Maintenance Measures of Simple Failure of Thin-walled Deep Groove Ball Bearings

The reason for the noise caused by thin-walled deep groove ball bearings is relatively complex. One is the wear of the inner and outer rings of the bearings. Due to this wear, the matching relationship between the bearing and the housing, the bearing and the shaft is destroyed, resulting in the axis deviating from the correct position, causing abnormal noise when the shaft is moving at a high speed. When the bearing is fatigued, the metal on the surface of the bearing will be exfoliated, and the radial clearance of the thin-walled deep groove ball bearing will also increase to produce abnormal noise. In addition, the lack of bearing lubrication, the formation of dry friction, and broken bearings will produce abnormal sound. After the bearing wears loose, the cage is loose and damaged, and abnormal noise may also occur.

When the thin-wall deep groove ball bearing is removed and inspected, appearance records are first made by photography and other methods. In addition, confirm the amount of residual lubricant and sample the lubricant before cleaning the bearing.

a. Washing of the bearing is performed in rough and fine washing, and a metal grid can be placed at the bottom of the used container.

b. When rough washing, remove the grease or sticky material with a brush or the like in the oil. If the thin-walled deep groove ball bearing is turned in the oil at this time, be careful to damage the rolling surface due to foreign matter.

c. When slowly washing, rotate the bearing slowly in the oil. Care must be taken.

Commonly used cleaning agents are neutral, non-aqueous diesel oil or kerosene, and occasionally, mild alkali liquor is used as necessary. Regardless of the type of cleaning agent, it should always be filtered and kept clean.

Forging Parts

Metal forging is a processing method that uses a forging machine to apply pressure to a metal blank to make it a part of a certain shape and size. The forging process can change the metal structure and improve the metal properties, making it have higher mechanical properties than the raw materials. Therefore, forging is usually given priority to workpieces that require relatively high strength and heavy load-bearing. Because the forging process is a process of up and down pressing, the structure of the workpiece cannot be too complicated, and only some workpieces with a relatively simple structure can be formed. If the structure of some workpieces is relatively complex, we can form a structure that can be forged, and then obtain the desired structure through subsequent secondary CNC machining, but the relative cost will be relatively high.

SCZY has very rich experience in metal forging, as well as subsequent secondary CNC machining and surface treatment. We are mainly engaged in the processing of forged parts such as aluminum alloy forging, copper alloy forging, carbon steel forging, alloy steel forging and Stainless Steel Forging, as well as subsequent secondary CNC machining and surface treatment. Here are a few photos of the products we've made:

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