ELECTRONIC CONTROL COMPONENT BRACKET
20230242053 ยท 2023-08-03
Inventors
Cpc classification
B60R16/0231
PERFORMING OPERATIONS; TRANSPORTING
H05K5/0073
ELECTRICITY
F16B2/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An object is to provide an electronic control component bracket that is less likely to cause a high acceleration (high-speed vibration). An electronic control component bracket 1 includes a bottom portion on which a plurality of elastic pieces configured to press a lower surface of an electronic control component upward are provided, and abutting stop portions configured to abut, from above, against the electronic control component that is pressed upward. The plurality of elastic pieces are provided such that, when vertical vibration is applied in a state in which the electronic control component is assembled, the amplitude of at least one elastic piece is larger than that of another elastic piece.
Claims
1. An electronic control component bracket for assembling an electronic control component to a vehicle body side, the electronic control component bracket comprising: a bottom portion that is to be disposed on a lower surface side of the electronic control component, and on which a plurality of elastic pieces configured to press the lower surface upward are provided; and abutting stop portions configured to abut, from above, against the electronic control component that is pressed upward, wherein, the electronic control component is clamped between the plurality of elastic pieces and the abutting stop portions so that relative vibration in a vertical direction is not restricted with respect to the electronic control component bracket for the electronic control component in an assembled state, and pressing positions of the plurality of elastic pieces at which the elastic pieces press the lower surface of the electronic control component are arranged such that, when projected in a vertical direction relative to a plane orthogonal to the vertical direction, the plurality of elastic pieces do not have rotational symmetry and line symmetry on the plane of projection.
2. The electronic control component bracket according to claim 1, wherein: the plurality of elastic pieces are the same, all in plate width, plate thickness, plate length, and shape.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0027] An embodiment of this invention will be described with reference to the drawings.
[0028] As shown in
[0029] As shown in
[0030] The second engaging portion 6 here has an arm shape extending downward from the back surface 3b of the bottom portion 3 and being bent so as to be substantially parallel to the bottom portion 3 at the extension location, and is formed as an elastic arm whose distal end side is elastically deformable in a vertical direction. The second engaging portion 6 here is a go-around engaging portion configured such that, when inserted to a second fixing hole 106H of the panel member 100 on the vehicle body side, the distal end side of the engaging portion goes around to the back side of the panel member 100, and a distal end portion 6A is latched to (comes into contact with) the back surface of the panel member 100. When the distal end portion 6A comes into contact with the back surface of the panel member 100, the second engaging portion 6 undergoes elastic deformation in a direction in which the distal end portion 6A side moves away from the back surface of the panel member 100, and the distal end portion 6A presses the panel member 100 from the back surface side to the front side.
[0031] When the first and second engaging portions 2, 6 are attached to the panel member 100, first, the second engaging portion 6 is passed through the second fixing hole 106H of the panel member 100. Thereafter, the first engaging portion 2 is passed through the first fixing hole 102H of the panel member 100. This brings about a state in which the first engaging portion 2 is inserted and latched to the first fixing hole 102H while the distal end portion 6A of the second engaging portion 6 presses the panel member 100 from the back surface side to the front side, thus bringing about a state in which the front surface of the panel member 100 abuts against an abutting portion 30 protruding downward from the bottom portion 3, or in other words, a state in which the first and second engaging portions 2, 6 are attached to the panel member 100.
[0032] In the bottom portion 3, the main front surface 3a is disposed so as to oppose the lower surface 10b side of the electronic control component 10. The plurality of elastic pieces 3A configured to press the lower surface 10b upward are provided on the bottom portion 3. As shown in
[0033] The side wall portions 4, 4 are elastic wall portions whose upper end sides are elastically deformable outward in the opposing direction of the side wall portions 4, 4. As shown in
[0034] Meanwhile, the plurality of elastic pieces 3A of this embodiment are provided such that, when vibration contained in the traveling vibration of the vehicle is applied in an assembled state in which the electronic control component 10 has been assembled to the electronic control component bracket 1 in a clamped state, the amplitude and the vibration period of at least one elastic piece 3A1 are different from those of the other elastic pieces 3A2.
[0035] The elastic pieces 3A2 here are provided so as to have a larger pressing reaction force for pressing the lower surface 10b of the electronic control component 10 than the other elastic pieces 3A1. Specifically, the elastic pieces 3A are composed of two elastic pieces 3A1 and two elastic pieces 3A2, and the plate width of the elastic pieces 3A2 is different from the plate width of the elastic pieces 3A1. This difference in the plate width makes a difference in the pressing reaction force, and hence a difference in one of the amplitude and the vibration period. When projected in a vertical direction Z to a plane orthogonal to the vertical direction Z, the four elastic pieces 3A here are provided, on the plane of projection, with two narrow-width elastic pieces 3A1 in a first diagonal direction and two wide-width elastic pieces 3A2 in a second diagonal direction, relative to the substantially rectangular main front surface 3a (see
[0036] In this manner, by including, among the plurality of elastic pieces 3A, an elastic piece having a different amplitude or a different vibration period when vibration is applied, the electronic control component 10 in the above-described assembled state causes vibration having an undulating configuration (a large amplitude on the elastic piece 3A1 side, and a small amplitude on the elastic piece 3A2 side). However, such an imbalanced support configuration that allows undulation can be considered to be a configuration that varies the frequency bands in which the acceleration (vibration frequency) is increased in the individual elastic pieces 3A. That is, this imbalanced support configuration is a configuration in which the frequency bands in which the acceleration is increased in the individual elastic pieces are dispersed. Accordingly, an excessively large acceleration will not be caused in a specific frequency band by resonance.
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[0038] Although the embodiment of this invention has been described above, the embodiment is merely illustrative, and this invention is not limited thereto. Various modifications such as additions and omissions may be made based on the knowledge of a person skilled in the art without departing from the scope of the claims.
[0039] In the following, other embodiments different from the above-described embodiment, and modifications will be described. It is noted that parts having the same functions as those in the above-described embodiment are denoted by the same reference numerals, and the detailed description thereof is omitted. The above-described embodiment and the following examples may be combined to be implemented as appropriate as long as no technical contradiction arises.
[0040] The plurality of elastic pieces 3A in the above-described embodiment include an elastic piece 3A2 having a difference in plate width from at least one elastic piece 3A1. However, as shown in
[0041] The pressing positions of the plurality of elastic pieces 3A in the above-described embodiment at which the elastic pieces 3A press the lower surface 10b of the electronic control component 10 are arranged such that, when projected in a vertical direction Z relative to a plane orthogonal to the vertical direction Z, the four elastic pieces 3A have rotational symmetry on the plane of projection (see
DESCRIPTION OF THE REFERENCE CHARACTERS
[0042] 1 electronic control component bracket
[0043] 10 electronic control component
[0044] 10a upper surface of electronic control component
[0045] 10b lower surface of electronic control component
[0046] 2 engaging portion
[0047] 3 bottom portion
[0048] 3a main front surface of bottom portion
[0049] 3A elastic piece
[0050] 4 side wall portion
[0051] 5 abutting stop portion
[0052] 5a inclined surface