REINFORCING PART FOR DIAPHRAGM OF SPEAKER, THE DIAPHRAGM AND THE SPEAKER
20210400390 ยท 2021-12-23
Assignee
Inventors
Cpc classification
H04R2499/11
ELECTRICITY
H04R2207/021
ELECTRICITY
International classification
Abstract
Disclosed is a reinforcing part for a speaker diaphragm. The reinforcing part includes a body layer, and the body layer includes through-holes penetrating surfaces of two sides of the body layer. The reinforcing part further includes fillers located within the through holes and configured for heat conduction. The fillers have a thermal conductivity higher than that of the body layer. The reinforcing part of the present invention improves the heat conduction capability between two sides of a support layer by providing through holes on the support layer and providing a heat-conducting filler within the through holes.
Claims
1. A reinforcing part for a speaker diaphragm, comprising a body layer, wherein the body layer comprises a plurality of through-holes penetrating surfaces of two sides of the body layer, and the reinforcing part further comprises a plurality of fillers, each located within one of the through holes and configured for heat-conduction.
2. The reinforcing part for a speaker diaphragm of claim 1, wherein the plurality of fillers have a thermal conductivity higher than that of the body layer.
3. The reinforcing part for a speaker diaphragm of claim 1, wherein each of the plurality of fillers have a sidewall surface bonded and fixed to an inner wall of one of the plurality of through holes by adhering.
4. The reinforcing part for a speaker diaphragm of claim 1, wherein each of the plurality of fillers have a sidewall surface fitted and fixed to an inner wall of one of the plurality of through holes by an interference fit.
5. The reinforcing part for a speaker diaphragm of claim 1, wherein the body layer comprises a plurality of through holes penetrating surfaces of two sides of the body layer, wherein the plurality of through holes are evenly distributed on the body layer.
6. The reinforcing part for a speaker diaphragm of claim 1, wherein each of the plurality of through holes has a cross-sectional shape that is circular, elliptical or rectangular.
7. The reinforcing part for a speaker diaphragm of claim 1, wherein the body layer is made of carbon fiber, resin or steel.
8. The reinforcing part for a speaker diaphragm of claim 1, wherein the plurality of fillers are heat-conducting particles made of graphene, copper or aluminum.
9. A diaphragm, comprising a fixing part, a corrugated rim integral with the fixing part, a central part located within the corrugated rim, and the reinforcing part for a speaker diaphragm of claim 1, the reinforcing part being bonded and fixed to a surface of the central part.
10. A speaker, comprising the diaphragm of claim 9.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The specific embodiments of the present invention will be described below in further detail with reference to the accompanying drawings.
[0020]
[0021]
[0022]
DETAILED DESCRIPTION
[0023] To explain the present invention more clearly, the present invention will be further described below with reference to preferred embodiments and the accompanying drawings. Similar parts are represented by the same reference numerals in the drawings. Those skilled in the art should understand that the following detailed embodiments are illustrative rather than restrictive, and should not be interpreted as limitation to the protection scope of the present invention.
[0024] As shown in
[0025] In order to improve heat transfer efficiency between the two sides of the body layer 10, the body layer 10 of the present invention includes: through holes 101 penetrating the surfaces of the two sides, and fillers 11 arranged in the through holes 101 and having a thermal conductivity greater than that of the body layer 10. Such structure can improve the heat conduction between the two sides of the body layer 10, thereby improving the overall heat conduction capability of the reinforcing part.
[0026] Further, the fillers 11 may be made of a material selected from one of graphene, copper or aluminum, and are heat-conducting particles. In this embodiment, the fillers 11 are a copper particles located in the through holes 101 of a steel sheet.
[0027] The outer surfaces of the fillers 11 and the inner walls of the through holes 101 are fitted onto each other. Preferably, the above two are fixedly connected by adhering or are fitted and fixed by interference fit. Such structure enhances the connection strength between the fillers 11 and the body layer 10, thereby improving the reliability of the reinforcing part 1.
[0028] In another embodiment, the fillers 11 are in a powder form. In order to increase the connection strength between the powdered fillers 11 and the through holes 101, the fillers 11 may be mixed with adhesive therein such that the fillers 11 are fixedly connected to the through holes 101.
[0029] Further, the body layer 10 includes a plurality of through holes 101 penetrating through the surfaces of the two sides, which are evenly distributed on the both layer 10 and each of which is provided with a filler 11, so as to further improve the heat conduction capability between the two sides of the body layer 10.
[0030] The cross-sectional shape of the through holes 101 provided on the body layer 10 may be a circle, an ellipse or a rectangle, and may be selected by those skilled in the art according to the practical need.
[0031] As shown in
[0032] The present invention also provides a speaker. The speaker includes a magnetic circuit system and a vibration system in cooperation with the magnetic circuit system. The vibration system includes the above-mentioned diaphragm 2 and a voice coil 3 fixedly bonded to one side of the diaphragm 2. In the speaker of the present invention, the heat generated by the voice coil 3 is conducted from the rear acoustic cavity to the front acoustic cavity through the diaphragm 2, and in turn is dissipated to the outside through the air flow between the front acoustic cavity and the outside. Since the diaphragm 2 has strong heat conduction capability and may quickly dissipate the heat from the speaker, as such, the speaker of the present invention has good heat dissipation capability and thereby improved operation reliability.
[0033] Obviously, the above-mentioned embodiments of the present invention are merely examples for clear illustration of the present invention, and are not meant to limit the implementation of the present invention. For those of ordinary skill in the art, other changes or modifications may be made in various manners based on the foregoing description. Although it is not possible to list all the implementations here, any obvious changes or modifications derived from the technical solutions of the present invention still fall within the protection scope of the present invention.