This application is a United States National Stage of International Application No. PCT/CN2020/139533, filed Dec. 25, 2020, which claims the benefit of priority of Chinese Patent Application Serial No. CN202010045963.9, filed on Jan. 16, 2020, the disclosure of all of which are hereby incorporated by reference in their entirety.
The present invention relates generally to the field of thermostatic shower fittings, in particular to a water flow rate automatic control module.
Water in a gas water heater is mainly heated by burning natural gas. The gas water heater with a low number of liters cannot burn tap water to a standard mixing temperature when the tap water temperature is low in winter, and can easily burn the water temperature to a super-standard temperature when the tap water temperature is high in summer, which leads to customer complaints due to temperature regulation failure or large temperature difference by matching the thermostatic shower with a gas water heater.
The technical problem to be solved by the invention is directed to overcome the defects in the prior art and provide a water flow rate automatic control module which automatically adjusts the flow of warm water according to the temperature of cold water so as to stabilize the water outlet temperature.
The present invention is realized by the following technical solutions.
A water flow rate automatic control module comprises a base, a valve body, a thermosensitive assembly and a diaphragm;
wherein the base is hermetically connected with the lower end of the valve body, a cold water cavity is enclosed between the base and the valve body, and the side wall of the valve body is provided with a cold water passing hole communicated with the cold water cavity; the upper end of the valve body is hermetically connected with an end cover, a warm water cavity is enclosed between the end cover and the valve body, and a supporting tube coaxially and fixedly connected with the valve body is arranged in the warm water cavity; and the side wall of the upper section of the valve body is provided with a warm water inlet hole, the side wall of the middle of the valve body is provided with a warm water outlet hole, a side water passage communicated with the warm water inlet hole and the warm water outlet hole is arranged between the inner wall of the valve body and the supporting tube;
Preferably, a limit groove is provided at the upper end inside the end cover, and a limit protrusion corresponding to the limit groove is provided at the upper end of the buckle cover.
The present invention has the following beneficial effects.
The temperature sensing part senses the temperature of passing cold water in real time; when the temperature of cold water is too low, the mixed water flow rate is slowed down, and more hot water is supplied to a thermostatic valve core for mixing; when the temperature of cold water is too high, the mixed water flow rate is increased, and more cold water is supplied to the thermostatic valve core for mixing; therefore, the mixed water temperature range of the thermostatic valve core can be ensured, and the problem of temperature adjustment failure or beyond the temperature difference caused by matching the thermostatic shower with a gas water heater is solved.
In order to explain the embodiments of the present invention or the technical solutions in the prior art more clearly, the following will briefly introduce the drawings that need to be used in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative work.
In the drawings: 1. a base; 120. a cold water tank; 2. a valve body; 250. a warm water tank; 3. a diaphragm; 4. a cold water passing hole; 5. an end cover; 6. a supporting tube; 7. a warm water inlet hole; 8. a warm water outlet hole; 9. a side water passage; 10. a temperature sensing part; 11. a moving rod; 111. a free end of the moving rod; 12. a diaphragm support; 13. a buckle cover; 14. a return spring; 15. a limit groove; 16, a limit protrusion; 17. a thermostatic valve core assembly; 18. a cold water passage; 19, a hot water passage; and 20. a thermosensitive assembly.
In order that those skilled in the art may better understand the technical solutions of the present invention, the present invention will be described in further detail with reference to the accompanying drawings and preferred embodiments.
As shown in
The base 1 is hermetically connected with the lower end of the valve body 2, a cold water cavity 120 is enclosed between the base 1 and the valve body 2, and the side wall of the valve body 2 is provided with a cold water passing hole 4 communicated with the cold water cavity; the upper end of the valve body 2 is hermetically connected with an end cover 5, a warm water cavity 250 is enclosed between the end cover 5 and the valve body 2, and a supporting tube 6 coaxially and fixedly connected with the valve body 2 is arranged in the warm water cavity 250; and the side wall of the upper section of the valve body 2 is provided with a warm water inlet hole 7, the side wall of the middle of the valve body 2 is provided with a warm water outlet hole 8, and a side water passage 9 communicated with the warm water inlet hole 7 and the warm water outlet hole 8 is arranged between the inner wall of the valve body 2 and the supporting tube.
The middle part of the thermosensitive assembly 20 is detachably and hermetically connected with the valve body 2, the thermosensitive assembly 20 is a commercial product and comprises a temperature sensing part 10 and a moving rod 11 inserted into the temperature sensing part 10, a temperature sensing material is filled between the temperature sensing part 10 and the moving rod 11, the temperature sensing material expands or contracts when subjected to temperature change, and the moving rod 11 stretches or contracts in the temperature sensing part 10; the temperature sensing part 10 is arranged in the cold water cavity 120, and the free end 111 of the moving rod is fixedly connected with a membrane support 12; the membrane support 12 is arranged in the warm water cavity 250 and is arranged above the supporting tube 6, and a buckle cover 13 is detachably connected to the membrane support 12, and the diaphragm 3 is arranged between the diaphragm support 12 and the buckle cover 13; and a return spring 14 enabling the diaphragm 3 to be in close contact with the upper end of the supporting tube 6 is arranged between the buckle cover 13 and the end cover 5. As shown in
Preferably, a limiting groove 15 is provided at the upper end inside the end cover 5, and a limit protrusion 16 corresponding to the limit groove 15 is provided at the upper end of the buckle cover 13, which achieves the guiding and limiting functions when the moving rod 11 moves outwards to a limiting position.
The above mentioned are only preferred embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention can have various modifications and changes. Any modification, equivalent substitution and improvement made within the spirit and principles of the present invention shall be covered by the protection scope of the present invention.
Number | Date | Country | Kind |
---|---|---|---|
202010045963.9 | Jan 2020 | CN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2020/139533 | 12/25/2020 | WO |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2021/143492 | 7/22/2021 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
10191500 | Akita et al. | Jan 2019 | B2 |
Number | Date | Country |
---|---|---|
2619109 | Jun 2004 | CN |
201547280 | Aug 2010 | CN |
206206603 | May 2017 | CN |
110319593 | Oct 2019 | CN |
111140676 | May 2020 | CN |
211779176 | Oct 2020 | CN |
1906102 | Jan 2017 | EP |
2005078359 | Aug 2005 | WO |
Entry |
---|
SE 516804 (English Translaion) (Year: 2002). |
International Search Report issued in corresponding International application No. PCT/CN2020/139533,mailed Mar. 10, 2021. |
Written Opinion of the International Searching Authority for No. PCT/CN2020/139533. |
Initial Publication For PCT/CN2020/139533. |
European search report, Application No. 20914081.3-1205, date Dec. 19. 2022 (7 pages). |
Number | Date | Country | |
---|---|---|---|
20230035684 A1 | Feb 2023 | US |