Articulated Bottomplate Chains 12AH-TB35
The present invention relates to mechanical power transmission chains with limited joints and methods for preventing chain jumps. In particular, the present invention relates to chains having 2 pairs of alternating inner and outer links. The inner link plate and the outer link plate preferably each include 2 or more connection holes. Pins 14 passing through the connecting holes connect each link to an adjacent link.
A hinged chain includes links that are interconnected by hinges. Each hinge includes a pin and a bearing surrounding the pin. The arrangement of these components gives the chain excellent wear resistance. The wear of the hinged chain is caused by the movement of the hinge pin relative to the inner surface of the hinge bearing.
The present invention’s hinged floor chain includes links with flat ends on the sprocket side 16. These flat ends limit articulation to a predetermined amount determined by the gap 18 between adjacent links. The limit angle of the chain link is greater than 90 degrees.
Articulating baseplate chains are designed to reduce chain jumping by limiting the amount of chain slack required to jump over teeth. To improve chain performance, the amount of slack required for a single sprocket jump must be proportional to the maximum chain rotation.
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Sprockets for Articulated Bottomplate Chains
Articulated baseplate chains use sprockets to power the movement of the chain. These sprockets can withstand heavy loads, and choosing the right type is critical to preventing damage to equipment. Before choosing a sprocket, be sure to understand the specifications for your system and the type of assembly.
The main function of the sprocket is to transfer kinetic energy from the chain. These devices are usually made of metal or plastic reinforced with plastic. They are shaped like bicycle gears. But unlike bicycle gears, they only interact with different types of chains. In most cases, sprockets and chain assemblies work together to move heavy equipment.
The sprockets should be the correct size and pitch to ensure a proper fit. Some people have large teeth, and some people have narrow teeth. For example, a chain with a large pitch diameter requires a sprocket with large teeth. On the other hand, chains with a pitch circle diameter require sprockets with smaller teeth. While sprockets are often interchangeable, knowing your system’s specifications will help you select the correct replacement part. Selecting the right parts will also protect connected equipment and components from overloading, overheating, and slippage.
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