CN112203207B - Assembling device for manufacturing electroacoustic device and using method thereof - Google Patents

Assembling device for manufacturing electroacoustic device and using method thereof Download PDF

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Publication number
CN112203207B
CN112203207B CN202011011739.4A CN202011011739A CN112203207B CN 112203207 B CN112203207 B CN 112203207B CN 202011011739 A CN202011011739 A CN 202011011739A CN 112203207 B CN112203207 B CN 112203207B
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pressing
seat
shaft
plate
top plate
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CN112203207A (en
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崔京
刘亚刚
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JIANGSU MIDI ACOUSTICS TECHNOLOGY Co.,Ltd.
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Jiangsu Midi Acoustics Technology Co ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R31/00Apparatus or processes specially adapted for the manufacture of transducers or diaphragms therefor
    • H04R31/006Interconnection of transducer parts

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
  • Signal Processing (AREA)
  • Electrostatic, Electromagnetic, Magneto- Strictive, And Variable-Resistance Transducers (AREA)
  • Diaphragms For Electromechanical Transducers (AREA)

Abstract

The invention discloses an assembling device for manufacturing an electroacoustic device and a using method thereof, and the assembling device comprises a supporting mechanism and a positioning mechanism arranged on the supporting mechanism, wherein a pressing mechanism is arranged above the positioning mechanism, feeding mechanisms are arranged on two sides of the pressing mechanism, a softening mechanism is arranged on the lower side of the feeding mechanism, and the positioning mechanism, the feeding mechanism, the pressing mechanism and the softening mechanism are connected with the supporting mechanism. According to the invention, the device is positioned by the profiling seat of the positioning mechanism and is moved to the lower part of the pressing mechanism, the mesh paper is limited and fixed on the profiling seat by the pressing plate of the pressing mechanism in the pressing process, and then the mesh paper is pressed by the pressing head which is pressed downwards, so that the mesh paper and the profiling seat are bonded, the operation efficiency is improved, and the stability and the quality of bonding are ensured.

Description

Assembling device for manufacturing electroacoustic device and using method thereof
Technical Field
The invention relates to the field of processing of electroacoustic devices, in particular to an assembling device for manufacturing the electroacoustic devices and a using method thereof.
Background
With the human being entering the information age, the information transmission and the electroacoustic industry cannot be left. The adjustment of the electronic industry in the world, the rapid development of the information technology and the communication technology have great influence on the development of the electroacoustic industry, and the industry develops rapidly.
An electroacoustic device refers to a device that can achieve interconversion between electricity and sound. Electroacoustic devices, which use electromagnetic induction, electrostatic induction or piezoelectric effect to perform electroacoustic conversion, include speakers, earphones, microphones, and microphones. At present, most of net cloth on the electroacoustic device is assembled manually, the operation efficiency is low, the pasting position is unstable, and the quality of the device is influenced.
Disclosure of Invention
The present invention is directed to solving the above problems by providing an assembly apparatus for manufacturing an electroacoustic device and a method of using the same.
The invention realizes the purpose through the following technical scheme:
an assembling device for manufacturing electroacoustic devices comprises a supporting mechanism and a positioning mechanism arranged on the supporting mechanism, wherein a pressing mechanism is arranged above the positioning mechanism, feeding mechanisms are arranged on two sides of the pressing mechanism, a softening mechanism is arranged on the lower side of the feeding mechanism, and the positioning mechanism, the feeding mechanism, the pressing mechanism and the softening mechanism are connected with the supporting mechanism;
the supporting mechanism comprises a support, a supporting seat is arranged at the lower end of the support, a platform is arranged on the support, an open slot through which the positioning mechanism passes is formed in the platform, and a vertical plate is arranged at the upper end of the platform;
the positioning mechanism comprises a moving seat, the moving seat is positioned at the lower side of the platform, a lead screw penetrates through the moving seat, guide pillars are arranged on two sides of the lead screw, a first servo motor is arranged at the rear end of the lead screw, a supporting plate is arranged at the upper end of the moving seat, a fixed seat is arranged at the upper end of the supporting plate, a profiling seat is arranged in the fixed seat in a sliding manner, a supporting spring is arranged between the lower end of the outer edge of the profiling seat and the fixed seat, and a positioning column is arranged on the upper end surface of the profiling seat;
the feeding mechanism comprises a raw material shaft, a waste material shaft is arranged on one side of the raw material shaft, a stepping motor is arranged at the rear end of the waste material shaft, and a first limiting shaft and a second limiting shaft are arranged between the raw material shaft and the waste material shaft and positioned on two sides of the pressing mechanism;
the pressing mechanism comprises a top plate, a pressing plate is arranged on the lower side of the top plate, a sliding rod is arranged on the periphery of the pressing plate, a spring is arranged between the top plate and the pressing plate and on the outer side of the sliding rod, a limiting hole is formed in the pressing plate, a pressing head is arranged at the lower end of the top plate, and a power component is arranged at the upper end of the top plate;
the softening mechanism comprises a U-shaped air pipe, the U-shaped air pipe is located on the lower sides of a first limiting shaft and a second limiting shaft of the feeding mechanism, air outlet nozzles are symmetrically arranged on the U-shaped air pipe, and an air inlet end of the U-shaped air pipe is provided with an air heater.
Further setting: the power part include electric telescopic handle, the electric telescopic handle stiff end is installed on the riser, electric telescopic handle movable rod end and roof welding.
So set up, be convenient for drive the roof through electric telescopic handle's flexible and remove.
Further setting: the power part comprises a connecting frame, the connecting frame is welded with the top plate and is L-shaped, a screw rod penetrates through the connecting frame, a second servo motor is arranged at the upper end of the screw rod, and the second servo motor is connected with a screw rod coupler.
So set up, drive the screw rod through second servo motor and rotate and make the link reciprocate, drive the roof and remove.
Further setting: the fixing seat is connected with the supporting plate through bolts, a cavity in which the profiling seat slides is arranged in the fixing seat, and the supporting spring is arranged at four positions around the profiling seat.
So set up, the installation of the fixing base of being convenient for and backup pad is fixed, supports the profile modeling seat through supporting spring, forms profile modeling seat buffer space.
Further setting: the positioning column is in a conical shape, the positioning column and the profiling seat are integrally formed, and the positioning column is arranged at the opposite angle.
So set up, be convenient for make profile modeling seat and clamp plate align through the reference column.
Further setting: the material shaft and the waste material shaft are rotatably connected with the vertical plate, two limiting ribs are arranged on the first limiting shaft and the second limiting shaft, and the spacing between the limiting ribs is consistent with the material width.
So set up, be convenient for carry out spacing removal with net cloth paper in clamp plate below.
Further setting: the pressing plate is provided with a through hole through which the pressing head passes, and the pressing head is made of silica gel.
Due to the arrangement, the pressing head can conveniently pass through the pressing plate, and the mesh cloth adhered to the electrical component can be completely pressed.
Further setting: the pressing plate is connected with the top plate through sliding rods, and the sliding rods are symmetrically arranged at four positions around the pressing plate.
So set up, make between clamp plate and the roof have the space that holds the pressure head.
Further setting: the width of U-shaped tuber pipe be greater than the width of fixing base, the air outlet nozzle sets up relatively, and blows to oblique upside.
So set up, be convenient for with the glue solution activation on the screen cloth, paste the back at the screen cloth simultaneously, blow off waste paper from the profile modeling seat.
A method of using an assembly apparatus for the manufacture of an electroacoustic device, comprising the steps of:
a. winding the mesh paper of the raw material shaft on the waste shaft through the lower sides of the first limiting shaft and the second limiting shaft, driving the waste shaft to rotate through the stepping motor, enabling the mesh paper to move forwards and the mesh to face the lower side, blowing heat generated by the hot air blower to the surface of the mesh paper through the air outlet nozzle, and activating glue solution on the mesh;
b. the electric appliance element is placed in the profiling seat, the first servo motor works to drive the moving seat to move towards the lower side of the pressing mechanism, and when the electric appliance element moves below the pressing plate, the power part pushes the top plate to move downwards, so that the pressing plate pushes the mesh cloth paper to move downwards;
c. the position of the mesh paper is fixed by matching the positioning column on the profiling seat with the limiting hole on the pressing plate, then the top plate is continuously pressed downwards, the pressing head is used for bonding the mesh paper on the electrical component, and then the top plate is lifted upwards to move the electrical component out.
Compared with the prior art, the invention has the following beneficial effects:
the device is positioned by the profiling seat of the positioning mechanism, the device is moved to the lower side of the pressing mechanism, the screen cloth paper is fixed on the profiling seat in a limiting mode by the pressing plate of the pressing mechanism in the pressing process, and then the screen cloth is pressed by the pressing head pressed downwards, so that the screen cloth and the screen cloth are bonded, the operation efficiency is improved, and the bonding stability and quality are guaranteed.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a first structural schematic diagram of embodiment 1 of an assembling apparatus for electroacoustic device fabrication according to the present invention;
FIG. 2 is a second schematic structural view of embodiment 1 of an assembling apparatus for electroacoustic device fabrication according to the present invention;
FIG. 3 is a schematic front view of an assembly apparatus for manufacturing an electroacoustic device according to an embodiment 1 of the present invention;
FIG. 4 is a schematic diagram of a right side view of an embodiment 1 of an assembling apparatus for manufacturing an electroacoustic device according to the present invention;
FIG. 5 is a partial schematic structural view of a pressing mechanism of embodiment 1 of an assembling apparatus for electroacoustic device fabrication according to the present invention;
FIG. 6 is a schematic view of a partial structure of a positioning mechanism of an assembling apparatus for manufacturing an electroacoustic device according to the present invention;
FIG. 7 is a schematic structural view of embodiment 2 of an assembling apparatus for electroacoustic device fabrication according to the present invention;
fig. 8 is a partial structural schematic view of a pressing mechanism of embodiment 2 of an assembling apparatus for electroacoustic device fabrication according to the present invention.
The reference numerals are explained below:
1. a support mechanism; 11. a support; 12. a platform; 13. a supporting seat; 14. a vertical plate; 2. a positioning mechanism; 21. a movable seat; 22. a lead screw; 23. a guide post; 24. a first servo motor; 25. a support plate; 26. a fixed seat; 27. a profiling seat; 28. a positioning column; 29. a support spring; 3. a feeding mechanism; 31. a raw material shaft; 32. a scrap shaft; 33. a first limit shaft; 34. a second limit shaft; 35. a stepping motor; 4. a pressing mechanism; 41. a top plate; 42. pressing a plate; 43. a limiting hole; 44. a slide bar; 45. a pressure head; 46. a power component; 461. an electric telescopic rod; 462. a connecting frame; 463. a screw; 464. a second servo motor; 5. a softening mechanism; 51. a U-shaped air duct; 52. an air outlet nozzle; 53. an air heater.
Detailed Description
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on those shown in the drawings, and are used only for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention. Furthermore, the terms "first", "second", etc. are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first," "second," etc. may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless otherwise specified.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood by those of ordinary skill in the art through specific situations.
The invention will be further described with reference to the accompanying drawings in which:
example 1
As shown in fig. 1 to 6, an assembling device for manufacturing an electroacoustic device comprises a supporting mechanism 1 and a positioning mechanism 2 arranged on the supporting mechanism 1, wherein a pressing mechanism 4 is arranged above the positioning mechanism 2, feeding mechanisms 3 are arranged on two sides of the pressing mechanism 4, a softening mechanism 5 is arranged on the lower side of the feeding mechanism 3, and the positioning mechanism 2, the feeding mechanism 3, the pressing mechanism 4 and the softening mechanism 5 are connected with the supporting mechanism 1;
the supporting mechanism 1 comprises a support 11, a supporting seat 13 is arranged at the lower end of the support 11, a platform 12 is arranged on the support 11, an open slot through which the positioning mechanism 2 passes is formed in the platform 12, and a vertical plate 14 is arranged at the upper end of the platform 12 and used for mounting the feeding mechanism 3 and the pressing mechanism 4;
the positioning mechanism 2 comprises a moving seat 21, the moving seat 21 is positioned at the lower side of the platform 12, a lead screw 22 penetrates through the moving seat 21, guide posts 23 are arranged on two sides of the lead screw 22, a first servo motor 24 is arranged at the rear end of the lead screw 22 and provides rotating power for the lead screw 22, a supporting plate 25 is arranged at the upper end of the moving seat 21, a fixed seat 26 is arranged at the upper end of the supporting plate 25, a profiling seat 27 is arranged in the fixed seat 26 in a sliding mode, a supporting spring 29 is arranged between the lower end of the outer edge of the profiling seat 27 and the fixed seat 26, and a positioning post 28 is arranged on the upper end face of the profiling seat 27 and used for limiting the mesh paper raw material;
the feeding mechanism 3 comprises a raw material shaft 31, a waste material shaft 32 is arranged on one side of the raw material shaft 31, a stepping motor 35 is arranged at the rear end of the waste material shaft 32 and drives the waste material shaft 32 to rotate so as to roll waste materials, and a first limiting shaft 33 and a second limiting shaft 34 are arranged between the raw material shaft 31 and the waste material shaft 32 and positioned on two sides of the pressing mechanism 4;
the pressing mechanism 4 comprises a top plate 41, a pressing plate 42 is arranged on the lower side of the top plate 41, a sliding rod 44 is arranged on the periphery of the pressing plate 42, a spring is arranged between the top plate 41 and the pressing plate 42 and on the outer side of the sliding rod 44, a limiting hole 43 is formed in the pressing plate 42 and is convenient to match with the positioning column 28 to fix and limit the mesh paper, a pressing head 45 is arranged at the lower end of the top plate 41, and a power component 46 is arranged at the upper end of the top plate 41;
the softening mechanism 5 comprises a U-shaped air pipe 51, the U-shaped air pipe 51 is positioned at the lower sides of the first limiting shaft 33 and the second limiting shaft 34 of the feeding mechanism 3, air outlets 52 are symmetrically arranged on the U-shaped air pipe 51, and an air inlet end of the U-shaped air pipe 51 is provided with an air heater 53.
Preferably: the power part 46 comprises an electric telescopic rod 461, the fixed end of the electric telescopic rod 461 is installed on the vertical plate 14, the movable rod end of the electric telescopic rod 461 is welded with the top plate 41, and the top plate 41 is driven to move conveniently by the expansion and contraction of the electric telescopic rod 461; the fixed seat 26 is connected with the support plate 25 through a bolt, a cavity in which the profiling seat 27 slides is arranged in the fixed seat 26, the supporting springs 29 are arranged at four positions around the profiling seat 27, so that the fixed seat 26 and the support plate 25 can be conveniently installed and fixed, the profiling seat 27 is supported through the supporting springs 29, and a buffer space of the profiling seat 27 is formed; the positioning column 28 is in a conical shape, the positioning column 28 and the profiling seat 27 are integrally formed, and the positioning column 28 is arranged diagonally, so that the profiling seat 27 is aligned with the pressing plate 42 through the positioning column 28; the raw material shaft 31 and the waste material shaft 32 are rotatably connected with the vertical plate 14, two limiting ribs are arranged on the first limiting shaft 33 and the second limiting shaft 34, and the spacing between the limiting ribs is consistent with the material width, so that the net cloth paper can be conveniently limited and moved below the pressing plate 42; the pressing plate 42 is provided with a through hole through which the pressing head 45 passes, and the pressing head 45 is made of silica gel, so that the pressing head 45 can pass through the pressing plate 42 to completely press the mesh cloth adhered to the electrical component; the pressing plate 42 is connected with the top plate 41 through a sliding rod 44, and the sliding rod 44 is symmetrically arranged at four positions around the pressing plate 42, so that a space for accommodating the pressing head 45 is formed between the pressing plate 42 and the top plate 41; the width of U-shaped tuber pipe 51 is greater than the width of fixing base 26, and air outlet 52 sets up relatively, and blows to oblique upside, is convenient for activate the glue solution on the screen cloth, pastes the back at the screen cloth simultaneously, blows off waste paper from profile modeling seat 27 and leaves.
Example 2
As shown in fig. 6-8, an assembling apparatus for manufacturing an electroacoustic device comprises a supporting mechanism 1, and further comprises a positioning mechanism 2 disposed on the supporting mechanism 1, wherein a pressing mechanism 4 is disposed above the positioning mechanism 2, feeding mechanisms 3 are disposed on two sides of the pressing mechanism 4, a softening mechanism 5 is disposed on the lower side of the feeding mechanism 3, and the positioning mechanism 2, the feeding mechanism 3, the pressing mechanism 4, and the softening mechanism 5 are connected to the supporting mechanism 1;
the supporting mechanism 1 comprises a support 11, a supporting seat 13 is arranged at the lower end of the support 11, a platform 12 is arranged on the support 11, an open slot through which the positioning mechanism 2 passes is formed in the platform 12, and a vertical plate 14 is arranged at the upper end of the platform 12 and used for mounting the feeding mechanism 3 and the pressing mechanism 4;
the positioning mechanism 2 comprises a moving seat 21, the moving seat 21 is positioned at the lower side of the platform 12, a lead screw 22 penetrates through the moving seat 21, guide posts 23 are arranged on two sides of the lead screw 22, a first servo motor 24 is arranged at the rear end of the lead screw 22 and provides rotating power for the lead screw 22, a supporting plate 25 is arranged at the upper end of the moving seat 21, a fixed seat 26 is arranged at the upper end of the supporting plate 25, a profiling seat 27 is arranged in the fixed seat 26 in a sliding mode, a supporting spring 29 is arranged between the lower end of the outer edge of the profiling seat 27 and the fixed seat 26, and a positioning post 28 is arranged on the upper end face of the profiling seat 27 and used for limiting the mesh paper raw material;
the feeding mechanism 3 comprises a raw material shaft 31, a waste material shaft 32 is arranged on one side of the raw material shaft 31, a stepping motor 35 is arranged at the rear end of the waste material shaft 32 and drives the waste material shaft 32 to rotate so as to roll waste materials, and a first limiting shaft 33 and a second limiting shaft 34 are arranged between the raw material shaft 31 and the waste material shaft 32 and positioned on two sides of the pressing mechanism 4;
the pressing mechanism 4 comprises a top plate 41, a pressing plate 42 is arranged on the lower side of the top plate 41, a sliding rod 44 is arranged on the periphery of the pressing plate 42, a spring is arranged between the top plate 41 and the pressing plate 42 and on the outer side of the sliding rod 44, a limiting hole 43 is formed in the pressing plate 42 and is convenient to match with the positioning column 28 to fix and limit the mesh paper, a pressing head 45 is arranged at the lower end of the top plate 41, and a power component 46 is arranged at the upper end of the top plate 41;
the softening mechanism 5 comprises a U-shaped air pipe 51, the U-shaped air pipe 51 is positioned at the lower sides of the first limiting shaft 33 and the second limiting shaft 34 of the feeding mechanism 3, air outlets 52 are symmetrically arranged on the U-shaped air pipe 51, and an air inlet end of the U-shaped air pipe 51 is provided with an air heater 53.
Preferably: the power part 46 comprises a connecting frame 462, the connecting frame 462 is welded with the top plate 41, the connecting frame 462 is L-shaped, a screw 463 penetrates through the connecting frame 462, a second servo motor 464 is arranged at the upper end of the screw 463, the second servo motor 464 is in coupling connection with the screw 463, and the second servo motor 464 drives the screw 463 to rotate so that the connecting frame 462 moves up and down and the top plate 41 moves; the fixed seat 26 is connected with the support plate 25 through a bolt, a cavity in which the profiling seat 27 slides is arranged in the fixed seat 26, the supporting springs 29 are arranged at four positions around the profiling seat 27, so that the fixed seat 26 and the support plate 25 can be conveniently installed and fixed, the profiling seat 27 is supported through the supporting springs 29, and a buffer space of the profiling seat 27 is formed; the positioning column 28 is in a conical shape, the positioning column 28 and the profiling seat 27 are integrally formed, and the positioning column 28 is arranged diagonally, so that the profiling seat 27 is aligned with the pressing plate 42 through the positioning column 28; the raw material shaft 31 and the waste material shaft 32 are rotatably connected with the vertical plate 14, two limiting ribs are arranged on the first limiting shaft 33 and the second limiting shaft 34, and the spacing between the limiting ribs is consistent with the material width, so that the net cloth paper can be conveniently limited and moved below the pressing plate 42; the pressing plate 42 is provided with a through hole through which the pressing head 45 passes, and the pressing head 45 is made of silica gel, so that the pressing head 45 can pass through the pressing plate 42 to completely press the mesh cloth adhered to the electrical component; the pressing plate 42 is connected with the top plate 41 through a sliding rod 44, and the sliding rod 44 is symmetrically arranged at four positions around the pressing plate 42, so that a space for accommodating the pressing head 45 is formed between the pressing plate 42 and the top plate 41; the width of U-shaped tuber pipe 51 is greater than the width of fixing base 26, and air outlet 52 sets up relatively, and blows to oblique upside, is convenient for activate the glue solution on the screen cloth, pastes the back at the screen cloth simultaneously, blows off waste paper from profile modeling seat 27 and leaves.
A method of using an assembly apparatus for the manufacture of an electroacoustic device, comprising the steps of:
a. the mesh paper of the raw material shaft 31 is wound on the waste shaft 32 through the lower sides of the first limiting shaft 33 and the second limiting shaft 34, the waste shaft 32 is driven to rotate through the stepping motor 35, the mesh paper moves forwards, the mesh paper faces to the lower side, heat generated by the hot air heater 53 is blown to the surface of the mesh paper through the air outlet nozzle 52, and glue on the mesh paper is activated;
b. placing an electrical element in the profiling seat 27, driving the moving seat 21 to move towards the lower side of the pressing mechanism 4 through the work of the first servo motor 24, and pushing the top plate 41 to move downwards through the power part 46 when moving to the lower side of the pressing plate 42, so that the pressing plate 42 pushes the mesh cloth paper to move downwards;
c. the mesh paper is fixed through the matching of the positioning columns 28 on the profiling seats 27 and the limiting holes 43 on the pressing plate 42, then the top plate 41 is pressed continuously, the pressing head 45 is enabled to adhere the mesh on the electrical element, and then the top plate 41 is lifted upwards to remove the electrical element.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the invention as claimed.

Claims (10)

1. An assembly device for the manufacture of an electroacoustic device, comprising a support mechanism, characterized in that: the automatic feeding device is characterized by also comprising a positioning mechanism arranged on the supporting mechanism, wherein a pressing mechanism is arranged above the positioning mechanism, feeding mechanisms are arranged on two sides of the pressing mechanism, a softening mechanism is arranged on the lower side of the feeding mechanism, and the positioning mechanism, the feeding mechanism, the pressing mechanism and the softening mechanism are connected with the supporting mechanism;
the supporting mechanism comprises a support, a supporting seat is arranged at the lower end of the support, a platform is arranged on the support, an open slot through which the positioning mechanism passes is formed in the platform, and a vertical plate is arranged at the upper end of the platform and used for mounting the feeding mechanism and the pressing mechanism;
the positioning mechanism comprises a moving seat, the moving seat is positioned at the lower side of the platform, a lead screw penetrates through the moving seat, guide pillars are arranged on two sides of the lead screw, a first servo motor is arranged at the rear end of the lead screw, a supporting plate is arranged at the upper end of the moving seat, a fixed seat is arranged at the upper end of the supporting plate, a profiling seat is arranged in the fixed seat in a sliding manner, a supporting spring is arranged between the lower end of the outer edge of the profiling seat and the fixed seat, and a positioning column is arranged on the upper end surface of the profiling seat and used for limiting the screen cloth paper raw material;
the feeding mechanism comprises a raw material shaft, a waste material shaft is arranged on one side of the raw material shaft, a stepping motor is arranged at the rear end of the waste material shaft, and a first limiting shaft and a second limiting shaft are arranged between the raw material shaft and the waste material shaft and positioned on two sides of the pressing mechanism;
the pressing mechanism comprises a top plate, a pressing plate is arranged on the lower side of the top plate, a sliding rod is arranged on the periphery of the pressing plate, a spring is arranged between the top plate and the pressing plate and outside the sliding rod, a limiting hole is formed in the pressing plate, the pressing plate is convenient to match with a positioning column and fixes and limits screen cloth paper, a pressing head is arranged at the lower end of the top plate, and a power component is arranged at the upper end of the top plate.
2. An assembly device for the manufacture of an electroacoustic device according to claim 1, wherein: the power part include electric telescopic handle, the electric telescopic handle stiff end is installed on the riser, electric telescopic handle movable rod end and roof welding.
3. An assembly device for the manufacture of an electroacoustic device according to claim 1, wherein: the power part comprises a connecting frame, the connecting frame is welded with the top plate and is L-shaped, a screw rod penetrates through the connecting frame, a second servo motor is arranged at the upper end of the screw rod, and the second servo motor is connected with a screw rod coupler.
4. An assembly device for the manufacture of an electroacoustic device according to claim 1, wherein: the fixing seat is connected with the supporting plate through bolts, a cavity in which the profiling seat slides is arranged in the fixing seat, and the supporting spring is arranged at four positions around the profiling seat.
5. An assembly device for the manufacture of an electroacoustic device according to claim 1, wherein: the positioning column is in a conical shape, the positioning column and the profiling seat are integrally formed, and the positioning column is arranged at the opposite angle.
6. An assembly device for the manufacture of an electroacoustic device according to claim 1, wherein: the material shaft and the waste material shaft are rotatably connected with the vertical plate, two limiting ribs are arranged on the first limiting shaft and the second limiting shaft, and the spacing between the limiting ribs is consistent with the material width.
7. An assembly device for the manufacture of an electroacoustic device according to claim 1, wherein: the pressing plate is provided with a through hole through which the pressing head passes, and the pressing head is made of silica gel.
8. An assembly device for the manufacture of an electroacoustic device according to claim 1, wherein: the pressing plate is connected with the top plate through sliding rods, and the sliding rods are symmetrically arranged at four positions around the pressing plate.
9. An assembly device for the manufacture of an electroacoustic device according to claim 1, wherein: softening mechanism include the U-shaped tuber pipe, the U-shaped tuber pipe is located feed mechanism's first spacing axle, the spacing axle downside of second, the symmetry is provided with the air outlet nozzle on the U-shaped tuber pipe, U-shaped tuber pipe air inlet end is provided with the air heater, the width of U-shaped tuber pipe is greater than the width of fixing base, the air outlet nozzle sets up relatively, and blows to oblique upside.
10. A method of using an assembly apparatus for the manufacture of an electroacoustic device as claimed in any of claims 1 to 9, characterized in that: the method comprises the following steps:
a. winding the mesh paper of the raw material shaft on the waste shaft through the lower sides of the first limiting shaft and the second limiting shaft, driving the waste shaft to rotate through the stepping motor, enabling the mesh paper to move forwards and the mesh to face the lower side, blowing heat generated by the hot air blower to the surface of the mesh paper through the air outlet nozzle, and activating glue solution on the mesh;
b. the electric appliance element is placed in the profiling seat, the first servo motor works to drive the moving seat to move towards the lower side of the pressing mechanism, and when the electric appliance element moves below the pressing plate, the power part pushes the top plate to move downwards, so that the pressing plate pushes the mesh cloth paper to move downwards;
c. the position of the mesh paper is fixed by matching the positioning column on the profiling seat with the limiting hole on the pressing plate, then the top plate is continuously pressed downwards, the pressing head is used for bonding the mesh paper on the electrical component, and then the top plate is lifted upwards to move the electrical component out.
CN202011011739.4A 2020-09-23 2020-09-23 Assembling device for manufacturing electroacoustic device and using method thereof Active CN112203207B (en)

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