WO2019128041A1 - 一种坐便器用气液混合智能加热杀菌装置 - Google Patents

一种坐便器用气液混合智能加热杀菌装置 Download PDF

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Publication number
WO2019128041A1
WO2019128041A1 PCT/CN2018/086831 CN2018086831W WO2019128041A1 WO 2019128041 A1 WO2019128041 A1 WO 2019128041A1 CN 2018086831 W CN2018086831 W CN 2018086831W WO 2019128041 A1 WO2019128041 A1 WO 2019128041A1
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Prior art keywords
liquid
sleeve
gas
liquid outlet
inlet
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PCT/CN2018/086831
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English (en)
French (fr)
Inventor
周荣
吴金炳
吴军
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苏州路之遥科技股份有限公司
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Publication of WO2019128041A1 publication Critical patent/WO2019128041A1/zh

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Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D9/00Sanitary or other accessories for lavatories ; Devices for cleaning or disinfecting the toilet room or the toilet bowl; Devices for eliminating smells
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D9/00Sanitary or other accessories for lavatories ; Devices for cleaning or disinfecting the toilet room or the toilet bowl; Devices for eliminating smells
    • E03D9/08Devices in the bowl producing upwardly-directed sprays; Modifications of the bowl for use with such devices ; Bidets; Combinations of bowls with urinals or bidets; Hot-air or other devices mounted in or on the bowl, urinal or bidet for cleaning or disinfecting

Definitions

  • the invention relates to the technical field of toilets, in particular to a gas-liquid mixing intelligent heat sterilization device for a toilet.
  • the heating device of the toilet has a different water tank heating mode, which enables the cold water to be heated to reach a suitable temperature of the human body when flowing through the heater, has a simple structure and is not controlled by the cleaning time, and is convenient for energy saving, so that such products have become The trend of future development.
  • the existing toilet heating device on the market usually does not have a sterilization unit, and cannot sterilize the liquid in the heating device, and cannot meet the needs of the user. Therefore, it is necessary to develop a gas-liquid hybrid intelligent heat sterilization device for a toilet.
  • the present invention provides a toilet bowl which is safe and reliable, has convenient structure, good heating effect, controllable temperature, and can realize gas-liquid mixed cleaning and sterilizing liquid in the sleeve by ultraviolet rays. Mix the intelligent heat sterilization device with gas and liquid.
  • the utility model relates to a gas-liquid mixing intelligent heat sterilization device for a toilet, comprising: a sleeve having a hollow cavity therein and having opposite ends at opposite ends, and one end of the sleeve is provided with a pair for An ultraviolet sterilization unit for performing sterilization irradiation on the liquid in the sleeve; a heating rod having one end inserted into the hollow cavity of the sleeve, and the other end extending out of the hollow cavity and causing another of the sleeve
  • the side end portion forms a seal, and a through liquid passage is formed in the heating rod, and an outer wall of the heating rod and an inner wall of the sleeve form a liquid outlet passage communicating with the liquid inlet passage, the sleeve
  • An outlet port communicating with the liquid outlet passage is defined in an outer wall of the cylinder, and a liquid outlet is disposed at the liquid outlet, and a liquid outlet connected to the liquid outlet is opened on the liquid outlet a three-way unit, where
  • the ultraviolet sterilization unit comprises: a base, one side of which is embedded at one end of the sleeve, and the other side is provided with a substrate on the inner side of the substrate facing the inner side of the sleeve
  • An ultraviolet lamp bead is disposed on the end surface, and a heat dissipating plate is disposed on the outer end surface of the substrate, the base has a base hole penetrating in a central axial direction of the sleeve; and a sealing ring disposed on the base a central hole coaxial with the base hole and penetrating through the sealing ring, a sealing groove is formed in the inner wall of the sealing ring, and the card slot divides the sealing ring into an incident sealing ring and An exit sealing ring; a quartz glass plate that is locked in the card slot of the sealing ring, the quartz glass plate, the inner wall of the incident sealing ring and the substrate form an incident space, the quartz glass plate and the exit sealing ring
  • the base is provided with a boss embedded in the sleeve, and the boss is provided with a retaining ring, and an inner end surface of the retaining ring abuts an outer end surface of the exit sealing ring,
  • the outer wall of the boss is sleeved with a sealing ring, and the sealing ring is clamped between the base and the outer end surface of one side of the sleeve, wherein the diameter of the retaining ring is greater than or equal to the diameter D of the exit sealing ring
  • the aperture d of the incident seal ring is smaller than the aperture D of the exit seal ring.
  • the spacing P between the ultraviolet lamp bead and the quartz glass plate satisfies the following formula:
  • D is the aperture of the exit sealing ring
  • is the irradiation angle of the ultraviolet lamp bead toward the quartz glass plate
  • n is the refractive index corresponding to the wavelength of the ultraviolet lamp bead ⁇
  • t is the thickness of the quartz glass plate
  • the liquid outlet is located near the other end of the sleeve, and the inner wall of the sleeve is provided with a thread groove for guiding the liquid in the sleeve, the thread
  • the grooves are distributed over the entire inner wall of the sleeve.
  • the thread groove includes a first thread groove and a second thread groove which are disposed alternately, and the pitch of the first thread groove and the second thread groove are not equal to the groove depth, and the first thread groove
  • the ratio of the pitch to the pitch of the second thread groove is 2/3
  • the groove depth of the first thread groove is 1/2 of the wall thickness of the sleeve
  • the groove depth of the second thread groove is The wall thickness of the sleeve is 1/4.
  • the other side end of the sleeve is provided with a liquid inlet seat, and the liquid inlet seat defines a liquid inlet pipe communicating with the liquid inlet channel, and the liquid inlet seat is provided with a sense An inlet temperature sensor for measuring a temperature of the inflow liquid in the inlet pipe; a receiving space between the one end of the heating rod and the ultraviolet sterilization unit to connect the liquid inlet channel and the liquid outlet channel
  • the other end of the heating rod is provided with a flange attached to the other end of the sleeve to form a seal, and the other end of the heating rod extends into the liquid inlet.
  • the liquid outlet is located at the other end of the sleeve, and the liquid outlet has a connection hole connected to the liquid outlet, and the liquid outlet is arranged There is an outlet temperature sensor for sensing the temperature of the outflow liquid in the outlet pipe, and a pipeline between the outlet pipe and the inlet port of the three-way unit is provided for monitoring the outflow of liquid in the outlet pipe Flow meter.
  • the air source unit includes a gas pump connected to the air inlet port of the three-way unit through a pipeline, and a check valve is further disposed between the air pump and the air inlet port,
  • the three-way unit is a three-way pipe or a three-way solenoid valve.
  • the air inlet port of the three-way unit is provided with a mesh-shaped guide plate, and the guide plate is provided with a plurality of vent holes, and the vent holes are regularly arranged at equal intervals.
  • the invention provides a gas-liquid mixing intelligent heat sterilization device for a toilet, wherein both ends of the sleeve are open, which facilitates installation and maintenance of the heating rod; and the liquid outlet is located near the other end of the sleeve. It can effectively extend the flow path of the water flow and ensure the heating effect; by setting the inlet temperature sensor and the outlet temperature sensor, the intelligent temperature control of the incoming and outgoing liquid can be realized, ensuring the stability and comfort of the inlet and outlet liquid temperature; A flow guiding end surface which is connected with the liquid outlet is disposed at the end of the liquid flow direction in the channel, which can effectively avoid the retention of the liquid, so that the liquid discharging speed is quick and smooth and the liquid temperature is more uniform and stable; and the quartz glass plate is separated to form.
  • the incident space and the exit space can effectively increase the ultraviolet irradiation time and intensity; by setting the aperture D of the exit seal ring to be larger than the aperture d of the incident seal ring, the light loss caused by the ultraviolet light can be avoided, and the seal ring and the seal ring are provided.
  • Forming an internal and external seal to the entire UV device; by providing a tee unit and Coherent source unit to generate a gas-liquid mixture, can effectively improve the cleaning effect and cleaning efficiency.
  • FIG. 1 is a schematic structural view of a gas-liquid mixing intelligent heat sterilization device for a toilet according to the present invention
  • FIG. 2 is a schematic exploded view showing the gas-liquid mixing intelligent heat sterilization device for a toilet according to the present invention
  • FIG. 3 is a schematic exploded view of the ultraviolet sterilization unit of the present invention.
  • Figure 4 is a perspective view showing the structure of the seal ring of the present invention.
  • Figure 5 is a schematic cross-sectional structural view of the seal ring of the present invention.
  • Figure 6 is a schematic structural view of the susceptor of the present invention.
  • Figure 7 is a schematic cross-sectional structural view of a gas-liquid hybrid intelligent heat sterilization device for a toilet according to the present invention.
  • Figure 8 is a schematic enlarged view of the area A of Figure 7;
  • Figure 9 is a schematic enlarged view of the area B of Figure 7;
  • Figure 10 is a schematic cross-sectional view of the sleeve of the present invention.
  • Figure 11 is a schematic view showing the structure of the liquid outlet of the present invention.
  • the present invention provides a gas-liquid hybrid intelligent heat sterilization device for a toilet, comprising:
  • a sleeve 10 having a hollow cavity therein and having openings at opposite ends thereof;
  • a heating rod 40 having one end inserted into the hollow cavity of the sleeve 10 and the other end extending out of the hollow cavity and causing the other end of the sleeve 10 to form a seal, the heating rod 40 A through liquid passage 42 is defined in the inner wall of the heating rod 40, and an inner wall of the sleeve 10 is formed with a liquid outlet passage 16 communicating with the liquid inlet passage 42 on the outer wall of the sleeve 10.
  • the liquid outlet 11 is connected to the liquid outlet 16 , and the liquid outlet 10 is disposed at the liquid outlet 11 , and the liquid outlet 30 is further connected to the liquid outlet 11 . Drainage tube 31;
  • the liquid inlet port 711 is connected to the liquid outlet pipe 31 through a pipeline, and the air inlet port 712 of the three-way unit 71 is externally connected with a gas source unit, and the three-way unit 71
  • the inlet port 711 and the inlet port 712 are both in communication with the discharge port 713 of the three-way unit 71.
  • the liquid outlet 11 is located near the other end of the sleeve 10, and can effectively extend the flow path of the water flow to ensure the heating effect, and one end of the sleeve 10 is disposed at one end An ultraviolet sterilization unit 50 for sterilizing and irradiating the liquid in the sleeve 10.
  • the ultraviolet sterilization unit 50 includes:
  • a base 55 one side of which is embedded at one end of the sleeve 10, and the other side is provided with a substrate 52 on which an ultraviolet lamp bead is disposed on an inner end surface facing the inner direction of the sleeve 10. 57.
  • the outer end surface of the substrate 52 is disposed with a heat dissipation plate 51.
  • the heat dissipation plate 51 is made of an aluminum plate to enhance the heat dissipation effect.
  • the base 55 has a base extending through the central axis of the sleeve 10. Hole 551;
  • a sealing ring 53 is disposed in the base hole 551.
  • the sealing ring 53 defines a central hole 532 coaxial with the base hole 551.
  • the inner wall of the sealing ring 53 has a card slot. 531, the card slot 531 separates the sealing ring 53 into an incident sealing ring 533 and an exit sealing ring 534;
  • a quartz glass plate 54 is disposed in the slot 531 of the sealing ring 53.
  • the quartz glass plate 54, the inner wall of the incident sealing ring 533 and the substrate 52 form an incident space 58
  • the inner wall of the exit sealing ring 534 and the inside of the sleeve 10 form an exit space 59 to form an inner seal for the entire ultraviolet device, and the quartz glass plate 54 is disposed to form the incident space 58 and the exit space 59, thereby effectively improving the ultraviolet irradiation time and strength.
  • the base 55 is provided with a boss 552 embedded in the sleeve 10.
  • the boss 552 is provided with a retaining ring 553, and the outer wall of the boss 552 is sleeved with a seal.
  • a ring 56, the sealing ring 56 is clamped between the base 55 and one of the outer end faces of the sleeve 10 to form an outer seal to the entire ultraviolet device, wherein the ring diameter of the retaining ring 553 is greater than or equal to
  • the aperture D of the exit seal ring 534 is smaller than the aperture D of the exit seal ring 534.
  • the quartz glass plate 54 has a certain plane thickness t, when the ultraviolet light passes through the quartz glass plate 54, Due to the refraction of the ultraviolet rays, a certain offset occurs, and when the aperture D of the exit seal ring 534 is set larger than the aperture d of the incident seal ring 533, the loss of light due to the refraction of the ultraviolet rays can be avoided.
  • the distance P between the ultraviolet lamp bead 57 and the quartz glass plate 54 satisfies the following formula:
  • D is the aperture of the exit sealing ring 534
  • is the irradiation angle of the ultraviolet lamp bead 57 toward the quartz glass plate 54
  • n is the refractive index corresponding to the wavelength of the ultraviolet lamp bead 57 being ⁇
  • t is the quartz glass plate 54. thickness.
  • the ultraviolet irradiation range is the widest, and the irradiation effect is optimal.
  • a thread groove (not shown) for guiding the liquid in the sleeve 10 is disposed on the inner wall of the sleeve 10, and the thread groove is distributed on the sleeve 10.
  • the threaded groove includes an alternately disposed first thread groove (not shown) and a second thread groove (not shown), and a pitch and a groove depth of the first thread groove and the second thread groove No, the ratio of the pitch of the first thread groove to the pitch of the second thread groove is 2/3, and the groove depth of the first thread groove is 1/2 of the wall thickness of the sleeve 10,
  • the groove depth of the second thread groove is 1/4 of the wall thickness of the sleeve 10, and the first thread groove and the second thread groove having two pitches and groove depths are not formed on the inner wall of the sleeve 10,
  • the liquid flowing close to the inner wall of the sleeve 10 is spirally guided along the first thread groove and the second thread groove respectively.
  • the liquid When the liquid flows to the intersection of the first thread groove and the second thread groove, the liquid impacts each other to make the liquid close to each other.
  • the liquid on the inner wall of the sleeve 10 is convected with the liquid adjacent to the outer wall of the heating rod 40, and the liquid in the sleeve 10 is evenly distributed. Alternatively the inner wall 40 in contact with the heated heating rod, so as to achieve uniform heating of the liquid flowing effect.
  • a flow guiding end face 18 that is engaged with the liquid outlet 11 is disposed in the liquid outlet passage 16 at the end of the liquid flow direction, and the flow guiding end surface 18 and the sleeve 10 are provided.
  • the corner joint of the inner wall is provided with an end angle transition portion, and the end angle transition portion is provided with chamfering or rounding, which can effectively avoid liquid retention, so that the liquid discharge speed is quick and smooth and the liquid temperature is more uniform and stable.
  • the flow guiding end surface 18 forms a corner ⁇ with the center line of the sleeve 10, and the flow guiding end surface 18 forms an angle ⁇ with the center line of the liquid outlet 11.
  • the other end of the sleeve 10 is provided with a liquid inlet 20, and the liquid inlet 20 defines a liquid inlet pipe 21 communicating with the liquid inlet passage 42.
  • the inlet liquid holder 20 is provided with an inlet temperature sensor 60 for sensing the temperature of the inflow liquid in the inlet pipe 21.
  • an accommodating space 161 is formed between the one end of the heating rod 40 and the ultraviolet sterilizing unit 50 to allow the liquid inlet passage 42 and the liquid outlet passage 16 to communicate with each other.
  • the other end of the heating rod 40 is provided with a flange 41 attached to the other end of the sleeve 10 to form a seal, and the other end of the heating rod 40 extends into the liquid inlet 20.
  • the liquid outlet base 30 defines a connecting hole 35 that is connected to the liquid outlet 11 , and the liquid outlet seat 30 is provided with a device for sensing the outflow of the liquid outlet tube 31 .
  • the liquid temperature temperature sensor 61 by providing the liquid inlet temperature sensor 60 and the liquid discharge temperature sensor 61, enables intelligent temperature control of the incoming and outgoing liquids, ensuring stability and comfort of the temperature of the incoming and outgoing liquids.
  • a fixing plate 32 is disposed on a side of the bottom of the connecting hole 35, and a positioning hole 321 is defined in the fixing plate 32.
  • One side of the liquid outlet 11 is provided with a fixing hole 17 for matching with the positioning hole 321; the other side of the bottom of the connecting hole 35 is provided with a clamping plate 33.
  • the latching plate 33 is disposed in an arc shape, and the latching plate 33 is provided with a stop block 34.
  • the sleeve 10 is respectively disposed on the other side of the liquid outlet 11 and has a limiting block 12 and a supporting portion 14 , a guiding portion 331 is defined on an end of the locking plate 33 adjacent to the limiting block 12 , and the guiding portion 331 is disposed as an inclined end surface; wherein when the locking plate 33 is screwed into the mounting portion When the stop block 12 and the support block 14 are in contact with each other, and the stop block 34 is in contact with the limit block 12, the center line of the positioning hole 321 is the same as the center line of the fixed hole 17.
  • the shaft is tightened by screws, and at this time, the latching plate 33 is clamped in the limiting block 12 and the receiving block 14, thereby reducing the screw Number of easy accessibility.
  • a flow meter 70 for monitoring the flow rate of the liquid flowing out of the liquid outlet pipe 31 is disposed on the pipeline between the liquid outlet pipe 31 and the liquid inlet port of the three-way unit 71.
  • a flow meter 70 is connected to the liquid outlet pipe 31 to monitor the real-time flow rate of the liquid in the sleeve 10 to ensure the real-time heating power of the heating rod 40.
  • the liquid discharge base 30 is further provided with a snap-type temperature switch 62.
  • the kick-out temperature switch 62 is disposed on the liquid outlet seat 30. When the liquid temperature of the liquid outlet tube 31 exceeds a preset temperature value, the snap-type temperature switch 62 is turned off, thereby effectively improving the safety of the use of the heating device.
  • a positioning slot 13 is defined in the outer wall of the sleeve 10, and a filling box 90 is inserted into the positioning slot 13, and a main control circuit is disposed in the recess of the filling box 90.
  • the plate 80, the heating rod 40, the inlet temperature sensor 60, the outlet temperature sensor 61, the flow meter 70, and the snap-type temperature switch 62 are all connected to the main control board 80 via a line.
  • the three-way unit 71 is a three-way pipe or a three-way electromagnetic valve.
  • the air source unit includes a gas pump 72 that is connected to the intake port 712 of the three-way unit 71 through a pipeline, and between the air pump 72 and the intake port 712 A check valve is also provided.
  • the air inlet port 712 of the three-way unit 71 is provided with a mesh-shaped guide plate 73, which can refine the air bubbles and uniformly mix into the liquid.
  • the guide plate 73 is provided with a plurality of vent holes 731, and the vent holes 731 are regularly arranged at equal intervals.
  • the working process of the gas-liquid mixing intelligent heat sterilization device for the toilet is as follows: the arrow in FIG. 7 represents the liquid flow direction, and the liquid (assuming the liquid is water) flows into the liquid inlet channel 42 of the heating rod 40 via the inlet pipe 21, and The flow direction of the liquid in the accommodating space 161 is changed, and flows through the liquid outlet passage 16 in the direction of the flow end surface.
  • the liquid reaches the flow guiding end surface 18, the liquid sequentially and smoothly passes through the liquid outlet 11 under the action of the flow guiding end surface 18.
  • the outflow pipe 31 flows out, can effectively prevent the liquid from staying at the corners, and the liquid flows out through the liquid outlet 11 and the liquid outlet pipe 31 sequentially through the liquid outlet passage 16 when the liquid flows through the liquid inlet passage 42 It will be heated by the heating rod 40 to the set suitable temperature of the human body.
  • the external air source unit can be mixed into the liquid to generate a gas-liquid mixture and pass through the three-way unit 71.
  • the discharge port 713 is discharged, which can effectively improve the cleaning efficiency and the cleaning effect; specifically, the liquid inlet temperature sensor 60 outputs the liquid temperature value signal of the inlet pipe 21 to the main control circuit board 80, and the main control circuit board 80 receives the liquid inlet temperature.
  • the heating rod 40 After the signal of the sensor 60, the heating rod 40 is controlled to provide corresponding power heating; the liquid discharging temperature sensor 61 outputs a liquid temperature value signal of the liquid discharging pipe 31 to the main control circuit board 80, and the main control circuit board 80 receives the liquid discharging temperature sensor 61. After the signal is compared with the preset temperature value, the heating rod 40 is controlled to adjust the corresponding power heating, thereby ensuring that the liquid temperature is always constant at a set body suitable temperature; when it is necessary to sterilize the liquid in the sleeve 10, the power is applied.
  • the ultraviolet lamp bead 57 emits ultraviolet light toward the quartz glass plate 54 and is refracted through the incident glass 58 through the quartz glass plate 54 into the exit space 59, and is injected into the sleeve 10 via the exit space 59, thereby realizing the sleeve 10
  • the liquid inside is sterilized.

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Abstract

一种坐便器用气液混合智能加热杀菌装置,包括:套筒(10),其一侧端部上设置有一用于对套筒(10)内液体进行杀菌照射的紫外线杀菌单元(50);加热棒(40),其一端插设于套筒(10)的中空腔体内,另一端延伸出中空腔体且使得套筒(10)的另一侧端部形成密封,其内开设有一贯通的进液通道(42);一三通单元(71),三通单元(71)的进气端口(712)通过管路外接有气源单元,三通单元(71)的进液端口(711)和进气端口(712)均与三通单元(71)的排放端口(713)相连通。该装置结构便捷、加热效果好,能够实现气液混合清洗和利用紫外线对套筒内液体进行杀菌。

Description

一种坐便器用气液混合智能加热杀菌装置 技术领域
本发明涉及坐便器技术领域,尤其涉及一种坐便器用气液混合智能加热杀菌装置。
背景技术
坐便器的加热装置有别传统的水箱加热模式,其能使冷水在流经加热器时便会被加热达到人体适宜温度,结构简单且不受清洗时间控制,方便节能,因而此类产品已成为未来发展的趋势。市场上现有的坐便器加热装置通常不设有杀菌单元,不能够对加热装置中的液体进行杀菌,不能满足用户的需求。因此,有必要研发一种坐便器用气液混合智能加热杀菌装置。
技术问题
针对上述技术中存在的不足之处,本发明提供了一种安全可靠、结构便捷、加热效果好、温度可控,且能够实现气液混合清洗和通过紫外线对套筒内液体进行杀菌的坐便器用气液混合智能加热杀菌装置。
技术解决方案
一种坐便器用气液混合智能加热杀菌装置,包括:一套筒,其内为中空腔体且相向两侧端部呈开口状,所述套筒的一侧端部上设置有一用于对所述套筒内液体进行杀菌照射的紫外线杀菌单元;一加热棒,其一端插设于所述套筒的中空腔体内,另一端延伸出所述中空腔体且使得所述套筒的另一侧端部形成密封,所述加热棒内开设有一贯通的进液通道,所述加热棒的外壁与所述套筒的内壁形成有一与所述进液通道相连通的出液通道,所述套筒的外壁上开设有一与所述出液通道相连通的出液口,所述出液口处设置有一出液座,所述出液座上开设有一与所述出液口相连通的出液管,一三通单元,其进液端口通过管路与所述出液管相接,所述三通单元的进气端口通过管路外接有气源单元,所述三通单元的进液端口和进气端口均与所述三通单元的排放端口相连通。
优选的,所述紫外线杀菌单元包括:一基座,其一侧嵌设于所述套筒的一侧端部,另一侧设置有一基板,所述基板上朝向所述套筒内方向的内侧端面上设置有紫外线灯珠,所述基板的外侧端面贴合设置有一散热板,所述基座上开设有一沿套筒的中心轴向贯通的基孔;一密封环,其设置于所述基孔内,所述密封环上开设有一与所述基孔同轴且贯通的中心孔,所述密封环的内壁上开设有一卡槽,所述卡槽将所述密封环分隔成一入射密封环和一出射密封环;一石英玻璃板,其卡设于所述密封环的卡槽内,所述石英玻璃板、入射密封环的内壁和基板形成一入射空间,所述石英玻璃板、出射密封环的内壁和套筒内部形成一出射空间。
优选的,所述基座上设置有一嵌设于套筒内的凸台,所述凸台上设置有一挡环,所述挡环的内端面与所述出射密封环的外端面相抵,所述凸台的外壁套设有一密封圈,所述密封圈卡紧于所述基座和套筒的一侧外端面之间,其中,所述挡环的孔径大于等于所述出射密封环的孔径D,所述入射密封环的孔径d小于所述出射密封环的孔径D。
优选的,所述紫外线灯珠与石英玻璃板之间间距P满足如下公式:
Figure 947293dest_path_image001
其中,D为出射密封环的孔径,δ为紫外线灯珠朝向石英玻璃板的照射角度,n为紫外线灯珠的波长为λ时所对应的折射率,t为石英玻璃板的厚度,所述折射率的取值范围为1.49≤n≤1.51,所述照射角度δ=120°。
优选的,所述出液口位于靠近所述套筒的另一侧端部处设置,所述套筒的内壁上开设有用于对所述套筒内的液体导流的螺纹槽,所述螺纹槽分布于所述套筒的整个内壁上。
优选的,所述螺纹槽包括交互设置的第一螺纹槽和第二螺纹槽,所述第一螺纹槽和所述第二螺纹槽的螺距与槽深均不等同,所述第一螺纹槽的螺距与所述第二螺纹槽的螺距的比值为2/3,所述第一螺纹槽的槽深为所述套筒壁厚的1/2,所述第二螺纹槽的槽深为所述套筒壁厚的1/4。
优选的,所述套筒的另一侧端部设置有进液座,所述进液座上开设有一与所述进液通道相连通的进液管,所述进液座上设置有用于感测所述进液管内流入液体温度的进液温度传感器;所述加热棒的一端与所述紫外线杀菌单元之间形成有一可使得所述进液通道和所述出液通道相连通的容置空间,所述加热棒的另一端设置有一贴合于所述套筒另一侧端部以使其形成密封的凸沿,且所述加热棒的另一端延伸至所述进液座内。
优选的,所述出液口位于靠近所述套筒的另一侧端部处设置,所述出液座上开设有一与所述出液口相接的连接孔,所述出液座上设置有用于感测所述出液管内流出液体温度的出液温度传感器,所述出液管与所述三通单元的进液端口之间的管路上设置有用于监测所述出液管内流出液体流量的流量计。
优选的,所述气源单元包括一通过管路与所述三通单元的进气端口相接的气泵,所述气泵与所述进气端口管路之间还设置有单向阀,所述三通单元为三通管或三通电磁阀。
优选的,所述三通单元的进气端口处设置有一网状的导板,所述导板上开设有若干通气孔,所述通气孔等间距间隔呈规律分布设置。
有益效果
本发明提供的坐便器用气液混合智能加热杀菌装置,其套筒的两侧端部呈开口状,便于加热棒的安装和检修;出液口位于靠近套筒的另一侧端部处设置,能够有效的延长水流的流动路径,保证加热效果;通过设置进液温度传感器和出液温度传感器,可实现进出液体的智能温度控制,确保进出液体温度的稳定性和舒适性;通过在出液通道内沿着液体流向的末端处设置有一与出液口相衔接的导流端面,能够有效的避免液体的滞留,使得出液速度快捷顺畅且液体温度更加均匀稳定;通过设置石英玻璃板分隔形成入射空间和出射空间,可有效提高紫外线照射时间和强度;通过设置出射密封环的孔径D大于入射密封环的孔径d时,可避免紫外线因折射而产生的光线损失,通过设置密封环和密封圈,形成对整个紫外线装置的内部和外部密封;通过设置三通单元和外接气源单元以产生气液混合体,能够有效提高清洗效率和清洗效果。
附图说明
图1是本发明所述坐便器用气液混合智能加热杀菌装置的结构示意图;
图2是本发明所述坐便器用气液混合智能加热杀菌装置的分解结构示意图;
图3是本发明所述紫外线杀菌单元的分解结构示意图;
图4是本发明所述密封环的立体结构示意图;
图5是本发明所述密封环的剖面结构示意图;
图6是本发明所述基座的结构示意图;
图7是本发明所述坐便器用气液混合智能加热杀菌装置的剖面结构示意图;
图8是图7中A区域的放大结构示意图;
图9是图7中B区域的放大结构示意图;
图10是本发明所述套筒的剖面结构示意图;
图11是本发明所述出液座的结构示意图。
图中:10、套筒;11、出液口;12、限位块;13、定位槽;14、承托块;16、出液通道;161、容置空间;17、固定孔;18、导流端面;20、进液座;21、进液管;30、出液座;31、出液管;32、固定板;321、定位孔;33、卡接板;331、导向部;34、止挡块;35、连接孔;40、加热棒;41、凸沿;42、进液通道;50、紫外线杀菌单元;51、散热板;52、基板;53、密封环;531、卡槽;532、中心孔;533、入射密封环;534、出射密封环;54、石英玻璃板;55、基座;551基孔;552、凸台;553、挡环;56、密封圈;57、紫外线灯珠;58、入射空间;59、出射空间;60、进液温度传感器;61、出液温度传感器;62、突跳式温度开关;70、流量计;71、三通单元;711、进液端口;712、进气端口;713、排放端口;72、气泵;73、导板;731、通气孔;80、主控电路板;90、灌胶盒。
本发明的实施方式
下面结合附图对本发明做进一步的详细说明,以令本领域技术人员参照说明书文字能够据以实施。
如图1—图11所示,本发明提供了一种坐便器用气液混合智能加热杀菌装置,包括:
一套筒10,其内为中空腔体且相向两侧端部呈开口状;
一加热棒40,其一端插设于所述套筒10的中空腔体内,另一端延伸出所述中空腔体且使得所述套筒10的另一侧端部形成密封,所述加热棒40内开设有一贯通的进液通道42,所述加热棒40的外壁与所述套筒10的内壁形成有一与所述进液通道42相连通的出液通道16,所述套筒10的外壁上开设有一与所述出液通道16相连通的出液口11,所述出液口11处设置有出液座30,所述出液座30上还开设有一与所述出液口11相连通的出液管31;
一三通单元71,其进液端口711通过管路与所述出液管31相接,所述三通单元71的进气端口712通过管路外接有气源单元,所述三通单元71的进液端口711和进气端口712均与所述三通单元71的排放端口713相连通,通过设置三通单元71和外接气源单元以产生气液混合体,能够有效提高清洗效率和清洗效果;
其中,所述出液口11位于靠近所述套筒10的另一侧端部处设置,能够有效的延长水流的流动路径,保证加热效果,所述套筒10的一侧端部上设置有一用于对所述套筒10内液体进行杀菌照射的紫外线杀菌单元50。
作为本发明一实施例,所述紫外线杀菌单元50包括:
一基座55,其一侧嵌设于套筒10的一侧端部,另一侧设置有一基板52,所述基板52上朝向所述套筒10内方向的内侧端面上设置有紫外线灯珠57,所述基板52的外侧端面贴合设置有一散热板51,所述散热板51由铝板制成,增强散热效果,所述基座55上开设有一沿套筒10的中心轴向贯通的基孔551;
一密封环53,其设置于所述基孔551内,所述密封环53上开设有一与所述基孔551同轴且贯通的中心孔532,所述密封环53的内壁上开设有一卡槽531,所述卡槽531将所述密封环53分隔成一入射密封环533和一出射密封环534;
一石英玻璃板54,其卡设于所述密封环53的卡槽531内,所述石英玻璃板54、入射密封环533的内壁和基板52形成一入射空间58,所述石英玻璃板54、出射密封环534的内壁和套筒10内部形成一出射空间59,从而形成对整个紫外线装置的内部密封,通过设置石英玻璃板54分隔形成入射空间58和出射空间59,可有效提高紫外线照射时间和强度。
作为本发明一实施例,所述基座55上设置有一嵌设于套筒10内的凸台552,所述凸台552上设置有一挡环553,所述凸台552的外壁套设有一密封圈56,所述密封圈56卡紧于所述基座55和套筒10的一侧外端面之间,从而形成对整个紫外线装置的外部密封,其中,所述挡环553的孔径大于等于所述出射密封环534的孔径D,所述入射密封环533的孔径d小于所述出射密封环534的孔径D,由于石英玻璃板54具有一定平面厚度t,当紫外线穿过石英玻璃板54时,由于紫外线发生折射,会产生一定偏移,设置出射密封环534的孔径D大于入射密封环533的孔径d时,可避免紫外线因折射而产生的光线损失。
作为本发明一实施例,所述紫外线灯珠57与石英玻璃板54之间间距P满足如下公式:
Figure 699348dest_path_image001
其中,D为出射密封环534的孔径,δ为紫外线灯珠57朝向石英玻璃板54的照射角度,n为紫外线灯珠57的波长为λ时所对应的折射率,t为石英玻璃板54的厚度。
作为本发明一实施例,所述照射角度δ=120°,所述折射率的取值范围为1.49≤n≤1.51时,所述紫外线照射范围最广,照射效果最佳。
作为本发明一实施例,所述套筒10的内壁上开设有用于对所述套筒10内的液体导流的螺纹槽(未图示),所述螺纹槽分布于所述套筒10的整个内壁上,所述螺纹槽包括交互设置的第一螺纹槽(未图示)和第二螺纹槽(未图示),所述第一螺纹槽和所述第二螺纹槽的螺距与槽深均不等同,所述第一螺纹槽的螺距与所述第二螺纹槽的螺距的比值为2/3,所述第一螺纹槽的槽深为所述套筒10壁厚的1/2,所述第二螺纹槽的槽深为所述套筒10壁厚的1/4,通过在套筒10内壁上开设两个螺距和槽深均不等同的第一螺纹槽和第二螺纹槽,使得贴近套筒10内壁流动的液体分别沿第一螺纹槽和第二螺纹槽做螺旋导流运动,当液体流动至第一螺纹槽和第二螺纹槽的交接处时,液体相互冲击,使贴近套筒10内壁的液体与贴近加热棒40外壁处的液体产生对流,实现套筒10内的液体均匀交替地与加热棒40内壁接触受热,从而达到流出的液体均匀受热的效果。
作为本发明一实施例,所述出液通道16内沿着液体流向的末端处设置有一与所述出液口11相衔接的导流端面18,所述导流端面18与所述套筒10内壁的拐角连接处设置有端角过渡部,所述端角过渡部设置呈倒角或圆角,能够有效的避免液体的滞留,使得出液速度快捷顺畅且液体温度更加均匀稳定。
作为本发明一实施例,所述导流端面18与所述套筒10的中心线形成一拐角β,所述导流端面18与所述出液口11的中心线形成一夹角α,所述拐角β=α+90°且tanα=r/R,其中,0°<α<90°且90°<β<180°,r为所述出液口11的内径,R为所述套筒10的内径。
作为本发明一实施例,所述套筒10的另一侧端部设置有进液座20,所述进液座20上开设有一与所述进液通道42相连通的进液管21,所述进液座20上设置有用于感测所述进液管21内流入液体温度的进液温度传感器60。
作为本发明一实施例,所述加热棒40的一端与所述紫外线杀菌单元50之间形成有一可使得所述进液通道42和所述出液通道16相连通的容置空间161,所述加热棒40的另一端设置有一贴合于所述套筒10另一侧端部以使其形成密封的凸沿41,且所述加热棒40的另一端延伸至所述进液座20内。
作为本发明一实施例,所述出液座30上开设有一与所述出液口11相接的连接孔35,所述出液座30上设置有用于感测所述出液管31内流出液体温度的出液温度传感器61,通过设置进液温度传感器60和出液温度传感器61,可实现进出液体的智能温度控制,确保进出液体温度的稳定性和舒适性。
作为本发明一实施例,所述出液座30上位于所述连接孔35的底部一侧设置有一固定板32,所述固定板32上开设有一定位孔321,所述套筒10上位于所述出液口11的一侧设置有一与所述定位孔321相配合的固定孔17;所述出液座30上位于所述连接孔35的底部另一侧设置有一卡接板33,所述卡接板33设置呈圆弧状,所述卡接板33上设置有一止挡块34,所述套筒10上位于所述出液口11的另一侧上下分别设置有一限位块12和一承托块14,所述卡接板33上靠近所述限位块12的一端开设有一导向部331,所述导向部331设置呈倾斜端面;其中,当所述卡接板33旋入所述限位块12和所述承托块14之间,且所述止挡块34与所述限位块12相抵时,所述定位孔321的中心线与所述固定孔17的中心线相同轴,并通过螺钉紧固,且此时所述卡接板33卡紧于所述限位块12和所述承托块14中,可减少螺钉的使用数量,拆装便捷。
作为本发明一实施例,所述出液管31与所述三通单元71的进液端口之间的管路上设置有用于监测所述出液管31内流出液体流量的流量计70,通过在出液管31上连接有流量计70,可监测套筒10内液体实时流量,以确保加热棒40的实时加热功率;所述出液座30上还设置有突跳式温度开关62,通过在出液座30上设置突跳式温度开关62,当出液管31的液体温度超过预设温度值时,突跳式温度开关62断开,有效提高了加热装置使用的安全性。
作为本发明一实施例,所述套筒10外壁上开设有一定位槽13,所述定位槽13内插设有一灌胶盒90,所述灌胶盒90的凹槽内卡设有一主控电路板80,所述加热棒40、进液温度传感器60、出液温度传感器61、流量计70和突跳式温度开关62均通过线路与所述主控电路板80相连接。
作为本发明一实施例,所述三通单元71为三通管或三通电磁阀。
作为本发明一实施例,所述气源单元包括一通过管路与所述三通单元71的进气端口712相接的气泵72,所述气泵72与所述进气端口712管路之间还设置有单向阀。
作为本发明一实施例,所述三通单元71的进气端口712处设置有一网状的导板73,可让气泡细化,均匀混入液体中。
作为本发明一实施例,所述导板73上开设有若干通气孔731,所述通气孔731等间距间隔呈规律分布设置。
该坐便器用气液混合智能加热杀菌装置的工作过程如下:附图7中箭头代表液体流动方向,液体(假设液体为水)经由进液管21流入加热棒40的进液通道42,并在容置空间161处液体流向改变,通过出液通道16向导流端面方向流动,当液体到达导流端面18处时,在导流端面18的作用下,液体有序顺畅地依次经由出液口11和出液管31流出,能够有效的避免液体在拐角处滞留,通过出液通道16液体有序顺畅地依次经由出液口11和出液管31流出,当液体流经进液通道42时便会被加热棒40加热至所设定的人体适宜温度,当液体到达三通单元71处时,外接的气源单元可供气混入液体中,以产生气液混合体并经三通单元71的排放端口713排出,能够有效提高清洗效率和清洗效果;具体的,进液温度传感器60输出进液管21的液体温度值信号给主控电路板80,主控电路板80收到进液温度传感器60的信号后,控制加热棒40提供相应的功率加热;出液温度传感器61输出出液管31的液体温度值信号给主控电路板80,主控电路板80收到出液温度传感器61的信号后与预设温度值对比,再控制加热棒40调整相应功率加热,从而确保液体温度始终恒定在一个所设定的人体适宜温度;当需要对套筒10内的液体进行杀菌时,通电使得紫外线灯珠57发出紫外线朝向石英玻璃板54照射,并经入射空间58透过石英玻璃板54发生折射进入出射空间59,并经由出射空间59射入套筒10内,从而实现对套筒10内的液体进行杀菌。
尽管本发明的实施方案已公开如上,但其并不仅限于说明书和实施方式中所列运用,它完全可以被适用于各种适合本发明的领域,对于熟悉本领域的人员而言,可容易地实现另外的修改,因此在不背离权利要求及等同范围所限定的一般概念下,本发明并不限于特定的细节和这里示出与描述的图例。

Claims (10)

  1. 一种坐便器用气液混合智能加热杀菌装置,其特征在于,包括:
    一套筒(10),其内为中空腔体且相向两侧端部呈开口状,所述套筒(10)的一侧端部上设置有一用于对所述套筒(10)内液体进行杀菌照射的紫外线杀菌单元(50);
    一加热棒(40),其一端插设于所述套筒(10)的中空腔体内,另一端延伸出所述中空腔体且使得所述套筒(10)的另一侧端部形成密封,所述加热棒(40)内开设有一贯通的进液通道(42),所述加热棒(40)的外壁与所述套筒(10)的内壁形成有一与所述进液通道(42)相连通的出液通道(16),所述套筒(10)的外壁上开设有一与所述出液通道(16)相连通的出液口(11);所述出液口(11)处设置有一出液座(30),所述出液座(30)上开设有一与所述出液口(11)相连通的出液管(31);
    一三通单元(71),其进液端口(711)通过管路与所述出液管(31)相接,所述三通单元(71)的进气端口(712)通过管路外接有气源单元,所述三通单元(71)的进液端口(711)和进气端口(712)均与所述三通单元(71)的排放端口(713)相连通。
  2. 如权利要求1所述的坐便器用气液混合智能加热杀菌装置,其特征在于,所述紫外线杀菌单元(50)包括:
    一基座(55),其一侧嵌设于所述套筒(10)的一侧端部,另一侧设置有一基板(52),所述基板(52)上朝向所述套筒(10)内方向的内侧端面上设置有紫外线灯珠(57),所述基板(52)的外侧端面贴合设置有一散热板(51),所述基座(55)上开设有一沿套筒(10)的中心轴向贯通的基孔(551);
    一密封环(53),其设置于所述基孔(551)内,所述密封环(53)上开设有一与所述基孔(551)同轴且贯通的中心孔(532),所述密封环(53)的内壁上开设有一卡槽(531),所述卡槽(531)将所述密封环(53)分隔成一入射密封环(533)和一出射密封环(534);
    一石英玻璃板(54),其卡设于所述密封环(53)的卡槽(531)内,所述石英玻璃板(54)、入射密封环(533)的内壁和基板(52)形成一入射空间(58),所述石英玻璃板(54)、出射密封环(534)的内壁和套筒(10)内部形成一出射空间(59)。
  3. 如权利要求2所述的坐便器用气液混合智能加热杀菌装置,其特征在于,所述基座(55)上设置有一嵌设于套筒(10)内的凸台(552),所述凸台(552)上设置有一挡环(553),所述挡环(553)的内端面与所述出射密封环(534)的外端面相抵,所述凸台(552)的外壁套设有一密封圈(56),所述密封圈(56)卡紧于所述基座(55)和套筒(10)的一侧外端面之间,其中,所述挡环(553)的孔径大于等于所述出射密封环(534)的孔径D,所述入射密封环(533)的孔径d小于所述出射密封环(534)的孔径D。
  4. 4、如权利要求2所述的坐便器用气液混合智能加热杀菌装置,其特征在于,所述紫外线灯珠(57)与石英玻璃板(54)之间间距P满足如下公式:
    Figure 413412dest_path_image001
    其中,D为出射密封环(534)的孔径,δ为紫外线灯珠(57)朝向石英玻璃板(54)的照射角度,n为紫外线灯珠(57)的波长为λ时所对应的折射率,t为石英玻璃板(54)的厚度,所述折射率的取值范围为1.49≤n≤1.51,所述照射角度δ=120°。
  5. 如权利要求1所述的坐便器用气液混合智能加热杀菌装置,其特征在于,所述套筒(10)的内壁上开设有用于对所述套筒(10)内的液体导流的螺纹槽,所述螺纹槽分布于所述套筒(10)的整个内壁上。
  6. 如权利要求5所述的坐便器用气液混合智能加热杀菌装置,其特征在于,所述螺纹槽包括交互设置的第一螺纹槽和第二螺纹槽,所述第一螺纹槽和所述第二螺纹槽的螺距与槽深均不等同,所述第一螺纹槽的螺距与所述第二螺纹槽的螺距的比值为2/3,所述第一螺纹槽的槽深为所述套筒(10)壁厚的1/2,所述第二螺纹槽的槽深为所述套筒(10)壁厚的1/4。
  7. 如权利要求1所述的坐便器用气液混合智能加热杀菌装置,其特征在于,所述套筒(10)的另一侧端部设置有进液座(20),所述进液座(20)上开设有一与所述进液通道(42)相连通的进液管(21),所述进液座(20)上设置有用于感测所述进液管(21)内流入液体温度的进液温度传感器(60);所述加热棒(40)的一端与所述紫外线杀菌单元(50)之间形成有一可使得所述进液通道(42)和所述出液通道(16)相连通的容置空间(161),所述加热棒(40)的另一端设置有一贴合于所述套筒(10)另一侧端部以使其形成密封的凸沿(41),且所述加热棒(40)的另一端延伸至所述进液座(20)内。
  8. 如权利要求1所述的坐便器用气液混合智能加热杀菌装置,其特征在于,所述出液口(11)位于靠近所述套筒(10)的另一侧端部处设置,所述出液座(30)上开设有一与所述出液口(11)相接的连接孔(35),所述出液座(30)上设置有用于感测所述出液管(31)内流出液体温度的出液温度传感器(61),所述出液管(31)与所述三通单元(71)的进液端口之间的管路上设置有用于监测所述出液管(31)内流出液体流量的流量计(70)。
  9. 如权利要求1所述的坐便器用气液混合智能加热杀菌装置,其特征在于,所述气源单元包括一通过管路与所述三通单元(71)的进气端口(712)相接的气泵(72),所述气泵(72)与所述进气端口(712)管路之间还设置有单向阀,所述三通单元(71)为三通管或三通电磁阀。
  10. 如权利要求9所述的坐便器用气液混合智能加热杀菌装置,其特征在于,所述三通单元(71)的进气端口(712)处设置有一网状的导板(73),所述导板(73)上开设有若干通气孔(731),所述通气孔(731)等间距间隔呈规律分布设置。
PCT/CN2018/086831 2017-12-28 2018-05-15 一种坐便器用气液混合智能加热杀菌装置 WO2019128041A1 (zh)

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JPH10128316A (ja) * 1996-11-06 1998-05-19 Janome Sewing Mach Co Ltd 浴水循環装置においての洗浄機能を備えた浴水殺菌装置
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