Sprocket and Chain
Description
When used properly, high quality roller chains are powerful and reliable drive systems. They can serve to bridge large centre distances. Various transmission ratios can be realized, independently of the centre distance. In Europe mainly roller chains according to DIN ISO 606 (formerly DIN 8187) are used.
Dimensioning and Efficiency
The calculation can be made with this tool : MÄDLER - Tools (eassistant.eu) or refer to page 41 or refer to the e-catalogue to determine a chain drive. With proper lubrication the degree of efficiency is approx. 98 %.
Note regarding the Breaking Load
The DIN ISO 606 (formerly DIN 8187) specifies the minimum breaking load for each chain size. When this breaking load is exceeded, the chain is destroyed. Roller chains should be loaded with no more than one sixth of the stated breaking load, to avoid an early plastic deformation (permanent elongation).
Mounting and Maintenance
The shafts must be set in parallel. The sprockets must be aligned. The slack span should amount to approx 1% to max 2% of the centre distance. For this purpose we recommend mounting a chain tensioner. Large centre distances require a support (guide rail) to be used.
Chain drives must always be well lubricated. Lubricants and lubrication methods depend on the specific application.
Determining the Chain Length
The chain length can be stated in meter or mm, or by stating the number of links. In the latter case, inner and outer links are counted. The chains are usually delivered open. The last link on both ends is an inner link. This leads to an uneven number of links. If a straight connecting ling is used, the closed chain strand has an even number of links. An uneven number of links in a closed strand can only be realized by using a cranked link.
Note: this link reduces the load bearing capacity of the chain by 20%.
Some products in this category
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12613600
Maedler Double-strand sprocket ZRS with hub 10 B-2 5/8x3/8" 36 teeth material steel |
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12613800
Maedler Double-strand sprocket ZRS with hub 10 B-2 5/8x3/8" 38 teeth material steel |
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12614500
Maedler Double-strand sprocket ZRS with hub 10 B-2 5/8x3/8" 45 teeth material cast iron |
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12615700
Maedler Double-strand sprocket ZRS with hub 10 B-2 5/8x3/8" 57 teeth material cast iron |
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12617600
Maedler Double-strand sprocket ZRS with hub 10 B-2 5/8x3/8" 76 teeth material cast iron |
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12618300
Maedler Double-strand sprocket ZRS with hub 10 B-2 5/8x3/8" 95 teeth material cast iron |
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12618800
Maedler Double-strand sprocket ZRS with hub 10 B-2 5/8x3/8" 114 teeth material cast iron |
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12621100
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 11 teeth material steel |
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12621200
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 12 teeth material steel |
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12621300
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 13 teeth material steel |
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12621400
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 14 teeth material steel |
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12621500
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 15 teeth material steel |
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12621600
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 16 teeth material steel |
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12621700
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 17 teeth material steel |
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12621800
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 18 teeth material steel |
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12621900
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 19 teeth material steel |
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12622000
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 20 teeth material steel |
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12622100
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 21 teeth material steel |
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12622200
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 22 teeth material steel |
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12622400
Maedler Double-strand plate wheel ZRL without hub 10 B-2 5/8x3/8" 24 teeth material steel |
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