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Orientation evaluation - List of Manufacturers, Suppliers, Companies and Products

Orientation evaluation Product List

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Evaluation of the orientation of anisotropic neodymium magnets

From the pole figure measurement results of X-ray diffraction of anisotropic magnets represented by neodymium magnets, it has become possible to calculate the crystallographic orientation degree in relation to the residual magnetic flux density.

From the results of pole figure measurements of X-ray diffraction before magnetization of anisotropic magnets represented by neodymium magnets, it has become possible to calculate the crystallographic orientation degree with respect to the residual magnetic flux density. Since anisotropic magnets have a higher residual magnetic flux density after magnetization when the crystallographic orientation degree of the magnetization easy axis is high, understanding the crystallographic orientation degree before magnetization is beneficial for the development of anisotropic magnets and quality control in production lines.

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Orientation evaluation of ferrite magnets using EBSD.

It is possible to evaluate the orientation of ferrite magnets using EBSD.

One of the important characteristics of anisotropic magnets is the residual magnetic flux density. The more aligned the direction of the easy magnetization axis is, that is, the higher the crystal orientation, the greater the residual magnetic flux density. Therefore, understanding the orientation of the easy magnetization axis is extremely important for the development of anisotropic magnets and the motors that use them. The orientation of ferrite magnets can be evaluated using EBSD.

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Orientation evaluation of electrical steel sheets using EBSD.

We will quantify the orientation of electrical steel sheets using EBSD and investigate the relationship with magnetic properties.

There are two types of electrical steel sheets: oriented and non-oriented, depending on their application. Electrical steel sheets are materials with significant magnetic anisotropy, and quantifying the orientation state is a very important aspect of material design. By using EBSD, it is possible to quantify the orientation of electrical steel sheets.

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