"SKF imported bearings in use" should pay attention to the problem

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"SKF imported bearings in use" should pay attention to the problem

Source: China Bearing Network Time: 2013-09-10

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First, the use of the device should be careful not to allow strong stamping; it is not allowed to directly hit the SKF bearings with a hammer; it is not allowed to pass the pressure through the roll.
Second, use appropriate and precise devices to try to use special things; try to avoid the use of cloth and short fibers and the like.
Third, try to adhere to the SKF imported bearings and the surrounding environment. Even if the invisible shallow dust enters the SKF bearings, it will also add the wear of SKF bearings; oscillation and noise.
Fourth, to avoid the rust of SKF imported bearings directly take SKF bearings when hand; to wash away the sweat on the hands; and apply high-quality mineral oil before operation; especially in the dry season and summer to pay attention to rust.
Under certain special operating conditions; SKF imported bearings can obtain a better life than traditional accounting; especially in the case of light loads. These special operating conditions are; when the rolling surface (track and roll) is smoothed The oil film effectively separates and confines the external damage that can be caused by contaminants. In fact; under the ambition; the so-called permanent SKF imported bearing life is able.
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Ball Cock

A ballcock (also balltap or float valve) is a mechanism or machine for filling water tanks, such as those found in flush toilets, while avoiding overflow and (in the event of low water pressure) backflow. The modern ballcock was invented by José Antonio de Alzate y Ramírez, a Mexican priest and scientist, who described the device in 1790 in the Gaceta de Literatura Méxicana.[1] It consists of a valve connected to a hollow sealed float by means of a lever, mounted near the top of the tank. The float is often ball-shaped, hence the name ballcock. The valve is connected to the incoming water supply, and is opened and closed by the lever which has the float mounted on the end. When the water level rises, the float rises with it; once it rises to a pre-set level, the mechanism forces the lever to close the valve and shut off the water flow. This is an example of negative feedback and of proportional control.

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