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Mast Guide Bearings MG 312 DDM‑2
Mast Guide Bearings MG 312 DDM‑2

Mast Guide Bearings MG 312 DDM‑2

The MG 312 DDM‑2 is a mast guide bearing with a 60mm inner diameter and 150mm outer diameter, designed for sturdy performance. Its compact width of 36mm makes it suitable for tight spaces, while the 7mm radius ensures smooth operation.

With a dynamic load capacity of 81,750 N and static load capacity of 51,850 N, it handles heavy loads with ease. The bearing’s robust construction ensures reliability in demanding conditions.

Weighing 3.1751 kg, it offers a good balance of strength and manageability. Ideal for use in mast guidance systems or other industrial applications where precision and durability are key.

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Product Parameters

  • Part Number MG 312 DDM‑2
  • Brand TFL & OEM
  • Inner Diameter (d) 60.000 mm
  • Outer Diameter (D) 150.00 mm
  • Inner Ring Width (b) 31 mm
  • Outer Ring Width (B) 36.000 mm
  • Radius (R) 7 mm
  • Dynamic Capacity (Cr.) 81,750 N
  • Static Capacity (Cor.) 51,850 N
  • Weight 3.1751 Kg

Features

How Is MG 312 DDM‑2 Bearing Engineered for Reliability?

MG 312 DDM‑2 Bearing features a robust design with dimensions of 60.000 mm x 150.00 mm x 36.000 mm, ensuring stability in various applications.
Its dynamic capacity of 81,750 N and static capacity of 51,850 N make it suitable for heavy-duty operations.
The bearing’s precise inner and outer ring widths (31 mm and 36.000 mm) contribute to its reliable performance.
With a weight of 3.1751 kg, it balances durability and ease of handling.

Application

Industrial Uses of MG 312 DDM‑2 Bearing
MG 312 DDM‑2 Bearing is commonly used in heavy machinery, such as cranes and lifts, where its robust design handles significant radial loads. The large outer diameter provides stability, making it suitable for demanding industrial environments.

In construction equipment, MG 312 DDM‑2 Bearing ensures smooth operation in mast guide systems, thanks to its high dynamic capacity. Its durable construction withstands constant movement and heavy loads without compromising performance.

For material handling systems, MG 312 DDM‑2 Bearing’s precise dimensions and weight distribution enhance efficiency. The bearing’s static capacity makes it reliable for applications requiring long-term stability and minimal maintenance.

What Makes MG 312 DDM‑2 Bearing a Preferred Choice?
MG 312 DDM‑2 Bearing is often chosen for its balance of strength and precision in applications like conveyor systems. Its inner ring width and radius design contribute to reduced friction and wear.

In agricultural machinery, MG 312 DDM‑2 Bearing supports rotating components, ensuring consistent performance under varying loads. The bearing’s weight and dimensions make it easy to integrate into existing equipment designs.

For wind turbine systems, MG 312 DDM‑2 Bearing’s high dynamic and static capacities are essential for reliable operation. Its construction materials and tolerances ensure durability in harsh weather conditions.

Built for Heavy-Duty Use: MG 312 DDM‑2 Bearing
MG 312 DDM‑2 Bearing excels in mining equipment, where its load-bearing capabilities are critical. The bearing’s design minimizes downtime and maintenance needs in rugged environments.

In marine applications, MG 312 DDM‑2 Bearing’s corrosion-resistant materials and high capacity make it ideal for ship cranes. Its performance remains consistent even in saltwater conditions.

For railway systems, MG 312 DDM‑2 Bearing provides reliable support for guide mechanisms. The bearing’s dimensions and weight ensure compatibility with standard rail components.

Light-Duty vs Heavy-Duty: Best Uses for MG 312 DDM‑2 Bearing
MG 312 DDM‑2 Bearing is versatile enough for both light and heavy-duty applications, such as packaging machinery. Its precision and load capacity adapt to varying operational demands.

In food processing equipment, MG 312 DDM‑2 Bearing’s design ensures hygiene and efficiency. The bearing’s materials meet industry standards for safety and durability.

For power generation systems, MG 312 DDM‑2 Bearing’s reliability is key to maintaining continuous operation. Its static and dynamic capacities make it a dependable choice for critical infrastructure.

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