Steering structure

The steering structure addresses the grip issue of irregular wheels by incorporating a central space and curved lower edge, enhancing grip and reducing fatigue through intuitive controls and displays.

JP7797282B2Active Publication Date: 2026-01-13HONDA MOTOR CO LTD
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Patent Information

Application Number
JP2022057962
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-03-31
Publication Date
2026-01-13
Estimated Expiration
2042-03-31

AI Technical Summary

Technical Problem

Irregular steering wheels, such as D-shaped wheels, lack a suitable grip area when the driver holds the bottom edge, making it difficult to maintain a secure hold.

Method used

A steering structure with a rectangular rim portion featuring a central front-to-rear space and a curved portion on the lower edge that curves towards the upper edge, along with lower flat portions and optional soft pads or switches, enhances grip and comfort.

Benefits of technology

Improves holding performance and reduces hand fatigue by providing a secure grip and intuitive operation, allowing for easy access to controls and displays.

✦ Generated by Eureka AI based on patent content.

Smart Images

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Abstract

To achieve high retention capacity of a steering of an irregular shape.SOLUTION: In a steering structure having a rim part 1 of a rectangular shape grasped by a driver, a space 9 penetrating in a cross direction is provided at the center of the rim part 1, and a curved part 2 curving toward the upper side of the rim part 1 is provided at the center of the lower side of the rim part 1.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a steering structure. [Background technology]

[0002] In recent years, irregular steering wheels, including D-shaped steering wheels, have become popular. A D-shaped steering wheel is a steering wheel with a straight bottom edge.

[0003] Such irregularly shaped steering wheels not only function as a steering wheel, but can also be equipped with a camera to capture and monitor the driver (see Patent Document 1). Use as a steering module equipped with a display unit that displays meter components is also being considered (see Patent Document 2). [Prior art documents] [Patent documents]

[0004] [Patent Document 1] JP 2020-111216 A [Patent Document 2] JP 2020-185805 A Summary of the Invention [Problem to be solved by the invention]

[0005] When a driver grips the irregular steering wheels described in Patent Documents 1 and 2, they usually grip either the left or right side of the rim or the bottom edge of the rim. However, when a driver grips the bottom edge of the rim, there is no part to hold on to, which can make it difficult to hold the steering wheel.

[0006] The present invention has been made in view of the above circumstances, and an object of the present invention is to provide a steering structure that can improve the holding performance of an irregular steering wheel. [Means for solving the problem]

[0007] That is, in order to solve the above-mentioned problems of the present invention, the steering structure is a steering structure having a rectangular rim portion that is gripped by the driver, characterized in that a space that penetrates in the front-to-rear direction is provided in the center of the rim portion, and a curved portion that curves toward the upper edge side of the rim portion is provided in the center of the lower edge of the rim portion. [Effects of the Invention]

[0008] According to the present invention, the holding performance of an irregular steering wheel can be improved. [Brief explanation of the drawings]

[0009] [Figure 1] 1 is a perspective view of a steering device according to a first embodiment. [Figure 2] FIG. 2 is a partially enlarged view of the lower flat portion of FIG. [Figure 3] FIG. 10 is a perspective view of a steering device according to a second embodiment. [Figure 4] FIG. 4 is a partially enlarged view of a flat portion of the lower side of FIG. 3. [Figure 5] FIG. 10 is a perspective view of a steering device according to a third embodiment. [Figure 6] FIG. 6 is a partially enlarged view of a curved portion of FIG. 5. [Figure 7] FIG. 7 is a cross-sectional view taken along the line VII-VII shown in FIG. 5. DETAILED DESCRIPTION OF THE INVENTION

[0010] The following describes in detail embodiments of the present invention. The embodiments described below are merely examples for realizing the present invention, and should be appropriately modified or changed depending on the configuration of the device to which the present invention is applied and various conditions. The present invention is not limited to the following embodiments. In addition, in each drawing, the same components are given the same reference numerals, and their explanations will be omitted as appropriate. In the description, the front, back, up, down, left and right are based on the front, back, up, down, left and right from the driver's perspective.

[0011] First Embodiment Fig. 1 is a perspective view of a steering device according to a first embodiment, and Fig. 2 is a partially enlarged view of a lower flat portion of Fig. 1.

[0012] As shown in FIG. 1, a steering device 10 (steering structure) according to the first embodiment is a component for operating the steering wheel of a vehicle, and controls the direction of travel of the vehicle by being rotated by the driver.

[0013] The steering device 10 is configured with a rim portion 1 and a curved portion 2. The rim portion 1 is the outer edge portion that constitutes the steering wheel of the steering device 10. The rim portion 1 is a so-called irregular steering wheel, and has a rectangular shape. More specifically, the upper and lower sides of the rim portion 1 extend in a substantially horizontal direction. The left and right sides of the rim portion 1 extend in a substantially vertical direction. The upper side of the rim portion 1 is gently curved so that it is convex upward. The rectangular shape of the rim portion 1 allows the driver to grasp the left and right sides of the rim portion 1 or the left and right sides of the lower side of the rim portion 1. When viewed from the front, the rim portion 1 is formed from a ring-shaped member that is substantially horizontally elongated and is longer in the left-right direction than in the up-down direction.

[0014] The steering device 10 has a space 9 provided in the center of the rim portion 1. The space 9 penetrates the rim portion 1 in the front-to-rear direction. Since the space 9 is located inside the rim portion 1, it is a rectangular space, just like the rim portion 1.

[0015] The steering device 10 has a curved portion 2 in the center of the lower side of the rim portion 1. The curved portion 2 is curved so as to convex toward the upper side of the rim portion 1. The curved portion 2 is raised in the center of the lower side of the rim portion 1, with both sides of the raised portion rising downward toward the lower side. An upwardly recessed recess 2c is formed on the underside of the curved portion 2.

[0016] On both sides of the curved portion 2 in the vehicle width direction, lower flat portions 3 and 4 are provided that extend in the vehicle width direction on the lower side of the rim portion 1. The lower flat portions 3 and 4 are formed symmetrically on both sides of the curved portion 2. The length of the lower flat portions 3 and 4 in the vehicle width direction is longer than the length of the curved portion 2 in the vehicle width direction.

[0017] The flat lower edge portions 3, 4 are provided with inclined surfaces 3a, 4a. When viewed from the direction of travel of the vehicle toward the driver's seat, the inclined surfaces 3a, 4a are formed so that the closer to the driver's seat, the lower the flat lower edge portions 3, 4 are. The angle between the flat lower edge portions 3, 4 and the inclined surfaces 3a, 4a can be set to a predetermined angle. For example, the inclined surfaces 3a, 4a are positioned at an angle that makes it easy for the driver to rest their wrists, based on a position parallel to the lower surface of the upper edge of the rim portion 1.

[0018] The rim portion 1 is provided with a switch 4b on at least one of the two bottom flat portions 3, 4. In Figures 1 and 2, as an example, the switch 4b is provided on the bottom flat portion 4 on the right side.

[0019] The switch 4b has directional keys indicating up, down, left, and right directions and a selection / determination button located in the center of the directional keys. The switch 4b is a hardware switch or a touch panel switch. The switch 4b is a switch for operating, for example, an audio system, a car navigation system, an air conditioner, a cruise control device, and the like.

[0020] 1, as an example, the switch 4b is provided on the bottom flat portion 4, but it may be provided on both the bottom flat portion 3 and the bottom flat portion 4. Furthermore, the switch 4b is not limited to a hardware switch or a touch panel switch, and any desired switch such as a button switch or a dial switch can be used.

[0021] Additionally, rim support parts 44 extend from both sides of the upper edge of rim part 1 in the direction of vehicle travel. Rim support parts 44 are provided to fix rim part 1 to a fixed frame 43 (see FIG. 7, which will be described later). When the driver rotates rim part 1, rim support parts 44 also rotate in conjunction with it.

[0022] As described above, the steering device 10 according to the first embodiment is a steering structure of a steering wheel having a rectangular rim portion 1 that is gripped by the driver, and has a space 9 that penetrates in the front-to-rear direction at the center of the rim portion 1, and has a curved portion 2 at the center of the lower edge of the rim portion 1 that curves toward the upper edge of the rim portion 1. According to this configuration, the steering device 10 according to the first embodiment has the curved portion 2, so that when the driver places his or her hands on the lower side of the rim portion 1, the driver can pass his or her left and right thumbs through the spaces below the curved portion 2. This allows the driver to improve the driver's ability to hold the steering wheel.

[0023] Furthermore, since the rim portion 1 is formed in a rectangular shape, the direction of the tire transmitted to the steering device 10 can be intuitively understood. Furthermore, the steering device 10 has a space 9 in the center of the rim portion 1, whereby, for example, a display 21 (see FIG. 3 or FIG. 5) or a meter (not shown) can be installed. As shown in FIG. 3 or FIG. 5 described below, for example, the display 21 can be arranged in the space 9. The display 21 may be one that is built into the vehicle, or may be a detachably attached tablet or the like. Note that what is arranged in the space 9 is not limited to the display 21, and may also be a button such as a switch or a meter such as a speedometer.

[0024] The display 21 constitutes a liquid crystal display unit and displays, for example, vehicle speed, engine speed, a water temperature gauge, and various other meters. The display 21 can also switch the meter display to images corresponding to, for example, a car navigation system or audio. Therefore, the steering device 10 has a space 9 for mounting the display 21, and by placing the display 21 in the center of the rim portion 1, the display 21 can display a large amount of information. Furthermore, because there are no spokes in the center of the rim portion 1, a wide display range for the display 21 can be secured, and a large amount of information appropriate for passengers can be displayed.

[0025] In addition, lower edge flat portions 3, 4 are provided on both sides of the curved portion 2 in the vehicle width direction, extending in the vehicle width direction of the lower edge of the rim portion 1, and the lower edge flat portions 3, 4 have inclined surfaces 3a, 4a that slope downward as they approach the driver's seat side. With this configuration, while driving, for example, when the vehicle is being driven automatically, the driver can place his or her hands on the lower flat portions 3, 4, thereby reducing hand fatigue caused by driving. In particular, because the lower flat portions 3, 4 have the inclined surfaces 3a, 4a, the driver can drive with his or her hands naturally placed on the inclined surfaces 3a, 4a without exerting force on his or her arms or elbows.

[0026] In addition, the steering device 10 has a steering wheel on at least one of the two lower flat portions 3 and 4. A switch 4b is provided. According to this configuration, the switch 4b is provided on the lower flat portions 3, 4, so the driver can operate the switch 4b without spoiling the aesthetic appearance of the steering device 10. In this case, the driver can also operate functions provided in the vehicle, such as the display 21 and air conditioner, without removing his or her hands from the rim portion 1.

[0027] <Second embodiment> Fig. 3 is a perspective view of a steering device according to a second embodiment. Fig. 4 is a partially enlarged view of a flat portion of the lower side of Fig. 3. The steering device shown in Fig. 3 is configured to include a display in a space.

[0028] As shown in Fig. 3, a steering device 20 according to the second embodiment has a rim portion 11, and the rim portion 11 has a curved portion 12 at the center of the bottom edge that curves toward the top edge of the rim portion 11. The steering device 20 according to the second embodiment has basically the same configuration as the steering device 10 according to the first embodiment. That is, the curved portion 12 in Fig. 3 corresponds to the curved portion 2 in Fig. 1, and the bottom edge flat portions 13 and 14 in Fig. 3 correspond to the bottom edge flat portions 3 and 4 in Fig. 1 and have inclined surfaces 13a and 14a.

[0029] The second embodiment differs from the first embodiment in that, instead of a switch 4b being provided on at least one of the lower flat portions 3 and 4, soft pads 13b and 14b are provided on each lower flat portion 13 and 14 for the driver to place their hands on.

[0030] The upper surface of each of the soft pads 13b, 14b is formed substantially parallel to the upper surface of the inclined surfaces 13a, 14a. Each of the soft pads 13b, 14b is made of, for example, vinyl chloride, and is made of a material that has elasticity and feels soft when touched by the driver's wrist. The soft pads 13b and 14b have recesses 13c and 14c at the center in the vehicle width direction. The soft pads 13b and 14b are formed symmetrically with respect to the curved portion 12.

[0031] As described above, the steering device 20 according to the second embodiment is provided with soft pads 13b, 14b on each lower flat portion 13, 14 for the driver to place his / her hands on, and the soft pads 13b, 14b have recesses 13c, 14c in the center in the vehicle width direction.

[0032] According to this configuration, each of the soft pads 13b, 14b has the recesses 13c, 14c, which improves the holding performance of each of the soft pads 13b, 14b for holding the driver's wrist, thereby improving comfort. Also, each of the soft pads 13b, 14b is made of a material that is elastic and soft to the touch, which improves the fit of the wrist.

[0033] Furthermore, each of the soft pads 13b, 14b may have a sensor mounted therein to receive biological information of the driver from the wrist, and the biological information may be used for a driving assistance function (driving assistance function). Also, by mounting a heating wire inside the soft pads 13b, 14b, the wrist can be kept warm, improving comfort.

[0034] <Third embodiment> Fig. 5 is a perspective view of a steering device according to a third embodiment. Fig. 6 is a partially enlarged view of a curved portion of Fig. 5. Note that the steering device shown in Fig. 5 is shown equipped with a display, as in the second embodiment.

[0035] As shown in FIG. 5, a steering device 25 according to the third embodiment has the same structure as that of the first embodiment. In the steering device 10, the upper surface 17 of the curved portion 2 has a curved portion flat surface 2a that extends horizontally in the vehicle width direction.

[0036] The curved portion flat surface 2a extends horizontally in the vehicle width direction, and is parallel to the upper and lower edges of the rim portion 1. The curved portion flat surface 2a is provided with a switch 2b. The switch 2b is located in the center of the curved portion 2, and when the driver places his / her wrist on the lower edge flat portions 3, 4, it is positioned close to the left and right thumbs. The length of the curved portion flat surface 2a in the vehicle width direction can be changed depending on the number of switches 2b. For example, if it is desired to install many switches 2b, it is possible to install many functions by making the curved portion flat surface 2a longer in the vehicle width direction. The type of switch 2b is not particularly limited, and may be a hardware switch, a touch panel switch, or the like.

[0037] At least one pointing stick 5, 5a is provided on the bending portion 2 at the lower side of the rim portion 1. The pointing stick 5 is a member for operating, for example, a cursor or pointer displayed on the display 21. The pointing stick 5 is provided on a surface 15 that connects the lower surface of the bending portion 2 to the upper surface of the bending portion 2 (bending portion flat surface 2a). The pointing stick 5 may be provided on the lower surface 16 of the bending portion 2 (the backside of the flat surface 2a of the bending portion) as indicated by the symbol 5a shown by the imaginary line (two-dot chain line) in FIG.

[0038] The pointing stick 5 is provided on a surface 15 that is connected to the upper surface of the curved portion 2, and is disposed facing the driver and in a position close to the driver's left and right thumbs. The driver can operate the pointing stick 5 from the driver's seat side toward the steering device 10 with the driver's left and right thumbs. Meanwhile, the pointing stick 5a protrudes from the underside 16 of the bending portion 2 toward the lower space and is positioned close to the driver's left and right thumbs. The driver can operate the pointing stick 5a by pointing it upward from the underside of the underside 16 of the bending portion 2 with their left and right thumbs.

[0039] As described above, in the steering device 25 according to the third embodiment, the upper surface 17 of the curved portion 2 has a curved portion flat surface 2a extending horizontally in the vehicle width direction, and a switch 2b is provided on the curved portion flat surface 2a. With this configuration, the orientation of the tire can be intuitively grasped because the curved flat surface 2a is parallel to the upper and lower sides of the rim portion 1. Furthermore, by providing the switch 2b on the curved flat surface 2a, the switch 2b can be used while resting the wrist on the lower flat portions 3, 4, allowing for easy use of various functions provided on the vehicle.

[0040] In addition, in the steering device 25 of the third embodiment, a pointing stick 5, 5a is provided on at least one of the lower surface 16 of the bending portion 2 and the surface 15 connecting the lower surface 16 of the bending portion 2 to the upper surface 17 of the bending portion 2. With this configuration, the driver can operate the pointing sticks 5, 5a with their left and right thumbs while placing their hands on the lower flat portions 3, 4. Furthermore, by arranging the pointing sticks 5, 5a on the lower surface 16 of the bending portion 2 or on the surface 15 that connects the lower surface 16 of the bending portion 2 to the upper surface 17 of the bending portion 2, the pointing sticks 5, 5a can be operated without interfering with the operation of the steering device 25.

[0041] <Cross-sectional view common to the first to third embodiments> Fig. 7 is a cross-sectional view taken along line VII-VII shown in Fig. 5. As shown in Fig. 7, the steering device 25 is configured to include a rim portion 1, a rim support portion 44, a fixed frame 43, a holder 42, a column cover 41, and a column shaft 40.

[0042] The rim portion 1 is connected to the column shaft 40 via a rim support portion 44, a fixed frame 43, and a column cover 41. The rim portion 1 corresponds to the steering wheel (handle) with which the driver operates the vehicle. The rim support portion 44 is a support member that fixes and supports the rim portion 1 to the fixed frame 43. The fixed frame 43 is a frame that connects the rim portion 1 fixed by the rim support portion 44 to the column shaft 40. The column shaft 40 is a shaft that controls the direction of travel of the vehicle in response to steering input of the rim portion 1. The column cover 41 is a cover that encloses the column shaft 40.

[0043] When the driver rotates the rim portion 1, the steering device 25 rotates in conjunction with the rotation of the rim portion 1, causing the rim support portion 44 and the fixed frame 43 to rotate, which in turn rotates the column shaft 40. In this way, the steering device 25 functions as a steering device.

[0044] On the other hand, the display 21 is fixed and attached to a holder 42. The holder 42 is an attachment member for attaching the display 21 to the steering device 25. A column cover 41 is attached to the back of the holder 42, and the holder 42 is installed so as not to be linked to the rotation of the rim part 1. As a result, the display 21 is not linked to the rotation of the rim part 1, and the upper and lower sides always extend horizontally.

[0045] Furthermore, in this embodiment, the relationship between the underside of the upper side of the rim portion 1 and the lower side flat portion 4 is such that, because the lower side flat portion 4 has an inclined surface 4a, the length L1 of the underside of the upper side of the rim portion 1 and the lower side flat portion 4 on the driver's side is different from the length L2 of the underside of the upper side of the rim portion 1 and the lower side flat portion 4 on the column shaft 40 side. In other words, in this embodiment, the length L1 of the rim portion 1 and the lower side flat portion 4 on the driver's side is longer than the length L2 of the rim portion 1 and the lower side flat portion 4 on the column shaft 40 side.

[0046] For this reason, when the lower surface of the upper side of the rim portion 1 is used as a reference, the lower side flat portion 4 on the driver's side of the inclined surface 4a is always lowered. This allows the driver to rest their wrist on the lower side flat portion 4 while driving, for example, when the vehicle is being driven automatically, thereby reducing hand fatigue caused by driving. [Explanation of symbols]

[0047] 1,11 Rim 2,12 Curved section 2a Flat surface of curved part 2b switch 3,4 Flat bottom 3a,4a Slope 3b,4b switch 5,5a Pointing Stick 9 space 10, 20, 25 Steering device (steering structure) 13,14 Flat bottom 13a,14a Slope 13b, 14b soft pad 13c,14c depression 21 Display 40 Column shaft 41 Column cover 42 Holder 43 Fixed Frame

Claims

1. A steering structure having a rectangular rim portion that is gripped by a driver, A space penetrating in the front-rear direction is provided at the center of the rim portion, a curved portion at the center of the lower side of the rim portion that curves toward the upper side of the rim portion; The space is disposed above the curved portion. A steering structure characterized by:

2. A lower edge flat portion extending in the vehicle width direction of the lower edge of the rim portion is provided on both sides of the curved portion in the vehicle width direction, The lower flat portion has an inclined surface that slopes downward toward the driver's seat side.

2. The steering structure according to claim 1.

3. A switch is provided on at least one of the two lower side flat portions.

3. The steering structure according to claim 2.

4. Each of the lower flat portions is provided with a soft pad on which the driver places his / her hands, The soft pad has a recess in the center in the vehicle width direction.

3. The steering structure according to claim 2.

5. an upper surface of the curved portion has a curved portion flat surface extending horizontally in the vehicle width direction; A switch is provided on the flat surface of the curved portion.

5. A steering structure according to claim 1, wherein the steering structure comprises a first shaft and a second shaft.

6. a pointing stick is provided on at least one of a lower surface of the bending portion and a surface connecting the lower surface of the bending portion to an upper surface of the bending portion; 6. A steering structure according to claim 1, wherein the steering structure is a hub.

Citation Information

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