Valve Gland Packing, Carbonized Fiber, 10 * 10 mm, 5 Meters

Valve Gland Packing, Carbonized Fiber, 10 * 10 mm, 5 Meters

Key Specifications / Features

This gland packing is manufactured by a China valve gland packing plant. It is made from carbonized fiber. The packing size is 10 mm by 10 mm. Each roll contains 5 meters. It withstands pressure up to 450 kg/cm². It suits high temperature applications. This packing seals valve stems effectively. The carbonized fiber handles heat and abrasion. It is used in industrial valves and pumps.
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Detail Information

Product Name: Valve Gland Packing
Type: Gland Packing
Material: Carbonized Fiber
Size: 10 mm * 10 mm
Length: 5 Meters (each Roll)
Pressure Rating: Up to 450 kg/cm²
Temperature Resistance: Up to 850°C

Carbonized Fiber Valve Gland Packing

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FAQs

Modern valve packing systems use advanced engineered materials designed for durability, chemical resistance, and low friction performance. The most widely used material is flexible graphite, which offers excellent thermal stability (often up to 450–600°C in oxidizing environments and higher in non-oxidizing conditions).

To enhance strength and extrusion resistance, graphite packing is often reinforced with materials such as:

Inconel wire mesh reinforcement for high-pressure applications

Carbon fiber or aramid fiber layers for mechanical stability

PTFE-based components for chemical resistance in corrosive media

In some specialized applications, hybrid packing structures are used, combining multiple layers to balance sealing performance, friction control, and wear resistance.

Our valves are designed and manufactured in accordance with international standards such as API, ISO, DIN, EN, BS, JIS, and GOST. We can also customize products based on client specifications.

Valve stem packing is a critical sealing component installed around the valve stem inside the bonnet area. Its primary function is to prevent internal media (gas or liquid) from leaking to the external environment while still allowing smooth linear or rotary movement of the stem.

In industrial applications such as oil & gas, petrochemical, and power generation, packing acts as a dynamic seal that must withstand continuous friction, pressure fluctuations, and thermal cycling. Unlike static seals, packing is constantly in contact with a moving component, making material selection and compression design extremely important.

High-performance packing systems are often designed to meet low-emission requirements such as API 622 and ISO 15848-1, ensuring fugitive emissions remain within strict environmental limits.

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