Hood hinge structure
09752362 ยท 2017-09-05
Assignee
Inventors
Cpc classification
E05D9/00
FIXED CONSTRUCTIONS
E05D11/10
FIXED CONSTRUCTIONS
International classification
E05D5/00
FIXED CONSTRUCTIONS
E05D9/00
FIXED CONSTRUCTIONS
E05D11/10
FIXED CONSTRUCTIONS
Abstract
A hood hinge structure includes a hood hinge base (12) and a hood hinge arm (14). The hood hinge base is fixed to a vehicle body. The hood hinge arm includes a supported portion (22) and a fixed portion (24). The supported portion is provided at a base end side of the hood hinge arm and is supported by the hood hinge base. The fixed portion (24) is provided at a tip end side of the hood hinge arm and is fixed to a hood. At least a portion of the hood hinge arm from the supported portion to the fixed portion has a laminated structure.
Claims
1. A hood hinge structure comprising: a hood hinge base that is fixed to a vehicle body; and a hood hinge arm that includes a supported portion and a fixed portion, the supported portion being provided at a base end side of the hood hinge arm and being pivotally supported by the hood hinge base, and the fixed portion being provided at a tip end side of the hood hinge arm and being fixed to a hood, wherein at least a portion of the hood hinge arm from the supported portion to the fixed portion has a laminated structure, the hood hinge arm is formed of a single sheet, the supported portion and the fixed portion each have the laminated structure formed of the single sheet that is bent, the laminated structure of the fixed portion is bent to have a base wall portion and a side wall portion, the base wall portion extends along the hood and has insertion holes into which bolts are inserted, and the base wall portion is fixed to the hood with the bolts.
2. The hood hinge structure according to claim 1, wherein the hood hinge arm includes an intermediate portion that consists of a non-laminated structure, between the supported portion and the fixed portion.
3. The hood hinge structure according to claim 2, wherein the intermediate portion is directly connected to the supported portion and the fixed portion.
4. The hood hinge structure according to claim 1, wherein laminated portions each having the laminated structure are arranged spaced apart in a longitudinal direction of the fixed portion, at the fixed portion.
5. The hood hinge structure according to claim 4, wherein the laminated portions are folded back in the longitudinal direction of the fixed portion.
6. The hood hinge structure according to claim 1, further comprising: a vibration absorbing member interposed between layers in at least a portion of the portion forming the laminated structure.
7. The hood hinge structure according to claim 6, further comprising: a spacer having a thickness corresponding to a thickness of the vibration absorbing member, wherein the spacer is interposed between the layers in the laminated structure at a peripheral edge portion of each insertion hole.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Features, advantages, and technical and industrial significance of exemplary embodiments of the invention will be described below with reference to the accompanying drawings, in which like numerals denote like elements, and wherein:
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DETAILED DESCRIPTION OF EMBODIMENTS
(12) A hood hinge structure according to one example embodiment of the invention will now be described with reference to
(13) As shown in
(14) The hood hinge base 12 is formed by press-forming a steel sheet, for example. This hood hinge base 12 includes a fixed portion 16 that is fixed to the vehicle body, and a supporting portion 18 that supports a hood hinge arm 14. Also, the hood hinge base 12 is fixed to the vehicle body by bolts 20 that are inserted through the fixed portion 16 being screwed into weld nuts or the like that are fixed to the vehicle body.
(15) The hood hinge arm 14 is formed by, for example, press-forming, e.g., bending, a single steel sheet that has been cut into a predetermined shape. This hood hinge arm 14 includes the supported portion 22 and the fixed portion 24, as well as an intermediate portion 26 that connects the supported portion 22 and the fixed portion 24 together. A pin 28 is inserted through the supported portion 22. The hood hinge arm 14 is pivotally supported on the hood hinge base 12 by having one end of this pin 28 be fixed to the supporting portion 18 of the hood hinge base 12. Also, the intermediate portion 26 and the fixed portion 24 have a base wall portion 30 that extends along a hood, not shown, and a side wall portion 32 that extends bent towards the vehicle lower side from a vehicle width direction outside end of the base wall portion 30. A generally L-shaped cross-section is formed by the base wall portion 30 and the side wall portion 32 when viewed from the front of the vehicle.
(16) In this example embodiment, the supported portion 22 and the fixed portion 24 of the hood hinge arm 14 have laminated structures. More specifically, the supported portion 22 has a double layered structure formed by a portion of the steel sheet being folded over, and then this portion of the steel sheet being made to contact another portion of the steel sheet in the plate thickness direction. An inside portion of the supported portion 22 in the vehicle width direction will be referred to as a first layer forming portion L1. Also, an outside portion of the supported portion 22 in the vehicle width direction will be referred to as a second layer forming portion L2. The second layer forming portion L2 closely contacts, in the plate thickness direction, an outside of the first layer forming portion L1 in the vehicle width direction.
(17) As shown in
(18) Next, the operation and effects of this example embodiment will be described.
(19) As shown in
(20) Also, in this example embodiment, the hood hinge arm 14 that has the supported portion 22 and the fixed portion 24 that have laminated structures is able to be obtained by a single steel sheet being bent. As a result, an increase in the number of parts that form the hood hinge arm 14 is able to be suppressed. Moreover, in this example embodiment, formability when the intermediate portion 26 is press-formed is able to be improved (i.e., the degree of freedom regarding the shape of the intermediate portion 26 is able to be improved) by not having the intermediate portion 26 that is between the supported portion 22 and the fixed portion 24 of the hood hinge arm 14 be a laminated structure.
(21) In this example embodiment, an example in which the hood hinge arm 14 having the supported portion 22 and the fixed portion 24 that are laminated structures is formed by a single steel sheet being bent is described, but the invention is not limited to this. For example, a hood hinge arm that has a supported portion and a fixed portion that are laminated structures may be formed by overlapping a plurality of sheets of a predetermined thickness and joining them together.
(22) Also, in this example embodiment, an example in which the intermediate portion 26 that is between the supported portion 22 and the fixed portion 24 of the hood hinge arm 14 is not a laminated structure is described, but the invention is not limited to this. For example, the entire hood hinge arm may be a laminated structure.
(23) Furthermore, in this example embodiment, an example in which the supported portion 22 and the fixed portion 24 of the hood hinge arm 14 are double layered laminated structures is described, but the invention is not limited to this. For example, a fixed portion 36 of the hood hinge arm 14 may also be a three layered laminated structure, as in a first modified example shown in
(24) Next, fixed portions 38 and 40 according to modified examples of the example embodiment described above will be described with reference to
(25) As shown in
(26) Also, as shown in
(27) As shown in
(28) With the hood hinge arms 14 having the fixed portions 38 and 40 according to second and third modified examples described above, vibration that is transmitted through the hood hinge arm 14 is able to be effectively damped by the vibration absorbing member 42.
(29) Next, fixed portions 46 and 48 according to modified examples of the example embodiment described above will be described with reference to
(30) As shown in
(31) As shown in
(32) With the fixed portion 46 according to the fourth modified example described above, having the laminated portion 50 of the structure described above enables vibration transmitted in the longitudinal direction of the fixed portion 46 to be effectively damped. Moreover, a structure in which two of the laminated portions 50 are arranged a predetermined distance apart from each other in the longitudinal direction of the fixed portion 48, such as that of the fixed portion 48 in the fifth modified example, enables vibration transmitted in the longitudinal direction of the fixed portion 48 to be even more efficiently damped.
(33) Also, interposing the vibration absorbing member 42 between the second layer forming portion L2 and the third layer forming portion L3 of the laminated portion 50, as it is with fixed portions 52 and 54 according to sixth and seventh modified examples shown in
(34) While the invention has been described with reference to the example embodiment and modified examples thereof, the invention is not limited to the foregoing description, but may be embodied with various other modifications without departing from the scope of the invention.