ATLANTA Drive Systems, Inc. Double Strand Chain 15 46 000

Description
The chain drive is to be designed in such a way that A) link plates and pins are able to withstand the tensile loads to be transmitted, B) the rollers withstand the strain when entering the sprocket wheel, C) the wear in the links consisting of bushings and pins is within the admissible limits throughout the service life expected, D) the wear of the tooth fanks is within the admissible limits throughout the life expected. Chain drives reach a satisfactory service life only if the chain sprocket wheels are in proper alignment, suffcient lubrication is ensured, a possibility for retensioning the chains to compensate for elongation occurring during operation is provided for, and if vibrations of the tight and slack length or torsional vibrations of the entire drive are eliminated. Sag in the slack length should amount to approx. 1% of the centre distance.
Datasheet
Description
The chain drive is to be designed in such a way that A) link plates and pins are able to withstand the tensile loads to be transmitted, B) the rollers withstand the strain when entering the sprocket wheel, C) the wear in the links consisting of bushings and pins is within the admissible limits throughout the service life expected, D) the wear of the tooth fanks is within the admissible limits throughout the life expected. Chain drives reach a satisfactory service life only if the chain sprocket wheels are in proper alignment, suffcient lubrication is ensured, a possibility for retensioning the chains to compensate for elongation occurring during operation is provided for, and if vibrations of the tight and slack length or torsional vibrations of the entire drive are eliminated. Sag in the slack length should amount to approx. 1% of the centre distance.
Datasheet

Suppliers

Company
Product
Description
Supplier Links
Double Strand Chain - 15 46 000 - ATLANTA Drive Systems, Inc.
Farmingdale, NJ, USA
Double Strand Chain
15 46 000
Double Strand Chain 15 46 000
The chain drive is to be designed in such a way that A) link plates and pins are able to withstand the tensile loads to be transmitted, B) the rollers withstand the strain when entering the sprocket wheel, C) the wear in the links consisting of bushings and pins is within the admissible limits throughout the service life expected, D) the wear of the tooth fanks is within the admissible limits throughout the life expected. Chain drives reach a satisfactory service life only if the chain sprocket wheels are in proper alignment, suffcient lubrication is ensured, a possibility for retensioning the chains to compensate for elongation occurring during operation is provided for, and if vibrations of the tight and slack length or torsional vibrations of the entire drive are eliminated. Sag in the slack length should amount to approx. 1% of the centre distance.

The chain drive is to be designed in such a way that A) link plates and pins are able to withstand the tensile loads to be transmitted, B) the rollers withstand the strain when entering the sprocket wheel, C) the wear in the links consisting of bushings and pins is within the admissible limits throughout the service life expected, D) the wear of the tooth fanks is within the admissible limits throughout the life expected. Chain drives reach a satisfactory service life only if the chain sprocket wheels are in proper alignment, suffcient lubrication is ensured, a possibility for retensioning the chains to compensate for elongation occurring during operation is provided for, and if vibrations of the tight and slack length or torsional vibrations of the entire drive are eliminated. Sag in the slack length should amount to approx. 1% of the centre distance.

Supplier's Site Datasheet

Technical Specifications

  ATLANTA Drive Systems, Inc.
Product Category Roller Chain
Product Number 15 46 000
Product Name Double Strand Chain
Chain Class / Application Engineering Steel Chain
ISO BS/DIN Pitch ISO 20 (31.75mm)
Chain Pitch 1.25 inch (31.75 mm)
Maximum Allowable Load 170000 lbs (77098 kg)
Rollers Rollers
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