China Best Sales Welded Metric Roller Drive Conveyor Chain CZPT Plastic Stainless Steel Duplex Cast Iron Plate Flat Top Finished Bore Idler Bushed Taper Lock Qd Sprocket

Product Description

Welded Metric Roller Drive Conveyor Chain CZPT Plastic Stainless Steel Duplex Cast Iron Plate Flat Top Finished Bore Idler Bushed Taper Lock Qd Sprocket

Standard sprockets:

European standard sprockets

DIN stock bore sprockets & plateheels

03B-1 04B-1 05B-1-2 06B-1-2-3 081B-1 083B-1/084B-1 085B-1 086B-1 08B-1-2-3 10B-1-2-3 12B-1-2-3 16B-1-2-3 20B-1-2-3 24B-1-2-3
28B-1-2-3 32B-1-2-3

03A-1 04A-1 05A-1-2 06A-1-2-3 081A-1 083A-1/084A-1 085A-1 086A-1 08A-1-2-3 10A-1-2-3 12A-1-2-3 16A-1-2-3 20A-1-2-3 24A-1-2-3
28A-1-2-3 32A-1-2-3

DIN finished bore sprockets

06B-1 08B-1 10B-1 12B-1 16B-1 20B-1

stainless steel sprockets

06B-1 08B-1 10B-1 12B-1 16B-1

taper bore sprockets

3/8″×7/32″ 1/2″×5/16″ 5/8″×3/8″ 3/4″×7/16″ 1″×17.02mm 1 1/4″×3/4″

cast iron sprockets

06B-1-2-3 081B-1 083B-1/084B-1 085B-1 086B-1 08B-1-2-3 10B-1-2-3 12B-1-2-3 16B-1-2-3 20B-1-2-3 24B-1-2-3

platewheels for conveyor chain

20×16mm 30×17.02mm P50 P75 P100

table top wheels

P38.1

idler sprockets with ball bearing

8×1/8″ 3/8″×7/32″ 1/2″×1/8″ 1/2″×3/16″ 1/2″×5/16″ 5/8″×3/8″ 5/8″×3/8″ 5/8″×3/8″ 3/4″×7/16″ 3/4″×7/16″ 1″×17.02mm 1 1/4″×3/4″

double simplex sprockets

06B-1 08B-1 10B-1 12B-1 16B-1

American standard sprockets

ASA stock bore sprockets

-2 35-3 -2 40-3 50 50-2-50-3 60 60-2 60-3 80-80-2 80-3 100 100-2 100-3 120 120-2 120-3 140 140-2 160 160-2 180 200
200-2 240

finished bore sprockets

stainless steel sprockets

60

double single sprockets&single type Csprockets

taper bore sprockets

35 35-2 -2 50 50-2 60 60-2 80 80-2

double pitch sprockets

2040/2042 2050/2052 2060/2062 2080/2082

sprockets with split taper bushings

40-2 40-3 50 50-2 50-3 60 60-2 60-3 80 80-2 80-3 100 100-2 120 120-2

sprockets with QD bushings

35 35-1 35-2 -2 40-3 50 50-2 50-3 60 60-2 60-3 80 80-2 80-3 100 100-2 100-3

Japan standard sprockets

JIS stock sprockets

140 160

finished bore sprockets

FB25B FB35B FB40B FB50B FB60B FB80B FB100B FB120B

double single sprockets

40SD 50SD 60SD 80SD 100SD

double pitch sprockets

speed-ratio sprockets

C3B9N C3B10N C4B10N C4B11 C4B12 C5B10N C5B11 C5B12N C6B10N C6B11 C6B12

idler sprockets

35BB20H 40BB17H 40BB18H 50BB15H 50BB17H 60BB13H 60BB15H 80BB12H

table top sprockets

P38.1

 

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:

 

Our Factory

If you need to customize transmission products,
please click here to contact us!

Chain Sprockets:

 

Company Information:

 

 

 

 

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Standard Or Nonstandard: Standard
Application: Motor, Electric Cars, Motorcycle, Machinery, Marine, Agricultural Machinery, Car
Hardness: Hardened Tooth Surface
Manufacturing Method: Cut Gear
Toothed Portion Shape: Spur Gear
Material: Custom Made
Samples:
US$ 9999/Piece
1 Piece(Min.Order)

|
Request Sample

metric sprocket

Can Metric Sprockets be Used in Precision Motion Control and Automation Systems?

Yes, metric sprockets can be used in precision motion control and automation systems, provided they are selected and designed appropriately for the specific requirements of such applications. Precision motion control systems demand high accuracy, repeatability, and smooth operation, and the proper selection of sprockets is essential to achieve these goals.

Here are some key considerations for using metric sprockets in precision motion control and automation systems:

  • Pitch and Tooth Profile: Select metric sprockets with precise pitch and tooth profile to ensure a perfect fit with the roller chain or belt. The accurate engagement between the sprocket and the chain or belt is critical for maintaining motion accuracy.
  • Material Selection: Choose sprockets made from high-quality materials, such as hardened steel or stainless steel, to ensure dimensional stability and resistance to wear. The use of high-quality materials reduces the risk of sprocket deformation or wear that could lead to inaccuracies in motion control.
  • Tolerance and Precision: Ensure that the manufacturing process of the metric sprockets adheres to tight tolerances and precision standards. This guarantees consistent dimensions and minimal runout, contributing to smoother motion and accurate positioning.
  • Dynamic Balancing: For high-speed applications, consider using dynamically balanced metric sprockets to reduce vibrations and prevent any adverse effects on the system’s precision.
  • Lubrication: Proper lubrication is crucial for the smooth operation of sprockets and chains. Use high-quality lubricants appropriate for precision motion control systems to minimize friction and wear.
  • Backlash: Evaluate and minimize the backlash in the sprocket and chain system to reduce any play or lost motion that could affect the accuracy of the automation system.
  • Load Capacity: Ensure that the selected metric sprockets have sufficient load-carrying capacity to handle the application’s dynamic loads without compromising accuracy.

By addressing these considerations, metric sprockets can provide precise motion control and accurate positioning in automation systems. Properly matched sprockets and chains or belts will contribute to the overall performance and reliability of the automation system.

However, when implementing precision motion control and automation systems, it is essential to consider the entire system design, including other components such as motors, drives, controllers, and feedback devices. Integrating high-quality components and ensuring proper system calibration are essential for achieving the desired precision and performance.

Consulting with engineering experts or sprocket manufacturers familiar with precision motion control can provide valuable insights and recommendations for selecting and integrating metric sprockets into your automation system.

metric sprocket

Cost Considerations of Using Metric Sprockets Compared to Standard Sprockets

When choosing between metric sprockets and standard sprockets, several cost considerations come into play. The cost difference between the two types of sprockets can be influenced by the following factors:

  • Manufacturing Complexity: Metric sprockets may require different manufacturing processes and tooling compared to standard sprockets. Depending on the complexity of the design and the required materials, this could affect production costs.
  • Material Selection: The material used to manufacture the sprockets can significantly impact the cost. While some materials, such as standard carbon steel, are commonly used for both metric and standard sprockets, certain metric sprockets may be designed with specialty materials that can be more expensive.
  • Customization: Metric sprockets that need to be customized or modified to fit specific machinery or equipment may incur additional costs compared to standard sprockets that are readily available in standard sizes.
  • Availability and Demand: In some regions, standard sprockets may have higher demand and greater availability due to their widespread use. As a result, standard sprockets could be more competitively priced compared to metric sprockets, which may have lower demand in certain markets.
  • Performance Requirements: If the application demands specific performance characteristics or unique features that are only available in metric sprockets, the added benefits may justify the higher cost compared to standard sprockets.
  • Volume of Purchase: In large-scale industrial applications, bulk purchasing of standard sprockets could lead to volume discounts, potentially making them more cost-effective than customized metric sprockets, especially for smaller quantities.
  • Long-Term Cost Savings: While metric sprockets may have higher upfront costs, they could offer improved durability, longer service life, and reduced maintenance requirements, leading to long-term cost savings over the life of the machinery or equipment.

Ultimately, the choice between metric and standard sprockets should be based on the specific requirements of the application, including factors such as load capacity, operating environment, performance expectations, and budget constraints. It’s essential to work closely with sprocket manufacturers or suppliers to evaluate the available options and determine the most cost-effective solution for the intended use.

Comparing the upfront costs with the potential long-term benefits and considering the overall system performance will help ensure that the selected sprockets align with the application’s needs and provide the best value for the investment.

metric sprocket

What is a Metric Sprocket, and How is it Different from Standard Sprockets?

A metric sprocket is a type of sprocket that follows the metric measurement system, commonly used in many countries around the world. It differs from standard sprockets, which are based on the imperial measurement system (inches and fractions). The main differences between metric sprockets and standard sprockets are as follows:

  • Measurement Units: Metric sprockets use metric units, such as millimeters (mm) for pitch diameter, number of teeth, and other dimensions. Standard sprockets, on the other hand, use inches and fractional inches for the same measurements.
  • Pitch: The pitch of a sprocket refers to the distance between the centers of two consecutive chain roller pins. Metric sprockets have a pitch measured in millimeters, while standard sprockets have a pitch measured in inches.
  • Teeth Configuration: The number of teeth on a metric sprocket is specified using metric units, such as 16 teeth or 25 teeth. Standard sprockets use inch-based measurements, like 24 teeth or 40 teeth.
  • Availability: The availability of metric sprockets may vary depending on the region and industry standards. In some countries that primarily use the metric system, metric sprockets are more common and readily available than standard sprockets.
  • Interchangeability: Due to the difference in pitch and tooth configuration, metric sprockets are generally not interchangeable with standard sprockets. Each type of sprocket requires a matching chain with the corresponding pitch and tooth count.
  • International Standards: Metric sprockets are often designed and manufactured according to international standards such as ISO (International Organization for Standardization), while standard sprockets may conform to ANSI (American National Standards Institute) or other regional standards.

When selecting a sprocket for a specific application, it is crucial to choose the correct type (metric or standard) that matches the chain’s pitch and the overall system requirements. Using the wrong type of sprocket or chain can lead to compatibility issues, increased wear, and reduced efficiency of the power transmission system.

Whether to use metric sprockets or standard sprockets depends on the industry, geographical location, and the prevailing measurement system in the region. Consulting with sprocket manufacturers or conveyor system experts can help ensure the right sprocket choice for your specific application.

China Best Sales Welded Metric Roller Drive Conveyor Chain CZPT Plastic Stainless Steel Duplex Cast Iron Plate Flat Top Finished Bore Idler Bushed Taper Lock Qd Sprocket  China Best Sales Welded Metric Roller Drive Conveyor Chain CZPT Plastic Stainless Steel Duplex Cast Iron Plate Flat Top Finished Bore Idler Bushed Taper Lock Qd Sprocket
editor by Dream 2024-05-03

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Metric Sprockets

As one of the metric sprocket manufacturers, suppliers, and exporters of mechanical products, We offer metric sprockets and many other products.

Please get in touch with us for details.

Manufacturer supplier exporter of metric sprockets.

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