1. If the beryllium oxide is pressed into the steel plate during the heating process, it will cause some defects in the surface quality of the steel plate. At the same time, it may affect the subsequent service life of the steel plate, which is not conducive to the following related processing.
2. If the heating temperature of the steel plate is too high or the heating time is not well controlled, which leads to overheating, the steel plate may be decarburized. This means that the carbon on the surface of the steel plate is completely or partially burned off, which will cause the surface of the steel plate to have soft spots, which will greatly reduce the hardness of the steel plate, and the wear resistance of the steel plate will also deteriorate.
3. In addition, the steel plate has overheating and overburning during the heating process. Overheating means that the heating temperature is too high, and overburning means that the heating time is too long. These will reduce the purchase of some related properties and make the surface of the steel plate brittle.
4. If the heating process of the steel plate is not uniform, the steel plate may crack, which will also affect the subsequent processing.
5. During the heating process of the steel plate, there may also be fractures in the cross section. This kind of defect has a great impact on the steel plate and may affect some of the chemical properties and related physical properties of the steel plate. It will not be detrimental to the subsequent cutting and heat treatment processes.
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