The present invention relates to the technical field of electro-acoustic products, in particular to a speaker module and an assembling method of the speaker module.
A speaker module is an important acoustic part of a portable electronic device for completing the conversion between an electrical signal and a sound signal and is an energy conversion device.
The speaker module includes a housing within which a speaker monomer is contained, the speaker monomer includes a vibration system and a magnetic system; the housing of the module is generally made by combining at least two plastic shells. When the speaker module of this kind of structure is assembled, it is needed first to fix the speaker monomer to one of the shells, and then to weld two plastic shells as one by ultrasonic welding process, so as to complete the assembly of the speaker module. When assembling, the above assembling process will result in disadvantages such as damage to the speaker monomer, leak of the speaker monomer, etc., which is mainly represented by the following:
1. during the ultrasonic welding, the speaker monomer may often be damaged by the ultrasound machine;
2. for some speaker modules with an insufficient space of height, during ultrasonic welding, the shells may be squeezed by the speaker monomer, the plastic shells may be prone to deform, even break;
3. because in the ultrasonic welding, the welding is achieved by high-frequency vibration, the sealant coated on the periphery of the speaker monomer for sealing the front acoustic cavity and the rear acoustic cavity of the module may fail under the effect of the high-frequency vibrations, which may result in an untight sealing and leakage.
For the above technical problems, there is no good solution in the art at present.
In view of the above disadvantages, a first technical problem to be solved by the present invention is to provide a speaker module, which in the course of the assembling, avoids the occurrence of the disadvantages of damage of the speaker monomer, deformation or breaking of the shells of the module or leakage of the front and the rear acoustic cavity of the module, so that the end products of the modules have a high qualified rate.
Based on the same inventive concept, a second technical problem to be solved by the present invention is to provide an assembling method of a speaker module, which can avoid the disadvantages of damage of the speaker monomer, deformation or breaking of the shells of the module or leakage of the front and the rear acoustic cavity of the module caused by the ultrasonic welding, so that the produced end products of the modules have a high qualified rate.
To solve the above-said first technical problem, the technical solution of the present invention is:
A speaker module includes a housing, a speaker monomer being contained within the housing and the housing including a first shell and a second shell combined together, two buckle structures for buckling the speaker monomer are provided on the second shell, the two buckle structures having a transverse elasticity; a mounting hole is provided at the position on the first shell corresponding to the two buckle structures, the speaker monomer being mounted into a cavity of the module through the mounting hole and being buckled between the two buckle structures, and a third shell being covered at the mounting hole; a front acoustic cavity of the module is surrounded by the first shell, the third shell and the speaker monomer together, and a rear acoustic cavity of the module is surrounded by the first shell, the second shell and the speaker monomer together.
Wherein, the third shell is a steel sheet.
As an embodiment, a sounding hole of the module is located in a side portion of the speaker monomer and is provided between the first shell and the second shell, and through holes for communicating the front acoustic cavity and the sounding hole are provided on the first shell located in a side portion of the mounting hole.
As another embodiment, a sounding hole of the module is located on the third shell, and the sounding hole is located in the range of the front projection of the speaker monomer.
Wherein, avoiding grooves are provided at both positions on a side wall of the mounting hole corresponding to the two buckle structures, the two buckle structures being respectively located within the corresponding avoiding grooves.
Wherein, several protruding positioning ribs are provided at the positions on the side wall of the mounting hole where there is no avoiding grooves provided, a boss is provided between the two adjacent positioning ribs, and a glue coating groove for sealing the front acoustic cavity and the rear acoustic cavity is formed between the positioning ribs and the speaker monomer, and between the boss and the speaker monomer.
Wherein, the buckle structures include a connection portion perpendicular to the bottom of the second shell, the connection portion having a transverse elasticity, the end portion of the connection portion being provided with a buckle portion which is perpendicular to the connection portion and extends toward the direction of the speaker monomer, and the buckle portion being buckled on the end face of the speaker monomer.
Wherein, a slot adapted to the buckle portion is provided on the end face of the speaker monomer.
Wherein, the steel sheet includes a steel sheet body, side wings which are parallel to the steel sheet body and lower than the steel sheet body being provided in the periphery of the steel sheet body, the steel sheet body being integrated with the side wings through a side wall, and a glue receiving groove being formed between the side wall, the side wings and the first shell.
To solve the above second technical problem, the technical solution of the present invention is:
A method for assembling the speaker module includes steps of a S1, providing the first shell and the second shell, and welding the first shell and the second shell as one by ultrasonic process; S2, mounting the speaker monomer, in a direction downward along a magnetic system, between the two buckle structures from the mounting hole; S3, coating glue between the speaker monomer and the first shell to seal the front acoustic cavity and the rear acoustic cavity; S4, placing the third shell at the mounting hole above the speaker monomer, and coating the glue between the third shell and the first shell to perform sealing, thus completing the assembling of the speaker module.
After adopting the above technical solutions, the beneficial effects of the present invention are:
Because two buckle structures for buckling the speaker monomer are provided on the second shell of the speaker module of the present invention, and the two buckle structures have transverse elasticity; a mounting hole for mounting the speaker monomer between the two buckle structures is provided at the position on the first shell corresponding to the two buckle structures, and a third shell is covered at the mounting hole. When assembling, such a structure of the speaker module can first combine the first shell and the second shell as one by ultrasonic welding and then press the speaker monomer downward along the magnetic system from the mounting hole into the shells. Because the buckle structures have a transverse elasticity, when the speaker monomer moves downward, the buckle structures will expand to both sides of the speaker. When the speaker monomer fully enters into the shells, the buckle structures will rebound to buckle the speaker, which plays a role of fixation of the speaker monomer. Then, the glue is coated between the speaker monomer and the shells to seal the front acoustic cavity and the rear acoustic cavity. At last, a third shell is covered at the mounting hole and fixed and sealed with the first shell by coating the glue. It can be known from the above-said assembling sequence, in the speaker module of the present invention, first the ultrasonic welding is performed between the shells, and then the speaker monomer is mounted into the shells, thus avoiding the disadvantages of the damage of the speaker monomer, the deformation or breaking of the shells of the module or the leakage of the front and the rear acoustic cavity of the module caused when performing the ultrasonic welding, so that the end products of the modules have a high qualified rate.
Because the assembling method of the speaker module of the present invention is first performing the ultrasonic welding between the shells, then mounting the speaker monomer into the inner cavity of the module, and at last sealing by coating the glue, the assembling method of the speaker module of the present invention can avoid the disadvantages of the damage of the speaker monomer, the deformation or breaking of the shells of the module or the leakage of the front and the rear acoustic cavity of the module caused by ultrasonic welding, so that the end products of the modules have a high qualified rate.
In summary, the speaker module and the assembling method thereof of the present invention solve the technical problems in the art that the damage of the speaker monomer, the deformation or even breaking of the shells of the module and the leakage of the front and the rear acoustic cavity of the module are prone to occur in the assembling of the speaker module. The speaker module and the assembling method thereof of the present invention effectively solve the above-said technical problems and increase the qualified rate of the end products of the speaker modules.
The above explanation is merely an outline of the technical solution of the present application. In order to be able to understand the technical means of the present application more clearly and to be able to implement it in accordance with the contents of the specification, and in order to enable the above-said and other objectives, features and advantages of the present application more evident and comprehensible, the specific embodiments of the present application are particularly described in the following.
By the following description of the present invention in conjunction of the attached drawings, the above-said features and technical advantages of the present invention will become clearer and understandable.
In the drawings: 10a a first shell, 10b a first shell, 100 a mounting hole, 12 an avoiding groove, 14 positioning ribs, 16 a boss, 18 through holes, 20a a second shell, 20b a second shell, 22 buckle structures, 220 a buckle portion, 222 a connection portion, 224 an inclined plane, 30 a speaker monomer, 32 a monomer front cover, 320 a slot, 34 a monomer housing, 360 a dome, 362 a diaphragm, 364 a voice coil, 380 a magnetic permeability plate, 382 an inner magnet, 384 an outer magnet; 386 an inner washer, 388 an outer washer, 40a a steel sheet, 40b a steel sheet, 42a a steel sheet body, 42b a steel sheet body, 44 side wings, 46 a side wall, 50a a sounding hole. 50b a sounding hole, 60 a glue receiving groove, 62 a glue coating groove, 70 a front acoustic cavity, 72 a rear acoustic cavity.
Herein below, the present invention will be further elaborated in connection with the attached drawings and embodiments.
In the following description, certain exemplary embodiments of the present invention are only described in an illustrative way. Needless to say, those ordinary skilled in the art can recognize that, the embodiments can be modified in various different ways without departing from the spirit and scope of the present invention. Therefore, the attached drawings and description are in an illustrative nature, and not for limiting the protection scope of the claims. In the present specification, the same reference numerals indicate the same or similar part.
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A speaker monomer is contained within a space surrounded by a steel sheet 40b, a first shell 10b and a second shell 20b, the module is of a front sounding structure, a sounding hole 50b is provided in a middle position of a steel sheet body 42b, and the sounding hole 50b is located in the range of the front projection of the speaker monomer.
Because the sounding hole 40b is provided in the range of the front projection of the speaker monomer and sounds direct from the front acoustic cavity, there is no need to provide through holes on the first shell 10b, which simplified the structure of the shells.
The assembling method of the above speaker module includes the steps of:
S1, providing a first shell and a second shell, and welding the first shell and the second shell as one by ultrasonic process;
S2, aligning a speaker monomer with the position of a mounting hole downward along a magnetic system and applying a downward pressure thereto, to mount the speaker monomer between two buckle structures from the mounting hole;
S3, coating glue within a glue coating groove formed between the speaker monomer and the first shell to seal a front acoustic cavity and a rear acoustic cavity;
S4, placing a steel sheet at the mounting hole above the speaker monomer to be supported by the speaker monomer, and coating the glue within a glue receiving groove formed between the steel sheet and the first shell to seal the front acoustic cavity, thus completing the assembling of the whole speaker module.
It can be known from the above-said structure and assembling method, the structure of the housing of the module is improved in the present invention, so that first performing the ultrasonic welding between the shells, then mounting the speaker monomer into the inner cavity of the module and at last sealing the front acoustic cavity by coating the glue are realized, which effectively solves the disadvantages caused by first mounting the speaker monomer and then performing ultrasonic welding in prior art. According to the present invention, in the course of the assembling, the problems of the damage of the speaker monomer, the deformation or breaking of the shells and the leakage of the front and the rear acoustic cavity will not occur, and the end products of the speaker modules of the present invention have a high qualified rate.
The present invention is not limited to the above specific embodiment, and various modifications made by those ordinary skilled in the art starting from the above idea and without creative labor all fall into the protection scope of the present invention.
Number | Date | Country | Kind |
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2014 1 0341650 | Jul 2014 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2015/075193 | 3/27/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2016/008315 | 1/21/2016 | WO | A |
Number | Name | Date | Kind |
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20070265029 | Tsai | Nov 2007 | A1 |
20150195638 | Tseng | Jul 2015 | A1 |
Number | Date | Country | |
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20160316287 A1 | Oct 2016 | US |