Effect of laser particle size analyzer on particle size detection of ceramic powder

The detection of ceramic powder depends on the function of the initial powder in many respects, and the sintering activity is greatly improved. The physicochemical properties of the ceramic powder will select the microstructure and special function of the end of the ceramic material. ...

The detection of ceramic powder depends on the function of the initial powder in many respects, and the sintering activity is greatly improved. The physicochemical properties of the ceramic powder will select the microstructure and special function of the end of the ceramic material. The particle size inspection of the laser particle size analyzer is appropriate. The particle size of the solid particles constituting the powder has a great influence on the properties of the powder system. Therefore, powder quality is the basis for the preparation of high-performance ceramic materials, and in the communication between the three elements of materials science and engineering skills research. The finely ground powder is usually used to shape the product by a different method.

The particle size measuring methods of the laser particle size analyzer which are well known are: sieve analysis method, material layer gas permeability measurement method, microscopic measurement method, pulse method and the like. These changes will create mutations in the preparation of ceramic materials and the end of material function. It plays an important role in the quality and function of the product. First of all, it has a great connection with its particle size. The particle size of ceramic powder is an important policy. Due to its large increase in specific surface area, the most promising method among them is the laser method. Then broaden the use of ceramic materials for a wider range of applications. Conventional inspection methods are no longer applicable and the size of the particles directly affects the function of the product.

The uniform particle volume standard obtained by the laser particle size analyzer method can be used as a value for determining the particle size of the ground ceramic powder, under the condition that the uniform particle standard is the same.

The preparation of ceramic materials usually involves three skill processes: material preparation, green body forming and firing skills. The particle size and distribution are related to the processing time of the material, the density of the green body, and the level of the bump at the firing temperature. Both the press-formed powder and the slip-formed slurry are present in the form of granules. The particle size ratio of the material has a great influence on the strength and skill of the product, especially the modification of the sintering during the sintering. According to the value, the laser particle size analyzer can determine its skill characteristics and product functions, and also exists in the ceramic color glaze. Powdery particles, so-called ceramic powders, are agglomeration systems for many solid particles.

In the production of products, its function and quality are highly praised by ceramic customers. Clay, quartz and long quartz materials need to be processed into powder particles. Therefore, it is necessary to explore new test methods to obtain the desired characterization effect. In the meantime, the laser particle size analyzer causes the surface energy to increase sensitively. The particle size composition of the abrasive block (ie, the particle size distribution of the particles) is also the same as that in the inorganic material products. In the production, so in the processing and application of various types of powder, usually the particle ratio of the control material should start from the granularity of the monitoring material. It indicates the existence of a substance in the process of building sanitary ceramics, how the nano-powder is characterized, especially when the ceramic material is produced, when the particle size reaches the nano-scale.

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