Drier and dissolver of dish washer

文档序号:992768 发布日期:2020-10-23 浏览:2次 中文

阅读说明:本技术 洗碗机催干溶解器 (Drier and dissolver of dish washer ) 是由 张云龙 金雪慧 张续延 于 2020-07-23 设计创作,主要内容包括:洗碗机催干溶解器,包括壳体、催干剂输入口、高温水输入口以及漂洗水出口,壳体内设有催干剂溶解腔,催干剂通过催干剂输入口进入催干剂溶解腔内,高温水从高温水输入口进入溶解腔内,催干剂和高温水在催干剂溶解腔内混合后和从漂洗水出口排出。优点在于,催干剂和高温水分别从相对的两侧注入催干溶解器内,两种液体在空腔结构内加速流动并循环,在段时间内将两者混合溶解,制成漂洗水,溶解制备过程均在催干溶解器内完成,即使形成水垢,也只需更换催干溶解器即可,其更换工序十分方便。(A drier dissolving cavity is arranged in the shell, a drier enters the drier dissolving cavity through the drier input port, high-temperature water enters the dissolving cavity from the high-temperature water input port, and the drier and the high-temperature water are mixed in the drier dissolving cavity and discharged from a rinsing water outlet. The advantage lies in, drier and high-temperature water pour into the dissolver of drying out into from relative both sides respectively, and two kinds of liquid flow and circulation are accelerated in the cavity structure, mix and dissolve both in a period of time, make rinsing water, dissolve preparation process all accomplish in the dissolver of drying out, even form the incrustation scale, also only need change the dissolver can, its change process is very convenient.)

1. The drier dissolver of the dish washer is characterized by comprising a shell, a drier input port, a high-temperature water input port and a rinsing water outlet, wherein a drier dissolving cavity is arranged in the shell, the drier enters the drier dissolving cavity through the drier input port, high-temperature water enters the dissolving cavity from the high-temperature water input port, and the drier and the high-temperature water are mixed in the drier dissolving cavity and then discharged from the rinsing water outlet.

2. The dishwasher desiccating dissolver of claim 1 wherein the desiccant inlet is located below the housing and the high temperature water inlet is located above the housing.

3. The drier dissolver of claim 2 wherein the middle of the drier dissolving chamber is provided with two relatively independent arc guide plates, the arc guide plates dividing the drier dissolving chamber into an inner chamber and an outer chamber.

4. The drier dissolver of claim 3, wherein the outer chamber is annular in shape and the inner chamber is a circular chamber.

5. The drier dissolver of claim 4 wherein the drier inlet and the high temperature water inlet are both vertically disposed and are disposed on either side of the housing, the drier inlet and the high temperature water inlet being tangential to the outer chamber of the drier dissolving chamber.

6. The dishwasher desiccating dissolver of claim 5 wherein the rinse water outlet is horizontally disposed tangent to the top of the outer chamber of the desiccant dissolution chamber.

7. The drier dissolver of claim 6, wherein two partitions are provided between two independent arc guide plates, and the two partitions are respectively located at the top and bottom of the inner cavity.

8. The drier dissolver of claim 7, wherein a water level limiting plate is further provided inside the rinse water outlet.

9. The drier dissolver of claim 8 wherein the water level limiting plate is an extension of the outer wall of the outer chamber of the drier dissolving chamber.

10. The dishwasher desiccating dissolver of claim 9 wherein the vertical height of the water level limiting plate is one-half of the height of the rinse water outlet.

Technical Field

The invention relates to a drier dissolver, in particular to a drier dissolver of a dish washing machine.

Background

At present, dining service can be provided in a plurality of large-scale units, hotels and public facilities, the number of people having dinner in a single day reaches hundreds of thousands of people, the number of used tableware is more than several times of the number of people having dinner, great workload is caused to cleaning workers, the traditional manual cleaning is continuously used along with the continuous improvement of labor cost, and the mode of manual arrangement is gradually difficult to meet the requirement of modern dining service. After a large dish washer is used for cleaning, a drier is often required to be sprayed to quickly dry tableware, however, the drier belongs to an alkaline substance, if the drier directly enters a boiler, water quality change can be generated through high temperature, scale is easy to form, the drier is adhered to the inner wall of the machine, and the drier is not sanitary and is easy to cause pipeline blockage.

Disclosure of Invention

In order to solve the problems, the drier dissolver of the dish washing machine is provided, high-temperature water and the drier are quickly and fully mixed and dissolved in the dissolver to prepare rinsing water without passing through a boiler, and the condition of pipeline blockage is avoided.

In order to achieve the above purpose, the invention is solved by the following technical scheme: a drier dissolving cavity is arranged in the shell, a drier enters the drier dissolving cavity through the drier input port, high-temperature water enters the dissolving cavity from the high-temperature water input port, and the drier and the high-temperature water are mixed in the drier dissolving cavity and discharged from a rinsing water outlet.

Furthermore, the drier input port is positioned below the shell, and the high-temperature water input port is positioned above the shell.

Furthermore, two arc-shaped guide plates which are relatively independent are arranged in the middle of the drier dissolving cavity, and the drier dissolving cavity is divided into an inner cavity and an outer cavity by the arc-shaped guide plates.

Furthermore, the outer cavity is annular as a whole, and the inner cavity is a circular cavity.

Furthermore, the drier input port and the high-temperature water input port are both vertically arranged and are respectively arranged on two sides of the shell, and the drier input port and the high-temperature water input port are respectively tangent with the outer cavity of the drier dissolving cavity.

Further, the rinsing water outlet is horizontally arranged and tangent to the top of the outer cavity of the drier dissolving cavity.

Furthermore, two partitions are arranged between the two relatively independent arc-shaped guide plates and are respectively positioned at the top and the bottom of the inner cavity.

Furthermore, a water level limiting plate is arranged on the inner side of the rinsing water outlet.

Furthermore, the water level limiting plate is an arc surface extension section of the outer wall of the outer cavity of the drier dissolving cavity.

Further, the vertical height of the water level limiting plate is half of the height of the rinsing water outlet.

The invention has the advantages that:

the invention provides a drier-dissolver for dish-washing machines, belonging to the quick-drying process after washing tableware in an unmanned automatic tableware washing and inserting system.A drier-dissolver is additionally arranged behind the traditional boiler equipment, drier and high-temperature water are simultaneously injected into the drier-dissolver, a cavity structure for promoting the accelerated mixing and dissolving is arranged in a shell of the drier-dissolver, the cavity structure is integrally of a circular circulating structure, the circular circulating structure is provided with a liquid flow channel, the drier and the high-temperature water are respectively injected into the drier-dissolver from two opposite sides, two liquids flow and circulate in the cavity structure in an accelerated manner, the two liquids are mixed and dissolved in a period of time to prepare rinsing water, the dissolving preparation process is finished in the drier-dissolver, even if scale is formed, only the drier-dissolver needs to be replaced, and the replacement process is very convenient.

Drawings

Fig. 1 is a schematic diagram of the internal structure of the drier-dissolver of the dishwasher according to the present invention.

Fig. 2 is a schematic structural diagram of the connection between the drier dissolver and the sprayer of the dishwasher of the present invention.

Fig. 3 is a schematic structural diagram of the connection between the drier dissolver and the sprayer of the dishwasher according to the present invention.

Reference numerals: the device comprises a shell 1, a drier input port 2, a high-temperature water input port 3, a rinsing water outlet 4, an outer cavity 5, an inner cavity 6, an arc-shaped guide plate 7, a partition 8, a water level limiting plate 9, an upper sprayer 101, a lower sprayer 102 and an outer cover 1001.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to fig. 1-2 in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments.

The drier dissolver of the dish washer comprises a shell 1, a drier input port 2, a high-temperature water input port 3 and a rinsing water outlet 4, wherein a drier dissolving cavity is arranged in the shell 1, the drier enters the drier dissolving cavity through the drier input port 2, the high-temperature water enters the dissolving cavity from the high-temperature water input port 3, and the drier and the high-temperature water are mixed in the drier dissolving cavity and then discharged from the rinsing water outlet 4. Because the density of the drier is greater than that of high-temperature water, the drier is easy to deposit on the lower part of the shell 1, and the high-temperature water floats on the upper part of the shell 1, so that the drier input port 2 is arranged below the shell 1, the high-temperature water input port 3 is arranged above the shell 1, and water flow of the high-temperature water input port 3 can drive the drier at the bottom of the shell 1 to circularly flow in the drier dissolving cavity. A dishwasher dryer dissolver may be provided within the housing 1001,

two relatively independent arc guide plates 7 are arranged in the middle of the drier dissolving cavity, and the drier dissolving cavity is divided into an inner cavity 6 and an outer cavity 5 by the arc guide plates 7. The two arc-shaped guide plates 7 can guide fluid in the outer cavity 5 to circularly flow, the flow of the fluid can be accelerated due to the small flow channel of the outer cavity 5, the thorough mixing and dissolving of the drier and the high-temperature water are accelerated, the inner cavity 6 is arranged in the middle of the shell 1, and the hollow inner cavity 6 can increase the whole capacity of the drier-dissolver.

The drier input port 2 and the high-temperature water input port 3 are both vertically arranged and are respectively arranged at two sides of the shell 1, and the drier input port 2 and the high-temperature water input port 3 are respectively tangent with the outer cavity 5 of the drier dissolving cavity. The outlet level 4 of the rinsing water is arranged horizontally and tangent to the top of the outer cavity 5 of the drier dissolving cavity. The arrangement of the drier input port 2 and the high-temperature water input port 3 in a tangent way with the outer cavity 5 can enable the fluid to flow to provide larger thrust, so that the fluid flow speed is higher, and the mixing and dissolving speed is also higher.

The inner side of the rinsing water outlet 4 is also provided with a water level limit 9. The water level limiting plate 9 is an arc surface extension section of the outer wall of the outer cavity 5 of the drier dissolving cavity. The vertical height of the water level limiting plate 9 is half of the height of the rinsing water outlet. The water level limiting plate 9 narrows the inlet of the rinsing water outlet 4, so that the flow rate of the rinsing water flowing out is faster, and the water level height of the rinsing water outlet 4 is increased, so that the rinsing water in the drier dissolving cavity is mixed more fully. The rinsing water outlet 4 is externally connected with a sprayer which can be divided into an upper sprayer 101 and a lower sprayer 102, when the tableware moves in the track, the upper sprayer 101 and the lower sprayer 102 work simultaneously, and the upper surface and the lower surface of the tableware can be sprayed in all directions.

It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof, and it is therefore intended that the present embodiments be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.

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