This application is based upon and claims the benefit of priority from Japanese patent application No. 2022-019224, filed on Feb. 10, 2022, the disclosure of which is incorporated herein in its entirety by reference.
The present invention relates to a vibration isolator mounted inside a handlebar.
A vehicle which has a handlebar, such as a motorcycle, is equipped with, for example, an internal component forming a throttle device inserted and mounted inside the handlebar. For example, an accelerator position sensor is mounted as an internal component inside the handlebar. Since such an internal component requires vibration isolation, an annular vibration isolator that surrounds the internal component and abuts on the inner periphery of the handlebar is mounted.
Patent Document 1 describes a vibration isolator mounted inside a handlebar as described above. The vibration isolator is formed by an annular elastic member and is shaped like a gear with a plurality of protrusions provided on the outer periphery thereof. Consequently, the vibration isolator can change its shape in a direction to compress the protrusions, and can exhibit a vibration isolation effect.
Patent Document 1: Japanese Unexamined Patent Application Publication No. JP-A 2015-058854
However, since the vibration isolator described above merely has a gear-like shape with the protrusions on the outer periphery of the annular elastic member, the spring constant of the protrusions is high, resulting in occurrence of a problem that it is difficult to install inside the handlebar. Moreover, the protrusions may fall over when installed, and a vibration isolation effect by such protrusions is not exhibited, resulting in occurrence of a problem that performance deteriorates.
Accordingly, an object of the present invention is to solve the abovementioned problems, that is, the problem of difficulty of attachment and the problem of deterioration of performance of a vibration isolator inserted to be inside a handlebar.
A vibration isolator as an aspect of the present invention includes: an annular main body that is made of an annular elastic member, arranged surrounding at least part of a component housed inside a handlebar, and housed inside the handlebar together with the component; a plurality of protrusions that are formed on an outer peripheral surface of the annular main body, protruding so as to abut on an inner surface of the handlebar; and a plurality of recesses that are formed on an inner peripheral surface of the annular main body, recessed toward the outer peripheral surface.
Further, a steering as an aspect of the present invention includes a handlebar, a housed component housed inside the handlebar, and a vibration isolator arranged surrounding at least part of the housed component and housed inside the handlebar together with the housed component. The vibration isolator includes: an annular main body made of an annular elastic member; a plurality of protrusions that are formed on an outer peripheral surface of the annular main body, protruding so as to abut on an inner surface of the handlebar; and a plurality of recesses that are formed on an inner peripheral surface of the annular main body, recessed toward the outer peripheral surface.
With the configurations as described above, the present invention facilitates attachment of a vibration isolator to be inserted inside a handlebar, and enables exhibition of stable vibration isolation performance.
A first example embodiment of the present invention will be described with reference to
The vibration isolator according to the present invention is arranged to surround an internal component inserted into a handlebar of a motorcycle or the like, and is inserted into the handlebar together with the internal component. In this example embodiment, as shown in
As shown in
Further, the vibration isolator 1 includes a plurality of protrusions 11 projecting further outward on the outer peripheral surface of the annular main body 10. The protrusions 11 are arranged and formed at approximately equal intervals along the circumferential direction of the annular main body 10. For example, in this example embodiment, as shown in
Further, as shown in
Furthermore, as shown in
Further, as shown in
Further, as shown in
Furthermore, as shown in
Next, how the accelerator position sensor 20 with the vibration isolator 1 having the abovementioned structure installed is inserted into the handlebar 30 will be described with reference to
When the handlebar 30 vibrates, the protrusions 11 of the vibration isolator 1 are compressed and restored in the direction of arrow Yl, thereby reciprocally changing the shapes. At the time, in particular, since the recess 12 is formed on the inner surface side of the protrusion 11, the periphery of the protrusion 11 is easily deformed in the shear direction as indicated by arrow Y2. Consequently, by using the vibration isolator 1 according to the present invention, a higher vibration isolation effect can be exhibited, and increase of the performance can be achieved. In particular, as described above, by forming the recess 12 at a position corresponding to the protrusion 11, making the outer shapes of the protrusion 11 and the recess 12 the same, and making a portion between the inclined portions of the protrusion 11 and the recess 12 thin, deformation of the protrusion 11 in the compression direction and deformation of the periphery thereof in the shear direction are facilitated, so that a higher vibration isolation effect can be exhibited and the performance can be further increased. Since the abovementioned shape makes it possible to increase the vibration isolation performance of the vibration isolator 1, it is also possible to make the entire vibration isolator 1 thinner, that is, smaller in size.
By housing a component such as the accelerator position sensor 20 with the vibration isolator 1 installed inside the handlebar 30 as described above, a steering of a vehicle such as a motorcycle can be manufactured. However, a component on which the vibration isolator 1 described above is installed is not limited to the accelerator position sensor 20, and may be any component.
The whole or part of the example embodiments disclosed above can be described as the following supplementary notes. Below, the overview of a vibration isolator and a steering according to the present invention will be described. However, the present invention is not limited to the following configurations.
A vibration isolator comprising:
an annular main body made of an annular elastic member, the annular main body being arranged surrounding at least part of a component housed inside a handlebar, the annular main body being housed inside the handlebar together with the component;
a plurality of protrusions formed on an outer peripheral surface of the annular main body, the protrusions protruding so as to abut on an inner surface of the handlebar; and
a plurality of recesses formed on an inner peripheral surface of the annular main body, the recesses being recessed toward the outer peripheral surface.
The vibration isolator according to Supplementary Note 1, wherein
each of the recesses is, for one of the protrusions, formed corresponding to a part where the protrusion is formed.
The vibration isolator according to Supplementary Note 2, wherein
the recesses are formed on the inner peripheral surface at parts where the protrusions are formed of the annular main body.
The vibration isolator according to Supplementary Note 3, wherein
the recesses and the protrusions are formed in substantially same outer shapes.
The vibration isolator according to Supplementary Note 4, wherein
a thickness of the annular main body in vicinities of both ends of the protrusion and the recess corresponding to each other in a circumferential direction of the annular main body is thinner than that of another part.
The vibration isolator according to Supplementary Note 4 or 5, wherein
the protrusions and the recesses are formed arranged at substantially equal intervals along a circumferential direction of the annular main body.
The vibration isolator according to any of Supplementary Notes 1 to 6, wherein
the protrusion is formed except vicinities of both ends in a width direction of the annular main body, the width direction corresponding to an axial direction of the handlebar.
The vibration isolator according to Supplementary Note 7, wherein
both the ends of the protrusion in the width direction of the annular main body corresponding to the axial direction of the handlebar are each formed so as to gradually rise toward a center side of the protrusion.
The vibration isolator according to any of Supplementary Notes 1 to 8, wherein
the recess is formed uniformly along the width direction of the annular main body corresponding to the axial direction of the handlebar.
A steering comprising a handlebar, a housed component housed inside the handlebar, and a vibration isolator arranged surrounding at least part of the housed component and housed inside the handlebar together with the housed component, the vibration isolator comprising:
an annular main body made of an annular elastic member;
a plurality of protrusions formed on an outer peripheral surface of the annular main body, the protrusions protruding so as to abut on an inner surface of the handlebar; and
a plurality of recesses formed on an inner peripheral surface of the annular main body, the recesses being recessed toward the outer peripheral surface.
Although the present invention has been described above with reference to the example embodiments, the present invention is not limited to the above example embodiments. The configurations and details of the present invention can be changed in various manners that can be understood by one skilled in the art within the scope of the present invention.
1 vibration isolator
10 annular main body
11 protrusion
12 recess
20 accelerator position sensor
21 case
30 handlebar
Number | Date | Country | Kind |
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2022-019224 | Feb 2022 | JP | national |