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China OEM Agricultural Ah101339 Gathering Chain Drive Sprocket for John Deere Corn Head

Product Description

Product Description

  • Compatible with John Deere Header(s) 453A, 454A, 653A, 654A, 655A, 853A, 854A, 1253A
  • Replaces John Deere OEM nos AH101339
  • 11 Tooth
  • 19 Splines Bore
  • 1.720″ Hub Length
  • For RH Side gatherer chain
  • All new, rebuilt and used tractor parts have a 5-year warranty

Fits Models Of AH101339 Gathering Chain Drive Sprocket

AH101339 Gathering Chain Drive Sprocket can be adapted to John Deere: 1253A Corn Head,853A Corn Head,854A Corn Head,655A Head,453A Head,454A Head,653A Head,654A Head

 

Company Profile

 

Services we can provide

1. Produce strictly following standard dimension
2. Material: 1045 Steel / Alloy Steel / Stainless Steel 304 & 316 
3. Standard: ANSI, DIN, JINS, ISO, KANA, Standard America, or customer’s drawing
4. Pilot bore, finished bore, taper bore, and special bore. 
5. Bright surface / high precision / Blacking /Electrophoretic-Coated
6. Advanced heat treatment and surface treatment craft
7. Best quality and competitive price. 
8. Welcome OEM / ODM 
9. Processing Equipment: Hobbing machine, Slotting machine, CNC lathes, and other equipment.
10. Sprocket Models: Contains special sprocket according to customer’s drawings, standard sprocket (American standard and metric).
 

Customization process
1.Provide documentation:CAD, DWG, DXF, PDF,3D model ,STEP, IGS, PRT

2.Quote:We will give you the best price within 24 hours

3.Place an order:Confirm the cooperation details and CZPT the contract, and provide the labeling service

4.Processing and customization:Short delivery time

Related products:

Factory:
As a professional China sprocket manufacturer and professional supplier, we ensure the quality of every sprocket. All items are checked and tested thoroughly during every working procedure and after the product is finally manufactured to ensure that the best quality product goes out in the market.

 

Standard Or Nonstandard: Standard
Application: Motor, Motorcycle, Machinery, Agricultural Machinery, Car
Hardness: Hardened Tooth Surface
Manufacturing Method: Rolling Gear
Toothed Portion Shape: Spur Gear
Material: Stainless Steel
Samples:
US$ 9999/Piece
1 Piece(Min.Order)

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Request Sample

drive sprocket

How do I calculate the required torque and power for a drive sprocket setup?

Calculating the required torque and power for a drive sprocket setup involves several factors that need to be considered. The torque and power requirements depend on the application’s specific parameters, such as the desired speed, load, and efficiency of the system. Here’s a step-by-step guide on how to calculate the required torque and power:

  1. 1. Determine the Load: Identify the load that the drive sprocket needs to move or rotate. The load can be expressed in units of force, such as pounds or newtons.
  2. 2. Calculate the Torque: Torque is the rotational force applied to the drive sprocket to generate motion. The formula to calculate torque is:

Torque (in Nm) = Load (in N) x Radius of the Drive Sprocket (in meters)

where the radius is the distance from the center of the sprocket to the point where the force is applied. If the radius is not given directly, you can use the diameter and divide it by two to get the radius.

  1. 3. Account for Efficiency Losses: In real-world systems, some power is lost due to friction and other factors. To account for these losses, you can introduce an efficiency factor (η) into the equation. The formula becomes:

Torque (in Nm) = (Load (in N) x Radius of the Drive Sprocket (in meters)) / Efficiency (η)

  1. 4. Calculate the Rotational Speed: Determine the required rotational speed of the drive sprocket in revolutions per minute (RPM) or radians per second (rad/s).
  2. 5. Calculate the Power: Power is the rate at which work is done. It is the product of torque and rotational speed. The formula to calculate power is:

Power (in watts or horsepower) = Torque (in Nm) x Rotational Speed (in rad/s)

or

Power (in watts or horsepower) = (Torque (in Nm) x Rotational Speed (in RPM) x 2π) / 60

where 2π is a constant used to convert RPM to rad/s, and 60 is used to convert seconds to minutes.

By following these steps and plugging in the appropriate values, you can calculate the required torque and power for your drive sprocket setup. Keep in mind that real-world conditions may vary, so it’s essential to consider safety factors and any additional loads that may be present in the system.

drive sprocket

Can drive sprockets be used in agricultural machinery and equipment?

Yes, drive sprockets are commonly used in various agricultural machinery and equipment. They play a critical role in power transmission systems that are utilized in agricultural applications. Here are some of the agricultural machinery and equipment where drive sprockets are commonly employed:

  • Tractors: Tractors are a fundamental part of modern agriculture, and drive sprockets are used in the transmission system to transfer power from the engine to the wheels or tracks. Sprockets are crucial components in both wheeled and tracked tractors, ensuring efficient power delivery for various agricultural tasks.
  • Combine Harvesters: Drive sprockets are used in combine harvesters to transfer power from the engine to the wheels or tracks, allowing for precise control and smooth movement during harvesting operations.
  • Balers: Agricultural balers use drive sprockets in their power transmission systems to drive the mechanisms responsible for compacting and baling crops such as hay, straw, or silage.
  • Planters and Seeders: Drive sprockets are utilized in planting and seeding equipment to ensure precise and consistent seed placement and spacing in the field.
  • Sprayers: Agricultural sprayers use drive sprockets in their transmission systems to power the spraying mechanisms, ensuring even and efficient distribution of fertilizers, herbicides, and pesticides.
  • Harvesting Machines: Various harvesting machines, such as grain harvesters and fruit harvesters, rely on drive sprockets to power the harvesting mechanisms and conveyors.
  • Tillage Equipment: Drive sprockets are used in tillage equipment to transfer power to the cutting and tilling components, preparing the soil for planting.
  • Irrigation Systems: Drive sprockets are employed in agricultural irrigation systems, such as center pivot systems, to control the movement of the irrigation equipment across the field.

Drive sprockets in agricultural machinery are often subjected to challenging conditions, including dust, dirt, and varying terrains. Therefore, it is essential to use high-quality sprockets made from durable materials, such as steel or hardened alloys, to withstand the demanding agricultural environment.

Regular maintenance, including proper lubrication and inspection for wear and damage, is crucial to ensure the reliable operation and longevity of drive sprockets in agricultural machinery. By adhering to recommended maintenance schedules and replacing worn components promptly, farmers and agricultural operators can optimize the performance and productivity of their equipment.

drive sprocket

Eco-Friendly Materials Used in Manufacturing Drive Sprockets

Manufacturers have been exploring eco-friendly materials to produce drive sprockets, aiming to reduce the environmental impact of industrial processes. While traditional materials like steel are widely used, several eco-friendly alternatives have emerged. Some of these materials include:

  • Recycled Steel: Using recycled steel for sprocket manufacturing helps reduce the demand for new raw materials and minimizes the energy-intensive processes required to produce steel from scratch. Recycled steel maintains its strength and performance characteristics, making it a sustainable option.
  • Aluminum: Aluminum is considered more eco-friendly than steel because it requires less energy to extract and process. Additionally, aluminum sprockets are lightweight, reducing the overall weight of machinery and vehicles, leading to potential energy savings during operation.
  • Bio-based Plastics: Some manufacturers are exploring the use of bio-based plastics derived from renewable resources, such as corn or sugarcane. These materials can offer comparable strength and performance to traditional plastics, with the added benefit of being biodegradable or compostable, reducing their environmental impact at the end of their service life.
  • Biodegradable Composites: Certain biodegradable composites made from natural fibers and resins are being researched for use in sprockets. These composites are lightweight, strong, and environmentally friendly, making them a potential sustainable alternative.
  • Castor Oil-based Polyamide: Some manufacturers have developed sprockets using castor oil-based polyamide, which is sourced from a renewable plant-derived material. This type of polyamide offers similar mechanical properties to traditional petroleum-based polyamide while being more sustainable.

It’s important to note that while these materials offer eco-friendly advantages, their application in sprocket manufacturing may vary depending on specific performance requirements and the availability of materials. When choosing an eco-friendly sprocket material, it is essential to consider factors such as load capacity, operating conditions, and the overall lifecycle of the product.

China OEM Agricultural Ah101339 Gathering Chain Drive Sprocket for John Deere Corn Head  China OEM Agricultural Ah101339 Gathering Chain Drive Sprocket for John Deere Corn Head
editor by CX 2023-09-29

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