China Standard Sugar Mill Equipment Conveyor Chain on T360-200pall-S mill chain

Product Description

 

Product Description

1, Our Chain types: Agricultural roller chain, mining processing chain, motorcycle roller chain, sugar industry chain, cement industry chain, weld steel drag chains etc;
2, Main materials: It is 40Mn. 40Cr, 45Mn alloy steel, SUS304, and POM Plastic for plates, 10#, 20#, 20CrMnMo, 30CrMnTi for pins and rollers;
3, Heat treatment: Carburizing, Austemper Stressing, nitro-caburizing harden etc;
4, Surface: Shot peening, black, blue or original;

Detailed Photos

For example of sugar industry chain T160-100Pall-S

Product Parameters

Packaging & Shipping

plastic bag+carton+ OSB Case

Shipping way: these products will be shipped to your local port by sea, these also could be sent to your specific address by air.

Our Advantages

Our chains could be customized according to your actual order quantity, actual drawing and actual requirement. We have own chain process workshop, heat treatment workshop, process equipments and experienced designers.
(01)Assembled workshop

(02)Punching plate workshop

(03)Plate fabrication workshop

(04)Heat treatment workshop

(05)Shot peening workshop

(06) our warehouse

After Sales Service

Our products can be repaired or replaced the new parts with free cost in six months. 

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Material: Iron
Structure: Roller Chain
Surface Treatment: Electroplating
Chain Size: 200mm
Feature: Heat Resistant
Pitch: 200mm
Customization:
Available

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Customized Request

mill chain

How do mill chains handle misalignment between sprockets in conveyor systems?

Mill chains are designed to handle moderate misalignment between sprockets in conveyor systems. Here’s how they manage misalignment effectively:

Flexible Construction:

Mill chains are built with a flexible construction that allows them to accommodate slight misalignment between sprockets. The chain links and pins have some degree of movement, which helps in absorbing minor misalignment without causing excessive wear or stress on the chain components.

Side Bow Effect:

Mill chains exhibit a phenomenon known as the “side bow” effect, which allows them to adapt to misalignment. The side bow effect refers to the lateral movement of the chain as it wraps around the sprocket. This lateral movement helps the chain adjust to the sprocket’s position, even if it is slightly misaligned.

Sprocket Tooth Design:

The shape of the sprocket teeth can also influence how well the chain handles misalignment. Sprockets with properly designed teeth, such as a standard roller chain sprocket, can aid in reducing the impact of misalignment on the chain’s performance.

Regular Maintenance:

To ensure that mill chains continue to handle misalignment effectively, regular maintenance is essential. Periodic inspections and lubrication can help identify and rectify any misalignment issues, preventing excessive wear and potential chain failure.

Limitations:

While mill chains can tolerate some misalignment, excessive misalignment should be avoided. Prolonged and severe misalignment can lead to accelerated wear and reduce the chain’s overall lifespan. In cases where misalignment is significant, it is crucial to address the root cause of the misalignment and make the necessary adjustments to prevent further chain damage.

Overall, mill chains’ ability to handle misalignment in conveyor systems makes them suitable for applications where minor sprocket misalignment can occur due to system variations or environmental factors.

mill chain

Can mill chains be used in marine and offshore material handling applications?

Yes, mill chains can be used in marine and offshore material handling applications, especially when they are made of corrosion-resistant materials such as stainless steel or other alloys. Marine and offshore environments are characterized by high levels of moisture, saltwater exposure, and harsh conditions, which can lead to rapid corrosion and degradation of regular chains. However, corrosion-resistant mill chains are designed to withstand these challenging conditions and offer several benefits:

  • Corrosion Resistance: The use of stainless steel or other corrosion-resistant materials protects the mill chains from rust and corrosion caused by exposure to saltwater and other harsh elements.
  • Extended Service Life: Corrosion-resistant mill chains have a longer service life compared to standard chains in marine and offshore environments, reducing the need for frequent replacements and maintenance.
  • Reliable Performance: These chains maintain their strength and integrity over time, ensuring reliable and consistent material handling operations in marine and offshore settings.
  • High Load Capacity: Corrosion-resistant mill chains retain their load-carrying capacity even in harsh conditions, making them suitable for heavy-duty material handling applications.
  • Reduced Downtime: The durability and resistance to corrosion minimize downtime due to chain failures, enhancing the overall efficiency of material handling processes.
  • Environmental Compliance: Using corrosion-resistant mill chains aligns with environmental regulations and sustainability goals in marine and offshore industries.
  • Various Configurations: Corrosion-resistant mill chains are available in various configurations, such as standard roller chains, welded steel chains, and engineered chains, allowing for customization based on specific application requirements.

When selecting mill chains for marine and offshore applications, it’s crucial to choose the appropriate corrosion-resistant material, chain type, and size that can withstand the specific operating conditions and loads. Regular inspection, maintenance, and proper lubrication also play a significant role in maximizing the performance and longevity of mill chains in marine and offshore material handling setups.

mill chain

How do mill chains handle shock loads and dynamic forces in material transfer?

Mill chains are designed to handle shock loads and dynamic forces commonly encountered in material transfer applications. They exhibit specific features and properties that enable them to withstand these challenges effectively:

1. High Strength:

Mill chains are typically made from high-strength materials, such as alloy steels, which provide exceptional tensile strength and toughness. This enables them to resist the impact of shock loads without permanent deformation or failure.

2. Fatigue Resistance:

Manufacturers engineer mill chains with excellent fatigue resistance to endure repetitive dynamic forces. They can withstand cyclic loading and unloading, commonly experienced in material handling systems, without developing cracks or failures over time.

3. Robust Construction:

Mill chains feature a robust and precision-engineered construction. They consist of solid pins, bushings, and rollers that distribute loads evenly along the chain’s length. This design helps in minimizing stress concentrations and preventing premature wear or failure.

4. Proper Lubrication:

Appropriate lubrication is crucial to reduce friction, wear, and noise during chain operation. Proper lubrication helps in dissipating heat generated by shock loads and dynamic forces, preventing excessive wear and elongation of the chain.

5. Regular Maintenance:

Regular inspection and maintenance are essential to ensure the proper functioning of mill chains. Any signs of wear, elongation, or damage should be addressed promptly to avoid sudden failure and downtime.

By carefully considering the application requirements, selecting the right mill chain design, and adhering to maintenance best practices, mill chains can reliably handle shock loads and dynamic forces, providing efficient and continuous material transfer in industrial settings.

China Standard Sugar Mill Equipment Conveyor Chain on T360-200pall-S   mill chainChina Standard Sugar Mill Equipment Conveyor Chain on T360-200pall-S   mill chain
editor by CX 2024-04-24

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