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http://tsubaki.eu/assets/cushioning.JPG
Selection Chart for Roller Chain ANSI No.
|
Nominal Driver Speed (rpm) |
HP per chain |
25 |
75 |
150 |
300 |
600 |
900 |
1200 |
1800 |
2400 |
1/2 |
60 |
40 |
35 |
35 |
- |
- |
- |
- |
- |
3/4 |
80 |
40 |
35 |
35 |
- |
- |
- |
- |
- |
1 |
80 |
40 |
40 |
35 |
35 |
- |
- |
- |
- |
1-1/2 |
100 |
50 |
40 |
40 |
35 |
35 |
- |
- |
- |
2 |
100 |
60 |
50 |
40 |
40 |
35 |
- |
- |
- |
3 |
100 |
60 |
50 |
40 |
40 |
35 |
35 |
- |
- |
5 |
120 |
80 |
60 |
50 |
50 |
40 |
35 |
35 |
35 |
7-1/2 |
140 |
80 |
80 |
60 |
50 |
40 |
35 |
40 |
40 |
10 |
140 |
100 |
80 |
60 |
50 |
50 |
40 |
40 |
50 |
15 |
160 |
100 |
100 |
80 |
60 |
50 |
50 |
50 |
- |
20 |
180 |
120 |
100 |
80 |
60 |
60 |
50 |
60 |
- |
25 |
200 |
140 |
100 |
80 |
80 |
60 |
60 |
80 |
- |
30 |
200 |
140 |
100 |
100 |
80 |
60 |
60 |
- |
- |
40 |
240 |
160 |
120 |
100 |
80 |
80 |
80 |
- |
- |
50 |
240 |
180 |
140 |
100 |
100 |
80 |
100 |
- |
- |
60 |
- |
180 |
160 |
120 |
100 |
100 |
- |
- |
- |
75 |
- |
200 |
160 |
120 |
100 |
100 |
- |
- |
- |
100 |
- |
200 |
180 |
140 |
100 |
120 |
- |
- |
- |
125 |
- |
240 |
200 |
160 |
140 |
- |
- |
- |
- |
150 |
- |
- |
200 |
160 |
160 |
- |
- |
- |
- |
200 |
- |
- |
240 |
180 |
160 |
- |
- |
- |
- |
250 |
- |
- |
240 |
200 |
- |
- |
- |
- |
- |
Standard Roller Chain
Number of teeth = 15
https://www.senqcia.com/products/chain/use/roller/images/fig-rc_select-09.gif
Chain number(No.) |
Pitch circle diameter(㎜) |
Outer diameter(㎜) |
25 |
30.54 |
34 |
35 |
45.81 |
51 |
40 |
61.08 |
67 |
50 |
76.35 |
84 |
60 |
91.62 |
101 |
80 |
122.17 |
135 |
100 |
152.71 |
168 |
120 |
183.25 |
202 |
140 |
213.79 |
236 |
160 |
244.33 |
269 |
180 |
274.87 |
303 |
200 |
305.42 |
337 |
240 |
366.50 |
404 |
Super Roller Chain
Number of Teeth = 15
https://www.senqcia.com/products/chain/use/roller/rc_select.html
Chain number(No.) |
Pitch circle diameter(㎜) |
Outer diameter(㎜) |
80 |
122.17 |
135 |
100 |
152.71 |
168 |
120 |
183.25 |
202 |
140 |
213.79 |
236 |
160 |
244.33 |
269 |
200 |
305.42 |
337 |
240 |
366.50 |
404 |
[src: http://cremabru.com/chart/chain-size-chart/]
[src: http://cremabru.com/chart/chain-size-chart/]
[src:http://cremabru.com/chart/chain-size-chart/]
[src: http://cremabru.com/chart/chain-size-chart/]
https://www.senqcia.com/products/chain/use/roller/rc_select.html
Safety Coefficient
The safety coefficient (or safety factor, SF) is determined using the formula shown below, and it should generally be maintained within the 7 to 10 range. However, it is often necessary to raise the safety coefficient for certain usage conditions (i.e., chain speed, ambient temperature, loading method, etc.). Furthermore, any legal requirements must also be implemented at this time.
Chain speed |
Safety coefficient |
~25m/min |
7 |
25~50m/min |
8 |
Table 4: Safety Coefficient (SF)
Example: Load W1 kgf applied to one of four chains used to suspend an object of weight W = 3,000kgf.
Chain Length: L (no. of links)
Chain Length: L (no. of links)
Where Cp is the inter-shaft distance expressed as a pitch;
N1 is the number of teeth on the small sprocket; and
N2 is the number of teeth on the large sprocket.
Chain Speed: v (m/min)
Where p is the chain pitch (㎜);
N is the number of teeth on the sprocket; and
r is the sprocket speed (rpm).
Chain Tensile Force for Rated Output: F (kgf)
Where kW is the rated output (kW) and v is the chain speed (m/min).
Corrected Transmission Performance: kW' (kW)
Where kW is the rated output (kW) and
αu is the service coefficient (from Table 1 on page 55).
Caution
The chain length L found using the formula presented here should be rounded off to an integer. Note that an offset link will be required when the chain length is an odd number; however, the tooth numbers and inter-shaft distance should be adjusted whenever possible to ensure that calculation produces an even number.