WO2019218890A1 - 一种可调节恒温出水装置 - Google Patents

一种可调节恒温出水装置 Download PDF

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Publication number
WO2019218890A1
WO2019218890A1 PCT/CN2019/085740 CN2019085740W WO2019218890A1 WO 2019218890 A1 WO2019218890 A1 WO 2019218890A1 CN 2019085740 W CN2019085740 W CN 2019085740W WO 2019218890 A1 WO2019218890 A1 WO 2019218890A1
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WIPO (PCT)
Prior art keywords
water
control unit
temperature
mixing valve
generator
Prior art date
Application number
PCT/CN2019/085740
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English (en)
French (fr)
Inventor
项举华
项翔
Original Assignee
Xiang Juhua
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Publication date
Application filed by Xiang Juhua filed Critical Xiang Juhua
Publication of WO2019218890A1 publication Critical patent/WO2019218890A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B13/00Adaptations of machines or engines for special use; Combinations of machines or engines with driving or driven apparatus; Power stations or aggregates
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K11/00Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves
    • F16K11/02Multiple-way valves, e.g. mixing valves; Pipe fittings incorporating such valves with all movable sealing faces moving as one unit
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/02Actuating devices; Operating means; Releasing devices electric; magnetic
    • F16K31/04Actuating devices; Operating means; Releasing devices electric; magnetic using a motor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/44Mechanical actuating means
    • F16K31/50Mechanical actuating means with screw-spindle or internally threaded actuating means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/44Mechanical actuating means
    • F16K31/53Mechanical actuating means with toothed gearing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K37/00Special means in or on valves or other cut-off apparatus for indicating or recording operation thereof, or for enabling an alarm to be given

Definitions

  • the utility model relates to an adjustable thermostatic water discharge device.
  • the present invention provides an adjustable thermostatic water discharge device.
  • the technical solutions adopted are as follows:
  • An adjustable thermostatic water discharge device comprising a mixing valve, a temperature sensor, a motor drive module, and a control unit;
  • the water mixing valve includes a hot water inlet for connecting to a hot water source, a cold water inlet for connecting to a cold water source, a warm water outlet for warm water output, and for adjusting hot water input and a cold water input proportional spool to control the temperature of the output warm water by adjusting the ratio of the hot water input to the cold water input through the spool;
  • the temperature sensor is configured to acquire a temperature of output warm water, and the temperature sensor and the control unit Electrically connecting, the temperature data of the output warm water is sent to the control unit, the temperature data of the output warm water is compared with the set temperature value by the control unit, and the control unit is electrically connected to the motor drive module, the motor The driving module is connected to the spool of the mixing valve.
  • the motor driving module is driven by the control power source, and the motor driving module drives the The spool of the mixing valve, through which the hot water input and the cold water input are adjusted to control the temperature of the warm water.
  • the generator is connected to a hot water input port, a cold water input port or a warm water outlet of the mixing valve to generate electricity by a fluid, the generator and the battery
  • the module is electrically connected to store electrical energy generated by the generator through a battery module; the battery module is electrically connected to the motor driving module and/or the control unit, to the motor driving module and/or the The control unit is powered.
  • the generator includes a connecting pipe to connect the generator to a fluid pipe through the connecting pipe, and a stator and a rotor are disposed in the connecting pipe to drive the fluid in the connecting pipe The rotor performs the cutting magnetic line motion to generate electrical energy.
  • the motor drive module comprises a motor, a drive screw, a gear
  • an output end of the motor is connected to the driving screw, the driving screw is meshed with the gear to rotate by a motor driving gear, and the gear center is connected with a spool of the mixing valve.
  • the valve core of the mixing valve is adjusted.
  • the temperature sensor is disposed at a warm water output end of the water mixing valve.
  • control unit comprises an electrically connected wire control box and a microprocessor, and the wire control box is provided with a temperature setting button and a water amount setting button.
  • the utility model has the beneficial effects that: before use or during use, the water temperature can be accurately controlled according to the needs of the user, the user's use comfort is improved, and the generator and the battery module are used for self-power generation. , simplifying the installation process and providing the possibility to upgrade existing thermostatic water outlets.
  • FIG. 1 is a schematic structural view of an embodiment of the present invention
  • FIG. 2 is a schematic structural view of a generator according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural view of a motor drive module according to an embodiment of the present invention.
  • an adjustable thermostatic water discharge device includes a mixing valve 1, a temperature sensor 2, a motor driving module 3, and a control unit 4;
  • the mixing valve 1 includes a water supply source for connection The hot water input port, the cold water input port for connecting with the cold water source, the warm water outlet for the warm water output, wherein the hot water source may be a water heater or other hot water tank, and the cold water source may be a water pipe, the mixed water
  • the valve 1 further includes a spool for adjusting the ratio of the hot water input to the cold water input to adjust the temperature of the output warm water by adjusting the ratio of the hot water input to the cold water input through the spool;
  • the temperature sensor 2 is used to obtain the temperature of the output warm water, and the temperature sensor 2 is electrically connected to the control unit 4, and the temperature sensor 2 can be provided with two: one is set at the hot water inlet and the other, and the other is set in the cold water.
  • the input port calculates the adjustment ratio of the valve core according to the hot water temperature, the hot water flow rate, the cold water temperature, and the cold water flow rate.
  • the temperature sensor 2 is one, and is disposed at the warm water output end of the mixing valve 1 to directly obtain the output.
  • the temperature sensor 2 sends temperature data of the output warm water to the control unit 4, and the temperature data of the output warm water is compared with the set temperature value by the control unit 4, the control unit 4 and the
  • the motor drive module 3 is electrically connected, and the motor drive module 3 is connected to the spool of the mixing valve 1 .
  • the motor drive is driven by the control power source.
  • Module 3 drives the mixing valve 1 through the motor driving module 3
  • the spool is further controlled by the spool to regulate the hot water input and the cold water input to control the temperature of the warm water.
  • the motor drive module 3 and the control unit 4 in the above embodiments need to consume electric energy.
  • the generator is also included in the embodiment. 5 and a battery module 6, the generator 5 is connected to the hot water inlet, the cold water inlet or the warm water outlet of the mixing valve 1 to pass the fluid in the hot water inlet, the cold water inlet or the warm water outlet Generating, the generator 5 is electrically connected to the battery module 6, and the electric energy generated by the generator 5 is stored by the battery module 6; the battery module 6 and the motor driving module 3 and/or the
  • the control unit 4 is electrically connected to the motor drive module 3 and/or the control unit 4.
  • the battery module 6 of the above-mentioned improvement includes a battery, a battery management chip, etc., and the technical solutions familiar to those skilled in the art can be used. It will not be described in detail in this embodiment.
  • the generator 5 includes a connecting pipe 51, and two ends of the connecting pipe 51 are provided with a thread or a connecting head to pass the generator 5 through the connecting pipe 51.
  • the connecting pipe 51 in this embodiment is threaded into the tap water pipe, and the connecting pipe 51 is provided with a stator 52 and a rotor 53, wherein the stator 52 is wound.
  • the rotor 53 is fixed with a permanent magnet to drive the rotor 53 to perform cutting magnetic line motion through the fluid in the connecting pipe 51, thereby generating electric energy.
  • the motor driving module 3 includes a motor 31, a driving screw 32, and a gear 33.
  • the motor 31 uses a forward-reverse motor 31, and the output thereof The end is connected to the driving screw 32, the driving screw 32 meshes with the gear 33 to drive the gear 3 3 to rotate by the motor 31, and the center of the gear 33 is connected with the spool of the mixing valve 1
  • the valve core of the mixing valve 1 is adjusted, wherein the gear 33 can be a common circular gear 33, and the sector gear 33 can also be used according to the torque and space design.
  • control unit 4 includes an electrically connected wire control box and a microprocessor, and the wire control box may be designed to be installed in a room, and the wire control is installed.
  • the box is provided with a temperature setting button and a water amount setting button.
  • an adjustable thermostatic water discharge device includes a mixing valve 1, a temperature sensor 2, a motor driving module 3, and a control unit 4;
  • the mixing valve 1 includes a water supply source for connection The hot water input port, the cold water input port for connecting with the cold water source, the warm water outlet for the warm water output, wherein the hot water source may be a water heater or other hot water tank, and the cold water source may be a water pipe, the mixed water
  • the valve 1 further includes a spool for adjusting the ratio of the hot water input to the cold water input to adjust the temperature of the output warm water by adjusting the ratio of the hot water input to the cold water input through the spool;
  • the temperature sensor 2 is used to obtain the temperature of the output warm water, and the temperature sensor 2 is electrically connected to the control unit 4, and the temperature sensor 2 can be provided with two: one is set at the hot water inlet and the other, and the other is set in the cold water.
  • the input port calculates the adjustment ratio of the valve core according to the hot water temperature, the hot water flow rate, the cold water temperature, and the cold water flow rate.
  • the temperature sensor 2 is one, and is disposed at the warm water output end of the mixing valve 1 to directly obtain the output.
  • the temperature sensor 2 sends temperature data of the output warm water to the control unit 4, and the temperature data of the output warm water is compared with the set temperature value by the control unit 4, the control unit 4 and the
  • the motor drive module 3 is electrically connected, and the motor drive module 3 is connected to the spool of the mixing valve 1 .
  • the motor drive is driven by the control power source.
  • Module 3 and driving the spool of the mixing valve 1 through the motor driving module 3, and then passing through the spool Hot and cold water input section inputs the output hot water temperature control.
  • the motor drive module 3 and the control unit 4 in the above embodiment need to consume electric energy.
  • the generator is also included in the embodiment. 5 and a battery module 6, the generator 5 is connected to the hot water inlet, the cold water inlet or the warm water outlet of the mixing valve 1 to pass the fluid in the hot water inlet, the cold water inlet or the warm water outlet Generating, the generator 5 is electrically connected to the battery module 6, and the electric energy generated by the generator 5 is stored by the battery module 6; the battery module 6 and the motor driving module 3 and/or the Control unit 4 is electrically connected, The power supply module 3 and/or the control unit 4 are powered.
  • the battery module 6 including the battery, the battery management chip, and the like in the above-mentioned improvement may adopt a technical solution familiar to those skilled in the art, and is no longer in this embodiment. Repeated.
  • the generator 5 includes a connecting pipe 51, and two ends of the connecting pipe 51 are provided with a thread or a connecting head to pass the generator 5 through the connecting pipe 51.
  • the connecting pipe 51 in this embodiment is threaded into the tap water pipe, and the connecting pipe 51 is provided with a stator 52 and a rotor 53, wherein the stator 52 is wound.
  • the rotor 53 is fixed with a permanent magnet to drive the rotor 53 to perform cutting magnetic line motion through the fluid in the connecting pipe 51, thereby generating electric energy.
  • the motor drive module 3 includes a motor 31, a drive screw 32, and a gear 33.
  • the motor 31 uses a forward/reverse motor 31, and the output thereof.
  • the end is connected to the driving screw 32, the driving screw 32 meshes with the gear 33 to drive the gear 3 3 to rotate by the motor 31, and the center of the gear 33 is connected with the spool of the mixing valve 1
  • the valve core of the mixing valve 1 is adjusted, wherein the gear 33 can be a common circular gear 33, and the sector gear 33 can also be used according to the torque and space design.
  • control unit 4 includes an electrically connected wire control box and a microprocessor, and the wire control box can be designed to be installed in a room, the wire control The box is provided with a temperature setting button and a water amount setting button.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Domestic Plumbing Installations (AREA)
  • Temperature-Responsive Valves (AREA)
  • Domestic Hot-Water Supply Systems And Details Of Heating Systems (AREA)

Abstract

一种可调节恒温出水装置,包括混水阀(1)、温度传感器(2)、电机驱动模块(3)、控制单元(4);混水阀(1)包括热水输入口、冷水输入口、温水输出口、阀芯;温度传感器(2)用于获取输出温水的温度,将输出温水的温度数据发送给控制单元(4);电机驱动模块(3)与混水阀(1)的阀芯传动连接,通过阀芯调节热水输入与冷水输入控制输出温水的温度;还包括发电机(5)以及电池模组(6),发电机(5)通过流体发电,由电池模组(6)存储发电机(5)产生的电能,并为电机驱动模块(3)及/或控制单元(4)供电。可调节恒温出水装置能够根据使用者的需要实现精确控制出水温度,提高使用者的使用舒适性,且采用发电机(5)以及电池模组(6)进行自发电,简化了安装工艺,为现有的恒温出水装置进行升级提供了可能性。

Description

一种可调节恒温出水装置
技术领域
[0001] 本实用新型涉及一种可调节恒温出水装置。
背景技术
[0002] 现如今在市场上家用热水器领域包括燃气热水器, 太阳能热水器, 以及电热水 器等, 目前市场上也有对出水温度进行设定的热水器, 提高使用时的舒适程度 , 但是这种可设定出水温度的热水器所采用的控制面板一般集成在新安装的热 水器整机中, 不能在传统热水器上进行升级改造, 且新增的控制面板等如采用 市电供电的方式将使安装工艺复杂化, 并带来安全隐患。
发明概述
技术问题
[0003] 目前市场上也有对出水温度进行设定的热水器, 提高使用时的舒适程度, 但是 这种可设定出水温度的热水器所采用的控制面板一般集成在新安装的热水器整 机中, 不能在传统热水器上进行升级改造, 且新增的控制面板等如采用市电供 电的方式将使安装工艺复杂化, 并带来安全隐患。
问题的解决方案
技术解决方案
[0004] 针对上述问题, 本实用新型提供了一种可调节恒温出水装置。 采用的技术方案 如下:
[0005] 一种可调节恒温出水装置, 包括混水阀、 温度传感器、 电机驱动模块、 控制单 元;
[0006] 所述混水阀包括用于与热水水源连接的热水输入口、 用于与冷水水源连接的冷 水输入口、 用于温水输出的温水输出口, 以及用于调节热水输入与冷水输入比 例的阀芯, 以通过所述阀芯调节热水输入与冷水输入比例进而控制输出温水的 温度;
[0007] 所述温度传感器用于获取输出温水的温度, 且所述温度传感器与所述控制单元 电连接, 将输出温水的温度数据发送给所述控制单元, 通过所述控制单元将输 出温水的温度数据与设置的温度值比较, 所述控制单元与所述电机驱动模块电 连接, 所述电机驱动模块与所述混水阀的阀芯传动连接, 当输出温水的温度数 据与设置的温度值不一致时, 通过所述控制电源驱动所述电机驱动模块, 并通 过所述电机驱动模块带动所述混水阀的阀芯, 进而通过所述阀芯调节热水输入 与冷水输入控制输出温水的温度。
[0008] 还包括发电机以及电池模组, 所述发电机与所述混水阀的热水输入口、 冷水输 入口或温水输出口连接, 以通过流体发电, 所述发电机与所述电池模组电连接 , 通过电池模组存储所述发电机产生的电能; 所述电池模组与所述电机驱动模 块及 /或所述控制单元电连接, 向所述电机驱动模块及 /或所述控制单元供电。
[0009] 优选的, 所述发电机包括连接管, 以通过所述连接管将所述发电机接入流体管 道, 在所述连接管中设有定子、 转子, 以通过连接管内的流体带动所述转子做 切割磁感线运动, 进而产生电能。
[0010] 优选的, 所述电机驱动模块包括电机、 传动丝杆、 齿轮;
[0011] 所述电机的输出端与所述传动丝杆连接, 所述传动丝杆与所述齿轮啮合, 以通 过电机驱动齿轮转动, 所述齿轮中心与所述混水阀的阀芯连接, 以对所述混水 阀的阀芯进行调节。
[0012] 优选的, 所述温度传感器设于所述混水阀的温水输出端。
[0013] 优选的, 所述控制单元包括电连接的线控盒、 微处理器, 所述线控盒设有温度 设定按键、 水量设定按键。
发明的有益效果
有益效果
[0014] 本实用新型的有益效果是: 在使用之前或使用过程中都能够根据使用者的需要 实现精确控制出水温度, 提高使用者的使用舒适性, 且采用发电机以及电池模 组进行自发电, 简化了安装工艺, 为现有的恒温出水装置进行升级提供了可能 性。
对附图的简要说明
附图说明 [0015] 构成本申请的一部分的附图用来提供对本实用新型的进一步理解, 本实用新型 的示意性实施例及其说明用于解释本实用新型, 并不构成对本实用新型的不当 限定。 在附图中:
[0016] 图 1为本实用新型实施例结构示意图;
[0017] 图 2为本实用新型实施例发电机结构示意图;
[0018] 图 3为本实用新型实施例电机驱动模块结构示意图。
实施该发明的最佳实施例
本发明的最佳实施方式
[0019] 为了使本实用新型的目的、 技术方案及优点更加清楚明白, 以下结合附图及实 施例, 对本实用新型进行进一步详细说明。 应当理解, 此处所描述的具体实施 例仅用于解释本实用新型, 并不用于限定本实用新型。
发明实施例
实施例
[0020] 如图 1所示, 一种可调节恒温出水装置, 包括混水阀 1、 温度传感器 2、 电机驱 动模块 3、 控制单元 4; 所述混水阀 1包括用于与热水水源连接的热水输入口、 用 于与冷水水源连接的冷水输入口、 用于温水输出的温水输出口, 其中热水水源 可以是热水器或其它热水水箱, 冷水水源可以是自来水管, 所述混水阀 1还包括 用于调节热水输入与冷水输入比例的阀芯, 以通过所述阀芯调节热水输入与冷 水输入比例进而控制输出温水的温度;
[0021] 所述温度传感器 2用于获取输出温水的温度, 且所述温度传感器 2与所述控制单 元 4电连接, 温度传感器 2可以设置两个: 一个设于热水出入口, 一个设于冷水 输入口, 根据热水温度、 热水流量、 冷水温度、 冷水流量计算从而控制阀芯的 调节比例, 本实施例中温度传感器 2为一个, 设于混水阀 1温水输出端, 以直接 获得输出温水的温度数据, 该温度传感器 2将输出温水的温度数据发送给所述控 制单元 4, 通过所述控制单元 4将输出温水的温度数据与设置的温度值比较, 所 述控制单元 4与所述电机驱动模块 3电连接, 所述电机驱动模块 3与所述混水阀 1 的阀芯传动连接, 当输出温水的温度数据与设置的温度值不一致时, 通过所述 控制电源驱动所述电机驱动模块 3, 并通过所述电机驱动模块 3带动所述混水阀 1 的阀芯, 进而通过所述阀芯调节热水输入与冷水输入控制输出温水的温度。
[0022] 上述实施例方案中的电机驱动模块 3、 控制单元 4需要消耗电能, 如采用市电供 电的方式将使安装工艺复杂化, 且带来安全隐患, 因此本实施例中还包括发电 机 5以及电池模组 6, 所述发电机 5与所述混水阀 1的热水输入口、 冷水输入口或 温水输出口连接, 以通过热水输入口、 冷水输入口或温水输出口中的流体发电 , 所述发电机 5与所述电池模组 6电连接, 通过电池模组 6存储所述发电机 5产生 的电能; 所述电池模组 6与所述电机驱动模块 3及 /或所述控制单元 4电连接, 向所 述电机驱动模块 3及 /或所述控制单元 4供电, 上述改进方案中的电池模组 6包括蓄 电池、 电池管理芯片等皆可以采用本领域技术人员熟悉的技术方案, 在本实施 例中不再累述。
[0023] 如图 2所示, 本实施例中, 所述发电机 5包括连接管 51, 连接管 51的两端设有螺 纹或连接头, 以通过所述连接管 51将所述发电机 5接入流体管道如热水管道、 冷 水管道或温水管道中, 本实施例中的连接管 51通过螺纹接入自来水管道, 在所 述连接管 51中设有定子 52、 转子 53 , 其中定子 52绕有线圈, 转子 53固定有永磁 体, 以通过连接管 51内的流体带动所述转子 53做切割磁感线运动, 进而产生电 能。
[0024] 如图 3所示, 作为上述实施例方案的部分优选方案, 所述电机驱动模块 3包括电 机 31、 传动丝杆 32、 齿轮 33 ; 所述电机 31采用正反转电机 31, 其输出端与所述 传动丝杆 32连接, 所述传动丝杆 32与所述齿轮 33啮合, 以通过电机 31驱动齿轮 3 3转动, 所述齿轮 33中心与所述混水阀 1的阀芯连接, 以对所述混水阀 1的阀芯进 行调节, 其中齿轮 33可以是普通圆形齿轮 33 , 也可以根据力矩、 空间设计需要 采用扇形齿轮 33。
[0025] 作为上述实施例方案的部分优选方案, 所述控制单元 4包括电连接的线控盒、 微处理器, 所述线控盒可以采用防水结构设计, 以便安装于室内, 所述线控盒 设有温度设定按键、 水量设定按键。
[0026] 本实用新型不局限于上述最佳实施方式, 任何人在本发明的启示下都可得出其 它各种形式的产品。 但不论在形状或结构上作任何变化, 凡在本实用新型的精 神和原则之内所作的任何修改、 等同替换和改进等, 均应包含在本实用新型的 保护范围之内。
本发明的实施方式
[0027] 为了使本实用新型的目的、 技术方案及优点更加清楚明白, 以下结合附图及实 施例, 对本实用新型进行进一步详细说明。 应当理解, 此处所描述的具体实施 例仅用于解释本实用新型, 并不用于限定本实用新型。
实施例
[0028] 如图 1所示, 一种可调节恒温出水装置, 包括混水阀 1、 温度传感器 2、 电机驱 动模块 3、 控制单元 4; 所述混水阀 1包括用于与热水水源连接的热水输入口、 用 于与冷水水源连接的冷水输入口、 用于温水输出的温水输出口, 其中热水水源 可以是热水器或其它热水水箱, 冷水水源可以是自来水管, 所述混水阀 1还包括 用于调节热水输入与冷水输入比例的阀芯, 以通过所述阀芯调节热水输入与冷 水输入比例进而控制输出温水的温度;
[0029] 所述温度传感器 2用于获取输出温水的温度, 且所述温度传感器 2与所述控制单 元 4电连接, 温度传感器 2可以设置两个: 一个设于热水出入口, 一个设于冷水 输入口, 根据热水温度、 热水流量、 冷水温度、 冷水流量计算从而控制阀芯的 调节比例, 本实施例中温度传感器 2为一个, 设于混水阀 1温水输出端, 以直接 获得输出温水的温度数据, 该温度传感器 2将输出温水的温度数据发送给所述控 制单元 4, 通过所述控制单元 4将输出温水的温度数据与设置的温度值比较, 所 述控制单元 4与所述电机驱动模块 3电连接, 所述电机驱动模块 3与所述混水阀 1 的阀芯传动连接, 当输出温水的温度数据与设置的温度值不一致时, 通过所述 控制电源驱动所述电机驱动模块 3, 并通过所述电机驱动模块 3带动所述混水阀 1 的阀芯, 进而通过所述阀芯调节热水输入与冷水输入控制输出温水的温度。
[0030] 上述实施例方案中的电机驱动模块 3、 控制单元 4需要消耗电能, 如采用市电供 电的方式将使安装工艺复杂化, 且带来安全隐患, 因此本实施例中还包括发电 机 5以及电池模组 6, 所述发电机 5与所述混水阀 1的热水输入口、 冷水输入口或 温水输出口连接, 以通过热水输入口、 冷水输入口或温水输出口中的流体发电 , 所述发电机 5与所述电池模组 6电连接, 通过电池模组 6存储所述发电机 5产生 的电能; 所述电池模组 6与所述电机驱动模块 3及 /或所述控制单元 4电连接, 向所 述电机驱动模块 3及 /或所述控制单元 4供电, 上述改进方案中的电池模组 6包括蓄 电池、 电池管理芯片等皆可以采用本领域技术人员熟悉的技术方案, 在本实施 例中不再累述。
[0031] 如图 2所示, 本实施例中, 所述发电机 5包括连接管 51, 连接管 51的两端设有螺 纹或连接头, 以通过所述连接管 51将所述发电机 5接入流体管道如热水管道、 冷 水管道或温水管道中, 本实施例中的连接管 51通过螺纹接入自来水管道, 在所 述连接管 51中设有定子 52、 转子 53 , 其中定子 52绕有线圈, 转子 53固定有永磁 体, 以通过连接管 51内的流体带动所述转子 53做切割磁感线运动, 进而产生电 能。
[0032] 如图 3所示, 作为上述实施例方案的部分优选方案, 所述电机驱动模块 3包括电 机 31、 传动丝杆 32、 齿轮 33 ; 所述电机 31采用正反转电机 31, 其输出端与所述 传动丝杆 32连接, 所述传动丝杆 32与所述齿轮 33啮合, 以通过电机 31驱动齿轮 3 3转动, 所述齿轮 33中心与所述混水阀 1的阀芯连接, 以对所述混水阀 1的阀芯进 行调节, 其中齿轮 33可以是普通圆形齿轮 33 , 也可以根据力矩、 空间设计需要 采用扇形齿轮 33。
[0033] 作为上述实施例方案的部分优选方案, 所述控制单元 4包括电连接的线控盒、 微处理器, 所述线控盒可以采用防水结构设计, 以便安装于室内, 所述线控盒 设有温度设定按键、 水量设定按键。
[0034] 本实用新型不局限于上述最佳实施方式, 任何人在本发明的启示下都可得出其 它各种形式的产品。 但不论在形状或结构上作任何变化, 凡在本实用新型的精 神和原则之内所作的任何修改、 等同替换和改进等, 均应包含在本实用新型的 保护范围之内。

Claims

权利要求书
[权利要求 1] 一种可调节恒温出水装置, 其特征在于:
包括混水阀、 温度传感器、 电机驱动模块、 控制单元;
所述混水阀包括用于与热水水源连接的热水输入口、 用于与冷水水源 连接的冷水输入口、 用于温水输出的温水输出口, 以及用于调节热水 输入与冷水输入比例的阀芯, 以通过所述阀芯调节热水输入与冷水输 入比例进而控制输出温水的温度;
所述温度传感器用于获取输出温水的温度, 且所述温度传感器与所述 控制单元电连接, 将输出温水的温度数据发送给所述控制单元, 通过 所述控制单元将输出温水的温度数据与设置的温度值比较, 所述控制 单元与所述电机驱动模块电连接, 所述电机驱动模块与所述混水阀的 阀芯传动连接, 当输出温水的温度数据与设置的温度值不一致时, 通 过控制电源驱动所述电机驱动模块, 并通过所述电机驱动模块带动所 述混水阀的阀芯, 进而通过所述阀芯调节热水输入与冷水输入控制输 出温水的温度;
还包括发电机以及电池模组, 所述发电机与所述混水阀的热水输入口 、 冷水输入口或温水输出口连接, 以通过流体发电, 所述发电机与所 述电池模组电连接, 通过电池模组存储所述发电机产生的电能; 所述 电池模组与所述电机驱动模块及 /或所述控制单元电连接, 向所述电 机驱动模块及 /或所述控制单元供电。
[权利要求 2] 根据权利要求 i所述的一种可调节恒温出水装置, 其特征在于,
所述发电机包括连接管, 以通过所述连接管将所述发电机接入流体管 道, 在所述连接管中设有定子、 转子, 以通过连接管内的流体带动所 述转子做切割磁感线运动, 进而产生电能。
[权利要求 3] 根据权利要求 i所述的一种可调节恒温出水装置, 其特征在于,
所述电机驱动模块包括电机、 传动丝杆、 齿轮; 所述电机的输出端与所述传动丝杆连接, 所述传动丝杆与所述齿轮啮 合, 以通过电机驱动齿轮转动, 所述齿轮中心与所述混水阀的阀芯连 接, 以对所述混水阀的阀芯进行调节。
[权利要求 4] 根据权利要求 1所述的一种可调节恒温出水装置, 其特征在于, 所述温度传感器设于所述混水阀的温水输出端。
[权利要求 5] 根据权利要求 1所述的一种可调节恒温出水装置, 其特征在于, 所述控制单元包括电连接的线控盒、 微处理器, 所述线控盒设有温度 设定按键、 水量设定按键。
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