JPS59215197A - Diaphragm for speaker - Google Patents
Diaphragm for speakerInfo
- Publication number
- JPS59215197A JPS59215197A JP8946083A JP8946083A JPS59215197A JP S59215197 A JPS59215197 A JP S59215197A JP 8946083 A JP8946083 A JP 8946083A JP 8946083 A JP8946083 A JP 8946083A JP S59215197 A JPS59215197 A JP S59215197A
- Authority
- JP
- Japan
- Prior art keywords
- diaphragm
- film
- titania
- base member
- reinforcing member
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04R—LOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
- H04R7/00—Diaphragms for electromechanical transducers; Cones
- H04R7/02—Diaphragms for electromechanical transducers; Cones characterised by the construction
Landscapes
- Engineering & Computer Science (AREA)
- Multimedia (AREA)
- Physics & Mathematics (AREA)
- Acoustics & Sound (AREA)
- Signal Processing (AREA)
- Diaphragms For Electromechanical Transducers (AREA)
Abstract
Description
【発明の詳細な説明】
産業上の利用分野
本発明は周波数特性が平坦でかつ広再生周波数帯域の4
水性、耐候性に優れた熱成形可能なスピーカ用振動板に
関するものである。DETAILED DESCRIPTION OF THE INVENTION Field of Industrial Application The present invention has a flat frequency characteristic and a wide reproduction frequency band.
This invention relates to a thermoformable speaker diaphragm that is water-based and has excellent weather resistance.
従来例の構成とその問題点
従来スピーカ用振動板材料としては紙コーンが多く使用
されてきたが、これは紙が低密度で適度の弾性率、内部
損失を有し、曲げ剛性も大きいためである。これらの物
性は音響特性上では能率。Conventional structure and its problems Paper cones have traditionally been used as a material for speaker diaphragms, but this is because paper has a low density, moderate elastic modulus, internal loss, and high bending rigidity. be. These physical properties are efficient in terms of acoustic characteristics.
再生周波数帯域、f特性の平坦性および耐入力に大きく
関係している。しかし紙の場合は熱成形ができないため
一枚ずつコーン形状に抄造する必要がちり、工程が複雑
となる。そのため製造時での品質が安定ぜす、又、耐水
性、耐湿性にも劣っている。It is largely related to the reproduction frequency band, the flatness of the f characteristic, and the input resistance. However, since paper cannot be thermoformed, it is necessary to form each sheet into a cone shape, which makes the process complicated. Therefore, the quality at the time of manufacture is unstable, and the water resistance and moisture resistance are also poor.
近年、紙に代わる材料としてアルミニウムやベリラム等
の金属材料やポリプロピレン、ポリエチレン、ポリエス
テル等の高分子材料が使われてきている。しかし金属材
料の場合は比弾性率が高い反面、内部損失が極端に低い
欠点があり、f特性上では高域に鋭いピークを生じる。In recent years, metal materials such as aluminum and berylum, and polymeric materials such as polypropylene, polyethylene, and polyester have been used as materials to replace paper. However, while metal materials have a high specific modulus, they have the disadvantage of extremely low internal loss, and their f-characteristics exhibit sharp peaks in the high range.
−実高分子材t1の場合は内部損失が高く成形性、耐水
性、耐候性にも優れている反面、比弾性率2曲げ剛性が
低いという欠点がある。- In the case of the real polymer material t1, although it has a high internal loss and is excellent in moldability, water resistance, and weather resistance, it has the disadvantage of a low specific modulus of elasticity 2 and low bending rigidity.
発明の目的
本発明は高分子材料から成る振動板の欠点である比弾性
率、低剛性を改善し、広帯域化、高耐入力化を可能にす
るものである。OBJECTS OF THE INVENTION The present invention improves the specific elastic modulus and low rigidity, which are disadvantages of diaphragms made of polymeric materials, and enables a wider band and higher input resistance.
発明の構成
本発明は高分子中で最も密度の低いオレフィン系高分子
を基拐とし、酸化アルミニウムで被覆されたチタニアを
強化拐として持つスピーカ用振動板である。DESCRIPTION OF THE INVENTION The present invention is a speaker diaphragm that is based on an olefinic polymer, which has the lowest density among polymers, and has titania coated with aluminum oxide as a reinforcing layer.
オレフィン系高分子とは、ポリエチレン、ポリプロピレ
ン、4−メチルペンテンポリマ等を指すが成形性にすぐ
れ、内部損失も大きい利点がある。Olefinic polymers refer to polyethylene, polypropylene, 4-methylpentene polymers, etc., which have the advantage of excellent moldability and large internal loss.
反面弾性率、耐熱性が低く接着性も悪い。チタニアを混
入することにより耐熱性および接着性は向上するが、チ
タニア単体では凝集構造を作り易く、分散性が悪く、又
、弾性率もち、まり高くならない。On the other hand, it has low elastic modulus, low heat resistance, and poor adhesion. Heat resistance and adhesion are improved by incorporating titania, but titania alone tends to form an agglomerated structure, has poor dispersibility, and has a high elastic modulus that does not increase.
チタニア表面に酸化アルミニウムの被膜を作ることによ
り上記の欠点を解消できることがわかった。It has been found that the above drawbacks can be overcome by forming an aluminum oxide film on the titania surface.
これは酸化アルミニウムの弾性率が4.3×1o12d
)’n/cnfと高く、又樹脂基材とのなじみも良くな
り、凝集構造を作りにくいだめと考えらJ(る。This means that the elastic modulus of aluminum oxide is 4.3×1o12d
)'n/cnf is high, and it also has good compatibility with the resin base material, making it difficult to form an agglomerated structure.
本発明の振動板は高内部損失、高弾性率、低密度である
ため、高域周波数特性が平坦でかつ広再生周波数帯域の
耐水性、耐候性にすぐれたものである。又熱可塑性樹脂
が基材であるため熱成形が可能で、ロット間の品質も安
定している0実施例の説明
以下本発明の実施例について説明する0〔実施例1〕
基拐としてポリプロピレン(三井石油化学製F301
)、強化月として粒径6μmのチタニア(ルチル)を1
0%水酸化アルミニウム水溶液に浸漬した後、電箆炉中
にて1400℃で焼結したものを用いた。基材70wt
%と強化材30wt%をプラベンダーで良く混合した後
、二軸スクリュー押出機により一旦マスタペレットを作
り、次にこのマスターペレットを用い、Tダイフィルム
押出機により厚さ300/Imの複合フィルムを引いた
。Since the diaphragm of the present invention has high internal loss, high elastic modulus, and low density, it has flat high frequency characteristics and excellent water resistance and weather resistance over a wide reproduction frequency band. In addition, since thermoplastic resin is the base material, thermoforming is possible, and the quality between lots is stable.0 Description of Examples Examples of the present invention will be described below.0 [Example 1] Polypropylene ( Mitsui Petrochemical F301
), 1 titania (rutile) with a particle size of 6 μm was used as a reinforcement material.
The material used was immersed in a 0% aluminum hydroxide aqueous solution and then sintered at 1400° C. in an electric kiln. Base material 70wt
% and 30 wt % of the reinforcing material were well mixed in a plastic bender, a master pellet was made using a twin screw extruder, and then a composite film with a thickness of 300/Im was made using a T-die film extruder using this master pellet. I pulled it.
次にこのフィルムを250℃雰囲気の釜中で約15秒程
度加熱し、複合フィルムが軟化した後、真空成形を行な
い口径12cmの振動板を得た。図面はとの振動板を用
いたスピーカのf特性を示し、これは従来のポリエステ
ルフィルム振動板を用いたスピーカのf特性に比べ平坦
でかつ広再生帯域となっている。又面]水性、耐候性に
おいても従来の紙コーンよりはるかにすぐれている。チ
タニア単体では基材とのなじみが悪く凝集体を作り弾性
率も低かったが、本実施例の強化材はチタニアの表面に
酸化アルミニウムの焼結体層を形成しているため基材と
のなじみが良く均一に分散しており、弾性率も約2倍に
向上した。Next, this film was heated in a pot at 250° C. for about 15 seconds to soften the composite film, and then vacuum-formed to obtain a diaphragm with a diameter of 12 cm. The drawing shows the f-characteristics of a speaker using the same diaphragm, which is flatter and has a wider reproduction band than the f-characteristics of a speaker using a conventional polyester film diaphragm. Furthermore, it is far superior to conventional paper cones in terms of water resistance and weather resistance. Titania alone has poor compatibility with the base material, forming aggregates and having a low elastic modulus, but the reinforcing material in this example forms a sintered layer of aluminum oxide on the surface of the titania, making it compatible with the base material. was well and uniformly dispersed, and the elastic modulus was approximately doubled.
〔実施例2〕
基材として4−メチルペンテンポリマ(三井石油化学製
TPXDX−845)90wt%2強化材として実施例
1の酸化アルミニウムで被覆されたチタニア10wt%
を複合した厚さ5C50μmのフィルムを遠赤外線で約
30秒間加熱し、軟化した時点で真空成形を行ない、口
径が20cmのウーハ振動板を得だ。このウーハ特性も
高域でのピーク、ディップが少ない広帯域なものであっ
た。[Example 2] 90 wt% 4-methylpentene polymer (TPXDX-845 manufactured by Mitsui Petrochemicals) as a base material 10 wt% titania coated with aluminum oxide of Example 1 as a reinforcing material
A composite film with a thickness of 5C and 50μm was heated with far infrared rays for about 30 seconds, and when it softened, it was vacuum formed to obtain a woofer diaphragm with a diameter of 20cm. This woofer characteristic also had a wide band with few peaks and dips in the high range.
発明の効果
以上のように本発明の振動板は高内部損失、高弾性率、
低密度であるため、高域周波数特性が平坦であり、かつ
広再生周波数帯域の耐水性、耐候性にすぐれたものであ
る。As described above, the diaphragm of the present invention has high internal loss, high elastic modulus,
Because of its low density, it has flat high frequency characteristics and has excellent water resistance and weather resistance over a wide reproduction frequency band.
図は本発明の実施例による振動板を用いたスピーカと従
来のポリエステル振動板を用いたスピーカの周波数特性
を比較して示した図である。The figure is a diagram comparing the frequency characteristics of a speaker using a diaphragm according to an embodiment of the present invention and a conventional speaker using a polyester diaphragm.
Claims (1)
で被覆されたチタニアを強化材としたことを特徴とする
スピーカ用振動板。A speaker diaphragm characterized by having an olefinic polymer material as a base material and titania coated with aluminum oxide as a reinforcing material.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP8946083A JPS59215197A (en) | 1983-05-20 | 1983-05-20 | Diaphragm for speaker |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP8946083A JPS59215197A (en) | 1983-05-20 | 1983-05-20 | Diaphragm for speaker |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS59215197A true JPS59215197A (en) | 1984-12-05 |
Family
ID=13971311
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP8946083A Pending JPS59215197A (en) | 1983-05-20 | 1983-05-20 | Diaphragm for speaker |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS59215197A (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US7913808B2 (en) | 2008-03-27 | 2011-03-29 | Bose Corporation | Waterproofing loudspeaker cones |
US8172035B2 (en) | 2008-03-27 | 2012-05-08 | Bose Corporation | Waterproofing loudspeaker cones |
-
1983
- 1983-05-20 JP JP8946083A patent/JPS59215197A/en active Pending
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US7913808B2 (en) | 2008-03-27 | 2011-03-29 | Bose Corporation | Waterproofing loudspeaker cones |
US8172035B2 (en) | 2008-03-27 | 2012-05-08 | Bose Corporation | Waterproofing loudspeaker cones |
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