IP Library Granted Patent US 12,162,080
Granted Patent B2
US 12,162,080 · App. 17/521,493 · Granted Dec 10, 2024

Electric rotary tool

Inventor: Takeshi Kamiya (Anjo, JP)
Assignee: MAKITA CORPORATION
B23B45/02B23B45/001B23B45/008
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Quick Facts
Patent No.
US 12,162,080
App. No.
17/521,493
Granted
Dec 10, 2024
Kind
B2
Abstract

A housing holding a stator has increased rigidity. A vibration driver drill includes a motor including a stator and a rotor rotatable relative to the stator, a gear case in front of the motor, a gear in the gear case to receive rotation of the rotor, an output shaft protruding frontward from the gear case to receive rotation from the gear, an integral cylindrical housing accommodating the motor and including a front portion with an opening and a rear portion closed, a gear case housing connected to the front portion of the integral cylindrical housing and including a right part and a left part and holding the gear case, and a grip housing extending downward from the gear case housing.

Claims (71)

1. An electric rotary tool, comprising:

a motor including a stator and a rotor, the rotor being rotatable relative to the stator;

a gear case in front of the motor;

a gear in the gear case, the gear being configured to receive rotation of the rotor;

an output shaft protruding frontward from the gear case, the output shaft being configured to receive rotation from the gear;

a motor housing that is cylindrical and accommodates the motor, the motor housing including a front portion with an opening and a rear portion that is closed and integral with a remainder of the motor housing;

a dividable housing connected to the front portion of the motor housing, the dividable housing including a right half housing and a left half housing and holding the gear case; and

a grip housing extending downward from the dividable housing, wherein

the motor housing includes a support on an inner circumferential surface of the motor housing, and the support supports the stator to align the stator to be coaxial with the motor housing.

2. The electric rotary tool according to claim 1 , wherein

the dividable housing includes a cylindrical portion internally fitted in the opening in the motor housing.

3. The electric rotary tool according to claim 1 , wherein

the motor housing and the dividable housing are fastened together with a screw extending in a front-rear direction.

4. The electric rotary tool according to claim 1 , wherein

the support includes one or more support ribs protruding parallel to an axis of the motor housing and arranged at predetermined intervals in a circumferential direction of the motor housing.

5. The electric rotary tool according to claim 1 , wherein

the motor housing includes a positioner on a rear inner circumferential surface of the motor housing, and the positioner is in contact with the stator to position the stator in a rearward direction.

6. The electric rotary tool according to claim 5 , wherein

the positioner includes one or more positioning ribs extending parallel to an axis of the motor housing and arranged at predetermined intervals in a circumferential direction of the motor housing.

7. The electric rotary tool according to claim 1 , wherein

the stator is held by the dividable housing in a nonrotatable manner.

8. The electric rotary tool according to claim 7 , wherein

the stator includes an insulator held by the dividable housing.

9. The electric rotary tool according to claim 1 , wherein

the rotor includes a rotational shaft extending in a front-rear direction,

the electric rotary tool further comprises a fan fixed to a rear portion of the rotational shaft, and

the motor housing includes an inlet and an outlet.

10. The electric rotary tool according to claim 9 , further comprising:

a bearing attached to a rear end of the rotational shaft behind the fan; and

a bearing holder on an inner bottom surface of the motor housing, the bearing holder holding the bearing.

11. The electric rotary tool according to claim 10 , wherein

the bearing and the bearing holder overlap the fan in a radial direction of the motor housing.

12. The electric rotary tool according to claim 10 , wherein

the motor housing includes a guide on an inner circumferential surface of the motor housing, and

the guide comes in contact with an outer circumference of the fan when the bearing is placed in the bearing holder to guide the fan to a position at which the fan is coaxial with the motor housing.

13. The electric rotary tool according to claim 12 , wherein

the guide includes a plurality of guide protrusions arranged at predetermined intervals in a circumferential direction of the motor housing,

each of the plurality of guide protrusions includes a front slope sloping toward an axis of the motor housing from a front to a rear and causing a tip of each of the plurality of guide protrusions to be on a concentric circle slightly larger than the outer circumference of the fan.

14. The electric rotary tool according to claim 13 , wherein

each of the plurality of guide protrusions includes a rear slope sloping more outward in a radial direction of the motor housing from the tip toward the rear.

15. An electric rotary tool, comprising:

a motor including a stator and a rotor, the rotor being rotatable relative to the stator;

a gear case in front of the motor;

a gear in the gear case, the gear being configured to receive rotation of the rotor;

an output shaft protruding frontward from the gear case, the output shaft being configured to receive rotation from the gear;

a motor housing that is cylindrical and accommodates the motor, the motor housing including a front portion with an opening and a rear portion that is closed and integral with a remainder of the motor housing;

a dividable housing connected to the front portion of the motor housing, the dividable housing including a right half housing and a left half housing and holding the gear case; and

a grip housing extending downward from the dividable housing, wherein

the dividable housing includes a fitting portion,

the motor housing includes a receiving portion on an outer circumferential surface, and

the receiving portion receives the fitting portion from a front.

16. The electric rotary tool according to claim 15 , wherein

the fitting portion includes a right part included in the right half housing of the dividable housing and a left part included in the left half housing of the dividable housing.

17. An electric rotary tool, comprising:

a housing defining an outer wall, the housing including

a first integral cylindrical housing,

a right-left dividable housing in front of the first integral cylindrical housing, and

a second integral cylindrical housing in front of the right-left dividable housing;

a motor accommodated in the first integral cylindrical housing, the motor including

a rotor shaft,

a stator having an outer circumference directly held by the first integral cylindrical housing, and

a rotor located circumferentially inward from the stator with a rear portion of the rotor shaft directly held by the first integral cylindrical housing with a bearing;

a switch and a controller accommodated in the right-left dividable housing;

a power transmitter accommodated in the second integral cylindrical housing, the power transmitter being drivable by the motor;

a tip tool holder in front of the second integral cylindrical housing, the tip tool holder being rotatable by the power transmitter; and

a plurality of screws extending in a front-rear direction, the plurality of screws fastening the first integral cylindrical housing, the right-left dividable housing, and the second integral cylindrical housing together.

18. The electric rotary tool according to claim 17 , further comprising:

a fan fixed to the rotor,

wherein the first integral cylindrical housing includes, on right and left sides of the first integral cylindrical housing, an inlet to cause air from the fan to flow into the first integral cylindrical housing and an outlet to cause air from the fan to flow out of the first integral cylindrical housing.

19. The electric rotary tool according to claim 17 , wherein

the first integral cylindrical housing includes a front portion fitted in a rear portion of the right-left dividable housing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2021
From: KAMIYA, TAKESHI
To: MAKITA CORPORATION
Reel/Frame 058050/0470 →
Priority Claims (1)
JP 2020-209549 · Dec 17, 2020 · national
Continuity (1)
Related Publication 20220193791A1 · Jun 23, 2022