VEHICLE DOOR HINGE AND METHOD FOR MANUFACTURING SAME
20170321463 · 2017-11-09
Assignee
Inventors
Cpc classification
E05D9/00
FIXED CONSTRUCTIONS
B21D53/88
PERFORMING OPERATIONS; TRANSPORTING
B21D53/40
PERFORMING OPERATIONS; TRANSPORTING
E05D11/06
FIXED CONSTRUCTIONS
International classification
E05D11/06
FIXED CONSTRUCTIONS
B21D53/40
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A vehicle door includes a fixed bracket having a base plate part fixed by a bolt to an attachment surface of a vehicle body, and a pair of bent pieces bent at a right angle in relation to the base plate part and set apart from each other in the axial direction of a hinge shaft. In the bent pieces are formed: a shaft hole in which the hinge shaft is inserted; and a raised stopper part projecting from the inner-side surface of the bent piece, the raised stopper part coming into contact with a stopped part of a movable bracket, whereby the movable bracket is stopped in the fully open position.
Claims
1. A vehicle door hinge comprising: a moving bracket fixed to a mounting surface of a door; a fixed bracket fixed to a mounting surface of a vehicle body; and a hinge shaft pivotably linking the moving bracket and the fixed bracket, wherein the fixed bracket comprises a base portion fixed to the mounting surface of the vehicle body with a bolt, and a pair of bent portions bent at right angles from the base portion and spaced from each other in axial direction of the hinge shaft, wherein each of the pair of bent portions comprises a shaft hole in which the hinge shaft is disposed, and a raised stopper part projecting from the inner-side surface of the bent portion, for stopping the moving bracket at the full open position of the door when the raised stopper part hits a stopped part of the moving bracket, wherein, when the moving bracket is in a fully open position, the raised stopper part is extended linearly from an end face of the bent portion that faces the mounting surface of the door toward the stopped part of the moving bracket, and the extend end of the raised stopper part provides a stopper surface where the stopped part is abutted.
2. A method of manufacturing a vehicle door hinge: wherein the vehicle door hinge comprises, a moving bracket fixed to a mounting surface of a door; a fixed bracket fixed to a mounting surface of a vehicle body; and a hinge shaft pivotably linking the moving bracket and the fixed bracket, wherein the fixed bracket comprises a base portion fixed to the mounting surface of the vehicle body with a bolt, and a pair of bent portions bent at right angles from the base portion and spaced from each other in axial direction of the hinge shaft, wherein each of the pair of bent portions comprises a shaft hole in which the hinge shaft is inserted, and a raised stopper part projecting from the inner-side surface of the bent portion, for stopping the moving bracket at the full open position of the door when the raised stopper part hits a stopped part of the moving bracket, wherein a process for manufacturing the fixed bracket by processing a metal plate material comprises steps of, a first step for bending the bent portion at right-angles to the base portion by press molding, a second step for making the shaft hole to the bent portion which is bent, and a third step for projecting and forming the raised stopper part to the bent portion which is bent.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE EMBODIMENTS
[0030] Hereinafter, the best embodiment of the present invention is described by reference to drawings.
[0031] As shown in
[0032] As shown in
[0033] As shown in
[0034] With respect to the lower door hinge 1 and the upper door hinge 10, although they are different in shape, since function and manufacturing process of each part of them are the same, in the following descriptions, only the lower door hinge 1 is described. About the upper door hinge 10, the reference letter “0” is given to the end of each reference letter given to each element which has the same function as the lower door hinge 1, and detailed description is omitted.
[0035] The moving bracket 2 of the lower door hinge (hereinafter referred to as “a door hinge”) 1 is pressingly molded of a steel plate, and integrally molded with a pair of upper and lower fixing portions 21, 21 fixed to a mounting surface D1 (refer to
[0036] The fixed bracket 3 is pressingly molded of a steel plate, and is integrally molded with a base portion 31 fixed to the mounting surface B1 facing the vehicle outside of the pillar B with two bolts 5 and two nuts 6 in front and in the rear, a pair of bent portions 32, 32 which are bent to the outside of the vehicle at right angles to the base portion 31 at the upper and lower portions of the base portion 31 and are spaced from each other in axial direction of the hinge shaft 4, and a connecting portion 33 tilted at a predetermined angle to the base portion 31 in the rear portion of the base portion 31. The connecting portion 33 is formed in parallel with the hinge shaft 4 so that a corner 32b and its neighborhoods of both bent portions 32 may be connected.
[0037] Each of the bent portions 32 has the corner 32b close to the mounting surface B1 of the pillar B, and an internal corner 32g of L-shaped when seen axially of the hinge shaft 4, in the side which faces to the outside of the vehicle, and is like an L-shape (refer to
[0038] As shown in
[0039] In order to improve rigidity of the bent portions 32 in the direction of the board thickness, there is provided a projection 32d which extends straight from the portion where containing intersection of both bent portions 32 and the base portion 31 towards the outside of the vehicle, on the upper surface of the upper bent portion 32 and on the lower surface of the lower bent portion 32. Further, in the pivot portion 32a of each bent portion 32, there is provided a raised stopper part 32e for restricting the full open position of the door RD and a shaft hole 32f (refer to
[0040] As shown in
[0041] The raised stopper part 32e provided in each bent portion 32 of the door hinge 1 projects from an internal surface (from a lower surface at the upper pivot portion 32a, from an upper surface at the lower pivot portion 32a) to an inner side (to a bottom side at the upper pivot portion 32a, to an upper side at the lower pivot portion 32a), and the raised stopper part 32e is extended linearly from each end face 32c of each bent portion 32 to the stopped part 22a of the moving bracket 2, when the moving bracket 2 is in the state of a full open position, as shown in
[0042] As shown in
[0043] As mentioned above, since the raised stopper parts 32e can be made into bigger shape as compared with a prior art, by extending the raised stopper parts 32e from each end face 32c to the stopped parts 22a of the moving bracket 2 and making the extend ends as the stopper surfaces 321e, the strengthen of the raised stopper parts 32e can be improved and the accuracy of the position for restricting the full open position of the door RD can be raised.
[0044] As shown in
[0045] As shown in
[0046] Further, as shown in
[0047] The hinge shaft diameter region L is defined such as, when seen axially of the hinge shaft 4 as shown in
[0048] Now, deformation of the fixed bracket 3 is explained in detail. As shown in
[0049] Next, a manufacturing method of the fixed bracket 3 is explained by reference to
[0050] Regarding fixed bracket 3, as mentioned above, on the axial directional vision of the hinge shaft 4, each end face 32c of each bent portion 32 is formed at right angles or approximately right angles with respect to the mounting surface B1 of the pillar B, and the rear end 34a of the connecting portion 33 agrees with the end face 32c of each bent portion 32. Thus, the development view of the fixed bracket 3 becomes T-shaped, as shown in
[0051] Then, at the process shown in
[0052] Then, at the process shown in
[0053] Then, at the process shown in
[0054] As mentioned above, by molding the raised stopper part 32e and the shaft hole 32f into each bent portion 32, after molding both the bent portions 32 by folding by press forming, the influence of the spring back to the both bent portions 32 formed by bending processing can be minimized, and the accuracy of position of the raised stopper part 32e and the shaft hole 32f can be improved.
[0055] Regarding the raised stopper part 32e, molding of the raised stopper part 32e can be made easy and strength improvement can be planned, by having the form which extends from the end face 32c of each bent portion 32 towards the stopper portion 22a where the moving bracket 2 is in a full open position, and makes the end of the direction to extend as the stopper surface 321e, by side pierced molding of the press molding.
[0056] The foregoing description relates to the embodiments of the present invention. Various changes and deformations may be made within the scope which does not deviate from the summary of the present invention.
[0057] For example, in the side pierced molding process of press molding in the method for manufacturing the fixed bracket 3,
[0058] Making each shaft hole 32f after projecting and forming each raised stopper part 32e.
[0059] Simultaneously projects and forms the raised stopper part 32e in both of bent portions 32, respectively.
[0060] Simultaneously projecting and forming each shaft holes 32f in both of bent portions 32, respectively.
[0061] Simultaneously forming each raised stopper part 32e and each shaft hole 32f, in the bent portions 32.