IP Library › Granted Patent US 11,784,544
Granted Patent B2
US 11,784,544 · App. 16/615,237 · Granted Oct 10, 2023

Method of manufacturing laminated steel plate

Inventor: Aki Kusuyama (Tokyo, JP)
Assignee: THREEBOND CO., LTD.
H02K15/02B21D28/26C09J4/00
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Quick Facts
Patent No.
US 11,784,544
App. No.
16/615,237
Granted
Oct 10, 2023
Kind
B2
Abstract

A method of manufacturing a laminated steel plate capable of simplifying the manufacturing process. This is achieved by a method of manufacturing a laminated steel plate including a step of applying a mixture containing an oil and an adhesive composition for a laminated steel plate including at least one kind of a (meth)acrylate compound compatible with the oil and an organic peroxide to one side or both sides of a strip-like steel plate; and a step of punching a steel plate body from the strip-like steel plate with a punch portion of a press forming device, and laminating and bonding the steel plate bodies.

Claims (38)

1. A method of manufacturing a laminated steel plate operatively associated with a press forming device, comprising:

applying a mixture containing an oil and an adhesive composition for the laminated steel plate to at least one side of both sides of a strip steel plate;

punching a steel plate body from the strip steel plate with a punch portion of the press forming device, and repeating the punching the steel plate body to form a plurality of steel bodies; and

laminating and bonding the plurality of the steel plate bodies;

wherein in the applying the mixture, simultaneously applying the oil and the adhesive composition to the at least one side of both sides of the strip steel plate;

wherein the applying the mixture further comprises applying the adhesive composition containing at least one (meth)acrylate compound and an organic peroxide,

the at least one (meth)acrylate compound comprises at least one (meth)acrylate compound compatible with the oil, and

the at least one (meth)acrylate compound compatible with the oil comprises at least one selected from the group consisting of dicyclopentanyl (meth)acrylate, dicyclopentenyl oxyethyl (meth)acrylate, tricyclodecane dimethanol di(meth)acrylate, isobornyl (meth)acrylate, cyclohexyl (meth)acrylate, 2 ethylhexyl (meth)acrylate, isostearyl (meth)acrylate, isononyl (meth)acrylate, 1,6-hexanediol di(meth)acrylate, neopentyl di(meth)acrylate and trimethylolpropane trimethacrylate;

wherein the bonding the plurality of the steel plate bodies comprises curing the adhesive composition by heating.

2. The method of manufacturing a laminated steel plate according to claim 1 , wherein in the applying of the mixture, the at least one (meth)acrylate compound further comprises at least one (meth)acrylate compound incompatible with the oil.

3. The method of manufacturing a laminated steel plate according to claim 2 , wherein in the applying the mixture, the (meth)acrylate compound incompatible with the oil comprises at least one selected from the group consisting of polyethylene glycol di(meth)acrylate, alkoxylated bisphenol A di(meth)acrylate, 2-(meth)acryloyloxyethyl acid phosphate, hydroxyethyl (meth)acrylate, 2-hydroxy-3-phenoxypropyl (meth)acrylate, dimethyl acrylamide, and phenoxyethyl (meth)acrylate.

4. The method of manufacturing a laminated steel plate according to claim 1 , wherein in the applying of the mixture, applying the mixture containing 3 to 100 parts by mass of the oil per 100 parts by mass of the adhesive composition.

5. The method of manufacturing a laminated steel plate according to claim 1 , wherein in the applying the mixture, the at least one (meth)acrylate compound compatible with the oil is at least one selected from the group consisting of tricyclodecanedimethanol di(meth)acrylate, neopentyl di(meth)acrylate, and trimethylolpropane trimethacrylate.

6. The method of manufacturing a laminated steel plate according to claim 1 , wherein the applying the mixture comprises applying a punching oil.

7. A method of manufacturing a rotor of a motor, comprising

manufacturing a laminated steel plate, comprising:

applying a mixture containing an oil and an adhesive composition for the laminated steel plate to at least one side of both sides of a strip steel plate;

punching a steel plate body from the strip steel plate with a punch portion of the press forming device, and repeating the punching the steel plate body to form a plurality of steel bodies; and

laminating and bonding the plurality of the steel plate bodies;

wherein in the applying the mixture, simultaneously applying the oil and the adhesive composition to the at least one side of both sides of the strip steel plate;

wherein the applying the mixture further comprises applying the adhesive composition containing at least one (meth)acrylate compound and an organic peroxide,

the at least one (meth)acrylate compound comprises at least one (meth)acrylate compound compatible with the oil, and

the at least one (meth)acrylate compound compatible with the oil comprises at least one selected from the group consisting of dicyclopentanyl (meth)acrylate, dicyclopentenyl oxyethyl (meth)acrylate, tricyclodecane dimethanol di(meth)acrylate, isobornyl (meth)acrylate, cyclohexyl (meth)acrylate, 2-ethylhexyl (meth)acrylate, isostearyl (meth)acrylate, isononyl (meth)acrylate, 1,6-hexanediol di(meth)acrylate, neopentyl di(meth)acrylate, and trimethylolpropane trimethacrylate;

wherein the bonding the plurality of the steel plate bodies comprises curing the adhesive composition by heating;

manufacturing the rotor of the motor using the laminated steel plate; and

assembling the rotor of the motor comprising the laminated steel plate.

8. A method of manufacturing a stator of a motor, comprising

manufacturing a laminated steel plate, comprising:

applying a mixture containing an oil and an adhesive composition for the laminated steel plate to at least one side of both sides of a strip steel plate;

punching a steel plate body from the strip steel plate with a punch portion of the press forming device, and repeating the punching the steel plate body to form a plurality of steel bodies; and

laminating and bonding the plurality of the steel plate bodies;

wherein in the applying the mixture, simultaneously applying the oil and the adhesive composition to the at least one side of both sides of the strip steel plate;

wherein the applying the mixture further comprises applying the adhesive composition containing at least one (meth)acrylate compound and an organic peroxide,

the at least one (meth)acrylate compound comprises at least one (meth)acrylate compound compatible with the oil, and

the at least one (meth)acrylate compound compatible with the oil comprises at least one selected from the group consisting of dicyclopentanyl (meth)acrylate, dicyclopentenyl oxyethyl (meth)acrylate, tricyclodecane dimethanol di(meth)acrylate, isobornyl (meth)acrylate, cyclohexyl (meth)acrylate, 2-ethylhexyl (meth)acrylate, isostearyl (meth)acrylate, isononyl (meth)acrylate, 1,6-hexanediol di(meth)acrylate, neopentyl di(meth)acrylate, and trimethylolpropane trimethacrylate;

wherein the bonding the plurality of the steel plate bodies comprises curing the adhesive composition by heating;

manufacturing the stator of the motor using the laminated steel plate; and

assembling the stator of the motor comprising the laminated steel plate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2019
From: KUSUYAMA, AKI
To: THREEBOND CO., LTD.
Reel/Frame 051063/0761 →
Priority Claims (1)
JP 2017-101758 · May 23, 2017 · national
Continuity (1)
Related Publication 20200186014A1 · Jun 11, 2020