IP Library › Granted Patent US 10,638,622
Granted Patent B2
US 10,638,622 · App. 15/954,732 · Granted Apr 28, 2020

Assembly structure for bracket

Inventors: Makoto Kato (Aichi, JP); Hirofumi Kataoka (Aichi, JP); Yoshiki Inamukai (Aichi-ken, JP)
Assignees: DAIWA KASEI INDUSTRY CO., LTD.; TOYOTA JIDOSHA KABUSHIKI KAISHA
H05K5/0073F16B2/22H05K5/0017H05K5/0052H05K5/0204H05K5/0221H05K5/0247H05K5/03F16B5/065F16B5/0664F16B5/121
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Quick Facts
Patent No.
US 10,638,622
App. No.
15/954,732
Granted
Apr 28, 2020
Kind
B2
Abstract

An object is to reduce sliding resistance when a bracket is assembled to a case, thereby improving assembly workability. In an assembly structure for assembling a bracket to a case, the case has opposed wall portions opposed to each other on the outer peripheral side surface thereof, and the bracket has a plate-shaped insertion portion to be inserted in a predetermined direction into an opposition clearance between the opposed wall portions, and three sliding projections protruding from both side surfaces of the insertion portion which are to be opposed to the opposed wall portions, so that the sliding projections slide on the opposed surfaces of the opposed wall portions at the time of the insertion. The sliding projections are provided so as to appear alternately, in the predetermined direction, on both side surfaces of the insertion portion.

Claims (36)

1. An assembly structure for bracket, for assembling a bracket to a case of an electronic control unit, wherein

the case has, on an outer peripheral side surface thereof, opposed wall portions opposed to each other, and

the bracket has a plate-shaped insertion portion to be inserted in a predetermined insertion direction into an opposition clearance between the opposed wall portions, and sliding projections protruding from both side surfaces of the insertion portion, and are to be opposed to the opposed wall portions, so that the sliding projections slide on the opposed wall portions at a time of the insertion, wherein

the sliding projections are formed of a plurality of substantially arc-shaped protrusions, and are pressed to the opposed wall portions in a form of point-to-point contact.

2. An assembly structure for bracket, for assembling a bracket to a case of an electronic control unit, wherein

the case has, on an outer peripheral side surface thereof, opposed wall portions opposed to each other, and

the bracket has a plate-shaped insertion portion to be inserted in a predetermined insertion direction into an opposition clearance between the opposed wall portions, and sliding projections protruding from both side surfaces of the insertion portion which are to be opposed to the opposed wall portions, so that the sliding projections slide on the opposed wall portions at a time of the insertion, wherein

the sliding projections comprise a total of three sliding projections of: one sliding projection formed on a side surface on a first side of both side surfaces of the insertion portion; and two sliding projections formed on a side surface on a second side opposite thereto.

3. An assembly structure for bracket, for assembling a bracket to a case of an electronic control unit, wherein

the case has, on an outer peripheral side surface thereof, opposed wall portions opposed to each other, and

the bracket has a plate-shaped insertion portion to be inserted in a predetermined insertion direction into an opposition clearance between the opposed wall portions, and sliding projections protruding from both side surfaces of the insertion portion which are to be opposed to the opposed wall portions, so that the sliding projections slide on the opposed wall portions at a time of the insertion, wherein

the sliding projections are formed so as to appear alternately, in the insertion direction, on both side surfaces of the insertion portion.

4. The assembly structure for bracket according to claim 2 , wherein

the case has an elastic pressing portion opposed to the outer peripheral side surface through the opposition clearance between the opposed wall portions, the elastic pressing portion being configured to press down an upper surface of the insertion portion when the insertion portion is being inserted into the opposition clearance, and

the upper surface of the insertion portion has a rear-side upper surface in the insertion direction, an intermediate slope surface descending frontward from the rear-side upper surface, and a front-side upper surface extending frontward from the intermediate slope surface and thus located lower than the rear-side upper surface.

5. The assembly structure for bracket according to claim 4 , wherein

on both side surfaces of the insertion portion, at least one of the sliding projections is formed in a rear-side zone corresponding to the rear-side upper surface and at least one of the sliding projections is formed in a front-side zone corresponding to the front-side upper surface.

6. The assembly structure for bracket according to claim 2 , wherein

the bracket has: a side surface opposed portion located at a position to be opposed to the outer peripheral side surface of the case; a detachment preventing latch portion formed on a front side in the insertion direction of the side surface opposed portion and protruding in such a downward direction as to approach the outer peripheral side surface; and the insertion portion located lower than the detachment preventing latch portion in the side surface opposed portion,

the case has an elastic pressing portion opposed to the outer peripheral side surface through the opposition clearance between the opposed wall portions, the elastic pressing portion being configured to press down an upper surface of the insertion portion when the insertion portion is being inserted into the opposition clearance,

where the opposition clearance between the opposed wall portions is defined as a first opposition clearance, at a time of inserting the insertion portion into the first opposition clearance, the elastic pressing portion is received in a direction opposite to the insertion direction through a second opposition clearance between the detachment preventing latch portion on an upper side and the insertion portion on a lower side,

in the reception, the elastic pressing portion presses the detachment preventing latch portion upward, thereby elastically pushing up the detachment preventing latch portion and expanding the second opposition clearance, so as to allow the elastic pressing portion to be received,

after the elastic pressing portion passes by the detachment preventing latch portion and the reception is completed, the detachment preventing latch portion that has been pushed up is elastically restored and goes over the received elastic pressing portion to a front side thereof in the insertion direction so as to be latched, whereby the bracket comes into the detachment prevented state with respect to the case, and

after the elastic deformation to expand the second opposition clearance occurs and the insertion of the insertion portion is further advanced, the sliding projections provided on both side surfaces of the insertion portion come into a state in which both sliding projections have entered the first opposition clearance.

7. The assembly structure for bracket according to claim 3 , wherein

the case has an elastic pressing portion opposed to the outer peripheral side surface through the opposition clearance between the opposed wall portions, the elastic pressing portion being configured to press down an upper surface of the insertion portion when the insertion portion is being inserted into the opposition clearance, and

the upper surface of the insertion portion has a rear-side upper surface in the insertion direction, an intermediate slope surface descending frontward from the rear-side upper surface, and a front-side upper surface extending frontward from the intermediate slope surface and thus located lower than the rear-side upper surface.

8. The assembly structure for bracket according to claim 7 , wherein

on both side surfaces of the insertion portion, at least one of the sliding projections is formed in a rear-side zone corresponding to the rear-side upper surface and at least one of the sliding projections is formed in a front-side zone corresponding to the front-side upper surface.

9. The assembly structure for bracket according to claim 3 , wherein

the bracket has: a side surface opposed portion located at a position to be opposed to the outer peripheral side surface of the case; a detachment preventing latch portion formed on a front side in the insertion direction of the side surface opposed portion and protruding in such a downward direction as to approach the outer peripheral side surface; and the insertion portion located lower than the detachment preventing latch portion in the side surface opposed portion,

the case has an elastic pressing portion opposed to the outer peripheral side surface through the opposition clearance between the opposed wall portions, the elastic pressing portion being configured to press down an upper surface of the insertion portion when the insertion portion is being inserted into the opposition clearance,

where the opposition clearance between the opposed wall portions is defined as a first opposition clearance, at a time of inserting the insertion portion into the first opposition clearance, the elastic pressing portion is received in a direction opposite to the insertion direction through a second opposition clearance between the detachment preventing latch portion on an upper side and the insertion portion on a lower side,

in the reception, the elastic pressing portion presses the detachment preventing latch portion upward, thereby elastically pushing up the detachment preventing latch portion and expanding the second opposition clearance, so as to allow the elastic pressing portion to be received,

after the elastic pressing portion passes by the detachment preventing latch portion and the reception is completed, the detachment preventing latch portion that has been pushed up is elastically restored and goes over the received elastic pressing portion to a front side thereof in the insertion direction so as to be latched, whereby the bracket comes into the detachment prevented state with respect to the case, and

after the elastic deformation to expand the second opposition clearance occurs and the insertion of the insertion portion is further advanced, the sliding projections provided on both side surfaces of the insertion portion come into a state in which both sliding projections have entered the first opposition clearance.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME OF THE SECOND ASSIGNOR PREVIOUSLY RECORDED ON REEL 046796 FRAME 0619. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECTIVE ASSIGNMENT. Recorded Sep 11, 2018
From: KATO, MAKOTO; KATAOKA, HIROFUMI; INAMUKAI, YOSHIKI
To: DAIWA KASEI INDUSTRY CO., LTD.; TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 047046/0200 →
CORRECTIVE ASSIGNMENT TO CORRECT THE OMISSION OF THE SECOND ASSIGNEE PREVIOUSLY RECORDED AT REEL: 045608 FRAME: 0430. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Apr 26, 2018
From: KATO, MAKOTO; KATAOKA, KIROFUMI; INAMUKAI, YOSHIKI
To: DAIWA KASEI INDUSTRY CO., LTD.; TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 046796/0619 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2018
From: KATO, MAKOTO; KATAOKA, HIROFUMI; INAMUKAI, YOSHIKI
To: DAIWA KASEI INDUSTRY CO., LTD.
Reel/Frame 045608/0430 →
Priority Claims (1)
JP 2017-084198 · Apr 21, 2017 · national
Continuity (1)
Related Publication 20180310420A1 · Oct 25, 2018
Cited By (2)
US 12,366,260 US 12,716,546