Self-lubricating Bushing

Self-lubricating Bushing

Say goodbye to the hassle of frequent lubrication maintenance. Our self-lubricating technology ensures smooth operation and reduces wear and tear, extending the lifespan of your equipment. Experience uninterrupted productivity and cost savings as you bid farewell to the need for messy lubricants and time-consuming upkeep.

Self-lubricating Bushing

The Evolution of Self-lubricating Bushing Bearing Technology: Metal-Polymer Anti-Friction PTFE Plain Bush Bearings

As the world of manufacturing progresses and the demand for more efficient and durable machinery rises, bearing technology has responded with cutting-edge solutions. One such innovation in the arena of bearings is the Metal-Polymer Anti-Friction PTFE Plain Bush Bearings.

These bearings are designed to provide high-performance under different working conditions. They combine the mechanical strength of metal and the outstanding friction-reducing properties of polymers. Let’s delve into the specifics of this modern marvel in bearing technology.

Embrace the Future of Friction Reduction: Metal-Polymer Anti-Friction Plain Bearings

In a world where machinery is integral to our lives, bearing solutions play a pivotal role in ensuring smooth operations. Whether it’s the motor vehicle you drive, the printing machine that produces your daily newspaper, or the sophisticated fitness machines at your local gym, bearings are an essential part of these systems. But not all bearings are created equal. It’s time to consider an alternative that’s not only more efficient but also kinder to our planet – the Metal-Polymer Anti-Friction Plain Bearings.

Metal-Polymer Plain Bearings are designed for use in a variety of mechanical movements, including linear, oscillating, and rotational actions. They excel in environments characterized by frequent starts and stops, where achieving minimal dry friction is essential, and where traditional lubrication methods are impractical. These bearings boast several key advantages, including high wear resistance, a low coefficient of friction, excellent corrosion and chemical resistance, making them ideal for situations where lubrication is difficult or impossible to apply. Additionally, the requirements for machining the parts that interact with these bearings are less stringent, allowing for their widespread application across various industries.

Technical Specifications & Composition: These bearings find extensive application in the automotive industry, including in steering systems, shock absorbers, door hinges, seat recliners, seat frames, and magnetic valves. They are also prevalent in general industrial applications, such as gear pumps, vane pumps, piston pumps, air cylinders, and hydraulic cylinders. Beyond these, they are used in material handling equipment, packaging machinery, textile machinery, forestry equipment, and household appliances, including air conditioners, fitness equipment, washing machines, and refrigerators.

  • Layer 1 features a PTFE/Fibre mix with a thickness of 0.01 to 0.03mm, offering an outstanding initial transfer film that effectively coats the contact surfaces to initiate the self-lubricating property.
  • Layer 2 is made of sintered bronze powder, measuring 0.20 to 0.35mm in thickness, providing a robust mechanical bond and superior thermal conductivity.
  • Layer 3 consists of low-carbon steel, which lends mechanical strength and enhances thermal conductivity, underpinning the bearing’s overall performance.

Composition of Metal-Polymer Anti-Friction Plain Bearings

These self-lubricating bearings are designed with a metal-polymer composite material, comprising three integral layers:

  1. Steel Back: This is the structural backbone of the bearing, ensuring robustness and mechanical strength.
  2. Porous Bronze Sinter: Positioned atop the steel back, this layer acts as an interface between the steel and the top layer, retaining lubricant and releasing it as necessary to reduce friction during operation.
  3. Polytetrafluoroethylene (PTFE) Surface Layer: This top layer of PTFE, known for its excellent anti-friction properties, further reduces friction and wear, eliminating the need for additional lubrication.

The result is an SF-1 bearing that offers low friction, anti-wear, and anti-corrosion properties, all without the need for any lubrication. It’s a cost-effective, low vibration, low noise solution that’s used in a wide range of machinery.

Applications of Metal-Polymer Anti-Friction Plain Bearings

With such a unique design, Metal-Polymer Anti-Friction Plain Bearings find their applications in various types of machinery:

  • Printing Machines: Where precision and low noise are key.
  • Textile Machines: For low friction and smooth operations.
  • Tobacco Machines: Where robustness and low maintenance are required.
  • Gym Equipment: To ensure silent and smooth user experience.
  • Hydraulic Vehicles: To withstand heavy loads and rough conditions.
  • Automobiles & Motorcycles: For reliable, smooth, and quiet operation.
  • Agricultural & Forestry Machinery: For durability and low maintenance in harsh environments.

They are available in a range of standard dimensions and forms, such as cylindrical bushes, flanged bushes, thrust washers, flanged washers, and sliding plates, making them adaptable to a myriad of applications.

The Environmentally Friendly Choice

The absence of lead in these bearings makes them an environmentally-friendly choice. Additionally, the self-lubricating property eliminates the need for continuous lubrication, reducing both maintenance requirements and environmental pollution caused by waste grease.

By switching from traditional metal bearings to these innovative Metal-Polymer Anti-Friction Plain Bearings, you can not only extend the life of your machinery but also contribute positively to the environment. It’s time to invest in bearing solutions that offer superior performance and promote sustainability.

What are Metal-Polymer Anti-Friction PTFE Plain Bush Bearings?

Metal-Polymer Anti-Friction PTFE Plain Bush Bearings are a type of self-lubricating bearings. They are composed of a metal backing, a middle layer of porous bronze, and an outer layer of polytetrafluoroethylene (PTFE).

  1. Metal Backing: The backbone of the bearing, offering structural support and durability.
  2. Porous Bronze Middle Layer: This layer acts as an intermediary, absorbing the lubricant and releasing it during movement to ensure smooth operation.
  3. PTFE Outer Layer: Known for its remarkable low-friction properties, the PTFE layer enhances the anti-friction characteristics of the bearing, enabling smooth movement even without the need for additional lubrication.

The Advantages of Metal-Polymer Anti-Friction PTFE Plain Bush Bearings

The use of Metal-Polymer Anti-Friction PTFE Plain Bush Bearings offers numerous advantages:

Self-Lubricating: The PTFE outer layer provides an excellent low-friction surface, eliminating the need for continuous manual lubrication. This reduces maintenance time and costs.

Versatile: These bearings are available in various forms, including cylindrical bushes, flanged bushes, thrust washers, and sliding plates. This makes them adaptable to a wide range of applications.

Environmentally Friendly: The absence of lead in the manufacturing process makes these bearings an eco-friendly choice. Additionally, the lack of continuous lubrication reduces the potential for environmental pollution.

Durability and Longevity: With their robust metal structure and the wear-resistant PTFE surface layer, these bearings offer long-lasting performance, even under challenging conditions.

Applications

Metal-Polymer Anti-Friction PTFE Plain Bush Bearings find their use in numerous industries and applications where low-friction and durable bearings are required. These include automotive, agricultural machinery, construction equipment, food and beverage equipment, and more.

In summary, the combination of metal and polymer in the Metal-Polymer Anti-Friction PTFE Plain Bush Bearings provides a solution that offers superior performance, longevity, and environmental friendliness. They are truly a testament to the evolution of bearing technology, meeting the demands of modern machinery while also considering environmental impacts.

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