Magnetorheological compositions including nonmagnetic material
A technology of non-magnetic materials and magnetic materials, which is applied in the field of magnetorheological materials, can solve the problems of magnetic particle supply and increase the cost of magnetorheological compositions, and achieve cost-effective, excellent magnetic saturation normal field yield stress, and less particle carrier Effect of Media Separation
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example 19 and 20
[0107] Two additional magnetorheological compositions were formed using components having the formulations listed in Table 5. More specifically, two additional magnetorheological compositions were prepared for determining the range of increase in normal field yield stress caused by the addition of non-magnetic materials in the magnetic material and the dielectric carrier. Specifically, magnetorheological compositions were formed for each of Examples 19 and 20 by mixing the components and nominal amounts listed in Table 5 with Carrier Medium A according to the following procedure.
[0108] To form the magnetorheological compositions in Examples 19 and 20, Magnetic Material B was slowly added to Medium Carrier A and mixed using an agitator mixer for 20 to 30 minutes. The resulting mixture was agitated for at least an additional 60 minutes. Aluminized glass P or glass Q was then added to the mixture and mixed using a stirring mixer until the final mixture was homogeneous. Just ...
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