WO2025107256A1 - 一种用于无线充电座生产的除尘装置 - Google Patents

一种用于无线充电座生产的除尘装置 Download PDF

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Publication number
WO2025107256A1
WO2025107256A1 PCT/CN2023/133775 CN2023133775W WO2025107256A1 WO 2025107256 A1 WO2025107256 A1 WO 2025107256A1 CN 2023133775 W CN2023133775 W CN 2023133775W WO 2025107256 A1 WO2025107256 A1 WO 2025107256A1
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Prior art keywords
plate
fixedly connected
dust
filter
box
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Pending
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PCT/CN2023/133775
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English (en)
French (fr)
Inventor
陈佳佳
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Anfu Xin Weijia Technology Co Ltd
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Anfu Xin Weijia Technology Co Ltd
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Application filed by Anfu Xin Weijia Technology Co Ltd filed Critical Anfu Xin Weijia Technology Co Ltd
Priority to PCT/CN2023/133775 priority Critical patent/WO2025107256A1/zh
Publication of WO2025107256A1 publication Critical patent/WO2025107256A1/zh
Pending legal-status Critical Current
Anticipated expiration legal-status Critical

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D50/00Combinations of methods or devices for separating particles from gases or vapours
    • B01D50/60Combinations of devices covered by groups B01D46/00 and B01D47/00

Definitions

  • the invention relates to the technical field of charging seat production, and in particular to a dust removal device used for producing a wireless charging seat.
  • Wireless charging technology originates from wireless power transmission technology and can be divided into two types: low-power wireless charging and high-power wireless charging.
  • Low-power wireless charging often uses electromagnetic induction; high-power wireless charging often uses resonance, where the power supply equipment transmits energy to the power-consuming device.
  • Wireless charging seats can be used to charge power-consuming devices such as power-consuming devices. They can be divided into two categories: vertical wireless charging seats and horizontal wireless charging seats.
  • Wireless chargers are devices that use the principle of electromagnetic induction for charging. By placing a coil at each end, the transmitting coil sends an electromagnetic signal to the outside world under the action of electricity, and the receiving coil receives the electromagnetic signal and converts it into current, thereby achieving the purpose of wireless charging. However, dust is easily generated during the production of the charging seat.
  • a dust removal device for producing a wireless charging station comprises a treatment box
  • a dust suction pipe the dust suction pipe has a suction fan for collecting dust
  • the inner surface of the dust suction pipe is fixedly connected to a pre-treatment component
  • the end of the dust suction pipe close to the pre-treatment component is connected to a treatment box
  • the inner surface of the treatment box is fixedly connected to a partition plate
  • the side of the partition plate away from the treatment box is fixedly connected to a filter component
  • the top of the partition plate is connected to an exhaust fan
  • the bottom of the treatment box is connected to a collection component
  • the top of the treatment box is connected to a discharge component.
  • the suction fan on the dust suction pipe generates suction, so that the dust suction pipe collects dust around the charging seat, and the treatment box
  • a processing chamber is formed by cooperating with the partition plate.
  • the partition plate has an inclined surface near the collecting component, which can guide the falling of dust.
  • the partition plate contacts the pre-processing component, so that the pre-processing component pre-processes the dust and transports the processed gas and dust to a position close to the filter component.
  • the exhaust fan When the exhaust fan is working, it can increase the suction force inside the filter component inside the processing chamber, so that the filter component transports the solidified gas to the exhaust component through the exhaust fan for discharge;
  • the pretreatment component includes a guide cylinder, which is used to guide the flow of gas.
  • the inner surface of the guide cylinder is fixedly connected to a blocking ring, and the inner surface of the blocking ring is rotatably connected to a movable plate.
  • the blocking ring is fixedly connected to a stretching rod at a position close to the movable plate, and the end of the stretching rod away from the blocking ring is fixedly connected to a filter plate, and the side of the filter plate away from the stretching rod is fixedly connected to a vibration plate.
  • the outer surface of the guide cylinder is fixedly connected to the partition plate, and the flow of gas is guided by the guide cylinder.
  • the movable plates are evenly distributed inside the blocking ring so that the movable plates are driven by the gas to rotate, and the filter plate is gradually separated from the guide cylinder by the thrust of the gas.
  • a vibration plate is provided between the two filter plates so that vibration is generated when the vibration plate moves, thereby utilizing the vibration to transmit residual dust to the filter plate and cause it to fall off.
  • the stretching rod contracts, so that the stretching rod drives the filter plate to return to its initial position, and the vibration plate can perform telescopic movement when it vibrates.
  • one end of the guide tube close to the partition plate extends to the outside of the dust suction pipe, and the inner surface of the guide tube is slidably connected to the filter plate.
  • the bottom of the exhaust assembly passes through the processing box and extends to the interior of the processing box, and the top of the exhaust fan is fixedly connected to the processing box.
  • the discharge component includes a discharge shell, the inner surface of the discharge shell is fixedly connected with a connecting sleeve, the bottom of the connecting sleeve is fixedly connected with a side support plate, the wind force circulated by the exhaust fan is discharged through the discharge shell, and the discharge shell passes through the treatment box, the connecting sleeve inside the discharge shell can separate the activity space, the side support plates are evenly distributed on the connecting sleeve, so that the side support plates support the connecting sleeve, the connecting sleeve is fixedly connected with an adsorption purification cylinder near the side support plate, and the discharge shell is fixedly connected with a filter sleeve near the connecting sleeve, the filter sleeve cooperates with the connecting sleeve inside the discharge shell, so that the filter sleeve filters the discharged gas, and at the same time, the adsorption purification cylinder adsorbs and purifies the gas on the connecting sleeve, and
  • the side of the side support plate away from the filter sleeve is fixedly connected to the discharge shell, and the bottom end of the adsorption purification cylinder passes through the connecting sleeve and extends to the outside of the connecting sleeve.
  • the linkage frame includes an inner connecting ring, the inner surface of the inner connecting ring is rotatably connected to a linkage rod, the outer surface of the linkage rod is fixedly connected to a support plate, the support plate is fixedly connected to a fixed plate at a position away from the linkage rod, the linkage rod is driven by wind force to rotate on the inner connecting ring, so that the linkage rod drives the support plate to rotate, the inner connecting ring contacts the discharge shell to keep the linkage rod placed vertically, and the support plate has a groove, and clamps are fixedly connected to both ends of the fixed plate, and a scraper is fixedly connected to the position of the clamp away from the fixed plate, and is supported by the fixed plate through the clamp, so that the scraper contacts the filter sleeve when rotating with the linkage rod, and the scraper vibrates when contacting the filter sleeve, so that the filter sleeve shakes to perform self-cleaning of adhered dust, and multiple clamps are arranged on the scraper
  • the bottom end of the linkage rod passes through the inner connecting ring and extends to the outside of the inner connecting ring, and the position of the fixing plate close to the clamping plate passes through the supporting plate and extends to the outside of the supporting plate.
  • the collecting component includes a collecting box, the top of the inner cavity of the collecting box is connected to a humidifying box, and dust dropped from the processing box is collected through the collecting box, as the dust enters the collecting box, the humidifying box sprays atomized water flow to humidify the dust, and the water flow splashes into the processing box when spraying, so that the dust inside the processing box is humidified by the water flow, the inlet of the collecting box corresponds to the processing box, the humidifying box is kept horizontal on the collecting box, the collecting box is fixedly connected with a clamping plate at a position close to the humidifying box, the inner surface of the clamping plate is rotatably connected with a swing bar, the bottom of the inner cavity of the collecting box is fixedly connected with an adsorption plate, the fallen dust in the collecting box is adsorbed by the adsorption plate, and the clamping plate is provided with a plurality of swinging bars, so that dust and gas entering the collecting box drive the swinging bars to swing, and the swinging bars adjust the
  • the assembly frame includes an assembly plate, an outer surface of the assembly plate is fixedly connected with a side block, an inner surface of the side block is fixedly connected with a telescopic rod, a side of the telescopic rod away from the assembly plate is fixedly connected with a knocking ball, the telescopic rod itself has a thrust, so that the telescopic rod is extended and retracted by the pressure of the swing bar through the knocking ball, thereby adjusting the position of the knocking ball, and knocking is performed when the knocking ball contacts the swing bar, the telescopic rod is horizontally installed on the assembly plate, a reset plate is fixedly connected to the side of the assembly plate close to the telescopic rod, the reset plate is fixedly connected to an outward plate at a position away from the assembly plate, and is horizontally installed on the collecting box through the side blocks, so that the side blocks clamp the assembly plate, and the outward plate on the assembly plate rotates when gas flows inside the collecting box, so that the outward plate approaches the position of
  • the outwardly extending plate is rotatably connected to the mounting plate at a position away from the telescopic rod, and one end of the telescopic rod close to the striking ball penetrates the mounting plate and extends to the outside of the mounting plate.
  • the filter assembly includes a transition pipe, the bottom end of the transition pipe is connected to a circulation shell, the bottom of the circulation shell is connected to a filter sleeve, the incoming gas is filtered by the filter sleeve, and the filtered gas is transported to the circulation shell for circulation, the circulation shell is connected to multiple filter sleeves, so that the filter sleeve receives the gas inside the treatment box, and the transition pipe transmits the suction generated by the exhaust fan, the bottom end of the filter sleeve is fixedly connected to a middle solid plate, the top of the middle solid plate is fixedly connected to a mounting frame, the mounting frame is rotatably connected to a contact block near the filter sleeve, the outer surface of the contact block is slidably connected to the filter sleeve, the filter sleeve and the mounting frame are supported by the middle solid plate, so that the contact block on the mounting frame is driven by the gas to rotate, the contact block hits the filter sleeve when rotating, and the
  • the present invention provides a dust removal device for the production of wireless charging stations, which has the following beneficial effects:
  • the dust removal device for the production of a wireless charging seat generates suction force through the operation of a suction pipe, a processing box and a partition plate, thereby preventing dust from adhering to the charging seat during processing and affecting subsequent use.
  • the partition plate has an inclined surface near the collecting component, which can guide the falling of dust, making it easier for the collecting component to collect dust and preventing dust from being scattered in the processing box to increase the difficulty of cleaning.
  • the exhaust fan When the exhaust fan is working, it can increase the suction force inside the filter component inside the processing chamber and prevent blockage in the dust circulation process that affects the efficiency of dust removal.
  • the dust removal device used in the production of wireless charging stations guides the flow of gas through a guide tube to avoid leakage during gas flow.
  • the filter disc gradually leaves the guide tube under the thrust of the gas.
  • a vibration plate is provided between the two filter discs to prevent dust adhering to the surfaces of the filter discs from clogging the filter holes, making it easy for the stretching rod to extend to support the filter disc, thereby preventing the filter disc from tilting after leaving the guide tube and affecting subsequent movement, so that the filter disc can filter the gas multiple times.
  • the dust removal device used in the production of wireless charging seats discharges the wind force circulated by the exhaust fan through the discharge shell, thereby avoiding the occurrence of gaps at the connection position of the discharge shell that lead to gas leakage.
  • the connecting sleeve inside the discharge shell can divide the activity space and reinforce the discharge shell by using the connecting sleeve.
  • the side support plates are evenly distributed on the connecting sleeve, so that the installation position of the connecting sleeve can be restricted when the side support plates contact the discharge shell.
  • the dust removal device used in the production of a wireless charging station prevents the exhausted gas from containing odor and affecting use by cooperating with the connecting sleeve in the exhaust shell through the filter sleeve.
  • An active space is provided between the filter sleeve and the connecting sleeve to facilitate the flow of gas through the filter sleeve and the circulation of gas when the gas flows in the exhaust shell, so that the connecting sleeve and the filter sleeve cooperate to block the falling dust.
  • the dust removal device used in the production of wireless charging seats is driven by wind force to rotate on the inner ring through the linkage rod.
  • the inner ring contacts the discharge shell to keep the linkage rod vertically placed, thereby preventing the linkage rod from tilting and getting stuck when rotating.
  • the support plate has a groove to facilitate air circulation when the support plate is not rotating, and the fixing plate is fixed by the groove of the support plate to prevent the fixing plate from loosening after installation.
  • the dust removal device used in the production of wireless charging seats has a clamping plate supported by a fixing plate, so that the clamping plate fixes the scraper plate, which is convenient for the scraper plate to drop dust adhered to the filter sleeve, and the scraper plate generates vibration when contacting the filter sleeve, so that the filter sleeve shakes to self-clean the adhered dust.
  • a plurality of clamping plates are arranged on the scraper plate, so that the clamping plates fix different positions of the scraper plate, avoiding tilting of the contact position of the scraper plate and ensuring that the scraper plate is in full contact with the filter sleeve for cleaning.
  • the dust removal device used in the production of wireless charging seats collects the dust dropped from the processing box through a collection box, and splashes water into the processing box when sprayed, so that the dust inside the processing box is humidified by the water flow to prevent the dust from floating everywhere in the processing box.
  • the inlet of the collection box corresponds to the processing box, so that the dust is not easily offset when it falls, and the humidification box is convenient for guiding the dust to fall.
  • the dust removal device used in the production of wireless charging seats absorbs fallen dust in a collection box through an adsorption plate, so that the dust is gathered at the position of the adsorption plate.
  • the swing bar cooperates with the clamping plate to separate the inside of the collection box, so that the collected dust is filtered and ensured to be piled up when the dust falls, thereby increasing the contact area between the adsorption plate and the dust.
  • the dust removal device used in the production of wireless charging seats is installed horizontally on the collection box through a side connection block, so that the assembly plate can limit the swing range of the swing bar, and the swing bar can be knocked when the knocking ball contacts it, thereby increasing the shaking force of the swing bar, so that the swing bar at different positions can be cleaned.
  • the telescopic rod is installed horizontally on the assembly plate, so that the telescopic rod reinforces the assembly plate, thereby increasing the bearing capacity of the connection position between the assembly plate and the telescopic rod.
  • the dust removal device used in the production of wireless charging seats filters the incoming gas through the filter sleeve to avoid direct discharge of gas from the inside of the processing box, and the transition pipe transmits the suction force generated by the exhaust fan, thereby reducing the difficulty of gas entering the inside of the filter sleeve.
  • the contact block knocks the filter sleeve when rotating, which makes it easy for the filter sleeve to be knocked to drop the remaining dust, thereby avoiding dust accumulation inside the filter sleeve to cause blockage, and ensuring the circulation speed inside the filter sleeve.
  • FIG1 is a schematic diagram of the overall structure of the present invention.
  • Fig. 2 is a cross-sectional view of the present invention as a whole
  • FIG3 is a schematic diagram of the structure of a pretreatment component of the present invention.
  • FIG4 is an enlarged view of the vibration plate of the present invention.
  • FIG5 is a schematic diagram of the structure of the discharge assembly of the present invention.
  • FIG6 is an enlarged view of the side support plate of the present invention.
  • FIG7 is a schematic structural diagram of a linkage frame of the present invention.
  • FIG8 is an enlarged view of the splint of the present invention.
  • FIG9 is a schematic structural diagram of a collection assembly of the present invention.
  • FIG10 is a schematic diagram of the structure of the adsorption disk of the present invention.
  • FIG11 is a schematic structural diagram of an assembly stand according to the present invention.
  • FIG12 is an enlarged view of a striking ball of the present invention.
  • FIG13 is a schematic diagram of the structure of the filter assembly of the present invention.
  • FIG14 is a schematic structural diagram of a filter sleeve of the present invention.
  • FIG. 15 is an enlarged view of the contact block of the present invention.
  • Telescopic rod 564. Reset plate; 565. Extension plate; 566. Knocking ball; 6. Filter component; 61. Middle solid plate; 62. Circulation shell; 63. Mounting frame; 64. Filter sleeve; 65. Transition pipe; 66. Contact block; 7. Exhaust fan; 8. Partition plate.
  • Embodiment 1 please refer to Figures 1 to 15, the present invention provides a technical solution: a dust removal device for the production of a wireless charging station, comprising a processing box 2,
  • a dust suction pipe 1 is provided with a suction fan for collecting dust.
  • a pre-treatment component 4 is fixedly connected to the inner surface of the dust suction pipe 1.
  • One end of the dust suction pipe 1 close to the pre-treatment component 4 is connected to the treatment box 2.
  • a partition plate 8 is fixedly connected to the inner surface of the treatment box 2.
  • a filter component 6 is fixedly connected to the side of the partition plate 8 away from the treatment box 2.
  • An exhaust fan 7 is connected to the top of the partition plate 8.
  • a collection component 5 is connected to the bottom of the treatment box 2.
  • a discharge component 3 is connected to the top of the treatment box 2.
  • Suction is generated by the suction fan on the dust suction pipe 1, so that the dust suction pipe 1 collects dust around the charging seat, which is convenient for transporting the collected dust to the inside of the treatment box 2 for treatment, thereby avoiding the influence of dust adhesion during the processing of the charging seat on subsequent use.
  • the treatment box 2 cooperates with the partition plate 8 to produce a treatment chamber, and the partition plate 8 can be used to separate the inside of the treatment box 2.
  • 8 has an inclined surface near the collecting component 5, which can guide the falling of dust, making it convenient for the collecting component 5 to collect dust, avoiding the dust from being scattered in the processing box 2 and increasing the difficulty of cleaning.
  • the partition plate 8 contacts the pre-treatment component 4, so that the pre-treatment component 4 pre-treats the dust and transports the treated gas and dust to a position close to the filter component 6, which is convenient for the filter component 6 to perform secondary filtration of the gas, thereby improving the efficiency of dust cleaning.
  • the exhaust fan 7 When the exhaust fan 7 is working, it can increase the suction force inside the filter component 6 inside the processing chamber, so that the filter component 6 transports the solidified gas to the exhaust component 3 through the exhaust fan 7 for discharge, avoiding blockage in the dust circulation process that affects the dust removal efficiency;
  • the pretreatment component 4 includes a guide tube 41, which is used to guide the flow of gas.
  • the inner surface of the guide tube 41 is fixedly connected to a blocking ring 42, and the inner surface of the blocking ring 42 is rotatably connected to a movable plate 43.
  • the blocking ring 42 is fixedly connected to a stretching rod 44 near the movable plate 43, and the end of the stretching rod 44 away from the blocking ring 42 is fixedly connected to a filter plate 46, and the side of the filter plate 46 away from the stretching rod 44 is fixedly connected to a vibration plate 45.
  • the outer surface of the guide tube 41 is fixedly connected to the partition plate 8, and the flow of gas is guided by the guide tube 41 to avoid leakage during gas circulation.
  • the movable plates 43 are evenly distributed inside the blocking ring 42, so that the movable plates 43 are driven by the gas to rotate, so that the circulating gas is diverted by the rotation of the movable plates 43, and the movable plates 43 cooperate with the blocking ring 42 to reinforce the guide tube 41, thereby increasing the size of the guide tube.
  • the filter disc 46 is gradually separated from the guide tube 41 by the thrust of the gas, and a vibration plate 45 is provided between the two filter discs 46, so that the vibration plate 45 generates vibration when it moves, thereby utilizing the vibration to transmit the residual dust to the filter disc 46 to drop, thereby preventing the dust adhering to the surface of the filter disc 46 from clogging the filter holes, and the filter disc 46 flows to the stretching rod 44 when it moves, so that the stretching rod 44 is convenient for the stretching rod 44 to extend to support the filter disc 46, thereby preventing the filter disc 46 from tilting after leaving the guide tube 41 and affecting the subsequent movement, and when the filter disc 46 loses thrust, the stretching rod 44 contracts, so that the stretching rod 44 drives the filter disc 46 to return to the initial position, and the vibration plate 45 can perform telescopic movement when it vibrates, so that the vibration plate 45 can adjust the distance between the two filter discs 46, thereby ensuring that the filter disc 46 remains horizontally placed, so that the filter disc 46 filters the gas multiple times.
  • One end of the guide tube 41 close to the partition plate 8 extends to the outside of the dust suction pipe 1 , and the inner surface of the guide tube 41 is slidably connected to the filter plate 46 .
  • the bottom of the exhaust assembly 3 penetrates through the processing box 2 and extends to the interior of the processing box 2 , and the top of the exhaust fan 7 is fixedly connected to the processing box 2 .
  • the exhaust assembly 3 includes a exhaust shell 31, a connecting sleeve 32 is fixedly connected to the inner surface of the exhaust shell 31, and a side support plate 33 is fixedly connected to the bottom of the connecting sleeve 32.
  • the wind force circulated by the exhaust fan 7 is discharged through the exhaust shell 31, and the exhaust shell 31 passes through the processing box 2, thereby avoiding the occurrence of gaps in the connection position of the exhaust shell 31 and causing gas leakage.
  • the connecting sleeve 32 inside the exhaust shell 31 can separate the activity space, and the exhaust shell 31 is reinforced by the connecting sleeve 32.
  • the side support plates 33 are evenly distributed on the connecting sleeve 32, so that the side support plates 33 support the connecting sleeve 32, thereby increasing the bearing capacity of the connecting sleeve 32, and facilitating the side support plates 33 to limit the installation position of the connecting sleeve 32 when contacting the exhaust shell 31.
  • the connecting sleeve 32 is fixedly connected to the position close to the side support plates 33.
  • the exhaust shell 31 A filter sleeve 34 is fixedly connected to a position near the connecting sleeve 32. The filter sleeve 34 cooperates with the connecting sleeve 32 inside the discharge shell 31 to make the filter sleeve 34 filter the discharged gas.
  • the adsorption purification cylinder 36 adsorbs and purifies the gas on the connecting sleeve 32 to prevent the discharged gas from containing odor and affecting use.
  • the adsorption purification cylinder 36 cooperates with the side support plate 33 so that a plurality of adsorption purification cylinders 36 are provided on the connecting sleeve 32 to increase the purification range.
  • the inner surface of the filter sleeve 34 is rotatably connected to a linkage frame 35, and the top of the linkage frame 35 is fixedly connected to the discharge shell 31.
  • the side of the side support plate 33 away from the filter sleeve 34 is fixedly connected to the discharge shell 31 , and the bottom end of the adsorption purification cylinder 36 passes through the connecting sleeve 32 and extends to the outside of the connecting sleeve 32 .
  • the linkage frame 35 includes an inner connecting ring 351, the inner surface of the inner connecting ring 351 is rotatably connected to the linkage rod 352, the outer surface of the linkage rod 352 is fixedly connected to the support plate 354, and the support plate 354 is fixedly connected to the position away from the linkage rod 352 with the fixing plate 356, and the linkage rod 352 is driven by the wind to rotate on the inner connecting ring 351, so that the linkage rod 352 drives the support plate 354 to rotate, so that the linkage rod 352 and the support plate 354 cooperate to promote the circulation of wind force, and the inner connecting ring 351 contacts the discharge shell 31 to keep the linkage rod 352 in a vertical position, so as to avoid the linkage rod 352 from tilting and getting stuck when rotating, and the support plate 354 has a groove, so as to facilitate the circulation of air when the support plate 354 is not rotating, and the fixing plate 356 is fixed by the groove of the support plate 354, so as to avoid In order to prevent the fixing plate 356 from loosen
  • a plurality of clamping plates 353 are arranged on the scraper 355, so that the clamping plates 353 fix different positions of the scraper 355, thereby avoiding the contact position of the scraper 355 from tilting, and ensuring that the scraper 355 is in full contact with the filter sleeve 34 for cleaning.
  • the bottom end of the linkage rod 352 penetrates the inner connecting ring 351 and extends to the outside of the inner connecting ring 351 , and the position of the fixing plate 356 close to the clamping plate 353 penetrates the supporting plate 354 and extends to the outside of the supporting plate 354 .
  • the collecting assembly 5 comprises a collecting box 51, and the top of the inner cavity of the collecting box 51 is connected to a humidifying box 52, through which the dust dropped from the processing box 2 is collected, and as the dust enters the collecting box 51, the humidifying box 52 sprays atomized water flow to humidify the dust, so that the dust is gathered in the collecting box 51, and the water flow splashes into the processing box 2 when sprayed, so that the dust inside the processing box 2 is humidified by the water flow, and the dust is prevented from floating everywhere in the processing box 2, and the inlet of the collecting box 51 corresponds to the processing box 2, so that the dust is not easily offset when it falls, and the humidifying box 52 is kept horizontal on the collecting box 51, so that the humidifying box 52 is convenient for guiding the dust to fall, and the collecting box 51 is fixedly connected with a clamping plate 54 near the humidifying box 52, and the inner surface of the clamping plate 54 is rotatably connected It is connected to a swing bar 55, and an adsorption plate 53 is fixed
  • the adsorption plate 53 adsorbs the fallen dust in the collection box 51, so that the dust gathers at the position of the adsorption plate 53, thereby reducing the difficulty of cleaning.
  • the clamping plate 54 is provided with multiple swing bars 55, so that dust and gas enter the collection box 51 and drive the swing bars 55 to swing. When the swing bars 55 move, the activity space is adjusted so that the two swing bars 55 cooperate with each other to block the flow of dust, thereby improving the efficiency of dust collection.
  • the swing bars 55 cooperate with the clamping plate 54 to separate the interior of the collection box 51, which is convenient for filtering the collected dust and ensuring that the dust is piled up when it falls, thereby increasing the contact area between the adsorption plate 53 and the dust.
  • the inner surface of the collection box 51 is fixedly connected to an assembly frame 56.
  • the assembly frame 56 includes an assembly plate 562, the outer surface of the assembly plate 562 is fixedly connected with a side connection block 561, the inner surface of the side connection block 561 is fixedly connected with a telescopic rod 563, and the side of the telescopic rod 563 away from the assembly plate 562 is fixedly connected with a knocking ball 566.
  • the telescopic rod 563 has its own thrust, so that the telescopic rod 563 is extended and retracted by the pressure of the swing bar 55 through the knocking ball 566, thereby adjusting the position of the knocking ball 566, and the knocking ball 566 is used to knock when it contacts the swing bar 55, thereby increasing the shaking force of the swing bar 55, so that it can clean the swing bar 55 at different positions.
  • the telescopic rod 563 is horizontally installed on the assembly plate 562, so that the telescopic rod 563 reinforces the assembly plate 562, thereby increasing the bearing capacity of the connection position between the assembly plate 562 and the telescopic rod 563.
  • a reset plate 564 is fixedly connected to one side of the assembly plate 562 close to the telescopic rod 563, and an extension plate 565 is fixedly connected to the position of the reset plate 564 away from the assembly plate 562.
  • the reset plate 564 is installed horizontally on the collecting box 51 through the side block 561, so that the side block 561 clamps the assembly plate 562, which is convenient for the assembly plate 562 to limit the swing range of the swing bar.
  • the extension plate 565 on the assembly plate 562 rotates when gas flows inside the collecting box 51, so that the extension plate 565 approaches the position of the swing bar 55 to limit the movable range of the swing bar 55.
  • the outward extension plate 565 is rotatably connected to the mounting plate 562 at a position away from the telescopic rod 563 , and one end of the telescopic rod 563 close to the striking ball 566 penetrates the mounting plate 562 and extends to the outside of the mounting plate 562 .
  • the filter assembly 6 includes a transition pipe 65, the bottom end of the transition pipe 65 is connected to a circulation shell 62, and the bottom of the circulation shell 62 is connected to a filter sleeve 64, the incoming gas is filtered through the filter sleeve 64, and the filtered gas is transported to the circulation shell 62 for circulation, and dust gradually falls from the inside of the filter sleeve 64, the circulation shell 62 is connected to multiple filter sleeves 64, so that the filter sleeve 64 receives the gas inside the treatment box 2 to avoid the direct discharge of gas from the inside of the treatment box 2, and the transition pipe 65 transmits the suction force generated by the exhaust fan 7 to ensure that the circulation shell 62 and the filter sleeve 64 have sufficient suction force for gas circulation, thereby reducing the difficulty of gas entering the filter sleeve 64, and the bottom of the filter sleeve 64
  • the end is fixedly connected with a middle fixed plate 61, and the top of the middle fixed plate 61 is fixedly connected with
  • the mounting frame 63 is rotatably connected with a contact block 66 near the filter sleeve 64.
  • the outer surface of the contact block 66 is slidably connected with the filter sleeve 64.
  • the filter sleeve 64 and the mounting frame 63 are supported by the middle fixed plate 61, so that the contact block 66 on the mounting frame 63 is driven by the gas to rotate.
  • the contact block 66 When the contact block 66 rotates, it knocks on the filter sleeve 64, which makes it easy for the filter sleeve 64 to drop the residual dust due to the knocking, thereby avoiding the accumulation of dust inside the filter sleeve 64 and causing blockage, ensuring the circulation speed inside the filter sleeve 64, and the mounting frame 63 and the contact block 66 can cooperate to limit the two filter sleeves 64, thereby increasing the bearing capacity of the filter sleeve 64.
  • Embodiment 2 please refer to Figures 1 to 15.
  • the present invention provides a technical solution: a method for using a dust removal device for wireless charging station production, step 1: placing a processing box 2 at a position close to the charging station production, making the dust suction pipe 1 close to the charging station, the suction fan on the dust suction pipe 1 generates suction to collect dust around the charging station, and the collected dust is transported to the guide tube 41 through the dust suction pipe 1, and the movable plate 43 inside the guide tube 41 is driven by wind force to rotate inside the blocking ring 42;
  • Step 2 Use wind to circulate inside the guide tube 41, so that the filter disc 46 is pushed by the wind and gradually leaves the guide tube 41, and the filter disc 46 filters dust when it contacts the wind, and the vibration plate 45 vibrates with the movement of the filter disc 46, so that the vibration plate 45 can extend and retract to adjust the distance between the two filter discs 46, and the filter disc 46 moves and drives the stretching rod 44 to extend and retract, and the extension of the stretching rod 44 can shrink the flow filter disc 46 and return it to the inside of the guide tube 41 when the wind disappears;
  • Step 3 The dust and gas discharged by the guide tube 41 enter the processing chamber formed by the processing box 2 and the partition plate 8, the middle solid plate 61 supports the filter sleeve 64 on the partition plate 8, and the exhaust fan 7 generates suction and transports it to the circulation shell 62 through the transition pipe 65, so that the filter sleeve 64 filters the gas and dust when entering, and transports the filtered gas to the circulation shell 62 for circulation, and the gas inside the circulation shell 62 enters the discharge shell 31 through the transition pipe 65 to prepare for discharge;
  • Step 4 The contact block 66 on the mounting frame 63 is rotated by the gas, so that the contact block 66 contacts the filter sleeve 64 and knocks, and the dust collected inside the filter sleeve 64 falls into the collection box 51.
  • the humidification box 52 inside the collection box 51 sprays atomized water flow on the fallen dust, so that the water flow humidifies and collects the dust. Part of the water flow enters the processing chamber to humidify the dust, and the adsorption plate 53 adsorbs and purifies the humidified dust.
  • the swing bar 55 is driven by the gas to rotate on the clamping plate 54, so that the distance between the two swing bars 55 is adjusted.
  • Step 5 When the swing bar 55 rotates to contact the knocking ball 566, the knocking ball 566 drives the telescopic rod 563 to perform telescopic movement on the assembly plate 562, and the assembly plate 562 is horizontally installed through the side connecting block 561, so that the assembly plate 562 shakes when the telescopic rod 563 is extended and retracted, so that the extended plate 565 rotates on the assembly plate 562 to squeeze the reset plate 564, and the elastic force of the reset plate 564 pushes the extended plate 565;
  • Step six The treated gas enters the exhaust shell 31, so that the filter sleeve 34 filters the gas, and the adsorption purification cylinder 36 adsorbs and purifies the circulating gas, and the connecting sleeve 32 diverts the gas circulating in the exhaust shell 31.
  • the linkage rod 352 rotates on the inner ring 351, so that the linkage rod 352 drives the fixed plate 356 and the clamping plate 353 to rotate through the support plate 354, and the scraper 355 clamped by the clamping plate 353 rotates on the filter sleeve 34, thereby cleaning the filter sleeve 34.

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Abstract

一种用于无线充电座生产的除尘装置,包括处理箱(2)和吸尘管(1),该吸尘管(1)具有吸风机进行灰尘的收集,所述吸尘管(1)的内表面固定连接有预处理组件(4),所述吸尘管(1)靠近预处理组件(4)的一端与处理箱(2)连通,所述处理箱(2)的内表面固定连接有分隔板(8),所述分隔板(8)远离处理箱(2)的一侧固定连接有过滤组件(6),所述分隔板(8)的顶部连通有抽风机(7),所述处理箱(2)的底部连通有收集组件(5),所述处理箱(2)的顶部连通有排出组件(3)。该用于无线充电座生产的除尘装置,便于收集组件(5)进行灰尘的收集,避免了灰尘散落在处理箱(2)中增大清理的难度,抽风机(7)工作时能够对处理腔内部增大过滤组件(6)内部的吸力,避免了灰尘流通过程中发生堵塞影响除尘的效率。

Description

一种用于无线充电座生产的除尘装置 技术领域
本发明涉及充电座生产技术领域,具体涉及一种用于无线充电座生产的除尘装置。
背景技术
无线充电技术,源于无线电能传输技术,可分为小功率无线充电和大功率无线充电两种方式,小功率无线充电常采用电磁感应式;大功率无线充电常采用谐振式由供电设备将能量传送至用电的装置,无线充电座可用于为用电设备等用电设备充电,其可分为立式无线充电座和卧式无线充电座两大类,无线充电器是利用电磁感应原理进行充电的设备,通过在发送和接收端各安置一个线圈,发送端线圈在电力的作用下向外界发出电磁信号,接收端线圈收到电磁信号并且将电磁信号转变为电流,从而达到无线充电的目的,但是充电座生产工作容易产生灰尘,灰尘粘附在充电座上对后续的使用造成影响,充电座周围粘附灰尘容易随设备加工时导致飘散,使其对工作人员造成影响,对充电座加工位置进行除尘处理时灰尘容易重新掉落,降低了除尘质量,且灰尘在设备内部不易收集,导致部分灰尘直接排出装置,降低了设备对灰尘处理的效率,灰尘在设备内部流通时容易造成堵塞,进而增大了除尘的难度,降低设备的使用寿命。
综上所述,充电座生产工作容易产生灰尘,灰尘粘附在充电座上对后续的使用造成影响,且灰尘在设备内部不易收集,导致部分灰尘直接排出装置,降低了设备对灰尘处理的效率,灰尘在设备内部流通时容易造成堵塞,进而增大了除尘的难度。
发明内容
针对现有技术的不足,本发明解决其技术问题所采用的技术方案是:本发明所述的一种用于无线充电座生产的除尘装置,包括处理箱,
吸尘管,该吸尘管具有吸风机进行灰尘的收集,所述吸尘管的内表面固定连接有预处理组件,所述吸尘管靠近预处理组件的一端与处理箱连通,所述处理箱的内表面固定连接有分隔板,所述分隔板远离处理箱的一侧固定连接有过滤组件,所述分隔板的顶部连通有抽风机,所述处理箱的底部连通有收集组件,所述处理箱的顶部连通有排出组件,通过吸尘管上的吸风机工作产生吸力,使吸尘管对充电座周围进行灰尘的收集,且处理箱与分隔板配合产生处理腔,分隔板靠近收集组件的位置具有斜面,能够对灰尘的掉落进行引导,分隔板接触预处理组件,使得预处理组件对灰尘进行预处理,并将处理的气体与灰尘输送至靠近过滤组件的位置,过滤组件与分隔板之间具有活动空间,与预处理组件掉落的灰尘直接进入收集组件中进行收集,抽风机工作时能够对处理腔内部增大过滤组件内部的吸力,使得过滤组件将牢固后的气体经抽风机输送至排出组件内部进行排出;
预处理组件,包括导流筒,该导流筒用于引导气体的流通,所述导流筒的内表面固定连接有阻挡环,所述阻挡环的内表面转动连接有活动板,所述阻挡环靠近活动板的位置固定连接有拉伸杆,所述拉伸杆远离阻挡环的一端固定连接有过滤盘,所述过滤盘远离拉伸杆的一侧固定连接有震动板,所述导流筒的外表面与分隔板固定连接,通过导流筒对气体的流通进行引导,阻挡环内部均匀分布活动板,使活动板受到气体带动进行旋转,过滤盘受到气体推力逐渐离开导流筒,两过滤盘之间具有震动板,使得震动板移动时产生震动,从而利用震动传递至过滤盘上将残留的灰尘进行掉落,过滤盘失去推力时拉伸杆收缩,使拉伸杆带动过滤盘重新返回至初始位置,震动板震动时能够进行伸缩运动。
优选的,所述导流筒靠近分隔板的一端延伸至吸尘管的外部,所述导流筒的内表面与过滤盘滑动连接。
优选的,所述排出组件的底部贯穿处理箱且延伸至处理箱的内部,所述抽风机的顶部与处理箱固定连接。
优选的,所述排出组件包括排出壳,所述排出壳的内表面固定连接有连接套,所述连接套底部固定连接有侧撑板,通过排出壳对抽风机流通的风力进行排出,且排出壳贯穿处理箱,排出壳内部的连接套能够进行活动空间的分隔,侧撑板均匀分布在连接套上,使侧撑板对连接套支撑,所述连接套靠近侧撑板的位置固定连接有吸附净化筒,所述排出壳靠近连接套的位置固定连接有过滤套,通过过滤套在排出壳内部与连接套配合,使过滤套对排出的气体进行过滤,同时吸附净化筒在连接套上对气体进行吸附净化,且吸附净化筒与侧撑板相互配合,过滤套与连接套之间具有活动空间,所述过滤套的内表面转动连接有联动架,所述联动架的顶部与排出壳固定连接。
优选的,所述侧撑板远离过滤套的一侧与排出壳固定连接,所述吸附净化筒的底端贯穿连接套且延伸至连接套的外部。
优选的,所述联动架包括内接环,所述内接环的内表面转动连接有联动杆,所述联动杆的外表面固定连接有支撑板,所述支撑板远离联动杆的位置固定连接有固定板,通过联动杆受到风力带动在内接环上进行旋转,使得联动杆带动支撑板进行旋转,内接环接触排出壳能够保持联动杆进行竖直放置,且支撑板具有凹槽,所述固定板的两端固定连接有夹板,所述夹板远离固定板的位置固定连接有刮板,通过夹板受到固定板的支撑,使得刮板随联动杆旋转时接触过滤套,且刮板接触过滤套时产生震动,使过滤套出现抖动进行粘附灰尘的自清理,夹板在刮板上设置有多个。
优选的,所述联动杆的底端贯穿内接环且延伸至内接环的外部,所述固定板靠近夹板的位置贯穿支撑板且延伸至支撑板的外部。
优选的,所述收集组件包括收集箱,所述收集箱的内腔顶部连通有加湿盒,通过收集箱对处理箱内部掉落的灰尘进行收集,随着灰尘进入收集箱内部,加湿盒喷洒雾化水流对灰尘进行加湿,水流喷洒时飞溅至处理箱中,从而利用水流对处理箱内部的灰尘进行加湿处理,收集箱的进口与处理箱相对应,加湿盒在收集箱上保持水平,所述收集箱靠近加湿盒的位置固定连接有卡接板,所述卡接板的内表面转动连接有摆动条,所述收集箱的内腔底部固定连接有吸附盘,通过吸附盘在收集箱中对掉落的灰尘进行吸附,且卡接板设置有多个摆动条,使灰尘及气体进入收集箱中带动摆动条摆动,摆动条运动时调节活动空间,使得两摆动条相互配合对灰尘的流通进行阻挡,摆动条与卡接板配合对收集箱内部进行分隔,所述收集箱的内表面固定连接有装配架。
优选的,所述装配架包括装配板,所述装配板的外表面固定连接有侧接块,所述侧接块的内表面固定连接有伸缩杆,所述伸缩杆的远离装配板的一侧固定连接有敲击球,通过伸缩杆自身具有推力,使得伸缩杆经敲击球受到摆动条的压力进行伸缩,从而对敲击球的位置进行调节,利用敲击球接触摆动条时进行敲击,伸缩杆在装配板上进行水平安装,所述装配板靠近伸缩杆的一侧固定连接有复位板,所述复位板远离装配板的位置固定连接有外伸板,通过侧接块安装在收集箱上进行水平安装,使得侧接块对装配板夹持,装配板上的外伸板在收集箱内部流通气体时进行转动,使外伸板向摆动条位置靠近对摆动条的活动范围进行限制,外伸板接触摆动条时产生碰撞,外伸板运动时拉伸复位板,从而利用复位板对外伸板进行复位。
优选的,所述外伸板远离伸缩杆的位置与在装配板转动连接,所述伸缩杆靠近敲击球的一端贯穿装配板且延伸至装配板的外部。
优选的,过滤组件包括过渡管,所述过渡管的底端连通有循环壳,所述循环壳的底部连通有过滤套筒,通过过滤套筒对进入的气体进行过滤,并将过滤后的气体输送至循环壳中进行循环流通,循环壳连通多个过滤套筒,使过滤套筒对接收处理箱内部的气体,且过渡管对抽风机产生的吸力进行传递,所述过滤套筒的底端固定连接有中固板,所述中固板的顶部固定连接有安装框,所述安装框靠近过滤套筒的位置转动连接有接触块,所述接触块的外表面与过滤套筒滑动连接,通过中固板对过滤套筒与安装框支撑,使得安装框上的接触块受到气体的带动进行旋转,接触块旋转时对过滤套筒敲击,且安装框与接触块配合能够对两过滤套筒限制。
本发明提高了一种用于无线充电座生产的除尘装置。具备以下有益效果:
该用于无线充电座生产的除尘装置,随着吸尘管、处理箱、分隔板,通过吸尘管上的吸风机工作产生吸力,避免了充电座加工时粘附灰尘对后续使用造成影响,分隔板靠近收集组件的位置具有斜面,能够对灰尘的掉落进行引导,便于收集组件进行灰尘的收集,避免了灰尘散落在处理箱中增大清理的难度,抽风机工作时能够对处理腔内部增大过滤组件内部的吸力,避免了灰尘流通过程中发生堵塞影响除尘的效率。
该用于无线充电座生产的除尘装置,通过导流筒对气体的流通进行引导,避免气体流通时发生泄漏的情况,过滤盘受到气体推力逐渐离开导流筒,两过滤盘之间具有震动板,防止过滤盘表面粘附的灰尘发生堵塞过滤孔的情况,便于拉伸杆进行伸长对过滤盘支撑,避免过滤盘离开导流筒后发生倾斜对后续的移动造成影响,使过滤盘对气体进行多次过滤。
该用于无线充电座生产的除尘装置,通过排出壳对抽风机流通的风力进行排出,避免了排出壳的连接位置出现空隙导致气体泄漏的情况出现,排出壳内部的连接套能够进行活动空间的分隔,并利用连接套对排出壳加固,侧撑板均匀分布在连接套上,便于侧撑板接触排出壳时对连接套的安装位置进行限制。
该用于无线充电座生产的除尘装置,通过过滤套在排出壳内部与连接套配合,避免排出的气体蕴含异味影响使用,过滤套与连接套之间具有活动空间,便于过滤套进行气体的流通,便于气体在排出壳内部流通时进行循环,使得连接套与过滤套配合对掉落的灰尘进行阻挡。
该用于无线充电座生产的除尘装置,通过联动杆受到风力带动在内接环上进行旋转,内接环接触排出壳能够保持联动杆进行竖直放置,避免联动杆旋转时发生倾斜发生卡顿的情况,且支撑板具有凹槽,便于支撑板不进行旋转时能够空气的流通,并利用支撑板的凹槽对固定板进行固定,避免了固定板安装后出现松动。
该用于无线充电座生产的除尘装置,通过夹板受到固定板的支撑,使夹板对刮板进行固定,便于刮板对过滤套粘附的灰尘进行掉落,且刮板接触过滤套时产生震动,使过滤套出现抖动进行粘附灰尘的自清理,夹板在刮板上设置有多个,使得夹板对刮板的不同位置进行固定,避免了刮板的接触位置出现倾斜,确保刮板与过滤套充分接触进行清理。
该用于无线充电座生产的除尘装置,通过收集箱对处理箱内部掉落的灰尘进行收集,水流喷洒时飞溅至处理箱中,从而利用水流对处理箱内部的灰尘进行加湿处理,避免灰尘在处理箱中到处飘散,收集箱的进口与处理箱相对应,使得灰尘掉落时不易发生偏移的情况,便于加湿盒对灰尘的掉落的引导。
该用于无线充电座生产的除尘装置,通过吸附盘在收集箱中对掉落的灰尘进行吸附,便于灰尘聚集在吸附盘的位置,摆动条与卡接板配合对收集箱内部进行分隔,便于对收集的灰尘进行过滤,确保灰尘掉落时堆积在一起,从而增大了吸附盘与灰尘之间的接触面积。
该用于无线充电座生产的除尘装置,通过侧接块安装在收集箱上进行水平安装,便于装配板对摆动条的摆动范围进行限制,利用敲击球接触摆动条时进行敲击,进而增大了摆动条抖动的力度,使其对不同位置的摆动条清理,伸缩杆在装配板上进行水平安装,使得伸缩杆对装配板进行加固,从而增大了装配板与伸缩杆连接位置的承受力。
该用于无线充电座生产的除尘装置,通过过滤套筒对进入的气体进行过滤,避免处理箱内部出现气体直接排出的情况,且过渡管对抽风机产生的吸力进行传递,从而降低了气体进入过滤套筒内部的难度,接触块旋转时对过滤套筒敲击,便于过滤套筒受到敲击对残留的灰尘进行掉落,避免了过滤套筒内部堆积灰尘导致堵塞,确保过滤套筒内部的流通速度。
附图说明
图1为本发明整体的结构示意图;
图2为本发明整体的剖视图;
图3为本发明预处理组件的结构示意图;
图4为本发明震动板的放大图;
图5为本发明排出组件的结构示意图;
图6为本发明侧撑板的放大图;
图7为本发明联动架的结构示意图;
图8为本发明夹板的放大图;
图9为本发明收集组件的结构示意图;
图10为本发明吸附盘的结构示意图;
图11为本发明装配架的结构示意图;
图12为本发明敲击球的放大图;
图13为本发明过滤组件的结构示意图;
图14为本发明过滤套筒的结构示意图;
图15为本发明接触块的放大图。
图中:1、吸尘管;2、处理箱;3、排出组件;31、排出壳;32、连接套;33、侧撑板;34、过滤套;35、联动架;351、内接环;352、联动杆;353、夹板;354、支撑板;355、刮板;356、固定板;36、吸附净化筒;4、预处理组件;41、导流筒;42、阻挡环;43、活动板;44、拉伸杆;45、震动板;46、过滤盘;5、收集组件;51、收集箱;52、加湿盒;53、吸附盘;54、卡接板;55、摆动条;56、装配架;561、侧接块;562、装配板;563、伸缩杆;564、复位板;565、外伸板;566、敲击球;6、过滤组件;61、中固板;62、循环壳;63、安装框;64、过滤套筒;65、过渡管;66、接触块;7、抽风机;8、分隔板。
具体实施方式
下面结合附图和具体实施方式对本发明作进一步详细的说明。本发明的实施例是为了示例和描述起见而给出的,而并不是无遗漏的或者将本发明限于所公开的形式。很多修改和变化对于本领域的普通技术人员而言是显而易见的。选择和描述实施例是为了更好说明本发明的原理和实际应用,并且使本领域的普通技术人员能够理解本发明从而设计适于特定用途的带有各种修改的各种实施例。
实施例1,请参阅图1-图15,本发明提供一种技术方案:一种用于无线充电座生产的除尘装置,包括处理箱2,
吸尘管1,该吸尘管1具有吸风机进行灰尘的收集,吸尘管1的内表面固定连接有预处理组件4,吸尘管1靠近预处理组件4的一端与处理箱2连通,处理箱2的内表面固定连接有分隔板8,分隔板8远离处理箱2的一侧固定连接有过滤组件6,分隔板8的顶部连通有抽风机7,处理箱2的底部连通有收集组件5,处理箱2的顶部连通有排出组件3,通过吸尘管1上的吸风机工作产生吸力,使吸尘管1对充电座周围进行灰尘的收集,便于将收集的灰尘输送至处理箱2内部进行处理,避免了充电座加工时粘附灰尘对后续使用造成影响,且处理箱2与分隔板8配合产生处理腔,能够利用分隔板8对处理箱2内部进行分隔,分隔板8靠近收集组件5的位置具有斜面,能够对灰尘的掉落进行引导,便于收集组件5进行灰尘的收集,避免了灰尘散落在处理箱2中增大清理的难度,分隔板8接触预处理组件4,使得预处理组件4对灰尘进行预处理,并将处理的气体与灰尘输送至靠近过滤组件6的位置,便于过滤组件6进行气体的二次过滤,进而提高了灰尘清理的效率,过滤组件6与分隔板8之间具有活动空间,与预处理组件4掉落的灰尘直接进入收集组件5中进行收集,抽风机7工作时能够对处理腔内部增大过滤组件6内部的吸力,使得过滤组件6将牢固后的气体经抽风机7输送至排出组件3内部进行排出,避免了灰尘流通过程中发生堵塞影响除尘的效率;
预处理组件4,包括导流筒41,该导流筒41用于引导气体的流通,导流筒41的内表面固定连接有阻挡环42,阻挡环42的内表面转动连接有活动板43,阻挡环42靠近活动板43的位置固定连接有拉伸杆44,拉伸杆44远离阻挡环42的一端固定连接有过滤盘46,过滤盘46远离拉伸杆44的一侧固定连接有震动板45,导流筒41的外表面与分隔板8固定连接,通过导流筒41对气体的流通进行引导,避免气体流通时发生泄漏的情况,阻挡环42内部均匀分布活动板43,使活动板43受到气体带动进行旋转,从而利用活动板43的转动对流通的气体进行分流,且活动板43与阻挡环42配合能够对导流筒41进行加固,从而增大了导流筒41自身的稳定性,过滤盘46受到气体推力逐渐离开导流筒41,两过滤盘46之间具有震动板45,使得震动板45移动时产生震动,从而利用震动传递至过滤盘46上将残留的灰尘进行掉落,防止过滤盘46表面粘附的灰尘发生堵塞过滤孔的情况,过滤盘46移动时对拉伸杆44流动,便于拉伸杆44进行伸长对过滤盘46支撑,避免过滤盘46离开导流筒41后发生倾斜对后续的移动造成影响,过滤盘46失去推力时拉伸杆44收缩,使拉伸杆44带动过滤盘46重新返回至初始位置,震动板45震动时能够进行伸缩运动,便于震动板45对两过滤盘46之间的距离进行调节,从而保证了过滤盘46保持水平放置,使过滤盘46对气体进行多次过滤。
其中,导流筒41靠近分隔板8的一端延伸至吸尘管1的外部,导流筒41的内表面与过滤盘46滑动连接。
其中,排出组件3的底部贯穿处理箱2且延伸至处理箱2的内部,抽风机7的顶部与处理箱2固定连接。
其中,排出组件3包括排出壳31,排出壳31的内表面固定连接有连接套32,连接套32底部固定连接有侧撑板33,通过排出壳31对抽风机7流通的风力进行排出,且排出壳31贯穿处理箱2,避免了排出壳31的连接位置出现空隙导致气体泄漏的情况出现,排出壳31内部的连接套32能够进行活动空间的分隔,并利用连接套32对排出壳31加固,侧撑板33均匀分布在连接套32上,使侧撑板33对连接套32支撑,从而增大连接套32的承受力,便于侧撑板33接触排出壳31时对连接套32的安装位置进行限制,连接套32靠近侧撑板33的位置固定连接有吸附净化筒36,排出壳31靠近连接套32的位置固定连接有过滤套34,通过过滤套34在排出壳31内部与连接套32配合,使过滤套34对排出的气体进行过滤,同时吸附净化筒36在连接套32上对气体进行吸附净化,避免排出的气体蕴含异味影响使用,且吸附净化筒36与侧撑板33相互配合,使连接套32上设置有多个吸附净化筒36增大净化的范围,过滤套34与连接套32之间具有活动空间,便于过滤套34进行气体的流通,便于气体在排出壳31内部流通时进行循环,使得连接套32与过滤套34配合对掉落的灰尘进行阻挡,过滤套34的内表面转动连接有联动架35,联动架35的顶部与排出壳31固定连接。
其中,侧撑板33远离过滤套34的一侧与排出壳31固定连接,吸附净化筒36的底端贯穿连接套32且延伸至连接套32的外部。
其中,联动架35包括内接环351,内接环351的内表面转动连接有联动杆352,联动杆352的外表面固定连接有支撑板354,支撑板354远离联动杆352的位置固定连接有固定板356,通过联动杆352受到风力带动在内接环351上进行旋转,使得联动杆352带动支撑板354进行旋转,便于联动杆352与支撑板354配合对风力的流通起到推动的作用,内接环351接触排出壳31能够保持联动杆352进行竖直放置,避免联动杆352旋转时发生倾斜发生卡顿的情况,且支撑板354具有凹槽,便于支撑板354不进行旋转时能够空气的流通,并利用支撑板354的凹槽对固定板356进行固定,避免了固定板356安装后出现松动,固定板356的两端固定连接有夹板353,夹板353远离固定板356的位置固定连接有刮板355,通过夹板353受到固定板356的支撑,使夹板353对刮板355进行固定,使得刮板355随联动杆352旋转时接触过滤套34,便于刮板355对过滤套34粘附的灰尘进行掉落,且刮板355接触过滤套34时产生震动,使过滤套34出现抖动进行粘附灰尘的自清理,确保过滤套34自身的洁净,夹板353在刮板355上设置有多个,使得夹板353对刮板355的不同位置进行固定,避免了刮板355的接触位置出现倾斜,确保刮板355与过滤套34充分接触进行清理。
其中,联动杆352的底端贯穿内接环351且延伸至内接环351的外部,固定板356靠近夹板353的位置贯穿支撑板354且延伸至支撑板354的外部。
其中,收集组件5包括收集箱51,收集箱51的内腔顶部连通有加湿盒52,通过收集箱51对处理箱2内部掉落的灰尘进行收集,随着灰尘进入收集箱51内部,加湿盒52喷洒雾化水流对灰尘进行加湿,便于灰尘在收集箱51中进行聚集,水流喷洒时飞溅至处理箱2中,从而利用水流对处理箱2内部的灰尘进行加湿处理,避免灰尘在处理箱2中到处飘散,收集箱51的进口与处理箱2相对应,使得灰尘掉落时不易发生偏移的情况,加湿盒52在收集箱51上保持水平,便于加湿盒52对灰尘的掉落的引导,收集箱51靠近加湿盒52的位置固定连接有卡接板54,卡接板54的内表面转动连接有摆动条55,收集箱51的内腔底部固定连接有吸附盘53,通过吸附盘53在收集箱51中对掉落的灰尘进行吸附,便于灰尘聚集在吸附盘53的位置,从而降低了清理的难度,且卡接板54设置有多个摆动条55,使灰尘及气体进入收集箱51中带动摆动条55摆动,摆动条55运动时调节活动空间,使得两摆动条55相互配合对灰尘的流通进行阻挡,进而提高了灰尘收集的效率,摆动条55与卡接板54配合对收集箱51内部进行分隔,便于对收集的灰尘进行过滤,确保灰尘掉落时堆积在一起,从而增大了吸附盘53与灰尘之间的接触面积,收集箱51的内表面固定连接有装配架56。
其中,装配架56包括装配板562,装配板562的外表面固定连接有侧接块561,侧接块561的内表面固定连接有伸缩杆563,伸缩杆563的远离装配板562的一侧固定连接有敲击球566,通过伸缩杆563自身具有推力,使得伸缩杆563经敲击球566受到摆动条55的压力进行伸缩,从而对敲击球566的位置进行调节,利用敲击球566接触摆动条55时进行敲击,进而增大了摆动条55抖动的力度,使其对不同位置的摆动条55清理,伸缩杆563在装配板562上进行水平安装,使得伸缩杆563对装配板562进行加固,从而增大了装配板562与伸缩杆563连接位置的承受力,装配板562靠近伸缩杆563的一侧固定连接有复位板564,复位板564远离装配板562的位置固定连接有外伸板565,通过侧接块561安装在收集箱51上进行水平安装,使得侧接块561对装配板562夹持,便于装配板562对摆动条的摆动范围进行限制,装配板562上的外伸板565在收集箱51内部流通气体时进行转动,使外伸板565向摆动条55位置靠近对摆动条55的活动范围进行限制,外伸板565接触摆动条55时产生碰撞,从而对摆动条55及外伸板565粘附的灰尘进行清理,外伸板565运动时拉伸复位板564,从而利用复位板564对外伸板565进行复位。
其中,外伸板565远离伸缩杆563的位置与在装配板562转动连接,伸缩杆563靠近敲击球566的一端贯穿装配板562且延伸至装配板562的外部。
其中,过滤组件6包括过渡管65,过渡管65的底端连通有循环壳62,循环壳62的底部连通有过滤套筒64,通过过滤套筒64对进入的气体进行过滤,并将过滤后的气体输送至循环壳62中进行循环流通,而灰尘逐渐从过滤套筒64内部掉落,循环壳62连通多个过滤套筒64,使过滤套筒64对接收处理箱2内部的气体,避免处理箱2内部出现气体直接排出的情况,且过渡管65对抽风机7产生的吸力进行传递,确保循环壳62与过滤套筒64内部具有充足的吸力进行气体的流通,从而降低了气体进入过滤套筒64内部的难度,过滤套筒64的底端固定连接有中固板61,中固板61的顶部固定连接有安装框63,安装框63靠近过滤套筒64的位置转动连接有接触块66,接触块66的外表面与过滤套筒64滑动连接,通过中固板61对过滤套筒64与安装框63支撑,使得安装框63上的接触块66受到气体的带动进行旋转,接触块66旋转时对过滤套筒64敲击,便于过滤套筒64受到敲击对残留的灰尘进行掉落,避免了过滤套筒64内部堆积灰尘导致堵塞,确保过滤套筒64内部的流通速度,且安装框63与接触块66配合能够对两过滤套筒64限制,进而增大了过滤套筒64的承受力。
实施例2,请参阅图1-图15,在实施例1的基础上,本发明提供一种技术方案:一种用于无线充电座生产的除尘装置的使用方法,步骤一:将处理箱2放置在靠近充电座生产的位置,使吸尘管1靠近充电座,吸尘管1上的吸风机工作产生吸力对充电座周围的灰尘进行收集,并将收集的灰尘经吸尘管1输送至导流筒41中,导流筒41内部的活动板43受到风力带动在阻挡环42内部进行转动;
步骤二:利用风力在导流筒41内部流通,使过滤盘46受到风力推动逐渐离开导流筒41,且过滤盘46接触风力时进行灰尘过滤,震动板45随过滤盘46的移动产生震动,使得震动板45伸缩调节两过滤盘46之间的距离,过滤盘46移动时带动拉伸杆44进行伸缩,拉伸杆44的伸缩能够在风力消失时收缩流动过滤盘46返回至导流筒41内部;
步骤三:利用导流筒41排出的灰尘与气体进入处理箱2与分隔板8形成的处理腔中,中固板61在分隔板8上支撑过滤套筒64,抽风机7产生吸力经过渡管65输送至循环壳62中,使得过滤套筒64进入气体与灰尘时进行过滤,并随着过滤后的气体输送至循环壳62内部循环流通,循环壳62内部的气体经过渡管65进入排出壳31中准备排出气体;
步骤四:利用安装框63上的接触块66受到气体推动进行旋转,使得接触块66接触过滤套筒64时进行敲击,随之过滤套筒64内部收集的灰尘进行掉落至收集箱51中,收集箱51内部的加湿盒52对掉落的灰尘喷洒雾化水流,使水流对灰尘进行加湿收集,部分水流进入处理腔中对灰尘进行加湿,而吸附盘53对加湿后的灰尘进行吸附净化,摆动条55在卡接板54上受到气体带动进行旋转,使其调节两摆动条55之间的距离;
步骤五:利用摆动条55旋转至接触敲击球566时,敲击球566带动伸缩杆563在装配板562上进行伸缩运动,而装配板562经侧接块561进行水平安装,使得装配板562在伸缩杆563进行伸缩时产生晃动,使外伸板565在装配板562上旋转挤压复位板564,复位板564的弹力对外伸板565进行推动;
步骤六:通过处理后的气体进入排出壳31内部,使得过滤套34对气体进行过滤,并随着吸附净化筒36对流通的气体进行吸附净化,连接套32对排出壳31内部流通的气体进行分流,气体在过滤套34内部流通时,联动杆352在内接环351上旋转,使得联动杆352经支撑板354带动固定板356与夹板353旋转,夹板353夹持的刮板355在过滤套34上旋转,从而对过滤套34进行清理。
显然,所描述的实施例仅仅是本发明的一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域及相关领域的普通技术人员在没有作出创造性劳动的前提下所获得的所有其他实施例,都应属于本发明保护的范围。本发明中未具体描述和解释说明的结构、装置以及操作方法,如无特别说明和限定,均按照本领域的常规手段进行实施。

Claims (10)

  1. 一种用于无线充电座生产的除尘装置,包括处理箱(2),其特征在于:
    吸尘管(1),该吸尘管(1)具有吸风机进行灰尘的收集,所述吸尘管(1)的内表面固定连接有预处理组件(4),所述吸尘管(1)靠近预处理组件(4)的一端与处理箱(2)连通,所述处理箱(2)的内表面固定连接有分隔板(8),所述分隔板(8)远离处理箱(2)的一侧固定连接有过滤组件(6),所述分隔板(8)的顶部连通有抽风机(7),所述处理箱(2)的底部连通有收集组件(5),所述处理箱(2)的顶部连通有排出组件(3);
    预处理组件(4),包括导流筒(41),该导流筒(41)用于引导气体的流通,所述导流筒(41)的内表面固定连接有阻挡环(42),所述阻挡环(42)的内表面转动连接有活动板(43),所述阻挡环(42)靠近活动板(43)的位置固定连接有拉伸杆(44),所述拉伸杆(44)远离阻挡环(42)的一端固定连接有过滤盘(46),所述过滤盘(46)远离拉伸杆(44)的一侧固定连接有震动板(45),所述导流筒(41)的外表面与分隔板(8)固定连接。
  2. 根据权利要求1所述的一种用于无线充电座生产的除尘装置,其特征在于:所述导流筒(41)靠近分隔板(8)的一端延伸至吸尘管(1)的外部,所述导流筒(41)的内表面与过滤盘(46)滑动连接。
  3. 根据权利要求1所述的一种用于无线充电座生产的除尘装置,其特征在于:所述排出组件(3)的底部贯穿处理箱(2)且延伸至处理箱(2)的内部,所述抽风机(7)的顶部与处理箱(2)固定连接。
  4. 根据权利要求1所述的一种用于无线充电座生产的除尘装置,其特征在于:所述排出组件(3)包括排出壳(31),所述排出壳(31)的内表面固定连接有连接套(32),所述连接套(32)底部固定连接有侧撑板(33),所述连接套(32)靠近侧撑板(33)的位置固定连接有吸附净化筒(36),所述排出壳(31)靠近连接套(32)的位置固定连接有过滤套(34),所述过滤套(34)的内表面转动连接有联动架(35),所述联动架(35)的顶部与排出壳(31)固定连接。
  5. 根据权利要求4所述的一种用于无线充电座生产的除尘装置,其特征在于:所述侧撑板(33)远离过滤套(34)的一侧与排出壳(31)固定连接,所述吸附净化筒(36)的底端贯穿连接套(32)且延伸至连接套(32)的外部。
  6. 根据权利要求4所述的一种用于无线充电座生产的除尘装置,其特征在于:所述联动架(35)包括内接环(351),所述内接环(351)的内表面转动连接有联动杆(352),所述联动杆(352)的外表面固定连接有支撑板(354),所述支撑板(354)远离联动杆(352)的位置固定连接有固定板(356),所述固定板(356)的两端固定连接有夹板(353),所述夹板(353)远离固定板(356)的位置固定连接有刮板(355)。
  7. 根据权利要求6所述的一种用于无线充电座生产的除尘装置,其特征在于:所述联动杆(352)的底端贯穿内接环(351)且延伸至内接环(351)的外部,所述固定板(356)靠近夹板(353)的位置贯穿支撑板(354)且延伸至支撑板(354)的外部。
  8. 根据权利要求1所述的一种用于无线充电座生产的除尘装置,其特征在于:所述收集组件(5)包括收集箱(51),所述收集箱(51)的内腔顶部连通有加湿盒(52),所述收集箱(51)靠近加湿盒(52)的位置固定连接有卡接板(54),所述卡接板(54)的内表面转动连接有摆动条(55),所述收集箱(51)的内腔底部固定连接有吸附盘(53),所述收集箱(51)的内表面固定连接有装配架(56)。
  9. 根据权利要求8所述的一种用于无线充电座生产的除尘装置,其特征在于:所述装配架(56)包括装配板(562),所述装配板(562)的外表面固定连接有侧接块(561),所述侧接块(561)的内表面固定连接有伸缩杆(563),所述伸缩杆(563)的远离装配板(562)的一侧固定连接有敲击球(566),所述装配板(562)靠近伸缩杆(563)的一侧固定连接有复位板(564),所述复位板(564)远离装配板(562)的位置固定连接有外伸板(565)。
  10. 根据权利要求9所述的一种用于无线充电座生产的除尘装置,其特征在于:所述外伸板(565)远离伸缩杆(563)的位置与在装配板(562)转动连接,所述伸缩杆(563)靠近敲击球(566)的一端贯穿装配板(562)且延伸至装配板(562)的外部。
PCT/CN2023/133775 2023-11-23 2023-11-23 一种用于无线充电座生产的除尘装置 Pending WO2025107256A1 (zh)

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