This application is based upon and claims the benefit of priority from Japanese Patent Application No. 2021-097740 filed Jun. 11, 2021, the entire contents of which are incorporated herein by reference.
The present invention relates to a voice augmentation device that is disposed at a specific position with respect to a droplet suppressing member disposed between a speaker and a listener in order to suppress droplet generated from at least one of a mouth and nose of the speaker, to augment a voice of the speaker transmitted to the listener. The present invention relates to a partition, a mask, a mouth shield, and a face shield.
Conventionally, a mask worn on a speaker is known as a droplet suppressing member disposed between the speaker and a listener in order to suppress droplet generated from at least one of a mouth and nose of the speaker (see, for example, JP 2020-084388 A).
However, the conventional mask makes it possible to suppress the droplet generated from at least one of the mouth and nose of the speaker, but the mask reduces the voice of the speaker transmitted to the listener, whereby the mask disadvantageously makes it difficult for the listener to hear the voice of the speaker.
Therefore, an object of the present invention is to provide a voice augmentation device, a partition, a mask, a mouth shield, and a face shield that can make it easy for the listener to hear the voice of the speaker.
A voice augmentation device of the present invention is a voice augmentation device disposed at a specific position with respect to a droplet suppressing member disposed between a speaker and a listener in order to suppress droplet generated from at least one of a mouth and nose of the speaker, to augment a voice of the speaker transmitted to the listener. The voice augmentation device includes a vibration input part receiving vibration from at least one of the droplet suppressing member and air between the droplet suppressing member and the vibration input part; and a vibration output part transmitting the vibration received by the vibration input part to air on a side of the listener with respect to the vibration output part.
With this configuration, the voice augmentation device of the present invention causes the vibration input part to receive the vibration of the voice of the speaker from at least one of the droplet suppressing member and the air between the droplet suppressing member and the vibration input part, and causes the vibration output pad to transmit the vibration of the voice of the speaker received by the vibration input part to the air on the side of the listener With respect to the vibration output part. Therefore, the voice of the speaker transmitted to the listener can be augmented, and as a result, the voice of the speaker can be easily heard by the listener.
The voice augmentation device of the present invention may further include a directivity imparting part imparting directivity to the voice output by the vibration output part to augment the voice transmitted to the listener.
With this configuration, the voice augmentation device of the present invention causes the directivity imparting part to impart the directivity to the voice output by the vibration output part to augment the voice transmitted to the listener, whereby the voice of the speaker can be more easily heard by the listener.
The voice augmentation device according to the present invention may further include a mounting part mounted on the droplet suppressing member, wherein the mounting part is mounted on the droplet suppressing member so that the voice augmentation device is disposed at the specific position with respect to the droplet suppressing member.
With this configuration, the mounting part is mounted on the droplet suppressing member so that the voice augmentation device of the present invention is disposed at the specific position with respect to the droplet suppressing member. Therefore, it is possible to facilitate the work of disposing the voice augmentation device with respect to the droplet suppressing member.
The voice augmentation device of the present invention may further include a coupling part coupling the vibration output part and the mounting part, wherein the coupling part has a variable length in a vertical direction when the voice augmentation device is disposed at the specific position with respect to the droplet suppressing member.
With this configuration, in the voice augmentation device of the present invention, the coupling part has a variable length in the vertical direction when the voice augmentation device is disposed at the specific position with respect to the droplet suppressing member. Therefore, the position of the vibration output part in the vertical direction when the voice augmentation device is disposed at the specific position with respect to the droplet suppressing member can be adjusted by the length of the coupling part to a position where the voice of the speaker output by the vibration output part is easily heard by the listener. As a result, the voice of the speaker can be more easily heard by the listener.
The voice augmentation device of the present invention may further include an additional input part receiving the vibration from air on the side of the speaker with respect to the droplet suppressing member, wherein the vibration output part transmits the vibration received by the vibration input part and the vibration received by the additional input part to air on the side of the listener with respect to the vibration output part.
With this configuration, the voice augmentation device of the present invention causes the vibration output part to transmit not only the vibration of the voice of the speaker received by the vibration input part but also the vibration of the voice of the speaker received by the additional input part from the air on the side of the speaker with respect to the droplet suppressing member to the air on the side of the listener with respect to the vibration output part.
Therefore, the voice of the speaker transmitted to the listener can be augmented, and as a result, the voice of the speaker can be more easily heard by the listener.
The voice augmentation device of the present invention may further include a loudspeaker augmenting the voice output by the vibration output part.
With this configuration, the voice augmentation device of the present invention causes the loudspeaker to augment the voice output by the vibration output part. Therefore, the voice of the speaker transmitted to the listener can be augmented, and as a result, the voice of the speaker can be more easily heard by the listener.
The voice augmentation device of the present invention may further include a resonating member disposed on a side of the speaker with respect to the droplet suppressing member when the voice augmentation device is disposed at the specific position with respect to the droplet suppressing member, to resonate a portion of the voice augmentation device on a side of the listener with respect to the droplet suppressing member, wherein the vibration output part is disposed on the side of the listener with respect to the droplet suppressing member when the voice augmentation device is disposed at the specific position with respect to the droplet suppressing member.
With this configuration, the voice augmentation device of the present invention causes the resonating member to receive the vibration of the voice of the speaker from the air on the side of the speaker with respect to the droplet suppressing member, and causes the resonating member to resonate the portion of the voice augmentation device on the side of the listener with respect to the droplet suppressing member. Therefore, it is possible to augment the vibration of the voice of the speaker that is transmitted by the vibration output part to the air on the side of the listener with respect to the vibration output part itself. Therefore, the voice augmentation device of the present invention can augment the voice of the speaker transmitted to the listener, and as a result, the voice of the speaker can be more easily heard by the listener.
A partition of the present invention includes the voice augmentation device; and the droplet suppressing member.
With this configuration, the partition of the present invention makes it possible for the listener to easily hear the voice of the speaker.
A mask of the present invention includes the voice augmentation device; and the droplet suppressing member.
With this configuration, the mask of the present invention makes it possible for the listener to easily hear the voice of the speaker.
A mouth shield of the present invention includes the voice augmentation device; and the droplet suppressing member.
With this configuration, the mouth shield of the present invention makes it possible for the listener to easily hear the voice of the speaker.
A face shield of the present invention includes the voice augmentation device; and the droplet suppressing member.
With this configuration, the face shield of the present invention makes it possible for the listener to easily hear the voice of the speaker.
The voice augmentation device, the partition, the mask, the mouth shield, and the face shield of the present invention make it possible for the listener to easily hear the voice of the speaker.
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
First, the configuration of a voice augmentation device according to an embodiment of the present invention will be described.
As shown in
The partition 90 includes the droplet suppressing member 91 disposed between the speaker and the listener in order to suppress droplet generated from at least one of the mouth and nose of the speaker, and a leg part 92 supporting the droplet suppressing member 91. The partition 90 is placed on a tabletop, for example. The droplet suppressing member 91 is formed of, for example, a transparent member such as an acrylic member.
The voice augmentation device 10 includes a main body 20, a mounting part 30 mounted on the droplet suppressing member 91 by being hooked on the droplet suppressing member 91, and a coupling part 40 coupling the main body 20 and the mounting part 30.
The mounting part 30 is mounted on the droplet suppressing member 91 in a state of being in contact with a portion of the droplet suppressing member 91 on which the mounting part 30 itself is mounted from above in a vertical direction. The mounting part 30 is in contact with the droplet suppressing member 91 and constitutes a vibration input part as a solid portion that receives vibration from the droplet suppressing member 91. The mounting part 30 may be formed of a material such as wood, metal, or plastic, for example. The voice augmentation device 10 is attached to the droplet suppressing member 91 by mounting the mounting part 30 on the droplet suppressing member 91.
The coupling part 40 is disposed on the side of the listener with respect to the droplet suppressing member 91 when the voice augmentation device 10 is attached to the droplet suppressing member 91. The coupling part 40 can be in contact with the droplet suppressing member 91, and constitutes a vibration input part as a solid portion that receives vibration from at least one of the droplet suppressing member 91 and air between the droplet suppressing member 91 and the coupling part 40 itself. The coupling part 40 may be formed of, for example, a material such as wood, metal, or plastic. The coupling part 40 may be formed integrally with at least one of the main body 20 and the mounting part 30 as one component.
The main body 20 is disposed on the side of the listener with respect to the droplet suppressing member 91 when the voice augmentation device 10 is attached to the droplet suppressing member 91. The main body 20 includes a base part 21 and a wall part 22 extending from the base part 21. The main body 20 may be formed of, for example, a material such as wood, metal, or plastic. When the voice augmentation device 10 is attached to the droplet suppressing, member 91, the position of the main body 20 in the vertical direction, that is, a direction indicated by an arrow 10a is lower than that of the mounting part 30.
A portion 21a of the base part 21 on the side of the droplet suppressing member 91 (hereinafter, referred to as “base vibration input part”) can be in contact with the droplet suppressing member 91, and constitutes a vibration input part as a solid portion that receives vibration from at least one of the droplet suppressing member 91 and air between the droplet suppressing member 91 and the base vibration input part 21a itself.
A portion 21b of the base part 21 on the side of the listener (hereinafter, referred to as “base vibration output part”) constitutes a vibration output part as a solid portion that transmits the vibration received by the base vibration input part 21a, the mounting part 30, and the coupling part 40 to the air on the side of the listener with respect to the base vibration output part 21b itself.
The wall part 22 imparts directivity to the voice output by the base vibration output part 21b to constitute a directivity imparting part that augments the voice transmitted to the listener. That is, the wall part 22 constitutes an acoustic megaphone that acoustically augments the voice.
Next, the operation of the voice augmentation device 10 will be described.
When the speaker utters a voice, the vibration of the voice of the speaker is transmitted in the air, and then mainly received by the droplet suppressing, member 91 from the air on the side of the speaker with respect to the droplet suppressing member 91.
The vibration of the voice of the speaker received by the droplet suppressing member 91 is transmitted in the droplet suppressing member 91 and then received by the mounting part 30 from the droplet suppressing member 91. The vibration of the voice of the speaker received by the droplet suppressing member 91 may be transmitted in the droplet suppressing member 91, and then received by at least one of the base vibration input part 21a and the coupling part 40 from the droplet suppressing member 91. The vibration of the voice of the speaker received by the droplet suppressing member 91 may be transmitted in the droplet suppressing member 91, then received by the air on the side of the listener with respect to the droplet suppressing member 91 from the droplet suppressing member 91. The vibration of the voice of the speaker received by the air on the side of the listener with respect to the droplet suppressing member 91 may be transmitted in the air on the side of the listener with respect to the droplet suppressing member 91. The vibration of the voice of the speaker transmitted in the air on the side of the listener with respect to the droplet suppressing member 91 may be received by the base vibration input part 21a from the air between the droplet suppressing member 91 and the base vibration input part 21a. The vibration of the voice of the speaker transmitted in the air on the side of the listener with respect to the droplet suppressing member 91 may be received by the coupling part 40 from the air between the droplet suppressing member 91 and the coupling part 40.
The vibration of the voice of the speaker received by the base vibration input part 21a, the mounting part 30, and the coupling part 40 is transmitted in the voice augmentation device 10, that is, in a solid, and then received by the air on the side of the listener with respect to the base vibration output part 21b from the base vibration output part 21b.
To the vibration of the voice of the speaker received by the air on the side of the listener with respect to the base vibration output part 21b, the directivity is imparted by the wall part 22. The vibration of the voice of the speaker to which the directivity has been imparted is transmitted in the air, and then received by the listener.
As described above, the voice augmentation device 10 causes the base vibration input part 21a to receive the vibration of the voice of the speaker from at least one of the droplet suppressing member 91 and the air between the droplet suppressing member 91 and the base vibration input part 21a, causes the mounting part 30 to receive the vibration of the voice of the speaker from the droplet suppressing member 91, and causes the coupling part 40 to receive the vibration of the voice of the speaker from at least one of the droplet suppressing member 91 and the air between the droplet suppressing member 91 and the coupling part 40. Then, the voice augmentation device 10 causes the base vibration output part 21b to transmit the vibration of the voice of the speaker received by the base vibration input part 21a, the mounting part 30, and the coupling part 40 to the air on the side of the listener with respect to the base vibration output part 21b. Therefore, the voice of the speaker transmitted to the listener can be augmented, and as a result, the voice of the speaker can be easily heard by the listener.
The voice augmentation device 10 causes the wall part 22 to impart the directivity to the voice output by the base vibration output part 21b to augment the voice transmitted to the listener, whereby the voice of the speaker can be more easily heard by the listener.
The shape of the wall part 22 is a horn shape as shown in
The shape of the main body 20 when observed from the front on the side of the listener is a circular shape in the present embodiment, but may be a shape other than the circular shape, such as a quadrangle.
The voice augmentation device 10 includes the wall part 22 in the present embodiment, but may not include the wall part 22.
The mounting part 30 is mounted on the droplet suppressing member 91 so that the voice augmentation device 10 is disposed at a specific position with respect to the droplet suppressing member 91. Therefore, it is possible to facilitate the work of disposing the voice augmentation device 10 with respect to the droplet suppressing member 91.
The coupling part 40 may have a variable length in a vertical direction, that is, a direction indicated by an arrow 10a when the voice augmentation device 10 is attached to the droplet suppressing member 91. As a method in which the length of the coupling part 40 in the direction indicated by the arrow 10a is variable, various methods can be adopted. For example, as shown in
As shown in
As shown in
The voice augmentation device 10 is provided only for the listener on one surface side of the droplet suppressing member 91 in
As shown in
The coupling part 40 is formed of a plate-like member in
In the example shown in
In the example shown in
The voice augmentation device 10 is disposed at a specific position with respect to the droplet suppressing member 91 by mounting the mounting part 30 on the droplet suppressing member 91 in
As shown in
In the partition 90 as shown in
In
In the above description, acrylic is exemplified as the material of the droplet suppressing member 91, but the droplet suppressing member 91 may be formed of a material other than acrylic. For example, the droplet suppressing member 91 can be formed of various materials such as a cloth other than a nonwoven fabric (such as a cotton woven fabric), a nonwoven fabric, polyurethane, and vinyl.
Number | Date | Country | Kind |
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2021-097740 | Jun 2021 | JP | national |
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Notice of Reasons for Refusal dated Sep. 22, 2021, issued in counterpart JP Patent Application No. 2021-097740, w/English translation (8 pages). |
Number | Date | Country | |
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20220399004 A1 | Dec 2022 | US |