Door mirror structure
The door mirror structure addresses vibration and visibility issues by positioning the electric unit in the side door with an inclined pivot shaft, reducing width and preventing contact, thus enhancing visibility and appearance.
Patent Information
- Application Number
- JP2021168307
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-10-13
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2041-10-13
AI Technical Summary
Conventional door mirror structures experience increased vibration due to vertical moments generated by the electric rotating unit, obstruct visibility with a large front-to-rear width, and protrude from the vehicle when stored, affecting appearance and risking contact with external objects.
The door mirror structure incorporates an electric rotating unit positioned in the side door, with a pivot shaft inclined inward and upward, reducing vertical moments, minimizing the front-to-rear width, and allowing the mirror to retract smoothly against the outer panel, thus suppressing vibration, improving visibility, and preventing contact with external objects.
The solution effectively suppresses mirror vibration, enhances visibility, reduces vehicle width, and improves appearance by ensuring the mirror retracts without contacting the outer panel, while protecting the electric unit from external impacts.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a door mirror structure. [Background technology]
[0002] In conventional door mirror structures, a door mirror structure equipped with an electric rotation unit is known, as described in Patent Document 1, in order to automatically move the door mirror between a usable position and a retracted position.
[0003] This door mirror structure includes a door mirror main body having a mirror, a mirror base that protrudes from the side door in the vehicle width direction, and an electric rotation unit housed in the door mirror main body. The mirror base has a base end and a tip end and extends in the vehicle width direction to form the arm of the door mirror. The base end of the mirror base is fixed to the side door, while the door mirror main body is attached to the tip end of the mirror base so as to be rotatable around a rotation axis that extends in the vertical direction.
[0004] The door mirror body can be moved between a mirror use position and a retracted position by rotating at the tip of the mirror base using the rotational driving force of the electric rotation unit housed inside. In the mirror use position, the door mirror body protrudes outward in the vehicle width direction from the tip of the mirror base, making the mirror visible from inside the vehicle. In the retracted position, the door mirror body extends approximately parallel to the side door. [Prior art documents] [Patent documents]
[0005] [Patent Document 1] Japanese Patent Application Publication No. 2020-179680 Summary of the Invention [Problem to be solved by the invention]
[0006] In the above door mirror structure, the electric folding unit is stored inside the door mirror main body, so the vertical moment generated at the electric rotating unit position increases in proportion to the length of the mirror base, resulting in the problem of increased vibration of the mirror when the vehicle is moving.
[0007] In addition, since the electric rotation unit is housed in the door mirror main body, the front-to-rear width of the door mirror main body (i.e., the width in the fore-and-aft direction of the vehicle) becomes large, and there is a concern that the door mirror main body will obstruct visibility from inside the vehicle cabin.
[0008] Furthermore, in the above structure, the base end of the mirror base is fixed to the side door and the door mirror main body rotates at the tip end of the mirror base. Therefore, in the case of vehicles with a design that requires a long width for the mirror base, even when the door mirror main body moves to the storage position when the mirror is stored, the mirror base protrudes from the outer panel, so it does not fully meet the demand to reduce the vehicle width when the mirror is stored.
[0009] Furthermore, even when the door mirror is in the retracted position, the door mirror body protrudes outward in the vehicle width direction from the side door, making it difficult to improve the appearance and posing a risk of the door mirror coming into contact with objects outside the vehicle.
[0010] The present invention has been made in consideration of the above circumstances, and aims to provide a door mirror structure that can suppress mirror vibration while the vehicle is moving and improve visibility from inside the vehicle cabin, and that can reduce the vehicle width when the mirror is folded down, improve appearance, and avoid contact with objects outside the vehicle. [Means for solving the problem]
[0011] The door mirror structure of the present invention is a door mirror structure for a vehicle side door equipped with an outer panel, and comprises: a door mirror main body having a mirror for providing a rear view of the vehicle; a mirror base having a tip end fixed to the door mirror main body and a base end spaced from the tip end; a rotation support shaft connected to the base end of the mirror base and supporting the door mirror main body and the mirror base rotatably between a mirror use position where the mirror can be seen from inside the vehicle compartment and a retracted position located inward in a vehicle width direction from the mirror use position; and an electric rotation unit that rotates the door mirror main body and the mirror base about an axis of the rotation support shaft to move them between the mirror use position and the retracted position, Inside Arranged in and an output shaft of the electric rotary unit is coaxially connected to the rotary support shaft inside the side door, The pivot shaft is characterized in that it is disposed so as to be inclined inward in the vehicle width direction as it goes upward.
[0012] With this configuration, since the heavy electric rotating unit is arranged in the side door, the vertical moment generated in the door mirror due to road surface input (i.e., mainly vertical vibrations and external forces caused by unevenness in the road surface) while the vehicle is traveling is reduced, making it possible to suppress vibration of the mirror.
[0013] In addition, because the electric rotating unit is arranged in the side door, the front-to-rear width of the door mirror main body can be reduced compared to conventional door mirror structures in which the electric rotating unit is housed in the door mirror main body, thereby improving visibility from inside the vehicle cabin.
[0014] Furthermore, in the above-described door mirror structure having a door mirror body with a mirror and a mirror base to which the door mirror body is fixed at its tip, the electric rotating unit moves the door mirror body and the mirror base from the mirror use position to the storage position. Therefore, when the door mirror body and the mirror base are moved to the storage position, the amount by which the door mirror body and the mirror base protrude in the vehicle width direction from the side of the side door can be reduced, thereby minimizing the vehicle width dimension.
[0015] Furthermore, in the above structure, the pivot shaft is inclined so that it approaches the inside of the vehicle width direction as it goes up, so that when the door mirror main body is in the retracted position, the door mirror main body can be retracted toward the surface of the outer panel of the side door without contacting the outer panel, thereby improving the appearance of the vehicle when the door mirror is retracted and making it possible to prevent contact between the retracted door mirror and objects outside the vehicle.
[0016] In the door mirror structure, the electric rotating unit is disposed in the side door. 。 This makes it possible to protect the electric rotating unit from foreign objects outside the vehicle by the outer surface of the side door.
[0017] In the door mirror structure described above, it is preferable that the outer panel has a through hole through which the pivot shaft passes, and further includes a cover member that covers a gap between the through hole and the pivot shaft from the outside of the vehicle.
[0018] With this configuration, the cover member covers the gap between the through hole in the outer panel and the pivot shaft from the outside of the vehicle, improving the appearance of the vehicle and preventing water from entering the outer panel through the gap.
[0019] In the above door mirror structure, it is preferable that the structure further includes a support member for fixing the electric rotating unit to the side door, and that the electric rotating unit is fixed via the support member to a belt line rain that extends in the fore-and-aft direction of the vehicle along the belt line of the lower edge of the window of the side door.
[0020] According to this configuration, the electric rotating unit is fixed to the belt line rein that constitutes the framework of the side door, thereby improving the support rigidity of the electric rotating unit.
[0021] In the door mirror structure described above, the pivot shaft is preferably disposed at an incline so as to be directed toward the front of the vehicle as it extends upward.
[0022] In this configuration, the pivot shaft is not only inclined inward in the vehicle width direction, but also inclined toward the front of the vehicle as it moves upward. Therefore, when the door mirror main body is in the retracted position, the door mirror main body can be retracted above the outer panel of the side door and closer to the inside in the vehicle width direction without contacting the outer panel. As a result, the appearance of the vehicle when the door mirror is retracted is further improved, and contact between the retracted door mirror and objects outside the vehicle can be further prevented.
[0023] In the above door mirror structure, it is preferable that the side door further includes a door glass arranged on the upper side of the outer panel, and that the door glass is arranged at an angle so that it approaches the inside in the vehicle width direction as it goes upward.
[0024] With this configuration, the door glass is positioned at an angle that moves inward in the vehicle width direction as it moves upward, so that when the door mirror main body is in the stored position, the door mirror main body tilts toward the door glass, so that the door mirror main body is positioned parallel or nearly parallel to the door glass, further improving the appearance of the vehicle when the door mirror is stored.
[0025] In the door mirror structure described above, it is preferable that the rotational support shaft is fixed to the base end of the mirror base and is rotatable around the axis of the rotational support shaft together with the mirror base upon receiving a rotational driving force from the electric rotation unit.
[0026] With this configuration, by rotating the pivot shaft with the electric pivot unit, the door mirror body and mirror base can be moved between the mirror use position and the mirror storage position while rotating around the pivot shaft, which makes it possible to move the door mirror body and mirror base between the mirror use position and the mirror storage position with a simple configuration. [Effects of the Invention]
[0027] The door mirror structure of the present invention can suppress mirror vibration while the vehicle is moving and improve visibility from inside the vehicle. Moreover, it can reduce the vehicle width when the mirror is folded down, improve the appearance, and avoid contact with objects outside the vehicle. [Brief explanation of the drawings]
[0028] [Figure 1] 1 is a perspective view showing the overall configuration of a side door having a door mirror to which a door mirror structure according to an embodiment of the present invention is applied; [Figure 2] FIG. 2 is a view of the door mirror of FIG. 1 as seen from inside the vehicle interior. [Figure 3] 2 is a plan view showing a state in which the door mirror in FIG. 1 is in a mirror use position. [Figure 4] 2 is a plan view showing a state in which the door mirror of FIG. 1 is in a retracted position. [Figure 5] 2 is a view of the door mirror of FIG. 1 in a mirror use position as seen from the front of the vehicle. [Figure 6] 2 is a view of the door mirrors of FIG. 1 in a retracted position as viewed from the front of the vehicle. [Figure 7] 2 is a view of the side door of FIG. 1 with the outer panel removed to expose the belt line rain inside the side door. [Figure 8] 8 is an enlarged view showing a state in which a door mirror and an electric rotating unit are fixed to the belt line rein of FIG. 7. FIG. [Figure 9] 9 is a cross-sectional view taken along the line XX in FIG. 8, with a cover member added. [Figure 10]9 is a cross-sectional view taken along line XX in FIG. 8. [Figure 11] FIG. 10 is a cross-sectional view taken along line XI-XI in FIG. 8. [Figure 12] 12 is a cross-sectional view taken along line XII-XII in FIG. 8, with a cover member added. [Figure 13] 4 is an explanatory diagram showing a state in which the inner surface of the door mirror main body is inclined toward the vehicle exterior with respect to an imaginary line perpendicular to the surface of the mirror, in the door mirror in the mirror use position of FIG. 3. [Figure 14] 4 is an explanatory diagram showing a state in which the visibility from inside the vehicle cabin is improved because the inner surface of the door mirror main body is not visible from inside the vehicle cabin when the door mirror is in the mirror use position shown in FIG. 3. [Figure 15] As a comparative example of the present invention, this figure shows a state in which, in a conventional door mirror, the front-to-rear width of the door mirror main body that houses the electric rotation unit is large, so that the inner surface of the door mirror main body is visible from inside the vehicle cabin, thereby impairing visibility from inside the vehicle cabin. [Figure 16] FIG. 2 is a view from the front of the vehicle showing the state in which the door mirror in FIG. 1 is in the stored position, and is an explanatory diagram showing that the door mirror main body is approaching the outer panel while collapsing into it due to the inward tilt of the pivot shaft. [Figure 17] This is an explanatory diagram showing a comparative example of the present invention in which, in the case of an upright pivot shaft that is not tilted inward, the upright door mirror main body comes into contact with the outer panel when in the stored position, making it impossible to approach the outer panel. [Figure 18] 10 is an explanatory diagram showing a configuration in which the rotation support shaft is tilted forward as well as inward in a door mirror structure according to a modified example of the present invention. FIG. [Figure 19] 19 is an explanatory view showing that the door mirror main body is leaning toward the outer panel while collapsing toward the outer panel due to the inward and forward tilting of the rotation support shaft in FIG. 18. FIG. DETAILED DESCRIPTION OF THE INVENTION
[0029] A preferred embodiment of the present invention will be described in detail below with reference to the accompanying drawings.
[0030] 1 and 2 show a side door 1 of a vehicle to which the door mirror structure of the present invention is applied. In this side door 1, a door mirror 2 is disposed near the belt line BL at the upper end 3a of an outer panel 3 and on the vehicle rear side of an A-pillar 4. A door glass 6 is disposed in a door opening 5 surrounded by the A-pillar 4 and the belt line BL.
[0031] 16, in this side door 1, the door opening 5 is located on the upper side Z1 and on the inner side Y1 in the vehicle width direction of the outer panel 3. Furthermore, the door glass 6 is disposed on the upper side of the outer panel 3, inclined toward the inner side Y1 in the vehicle width direction as it moves upward Z1.
[0032] 1 to 7, the door mirror structure in a vehicle side door 1 according to this embodiment is a structure in which an electrically retractable door mirror 2 is attached to the side door 1. Specifically, the door mirror structure mainly comprises a door mirror main body 11 and a mirror base 12 that constitute the door mirror 2, and an electric rotation unit 13 for moving the door mirror main body 11 and the mirror base 12. The electric rotation unit 13 is disposed inside the side door 1.
[0033] Furthermore, the door mirror structure of this embodiment further includes a pivot shaft 24 (see Figures 11-12) that rotatably supports the door mirror main body 11 and the mirror base 12, a belt line rain 21 that is a skeletal member inside the side door 1, a support member 22 that fixes the electric pivot unit 13 to the belt line rain 21, and a cover member 27 provided on the exterior side of the side door 1.
[0034] Below, each component of the door mirror structure will be explained in order.
[0035] As shown in Fig. 2, the door mirror main body 11 has a mirror 14 for providing a rearward view of the vehicle, and a housing 15. The mirror 14 is an optical mirror that reflects light, and is held on the rear surface of the housing 15 (specifically, the surface that faces rearward when the mirror is in use position P1 in Fig. 3). Inside the housing 15 of the door mirror main body 11, internal devices 37 (see Fig. 12) such as a mirror surface adjustment unit for adjusting the angle of the mirror 14 in the up-down direction Z and the vehicle width direction Y, or a defrosting unit for the mirror 14, are housed.
[0036] The mirror base 12 is a part that forms the arm of the door mirror 2, and as shown in Figures 3 to 6, has a tip end 12b fixed to the door mirror main body 11 and a base end 12a spaced apart from the tip end 12b.
[0037] More specifically, the door mirror main body 11 is fixed to the tip end 12b of the mirror base 12 so that the mirror 14 and the mirror base 12 extend substantially parallel to each other.
[0038] The base end 12a of the mirror base 12 is attached to the side door 1 so that the door mirror main body 11 and the mirror base 12 can be moved between a mirror use position P1 where the mirror 14 can be seen from inside the vehicle cabin through the door opening 5, and a storage position P2 which is located inward in the vehicle width direction Y from the mirror use position P1.
[0039] In this embodiment, the pivotal support shaft 24 shown in Figures 9 to 12 is connected to the base end portion 12a of the mirror base 12, and the pivotal support shaft 24 supports the door mirror main body 11 and the mirror base 12 so that they can rotate freely between the mirror use position P1 (see Figures 3 and 5) and the storage position P2 (see Figures 4 and 6).
[0040] The rotation support shaft 24 extends from the base end portion 12 a into the side door 1 and is rotated by the electric rotation unit 13 .
[0041] 9 to 12, a through hole 26 is formed in the outer panel 3 that constitutes the outer surface of the side door 1. The rotation support shaft 24 is coaxially connected through the through hole 26 of the outer panel 3 to an output shaft 35 (see FIG. 12) described below of the electric rotation unit 13 disposed in the space 20 within the side door 1.
[0042] The electric rotation unit 13 is configured to move the door mirror main body 11 and the mirror base 12 between a mirror use position P1 and a retracted position P2. Specifically, as shown in FIG. 12 , the electric rotation unit 13 includes a casing 31, a motor 32, a reducer 33 that reduces the torque generated by the motor 32, a torque limiter 34, and an output shaft 35 that outputs a rotational driving force. The casing 31 accommodates the motor 32, the reducer 33, the torque limiter 34, and the output shaft 35. The casing 31 also accommodates the rotation support shaft 24 and a bearing 36 that rotatably supports the rotation support shaft 24. Therefore, the main components of the electric rotation unit 13, namely the motor 32, the reducer 33, the torque limiter 34, and the output shaft 35, are arranged on the axis of the rotation support shaft 24. The output shaft 35 is connected to the rotation support shaft 24 so as to be rotatable together with the rotation support shaft 24.
[0043] If excessive torque is generated on the rotary shaft 24 when the motor 31 is operating, the torque limiter 34 can cut off the transmission of the torque, thereby reducing the load on the motor 32.
[0044] The bearing 36 is preferably a ball bearing or a roller bearing that supports the rotational support shaft 24 with little rotational resistance.
[0045] The electric rotating unit 13 is fixed to the belt line rain 21 by a support member 22. In this embodiment, as shown in Figures 9 and 10, the electric rotating unit 13 is fixed to the belt line rain 21 in a state inclined so that it approaches the inside Y1 in the vehicle width direction as it moves upward Z1. As a result, the rotation support shaft 24 extending on the same axis as the electric rotating unit 13 is also arranged inclined so that it approaches the inside Y1 in the vehicle width direction as it moves upward Z1.
[0046] The belt line rain 21 is provided inside the side door 1 and is a framework member that constitutes the framework of the side door 1. As shown in Fig. 7, the belt line rain 21 is fixed to the door inner panel 7 (see Figs. 7 and 12) inside the side door 1 so as to extend in the vehicle longitudinal direction X along the belt line BL at the lower edge of the window of the side door 1 (i.e., the lower edge of the door opening 5 in which the door glass 6 is arranged). The belt line rain 21 of this embodiment is made of an extruded aluminum material.
[0047] 8 to 12, the support member 22 specifically has a semi-cylindrical holding portion 22a and a pair of fixing portions 22b provided on both sides of the holding portion 22a in the vehicle front-rear direction X. The holding portion 22a holds a casing 31 that houses the electric rotating unit 13 and the rotating support shaft 24. The pair of fixing portions 22b are fastened to the belt line rein 21 by bolts 28.
[0048] In addition, in this embodiment, as shown in Figures 9 to 12, the harness 25 extends from the space 20 inside the side door 1 to the door mirror main body 11 and is electrically connected to internal equipment 37 (such as a mirror adjustment unit) inside the door mirror main body 11.
[0049] 11 and 12, the belt line train 21 has a first opening 21a formed in a position facing the holding portion 22a of the support member 22. The casing 31 of the electric rotating unit 13 has a second opening 31a formed in a position facing the first opening 21a. The rotation support shaft 24 of this embodiment has a hollow cylindrical shape, and a third opening 24a is formed in its circumferential surface at a position facing the second opening 31a. Therefore, the harness 25 extends from the inside of the side door 1 through the first opening 21a of the belt line train 21, the second opening 31a of the casing 31, and the third opening 24a of the rotation support shaft 24, and into the rotation support shaft 24 (see the portion 25a of the harness 25 extending upward through the inside of the rotation support shaft 24 in FIG. 11). Furthermore, the harness 25 passes through the inside of the rotation support shaft 24 and the mirror base 12 , extends to an internal device 37 inside the door mirror main body 11 , and is electrically connected to the internal device 37 .
[0050] In addition, in the door mirror structure of this embodiment, the holding portion 22a of the support member 22 has a semi-cylindrical shape, so even when the harness 25 is arranged as described above, the casing 31 can be inserted from above into the holding portion 22a of the support member without the harness 25 interfering with the holding portion 22a.
[0051] The cover member 27 is configured to cover the gap between the through-hole 26 and the rotation support shaft 24 from the outside of the vehicle. Specifically, as shown in Figures 9 to 12, the casing 31 of the electric rotation unit 13 in which the rotation support shaft 24 is housed and the holding portion 22a of the support member 22 covering the casing 31 are exposed to the outside of the vehicle through the through-hole 26 of the outer panel 3. The cover member 27 is located below the base end portion 12a of the mirror base 12, and covers the casing 31 and the holding portion 22a that house the rotation support shaft 24 from the outside of the vehicle, and also covers the gap between the through-hole 26 and the holding portion 22a.
[0052] 13, in order to improve visibility from within the vehicle cabin, the door mirror main body 11 of this embodiment is configured such that, when in the mirror use position P1, in a plan view, the inner surface 11b of the door mirror main body 11 facing the side door 1 is inclined toward the outside of the vehicle (i.e., inclined in the direction away from the side door 1) with respect to an imaginary line L1 that is perpendicular to the surface of the mirror 14 and passes through the inner end portion 11a of the door mirror main body 11 on the side door 1 side. In other words, the inner surface 11b of the door mirror main body 11 extends along a line L2 that starts at the inner end portion 11a of the door mirror main body 11 and extends at an incline toward the outside of the vehicle with respect to the imaginary line L1. In other words, the door mirror main body 11 shown in Figure 13 is configured so that when in the mirror use position P1, in a plan view, the thickness of the door mirror main body 11 in the fore-and-aft direction X becomes smaller (tapered) from the middle position of the door mirror main body 11 in the vehicle width direction Y toward the inner end 11a on the side door 1 side in the vehicle width direction Y.
[0053] By shaping the door mirror main body 11 in this way, the inner surface 11b of the door mirror main body 11 does not block the view from inside the vehicle cabin, as shown in Fig. 14. This makes it possible to ensure a wide view in the space S1 in front of the door mirror main body 11, i.e., the space S1 surrounded by the inner end 11a of the door mirror main body 11, the A-pillar 4, and the belt line BL, thereby improving visibility.
[0054] 15, which is a comparative example of the present invention, in which an electric rotation unit (not shown) is housed in the door mirror main body 51, the front-to-rear width of the door mirror main body 51 increases, and as the front-to-rear width increases, the inner surface 51b of the door mirror main body 51 becomes visible from within the vehicle cabin. This narrows the field of view in the space S2 in front of the door mirror main body 51, i.e., the space S2 surrounded by the inner end 51a of the door mirror main body 51, the A-pillar 4, and the belt line BL, and therefore it can be seen that visibility is reduced.
[0055] (Features of this embodiment) (1) 1 to 10, the door mirror structure of this embodiment is a door mirror structure for a vehicle side door 1 equipped with an outer panel 3. This door mirror structure includes a door mirror main body 11 having a mirror 14 for providing rear visibility of the vehicle, a mirror base 12 having a tip end 12b fixed to the door mirror main body 11 and a base end 12a spaced from the tip end 12b, a rotation support shaft 24 connected to the base end 12a of the mirror base 12 and supporting the door mirror main body 11 and the mirror base 12 so as to be rotatable between a mirror use position P1 where the mirror 14 can be seen from inside the vehicle compartment through the door opening 5 and a storage position P2 located inward in the vehicle width direction Y1 from the mirror use position P1, and an electric rotation unit 13 that rotates the door mirror main body 11 and the mirror base 12 about the axis of the rotation support shaft 24 to move them between the mirror use position P1 and the storage position P2.
[0056] As shown in Figures 7 to 12, the electric rotating unit 13 is disposed in the side door 1. As shown in Figures 9 to 10 and 16, the rotating support shaft 24 is disposed so as to be inclined inward in the vehicle width direction Y1 as it extends upward Z1.
[0057] With this configuration, the heavy electric rotating unit 13 is arranged on the side door 1, so the vertical moment generated in the door mirror due to road surface input (i.e., mainly vertical vibrations and external forces caused by unevenness in the road surface) while the vehicle is traveling is reduced, making it possible to suppress vibration of the mirror.
[0058] In addition, since the electric rotating unit 13 is arranged in the side door 1, the front-to-rear width of the door mirror main body 11 can be reduced compared to conventional door mirror structures in which the electric rotating unit 13 is housed in the door mirror main body 11, thereby improving visibility from inside the vehicle cabin.
[0059] Furthermore, in the above-described door mirror structure including the door mirror main body 11 having the mirror 14 and the mirror base 12 to which the door mirror main body 11 is fixed at the tip 12b, the electric rotating unit 13 moves the mirror base 12 together with the door mirror main body 11 from the mirror use position P1 to the storage position P2. Therefore, when the door mirror main body 11 and the mirror base 12 are moved to the storage position P2, the amount by which the door mirror main body 11 and the mirror base 12 protrude from the side surface of the side door 1 in the vehicle width direction Y can be reduced, making it possible to minimize the vehicle width dimension.
[0060] Furthermore, in the above structure, as shown in Figures 9-10 and 16, the pivot shaft 24 is arranged at an incline so that it approaches the vehicle width direction inward Y1 as it moves upward Z1. Therefore, as shown in Figure 16, when the door mirror main body 11 is in the storage position P2, the door mirror main body 11 can be stored close to the outer panel 3 while collapsing toward the surface of the outer panel 3 without coming into contact with the outer panel 3. In this stored state, the surface 11d of the mirror main body 11 facing the vehicle width direction outward Y2 can be retracted toward the vehicle width direction inward Y1. As a result, the appearance of the vehicle is improved when the door mirrors are stored, and it is also possible to prevent contact between the stored door mirrors 2 and objects outside the vehicle.
[0061] For comparison with FIG. 16 , FIG. 17 shows a comparative example of the present invention in which the door mirror main body 11 is in the retracted position P2 when the pivot shaft 24 is upright and not inclined toward the inner side Y1 of the vehicle width direction. In FIG. 17 , the door mirror main body 11 moves horizontally from the mirror use position P1 to the retracted position P2 while remaining upright. Therefore, at the retracted position P2, the door mirror main body 11 contacts the outer panel 3 and cannot approach the outer panel 3. The door mirror main body 11 protrudes upward Z1 from the surface of the outer panel 3, resulting in an unattractive appearance. Furthermore, in this retracted state, the surface 11d of the mirror main body 11 facing the outer side Y2 of the vehicle width direction cannot be sufficiently retracted toward the inner side Y1 of the vehicle width direction. Therefore, compared to the door mirror structure of this embodiment shown in FIG. 16 , the door mirror structure of the comparative example shown in FIG. 17 has difficulty in both improving the appearance of the vehicle and avoiding contact with external objects when the door mirror is retracted.
[0062] (2) In the door mirror structure of this embodiment, the electric rotating unit 13 is disposed inside the side door 1, so the electric rotating unit 13 can be protected from foreign objects outside the vehicle by the outer panel 3 that forms the outer surface of the side door 1. The electric rotating unit 13 may also be disposed outside the side door 1, but in that case, a large cover member or the like to protect the electric rotating unit 13 would be required.
[0063] (3) In the door mirror structure of this embodiment, a through hole 26 through which the pivot shaft 24 passes is formed in the outer panel 3 that forms the outer surface of the side door 1. The door mirror structure further includes a cover member 27 that covers the gap between the through hole 26 and the pivot shaft 24 from the outside of the vehicle.
[0064] According to this configuration, the cover member 27 covers the gap between the through hole 26 of the outer panel 3 and the pivot support shaft 24 from the outside of the vehicle, thereby improving the appearance of the vehicle and preventing water from entering the outer panel 3 through the gap.
[0065] (4) The door mirror structure of this embodiment further includes a support member 22 that fixes the electric rotating unit 13 to the side door 1. The electric rotating unit 13 is fixed via the support member 22 to a belt line rein 21, which is a framework member that is provided inside the side door 1 and that forms the framework of the side door 1.
[0066] According to this configuration, the electric rotating unit 13 is fixed to the belt line rein 21, which is a framework member that constitutes the framework of the side door 1, thereby improving the support rigidity of the electric rotating unit 13. Also, by fixing the electric rotating unit 13 to the belt line rein 21 that is generally used in conventional door structures, the door mirror structure can be widely adopted in conventional door structures.
[0067] (5) In the door mirror structure of this embodiment, the belt line rain 21 is made of an aluminum extrusion material. With this configuration, since the belt line rain 21 is made of an aluminum extrusion material, it is possible to ensure the support rigidity of the electric rotating unit 13 while also achieving a reduction in the vehicle weight.
[0068] (6) In the door mirror structure of this embodiment, as shown in Fig. 16, the side door 1 further includes a door glass 6 arranged on the upper side Z1 of the outer panel 3. The door glass 6 is arranged at an angle so as to be inclined toward the inside Y1 in the vehicle width direction as it goes upward Z1.
[0069] According to this configuration, the door glass 6 is positioned at an angle so that it slopes inward in the vehicle width direction Y1 as it moves upward Z1. Therefore, when the door mirror main body 11 is in the storage position P2, the door mirror main body 11 tilts toward the door glass 6, so that the door mirror main body 11 is positioned parallel or nearly parallel to the door glass 6, further improving the appearance of the vehicle when the door mirror is stored.
[0070] (7) In the door mirror structure of this embodiment, the pivot shaft 24 is fixed to the base end 12a of the mirror base 12 and is capable of rotating around the axis of the pivot shaft 24 together with the mirror base 12 upon receiving a rotational driving force from the electric rotation unit 13.
[0071] With this configuration, by rotating the rotation support shaft 24 with the electric rotation unit 13, it is possible to move the door mirror main body 11 and the mirror base 12 between the mirror use position P1 and the storage position P2 while rotating them about the rotation support shaft 24. Therefore, it is possible to realize the movement of the door mirror main body 11 and the mirror base 12 between the mirror use position P1 and the storage position P2 with a simple configuration.
[0072] (8) In the door mirror structure of this embodiment, the electric rotation unit 13 (specifically, the main components, that is, the motor 32, the reducer 33, the torque limiter 34, and the output shaft 35) is arranged on the axis of the rotation support shaft 24.
[0073] According to this configuration, the electric rotating unit 13 is disposed on the axis of the rotating support shaft 24, which makes it possible to simplify and compact the configuration of the power transmission system from the electric rotating unit 13 to the rotating support shaft 24. This makes it possible to install the electric rotating unit 13 in the limited space inside the side door 1.
[0074] (9) In the door mirror structure of this embodiment, as shown in Figure 13, when the door mirror main body 11 is in the mirror use position P1, in a plan view, the inner surface 11b of the door mirror main body 11 facing the side door 1 is perpendicular to the surface of the mirror 14 and is inclined toward the outside of the vehicle with respect to an imaginary line L1 passing through the inner end 11a of the door mirror main body 11.
[0075] In this configuration, when the door mirror main body 11 is in the mirror use position P1, the inner surface 11b of the door mirror main body 11 is configured to be inclined toward the outside of the vehicle with respect to the imaginary line L1 perpendicular to the surface of the mirror, so that the inner surface 11b of the door mirror main body 11 does not obstruct the view from inside the vehicle cabin. As a result, it is possible to maximize and further improve visibility from inside the vehicle cabin.
[0076] (10) In the door mirror structure of this embodiment, as shown in FIG. 13, when the door mirror main body 11 is in the mirror use position P1, the thickness of the door mirror main body 11 in the fore-and-aft direction X in a plan view is configured to decrease from the middle position of the door mirror main body 11 in the vehicle width direction Y toward the inner end 11a on the side door 1 side in the vehicle width direction Y.
[0077] In this configuration, when the door mirror main body 11 is in the mirror use position P1, the thickness of the door mirror main body 11 in the front-rear direction X decreases from the middle position in the vehicle width direction Y toward the inner end 11a in the vehicle width direction Y, so that the inner surface 11b of the door mirror main body 11 does not obstruct the view from inside the vehicle compartment. As a result, visibility from inside the vehicle compartment can be maximized and further improved.
[0078] (Variation) (A) In the door mirror structure of the above embodiment, the pivot shaft 24 is inclined (inclined inward) only toward the inside Y1 in the vehicle width direction and is not inclined in the vehicle front-rear direction X, but the present invention is not limited to this. As a modified example of the present invention, in order to store the door mirror body 11 closer to the door opening 5, the pivot shaft 24 may be inclined not only toward the inside Y1 in the vehicle width direction, but also toward the front X1 of the vehicle as it moves upward Z1, as shown in Fig. 18 .
[0079] 18, the electric rotating unit 13 is fixed to the beltline rain 21 in a state in which it is inclined toward the front X1 of the vehicle as it moves upward Z1. As a result, the rotating support shaft 24, which extends on the same axis as the electric rotating unit 13, is also inclined toward the front X1 of the vehicle as it moves upward Z1.
[0080] In the configuration of the modified example shown in FIGS. 18 and 19, the pivot shaft 24 is not only inclined toward the inner side Y1 in the vehicle width direction, but is also inclined toward the front side X1 of the vehicle as it moves upward Z1. Therefore, as shown in FIG. 19, when the door mirror main body 11 is in the storage position P2, the door mirror main body 11 is spaced above Z1 the outer panel 3 of the side door 1, making it possible to ensure a gap δ between the door mirror main body 11 and the outer panel 3. Therefore, when the door mirror main body 11 is in the storage position P2, the door mirror main body 11 can be stored in a position above Z1 and closer to the inner side Y1 in the vehicle width direction (specifically, toward the door opening 5) than the outer panel 3 of the side door 1 without contacting the outer panel 3. As a result, the appearance of the vehicle is further improved when the door mirrors are stored, and it is also possible to further prevent contact between the door mirrors 2 in the stored state and objects outside the vehicle.
[0081] (B) In the above embodiment, the rotational support shaft 24 is fixed to the base end 12a of the mirror base 12 and is rotatable together with the mirror base 12 about the axis S of the rotational support shaft 24 (see FIG. 12 ) by receiving a rotational driving force from the electric rotation unit 13, but this embodiment is not limited to this. The present invention may be configured so long as the rotational support shaft 24 is connected to the base end 12a of the mirror base 12 and the electric rotation unit 13 rotates the door mirror main body 11 and the mirror base 12 about the axis S of the rotational support shaft 24. Therefore, as a modified example of the present invention, the rotational support shaft 24 may be a stationary shaft that does not rotate, the base end 12a of the mirror base 12 is attached so as to be rotatable relative to the rotational support shaft 24, and the electric rotation unit 13 may directly rotate the mirror base 12 without going through the rotational support shaft 24.
[0082] (C) The term "mirror" in the present invention includes various means for providing a rear view of the vehicle. For example, in addition to the optical mirror 14 that provides a rear view by reflecting light from behind the vehicle as in the above embodiment, the concept of the mirror in the present invention also includes a so-called digital mirror that is equipped with a television camera in the door mirror body 11 and can provide a rear view using the television camera. [Explanation of symbols]
[0083] 1 side door 2 Door mirrors 3 Outer panel 5 Door opening 11 Door mirror body 11b Inside surface 12 Mirror Base 12a Proximal end 12b Tip 13 Electric Rotation Unit 14. Mirror 21 Beltline Rain 22 Support member 24 Rotation spindle 26 Through hole 27 Cover member 31 Casing 32 motor 33 Reducer 34 Torque limiter 35 output shaft 36 Bearings BL Belt Line P1 Mirror use position P2 storage position
Claims
1. A door mirror structure for a vehicle side door having an outer panel, a door mirror body having a mirror for providing a rear view of the vehicle; a mirror base having a tip portion fixed to the door mirror main body and a base portion spaced from the tip portion; a pivot shaft connected to the base end of the mirror base, which pivotally supports the door mirror body and the mirror base between a mirror use position where the mirror can be seen from inside the vehicle compartment and a storage position which is located inward in the vehicle width direction from the mirror use position; an electric rotation unit that rotates the door mirror body and the mirror base about the axis of the rotation support shaft to move the door mirror body and the mirror base between the mirror use position and the storage position; It is equipped with the electric rotating unit is disposed inside the side door, and an output shaft of the electric rotating unit is coaxially connected to the rotating support shaft inside the side door, The pivot shaft is disposed so as to be inclined inward in the vehicle width direction as it goes upward. A door mirror structure characterized by the above.
2. The door mirror structure according to claim 1, The outer panel has a through hole through which the pivot shaft passes, a cover member that covers a gap between the through hole and the pivot shaft from the vehicle exterior side; A door mirror structure characterized by the above.
3. The door mirror structure according to claim 1 or 2, a support member for fixing the electric rotating unit to the side door; The electric rotating unit is fixed via the support member to a belt line train that extends in the vehicle front-rear direction along a belt line at a lower edge of a window of the side door. A door mirror structure characterized by the above.
4. The door mirror structure according to any one of claims 1 to 3, The pivot shaft is disposed at an incline so as to extend upward toward the front of the vehicle. A door mirror structure characterized by the above.
5. The door mirror structure according to any one of claims 1 to 4, The side door further includes a door glass disposed above the outer panel, The door glass is inclined inward in the vehicle width direction as it goes upward. A door mirror structure characterized by the above.
6. The door mirror structure according to any one of claims 1 to 5, the rotation support shaft is fixed to a base end of the mirror base, and is rotatable around the axis of the rotation support shaft together with the mirror base by receiving a rotational driving force from the electric rotation unit; A door mirror structure characterized by the above.
Citation Information
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