CN213350030U - Diaphragm sound wave ash remover - Google Patents

Diaphragm sound wave ash remover Download PDF

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Publication number
CN213350030U
CN213350030U CN202022132071.0U CN202022132071U CN213350030U CN 213350030 U CN213350030 U CN 213350030U CN 202022132071 U CN202022132071 U CN 202022132071U CN 213350030 U CN213350030 U CN 213350030U
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fixing
sets
diaphragm
speed reducer
fixed
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CN202022132071.0U
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李泽杰
姚菲
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Hebei Lansheng Environmental Protection Technology Co ltd
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Hebei Lansheng Environmental Protection Technology Co ltd
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Abstract

The utility model relates to the technical field of dust cleaning, in particular to a diaphragm sound wave ash cleaner which can be used by a plurality of groups of devices which need to be cleaned, thereby improving the utilization rate and the practicability; including the acoustic energy ware, the diaphragm, expand the sound section of thick bamboo, gu fixed ring, the fixed axle, a pedestal, the multiunit mounting bracket, multiunit fixing bolt, including a motor, an end cap, a controller, and a cover plate, the speed reducer, the transmission shaft, first conical gear, second conical gear, induction pipe and annular spacing piece, set up the fixed slot on the base, the fixed axle top is connected with solid fixed ring, and the fixed axle bottom inserts to the fixed slot, be provided with second ball bearing between fixed axle and the fixed slot inner wall, the motor is installed at speed reducer input end department, the speed reducer is installed on the base, the transmission shaft both ends are connected with speed reducer output and first conical gear respectively, second conical gear suit is fixed to the fixed axle on, and first conical gear.

Description

Diaphragm sound wave ash remover
Technical Field
The utility model relates to a technical field of dust clearance especially relates to a diaphragm sound wave ash removal ware.
Background
As is known, the sound wave ash cleaner is widely used in places such as an electric dust collector, a bag-type dust collector, a cyclone dust collector, a gypsum bin, a lime bin, a cement bin, a bin and the like which are blocked by hanging materials and are accumulated and unsmooth in circulation, and is used for removing ash, honeycomb holes, bridges or blockage on the surfaces of the hanging materials of various bins, the sound wave ash cleaner takes compressed air as the energy of sound waves or infrasonic waves, a high-strength titanium metal membrane is subjected to self-excited oscillation under the action of a compressed air source and generates resonance in a harmonic cavity to convert the potential energy of the compressed air into low-frequency sound energy (the fluctuation energy of the sound waves or the infrasonic waves), the sound energy is transmitted to corresponding ash accumulation points through an air medium, various accumulations are displaced and leave the original positions by utilizing the fluctuation energy of the sound waves or the infrasonic waves, so that the sound waves have the effect of sound induced fatigue on ash, and the load of, when reaching certain cyclic stress number of times, the structure of ash, sediment is destroyed because of fatigue, then clears away the attachment surface with the lime-ash because of gravity or because of fluid medium to reach the purpose of cleaing away deposition and mediation, current diaphragm sound wave ash removal ware is when using, and generally a diaphragm ash removal ware is fixed the intercommunication with the equipment that needs remove dust after, and the ash removal is handled to an equipment removal of removing dust, causes its rate of utilization lower, thereby leads to its practicality relatively poor.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
Not enough to prior art, the utility model provides a can supply the equipment that the multiunit needs to carry out the deashing and handle to use, improve utilization ratio, improve the diaphragm sound wave deashing ware of practicality.
(II) technical scheme
In order to achieve the above object, the utility model provides a following technical scheme: a diaphragm sound wave ash remover comprises a sound energy device, a diaphragm, a sound amplification cylinder, a fixing ring, a fixing shaft, a base, a plurality of groups of mounting frames, a plurality of groups of fixing bolts, a motor, a speed reducer, a transmission shaft, a first bevel gear, a second bevel gear, an air feed pipe and an annular limiting piece, wherein a cavity is arranged in the sound energy device, a breathing port and a compressed air inlet are arranged on the sound energy device in a communicating manner, the input end of the sound amplification cylinder penetrates through the side wall of the sound energy device and extends into the sound energy device, the sound amplification cylinder is fixedly connected with the sound energy device, the diaphragm is arranged in the sound energy device, the input end of the sound amplification cylinder is contacted with the diaphragm, the annular limiting piece is arranged at the output end of the sound amplification cylinder, the fixing ring is sleeved on the outer wall of the sound amplification cylinder, a first ball bearing is arranged between the fixing ring, the base is provided with a fixing groove, the top end of the fixing shaft is connected with the fixing ring, the bottom end of the fixing shaft is inserted into the fixing groove, a second ball bearing is arranged between the fixing shaft and the inner wall of the fixing groove, the motor is installed at the input end of the speed reducer, the speed reducer is installed on the base, the two ends of the transmission shaft are respectively connected with the output end of the speed reducer and the first bevel gear, the second bevel gear is sleeved and fixed on the fixing shaft, the first bevel gear is meshed with the second bevel gear, and the air supply pipe is communicated with the compressed air inlet.
The sealing gasket is characterized by further comprising an annular sealing plate and a sealing gasket, wherein a fixing hole is formed in the annular sealing plate, the annular limiting sheet is fixedly installed at the fixing hole, the sealing gasket is installed at the bottoms of the annular sealing plate and the annular limiting sheet, and a through hole is formed in the sealing gasket.
The positioning device comprises a plurality of groups of fixing plates and a plurality of groups of positioning bolts, wherein the plurality of groups of fixing plates are all in contact with the annular limiting sheet and the annular sealing plate, and the plurality of groups of positioning bolts are respectively screwed into the annular limiting sheet and the annular sealing plate through the plurality of groups of fixing plates.
Specifically, still include three link frames, three link frame both ends of group are respectively with annular seal plate and fixed axle fixed connection.
The novel protective plate comprises a base, and is characterized by further comprising two groups of supporting plates and a protective plate, wherein the two groups of supporting plates are arranged on the base, the protective plate is arranged at the tops of the two groups of supporting plates, through holes are formed in the protective plate, and the fixing shaft penetrates through the through holes.
The device comprises a plurality of groups of supporting rods and a plurality of groups of pulleys, wherein two ends of each group of supporting rods are respectively connected with the plurality of groups of pulleys and the bottom of the annular sealing plate.
(III) advantageous effects
Compared with the prior art, the utility model provides a diaphragm sound wave ash removal ware possesses following beneficial effect: can be through the position of the fixed multiunit mounting bracket, thus can conveniently fix the position of the whole, and make the annular seal plate contact with input port needing to carry on the deashing treatment, transmit the compressed air to the acoustic energy device through the air feed pipe at this moment, the compressed air produces the pressure to the diaphragm after entering into the acoustic energy device, make the diaphragm produce the bending, the compressed air enters into the acoustic amplifying tube through the input end of the acoustic amplifying tube, after some air enters into the acoustic amplifying tube, the diaphragm shrinks, the air current entering into the acoustic amplifying tube leaves the acoustic energy device fast, vibrate repeatedly, amplify through the acoustic amplifying tube, form the high-energy sound wave of low frequency, the sound wave transmits to the apparatus needing to carry on the deashing, make the dust particle can't combine each other through the energy in the sound wave, and take it away by the air current or gravity, thus can finish the deashing treatment to the apparatus inside, after carrying on the deashing treatment for a certain time, can stop compressed air's input temporarily, and with the motor circular telegram and start, the power of motor output passes through the speed reducer speed reduction back, make the transmission shaft drive first conical gear and rotate, because first conical gear and second conical gear meshing, consequently can make the fixed axle drive the sound amplifying section of thick bamboo rotate, make the spacing piece of annular aim at the input port of another equipment that needs to carry out the deashing and handle, repeat above-mentioned operation, thereby can supply the equipment that the multiunit needs to carry out the deashing and handle to use, and the utilization rate is improved, and the practicability is improved.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic view of the coupling of the acoustic transducer, diaphragm and acoustic horn;
FIG. 3 is a schematic view of a motor, reducer, drive shaft, first bevel gear, second bevel gear and stationary shaft and mating;
FIG. 4 is a schematic view of the connection of the annular seal plate and the seal;
in the drawings, the reference numbers: 1. an acoustic energy device; 2. a membrane; 3. a sound amplification cylinder; 4. a fixing ring; 5. a fixed shaft; 6. a base; 7. a mounting frame; 8. fixing the bolt; 9. a motor; 10. a speed reducer; 11. a drive shaft; 12. a first bevel gear; 13. a second bevel gear; 14. an air supply pipe; 15. an annular limiting sheet; 16. an annular seal plate; 17. a gasket; 18. a fixing plate; 19. positioning the bolt; 20. a connecting frame; 21. a support plate; 22. a protection plate; 23. a support bar; 24. a pulley.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, a diaphragm 2 acoustic wave ash remover comprises an acoustic energy device 1, a diaphragm 2, a sound amplification cylinder 3, a fixing ring 4, a fixing shaft 5, a base 6, a plurality of sets of mounting brackets 7, a plurality of sets of fixing bolts 8, a motor 9, a speed reducer 10, a transmission shaft 11, a first bevel gear 12, a second bevel gear 13, an air supply pipe 14 and an annular limiting sheet 15, wherein a cavity is arranged in the acoustic energy device 1, a breathing port and a compressed air inlet are arranged on the acoustic energy device 1 in a communicating manner, an input end of the sound amplification cylinder 3 penetrates through the side wall of the acoustic energy device 1 and extends into the acoustic energy device 1, the sound amplification cylinder 3 is fixedly connected with the acoustic energy device 1, the diaphragm 2 is arranged in the acoustic energy device 1, an input end of the sound amplification cylinder 3 is in contact with the diaphragm 2, the annular limiting sheet 15 is arranged at an output end of the sound amplification cylinder 3, the fixing ring 4 is sleeved on the outer wall, the multiple groups of mounting frames 7 are fixedly mounted on the base 6 through multiple groups of fixing bolts 8, the base 6 is provided with a fixing groove, the top end of the fixing shaft 5 is connected with the fixing ring 4, the bottom end of the fixing shaft 5 is inserted into the fixing groove, a second ball bearing is arranged between the fixing shaft 5 and the inner wall of the fixing groove, the motor 9 is mounted at the input end of the speed reducer 10, the speed reducer 10 is mounted on the base 6, two ends of the transmission shaft 11 are respectively connected with the output end of the speed reducer 10 and the first conical gear 12, the second conical gear 13 is sleeved and fixed on the fixing shaft 5, the first conical gear 12 is meshed with the second conical gear 13, the air supply pipe 14 is communicated with the compressed air inlet, the mounting frames also comprise an annular sealing plate 16 and a sealing gasket 17, the annular sealing plate 16 is provided with a fixing hole, and be provided with the through-hole on sealed pad 17, still include multiunit fixed plate 18 and multiunit positioning bolt 19, multiunit fixed plate 18 all contacts with spacing piece 15 of annular and annular seal plate 16, multiunit positioning bolt 19 is the spiral shell dress respectively through multiunit fixed plate 18 and spiral shell dress to spacing piece 15 of annular and annular seal plate 16 in, still include three link 20 of group, three link 20 both ends of group respectively with annular seal plate 16 and fixed axle 5 fixed connection, still include two sets of backup pads 21 and protection shield 22, two sets of backup pads 21 are all installed on base 6, protection shield 22 is installed at two sets of backup pads 21 tops, and be provided with the perforation on protection shield 22, fixed axle 5 passes the perforation, still include multiunit bracing piece 23 and multiunit pulley 24, multiunit bracing piece 23 both ends are connected with multiunit pulley 24 and annular seal plate 16 bottom.
The utility model discloses a diaphragm 2 sound wave ash cleaner, when it is using, can be through the position of fixed multiunit mounting bracket 7, thereby can conveniently fix holistic position, and make annular seal plate 16 and the input port contact that needs carry out the deashing treatment, transmit compressed air in this moment to acoustic energy ware 1 through air-feed pipe 14, compressed air produces pressure to diaphragm 2 after entering into acoustic energy ware 1, make diaphragm 2 produce the bending, compressed air enters into acoustic horn 3 through acoustic horn 3 input, after partial air enters into acoustic horn 3, diaphragm 2 contracts, the air beam that enters into in acoustic horn 3 leaves acoustic energy ware 1 fast, the repeated vibration, enlarge through acoustic horn 3 again, form low frequency high energy sound wave, the sound wave transmits to the equipment that needs carry out the deashing, make the dust particle can not combine each other through the energy in the sound wave, the device is taken away by airflow or gravity, thereby the dust cleaning treatment in the device can be completed, when one device is subjected to dust cleaning treatment for a certain time, the input of compressed air can be temporarily stopped, the motor 9 is electrified and started, the power output by the motor 9 is reduced by the speed reducer 10, the transmission shaft 11 drives the first bevel gear 12 to rotate, the first bevel gear 12 is meshed with the second bevel gear 13, so the fixed shaft 5 can drive the sound expanding cylinder 3 to rotate, the annular limiting sheet 15 is aligned to the input port of another device which needs dust cleaning treatment, the operation is repeated, thereby the device can be used by a plurality of groups of devices which need dust cleaning treatment, the utilization rate is improved, the practicability is improved, the driving devices such as the motor 9, the speed reducer 10 and the like can be protected by two groups of supporting plates 21 and the protecting plates 22, when the annular limiting sheet 15 rotates to pass through all devices which need dust cleaning, control motor 9 drives its antiport and resets, avoid causing the damage to air feed pipe 14, when annular seal plate 16 rotates, can play certain support and limiting action to it through multiunit bracing piece 23 and multiunit bracing piece, and can improve the qualification ability to annular seal plate 16 position through three link 20 of group, can conveniently be with spacing piece 15 of annular and annular seal plate 16 fixed connection through multiunit fixed plate 18 and multiunit positioning bolt 19, and can conveniently play certain sealing action to the equipment sound wave input port that can not carry out the deashing through annular seal plate 16 and sealed pad 17, reduce the entering of impurity etc..
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
The electrical components presented in the document are all electrically connected with an external master controller and 220V mains, and the master controller can be a conventional known device controlled by a computer or the like.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A diaphragm sound wave ash cleaner is characterized by comprising an acoustic energy device (1), a diaphragm (2), a sound amplification cylinder (3), a fixing ring (4), a fixing shaft (5), a base (6), a plurality of groups of mounting frames (7), a plurality of groups of fixing bolts (8), a motor (9), a speed reducer (10), a transmission shaft (11), a first bevel gear (12), a second bevel gear (13), an air supply pipe (14) and an annular limiting sheet (15), wherein a cavity is arranged in the acoustic energy device (1), the acoustic energy device (1) is communicated with and provided with a breathing port and a compressed air inlet, the input end of the sound amplification cylinder (3) penetrates through the side wall of the acoustic energy device (1) and extends into the acoustic energy device (1), the sound amplification cylinder (3) is fixedly connected with the acoustic energy device (1), the diaphragm (2) is arranged in the acoustic energy device (1), and the input end of the sound amplification cylinder (3) is contacted with the diaphragm (2), the annular limiting piece (15) is arranged at the output end of the sound amplification cylinder (3), the fixing ring (4) is sleeved on the outer wall of the sound amplification cylinder (3), a first ball bearing is arranged between the fixing ring (4) and the outer wall of the sound amplification cylinder (3), the multiple groups of mounting frames (7) are fixedly arranged on the base (6) through multiple groups of fixing bolts (8), a fixing groove is formed in the base (6), the top end of the fixing shaft (5) is connected with the fixing ring (4), the bottom end of the fixing shaft (5) is inserted into the fixing groove, a second ball bearing is arranged between the fixing shaft (5) and the inner wall of the fixing groove, the motor (9) is arranged at the input end of the speed reducer (10), the speed reducer (10) is arranged on the base (6), and the two ends of the transmission shaft (11) are respectively connected with the output end of the speed reducer (10) and, the second bevel gear (13) is fixed on the fixed shaft (5) in a sleeved mode, the first bevel gear (12) is meshed with the second bevel gear (13), and the air supply pipe (14) is communicated with the compressed air inlet.
2. The membrane acoustic wave ash remover according to claim 1, further comprising an annular sealing plate (16) and a sealing gasket (17), wherein the annular sealing plate (16) is provided with a fixing hole, the annular limiting sheet (15) is fixedly installed at the fixing hole, the sealing gasket (17) is installed at the bottoms of the annular sealing plate (16) and the annular limiting sheet (15), and the sealing gasket (17) is provided with a through hole.
3. The membrane acoustic wave ash remover according to claim 2, further comprising a plurality of sets of fixing plates (18) and a plurality of sets of positioning bolts (19), wherein the plurality of sets of fixing plates (18) are all in contact with the annular limiting plate (15) and the annular sealing plate (16), and the plurality of sets of positioning bolts (19) are respectively screwed through the plurality of sets of fixing plates (18) and screwed into the annular limiting plate (15) and the annular sealing plate (16).
4. The diaphragm acoustic wave ash remover according to claim 3, further comprising three sets of connecting frames (20), wherein two ends of the three sets of connecting frames (20) are respectively and fixedly connected with the annular sealing plate (16) and the fixed shaft (5).
5. The membrane acoustic ash remover according to claim 4, further comprising two sets of supporting plates (21) and a protecting plate (22), wherein the two sets of supporting plates (21) are both mounted on the base (6), the protecting plate (22) is mounted on the top of the two sets of supporting plates (21), and a through hole is arranged on the protecting plate (22), and the fixing shaft (5) passes through the through hole.
6. The membrane acoustic wave ash remover according to claim 5, further comprising a plurality of sets of support rods (23) and a plurality of sets of pulleys (24), wherein two ends of the plurality of sets of support rods (23) are respectively connected with the plurality of sets of pulleys (24) and the bottom of the annular sealing plate (16).
CN202022132071.0U 2020-09-25 2020-09-25 Diaphragm sound wave ash remover Active CN213350030U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022132071.0U CN213350030U (en) 2020-09-25 2020-09-25 Diaphragm sound wave ash remover

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022132071.0U CN213350030U (en) 2020-09-25 2020-09-25 Diaphragm sound wave ash remover

Publications (1)

Publication Number Publication Date
CN213350030U true CN213350030U (en) 2021-06-04

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ID=76155502

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022132071.0U Active CN213350030U (en) 2020-09-25 2020-09-25 Diaphragm sound wave ash remover

Country Status (1)

Country Link
CN (1) CN213350030U (en)

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