing applications.
  • Low Creep and Relaxation: Maintains sealing force over time, minimizing the need for frequent adjustments and maintenance.
  • Non-Asbestos and Environmentally Friendly: Free from hazardous materials like asbestos, complying with modern safety and environmental regulations.
  • Easy Installation and Removal: Flexible and pliable, allowing for straightforward installation and replacement without damaging equipment.

Product Parameters and Specifications

Below is a detailed table outlining the standard parameters for aramid fiber packing products. These specifications may vary based on custom formulations or specific application requirements.

Parameter Value Unit Description
Temperature Range -50 to +300 °C Continuous operating range; short-term peaks up to 400°C possible.
Density 1.0 - 1.2 g/cm³ Varies with fiber content and impregnation materials.
Tensile Strength ≥ 300 MPa Minimum tensile strength for standard grades.
pH Range 2 - 12 - Suitable for use in acidic and alkaline environments within this range.
Thermal Conductivity 0.1 - 0.15 W/m·K Low thermal conductivity helps in insulating applications.
Compression Set ≤ 15 % Measured under standard conditions, indicating recovery ability.
Available Sizes 3 - 50 mm Square or rectangular cross-sections; custom sizes available.
Color Yellow/Gold - Standard color due to aramid fibers; may vary with coatings.

Applications of Aramid Fiber Packing

Aramid fiber packing is versatile and used across various industries for sealing solutions. Common applications include:

  • Pump Seals: Used in centrifugal and reciprocating pumps to seal shafts and prevent fluid leakage.
  • Valve Stems: Provides reliable sealing in gate, globe, and control valves under high-pressure conditions.
  • Mixers and Agitators: Ideal for sealing rotating shafts in chemical mixers where chemical resistance is critical.
  • Steam Services: Effective in steam valves and turbines due to high temperature resistance.
  • Marine Equipment: Used in propeller shafts and other marine applications exposed to saltwater and harsh conditions.
  • Oil and Gas Industry: Applicable in drilling equipment, pipelines, and refineries for sealing against hydrocarbons and high pressures.

FAQ – Frequently Asked Questions

What is the maximum temperature aramid fiber packing can handle?
Aramid fiber packing can continuously operate at temperatures up to 300°C (572°F), with short-term exposure to peaks of 400°C (752°F) without significant degradation. This makes it suitable for high-temperature applications like steam systems and industrial heaters.

Is aramid fiber packing resistant to chemicals?
Yes, it offers excellent resistance to a wide range of chemicals, including acids, alkalis, solvents, and oils. However, performance may vary with specific chemicals, so it's advisable to consult compatibility charts for aggressive media like strong oxidizing agents.

How does aramid fiber packing compare to graphite packing?
Aramid fiber packing generally has higher mechanical strength and abrasion resistance than graphite packing, making it better for dynamic applications. Graphite packing excels in higher temperature ranges (up to 500°C) and offers superior thermal conductivity, but it can be more brittle and less resistant to certain chemicals.

Can aramid fiber packing be used in food processing applications?
Standard aramid fiber packing is not typically certified for food contact due to potential fiber release and impregnants. For food-grade applications, specialized FDA-compliant versions with appropriate coatings or materials should be used.

What is the typical lifespan of aramid fiber packing?
The lifespan varies based on operating conditions such as temperature, pressure, media, and shaft speed. Under optimal conditions, it can last several years, but in harsh environments, regular inspection and replacement every 6-12 months may be necessary.

How should aramid fiber packing be installed?
Installation involves cleaning the shaft or stem, cutting the packing to size with a sharp tool at a 45-degree angle, staggering joints during wrapping, and tightening the gland gradually after operation to allow for run-in. Always follow manufacturer guidelines to avoid over-tightening, which can cause excessive wear.

Does aramid fiber packing require lubrication?
Some grades come pre-lubricated with PTFE or other lubricants for reduced friction and break-in time. In dry or high-speed applications, additional lubricants may be recommended to enhance performance and lifespan.

Is aramid fiber packing environmentally safe?
Yes, it is asbestos-free and made from synthetic materials that comply with environmental regulations. However, proper disposal methods should be followed, especially if used with hazardous chemicals, to prevent contamination.

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