A single-strand twisting machine is a type of cable equipment used to twist power lines, headphone wires, and electronic wires. The specific principle of twisting is: when the copper wire passes through the twisting bow on the twisting machine, the circumferential motion of the twisting bow helically wraps the single copper wire together. Twisting copper wire is an area where single copper wires are used extensively. Copper wires of different specifications and models are arranged in the corresponding order and twisted together at specified intervals to produce a larger diameter conductor. The twisted conductor is much smaller than the twisted conductor, and a single copper wire of the same diameter is much more flexible, also exhibiting better bending performance.
The definition of the lay length of a stranding machine is that a single strand on the stranding machine appears once at the corresponding interval along the stranding direction, with a fixed interval called the stranding pitch. Another definition of stranding pitch is the vertical distance after the stranded wire rotates 360 degrees along the stranding axis, measured in millimeters. It is made up of several individually stranded wires. In typical single-wire connections, it also improves the reliability of multi-wire connections. In order to achieve better flexibility or high reliability, the conductors of certain wires and cables are stranded.
In order to make a single wire bundle or stranded wire achieve the corresponding helix angle (or pitch), the equipment must meet the following requirements: first, to make all the single wires rotate around the axis of the equipment; second, to make the twisted product move forward in a straight line. By changing the coordination of these two movements, the helix angle can be adjusted to meet structural requirements. It is specifically composed of a traction and winding system, a transmission system, and so on. In addition, it is also equipped with a distribution panel, parallel dies (also called dies), instruments, and other devices.
The stranded wires produced by the stranding machine are generally of large specifications and models. Except for one single conductor placed in the middle, the payout drums of the remaining single conductors are all positioned at the payout section (such as the stranding cage). Through rotation, a stranding layer is formed around each single conductor. According to the number of stranding layers and the number of single conductors in each layer, the stranding machine is usually equipped with several independently rotating payout components, so that the stranding direction of each layer differs, making it especially suitable for the production of concentric layer stranded wires.
The bundle machine of this utility model produces small specifications and models of bundle lines. The bundle line is formed by the rotation of the coil part or the rotary body of the basket. Since the operation of the bundler occurs in the coil part, and the speed regulation mechanism is installed inside the rotating basket, the position of the bundler is limited, which determines that the bundler can only be made into a small product with one twisting direction, but the number of single strands can be flexibly configured as needed.
The definition of the lay length of a stranding machine is that a single strand on the stranding machine appears once at the corresponding interval along the stranding direction, with a fixed interval called the stranding pitch. Another definition of stranding pitch is the vertical distance after the stranded wire rotates 360 degrees along the stranding axis, measured in millimeters. It is made up of several individually stranded wires. In typical single-wire connections, it also improves the reliability of multi-wire connections. In order to achieve better flexibility or high reliability, the conductors of certain wires and cables are stranded.
In order to make a single wire bundle or stranded wire achieve the corresponding helix angle (or pitch), the equipment must meet the following requirements: first, to make all the single wires rotate around the axis of the equipment; second, to make the twisted product move forward in a straight line. By changing the coordination of these two movements, the helix angle can be adjusted to meet structural requirements. It is specifically composed of a traction and winding system, a transmission system, and so on. In addition, it is also equipped with a distribution panel, parallel dies (also called dies), instruments, and other devices.
The stranded wires produced by the stranding machine are generally of large specifications and models. Except for one single conductor placed in the middle, the payout drums of the remaining single conductors are all positioned at the payout section (such as the stranding cage). Through rotation, a stranding layer is formed around each single conductor. According to the number of stranding layers and the number of single conductors in each layer, the stranding machine is usually equipped with several independently rotating payout components, so that the stranding direction of each layer differs, making it especially suitable for the production of concentric layer stranded wires.
The bundle machine of this utility model produces small specifications and models of bundle lines. The bundle line is formed by the rotation of the coil part or the rotary body of the basket. Since the operation of the bundler occurs in the coil part, and the speed regulation mechanism is installed inside the rotating basket, the position of the bundler is limited, which determines that the bundler can only be made into a small product with one twisting direction, but the number of single strands can be flexibly configured as needed.
