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Mill Stand
Mill Stand

Mill Stand

Mill Stand Specification

  • Type
  • Mechanical Rolling Mill Stand
  • Material
  • Mild Steel
  • Capacity
  • Up to 200 Tons Per Day
  • Computerized
  • No
  • Control System
  • Manual / PLC Based
 
 

About Mill Stand

Mill Stand

Material

Mild Steel, Cast Iron, Graded Cast Iron

Sizes

6" to 26" (155 mm to 660 mm PCD)

Type

Open cap & Close Cap

Housing

Two open housing connected together With standard Accessories

Chocks

Steel Chocks with each stand for Spherical Roller Bearing

Roll balance

Mechanical type by means of springs.

Barrel Length

As Suitable to the Mill Stands.

Roll neck bearings

Spherical Roller Bearing

Bearing

Spherical Roller Bearing

  • Roll gap adjustment manually with screw down mechanism.
  • Roll axial adjustment on chock lugs by side bolts.
  • Rest bars, dove tail type bolted to the mill housing having arrangement
  • For fine adjustments by lifting and lowering


Versatile Engineering for Metal Rolling

Specifically crafted for the rolling of steel, aluminum, and copper sheets, this mechanical rolling mill stand offers flexibility with customizable designs. Precision manufacturing allows adaptation to varying plant requirements, enhancing operational efficacy in both small and large facilities.


Advanced Surface Protection and Pressure Controls

A rust-resistant painted surface extends the equipments durability, while the adjustable hydraulic and mechanical pressure systems provide precise control over metal shaping. These features promote consistent surface finish quality and minimize maintenance needs.


High Capacity and Reliable Performance

Handle up to 200 tons per day with this floor-mounted rolling mill stand. Its robust mild steel construction and alloy steel rollers, supported by manual or PLC-based controls, guarantee dependable service in demanding industrial environments.

FAQs of Mill Stand:


Q: How does the adjustable hydraulic and mechanical pressure system optimize metal rolling?

A: The mill stands adjustable pressure system allows operators to control the force applied during rolling, ensuring consistent thickness and surface finish for both hot and cold rolled sheets. This adaptability enhances productivity and quality across different metal types.

Q: What are the main benefits of the rust-resistant painted surface finish on the mill stand?

A: A rust-resistant painted finish provides lasting protection against corrosion, especially in intensive manufacturing environments. This maximizes equipment lifespan, reduces maintenance frequency, and maintains aesthetic integrity over years of use.

Q: When is it ideal to use this mechanical rolling mill stand in manufacturing plants?

A: This mill stand is best utilized when rolling steel, aluminum, or copper sheets at scales up to 200 tons daily. It suits environments requiring adjustable working pressures, high temperature tolerance, and customizable design for specific plant layouts.

Q: Where can this rolling mill stand be installed for optimal performance?

A: The stand is floor-mounted and is suitable for integration into steel, aluminum, and copper rolling mills. Its customizable design ensures compatibility with various plant setups across manufacturing facilities in India.

Q: What is the process for customizing the design as per plant requirements?

A: Customization begins with a consultation to assess plant-specific needs, including sheet size, throughput, and automation preferences. The manufacturer then adapts parameters like roll diameter, drive type, and control system to deliver tailored solutions.

Q: How does the gear/belt driven mechanism influence operational efficiency?

A: Gear and belt-driven options provide flexibility in power transmission, allowing operators to select the system that best suits production speed, load handling, and maintenance preferences, optimizing efficiency for different metal rolling tasks.

Q: What advantage does manual or PLC-based control systems offer to users?

A: Manual controls offer straightforward operation for basic tasks, while PLC-based systems enable advanced automation, improving precision and process monitoring. Users can choose the control mode that aligns with operational complexity and automation goals.

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