IP Library Granted Patent US 12668546
Granted Patent B2
US 12668546 · App. 17/778,430 · Granted Jun 30, 2026

Method for improving Bs of MnZn power ferrite material by moving valley point

Inventor: Donghua Lyu (Dongyang, CN)
Assignee: HENGDIAN GROUP DMEGC MAGNETICS CO., LTD.
C04B35/2658C04B35/64C04B2235/3208C04B2235/3244C04B2235/3275C04B2235/3293
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Quick Facts
Patent No.
US 12668546
App. No.
17/778,430
Granted
Jun 30, 2026
Kind
B2
Abstract

A method for improving the Bs of an MnZn power ferrite material by moving the valley point includes the following steps: 1) mixing Fe 2 O 3 , MnO and ZnO, and performing primary sanding; 2) adding glue, performing spraying and granulating, and then performing pre-sintering to obtain a pre-sintered material; 3) adding additives to the pre-sintered material, and performing secondary sanding; and 4) adding glue to the secondary sanded material, performing spraying and granulating, pressing into a standard ring, and then performing sintering. The method controls and moves the valley point, reduces loss and improves the Bs of a material by controlling the Fe 2 O 3 content and the Co 2 O 3 content, and the method is relatively simple and suitable for industrialization.

Claims (10)

1 . A method for improving saturation flux density (Bs) of an MnZn power ferrite material by moving a valley point, comprising the following steps:

1) mixing Fe 2 O 3 , MnO and ZnO, and performing a primary sanding to obtain a first sanded material, wherein the proportions of the components are 52.9-53.3 mol % of Fe 2 O 3 , 38.3-39.08 mol % of MnO, and 7.62-8.8 mol % of ZnO;

2) adding a glue to the first sanded material, performing a first spraying and a first granulating to obtain a material to be pre-sintered, and then performing a pre-sintering to obtain a pre-sintered material;

3) adding additives to the pre-sintered material, and performing a secondary sanding to obtain a secondary sanded material, wherein the additives consist of the following components in mass percentages accounting for the pre-sintered material: 0.03-0.08 wt % of CaCO 3 , 0.015-0.04 wt % of ZrO 2 , 0.43-0.52 wt % of Co 2 O 3 , and 0.05-0.2 wt % of SnO 2 ; and

4) adding the glue to the secondary sanded material, performing a second spraying and a second granulating, pressing into a standard ring, and then performing sintering.

2 . The method for improving the Bs of the MnZn power ferrite material by moving the valley point according to claim 1 , wherein in step 1 and step 3, a material-to-ball-to-water ratio in the primary sanding and the secondary sanding is 1:5-7:0.4-0.6, and a sanding time is 0.5-1.5 h.

3 . The method for improving the Bs of the MnZn power ferrite material by moving the valley point according to claim 1 , wherein the glue added in step 2) accounts for 10% of a total mass of the material to be pre-sintered and the glue has a mass fraction of 7.5%.

4 . The method for improving the Bs of the MnZn power ferrite material by moving the valley point according to claim 1 , wherein the pre-sintering in step 2) is performed in a rotary kiln at 900-1000° C.

5 . The method for improving the Bs of the MnZn power ferrite material by moving the valley point according to claim 1 , wherein the glue added in step 4) accounts for 10% of a total mass of the secondary sanded material and the glue has a mass fraction of 7.5%.

6 . The method for improving the Bs of the MnZn power ferrite material by moving the valley point according to claim 1 , wherein a pressing pressure in step 4) is 6-8 Mpa.