CMI  |  SKU: LM-435435

CMI - 2 3/8" Aluminum Sheave Pulley with Stainless Steel Sideplates

Regular price $12570
Shipping calculated at checkout.
or 4 payments of $. with Sezzle


Ethereum Bitcoin Pay with Crypto — Choose Bankful at checkout.
Buy now, pay later with Sezzle
Split your entire online purchase into 4 interest-free payments,
over 6 weeks with no impact to your credit. — Learn More

Description

The CMI RP104 Pulley is a high-strength, compact winch designed for demanding applications. It features stainless steel sideplates and a 2 3/8" aluminum sheave equipped with a needle bearing and stainless steel axle, ensuring durability and smooth operation. With a maximum breaking strength (MBS) of 8,500 lbs, this pulley is built to handle heavy loads efficiently.

Weighing approximately 0.65 lbs, the RP104 Pulley offers a rope capacity of 5/8" and measures 4.25 x 3.25 inches. Its efficiency rating of 0.956 highlights its effectiveness in reducing friction and maximizing performance. This makes it an ideal choice for professionals who require reliable and efficient equipment for their tasks.

Key Features

  • Sideplates: Stainless steel for enhanced strength and durability
  • Sheave: 2 3/8" aluminum with needle bearing
  • Axle: Stainless steel construction
  • Weight: Approximately 0.65 lbs
  • Maximum Breaking Strength (MBS): 8,500 lbs
  • Rope Capacity: 5/8"
  • Size: 4.25 x 3.25 inches
  • Efficiency: 0.956

Specifications

  • Material: Stainless steel sideplates, aluminum sheave
  • Efficiency: 0.956
  • Dimensions: 4.25 x 3.25 inches
  • Weight: 0.65 lbs
  • Rope Capacity: 5/8"
  • MBS: 8,500 lbs

Payment & Security

Payment methods

  • American Express
  • Apple Pay
  • Diners Club
  • Discover
  • Google Pay
  • JCB
  • Mastercard
  • Visa

Your payment information is processed securely. We do not store credit card details nor have access to your credit card information.

Frequently Asked Questions

What are the main components of the CMI RP104 Pulley and their materials?

The CMI RP104 Pulley is constructed with stainless steel sideplates and an aluminum sheave. The stainless steel sideplates provide enhanced strength and durability, crucial for demanding applications. The aluminum sheave, equipped with a needle bearing, ensures smooth operation and efficiency. This combination of materials allows the pulley to handle heavy loads while maintaining a lightweight profile, weighing approximately 0.65 lbs.

How does the efficiency rating of the CMI RP104 Pulley affect its performance?

The efficiency rating of 0.956 indicates the CMI RP104 Pulley's ability to minimize friction and maximize performance. This high efficiency means that more of the force applied is used for lifting or moving loads rather than being lost to friction. In practical terms, this makes the pulley highly effective for tasks requiring precision and reliability, such as rescue operations or complex rigging systems.

What is the maximum rope diameter that the CMI RP104 Pulley can accommodate?

The CMI RP104 Pulley can accommodate ropes up to 5/8 inches in diameter. This rope capacity makes it suitable for a variety of applications, from industrial rigging to recreational climbing. It's important to ensure that the rope used matches this specification to maintain safety and performance standards.

In what scenarios would the CMI RP104 Pulley be most effectively used?

The CMI RP104 Pulley is ideal for scenarios requiring high load capacity and efficiency, such as rescue operations, construction, and industrial rigging. Its maximum breaking strength of 8,500 lbs allows it to handle heavy loads safely. Additionally, the compact design makes it easy to transport and deploy in various environments, whether in urban settings or remote outdoor locations.

How does the weight of the CMI RP104 Pulley impact its usability?

Weighing approximately 0.65 lbs, the CMI RP104 Pulley is lightweight yet robust. This makes it easy to carry and handle during operations without compromising on strength or durability. The lightweight nature is particularly beneficial in scenarios where gear weight is a critical factor, such as in climbing or rescue missions.

What is the significance of the needle bearing in the CMI RP104 Pulley?

The needle bearing in the CMI RP104 Pulley plays a crucial role in ensuring smooth operation. It reduces friction between the sheave and axle, allowing for more efficient load movement. This is particularly important in applications where precision and reliability are needed, such as in rescue or rigging tasks.

What are the dimensions of the CMI RP104 Pulley, and why are they important?

The CMI RP104 Pulley measures 4.25 x 3.25 inches. These compact dimensions make it easy to integrate into various rigging systems without taking up excessive space. The size is particularly advantageous in environments where space is limited, such as in confined industrial settings or during complex rescue operations.

How does the CMI RP104 Pulley ensure durability in demanding applications?

The CMI RP104 Pulley ensures durability through its stainless steel sideplates and robust construction. The use of high-quality materials like stainless steel and aluminum helps the pulley withstand harsh conditions and heavy loads. This durability is essential for demanding applications such as industrial rigging and rescue operations, where equipment failure is not an option.

Can the CMI RP104 Pulley be used in outdoor environments?

Yes, the CMI RP104 Pulley is suitable for outdoor environments due to its durable construction. The stainless steel and aluminum materials are resistant to corrosion, making the pulley ideal for use in various weather conditions. However, regular maintenance and inspection are recommended to ensure optimal performance and longevity in outdoor settings.

What are the limitations of using the CMI RP104 Pulley?

While the CMI RP104 Pulley is robust and efficient, it is limited by its rope capacity and maximum breaking strength. It can only accommodate ropes up to 5/8 inches and has a maximum breaking strength of 8,500 lbs. Users must ensure that these specifications align with their operational needs to prevent overloading and potential equipment failure.