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CN105031693A - Speed-adjustable medical ozone disinfection cabinet device stable in operation - Google Patents

Speed-adjustable medical ozone disinfection cabinet device stable in operation Download PDF

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Publication number
CN105031693A
CN105031693A CN201510584415.2A CN201510584415A CN105031693A CN 105031693 A CN105031693 A CN 105031693A CN 201510584415 A CN201510584415 A CN 201510584415A CN 105031693 A CN105031693 A CN 105031693A
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China
Prior art keywords
air
flow
annular
flow input
loop
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Granted
Application number
CN201510584415.2A
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Chinese (zh)
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CN105031693B (en
Inventor
叶振东
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Qinhan (Zhejiang) Medical Devices Co., Ltd.
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Shishi Nuolang E-Commerce Co Ltd
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Priority to CN201510584415.2A priority Critical patent/CN105031693B/en
Publication of CN105031693A publication Critical patent/CN105031693A/en
Priority to HK15112759.9A priority patent/HK1211878A1/en
Application granted granted Critical
Publication of CN105031693B publication Critical patent/CN105031693B/en
Expired - Fee Related legal-status Critical Current
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Abstract

The invention provides a speed-adjustable medical ozone disinfection cabinet device stable in operation. The speed-adjustable medical ozone disinfection cabinet device comprises an ozone airflow ejection device (5). The ozone airflow ejection device (5) comprises an annular inner-layer part (53) internally provided with a cylindrical disinfection chamber (50) and an annular shell part (54) surrounding the annular inner-layer part (53), wherein the annular inner-layer part (53) and the annular shell part (54) are integrally formed. The annular inner-layer part (53) is internally provided with a plurality of circles of blowing air passage sets distributed in the axial direction. A plurality of blowing air passages (51) in the radial direction are evenly distributed in each circle of blowing air passage sets in the peripheral direction to input airflow in the radial direction of the cylindrical disinfection chamber (50), and an annular airflow distribution cavity (540) is formed between the annular shell part (54) and the annular inner-layer part (53).

Description

A kind of stable and Medical ozone disinfecting cabinet device of adjustable speed
Technical field
The application relates to medical instruments field, is specially a kind of stable and Medical ozone disinfecting cabinet device of adjustable speed.
Background technology
In the medical field, medical furnishings are had to the hygienic requirements of each side such as sterilization.For these articles for use, such as coat, glove, glasses and the mask etc. that can reuse, due to needs use at any time and also frequency of utilization high, therefore difficulty is brought to the sterilization of these articles for use.And for this special industry of medical treatment, the sterilization of personal effects is even more important again.
Therefore, need a kind of convenient operation and be convenient to configure the Simple disinfection device of each section office.This demand is carried out often through the non-mechanical means such as ozone, ultraviolet disinfection, so that concomitant disinfection uses at any time.
But for ozonization, along with increasing of gas channel wherein, the reduction of its passage caliber, the blocking situation of this gas channel also more easily occurs.
Due to the high-speed operating characteristic of air-flow and the feature such as the quantity of gas channel is more, the congestion situations of this gas channel is often not easy to be found and is not easy overcome at once or correct.This brings defect to the sterilization of all-dimensional multi-angle.Shut down and carry out safeguarding, can lower efficiency and bring extra cost.
Summary of the invention
The object of the present invention is to provide a kind of stable and Medical ozone disinfecting cabinet device of adjustable speed, it can overcome above-mentioned defect of the prior art.
According to the present invention, a kind of stable and Medical ozone disinfecting cabinet device of adjustable speed, comprise streams of ozone blowoff, described streams of ozone blowoff comprises layer segment and the integrated annular outer cover part around layer segment in described annular in annular that inside is provided with columned sterilization air chamber, be provided with the multi-turn axially distributed in described annular in layer segment and blow air flue group, often circle blow in air flue group circumference is evenly distributed with many radial direction blow air flue the radial direction of air-flow along described columned sterilization air chamber to be inputted, be the distribution of air flow chamber of annular between layer segment in described annular outer cover part and described annular, for receiving air-flow input and distribution of air flow being blowed air flue to described many, described distribution of air flow chamber left end is closed, right-hand member place is provided with revolvable air-flow input closed-loop, the air-flow input channel of two axis relative in diametric(al) is provided with in described air-flow input closed-loop, and the left end of described air-flow input closed-loop is connected by left side bearing with between layer segment in described annular and rotates inner seal ring in the left side that passes on left of described left side bearing and be sealed and matched, rotate exterior seal ring by left side between described air-flow input closed-loop and described annular outer cover part and be sealed and matched, the right side of described streams of ozone blowoff is fixedly connected with the air-flow input channel component comprising body supports end wall, the left side of described body supports end wall is fixedly installed convex extension part in order to be fixedly connected with the right-hand member of layer segment in described annular, periphery around described convex extension part is provided with air cavity housing thus between described air cavity housing with described body supports end wall, forms the annular air cavity with two air-flow input ports relative in diametric(al), the right-hand member of described air-flow input closed-loop extend in described annular air cavity, and be connected by right bearing between the outer circumference surface of described convex extension part and be sealed and matched by right side rotating interior seal circle on the right side of described right bearing, and rotate exterior seal ring with the inner peripheral surface of described air cavity housing by right side and be sealed and matched, the upside of described annular outer cover part and described air cavity housing be rotatably supported with the driven wheel that driven by drive motors in order to be fixedly installed on the gear part that described air-flow inputs in the middle part of closed-loop outer peripheral face and engage, the shell of described drive motors is provided with electronic-controlled installation to be electrically connected with described drive motors, described electronic-controlled installation is in order to control the rotating speed of described drive motors, fuel tank bracing frame is also fixedly installed on the upside of described annular outer cover part and described air cavity housing, described fuel tank bracing frame being provided with grease-box is positioned at directly over described driven wheel, it is described driven wheel feed lubrication that the top of described grease-box is provided with control handle in order to control described grease-box, thus make described driven wheel input closed-loop outer peripheral face with described air-flow in the middle part of gear part engage stable, the right side of described body supports end wall is provided with ozone generating-device in order to be communicated with described two air-flow input ports relative in diametric(al) respectively by flexible pipe, article grid frame supported is fixedly installed in order to place medical wearable items in the left side of described body supports end wall in described sterilization air chamber, the left side opening part of described sterilization air chamber is provided with pivoted shutter door, wherein, the air flue group that blows that the described multi-turn of axial directional distribution blows right part in air flue group has the blowing direction of blowing that to slope inwardly towards right side, thus, streams of ozone is inputted by described air-flow input port thus arrives in described distribution of air flow chamber via the described air-flow input channel in described air-flow input closed-loop, and then blow air flue via described many and form air-flow thus multi-angle is carried out to described medical wearable items and purge sterilization in the described sterilization air chamber that arrives, described driven wheel can drive described air-flow to input closed-loop to rotate thus change the circumferential position of described air-flow input channel.
Pass through the present invention, owing to providing the air-flow input closed-loop that can rotate, it can use relative gas channel in two diametric(al)s and the circumferential position rotating this gas channel and select air-flow to supply, control the rotating speed of drive motors by the electronic-controlled installation arranged thus the circumferential position of gas channel can be changed as required fast, thus, can to the tangential gas flow passage of little obstruction or non-total blockage carry out selectivity near and its windage loss is compensated, the inhomogeneities of circumferential air-flow can be balanced thus.And the rotation routinely of closed-loop is inputted by this air-flow, it can form the rotary pulse of different frequency, thus repeatedly can purge by force article, strengthens Disinfection Effect.At maintenance phase, rapid purging can be carried out to blowing air flue described in many, to remove wherein residual bits shape thing or floccule by the rotation of this air-flow input closed-loop.By arranging discrete air-flow input channel component, this air-flow can be made to input closed-loop and to be convenient to installation and maintenance, and being convenient to described driven wheel is installed.Whole apparatus structure is solid and reliable, and stable performance is also convenient to safeguard.
Accompanying drawing explanation
Fig. 1 is the overall structure schematic diagram of decontaminating apparatus of the present invention.
Fig. 2 is the sectional structure schematic diagram along the direction of arrow in Fig. 1.
Detailed description of the invention
Below in conjunction with Fig. 1-2, the present invention is described in detail.
According to the stable of embodiment and the Medical ozone disinfecting cabinet device of adjustable speed, comprise streams of ozone blowoff 5, described streams of ozone blowoff 5 comprises layer segment 53 and the integrated annular outer cover part 54 around layer segment 53 in described annular in annular that inside is provided with columned sterilization air chamber 50, be provided with the multi-turn axially distributed in described annular in layer segment 53 and blow air flue group, often circle blow in air flue group circumference is evenly distributed with many radial direction blow air flue 51 the radial direction of air-flow along described columned sterilization air chamber 50 to be inputted, be the distribution of air flow chamber 540 of annular between layer segment 53 in described annular outer cover part 54 and described annular, for receiving air-flow input and distribution of air flow being blowed air flue 51 to described many, described distribution of air flow chamber 540 left end is closed, right-hand member place is provided with revolvable air-flow input closed-loop 7, the air-flow input channel 71 of two axis relative in diametric(al) is provided with in described air-flow input closed-loop 7,710, and the left end of described air-flow input closed-loop 7 is connected by left side bearing 81 with between layer segment 53 in described annular and rotates inner seal ring 82 in the left side that passes on left of described left side bearing and be sealed and matched, rotate exterior seal ring 73 by left side between described air-flow input closed-loop 7 and described annular outer cover part 54 and be sealed and matched, the right side of described streams of ozone blowoff 5 is fixedly connected with the air-flow input channel component 9 comprising body supports end wall 93, the left side of described body supports end wall 93 is fixedly installed convex extension part 98 in order to be fixedly connected with the right-hand member of layer segment 53 in described annular, periphery around described convex extension part 98 is provided with air cavity housing 94 thus is formed between described air cavity housing 94 with described body supports end wall 93 has two air-flow input ports 941 relative in diametric(al), the annular air cavity 940 of 942, the right-hand member of described air-flow input closed-loop 7 extend in described annular air cavity 940, and be connected by right bearing 91 between the outer circumference surface of described convex extension part 98 and be sealed and matched by right side rotating interior seal circle 92 on the right side of described right bearing, and rotate exterior seal ring 72 with the inner peripheral surface of described air cavity housing 94 by right side and be sealed and matched, the upside of described annular outer cover part 54 and described air cavity housing 94 be rotatably supported with the driven wheel 61 that driven by drive motors 6 in order to be fixedly installed on the gear part 77 that described air-flow inputs in the middle part of closed-loop 7 outer peripheral face and engage, the shell of described drive motors 6 is provided with electronic-controlled installation 65 to be electrically connected with described drive motors 6, described electronic-controlled installation 65 is in order to control the rotating speed of described drive motors 6, fuel tank bracing frame 1 is also fixedly installed on the upside of described annular outer cover part 54 and described air cavity housing 94, described fuel tank bracing frame 1 being provided with grease-box 2 is positioned at directly over described driven wheel 61, it is described driven wheel 61 feed lubrication that the top of described grease-box 2 is provided with control handle 3 in order to control described grease-box 2, thus it is stable to make described driven wheel 61 and the described air-flow gear part 77 inputted in the middle part of closed-loop 7 outer peripheral face engage, the right side of described body supports end wall 93 be provided with ozone generating-device 991 in order to by flexible pipe 99 respectively with described two air-flow input ports 941 relative in diametric(al), 942 are communicated with, article grid frame supported 20 is fixedly installed in order to place medical wearable items in the left side of described body supports end wall 93 in described sterilization air chamber 50, the left side opening part of described sterilization air chamber 50 is provided with pivoted shutter door 21, wherein, the air flue group that blows that the described multi-turn of axial directional distribution blows right part in air flue group has the blowing direction of blowing that to slope inwardly towards right side, thus, streams of ozone is inputted by described air-flow input port 941,942 thus arrives in described distribution of air flow chamber 540 via the described air-flow input channel 71,710 in described air-flow input closed-loop 7, and then blow air flue 51 via described many and in the described sterilization air chamber 50 that arrives and form air-flow thus to described medical wearable items carry out multi-angle purge sterilization, described driven wheel 61 can drive described air-flow input closed-loop 7 rotate thus change the circumferential position of described air-flow input channel 71,72.
Alternatively, wherein, the downside of described annular outer cover part 54 and described air cavity housing 94 is fixedly connected with fixed support 12.
Alternatively, described multi-turn blows in air flue group, and the angle that the circle group the closer to right side tilts is larger, and the angle of inclination of the circle group of the leftmost side is minimum.
Owing to providing the air-flow input closed-loop that can rotate, it can use relative gas channel in two diametric(al)s and the circumferential position rotating this gas channel and select air-flow to supply, control the rotating speed of drive motors by the electronic-controlled installation arranged thus the circumferential position of gas channel can be changed as required fast, thus, can to the tangential gas flow passage of little obstruction or non-total blockage carry out selectivity near and its windage loss is compensated, the inhomogeneities of circumferential air-flow can be balanced thus.And the rotation routinely of closed-loop is inputted by this air-flow, it can form the rotary pulse of different frequency, thus repeatedly can purge by force article, strengthens Disinfection Effect.At maintenance phase, rapid purging can be carried out to blowing air flue described in many, to remove wherein residual bits shape thing or floccule by the rotation of this air-flow input closed-loop.By arranging discrete air-flow input channel component, this air-flow can be made to input closed-loop and to be convenient to installation and maintenance, and being convenient to described driven wheel is installed.
By with upper type, those skilled in the art can make various change according to mode of operation within the scope of the invention.

Claims (2)

1. the stable and Medical ozone disinfecting cabinet device of adjustable speed, comprise streams of ozone blowoff (5), described streams of ozone blowoff (5) comprises layer segment (53) and the integrated annular outer cover part (54) around layer segment (53) in described annular in annular that inside is provided with columned sterilization air chamber (50), be provided with the multi-turn axially distributed in layer segment (53) in described annular and blow air flue group, often circle blow in air flue group circumference is evenly distributed with many radial direction blow air flue (51) the radial direction of air-flow along described columned sterilization air chamber (50) to be inputted, be the distribution of air flow chamber (540) of annular between layer segment (53) in described annular outer cover part (54) and described annular, for receiving air-flow input and distribution of air flow being blowed air flue (51) to described many, described distribution of air flow chamber (540) left end is closed, right-hand member place is provided with revolvable air-flow input closed-loop (7), the air-flow input channel (71 of two axis relative in diametric(al) is provided with in described air-flow input closed-loop (7), 710), and the left end of described air-flow input closed-loop (7) is connected by left side bearing (81) between layer segment (53) with in described annular and rotates inner seal ring (82) and be sealed and matched on the left of the passing on left of described left side bearing, rotate exterior seal ring (73) by left side between described air-flow input closed-loop (7) and described annular outer cover part (54) and be sealed and matched, the right side of described streams of ozone blowoff (5) is fixedly connected with the air-flow input channel component (9) comprising body supports end wall (93), the left side of described body supports end wall (93) is fixedly installed convex extension part (98) in order to be fixedly connected with the right-hand member of layer segment (53) in described annular, periphery around described convex extension part (98) is provided with air cavity housing (94) thus is formed between described air cavity housing (94) with described body supports end wall (93) has two air-flow input ports (941 relative in diametric(al), 942) annular air cavity (940), the right-hand member of described air-flow input closed-loop (7) extend in described annular air cavity (940), and be connected by right bearing (91) between the outer circumference surface of described convex extension part (98) and be sealed and matched by right side rotating interior seal circle (92) on the right side of described right bearing, and rotate exterior seal ring (72) with the inner peripheral surface of described air cavity housing (94) by right side and be sealed and matched, the upside of described annular outer cover part (54) and described air cavity housing (94) be rotatably supported with the driven wheel (61) that driven by drive motors (6) in order to be fixedly installed on the gear part (77) that described air-flow inputs in the middle part of closed-loop (7) outer peripheral face and engage, the shell of described drive motors (6) is provided with electronic-controlled installation (65) to be electrically connected with described drive motors (6), described electronic-controlled installation (65) is in order to control the rotating speed of described drive motors (6), described annular outer cover part (54) is also fixedly installed fuel tank bracing frame (1) with described air cavity housing (94) upside, described fuel tank bracing frame (1) being provided with grease-box (2) is positioned at directly over described driven wheel (61), the top of described grease-box (2) is provided with control handle (3) in order to control described grease-box (2) for described driven wheel (61) feed lubrication, thus it is stable to make described driven wheel (61) and the described air-flow gear part (77) inputted in the middle part of closed-loop (7) outer peripheral face engage, the right side of described body supports end wall (93) be provided with ozone generating-device (991) in order to by flexible pipe (99) respectively with described two air-flow input ports relative in diametric(al) (941,942) be communicated with, article grid frame supported (20) is fixedly installed in order to place medical wearable items in the left side of described body supports end wall (93) in described sterilization air chamber (50), the left side opening part of described sterilization air chamber (50) is provided with pivoted shutter door (21), wherein, the air flue group that blows that the described multi-turn of axial directional distribution blows right part in air flue group has the blowing direction of blowing that to slope inwardly towards right side, thus, streams of ozone is by described air-flow input port (941, 942) input thus input the described air-flow input channel (71 in closed-loop (7) via described air-flow, 710) arrive in described distribution of air flow chamber (540), and then blow air flue (51) via described many and in the described sterilization air chamber (50) that arrives and form air-flow thus to described medical wearable items carry out multi-angle purge sterilization, described driven wheel (61) can drive described air-flow input closed-loop (7) rotation thus change described air-flow input channel (71, 72) circumferential position.
2. a kind of stable and Medical ozone disinfecting cabinet device of adjustable speed as claimed in claim 1, wherein, the downside of described annular outer cover part (54) and described air cavity housing (94) is fixedly connected with fixed support (12).
CN201510584415.2A 2015-09-15 2015-09-15 A kind of stable and adjustable speed Medical ozone disinfecting cabinet device Expired - Fee Related CN105031693B (en)

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HK15112759.9A HK1211878A1 (en) 2015-09-15 2015-12-28 A medical ozone disinfection cabinet with stable operation and adjustable speed

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US12064527B2 (en) 2022-09-16 2024-08-20 Soclean, Inc. Disinfection systems and methods

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US10052397B2 (en) 2011-07-15 2018-08-21 Soclean, Inc. Systems, methods, and devices for ozone sanitization of continuous positive airway pressure devices
US12115272B2 (en) 2011-07-15 2024-10-15 Soclean, Inc. Systems, methods, and devices for ozone sanitization of continuous positive airway pressure devices
US9895461B2 (en) 2011-07-15 2018-02-20 Soclean, Inc. Devices, systems and methods for treating medical devices having passageways with ozone gas
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US12083239B2 (en) 2011-07-15 2024-09-10 Soclean, Inc. Devices, systems and methods for treating medical devices having passageways with ozone gas
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US10456492B2 (en) 2011-07-15 2019-10-29 Soclean, Inc. Systems, methods, and devices for ozone sanitization of continuous positive airway pressure devices
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US11426481B2 (en) 2011-07-15 2022-08-30 Soclean Inc. Systems, methods, and devices for ozone sanitization of continuous positive airway pressure devices
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US11135327B2 (en) 2014-05-06 2021-10-05 Soclean, Inc. Devices, systems and methods for ozone sanitization of continuous positive airway pressure devices
US10953121B2 (en) 2014-05-06 2021-03-23 Soclean, Inc. Devices, systems and methods for ozone sanitization of continuous positive airway pressure devices
WO2017189915A1 (en) * 2016-04-28 2017-11-02 Soclean, Inc. Devices, systems and methods for treating multiple medical devices having passageways with ozone gas
WO2017189916A1 (en) * 2016-04-28 2017-11-02 Soclean, Inc. Devices, systems and methods for treating medical devices having passageways with ozone gas
EP3448441A4 (en) * 2016-04-28 2020-01-01 Soclean, Inc. Devices, systems and methods for treating medical devices having passageways with ozone gas
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US11484613B2 (en) 2019-03-19 2022-11-01 Soclean Inc. Technologies for sanitizing medical devices
US12064527B2 (en) 2022-09-16 2024-08-20 Soclean, Inc. Disinfection systems and methods

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