CN219460882U - Water purifying and drinking machine with cool and white opening - Google Patents
Water purifying and drinking machine with cool and white opening Download PDFInfo
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Abstract
Description
【技术领域】【Technical field】
本申请涉及净饮水机技术领域,尤其涉及带凉白开的净饮水机。The present application relates to the technical field of clean water dispensers, in particular to clean water dispensers with a cooling device.
【背景技术】【Background technique】
传统的净饮水机只能出没有经过加热的常温水和经过加热的热开水,经过加热的热开水虽然健康,但是不能立即饮用,所以现有的净饮水机都会将热开水通过制冷模块进行热交换,以达到冷却的效果,进而得到又健康又常温的凉白开,但是额外增加的制冷模块能耗较高、成本较高,而且如果选用能耗低成本低的制冷模块,其对热开水的换热效率也会大大降低,所以现在需要一种成本既低换热效率又高的净饮水机。Traditional water purifiers can only produce unheated normal temperature water and heated hot water. Although heated hot water is healthy, it cannot be drunk immediately, so the existing water purifiers will heat the hot water through the refrigeration module. Exchange, in order to achieve the effect of cooling, and then get a healthy and normal temperature cool boiled water, but the additional refrigeration module has high energy consumption and high cost, and if a refrigeration module with low energy consumption and low cost is selected, its replacement of hot boiled water The thermal efficiency will also be greatly reduced, so now a water purifier with low heat exchange efficiency and high cost is needed.
【实用新型内容】【Content of utility model】
本实用新型公开了带凉白开的净饮水机,以解决现有净饮水机能耗高成本高或者换热效率低的问题。The utility model discloses a clean water dispenser with cooling and white opening, which solves the problems of high energy consumption and high cost or low heat exchange efficiency of the existing clean water dispenser.
为解决上述问题,本实用新型提出了如下方案:带凉白开的净饮水机,包括机体,所述机体包括加热模块、过滤模块和与所述加热模块连接的冷却模块,所述冷却模块包括冷却水箱,所述冷却水箱上设有高位出水口和设于高位出水口下方的低位出水口,所述低位出水口下方设有用于连通所述冷却水箱和所述过滤模块的废水出水口的进水口,所述低位出水口连接有快速冷却控制模块,以控制所述低位出水口与所述高位出水口同时出水,同时控制所述过滤模块通过所述进水口大量排水至所述冷却水箱内以加快冷却所述加热模块产生的热开水。In order to solve the above-mentioned problems, the utility model proposes the following scheme: a clean drinking water dispenser with a cool white switch, including a body, the body includes a heating module, a filtering module and a cooling module connected to the heating module, and the cooling module includes a cooling water tank , the cooling water tank is provided with a high-level water outlet and a low-level water outlet located below the high-level water outlet, and a water inlet for connecting the cooling water tank and the waste water outlet of the filtration module is provided below the low-level water outlet, The low-level water outlet is connected with a rapid cooling control module to control the low-level water outlet and the high-level water outlet to output water at the same time, and at the same time control the filter module to discharge a large amount of water into the cooling water tank through the water inlet to speed up cooling The hot water produced by the heating module.
如上所述的带凉白开的净饮水机,所述机体还包括与所述过滤模块连接的机体进水模块、与所述冷却模块连接的机体出水模块,所述加热模块、所述过滤模块、所述冷却模块、所述机体进水模块和所述机体出水模块之间设有管道相互连通,所述加热模块上设有与所述过滤模块连接的第一加热进水口和与所述冷却模块连接的第一加热出水口。As mentioned above, the clean water dispenser with cool and open water, the body also includes a body water inlet module connected to the filter module, a body water outlet module connected to the cooling module, the heating module, the filter module, the The cooling module, the body water inlet module and the body water outlet module are provided with pipes to communicate with each other, and the heating module is provided with a first heating water inlet connected to the filter module and connected to the cooling module. The first heating water outlet.
如上所述的带凉白开的净饮水机,所述快速冷却控制模块包括控制单元、与所述控制单元电性连接的低位排水阀和与所述控制单元电性连接的温度传感器,所述低位排水阀设于与所述低位出水口连接的所述管道上,所述温度传感器设于连接所述机体出水模块和所述冷却模块的所述管道上。As mentioned above, the water dispenser with cool and open water, the rapid cooling control module includes a control unit, a low drain valve electrically connected to the control unit and a temperature sensor electrically connected to the control unit, the low drain The valve is arranged on the pipeline connected to the low-level water outlet, and the temperature sensor is arranged on the pipeline connected to the body water outlet module and the cooling module.
如上所述的带凉白开的净饮水机,所述过滤模块与所述机体出水模块之间设有第一控制阀,所述第一控制阀上设有与所述过滤模块连接的常温进水口、与所述冷却模块连接的第二加热进水口和与所述机体出水模块连接的第一机体出水口。In the above-mentioned clean water dispenser with cool and open water, a first control valve is provided between the filter module and the water outlet module of the body, and a normal temperature water inlet connected to the filter module is provided on the first control valve. The second heating water inlet connected with the cooling module and the first body water outlet connected with the body water outlet module.
如上所述的带凉白开的净饮水机,所述冷却模块与所述第二加热进水口之间设有凉白开水箱,所述温度传感器设于连接所述凉白开水箱和所述冷却水箱的所述管道上。As mentioned above with a clean drinking water dispenser with a cool boiled water tank, a cool boiled water tank is provided between the cooling module and the second heating water inlet, and the temperature sensor is arranged on the pipeline connecting the cool boiled water tank and the cooling water tank superior.
如上所述的带凉白开的净饮水机,所述凉白开水箱上设有浮球开关系统,所述浮球开关系统包括设于所述凉白开水箱箱体内侧较低位置的低水位浮球和设于所述凉白开水箱箱体内侧较高位置的高水位浮球。As mentioned above with a clean water dispenser with a cool boiled water tank, a float switch system is provided on the cool boiled water tank, and the float switch system includes a low water level float located at a lower position inside the cool boiled water tank and a The high water level floating ball at the higher position inside the box body of the cool boiled water tank.
如上所述的带凉白开的净饮水机,所述加热模块与所述机体出水模块之间设有第二控制阀,所述第二控制阀上设有与所述第一加热出水口连接的第三加热进水口、与所述冷却模块连接的第二加热出水口和与所述机体出水模块连接的第二机体出水口。As mentioned above, the water dispenser with cool and open water, a second control valve is provided between the heating module and the water outlet module of the body, and the second control valve is provided with a first heating outlet connected to the first heating water outlet. Three heating water inlets, a second heating water outlet connected to the cooling module, and a second body water outlet connected to the body water outlet module.
如上所述的带凉白开的净饮水机,所述过滤模块包括与所述机体进水模块连接的前置复合滤芯、与所述前置复合滤芯连接的反渗透滤芯和与所述反渗透滤芯连接的后置活性渗透滤芯,所述反渗透滤芯的出水端作为所述过滤模块的废水出水端与所述冷却模块连接,所述后置活性渗透滤芯的出水端与所述冷却模块的待冷却进水端连接。As mentioned above, the drinking water dispenser with cool and open water, the filter module includes a pre-composite filter element connected to the body water inlet module, a reverse osmosis filter element connected to the pre-composite filter element, and a reverse osmosis filter element connected to the reverse osmosis filter element The post-installed active osmosis filter element, the water outlet end of the reverse osmosis filter element is connected to the cooling module as the wastewater outlet end of the filter module, and the water outlet end of the post-installed active osmosis filter element is connected to the to-be-cooled inlet of the cooling module Water connection.
如上所述的带凉白开的净饮水机,所述加热模块与所述过滤模块之间设有第一控流泵,所述第一控流泵与所述第一加热进水口之间设有流量计。In the above-mentioned clean water dispenser with cooling and white opening, a first flow control pump is provided between the heating module and the filter module, and a flow rate is provided between the first flow control pump and the first heating water inlet. count.
如上所述的带凉白开的净饮水机,所述第二加热进水口与所述冷却模块之间设有第二控流泵。According to the above-mentioned clean water dispenser with a cool and white switch, a second flow control pump is provided between the second heating water inlet and the cooling module.
与现有技术相比,本申请有如下优点:Compared with the prior art, the present application has the following advantages:
本实用新型通过将过滤模块使用后的废水导入冷却模块的冷却水箱中,而且当需要加快对热开水的冷却时,快速冷却控制模块可控制低位出水口打开以使其随着高位出水口同时出水,同时过滤模块通过连接过滤模块的进水口大量排水至所述冷却水箱内以加快冷却,提高了机体的换热效率,进而能调节凉白开的温度,使凉白开流出机体时的温度保持稳定,提升用户良好体验,解决了现有净饮水机能耗高成本高或者换热效率低的问题。The utility model introduces the waste water after the filter module is used into the cooling water tank of the cooling module, and when it is necessary to speed up the cooling of hot boiled water, the rapid cooling control module can control the opening of the low-level water outlet so that water can be discharged simultaneously with the high-level water outlet At the same time, the filter module drains a large amount of water into the cooling water tank through the water inlet of the filter module to speed up the cooling, which improves the heat exchange efficiency of the body, and then can adjust the temperature of the cool water, so that the temperature when the cool water flows out of the body remains stable, improving the user Good experience, which solves the problems of high energy consumption and high cost or low heat exchange efficiency of existing water purifiers.
【附图说明】【Description of drawings】
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍。In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings that need to be used in the description of the embodiments.
图1是本实施例带凉白开的净饮水机的连接方框图;Fig. 1 is the connection block diagram of the clean water dispenser with cool white open in the present embodiment;
图2是本实施例的快速冷却控制模块中各单元之间的连接方框图;Fig. 2 is the connection block diagram between each unit in the rapid cooling control module of the present embodiment;
图3是本实施例中机体出水模块、加热模块、快速冷却控制模块和冷却模块之间连接关系的结构简化示意图;Fig. 3 is a simplified structural diagram of the connection relationship between the body water outlet module, the heating module, the rapid cooling control module and the cooling module in this embodiment;
图4是本实施例中机体进水模块和过滤模块之间连接关系的结构简化示意图。Fig. 4 is a simplified schematic diagram of the connection relationship between the body water inlet module and the filter module in this embodiment.
【具体实施方式】【Detailed ways】
为了使本实用新型解决的技术问题、技术方案及有益效果更加清楚明白,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仅用以解释本实用新型,并不用于限定本实用新型。In order to make the technical problems, technical solutions and beneficial effects solved by the utility model clearer, the utility model will be further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the utility model, and are not intended to limit the utility model.
当本实用新型实施例提及“第一”、“第二”等序数词时,除非根据上下文其确实表达顺序之意,应当理解为仅仅是起区分之用。When the embodiments of the present invention refer to "first", "second" and other ordinal numerals, unless they really express the order according to the context, it should be understood that they are only used for distinction.
在本实用新型的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本实用新型中的具体含义。In the description of the present utility model, it should be noted that, unless otherwise clearly stipulated and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection or a flexible connection. Detachable connection, or integral connection; it can be mechanical connection or electrical connection; it can be direct connection or indirect connection through an intermediary, and it can be the internal communication of two components. Those of ordinary skill in the art can understand the specific meanings of the above terms in the present utility model in specific situations.
如图1-4所示,一种带凉白开的净饮水机,包括机体1,所述机体1包括加热模块8、过滤模块3和与所述加热模块8连接的冷却模块4,所述冷却模块4包括冷却水箱41,所述冷却水箱41上设有高位出水口42和设于高位出水口42下方的低位出水口43,所述低位出水口43下方设有用于连通所述冷却水箱41和所述过滤模块3的废水出水口的进水口44,所述低位出水口43连接有快速冷却控制模块5,以控制所述低位出水口43与所述高位出水口42同时出水,同时控制所述过滤模块3通过所述进水口44大量排水至所述冷却水箱41内以加快冷却所述加热模块8产生的热开水。As shown in Fig. 1-4, a kind of clean water dispenser with cool white open, comprises body 1, and described body 1 comprises heating module 8, filter module 3 and the cooling module 4 that is connected with described heating module 8, and described cooling module 4 includes a cooling water tank 41, the cooling water tank 41 is provided with a high-level water outlet 42 and a low-level water outlet 43 located below the high-level water outlet 42, and the lower water outlet 43 is provided for communicating with the cooling water tank 41 and the The water inlet 44 of the waste water outlet of the filter module 3, the low water outlet 43 is connected with the rapid cooling control module 5, to control the water outlet of the low water outlet 43 and the high water outlet 42 at the same time, and control the filtering The module 3 drains a large amount of water into the cooling water tank 41 through the water inlet 44 to speed up the cooling of the hot boiled water generated by the heating module 8 .
在本实施例中,本实用新型通过将过滤模块3使用后的废水导入冷却模块4的冷却水箱41中,以达到节能环保的效果,成本也会随之降低,而且当需要加快对热开水的冷却时,即当检测出凉白开出水处的温度过高时,快速冷却控制模块5会控制低位出水口43打开,以使其随着高位出水口42同时出水,加大排水量,同时过滤模块3通过连接过滤模块3的进水口44大量排出废水至所述冷却水箱41内,加大进水量,以不断排走冷却水箱41内的与冷却管道热交换过的相对高温废水,从而加快冷却,提高了机体的换热效率,进而能调节凉白开的温度,使凉白开流出机体时的温度保持稳定,提升用户良好体验,解决了现有净饮水机能耗高成本高或者换热效率低的问题。In this embodiment, the utility model introduces the waste water used by the filter module 3 into the cooling water tank 41 of the cooling module 4 to achieve the effect of energy saving and environmental protection, and the cost will be reduced accordingly. During cooling, that is, when it is detected that the temperature at the outlet of cool white water is too high, the rapid cooling control module 5 will control the opening of the low-level water outlet 43, so that it will discharge water at the same time as the high-level water outlet 42 to increase the displacement, and the filter module 3 will pass through at the same time. The water inlet 44 connected to the filter module 3 discharges a large amount of waste water into the cooling water tank 41, and increases the water intake to continuously drain away the relatively high-temperature waste water in the cooling water tank 41 that has been heat-exchanged with the cooling pipe, thereby speeding up cooling and improving the The heat exchange efficiency of the body can then adjust the temperature of the cool water dispenser, so that the temperature when the cool water dispenser flows out of the body remains stable, which improves the user experience and solves the problems of high energy consumption, high cost, or low heat exchange efficiency of existing water purifiers.
在本实施例中,高位出水口42是一直常开的,而且是设置在冷却水箱41较高的位置,设置在冷却水箱41很低的位置的进水口43不断排出过滤模块3的废水至冷却水箱41,废水在冷却水箱41内不断积压,直至废水的水面高度到达高位出水口42,再通过高位出水口42将冷却水箱41内的废水排出。In this embodiment, the high-level water outlet 42 is always open, and is set at a higher position of the cooling water tank 41, and the water inlet 43 set at a very low position of the cooling water tank 41 continuously discharges the waste water from the filter module 3 to the cooling water tank. In the water tank 41 , waste water keeps accumulating in the cooling water tank 41 until the water level of the waste water reaches the high water outlet 42 , and then the waste water in the cooling water tank 41 is discharged through the high water outlet 42 .
优选地,所述过滤模块3的废水出水口与所述进水口44之间设有用于控制废水排出至所述冷却水箱41内的废水阀103,连接所述低位出水口43的管道2和连接所述高位出水口42的管道2均将废水排出至废水口,连接所述过滤模块3的废水出水口和所述进水口44的所述管道2上设有用于控制废水排出至所述冷却水箱41内的废水阀103,当打开废水阀103时,可将过滤模块3产生的废水排出至冷却水箱41内,在正常工作模式下,一开始废水阀103先将部分废水排出至冷却水箱41内,废水阀103关闭,当检测到凉白开出水时的温度过高时,快速冷却控制模块5发出电信号给废水阀103,以使其打开,进而将大量废水排出至冷却水箱41内。Preferably, a waste water valve 103 for controlling the discharge of waste water into the cooling water tank 41 is provided between the waste water outlet of the filter module 3 and the water inlet 44, and the pipeline 2 connected to the low water outlet 43 is connected to The pipes 2 of the high-level water outlet 42 all discharge waste water to the waste water outlet, and the pipes 2 connecting the waste water outlet of the filter module 3 and the water inlet 44 are provided with a valve for controlling the discharge of waste water to the cooling water tank. The waste water valve 103 in 41, when the waste water valve 103 is opened, the waste water generated by the filter module 3 can be discharged into the cooling water tank 41. In the normal working mode, the waste water valve 103 first discharges part of the waste water into the cooling water tank 41 , the waste water valve 103 is closed, and when it is detected that the temperature of the cooling water is too high, the rapid cooling control module 5 sends an electric signal to the waste water valve 103 to open it, and then a large amount of waste water is discharged into the cooling water tank 41.
进一步地,所述机体1还包括与所述过滤模块3连接的机体进水模块6、与所述冷却模块4连接的机体出水模块7,所述加热模块8、所述过滤模块3、所述冷却模块4、所述机体进水模块6和所述机体出水模块7之间设有管道2相互连通,所述加热模块8上设有与所述过滤模块3连接的第一加热进水口81和与所述冷却模块4连接的第一加热出水口82。Further, the body 1 also includes a body water inlet module 6 connected to the filter module 3, a body water outlet module 7 connected to the cooling module 4, the heating module 8, the filter module 3, the The cooling module 4, the body water inlet module 6 and the body water outlet module 7 are provided with pipes 2 to communicate with each other, and the heating module 8 is provided with a first heating water inlet 81 connected to the filter module 3 and The first heating water outlet 82 connected with the cooling module 4 .
在本实施例中,机体进水模块6包括通过管道2与过滤模块3连接的进水嘴,机体出水模块7包括通过管道2与冷却模块4连接的出水嘴,所述加热模块8包括即热模组,用于将常温水加热至热开水,过滤模块3和加热模块8之间设有用于控制输出水流流量的第一控流泵,所述第一控流泵和所述加热模块8之间设有用于显示水流流量的流量计,冷却模块4内设有曲折的冷却管道,所述冷却管道与所述第一加热出水口82连接,用于接收待冷却的热开水。In this embodiment, the body water inlet module 6 includes a water inlet nozzle connected to the filter module 3 through the pipeline 2, the body water outlet module 7 includes a water outlet nozzle connected to the cooling module 4 through the pipeline 2, and the heating module 8 includes an instant heating The module is used to heat normal temperature water to hot boiled water. A first flow control pump for controlling the output water flow is arranged between the filter module 3 and the heating module 8. The first flow control pump and the heating module 8 A flow meter for displaying the water flow is arranged between them, and a tortuous cooling pipe is arranged inside the cooling module 4, and the cooling pipe is connected to the first heating water outlet 82 for receiving hot boiled water to be cooled.
进一步地,所述快速冷却控制模块5包括控制单元51、与所述控制单元51电性连接的低位排水阀52和与所述控制单元51电性连接的温度传感器53,所述低位排水阀52设于与所述低位出水口43连接的所述管道2上,所述温度传感器53设于连接所述机体出水模块7和所述冷却模块4的所述管道2上。Further, the rapid cooling control module 5 includes a control unit 51, a low drain valve 52 electrically connected to the control unit 51 and a temperature sensor 53 electrically connected to the control unit 51, the low drain valve 52 The temperature sensor 53 is arranged on the pipe 2 connected to the low-level water outlet 43 , and the temperature sensor 53 is arranged on the pipe 2 connecting the body water outlet module 7 and the cooling module 4 .
在本实施例中,如图4所示,在连接所述机体出水模块7和所述冷却模块4的所述管道2上设有用于检测流出的凉白开温度的温度传感器53,当温度传感器53检测到凉白开温度过高时,发送电信号至控制单元51上,控制单元51再发送信号至低位排水阀52,使低位排水阀52打开,设置在进水口44和高位出水口42之间且处于冷却水箱41箱体较低位置的低位出水口43会与高位出水口42同时排出冷却水箱41内的废水,同时控制单元51发送电信号至过滤模块,使其进入冲洗模式,过滤模块下在进入冲洗模式时会大量排出产生的废水,以致于进水口大量排入废水至冷却水箱41内,几乎使冷却水箱41内的废水高度保持在能通过高位出水口42排出废水的水面高度。In this embodiment, as shown in FIG. 4 , a temperature sensor 53 is provided on the pipeline 2 connecting the body water outlet module 7 and the cooling module 4 to detect the temperature of the outflow cool water. When the temperature sensor 53 detects When the temperature of the cool white is too high, send an electric signal to the control unit 51, and the control unit 51 sends a signal to the low drain valve 52 to open the low drain valve 52, which is set between the water inlet 44 and the high water outlet 42 and is in a cooling state. The low-level water outlet 43 at the lower position of the water tank 41 will discharge the waste water in the cooling water tank 41 simultaneously with the high-level water outlet 42, and at the same time, the control unit 51 sends an electric signal to the filter module to make it enter the flushing mode, and the filter module enters the flushing mode. During the mode, a large amount of waste water will be discharged, so that the water inlet discharges a large amount of waste water into the cooling water tank 41, almost keeping the height of the waste water in the cooling water tank 41 at the water surface height that can discharge the waste water through the high water outlet 42.
进一步地,所述过滤模块3与所述机体出水模块7之间设有第一控制阀101,所述第一控制阀101上设有与所述过滤模块3连接的常温进水口1011、与所述冷却模块4连接的第二加热进水口1012和与所述机体出水模块7连接的第一机体出水口1013。Further, a first control valve 101 is provided between the filter module 3 and the water outlet module 7 of the body, and the first control valve 101 is provided with a normal temperature water inlet 1011 connected to the filter module 3 and connected to the water outlet module 7. The second heating water inlet 1012 connected to the cooling module 4 and the first body water outlet 1013 connected to the body water outlet module 7 .
在本实施例中,机体1通过第一控制阀101分出常温支路和需要加热的水流支路,所述常温支路为机体进水模块6、过滤模块、第一控制阀101的常温进水口1011、第一控制阀101的第一机体出水口1013和机体出水模块7,由常温支路流出的水为过滤后的常温水,而需要加热的水流支路为机体进水模块6、过滤模块、第一控制阀101的第二加热进水口1012、第一控制阀101的第一机体出水口1013和加热模块8的第一加热进水口81等。In this embodiment, the body 1 is divided into a normal temperature branch and a water flow branch that needs to be heated through the first control valve 101. The water outlet 1011, the first body water outlet 1013 of the first control valve 101 and the body water outlet module 7, the water flowing out from the normal temperature branch is filtered normal temperature water, and the water flow branch that needs to be heated is the body water inlet module 6, filter module, the second heating water inlet 1012 of the first control valve 101, the first body water outlet 1013 of the first control valve 101, the first heating water inlet 81 of the heating module 8, and the like.
进一步地,所述冷却模块4与所述第二加热进水口44之间设有凉白开水箱9,所述温度传感器53设于连接所述凉白开水箱9和所述冷却水箱41的所述管道2上。Further, a cool boiled water tank 9 is provided between the cooling module 4 and the second heating water inlet 44, and the temperature sensor 53 is arranged on the pipeline 2 connecting the cool boiled water tank 9 and the cooling water tank 41 .
在本实施例中,凉白开水箱9用于储存冷却后的凉白开,而且加热模块8用的是工作规格为2100W、10A的即热管组件,热烧开水量是400ml/min,能够持续出水,In this embodiment, the cool boiled water tank 9 is used to store cooled boiled boiled water, and the heating module 8 uses a heat pipe assembly with a working specification of 2100W and 10A.
在又一实施例中,加热模块8用的是工作规格为3300W、16A的即热管组件,热烧开水量是600ml/min,这样设置即使当凉白开水箱存水消耗完之后,依然能通过直接从水箱出水,不在水箱里面停留,直接出水,也能持续地取小水量的凉白开水。In yet another embodiment, what the heating module 8 uses is a heat pipe assembly with a working specification of 3300W and 16A, and the amount of boiling water is 600ml/min. The water from the water tank does not stay in the water tank, the water comes out directly, and it can also continuously take a small amount of cool boiled water.
进一步地,所述凉白开水箱9上设有浮球开关系统91,所述浮球开关系统91包括设于所述凉白开水箱9箱体内侧较低位置的低水位浮球911和设于所述凉白开水箱9箱体内侧较高位置的高水位浮球912。Further, a float switch system 91 is provided on the cool boiled water tank 9, and the float switch system 91 includes a low water level float 911 located at a lower position inside the cool boiled water tank 9 and a low water level float 911 set on the cool boiled water tank 9. The high water level float 912 of higher position in water tank 9 casing inner sides.
在本实施例中,所述浮球开关系统91用于检测凉白开水箱9中的水位,当低水位浮球911和高水位浮球912同时触发,机体内的控制模块发出不再冷却热开水的信号至控制热开水流入冷却模块3的模块。In this embodiment, the float switch system 91 is used to detect the water level in the cool boiled water tank 9, when the low water level float 911 and the high water level float 912 are triggered at the same time, the control module in the body sends a signal that the hot boiled water is no longer cooled. Signal to the module that controls the flow of hot water into the cooling module 3.
优选地,所述凉白开水箱9箱体内侧设有杀菌灯,便于对凉白开进行杀菌。Preferably, a sterilizing lamp is provided inside the box body of the cool boiled water tank 9, which is convenient for sterilizing the cool boiled water.
进一步地,所述加热模块8与所述机体出水模块7之间设有第二控制阀102,所述第二控制阀102上设有与所述第一加热出水口82连接的第三加热进水口1021、与所述冷却模块4连接的第二加热出水口1022和与所述机体出水模块7连接的第二机体出水口1023。Further, a second control valve 102 is provided between the heating module 8 and the body water outlet module 7, and a third heating inlet connected to the first heating water outlet 82 is provided on the second control valve 102. The water outlet 1021 , the second heating water outlet 1022 connected with the cooling module 4 and the second body water outlet 1023 connected with the body water outlet module 7 .
在本实施例中,机体1通过第二控制阀102将需要加热的水流支路分出热开水支路和凉白开支路,所述热开水支路为机体进水模块6、过滤模块、第一控制阀101的第二加热进水口1012、第一控制阀101的第一机体出水口1013、加热模块8、第二控制阀102的第三加热进水口1021、第二控制阀102的第二机体出水口1023和机体出水模块7,而凉白开支路为机体进水模块6、过滤模块、第一控制阀101的第二加热进水口1012、第一控制阀101的第一机体出水口1013、加热模块8、冷却模块、第一控制阀101的第二加热进水口1012、第一控制阀101的第一机体出水口1013和机体出水模块7。In this embodiment, the body 1 divides the water flow branch that needs to be heated into a hot boiled water branch and a cool white branch through the second control valve 102. The hot boiled water branch is the body water inlet module 6, the filter module, the first The second heating water inlet 1012 of the control valve 101, the first body water outlet 1013 of the first control valve 101, the heating module 8, the third heating water inlet 1021 of the second control valve 102, the second body of the second control valve 102 The water outlet 1023 and the body water outlet module 7, and the cooling branch is the body water inlet module 6, the filter module, the second heating water inlet 1012 of the first control valve 101, the first body water outlet 1013 of the first control valve 101, the heating The module 8 , the cooling module, the second heating water inlet 1012 of the first control valve 101 , the first body water outlet 1013 of the first control valve 101 and the body water outlet module 7 .
优选地,凉白开水箱9与第二控制阀102之间设有第二控流泵。Preferably, a second flow control pump is provided between the cool boiled water tank 9 and the second control valve 102 .
进一步地,所述过滤模块3包括与所述机体进水模块6连接的前置复合滤芯31、与所述前置复合滤芯31连接的反渗透滤芯32和与所述反渗透滤芯32连接的后置活性渗透滤芯33,所述反渗透滤芯32的出水端作为所述过滤模块3的废水出水端与所述冷却模块4连接,所述后置活性渗透滤芯33的出水端与所述冷却模块4的待冷却进水端连接。Further, the filter module 3 includes a pre-compound filter element 31 connected to the body water intake module 6, a reverse osmosis filter element 32 connected to the pre-compound filter element 31, and a rear filter element connected to the reverse osmosis filter element 32. An active osmosis filter element 33 is set, and the water outlet end of the reverse osmosis filter element 32 is connected to the cooling module 4 as the waste water outlet end of the filter module 3, and the water outlet end of the post-installed active osmosis filter element 33 is connected to the cooling module 4 The water inlet to be cooled is connected.
在本实施例中,前置复合滤芯31、反渗透滤芯32和后置活性渗透滤芯33使过滤出的水更加纯净,提高了用户的饮水安全度,其中机体进水模块6与前置复合滤芯31之间设有减压阀,便于前置复合滤芯31过滤。In this embodiment, the pre-composite filter element 31, the reverse osmosis filter element 32 and the post-position active osmosis filter element 33 make the filtered water more pure and improve the safety of drinking water for users. A pressure reducing valve is arranged between 31, which is convenient for pre-compound filter element 31 to filter.
进一步地,所述前置复合滤芯31和所述反渗透滤芯32之间设有增压泵34,所述增压泵34的进水端与所述前置复合滤芯31的出水端连接,所述增压泵34的出水端与所述反渗透滤芯32的进水端连接。Further, a booster pump 34 is provided between the pre-composite filter element 31 and the reverse osmosis filter element 32, and the water inlet end of the booster pump 34 is connected to the water outlet end of the pre-composite filter element 31, so The water outlet of the booster pump 34 is connected to the water inlet of the reverse osmosis filter element 32 .
在本实施例中,增压泵用于给前置复合滤芯31过滤后的水增压,提高后级管道水流的通畅度。In this embodiment, the booster pump is used to pressurize the water filtered by the pre-compound filter element 31 to improve the smoothness of the water flow in the subsequent pipeline.
进一步地,所述增压泵34的进水端与所述后置活性渗透滤芯33的出水端之间设有泄压阀35。Further, a pressure relief valve 35 is provided between the water inlet end of the booster pump 34 and the water outlet end of the post-installed active osmotic filter element 33 .
在本实施例中,可以直接将前置复合滤芯31过滤后的水送至加热模块8去进行加热,所述后置活性渗透滤芯33和泄压阀35之间设有单向阀,防止泄压阀35后的水流逆流。In this embodiment, the water filtered by the pre-composite filter element 31 can be directly sent to the heating module 8 for heating. The water flow behind the pressure valve 35 is countercurrent.
优选地,所述加热模块8与所述过滤模块3之间设有第一控流泵104,所述第一控流泵104与所述第一加热进水口81之间设有流量计105。Preferably, a first flow control pump 104 is provided between the heating module 8 and the filtration module 3 , and a flow meter 105 is provided between the first flow control pump 104 and the first heating water inlet 81 .
在本实施例中,第一控流泵104可用于控制所述加热模块8与所述过滤模块3之间的水流大小,而流量计105用于显示当前所述加热模块8与所述过滤模块3之间的水流大小,便于用户根据流量计105显示的大小控制第一控流泵104。In this embodiment, the first flow control pump 104 can be used to control the water flow between the heating module 8 and the filtering module 3, and the flow meter 105 is used to display the current flow between the heating module 8 and the filtering module 3. The size of the water flow between 3 is convenient for the user to control the first flow control pump 104 according to the size displayed by the flow meter 105 .
优选地,所述第二加热进水口1012与所述冷却模块4之间设有第二控流泵106。Preferably, a second flow control pump 106 is provided between the second heating water inlet 1012 and the cooling module 4 .
在本实施例中,第二控流泵106可用于控制所述冷却模块4和所述第一控制阀101之间的水流。In this embodiment, the second flow control pump 106 can be used to control the water flow between the cooling module 4 and the first control valve 101 .
本实用新型的工作原理如下:The working principle of the utility model is as follows:
本实用新型通过将过滤模块3使用后的废水导入冷却模块4的冷却水箱41中,以达到节能环保的效果,成本也会随之降低,而且当需要加快对热开水的冷却时,即当检测出凉白开出水处的温度过高时,快速冷却控制模块5会控制低位出水口43打开,以使其随着高位出水口42同时出水,加大排水量,同时过滤模块3通过连接过滤模块3的进水口44大量排出废水至所述冷却水箱41内,加大进水量,以不断排走冷却水箱41内的与冷却管道热交换过的相对高温废水,从而加快冷却,提高了机体的换热效率,进而能调节凉白开的温度,使凉白开流出机体时的温度保持稳定,提升用户良好体验,解决了现有净饮水机能耗高成本高或者换热效率低的问题。The utility model introduces the waste water used by the filter module 3 into the cooling water tank 41 of the cooling module 4 to achieve the effect of energy saving and environmental protection, and the cost will be reduced accordingly. When the temperature at the water outlet is too high, the rapid cooling control module 5 will control the low water outlet 43 to open, so that it will discharge water at the same time as the high water outlet 42, and increase the displacement. The water outlet 44 discharges a large amount of waste water into the cooling water tank 41, and increases the water intake to continuously drain away the relatively high-temperature waste water in the cooling water tank 41 that has been heat-exchanged with the cooling pipe, thereby speeding up cooling and improving the heat exchange efficiency of the body. Furthermore, it can adjust the temperature of the cool water dispenser, so that the temperature when the cool water dispenser flows out of the body remains stable, which improves the user experience, and solves the problems of high energy consumption, high cost, or low heat exchange efficiency of the existing water purifiers.
如上所述是结合具体内容提供的一种实施方式,并不认定本申请的具体实施只局限于这些说明。凡与本申请的方法、结构等近似、雷同,或是对于本申请构思前提下做出若干技术推演或替换,都应当视为本申请的保护范围。The foregoing is an implementation mode provided in conjunction with specific content, and it is not deemed that the specific implementation of the present application is limited to these descriptions. Anything that is similar to or identical to the methods and structures of the present application, or some technical deduction or replacement is made on the premise of the concept of the present application should be considered as the scope of protection of the present application.
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Denomination of utility model: A clean water dispenser with a cool white opening Granted publication date: 20230804 Pledgee: Beijiao sub branch of Guangdong Shunde Rural Commercial Bank Co.,Ltd. Pledgor: Guangdong Aomei Intelligent Technology Co.,Ltd. Registration number: Y2025980061401 |