Talking about the superiority and use of flexible control cable
Flexible cables are mainly divided into: sensor/encoder cables, servo motor cables, robot cables, cleaning cables, and cables for the towline system.
According to the model, it can be roughly divided into the following categories:
Flexible control cable
1, PVC outer sheath flexible control towline cable, flame retardant CC101 bending radius: 8X
2, PVC outer sheath flexible shield control towline cable, flame retardant CC111 bending radius: 10X
3, PVC outer sheath flexible control towline cable, flame retardant CC120 bending radius: 5X
4, PVC outer sheath flexible shield control towline cable, flame retardant CC121 bending radius: 8X
5, PUR outer sheath flexible control towline cable, oil resistant, acid and alkali resistant, hydrolysis resistant, UV resistant, low temperature resistant, wear resistant, flame retardant CC127 bending radius: 8X
6, PUR outer sheath flexible control shielded towline cable, oil resistant, acid and alkali resistant, hydrolysis resistant, UV resistant, low temperature resistant, wear resistant, flame retardant CC117 bending radius: 10X
7, steel wire braided flexible control towline cable, UV protection, low temperature resistance, wear resistance, CC158 bending radius: 10X
8, PETP outer sheath flexible control towline cable, oil resistant, acid and alkali resistant, hydrolysis resistant, UV resistant, low temperature resistant, wear resistant, flame retardant CC160 bending radius: 5X
9, PETP outer sheath flexible control shielded towline cable, oil resistant, acid and alkali resistant, hydrolysis resistant, UV resistant, low temperature resistant, wear resistant, flame retardant CC133 bending radius: 10X
Flexible power cable
10, PVC outer sheath flexible power towline cable, flame retardant CC305 bending radius: 8X
11, PVC outer sheath shielded flexible power towline cable, flame retardant CC336 bending radius: 10X
12, PETP outer sheath flexible shielded power towline cable, oil resistant, acid and alkali resistant, hydrolysis resistant, UV resistant, low temperature resistant, wear resistant, flame retardant CC358 bending radius: 10X
13, PETP outer sheath flexible shielded power towline cable, oil resistant, acid and alkali resistant, hydrolysis resistant, UV resistant, low temperature resistant, wear resistant, flame retardant CC371 bending radius: 8X
Flexible data/bus cable
14, PVC outer sheath flexible shielded data towline cable. CC41 bending radius: 8X
15, PUR outer sheath flexible shielding data towline cable, oil resistant, acid and alkali resistant, hydrolysis resistant, UV resistant, low temperature resistant, wear resistant, flame retardant CC43 bending radius: 10X
16, PETP outer sheath flexible shielding data towline cable, oil resistant, acid and alkali resistant, hydrolysis resistant, UV resistant, low temperature resistant, wear resistant, flame retardant CC46 bending radius: 10X
17, PETP outer sheath flexible shielding data towline cable, oil resistant, acid and alkali resistant, hydrolysis resistant, UV resistant, low temperature resistant, wear resistant, flame retardant CC48 bending radius: 12X
Flexible servo cable
18, PUR outer sheath flexible shield servo towline cable, oil resistant, acid and alkali resistant, hydrolysis resistant, UV resistant, low temperature resistant, wear resistant, flame retardant CC46 bending radius: 10X
Flexible cables are different from ordinary fixed installation cables. Please refer to the following installation and precautions during installation:
1. The laying of the towline cable should not be distorted, that is, the cable should not be unwound from one end of the cable reel or cable reel. Instead, the cable should be unrolled by rotating the reel or cable reel, and if necessary, the cable can be unfolded or suspended. Cables for this purpose can only be obtained directly from the cable roll
2. Must pay attention to the minimum bending radius of the cable. (Information can be found in the selection table)
3. The cables must be loosely laid side by side in the towline, arranged as far as possible, separated by spacers or inserted into the separation holes of the brackets. The gap between the cables in the chain should be at least 10% of the cable diameter.
4. The cables in the chain must not touch or get stuck together.
5. Both points of the cable must be fixed, or at least must be fixed at the moving end of the chain. Generally, the moving point of the cable should be 20-30 times the diameter of the cable from the end of the chain.
6. Make sure that the cable moves completely within the bend radius, ie it cannot be forced to move. Thus the cables can be moved relative to one another or to the guiding device. After a period of operation, it is best to check the location of the cable. This check must be made after the push-pull movement.
7. If the chain is broken, its cable also needs to be replaced, because damage caused by excessive stretching cannot be avoided.
Advantages of flexible cables
When the same electrical requirements are met, the flexible cable has a smaller outer diameter and a lighter weight than other similar cables. Flexible cables have excellent bending properties with a minimum bend radius of up to 5 times the cable outer diameter.
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