IP Library › Granted Patent US 10,662,316
Granted Patent B2
US 10,662,316 · App. 15/380,568 · Granted May 26, 2020

Magneto-rheological elastomer composition, method for producing same, and vibration absorbing device including same

Inventors: Shingo Kobayashi (Aichi, JP); Mai Sugie (Aichi, JP); Masakazu Hattori (Aichi, JP); Toshihiko Komatsuzaki (Ishikawa, JP)
Assignee: Fuji Polymer Industries Co., Ltd.
C08K9/06C08L101/00H01F1/14708H01F1/14791H01F1/442C08G77/12C08G77/20C08K2201/01C08L83/04
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Quick Facts
Patent No.
US 10,662,316
App. No.
15/380,568
Granted
May 26, 2020
Kind
B2
Abstract

A magneto-rheological elastomer composition ( 10 ) includes a matrix resin ( 12 ) and a magnetic powder ( 11 ). The magnetic powder ( 11 ) is contained in an amount of 30 to 70% by volume based on 100% by volume of the composition. The magneto-rheological elastomer composition ( 10 ) has an Asker C hardness of 5 to 60 as determined by the Standard SRIS0101 of the Society of Rubber Science and Technology, Japan. The average particle size of the magnetic powder is preferably 2 to 500 μm, and the matrix resin is preferably an organopolysiloxane. The storage modulus of the magneto-rheological elastomer composition preferably changes by five times or more upon application of a magnetic force with a magnetic flux density of 200 mT. Thus, the present invention provides a magneto-rheological elastomer composition that greatly changes its storage modulus upon application of magnetism, a method for producing the same, and a vibration absorbing device including the same.

Claims (36)

1. A magneto-rheological elastomer composition comprising:

a matrix resin that is an organopolysiloxane; and

a magnetic powder in an amount of 40 to 60% by volume based on 100% by volume of the magneto-rheological elastomer composition, the magnetic powder being one of carbonyl iron powder, permalloy 50Fe-50Ni, or carbonyl iron powder and permalloy 50Fe-50Ni, at least a portion of the magnetic powder being surface treated with at least one of alkoxysilane and alkyltitanate, wherein

the magneto-rheological elastomer composition is obtained by curing a mixture comprising:

(A) a base polymer component: a linear organopolysiloxane having an average of two or more alkenyl groups per molecule, in which the alkenyl groups are bonded to silicon atoms at both ends of the molecular chain;

(B) a crosslinking component: an organohydrogenpolysiloxane having an average of two or more hydrogen atoms bonded to silicon atoms per molecule, in which an amount of the organohydrogenpolysiloxane is less than 1 mol with respect to 1 mol of the alkenyl groups bonded to the silicon atoms in the component (A);

(C) a platinum-based metal catalyst: an amount of the catalyst is 0.01 to 1000 ppm in weight with respect to the component (A); and

(D) the magnetic powder: an amount of the magnetic powder is 40 to 60% by volume with respect to 100% by volume of the organopolysiloxane,

the magneto-rheological elastomer composition has an Asker C hardness of 5 to 40 as determined by the Standard SRIS0101 of the Society of Rubber Science and Technology, Japan, and

a storage modulus of the magneto-rheological elastomer composition changes by nine times or more upon application of a magnetic force with a magnetic flux density of 0.2 T.

2. The magneto-rheological elastomer composition according to claim 1 , wherein the alkoxysilane is a silane compound or its partial hydrolysate, and the silane compound is expressed by R(CH 3 ) a Si(OR′) 3-a , where R represents an alkyl group having 1 to 20 carbon atoms, R′ represents an alkyl group having 1 to 4 carbon atoms, and a is 0 or 1.

3. The magneto-rheological elastomer composition according to claim 1 , wherein the magneto-rheological elastomer composition is in a sheet form.

4. A method for producing a magneto-rheological elastomer composition comprising an organopolysiloxane matrix and a magnetic powder, the magnetic powder contained in an amount of 40 to 60% by volume based on 100% by volume of the magneto-rheological elastomer composition, the magneto-rheological elastomer composition having an Asker C hardness of 5 to 40 as determined by the Standard SRIS0101 of the Society of Rubber Science and Technology, Japan, and a storage modulus of the magneto-rheological elastomer composition changing by nine times or more upon application of a magnetic force with a magnetic flux density of 0.2 T, the method comprising:

curing a mixture to obtain the magneto-rheological elastomer composition, the mixture comprising:

(A) a base polymer component: a linear organopolysiloxane having an average of two or more alkenyl groups per molecule, in which the alkenyl groups are bonded to silicon atoms at both ends of the molecular chain;

(B) a crosslinking component: an organohydrogenpolysiloxane having an average of two or more hydrogen atoms bonded to silicon atoms per molecule, in which an amount of the organohydrogenpolysiloxane is less than 1 mol with respect to 1 mol of the alkenyl groups bonded to the silicon atoms in the component (A);

(C) a platinum-based metal catalyst: an amount of the catalyst is 0.01 to 1000 ppm in weight with respect to the component (A); and

(D) the magnetic powder: an amount of the magnetic powder is 40 to 60% by volume with respect to 100% by volume of the organopolysiloxane, the magnetic powder being one of carbonyl iron powder, permalloy 50Fe-50Ni, or carbonyl iron powder and permalloy 50Fe-50Ni, at least a portion of the magnetic powder being surface treated with at least one of alkoxysilane and alkyltitanate.

5. The method for producing the magneto-rheological elastomer composition according to claim 4 , wherein the alkoxysilane is a silane compound or its partial hydrolysate, and the silane compound is expressed by R(CH 3 ) a Si(OR′) 3-a , where R represents an alkyl group having 1 to 20 carbon atoms, R′ represents an alkyl group having 1 to 4 carbon atoms, and a is 0 or 1.

6. The method for producing the magneto-rheological elastomer composition according to claim 4 , the curing of the mixture to obtain the magneto-rheological elastomer composition comprising:

pouring the mixture into a metal frame placed on a polyester film that has been subjected to a release treatment, and disposing thereon another polyester film that has been subjected to a release treatment, and

heat curing the mixture to obtain a sheet of the magneto-rheological elastomer composition.

7. A vibration absorbing device comprising:

a magneto-rheological elastomer composition, the magneto-rheological elastomer composition comprising:

a matrix resin that is an organopolysiloxane, and

a magnetic powder contained in an amount of 40 to 60% by volume based on 100% by volume of the magneto-rheological elastomer composition, the magnetic powder being one of carbonyl iron powder, permalloy 50Fe-50Ni, or carbonyl iron powder and permalloy 50Fe-50Ni, at least a portion of the magnetic powder being surface treated with at least one of alkoxysilane and alkyltitanate, wherein

the magneto-rheological elastomer composition is obtained by curing a mixture comprising:

(A) a base polymer component: a linear organopolysiloxane having an average of two or more alkenyl groups per molecule, in which the alkenyl groups are bonded to silicon atoms at both ends of the molecular chain;

(B) a crosslinking component: an organohydrogenpolysiloxane having an average of two or more hydrogen atoms bonded to silicon atoms per molecule, in which an amount of the organohydrogenpolysiloxane is less than 1 mol with respect to 1 mol of the alkenyl groups bonded to the silicon atoms in the component (A);

(C) a platinum-based metal catalyst: an amount of the catalyst is 0.01 to 1000 ppm in weight with respect to the component (A); and

(D) the magnetic powder: an amount of the magnetic powder is 40 to 60% by volume with respect to 100% by volume of the organopolysiloxane,

the magneto-rheological elastomer composition has an Asker C hardness of 5 to 40 as determined by the Standard SRIS0101 of the Society of Rubber Science and Technology, Japan, and

a storage modulus of the magneto-rheological elastomer composition changes by nine times or more upon application of a magnetic force with a magnetic flux density of 0.2 T,

the magneto-rheological elastomer composition is arranged in a vibration portion, and

the vibration absorbing device absorbs vibration in the vibration portion using a change in the storage modulus of the magneto-rheological elastomer composition upon application of a magnetic force.

8. The vibration absorbing device according to claim 7 , wherein the alkoxysilane is a silane compound or its partial hydrolysate, and the silane compound is expressed by R(CH 3 ) a Si(OR′) 3-a , where R represents an alkyl group having 1 to 20 carbon atoms, R′ represents an alkyl group having 1 to 4 carbon atoms, and a is 0 or 1.

Assignments (2)
CHANGE OF ADDRESS Recorded Feb 6, 2023
From: FUJI POLYMER INDUSTRIES CO., LTD.
To: FUJI POLYMER INDUSTRIES CO., LTD.
Reel/Frame 062655/0927 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2016
From: KOBAYASHI, SHINGO; SUGIE, MAI; HATTORI, MASAKAZU; KOMATSUZAKI, TOSHIHIKO
To: FUJI POLYMER INDUSTRIES CO., LTD.
Reel/Frame 040637/0353 →
Priority Claims (1)
JP 2016-061500 · Mar 25, 2016 · national
Continuity (1)
Related Publication 20170275438A1 · Sep 28, 2017