WO2019052207A1 - 全自动安全节能高效蒸汽凝水机 - Google Patents

全自动安全节能高效蒸汽凝水机 Download PDF

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WO2019052207A1
WO2019052207A1 PCT/CN2018/087177 CN2018087177W WO2019052207A1 WO 2019052207 A1 WO2019052207 A1 WO 2019052207A1 CN 2018087177 W CN2018087177 W CN 2018087177W WO 2019052207 A1 WO2019052207 A1 WO 2019052207A1
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tank
water
condensing
saving
energy
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PCT/CN2018/087177
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English (en)
French (fr)
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孔德玲
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广东皇田环保科技有限公司
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Publication of WO2019052207A1 publication Critical patent/WO2019052207A1/zh

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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/02Treatment of water, waste water, or sewage by heating
    • C02F1/04Treatment of water, waste water, or sewage by heating by distillation or evaporation
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/02Treatment of water, waste water, or sewage by heating
    • C02F1/04Treatment of water, waste water, or sewage by heating by distillation or evaporation
    • C02F1/043Details

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  • the invention belongs to a water condensing machine, in particular to a fully automatic safety, energy saving and high efficiency steam condensing machine.
  • the existing distilled water generator generally uses an electric heater to heat the tap water coming in from the outside, and then the steam generated by the heating enters the conveying pipe, and finally forms water droplets to obtain distilled water.
  • the pressure inside the equipment is prone to be too high, and there is a high safety hazard.
  • a fully automatic safe, energy-saving and high-efficiency steam condensing machine comprising a casing, a water inlet tank, a heating water tank, a condensing layer and a water storage tank, a water inlet tank, a heating water tank, a condensing layer and a water storage tank.
  • the water inlet tank, the heating water tank, the condensation layer and the water storage tank are sequentially connected, the water inlet tank is provided with a water inlet, the water storage tank side is provided with a water outlet, and the heating water tank is provided with an electric heater and an electric heater. Located in the upper part of the heating tank.
  • the utility model has the beneficial effects that: by setting the electric heater on the upper part of the heating water tank, only a small amount of water in the upper part of the heating water tank is heated, the steam can be quickly generated, and the working efficiency is improved; and at the same time, the electric heating can be performed by providing the condensation layer.
  • the steam generated by the device is cooled to obtain water droplets, and finally distilled water is obtained, which increases the cooling area of the steam, greatly improves the safety performance; and obtains distilled water which is sterile, non-toxic and easily absorbed by the human body.
  • the inlet water tank and the heating water tank are in communication through the overflow port, and the overflow port is located below the electric heater. Thereby, the water of the inlet water tank can be made to enter the heating water tank under the electric heater, so that the inflowing low temperature water does not affect the temperature of the water on the surface of the electric heater, and the heating efficiency of the electric heater is ensured.
  • the fully automatic safe, energy-saving and high-efficiency steam condensing machine further comprises a condensing tank, the condensing layer is disposed in the condensing tank, and a plurality of the heating water tank and the condensing tank are communicated through the vent hole, and the vent hole is located above the electric heater.
  • a condensation box is provided, which can facilitate the installation and fixation of the condensation layer and provide a large cooling space for the steam formed by heating.
  • a plurality of through holes are formed in each of the condensation layers, and the through holes on the respective condensation layers are gradually reduced.
  • the inlet water tank, the heated water tank, and the condensing layer are all located above the water storage tank. Thereby, it is convenient to collect the condensed water from the top down.
  • the water inlet of the inlet water tank is provided with a solenoid valve switch
  • the floating water tank is provided with a floating device
  • the electromagnetic valve sensor is arranged above the floating device, and the electromagnetic valve sensor is electrically connected with the electromagnetic valve switch. Therefore, a solenoid valve switch and a floating device are provided. Therefore, when the water in the inlet water tank reaches a certain water level, the solenoid valve sensor operates, so that the solenoid valve connected thereto is closed, and the water inlet stops the water inlet, effectively preventing The water overflows into the water tank.
  • a pressure switch is provided in the condensation chamber, and the pressure switch is electrically connected to the electric heater. Therefore, when the pressure in the condensing tank is too high, the pressure switch controls the electric heater to stop working, preventing the steam from continuing to be generated, so that the air pressure in the casing is within a safe range, and the use is safe.
  • a water level control switch is provided in the water storage tank, and the water level control switch is electrically connected to the electric heater. Therefore, when the distilled water in the water storage tank reaches a certain liquid level, the electric heater stops heating and ensures the safety of use.
  • the bottom of the condensing tank is inclined, and the communication hole of the condensing tank and the water tank is located at the edge of the bottom of the condensing tank. Thereby, it is convenient for the condensed water to flow into the water storage tank.
  • FIG. 1 is a cross-sectional structural view of a fully automatic safe, energy-saving and high-efficiency steam condensing machine of the present invention
  • FIG. 2 is a schematic view showing the structure of a condensing layer in the fully automatic safe, energy-saving and high-efficiency steam condensing machine of the present invention.
  • a fully automatic safe energy-saving and high-efficiency steam condensing machine comprising a casing 1, an inlet water tank 2, a heating water tank 3, a condensing layer 4 and a water storage tank 5, an inlet water tank 2, a heating water tank 3, a condensing layer 4 and the water storage tank 5 are both disposed in the casing 1, the inlet water tank 2, the heating water tank 3, the condensing layer 4 and the water storage tank 5 are sequentially connected, the water inlet tank 2 is provided with a water inlet 21 on one side, and the water storage tank 5 is provided on one side. There is a water outlet 51 in which an electric heater 6 is provided, and an electric heater 6 is located in an upper portion of the heating water tank 3.
  • the water inlet 21 is in communication with the external tap water, and the tap water outside can enter the water inlet tank 2 through the water inlet 21; then the water enters the heating water tank 3, and the electric heater 6 heats the surface water and generates steam; The steam enters the condensation layer 4 for condensation, and the distilled water obtained after the condensation enters the storage tank 5 for storage; the distilled water can be discharged through the water outlet 51.
  • the distilled water obtained by the fully automatic safe, energy-saving and high-efficiency steam condensing machine is characterized by being sterile, non-toxic and easily absorbed by the human body.
  • the inlet water tank 2 and the heating water tank 3 communicate with each other through the overflow port 7, and the overflow port 7 is located below the electric heater 6.
  • the low-temperature water in the inlet water tank 2 is caused to pass from the lower side of the electric heater 6 to the heating water tank 3, so that the temperature of the water heated by the surface of the electric heater 6 is not affected by the newly entering the water source, and the working efficiency of the electric heater 6 is improved.
  • the water in the whole water tank needs to be heated to realize the evaporation of water vapor.
  • the fully automatic safe energy-saving and high-efficiency steam condensing machine avoids the influence of the new water source on the water temperature during the heating process.
  • the fully automatic safe, energy-saving and high-efficiency steam condensing machine of the present invention further comprises a condensing tank 8, the condensing layer 4 is disposed in the condensing tank 8, and a plurality of the heating water tank 3 and the condensing tank 8 are communicated through the vent hole 9, and the vent hole 9 is located Above the electric heater 6.
  • a plurality of through holes 41 are formed in each of the condensation layers 4.
  • the number of the condensing layers 4 is five, and they are sequentially arranged in the condensing tank 8, and the through holes 41 in the condensing layer 4 are gradually reduced in the flow direction of the steam.
  • the through hole 41 on the condensation layer 4 near the side of the electric heater 6 is large, so that the steam generated at the electric heater 6 can quickly pass through the condensation layer 4, and condenses at the through hole 41 to form a water droplet flow;
  • the through holes 41 in each of the condensing layers 4 are reduced, the condensing area is increased, and the rapid cooling of the steam is realized, and finally the water bead is obtained, and the condensed water is obtained by flowing into the water storage tank 5.
  • the inlet water tank 2, the heating water tank 3, and the condensing layer 4 are all located above the water storage tank 5.
  • a water valve switch 10 is arranged at the water inlet 21 of the inlet water tank 2, a floating device 20 is arranged in the water inlet tank 2, a solenoid valve sensor 30 is arranged above the floating device 20, and the electromagnetic valve sensor 30 and the electromagnetic valve switch 10 are electrically connected. connection.
  • the floating device 20 gradually rises; when the solenoid valve sensor 30 at the top of the floating device 20 touches the top of the inlet water tank 2, the solenoid valve sensor 30 controls the solenoid valve switch 10 It is closed so that the water inlet 21 stops flowing into the water. Conversely, the water inlet 21 can continue to enter the water.
  • the water level above the electric heater 6 is 8 to 10 mm higher than the electric heater, so that the electric heater can rapidly heat the water.
  • a pressure switch 40 is disposed in the condensing tank 8, and the pressure switch 40 is electrically connected to the electric heater 6.
  • the pressure switch 40 is provided. Therefore, when the air pressure in the condensation tank 8 is too high, the pressure switch 40 is turned off, so that the electric heater 6 is powered off, and the electric heater 6 stops heating the water to prevent the air pressure in the condensation tank 8 from rising further. To ensure the safety of use.
  • a water level control switch 50 is provided in the water storage tank 5, and the water level control switch 50 is electrically connected to the electric heater 6.
  • the water level control switch 50 When the water in the water storage tank 5 touches the water level control switch 50, the water level in the surface water storage tank 5 has reached the highest water level, and the water level control switch 50 is turned off, so that the electric heater 6 is powered off, and the continued generation of the water vapor is stopped.
  • the bottom of the condensing tank 8 is disposed obliquely, and the communication hole 60 of the condensing tank 8 and the water storage tank 5 is located at the edge of the bottom of the condensing tank 8. Thereby, it is convenient that the water droplets passing through the condensing layer 4 can quickly flow into the water storage tank 5 along the inclined surface.

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  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Heat Treatment Of Water, Waste Water Or Sewage (AREA)

Abstract

一种全自动安全节能高效蒸汽凝水机,包括壳体(1)、进水水箱(2)、加热水箱(3)、冷凝层(4)和储水箱(5),进水水箱(2)、加热水箱(3)、冷凝层(4)和储水箱(5)均设于壳体(1)内,进水水箱(2)、加热水箱(3)、冷凝层(4)和储水箱(5)依次连通,进水水箱(2)一侧设有进水口(21),储水箱(5)一侧设有出水口(51),加热水箱(3)内设有电热器(6),电热器(6)位于加热水箱(3)内的上部。通过将电热器(6)设于加热水箱(3)的上部,实现仅对加热水箱(3)上部少量的水进行加热,能够快速产生蒸汽,提高工作效率。

Description

全自动安全节能高效蒸汽凝水机 技术领域
本发明属于一种凝水机,尤其是涉及一种全自动安全节能高效蒸汽凝水机。
背景技术
现有蒸馏水发生器,一般采用电热器对外界进来的自来水进行加热,然后加热产生的蒸汽进入到输送管道,最终形成水珠制得蒸馏水。该类设备在使用过程中,容易出现设备内气压过高现象,存在较高的安全隐患。
发明内容
本发明的目的在于提供一种全自动安全节能高效蒸汽凝水机,能够解决上述问题中的至少一个。
根据本发明的一个方面,提供了一种全自动安全节能高效蒸汽凝水机,包括壳体、进水水箱、加热水箱、冷凝层和储水箱,进水水箱、加热水箱、冷凝层和储水箱均设于壳体内,进水水箱、加热水箱、冷凝层和储水箱依次连通,进水水箱一侧设有进水口,储水箱一侧设有出水口,加热水箱内设有电热器,电热器位于加热水箱内的上部。
本发明的有益效果是:通过将电热器设于加热水箱的上部,实现仅对加热水箱上部少量的水进行加热,能够快速产生蒸汽,提高工作效率;同时,通过设有冷凝层,可以对电热器产生的蒸汽进行冷却得到水珠,最终得到蒸馏水,增大了蒸汽的冷却面积,大大提高了安全性能;得到无菌无毒且容易被人体吸收的蒸馏水。
在一些实施方式中,进水水箱与加热水箱通过过流口连通,过流口位于电热器的下方。由此,可以使得进水水箱的水在电热器的下方进入到加热水箱内,使得流入的低温水不影响电热器表面的水的温度,保证了电热器的加热效率。
在一些实施方式中,全自动安全节能高效蒸汽凝水机还包括冷凝箱,冷凝层设于冷凝箱内,且为多个,加热水箱与冷凝箱通过通气孔连通,通气孔位于电热器上方。由此,设有冷凝箱,可以方便冷凝层的安装固定,为加热形成的蒸汽提供较大的冷却空间。
在一些实施方式中,各冷凝层上开设有多个通孔,各冷凝层上的通孔 逐渐缩小。由此,可以增大蒸汽的流动速度,以及提高蒸汽的冷却面积,很大程度上避免了壳体内气压过高,保证了使用的安全性。
在一些实施方式中,进水水箱、加热水箱和冷凝层均位于储水箱上方。由此,方便冷凝水从上而下收集。
在一些实施方式中,进水水箱的进水口处设有电磁阀开关,进水水箱内设有浮具,浮具上方设有电磁阀感应器,电磁阀感应器与电磁阀开关电连接。由此,设有电磁阀开关和浮具,因此,当进水水箱内的水到达一定水位后,电磁阀感应器工作,使得与之连接的电磁阀开关闭合,进水口停止进水,有效防止水溢出到储水箱。
在一些实施方式中,冷凝箱内设有压力开关,压力开关与电热器电连接。由此,当冷凝箱内的压力过高时,压力开关控制电热器停止工作,防止蒸汽的继续产生,使得壳体内气压在安全范围内,保证使用安全。
在一些实施方式中,储水箱内设有水位控制开关,水位控制开关与电热器电连接。由此,当储水箱内的蒸馏水达到一定液位后,电热器停止继续加热,保证使用的安全性。
在一些实施方式中,冷凝箱的底部倾斜设置,冷凝箱与储水箱的连通孔位于冷凝箱底部的边缘处。由此,便于冷凝水流入到储水箱内。
附图说明
图1是本发明的全自动安全节能高效蒸汽凝水机的剖视结构示意图;
图2是本发明全自动安全节能高效蒸汽凝水机中冷凝层的结构示意图。
具体实施方式
下面结合附图对本发明作进一步详细的说明。
参照图1至图2:全自动安全节能高效蒸汽凝水机,包括壳体1、进水水箱2、加热水箱3、冷凝层4和储水箱5,进水水箱2、加热水箱3、冷凝层4和储水箱5均设于壳体1内,进水水箱2、加热水箱3、冷凝层4和储水箱5依次连通,进水水箱2一侧设有进水口21,储水箱5一侧设有出水口51,加热水箱3内设有电热器6,电热器6位于加热水箱3内的上部。
其中,进水口21与外接自来水连通,外界自来水通过进水口21可以进入到进水水箱2内;然后水再进入到加热水箱3,电热器6对其表面的水进行加热,并产生蒸汽;产生的蒸汽进入到冷凝层4进行冷凝,冷凝后得到的蒸馏水进入到储水箱5中存储;通过出水口51可以将蒸馏水排出。经过该全自动安全节能高效蒸汽凝水机得到的蒸馏水具有无菌、无毒和容易被人体吸收的特点。
进水水箱2与加热水箱3通过过流口7连通,过流口7位于电热器6的下方。从而,使得进水水箱2内的低温水从电热器6的下方通入到加热水箱3处,使得电热器6表面加热的水温不受新进入水源的影响,提高了电热器6的工作效率。取代了现有的电热器需要将整个水箱内的水加热,实现水汽蒸发,该全自动安全节能高效蒸汽凝水机避免了新入水源对加热过程中水温的影响。
本发明的全自动安全节能高效蒸汽凝水机还包括冷凝箱8,冷凝层4设于冷凝箱8内,且为多个,加热水箱3与冷凝箱8通过通气孔9连通,通气孔9位于电热器6上方。各冷凝层4上开设有多个通孔41。在实际使用过程中,冷凝层4为五个,并在冷凝箱8内依次排列,沿着蒸汽的流动方向,冷凝层4上的通孔41逐渐缩小。
由此,靠近电热器6一侧的冷凝层4上的通孔41较大,使得电热器6处产生的蒸汽能够快速通过冷凝层4,且在通孔41处冷凝形成水珠流下;随着各冷凝层4上通孔41的缩小,冷凝面积增加,实现蒸汽的快速冷却,最终得到水珠,流至储水箱5内得到冷凝水。
进水水箱2、加热水箱3和冷凝层4均位于储水箱5上方。
进水水箱2的进水口21处设有电磁阀开关10,进水水箱2内设有浮具20,浮具20上方设有电磁阀感应器30,电磁阀感应器30与电磁阀开关10电连接。进水水箱2内的液面逐渐上升时,浮具20逐渐上升;当浮具20顶部的电磁阀感应器30触碰到进水水箱2的顶部时,电磁阀感应器30控制电磁阀开关10关闭,从而使得进水口21停止进水。反之,进水口21内可以继续进水。
在实际使用过程中,当进水水箱2内的水到达最高水位后,电热器6上方的水位高出电热器8~10mm,可以实现电热器对水的快速加热。
冷凝箱8内设有压力开关40,压力开关40与电热器6电连接。设有压力开关40,因此,当冷凝箱8内的气压过高时,压力开关40断开,从而使得电热器6断电,电热器6停止对水加热,避免冷凝箱8内气压进一步升高,保证了使用时的安全性。
储水箱5内设有水位控制开关50,水位控制开关50与电热器6电连接。当储水箱5内的水触碰到水位控制开关50时,表面储水箱5内的水位已经达到最高水位,水位控制开关50断开,使得电热器6断电,停止水蒸气的继续产生。
冷凝箱8的底部倾斜设置,冷凝箱8与储水箱5的连通孔60位于冷凝箱8底部的边缘处。从而,方便经过冷凝层4后的水珠能够沿着倾斜面快速流入储水箱5内。
以上所述的仅是本发明的优选实施方式,应当指出,对于本领域的普通技术人员来说,在不脱离本发明创造构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。

Claims (9)

  1. 全自动安全节能高效蒸汽凝水机,其特征在于,包括壳体(1)、进水水箱(2)、加热水箱(3)、冷凝层(4)和储水箱(5),所述进水水箱(2)、加热水箱(3)、冷凝层(4)和储水箱(5)均设于壳体(1)内,所述进水水箱(2)、加热水箱(3)、冷凝层(4)和储水箱(5)依次连通,所述进水水箱(2)一侧设有进水口(21),所述储水箱(5)一侧设有出水口(51),所述加热水箱(3)内设有电热器(6),所述电热器(6)位于加热水箱(3)内的上部。
  2. 根据权利要求1所述的全自动安全节能高效蒸汽凝水机,其特征在于,所述进水水箱(2)与加热水箱(3)通过过流口(7)连通,所述过流口(7)位于电热器(6)的下方。
  3. 根据权利要求2所述的全自动安全节能高效蒸汽凝水机,其特征在于,还包括冷凝箱(8),所述冷凝层(4)设于冷凝箱(8)内,且为多个,所述加热水箱(3)与冷凝箱(8)通过通气孔(9)连通,所述通气孔(9)位于电热器(6)上方。
  4. 根据权利要求3所述的全自动安全节能高效蒸汽凝水机,其特征在于,各所述冷凝层(4)上开设有多个通孔(41),各冷凝层(4)上的通孔(41)逐渐缩小。
  5. 根据权利要求1~4任一项所述的全自动安全节能高效蒸汽凝水机,其特征在于,所述进水水箱(2)、加热水箱(3)和冷凝层(4)均位于储水箱(5)上方。
  6. 根据权利要求5所述的全自动安全节能高效蒸汽凝水机,其特征在于,所述进水水箱(2)的进水口(21)处设有电磁阀开关(10),所述进水水箱(2)内设有浮具(20),所述浮具(20)上方设有电磁阀感应器(30),所述电磁阀感应器(30)与电磁阀开关(10)电连接。
  7. 根据权利要求3或4所述的全自动安全节能高效蒸汽凝水机,其特征在于,所述冷凝箱(8)内设有压力开关(40),所述压力开关(40)与电热器(6)电连接。
  8. 根据权利要求6所述的全自动安全节能高效蒸汽凝水机,其特征在于,所述储水箱(5)内设有水位控制开关(50),所述水位控制开关(50)与电热器(6)电连接。
  9. 根据权利要求7所述的全自动安全节能高效蒸汽凝水机,其特征在于,所述冷凝箱(8)的底部倾斜设置,所述冷凝箱(8)与储水箱(5)的连通孔(60)位于冷凝箱(8)底部的边缘处。
PCT/CN2018/087177 2017-09-15 2018-05-16 全自动安全节能高效蒸汽凝水机 WO2019052207A1 (zh)

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