CN111568567B - Disinfection system convenient to remove - Google Patents

Disinfection system convenient to remove Download PDF

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Publication number
CN111568567B
CN111568567B CN202010378799.3A CN202010378799A CN111568567B CN 111568567 B CN111568567 B CN 111568567B CN 202010378799 A CN202010378799 A CN 202010378799A CN 111568567 B CN111568567 B CN 111568567B
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wheel
translation
plate
gear
motor
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CN111568567A (en
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黄坤
刘洪晓
李会
张国丽
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Affiliated Hospital of University of Qingdao
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Affiliated Hospital of University of Qingdao
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B90/00Instruments, implements or accessories specially adapted for surgery or diagnosis and not covered by any of the groups A61B1/00 - A61B50/00, e.g. for luxation treatment or for protecting wound edges
    • A61B90/80Implements for cleaning or washing the skin of surgeons or patients
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M35/00Devices for applying media, e.g. remedies, on the human body
    • A61M35/20Non-portable devices, e.g. spraying booths
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D29/00Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor
    • B01D29/11Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor with bag, cage, hose, tube, sleeve or like filtering elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D35/00Filtering devices having features not specifically covered by groups B01D24/00 - B01D33/00, or for applications not specifically covered by groups B01D24/00 - B01D33/00; Auxiliary devices for filtration; Filter housing constructions
    • B01D35/02Filters adapted for location in special places, e.g. pipe-lines, pumps, stop-cocks

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Chemical & Material Sciences (AREA)
  • Veterinary Medicine (AREA)
  • Surgery (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Public Health (AREA)
  • Animal Behavior & Ethology (AREA)
  • Molecular Biology (AREA)
  • Medical Informatics (AREA)
  • Pathology (AREA)
  • Anesthesiology (AREA)
  • Hematology (AREA)
  • Oral & Maxillofacial Surgery (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • Apparatus For Disinfection Or Sterilisation (AREA)

Abstract

The invention discloses a movable disinfection system which comprises a disinfection mechanism, a disinfectant filter device, a translation mechanism and a waste liquid transfer mechanism, wherein the disinfection mechanism, the disinfectant filter device, the translation mechanism and the waste liquid transfer mechanism are arranged on a rack, and the translation mechanism drives the disinfection mechanism to translate so as to disinfect different wounds. The invention can adapt to the treatment of various wounds and carry out disinfection treatment on the wounds; the invention can identify and disinfect various wound positions, and can improve the efficiency; the invention can disinfect, sterilize and dry the wound of a patient.

Description

Disinfection system convenient to remove
Technical Field
The invention relates to the field of medical disinfection and waste liquid treatment, in particular to a disinfection system convenient to move.
Background
In order to prevent infection of wounds caused by surgical operations and accidents in the medical field, the adverse reactions of patients need to be disinfected, the disinfection operation time is long, the wound healing of the patients can be indirectly influenced, and in order to solve the problem, a disinfection system convenient to move is designed firstly.
Disclosure of Invention
In view of the above technical problems, the present invention provides a portable disinfection system, which is characterized in that: comprises a disinfection device, a disinfection water filtering device, a waste liquid tank translation device and a disinfection device large frame.
The sterilizing device is arranged on a sterilizing water filtering device, the sterilizing water filtering device is arranged on a waste liquid tank translation device, and the waste liquid tank translation device is arranged on a large frame of the sterilizing device.
The disinfection device comprises a fixed rib plate, an X-axis cylinder fixing plate, an X-axis pneumatic rod, a pneumatic rod connecting plate, an X-axis slide rail, a Z-axis cylinder fixing plate, a fixing plate clamping plate, a Z-axis slide rail, a fixing foot plate, a translation slide block, a translation block, a nozzle device upper cover, a motor supporting plate, a planet wheel, a motor fixing plate, a small planet wheel, a sun wheel, a driven wheel upper wheel, a driven wheel lower wheel, a sun wheel driving wheel, a stepping motor, a servo motor, a nozzle device bottom plate, a driving wheel, an upper middle driven wheel upper wheel, a middle upper driven wheel lower wheel, a middle driven wheel upper wheel, a middle driven wheel lower wheel, a middle lower driven wheel upper wheel, a middle driven wheel lower wheel, a steering wheel upper wheel, a steering wheel lower wheel, a helical gear, a fixing frame and a nozzle, an X-axis sliding rail and a fixed foot plate are fixed on an X-axis cylinder fixing plate, an X-axis pneumatic rod penetrates through a pneumatic rod connecting plate and the fixed foot plate is fixed on a Z-axis cylinder fixing plate, the Z-axis cylinder fixing plate is fixed on a translation sliding block, two Z-axis sliding rails are respectively fixed at the upper position and the lower position of the Z-axis cylinder fixing plate, two sliding blocks are in sliding fit with the Z-axis sliding rail, a fixing plate clamping plate is fixed on the sliding blocks, the translation sliding block is fixed on the fixing plate clamping plate, a planetary wheel is fixed below a motor supporting plate, the motor fixing plate is fixed below the planetary wheel, a bottom plate of a nozzle device is fixed below the motor fixing plate, a stepping motor is arranged on the motor supporting plate and is in driving connection with a motor gear, the motor gear is in meshing transmission with an upper wheel of a driven wheel, and the upper wheel of the, the lower wheel of the driven wheel is in meshed transmission with the lower wheel of the sun wheel, the driving wheel of the sun wheel is fixedly connected with the sun wheel for synchronous transmission, the servo motor penetrates through the motor supporting plate and is fixed on the motor fixing plate, the servo motor is in driving connection with the driving wheel, the driving wheel is in driving fit with the upper wheel of the middle upper driven wheel, the upper wheel of the middle upper driven wheel is fixedly connected with the lower wheel of the middle upper driven wheel for synchronous transmission, the lower wheel of the middle upper driven wheel is in meshed transmission with the lower wheel of the middle lower driven wheel, the lower wheel of the middle driven wheel is fixedly arranged on the upper wheel of the middle driven wheel for synchronous transmission, the upper wheel of the middle driven wheel is matched with the upper wheel of the middle lower driven wheel, the upper wheel of the middle lower driven wheel is fixedly connected with the lower wheel of the middle lower driven wheel for synchronous transmission, and the upper wheel of, and the lower wheel of the steering wheel is in transmission fit with the helical gear.
The sterilizing water filtering device comprises a fixing plate, a water filtering pump, a filtering device shell, a filtering element, a filtering device inner core, a water inlet valve, a filtering device upper cover and a connecting hose, wherein the water filtering pump is installed on the fixing plate, the filtering device inner core, the filtering element and the filtering element shell are provided with two parts which are installed inside the filtering device shell, and the filtering device upper cover is provided with two parts which are respectively installed on the left and right sides of the lower part of the fixing plate and connected with the connecting hose.
The translation device of the waste liquid tank comprises a rack, an upper gear, a lower gear, a translation fixing plate, a motor, a translation fixing frame, a motor hanging plate, a small belt pulley, a belt, a large belt pulley, a translation device upper cover, a planet gear connecting plate, a translation device lower cover, a driven helical gear, a fixing shaft lever, a middle impulse helical gear, a driving helical gear, a driven small planet gear, a connecting shaft and a waste liquid tank, wherein the two racks are respectively arranged on the left side and the right side of the rack and the upper gear to be matched with the rack and the rack, the two translation fixing plates are respectively and fixedly arranged on the two racks, the translation fixing frame is fixedly arranged on the surface of the rack, the motor hanging plate is fixed on the surface of the translation fixing frame, the belt is respectively wound on the small belt pulley to be matched with the large belt pulley, the translation device upper cover is, the waste liquid tank translation device disinfectant filter device is connected with and installed below the translation device upper cover, the translation device lower cover is fixedly installed on the lower portion of the planetary gear connecting plate, the fixed shaft rod is fixedly inserted into and fixed on the translation device upper cover, two middle impulse helical gears penetrate through the fixed shaft rod respectively and are installed on the left side and the right side inside the translation device upper cover, the driving helical gears are fixedly connected with the large belt pulley for synchronous transmission, the driven helical gears are installed on the lower portion of the driving helical gears and are in matched transmission with the middle impulse helical gears, the driven small planetary gears are meshed with the lower portion gears of the driven helical gears to drive the planetary gear connecting plate for transmission, and two ends of the connecting shaft penetrate through the upper gear and the driven small planetary gears respectively to be connected with each other.
Big frame of degassing unit include waste liquid transfer case, waste liquid pond and ultraviolet ray drying apparatus, the waste liquid pond install and carry out the waste liquid through the hose and collect in waste liquid transfer case below, ultraviolet ray drying apparatus install in waste liquid transfer case left side.
Furthermore, the X-axis slide rail has two blocks which are respectively fixed on the upper and lower positions of the X-axis cylinder fixing plate, and the translation slide block has two blocks which are in sliding fit with the X-axis slide rail.
Furthermore, the upper cover of the spray head device is arranged below the translation block, and the motor supporting plate is fixed below the upper cover of the spray head device.
Furthermore, three small planet wheels are arranged between the sun wheel and the planet wheel to be matched with the sun wheel and the planet wheel in a gear transmission way.
Furthermore, the fixed frame is provided with two blocks which are fixed below the bottom plate of the spray head device, and the spray head penetrates through one end of the fixed frame and the central hole of the helical gear and is fixed at the other end of the fixed frame.
Furthermore, the filter device shell is hermetically connected with the lower surface of the upper cover of the filter device.
Furthermore, the motor passes the translation mount and fixes below the motor link plate, the belt lace wheel pass translation mount and motor link plate and connect on the motor.
Furthermore, the waste liquid tank is arranged on the translation fixing plate.
Compared with the prior art, the invention has the beneficial effects that: (1) the invention can adapt to the treatment of various wounds and carry out disinfection treatment on the wounds; (2) the invention can identify and disinfect various wound positions, and can improve the efficiency; (3) the invention can disinfect, sterilize and dry the wound of a patient.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
FIG. 2 is a schematic diagram of a cylinder fixing plate structure according to the present invention.
Fig. 3 is a schematic view of the structure of the steering wheel of the present invention.
FIG. 4 is a schematic view of a showerhead according to the present invention.
FIG. 5 is a schematic view of the wheel structure of the present invention.
Fig. 6 is a schematic structural view of the sterilizing water filtering device of the present invention.
FIG. 7 is a schematic view of the structure of the waste liquid tank of the present invention.
FIG. 8 is a schematic view of the translation deceleration structure of the waste liquid tank of the present invention.
FIG. 9 is a schematic view of the structure of the inlet valve of the present invention.
FIG. 10 is a schematic view of the deceleration structure of the disinfection apparatus of the present invention.
Reference numbers in the figures: 1-a disinfection device; 2-sterile water filtering device; 3-a waste liquid tank translation device; 4-large frame of disinfection device; 101-fixing a rib plate; 102-X axis cylinder fixing plate; 103-X axis pneumatic rod; 104-pneumatic rod connection plate; 105-X axis slide rail; 106-Z axis cylinder; a 107-Z axis cylinder fixing plate; 108-fixed plate clamping plate; 109-Z axis slide rail; 110-fixed foot plate; 111-a translation slide; 112-a slider; 113-a translation block; 114-upper cover of spray head device; 115-a motor support plate; 116-a planet wheel; 117-motor fixing plate; 118-small planet; 119-sun gear; 120-driven wheel upper wheel; 121-driven wheel lower wheel; 122-sun drive wheel; 123-step motor; 124-servo motor; 125-showerhead device bottom plate; 126-a driving wheel; 127-middle upper driven wheel upper wheel; 128-middle upper driven wheel lower wheel; 129-middle driven wheel upper wheel; 130-middle driven wheel lower wheel; 131-middle lower driven wheel upper wheel; 132-intermediate lower driven wheel lower wheel; 133-upper steering wheel; 134-steering wheel lower wheel; 135-a bevel gear; 136-a fixing frame; 137-a spray head; 138-motor gear; 201-fixing plate; 202-a water filter pump; 203-a filtration device housing; 204-a cartridge housing; 205-a filter element; 206-inner core of water filtering device; 207-inlet valve; 208-a filter device upper cover; 209-connecting hose; 301-rack; 302-upper gear; 303-lower gear; 304-a translation fixing plate; 305-a motor; 306-translating the mount; 307-motor hanging plate; 308-a small belt pulley; 309-belt; 310-large belt pulley; 311-translation device upper cover; 312-planetary gear connecting plate; 313-a lower cover of the translation device; 314-driven bevel gear; 315-fixed shaft; 316-intermediate impulse bevel gear; 317-driving bevel gear; 318-driven small planet wheel; 319-connecting shaft; 320-a waste liquid tank; 401-waste liquor transfer tank; 402-a waste liquid tank; 403-ultraviolet drying instrument.
Detailed Description
The present invention will be further described with reference to specific examples, which are illustrative of the invention and are not to be construed as limiting the invention.
Example (b): a portable sanitizing system as shown in figures 1, 2, 3, 4, 5, 6, 7, 8, 9 and 10, wherein: comprises a disinfection device 1, a disinfection water filtering device 2, a waste liquid tank translation device 3 and a disinfection device frame 4.
The sterilizing device 1 is arranged on a sterilizing water filtering device 2, the sterilizing water filtering device 2 is arranged on a waste liquid tank translation device 3, and the waste liquid tank translation device 3 is arranged on a large sterilizing device frame 4.
The disinfection device 1 comprises a fixed rib plate 101, an X-axis cylinder fixing plate 102, an X-axis pneumatic rod 103, a pneumatic rod connecting plate 104, an X-axis slide rail 105, a Z-axis cylinder 106, a Z-axis cylinder fixing plate 107, a fixing plate clamping plate 108, a Z-axis slide rail 109, a fixing foot plate 110, a translation slider 111, a slider 112, a translation block 113, a spray head device upper cover 114, a motor supporting plate 115, a planet wheel 116, a motor fixing plate 117, a small planet wheel 118, a sun wheel 119, a driven wheel upper wheel 120, a driven wheel lower wheel 121, a sun wheel driving wheel 122, a stepping motor 123, a servo motor 124, a spray head device bottom plate 125, a driving wheel 126, a middle upper driven wheel upper wheel 127, a middle upper driven wheel lower wheel 128, a middle driven wheel upper wheel 129, a middle driven wheel lower wheel 130, a middle lower driven wheel upper wheel 131, a middle lower driven wheel lower wheel 132, a steering wheel upper wheel 133, a steering wheel, an X-axis cylinder fixing plate 102 is fixed on a fixing rib plate 101, a pneumatic rod connecting plate 104, an X-axis slide rail 105 and a fixing foot plate 110 are fixed on the X-axis cylinder fixing plate 102, an X-axis pneumatic rod 103 penetrates through the pneumatic rod connecting plate 104 and the fixing foot plate 110 and is fixed on a Z-axis cylinder fixing plate 107, the pneumatic rod connecting plate 104 pushes the Z-axis cylinder fixing plate 107 to translate through the X-axis pneumatic rod 103, the X-axis slide rail 105 is respectively fixed on the upper position and the lower position of the X-axis cylinder fixing plate 102, two translation sliding blocks 111 are in sliding fit with the X-axis slide rail 105, the Z-axis cylinder fixing plate 107 is fixed on the translation sliding block 111, two Z-axis slide rails 109 are respectively fixed on the upper position and the lower position of the Z-axis cylinder fixing plate 107, two sliding blocks 112 are in sliding fit with the Z-axis slide rail 109, a, the translation block 113 is connected with the Z-axis cylinder 106 and moves through the pneumatic transmission of the Z-axis cylinder 106, the upper cover 114 of the spray head device is installed below the translation block 113, the motor supporting plate 115 is fixed below the upper cover 114 of the spray head device, the planetary wheel 116 is fixed below the motor supporting plate 115, the motor fixing plate 117 is fixed below the planetary wheel 116, the bottom plate 125 of the spray head device is fixed below the motor fixing plate 117, the stepping motor 123 is installed above the motor supporting plate 115 and is in driving connection with the motor gear 138, the motor gear 138 is in meshing transmission with the upper wheel 120 of the driven wheel, the upper wheel 120 of the driven wheel is connected with the lower wheel 121 of the driven wheel for fixed synchronous rotation, the lower wheel 121 of the driven wheel is in meshing transmission with the sun wheel driving wheel 122, the sun wheel driving wheel 122 is fixedly connected with the sun wheel 119 for synchronous transmission, when the stepping motor (123) rotates, the motor gear (138), the upper wheel (120), a servo motor 124 passes through a motor supporting plate 115 and is fixed on a motor fixing plate 117, the servo motor 124 is in driving connection with a driving wheel 126, the driving wheel 126 is in transmission fit with an upper wheel 127 of an upper middle driven wheel, the upper wheel 127 of the upper middle driven wheel is fixedly connected on a lower wheel 128 of the upper middle driven wheel for synchronous transmission, the lower wheel 128 of the upper middle driven wheel is in meshing transmission with a lower wheel 130 of a middle driven wheel, the lower wheel 130 of the middle driven wheel is fixedly arranged on an upper wheel 129 of the middle driven wheel for synchronous transmission, the upper wheel 129 of the middle driven wheel is matched with an upper wheel 131 of the lower middle driven wheel, the upper wheel 131 of the middle driven wheel is fixedly connected with a lower wheel 132 of the middle driven wheel for synchronous transmission, an upper wheel 133 of a steering wheel is in meshing transmission with the lower wheel 132 of the middle driven wheel to drive the lower wheel 134 of the steering wheel to rotate, the nozzle 137 is fixed to the other end of the fixed frame 136 through the central hole of the fixed frame 136 and the bevel gear 135.
The stepping motor 123 provides a driving force, and the motor gear 138, the driven wheel upper wheel 120, the driven wheel lower wheel 121 and the sun wheel driving wheel 122 are in meshing transmission to drive the sun wheel 119 to perform 360-degree positioning rotation.
The sterile water filtering device 2 comprises a fixing plate 201, a water filtering pump 202, a filtering device shell 203, a filter element shell 204, a filter element 205, a water filtering device inner core 206, a water inlet valve 207, a filtering device upper cover 208 and a connecting hose 209, wherein the water filtering pump 202 is arranged on the fixing plate 201, the water filtering device inner core 206, the filter element 205 and the filter element shell 204 are arranged inside the filtering device shell 203, the filtering device shell 203 is arranged below the filtering device upper cover 208 and is in sealing connection with the filtering device upper cover 208, and the filtering device upper cover 208 is provided with two connecting hoses 209 which are respectively arranged at the left position and the right position of the lower part of the.
The waste liquid tank translation device 3 comprises a rack 301, an upper gear 302, a lower gear 303, a translation fixing plate 304, a motor 305, a translation fixing frame 306, a motor hanging plate 307, a small belt pulley 308, a belt 309, a large belt pulley 310, a translation device upper cover 311, a planet gear connecting plate 312, a translation device lower cover 313, a driven bevel gear 314, a fixing shaft 315, a middle impulse bevel gear 316, a driving bevel gear 317, a driven small planet gear 318, a connecting shaft 319 and a waste liquid tank 320, wherein the two racks 301 are respectively arranged at the left side and the right side of the rack 301 and the upper gear 302 to be matched with the rack 301 and the rack 301, the two translation fixing plates 304 are respectively and fixedly arranged on the two racks 301, the translation fixing frame 306 is fixedly arranged on the surface of the rack 301, the motor hanging plate 307 is fixed on the surface of the translation fixing frame 306, the motor 305 penetrates through the translation fixing frame 306 to be fixed under the motor, the belt 309 is respectively wound around the small belt pulley 308 and is in belt pulley fit with the large belt pulley 310, the upper cover 311 of the translation device is arranged in the middle of the rear part of the translation fixing frame 306 for clamping, the sterile water filtering device 2 of the sterile water filtering device 3 of the waste liquid tank is connected with the upper cover 311 of the translation device and is arranged below the same, the lower cover 313 of the translation device is fixedly arranged at the lower part of the planetary gear connecting plate 312, the fixed shaft lever 315 is fixedly inserted and fixed on the upper cover 311 of the translation device, two middle impulse helical gears 316 are respectively arranged at the left side and the right side inside the upper cover 311 of the translation device by penetrating through the fixed shaft lever 315, the driving helical gear 317 is fixedly connected with the large belt pulley 310 for synchronous transmission, the driven helical gear 314 is arranged at the lower part of the driving helical gear 317 for matching transmission with the, two ends of a connecting shaft 319 respectively penetrate through the upper gear 302 and the driven small planet wheel 318 to be connected through a shaft, and a waste liquid tank 320 is arranged on the translation fixing plate 304; the driving bevel gear 317 rotates, the driving bevel gear 317 rotates to drive the middle impulse bevel gear 316 and the driven bevel gear 314 at two sides to rotate, so as to drive the driven small planet gear 318 which is in transmission fit with the planet gear connecting plate 312 to rotate, the driven small planet gear 318 rotates to drive the upper gear 302, the lower gear 303 and the rack 301 to carry out transmission, and the waste liquid tank 320 is pumped out through the translation fixing plate 304.
The motor 305 is used as a driving force to drive the small belt pulley 308, the belt 309 and the large belt pulley 310 to perform belt transmission so as to drive the driving bevel gear 317 to rotate and drive the middle impulse bevel gear 316 and the driven bevel gear 314 at two sides meshed with the driving bevel gear 317 to rotate. The driven small planet wheel 318 is meshed with the upper gear 302, the lower gear 303 and the rack 301, and the translation fixing plate 304 is driven to take out the waste liquid tank 320.
Big frame 4 of degassing unit includes waste liquid transfer case 401, waste liquid pond 402 and ultraviolet drying instrument 403, and waste liquid pond 402 is installed and is carried out the waste liquid and collect through the hose in waste liquid transfer case 401 below, and ultraviolet drying instrument 403 is installed in waste liquid transfer case 401 left side. The pneumatic rod connecting plate 104 pushes the Z-axis cylinder fixing plate 107 to translate through the X-axis pneumatic rod 103. The translation block 113 is connected to the Z-axis cylinder 106 and moves by pneumatic transmission of the Z-axis cylinder 106. Three small planet gears 118 are mounted between the sun gear 119 and the planet gears 116 for cooperation.
When the stepping motor 123 rotates, the motor gear 138, the driven wheel upper wheel 120, the driven wheel lower wheel 121 and the sun wheel driving wheel 122 are in meshing transmission to drive the sun wheel 119 to rotate; when the motor 305 rotates, the belt is driven by the small belt pulley 308, the belt 309 and the large belt pulley 310.
The driving bevel gear 317 rotates, and the driving bevel gear 317 rotates to drive the middle impulse bevel gear 316 and the driven bevel gear 314 at two sides to rotate, so as to drive the driven small planet wheel 318 which is in transmission fit with the planet gear connecting plate 312 to rotate. The driven small planet wheel 318 rotates to drive the upper gear 302, the lower gear 303 and the rack 301 to transmit, and the waste liquid tank 320 is pumped out through the translation fixing plate 304.

Claims (5)

1. A portable disinfecting system characterized by: including degassing unit (1), sterile water filter equipment (2), waste liquid jar translation device (3) and big frame of degassing unit (4), its characterized in that: the disinfection device (1) is arranged on the disinfection water filtering device (2), the disinfection water filtering device (2) is arranged on the waste liquid tank translation device (3), and the waste liquid tank translation device (3) is arranged on the disinfection device large frame (4);
the disinfection device (1) comprises a fixed rib plate (101), an X-axis cylinder fixing plate (102), an X-axis pneumatic rod (103), a pneumatic rod connecting plate (104), an X-axis sliding rail (105), a Z-axis cylinder (106), a Z-axis cylinder fixing plate (107), a fixing plate clamping plate (108), a Z-axis sliding rail (109), a fixing foot plate (110), a translation sliding block (111), a sliding block (112), a translation block (113), a sprayer device upper cover (114), a motor supporting plate (115), a planet wheel (116), a motor fixing plate (117), a small planet wheel (118), a sun wheel (119), a driven wheel upper wheel (120), a driven wheel lower wheel (121), a sun wheel driving wheel (122), a stepping motor (123), a servo motor (124), a sprayer device bottom plate (125), a driving wheel (126), a middle upper driven wheel upper wheel (127), a middle upper driven wheel lower wheel (128, An upper middle driven wheel (129), a lower middle driven wheel (130), an upper middle driven wheel (131), a lower middle driven wheel (132), an upper steering wheel (133), a lower steering wheel (134), a helical gear (135), a fixed frame (136) and a spray head (137), wherein an X-axis cylinder fixing plate (102) is fixed on a fixing rib plate (101), a pneumatic rod connecting plate (104), an X-axis sliding rail (105) and a fixing foot plate (110) are fixed on the X-axis cylinder fixing plate (102), an X-axis pneumatic rod (103) penetrates through the pneumatic rod connecting plate (104) and the fixing foot plate (110) and is fixed on a Z-axis cylinder fixing plate (107), the Z-axis cylinder fixing plate (107) is fixed on a translation sliding block (111), two Z-axis sliding rails (109) are respectively fixed on the upper position and the lower position of the Z-axis cylinder fixing plate (107), the sliding block (112) is provided with two blocks which are in sliding fit with the Z-axis sliding rail (109), the fixing plate clamping plate (108) is fixed on the sliding block (112), the translation block (113) is fixed on the fixing plate clamping plate (108), the planet wheel (116) is fixed below the motor supporting plate (115), the motor fixing plate (117) is fixed below the planet wheel (116), the nozzle device bottom plate (125) is fixed below the motor fixing plate (117), the stepping motor (123) is arranged on the motor supporting plate (115) and is in driving connection with the motor gear (138), the motor gear (138) is in meshing transmission with the driven wheel upper wheel (120), the driven wheel upper wheel (120) is connected, fixed and synchronously rotated with the driven wheel lower wheel (121), the driven wheel lower wheel (121) is in meshing transmission with the sun wheel driving wheel (122), and the sun wheel driving wheel (122) is fixedly connected and synchronously transmitted with the sun wheel (119), the servo motor (124) penetrates through the motor supporting plate (115) and is fixed on the motor fixing plate (117), the servo motor (124) is in driving connection with the driving wheel (126), the driving wheel (126) is in transmission fit with the middle upper driven wheel upper wheel (127), the middle upper driven wheel upper wheel (127) is fixedly connected to the middle upper driven wheel lower wheel (128) for synchronous transmission, the middle upper driven wheel lower wheel (128) is in meshing transmission with the middle driven wheel lower wheel (130), the middle driven wheel lower wheel (130) is fixedly arranged on the middle driven wheel upper wheel (129) for synchronous transmission, the middle driven wheel upper wheel (129) is matched with the middle lower driven wheel upper wheel (131), the middle lower driven wheel upper wheel (131) is fixedly connected with the middle lower driven wheel lower wheel (132) for synchronous transmission, the steering wheel upper wheel (133) is in meshing transmission with the middle lower driven wheel lower wheel (132) to drive the steering wheel lower wheel (134) to rotate The lower wheel (134) of the steering wheel is in transmission fit with the bevel wheel (135);
the upper cover (114) of the spray head device is arranged below the translation block (113), and the motor supporting plate (115) is fixed below the upper cover (114) of the spray head device;
three small planet wheels (118) are arranged between the sun wheel (119) and the planet wheels (116) for gear transmission;
the two fixing frames (136) are fixed below the bottom plate (125) of the spray head device, and the spray head (137) penetrates through one end of the fixing frame (136) and a central hole of the bevel gear (135) and is fixed at the other end of the fixing frame (136);
the sterilizing water filtering device (2) comprises a fixing plate (201), a water filtering pump (202), a filtering device shell (203), a filter element shell (204), a filter element (205), a water filtering device inner core (206), a water inlet valve (207), a filtering device upper cover (208) and a connecting hose (209), wherein the water filtering pump (202) is installed on the fixing plate (201), the number of the water filtering device inner cores (206), the filter element (205) and the filter element shell (204) is two, the two water filtering device inner cores, the filter element (205) and the filter element shell (204) are installed inside the filtering device shell (203), and the two filtering device upper covers (208) are respectively installed at the left position and the right position of the lower part of the fixing plate (201;
the waste liquid tank translation device (3) comprises a rack (301), an upper gear (302), a lower gear (303), a translation fixing plate (304), a motor (305), a translation fixing frame (306), a motor hanging plate (307), a small belt pulley (308), a belt (309), a large belt pulley (310), a translation device upper cover (311), a planet gear connecting plate (312), a translation device lower cover (313), a driven bevel gear (314), a fixing shaft lever (315), a middle impulse bevel gear (316), a driving bevel gear (317), a driven small planet gear (318), a connecting shaft (319) and a waste liquid tank (320), wherein the two racks (301) are respectively arranged on the left side and the right side of the upper gear (302) and the left side and the right side of the lower gear (303) to be matched with the upper gear (302) and the lower gear (303), and the two translation fixing plates (304) are respectively and fixedly arranged on the two racks (301), the translation fixing frame (306) is fixedly arranged on the surface of the rack (301), the motor hanging plate (307) is fixed on the surface of the translation fixing frame (306), the belt (309) is respectively wound on the small belt pulley (308) and is matched with the large belt pulley (310) through belt pulleys, the translation device upper cover (311) is arranged in the middle of the rear part of the translation fixing frame (306) to be clamped, the waste liquid tank translation device (3) is connected with the translation device upper cover (311) and is arranged below the translation device upper cover, the translation device lower cover (313) is fixedly arranged at the lower part of the planetary gear connecting plate (312), the fixed shaft lever (315) is inserted and fixed on the translation device upper cover (311), the middle impulse helical gears (316) are provided with two helical gears which respectively penetrate through the fixed shaft lever (315) and are arranged at the left side and the right side inside the translation device upper cover (311), and the driving helical gears (317) are fixedly connected with the large belt, the driven helical gear (314) is arranged at the lower part of the driving helical gear (317) and is in matched transmission with the middle impulse helical gear (316), the driven small planetary gear (318) is meshed with a lower gear of the driven helical gear (314) to drive the planetary gear connecting plate (312) to transmit, and two ends of the connecting shaft (319) respectively penetrate through the upper gear (302) and the driven small planetary gear (318) to be connected with the shaft;
big frame of degassing unit (4) include waste liquid transfer case (401), waste liquid pond (402) and ultraviolet ray drying apparatus (403), waste liquid pond (402) install and carry out the waste liquid through the hose and collect in waste liquid transfer case (401) below, ultraviolet ray drying apparatus (403) install in waste liquid transfer case (401) left side.
2. A portable disinfecting system as recited in claim 1, characterized in that: the X-axis sliding rail (105) is provided with two blocks which are respectively fixed on the upper position and the lower position of the X-axis cylinder fixing plate (102), and the translation sliding block (111) is provided with two blocks which are in sliding fit with the X-axis sliding rail (105).
3. A portable disinfecting system as recited in claim 1, characterized in that: the filter device casing (203) is connected with the lower part of the filter device upper cover (208) in a sealing way.
4. A portable disinfecting system as recited in claim 1, characterized in that: the motor (305) passes through the translation fixing frame (306) and is fixed below the motor hanging plate (307), and the small belt pulley (308) passes through the translation fixing frame (306) and the motor hanging plate (307) and is connected to the motor (305).
5. A portable disinfecting system as recited in claim 1, characterized in that: the waste liquid tank (320) is arranged on the translation fixing plate (304).
CN202010378799.3A 2020-05-07 2020-05-07 Disinfection system convenient to remove Active CN111568567B (en)

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CN101951852A (en) * 2008-01-10 2011-01-19 V.A.R.M.有限公司 Mobile body disinfection apparatus
CN104586516A (en) * 2015-02-04 2015-05-06 刘红军 Hematocele-preventing flush-type surgical device for neurosurgery department
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