JP4712564B2 - Acoustic resistance measuring device and method for acoustic resistance material - Google Patents

Acoustic resistance measuring device and method for acoustic resistance material Download PDF

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JP4712564B2
JP4712564B2 JP2006009443A JP2006009443A JP4712564B2 JP 4712564 B2 JP4712564 B2 JP 4712564B2 JP 2006009443 A JP2006009443 A JP 2006009443A JP 2006009443 A JP2006009443 A JP 2006009443A JP 4712564 B2 JP4712564 B2 JP 4712564B2
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acoustic resistance
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resistance material
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裕 秋野
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Audio Technica KK
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Description

本発明は、マイクロホンに用いられる音響抵抗材の音響抵抗測定装置およびその測定方法に関し、さらに詳しく言えば、シート状の音響抵抗材を単体として、余計な負荷をかけることなくその音響抵抗を正確に測定する技術に関するものである。   The present invention relates to an acoustic resistance measuring device for an acoustic resistance material used for a microphone and a measurement method thereof, and more specifically, the acoustic resistance of a sheet-like acoustic resistance material alone is accurately measured without applying an extra load. It relates to the technology to measure.

マイクロホンには、音源からマイクロホンユニットに内蔵されている音響−電気変換器に至る音波経路内にいくつかの音響抵抗材が設けられている。通常、この種の音響抵抗材には、目の細かなメッシュ状の網材,フェルト材や連続気泡性のスポンジ材などが用いられ、マイクロホンユニットの音響的条件を整えるほかに、風雑音を防止するウィンドスクリーンにも適用される。   The microphone is provided with several acoustic resistance members in the sound wave path from the sound source to the acoustic-electric converter built in the microphone unit. In general, this type of acoustic resistance material is a fine mesh mesh, felt material, or open-cell sponge material, which adjusts the acoustic conditions of the microphone unit and prevents wind noise. This also applies to windscreens.

音響インピーダンスの測定方法には、非特許文献1に記載されているように、近接法や反射法などが知られているが、音響抵抗のみを測定するには、音響抵抗材を透過した音の大きさ(音圧)を測定する方法が一般的である。本明細書では、この測定方法を便宜的に透過法と呼び、その一例を図3および図4の模式図により説明する。   As described in Non-Patent Document 1, a method of measuring acoustic impedance includes a proximity method, a reflection method, and the like. However, in order to measure only acoustic resistance, the sound transmitted through the acoustic resistance material is measured. A method of measuring the magnitude (sound pressure) is common. In this specification, this measurement method is called a transmission method for convenience, and an example thereof will be described with reference to the schematic diagrams of FIGS.

まず、図3に示すように、透過法においては、上面11が平らな中空の筐体10が用いられる。上面11は被測定物であるシート状の音響抵抗材ARが着脱自在に載置される載置面であり、この上面(載置面)11には、音響抵抗材ARによって覆われる開口部12が形成されている。   First, as shown in FIG. 3, in the transmission method, a hollow housing 10 having a flat upper surface 11 is used. The upper surface 11 is a mounting surface on which a sheet-like acoustic resistance material AR, which is an object to be measured, is detachably mounted. The upper surface (mounting surface) 11 has an opening 12 covered with the acoustic resistance material AR. Is formed.

筐体10の外側で開口部12の真上には、放音手段としてのスピーカ21が配置され、これに対して、筐体10の内部には収音手段としてのマイクロホン22が開口部12の真下に配置される。マイクロホン22はレベルメータなどの測定器23に接続される。   A speaker 21 serving as a sound emitting unit is disposed outside the housing 10 and directly above the opening 12. On the other hand, a microphone 22 serving as a sound collecting unit is disposed inside the housing 10. Arranged directly below. The microphone 22 is connected to a measuring instrument 23 such as a level meter.

この構成によれば、筐体10の上面11の上に音響抵抗材ARを開口部12を覆うように載置した状態で、スピーカ21よりほぼ一定の音圧で音波を放出させ、音響抵抗材ARを透過した音波をマイクロホン22にて収音し、そのマイク出力を測定器23にて測定することにより、スピーカ21から放音される音圧とマイクロホン22にて収音された音圧との比に基づいて、音響抵抗材ARの音響抵抗を測定することができる。なお、音響抵抗の単位は、通常、g(グラム)/sec(秒)で表される。   According to this configuration, in a state where the acoustic resistance material AR is placed on the upper surface 11 of the housing 10 so as to cover the opening 12, sound waves are emitted from the speaker 21 with a substantially constant sound pressure, and the acoustic resistance material The sound wave transmitted through the AR is picked up by the microphone 22, and the microphone output is measured by the measuring device 23, so that the sound pressure emitted from the speaker 21 and the sound pressure picked up by the microphone 22 are Based on the ratio, the acoustic resistance of the acoustic resistance material AR can be measured. The unit of acoustic resistance is usually expressed in g (grams) / sec (seconds).

西巻正郎著「改版電気音響振動学」コロナ社発行,昭和57年4月30日24版(p228〜230参照)Masaaki Nishimaki, “Revised Electroacoustic Vibration”, published by Corona, April 24, 1982, 24th edition (see p228-230)

ところで、図3に誇張して示すように、シート状の音響抵抗材ARは多少なりとも波打っており、また、たとえ平坦であるにしても、音響抵抗材ARをただ単に筐体10の上面11の上に載置しただけでは、スピーカ21から放音される音波の一部が音響抵抗材ARと筐体10の上面11との間から開口部12を通って筐体10内に入り込むことがあるため、測定の信頼性が損なわれる。   By the way, as exaggeratedly shown in FIG. 3, the sheet-like acoustic resistance material AR is somewhat wavy, and even if it is flat, the acoustic resistance material AR is simply placed on the upper surface of the housing 10. 11, a part of the sound wave emitted from the speaker 21 enters the housing 10 through the opening 12 from between the acoustic resistance material AR and the upper surface 11 of the housing 10. Therefore, the reliability of measurement is impaired.

そこで、従来では図4に示すように、開口部12の周りに沿った音響抵抗材ARの周縁部分に一例として筒状の重りWを載せて、音響抵抗材ARを筐体10の上面11に対して押し付けるようにしている。   Therefore, conventionally, as shown in FIG. 4, for example, a cylindrical weight W is placed on the peripheral portion of the acoustic resistance material AR around the opening 12, and the acoustic resistance material AR is placed on the upper surface 11 of the housing 10. It is trying to press against it.

しかしながら、音響抵抗材ARが比較的硬い材料である場合には、重りWを載せても音響抵抗の変化はわずかであり特に問題はないが、音響抵抗材ARがスポンジなどの柔らかい材料の場合には、圧縮により音響抵抗が大幅に変化するため、依然として測定の信頼性の点で問題がある。   However, in the case where the acoustic resistance material AR is a relatively hard material, there is no particular problem even if the weight W is placed, and the change in acoustic resistance is not particularly problematic. However, when the acoustic resistance material AR is a soft material such as a sponge. Is still problematic in terms of measurement reliability, since the acoustic resistance changes greatly due to compression.

したがって、本発明の課題は、音響抵抗材の一方の面側に所定音圧の音波を加え、音響抵抗材を透過する音波を収音して音響抵抗材の音響抵抗を測定するにあたって、被測定物である音響抵抗材がスポンジなどの柔らかい材料であっても、正確にその音響抵抗を測定できるようにすることにある。   Accordingly, an object of the present invention is to apply a sound wave having a predetermined sound pressure to one surface side of the acoustic resistance material, collect the sound wave transmitted through the acoustic resistance material, and measure the acoustic resistance of the acoustic resistance material. The object is to enable accurate measurement of acoustic resistance even if the acoustic resistance material is a soft material such as sponge.

上記課題を解決するため、請求項1に記載の発明は、マイクロホンに用いられるシート状の音響抵抗材を単体として、その音響抵抗を測定する音響抵抗材の音響抵抗測定装置において、上記音響抵抗材が着脱自在に載置される上面に、上記音響抵抗材により覆われる大きさの開口部を有する中空の筐体と、上記筐体の上記開口部上に配置されている上記音響抵抗材の一方の面に向けて音波を放出する放音手段としてのスピーカと、上記音響抵抗材の他方の面側に配置され、上記音響抵抗材を透過する音波を収音する収音手段としてのマイクロホンと、上記マイクロホンにて収音された音の大きさを測定する測定手段と、上記筐体内の空気を排気し上記筐体内を負圧にして上記音響抵抗材を上記筐体の上面に密着させる排気手段とを備えていることを特徴としている。
To solve the above problems, the invention according to claim 1, as a single sheet-like acoustic resistance material used for microphones, in the acoustic resistance measuring device of the acoustic resistance member for measuring the acoustic resistance, the acoustic resistance A hollow housing having an opening having a size covered by the acoustic resistance material on an upper surface on which the material is detachably mounted, and the acoustic resistance material disposed on the opening of the housing and speaker as a sound emitting means for emitting sound waves toward the one side, is arranged on the other surface side of the acoustic resistance member, and sound pickup means for picking up the sound waves transmitted through the acoustic resistance member microphone and the upper surface of the measuring means for measuring the magnitude of the picked-up sound at the microphone, the housing of the air evacuated by the negative pressure the housing the acoustic resistance member the housing of Te and an exhaust means to come into close contact with the It is characterized by a door.

請求項2に記載の発明は、上記請求項1において、上記スピーカ上記筐体の外側で上記開口部の真上に配置されるとともに、上記マイクロホンが上記筐体の内側で上記開口部の真下に配置されることを特徴としている。
According to a second aspect of the invention, in the above claim 1, together with the upper kissing speaker is located directly above the opening at the outside of the housing, the opening the microphone inside the above Kikatamitai It is characterized by being arranged directly under the part.

請求項3に記載の発明は、上記請求項1または2において、上記排気手段として、排気ファンが用いられることを特徴としている。   According to a third aspect of the present invention, in the first or second aspect, an exhaust fan is used as the exhaust means.

請求項4に記載の発明は、上記請求項1ないし3のいずれか1項において、上記開口部内に、上記音響抵抗材を平坦に支持する桟状もしくは格子状の支持体が設けられていることを特徴としている。   According to a fourth aspect of the present invention, in any one of the first to third aspects, a bar-like or lattice-like support body that flatly supports the acoustic resistance material is provided in the opening. It is characterized by.

また、上記課題を解決するため、請求項5に記載の発明は、マイクロホンに用いられるシート状の音響抵抗材を単体として、その音響抵抗を測定する音響抵抗材の音響抵抗測定方法において、上記音響抵抗材が着脱自在に載置される上面に、上記音響抵抗材により覆われる大きさの開口部を有する中空の筐体と、上記筐体の上記開口部上に配置されている上記音響抵抗材の一方の面に向けて音波を放出する放音手段としてのスピーカと、上記音響抵抗材の他方の面側に配置され、上記音響抵抗材を透過する音波を収音する収音手段としてのマイクロホンと、上記マイクロホンにて収音された音の大きさを測定する測定手段と、上記筐体内の空気を排気し上記筐体内を負圧にする排気手段とを備え、上記筐体の上面に上記開口部を覆うように上記音響抵抗材を載置し、上記スピーカにより上記音響抵抗材の一方の面に向けて音波を放出するとともに、上記音響抵抗材の他方の面側に配置されている上記マイクロホンにて上記音響抵抗材を透過する音波を収音して、上記測定手段により上記音響抵抗材の音響抵抗を測定するにあたって、上記排気手段により上記筐体内の空気を排気し上記筐体内を負圧にすることにより、大気圧にて上記音響抵抗材の周縁部を上記筐体の上面に密着させて固定することを特徴としている。
In order to solve the above problems, the invention according to claim 5, as a single sheet-like acoustic resistance material used for microphones, in the acoustic resistance measurement method of the acoustic resistance member for measuring the acoustic resistance, the A hollow housing having an opening of a size that is covered with the acoustic resistance material on an upper surface on which the acoustic resistance material is detachably mounted, and the acoustic resistance disposed on the opening of the housing and speaker as a sound emitting means for emitting sound waves toward the one surface of the timber, disposed on the other surface side of the acoustic resistance member, sound pickup means for picking up the sound waves transmitted through the acoustic resistance member provided with a microphone and, measuring means for measuring the magnitude of the picked-up sound at the microphone, and an exhaust means for negative pressure the housing is evacuated to the housing of the air, the housing On the top of the body to cover the opening Placing the acoustic resistance member, thereby releasing the sound waves toward the one surface of the acoustic resistance member by the speaker, the acoustic resistance member at the microphone that is located on the other surface side of the acoustic resistance member When the acoustic resistance of the acoustic resistance material is collected by the measuring means by collecting the sound wave transmitted through the air, the exhaust means exhausts the air in the casing to create a negative pressure in the casing. It is characterized in that the peripheral portion of the acoustic resistance material is brought into close contact with the upper surface of the casing at atmospheric pressure and fixed.

請求項1または5に記載の発明によれば、シート状に形成された音響抵抗材が着脱自在に載置される上面に、上記音響抵抗材により覆われる大きさの開口部を有する中空の筐体と、上記音響抵抗材の一方の面に向けて音波を放出する放音手段としてのスピーカと、上記音響抵抗材の他方の面側に配置され、上記音響抵抗材を透過する音波を収音する収音手段としてのマイクロホンと、上記マイクロホンにて収音された音の大きさを測定する測定手段と、上記筐体内の空気を排気する排気手段とを備え、上記筐体の上面に上記開口部を覆うように上記音響抵抗材を載置し、上記スピーカにより上記音響抵抗材の一方の面に向けて音波を放出するとともに、上記音響抵抗材の他方の面側に配置されている上記マイクロホンにて上記音響抵抗材を透過する音波を収音して、上記測定手段により上記音響抵抗材の音響抵抗を測定するにあたって、上記排気手段により上記筐体内の空気を排気し上記筐体内を負圧にし、大気圧にて上記音響抵抗材の周縁部を上記筐体の上面に密着させて固定するようにしたことにより、上記音響抵抗材が例えばスポンジ材のように圧縮すると音響抵抗が変わってしまう音響抵抗材であっても、その音響抵抗を正確に測定することができる。また、音響抵抗材を押さえ付けて固定するための重りなどの付加的な固定手段が不要であることから、簡単に安定した測定ができる。
According to the first or fifth aspect of the invention, a hollow housing having an opening having a size covered by the acoustic resistance material on an upper surface on which the acoustic resistance material formed in a sheet shape is detachably mounted. and body, and a speaker of a sound emitting means for emitting sound waves toward the one surface of the acoustic resistance member is disposed on the other surface side of the acoustic resistance member, the acoustic wave transmitted through the acoustic resistance member with a microphone as a sound pickup picking up means, measuring means for measuring the magnitude of the picked-up sound at the microphone, and an exhaust means for exhausting the housing of the air, of the housing The acoustic resistance material is placed on the upper surface so as to cover the opening, and a sound wave is emitted toward one surface of the acoustic resistance material by the speaker , and is disposed on the other surface side of the acoustic resistance material. passing through the acoustic resistance material in and have the microphone The sound waves are picked up, in order to measure the acoustic resistance of the acoustic resistance member by said measuring means, and a negative pressure to the casing to evacuate the air in the housing by the exhaust means, said acoustic at atmospheric pressure Even if the acoustic resistance material changes the acoustic resistance when the acoustic resistance material is compressed like, for example, a sponge material, by fixing the periphery of the resistance material in close contact with the upper surface of the housing, The acoustic resistance can be accurately measured. In addition, since an additional fixing means such as a weight for pressing and fixing the acoustic resistance material is unnecessary, stable measurement can be easily performed.

ピーカを筐体内に配置し、マイクロホンを筐体の外側に配置してもよいが、請求項2に記載の発明のように、スピーカを筐体の外側でその開口部の真上に配置するとともに、マイクロホンを筐体の内側で開口部の真下に配置することにより、マイクロホンが筐体にて外界と遮断されるため、スピーカからの音のみを収音することができ、測定の信頼性が高められる。

The speaker is disposed in the housing, may be arranged a microphone on the outside of the housing but, as in the invention according to claim 2, arranged directly above the opening speaker outside the housing At the same time, by placing the microphone inside the housing directly below the opening, the microphone is isolated from the outside by the housing, so only the sound from the speaker can be collected, and the measurement reliability is improved. Enhanced.

上記排気手段はバキュームポンプなどの負圧源であってもよいが、請求項3に記載の発明のように、上記排気手段として排気ファンを用いることにより、装置の簡素化および設備コストの削減を図ることができる。   The exhaust means may be a negative pressure source such as a vacuum pump. However, as in the invention described in claim 3, by using an exhaust fan as the exhaust means, the apparatus can be simplified and the equipment cost can be reduced. Can be planned.

また、上記開口部内に音響抵抗材を平坦に支持する桟状もしくは格子状の支持体を設けるようにした請求項4に記載の発明によれば、排気手段により筐体内の空気を排気して音響抵抗材を固定するにあたって、開口部に対応する音響抵抗材の部分的な凹みを防止することができる。   According to the invention described in claim 4, wherein the opening is provided with a cross-shaped or grid-like support that flatly supports the acoustic resistance material. In fixing the resistance material, it is possible to prevent a partial dent of the acoustic resistance material corresponding to the opening.

次に、図1および図2により、本発明の実施形態について説明するが、本発明はこれに限定されるものではない。図1は本発明による音響抵抗材の音響抵抗測定装置を示す模式的な断面図,図2は請求項4に記載の支持体の構成を示す斜視図である。なお、この実施形態の説明において、先の図3,図4で説明した従来例と変更を要しない構成要素には、同じ参照符号を付す。   Next, an embodiment of the present invention will be described with reference to FIGS. 1 and 2, but the present invention is not limited to this. FIG. 1 is a schematic sectional view showing an acoustic resistance measuring device for an acoustic resistance material according to the present invention, and FIG. 2 is a perspective view showing a configuration of a support according to claim 4. In the description of this embodiment, the same reference numerals are assigned to components that do not require any change from the conventional example described in FIGS.

図1に示すように、本発明による音響抵抗材の音響抵抗測定装置は、内部が中空とされた筐体10を備える。筐体10の上面11は、被測定物であるシート状の音響抵抗材ARが着脱自在に載置される平坦な載置面として形成されており、この上面11には、音響抵抗材ARによって覆われる、すなわち音響抵抗材ARよりも小さな開口部12が穿設されている。   As shown in FIG. 1, the acoustic resistance measuring apparatus for acoustic resistance material according to the present invention includes a housing 10 whose inside is hollow. The upper surface 11 of the housing 10 is formed as a flat mounting surface on which a sheet-like acoustic resistance material AR, which is an object to be measured, is detachably mounted. The upper surface 11 is covered with the acoustic resistance material AR. An opening 12 that is covered, that is, smaller than the acoustic resistance material AR is formed.

測定に供される音響抵抗材ARは、目の細かなメッシュ状の網材,フェルト材や連続気泡性のスポンジ材などからなるマザーの音響抵抗材であって、適正な音響抵抗を有すると判定されたマザーの音響抵抗材ARからマイクロホンユニットごとに個々の大きさの音響抵抗材が切り出される。   The acoustic resistance material AR used for measurement is a mother acoustic resistance material made of a fine mesh mesh, felt material, open-cell sponge material, etc., and determined to have an appropriate acoustic resistance. An acoustic resistance material having an individual size is cut out from the mother acoustic resistance material AR for each microphone unit.

測定系には、放音手段としてのスピーカ21,収音手段としてのマイクロホン22およびマイクロホン22に接続されたレベルメータなどの測定器23が含まれる。スピーカ21とマイクロホン22は、それぞれ音響抵抗材ARの反対側に配置され、マイクロホン22は、スピーカ21から放音される音波のうち音響抵抗材ARを透過した音波を収音する。   The measurement system includes a speaker 21 as sound emitting means, a microphone 22 as sound collecting means, and a measuring device 23 such as a level meter connected to the microphone 22. The speaker 21 and the microphone 22 are disposed on opposite sides of the acoustic resistance material AR, respectively, and the microphone 22 collects a sound wave transmitted through the acoustic resistance material AR among sound waves emitted from the speaker 21.

スピーカ21以外に音源がない例えば無響室などで測定する場合には、スピーカ21を筐体10の内側に配置し、マイクロホン22を筐体10の外側に配置してもよいが、そうでない場合には、マイクロホン22を外界と遮断するため、筐体10内で開口部12の真下に配置し、これに対して、スピーカ21を筐体10の外側で開口部12の真上に配置することが好ましい。   When measuring in an anechoic room or the like where there is no sound source other than the speaker 21, the speaker 21 may be disposed inside the housing 10 and the microphone 22 may be disposed outside the housing 10. In order to cut off the microphone 22 from the outside world, the microphone 22 is disposed directly below the opening 12 in the housing 10, whereas the speaker 21 is disposed outside the housing 10 and directly above the opening 12. Is preferred.

この音響測定装置は、測定時に音響抵抗材ARを筐体10の上面11に固定するため、筐体10内の空気を排気する排気手段を備える。排気手段は、バキュームポンプなどの負圧源などであってもよいが、装置の簡素化および設備コストの削減の観点からして、図1に示すように、筐体10の一部分に排気筒13を形成し、この排気筒13内に例えばプロペラファンよりなる排気ファン14を配置する構成が好ましい。   The acoustic measuring device includes an exhaust unit that exhausts air in the housing 10 in order to fix the acoustic resistance material AR to the upper surface 11 of the housing 10 during measurement. The exhaust means may be a negative pressure source such as a vacuum pump, but from the viewpoint of simplification of the apparatus and reduction of equipment costs, as shown in FIG. And an exhaust fan 14 made of, for example, a propeller fan is disposed in the exhaust cylinder 13.

この音響測定装置にて音響抵抗材ARの音響抵抗を測定するには、音響抵抗材ARを筐体10の上に載置し、排気ファン14を駆動して筐体10内の空気を排気する。これにより、筐体10内が負圧となるため音響抵抗材ARが大気圧で筐体10の上面に密着するように固定される。   In order to measure the acoustic resistance of the acoustic resistance material AR with this acoustic measurement device, the acoustic resistance material AR is placed on the housing 10 and the exhaust fan 14 is driven to exhaust the air in the housing 10. . Thereby, since the inside of the housing | casing 10 becomes a negative pressure, the acoustic resistance material AR is fixed so that it may closely_contact | adhere to the upper surface of the housing | casing 10 at atmospheric pressure.

次に、スピーカ21よりほぼ一定の音圧で音波を放音させ、そのうちの音響抵抗材ARを透過した音波をマイクロホン22にて収音し、収音された音波の音圧レベルを測定器23で検出し、その音圧レベルとスピーカ21の出力音圧とに基づいて、音響抵抗材ARの音響抵抗を測定(算出)する。測定後、排気ファン14を止めて音響抵抗材ARを外す。これを各音響抵抗材ARごとに繰り返す。   Next, sound waves are emitted from the speaker 21 with a substantially constant sound pressure, and sound waves transmitted through the acoustic resistance material AR are picked up by the microphone 22, and the sound pressure level of the picked-up sound waves is measured by the measuring device 23. And the acoustic resistance of the acoustic resistance material AR is measured (calculated) based on the sound pressure level and the output sound pressure of the speaker 21. After the measurement, the exhaust fan 14 is stopped and the acoustic resistance material AR is removed. This is repeated for each acoustic resistance material AR.

このように、本発明によれば、音響抵抗材ARが大気圧により筐体10の上面に固定されるため、例えばスポンジ材のように圧縮すると音響抵抗が変わってしまうような音響抵抗材ARであっても、その音響抵抗を正確に測定することができる。また、上記従来例で説明したような固定用の重りが不要であることから、簡単に安定した測定を行うことができる。   As described above, according to the present invention, since the acoustic resistance material AR is fixed to the upper surface of the housing 10 by atmospheric pressure, the acoustic resistance material AR whose acoustic resistance changes when compressed like a sponge material, for example. Even if it exists, the acoustic resistance can be measured accurately. In addition, since a fixing weight as described in the conventional example is unnecessary, stable measurement can be easily performed.

なお、例えば開口部12が比較的大きい場合や、音響抵抗材ARが柔軟性に富んでいる場合、筐体10内を排気するに伴って音響抵抗材ARの中央部分が開口部12内に向けて凹むことがある。これを防止するため、図2に示すように、開口部12内に音響抵抗材ARを平坦に支持する支持体15を設けることが好ましい。この例では、支持体15を格子状としているが桟状としてもよく、また、場合によっては目の粗い網体を用いてもよい。   For example, when the opening 12 is relatively large or the acoustic resistance material AR is rich in flexibility, the central portion of the acoustic resistance material AR is directed toward the opening 12 as the inside of the housing 10 is exhausted. May dent. In order to prevent this, as shown in FIG. 2, it is preferable to provide a support 15 that supports the acoustic resistance material AR flatly in the opening 12. In this example, the support 15 is formed in a lattice shape, but it may be formed in a cross shape. In some cases, a mesh body with a coarse mesh may be used.

本発明による音響抵抗材の音響抵抗測定装置を示す模式的な断面図。The typical sectional view showing the sound resistance measuring device of the sound resistance material by the present invention. 開口部に設けられる支持体の構成を示す斜視図。The perspective view which shows the structure of the support body provided in an opening part. 従来の音響抵抗材の音響抵抗測定装置を示す模式的な断面図。Typical sectional drawing which shows the acoustic resistance measuring apparatus of the conventional acoustic resistance material. 固定用の重りを用いる従来の音響抵抗材の音響抵抗測定装置を示す模式的な断面図。The typical sectional view showing the acoustic resistance measuring device of the conventional acoustic resistance material using the weight for fixation.

符号の説明Explanation of symbols

10 筐体
11 上面
12 開口部
13 排気筒
14 排気ファン
15 支持体
21 スピーカ(放音手段)
22 マイクロホン(収音手段)
23 測定器
AR 音響抵抗材
DESCRIPTION OF SYMBOLS 10 Housing | casing 11 Upper surface 12 Opening part 13 Exhaust pipe 14 Exhaust fan 15 Support body 21 Speaker (sound emission means)
22 Microphone (Sound collecting means)
23 Measuring instrument AR Acoustic resistance material

Claims (5)

イクロホンに用いられるシート状の音響抵抗材を単体として、その音響抵抗を測定する音響抵抗材の音響抵抗測定装置において、
上記音響抵抗材が着脱自在に載置される上面に、上記音響抵抗材により覆われる大きさの開口部を有する中空の筐体と、上記筐体の上記開口部上に配置されている上記音響抵抗材の一方の面に向けて音波を放出する放音手段としてのスピーカと、上記音響抵抗材の他方の面側に配置され、上記音響抵抗材を透過する音波を収音する収音手段としてのマイクロホンと、上記マイクロホンにて収音された音の大きさを測定する測定手段と、上記筐体内の空気を排気し上記筐体内を負圧にして上記音響抵抗材を上記筐体の上面に密着させる排気手段とを備えていることを特徴とする音響抵抗材の音響抵抗測定装置。
As a single sheet-like acoustic resistance material used for microphones, in the acoustic resistance measurement device of the acoustic resistance member for measuring the acoustic resistance,
A hollow housing having an opening of a size covered by the acoustic resistance material on an upper surface on which the acoustic resistance material is detachably mounted, and the sound disposed on the opening of the housing and speaker as a sound emitting means for emitting sound waves toward the one surface of the resistive material is disposed on the other surface side of the acoustic resistance member, the sound pickup for picking up the sound waves transmitted through the acoustic resistance member a microphone of the means, the measuring means for measuring the magnitude of the picked-up sound at the microphone, the housing of the air is evacuated the housing said housing and said acoustic resistance member in the negative pressure An acoustic resistance measuring device for an acoustic resistance material, comprising exhaust means for closely contacting the upper surface of the body .
記スピーカ上記筐体の外側で上記開口部の真上に配置されるとともに、上記マイクロホンが上記筐体の内側で上記開口部の真下に配置されることを特徴とする請求項1に記載の音響抵抗材の音響抵抗測定装置。 Claim upper kissing speaker is characterized in that the outside of the housing while being located directly above the opening, the microphone is placed directly below the opening inside the top Kikatamitai 1 The acoustic resistance measuring apparatus of the acoustic resistance material as described in 2. 上記排気手段として、排気ファンが用いられることを特徴とする請求項1または2に記載の音響抵抗材の音響抵抗測定装置。   The acoustic resistance measurement apparatus for an acoustic resistance material according to claim 1, wherein an exhaust fan is used as the exhaust means. 上記開口部内に、上記音響抵抗材を平坦に支持する桟状もしくは格子状の支持体が設けられていることを特徴とする請求項1ないし3のいずれか1項に記載の音響抵抗材の音響抵抗測定装置。   The sound of the acoustic resistance material according to any one of claims 1 to 3, wherein a support in the form of a bar or a lattice that supports the acoustic resistance material flatly is provided in the opening. Resistance measuring device. イクロホンに用いられるシート状の音響抵抗材を単体として、その音響抵抗を測定する音響抵抗材の音響抵抗測定方法において、
上記音響抵抗材が着脱自在に載置される上面に、上記音響抵抗材により覆われる大きさの開口部を有する中空の筐体と、上記筐体の上記開口部上に配置されている上記音響抵抗材の一方の面に向けて音波を放出する放音手段としてのスピーカと、上記音響抵抗材の他方の面側に配置され、上記音響抵抗材を透過する音波を収音する収音手段としてのマイクロホンと、上記マイクロホンにて収音された音の大きさを測定する測定手段と、上記筐体内の空気を排気し上記筐体内を負圧にする排気手段とを備え、
上記筐体の上面に上記開口部を覆うように上記音響抵抗材を載置し、上記スピーカにより上記音響抵抗材の一方の面に向けて音波を放出するとともに、上記音響抵抗材の他方の面側に配置されている上記マイクロホンにて上記音響抵抗材を透過する音波を収音して、上記測定手段により上記音響抵抗材の音響抵抗を測定するにあたって、
上記排気手段により上記筐体内の空気を排気し上記筐体内を負圧にすることにより、大気圧にて上記音響抵抗材の周縁部を上記筐体の上面に密着させて固定することを特徴とする音響抵抗材の音響抵抗測定方法。
As a single sheet-like acoustic resistance material used for microphones, in the acoustic resistance measurement method of the acoustic resistance member for measuring the acoustic resistance,
A hollow housing having an opening of a size covered by the acoustic resistance material on an upper surface on which the acoustic resistance material is detachably mounted, and the sound disposed on the opening of the housing and speaker as a sound emitting means for emitting sound waves toward the one surface of the resistive material is disposed on the other surface side of the acoustic resistance member, the sound pickup for picking up the sound waves transmitted through the acoustic resistance member with a microphone and a means, measuring means for measuring the magnitude of the picked-up sound at the microphone, and an exhaust means for negative pressure the housing is evacuated to the housing of the air,
The acoustic resistance material is placed on the upper surface of the housing so as to cover the opening, and the speaker emits a sound wave toward one surface of the acoustic resistance material, and the other surface of the acoustic resistance material. In collecting the sound wave transmitted through the acoustic resistance material with the microphone arranged on the side, and measuring the acoustic resistance of the acoustic resistance material by the measuring means,
By exhausting the air in the housing by the exhaust means and making the inside of the housing negative pressure, the peripheral portion of the acoustic resistance material is brought into close contact with the upper surface of the housing at atmospheric pressure and fixed. An acoustic resistance measurement method for an acoustic resistance material.
JP2006009443A 2006-01-18 2006-01-18 Acoustic resistance measuring device and method for acoustic resistance material Expired - Fee Related JP4712564B2 (en)

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JPH10301574A (en) * 1997-04-23 1998-11-13 Aisin Seiki Co Ltd Cover made of resin
JP2002054988A (en) * 2000-08-11 2002-02-20 Shiin:Kk Sound absorbing/sound insulating performance test device
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Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10301574A (en) * 1997-04-23 1998-11-13 Aisin Seiki Co Ltd Cover made of resin
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