ULTRATHIN ASSEMBLED SPEAKER CONE
20190349686 ยท 2019-11-14
Inventors
Cpc classification
G10K13/00
PHYSICS
H04R2207/021
ELECTRICITY
H04R2307/021
ELECTRICITY
International classification
G10K13/00
PHYSICS
Abstract
An ultrathin assembled speaker cone includes a support frame and a vibrating diaphragm. The support frame has a first support portion, a second support portion, and a connecting portion connected between the first support portion and the second support portion. Through the vibrating diaphragm, the problem that the conventional speaker cone is not sufficiently lightweight is effectively solved, and the material of the vibrating diaphragm may have more diverse options.
Claims
1. An ultrathin assembled speaker cone, comprising a support frame and a vibrating diaphragm, the support frame having a first support portion, a second support portion and a connecting portion connected between the first support portion and the second support portion, a space being defined between the first support portion and the second support portion, the first support portion having a diameter greater than that of the second support portion, the connecting portion dividing the space between the first support portion and the second support portion into a plurality of hollow cavities; at least upper and lower ends of the vibrating diaphragm being fixed to the first support portion and the second support portion, respectively.
2. The ultrathin assembled speaker cone as claimed in claim 1, wherein the connecting portion is a first connecting rib, the first connecting rib, the first support portion and the second support portion are of an integral structure, the first connecting rib is inwardly curved; the vibrating diaphragm is adhered to inner surfaces of the first support portion and the second support portion and the first connecting rib.
3. The ultrathin assembled speaker cone as claimed in claim 1, wherein the connecting portion is a second connecting rib, the second connecting rib, the first support portion and the second support portion are of an integral structure, the second connecting rib is straightly disposed, and the vibrating diaphragm is adhered to the first support portion and the second support portion.
4. The ultrathin assembled speaker cone as claimed in claim 1, wherein the connecting portion is a connecting rod, the first support portion is provided with a plurality of first positioning portions on an outer surface thereof, the second support portion is provided with a plurality of second positioning portions on an outer surface thereof, the first positioning portions correspond to the second positioning portions respectively; two ends of the connecting rod are fixed to a corresponding one of the first positioning portions and a corresponding one of the second positioning portions, respectively.
5. The ultrathin assembled speaker cone as claimed in claim 4, wherein the first positioning portions each have a first groove, the second positioning portions each have a second groove, the two ends of the connecting rod are inserted into the first groove and the second groove to be fixedly connected, respectively.
6. The ultrathin assembled speaker cone as claimed in claim 4, wherein the connecting rod is an integral elongated rod.
7. The ultrathin assembled speaker cone as claimed in claim 4, wherein the connecting rod is an assembled connected rod.
8. The ultrathin assembled speaker cone as claimed in claim 7, wherein the connecting rod includes a first rod body, a second rod body and a nut, the first rod body has a right-handed screw thread thereon, the second rod body has a left-handed screw thread thereon; the first rod body and the second rod body are screwedly connected to two ends of the nut, respectively.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
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[0022] The support frame 10 has a first support portion 11, a second support portion 12, a connecting portion connected between the first support portion 11 and the second support portion 12. A space is defined between the first support portion 11 and the second support portion 12. The diameter of the first support portion 11 is greater than the diameter of the second support portion 12. The connecting portion divides the space between the first support portion 11 and the second support portion 12 into a plurality of hollow cavities 101. For example, the connecting portion includes six spaced connecting portions arranged between the first support portion 11 and the second support portion 12. The connecting portions are arranged only in the necessary positions, and other positions are hollow to effectively reduce the weight of the support frame 10. Of course, in the actual production, the number of connecting portions may be adjusted according to the size of the speaker cone, and is not limited to this embodiment.
[0023] In this embodiment, the connecting portion is a first connecting rib 30. The first connecting rib 30, the first support portion 11 and the second support portion 12 are of an integral structure. Wherein, the first support portion 11 and the second support portion 12 are each in a circular shape. The first support portion 11, the second support portion 12, and the connecting portion of the support frame 10 are all made of a plastic material, and may be formed by injection molding. The production is simple and convenient. Of course, the support frame 10 may be made other materials, such as wood or metal materials. The first connecting rib 30 is inwardly curved. The vibrating diaphragm 20 is adhered to the inner surfaces of the first support portion 11 and the second support portion 12 and the first connecting rib 30 so that the vibrating diaphragm 20 is fully affixed.
[0024] The vibrating diaphragm 20 may be made of any material, such as carbon fiber, glass fiber, full paper, Mylar, cowhide, bulletproof fiber, composite material, leather, and the like. The vibrating diaphragm 20 provided in this way can effectively solve the problem that the conventional speaker cone is not thin enough. The vibrating diaphragm 20 can use any material as a thin diaphragm, thereby improving the flexibility of selecting the material of the vibrating diaphragm. In addition, the vibrating diaphragm 20 can be attached to different materials of the support frame 10, thereby improving the flexibility of use of the vibrating diaphragm 20.
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[0027] In addition, the first support portion 11, the second support portion 12 and the connecting rod 50 are formed separately and then assembled together, and they may be made of different materials. For example, the first support portion 11 and the second support portion 12 are made of a plastic material, and the connecting portion is a solid silicone steel rod made of a metal material. Through the combination of different materials, the product meets the rigid demand and is thinner and lighter.
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[0029] Specifically, referring to
[0030] Referring to
[0031] Of course, if the vibrating diaphragm 20 is made of a plastic material, it can be fixed on the support frame 10 by a blister process. When a blister technique is used, it is not necessary to use an upper jig, and only the lower jig is replaced with a jig having an air suction hole at the bottom thereof. In the production, the fixing manner of the support frame 10 is basically the same as the first manufacturing process and the second manufacturing process; after that, the vibrating diaphragm 20 is placed on the support frame 10, and the vibrating diaphragm 20 is softened by heating. Finally, the vibrating diaphragm 20 is adsorbed, deformed, and adhered to the support frame 10 by a blister machine.
[0032] Although particular embodiments of the present invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the present invention. Accordingly, the present invention is not to be limited except as by the appended claims.