Toilet flushing pipeline with delay valve and toilet
Technical Field
The utility model relates to the technical field of toilet tools and toilets, in particular to a toilet flushing pipeline and a toilet.
Background
The flushing of the toilet is performed by using a water supply source to flush the toilet, and the flushing of the toilet can obtain larger flushing force by using the water storage container, namely, the toilet has larger flushing pressure, thereby achieving the purpose of better flushing effect.
In the patent document with the publication number of CN217267864U, the name of a urinal flushing device, a urinal flushing device is disclosed, which comprises a water inlet pipe, a water storage container, a flushing pipe, an electromagnetic valve and a urinal; the water inlet pipe, the water storage container and the flushing pipe are connected in sequence, and the electromagnetic valve is arranged in the middle of the flushing pipe. When the toilet is to be flushed, the electromagnetic valve is pressed, so that the water source in the water storage container can be flushed; however, the electromagnetic valve is used, so that the voltage safety problem is solved, and the cost of using the transformer is high.
Disclosure of Invention
The utility model aims at overcoming the defects, and provides a toilet flushing pipeline which can realize automatic closing, is safe to use and has low cost, and a toilet, namely the toilet flushing pipeline with the time delay valve, and the utility model also relates to a toilet.
The utility model adopts the technical scheme that a toilet flushing pipeline with a delay valve is provided with: the toilet flushing pipeline with the delay valve comprises a water inlet pipeline, a water storage container and a flushing pipeline, wherein the water storage container is provided with a container water inlet and a container water outlet, the water inlet pipeline is connected with the container water inlet, the container water outlet is communicated with the flushing pipeline, the water storage container is a closed container, and the other end of the flushing pipeline is a component communicated with the toilet flushing port and is characterized in that: the delay valve is a normally closed valve, only the opening time is opened, and the delay valve is a first delay valve.
Further, the water inlet pipeline is also provided with a tee joint, the tee joint is a first tee joint, the tee joint is provided with a water inlet and two water outlets, the two water outlets are a first water outlet and a second water outlet respectively, the water inlet and the first water outlet of the first tee joint are connected in series between the water inlet pipeline and the water inlet of the container, the second water outlet of the first tee joint is also communicated with a section of flushing pipe, and the section of flushing pipe is a second flushing pipe; the second flushing pipe is provided with a delay valve, the delay valve is a second delay valve, an outlet of the second delay valve is connected with a toilet flushing pipe, and when the toilet flushing pipe is used, the toilet flushing pipe is communicated with the other toilet flushing port of the toilet.
Further, the first delay valve and the second delay valve are respectively provided with an operating handle,
And the linkage part is respectively connected with the operation handle of the first delay valve and the operation handle of the second delay valve, and is operated to open the first delay valve and the second delay valve simultaneously.
In one technical scheme, the flushing pipeline is also connected with a tee joint, the tee joint is a second tee joint, and the second tee joint is provided with two water outlet pipes which are respectively communicated with flushing inlets of different closestools when the flushing pipeline is used.
The technical scheme adopted by the toilet bowl is as follows: the toilet comprises a toilet body, wherein the toilet body is provided with a toilet flushing port, and a toilet flushing pipeline is further arranged on the toilet body and is characterized in that: the flushing pipeline is the toilet flushing pipeline with the delay valve, and the other end of the flushing pipeline is communicated with a toilet flushing port.
In one technical scheme, the toilet flushing port comprises a toilet ring flushing port and a toilet flushing port, and the communication of the other end of the flushing pipeline with the toilet flushing port means that any one of the two flushing ports is communicated; the other flushing port is communicated with a tap water inlet pipe.
In another technical scheme, the toilet flushing port comprises a toilet flushing port and a toilet flushing port, and the communication of the other end of the flushing pipeline with the toilet flushing port means that the two flushing ports are communicated.
The beneficial effects of the utility model are as follows: such a toilet flush line is installed on a toilet, and such a toilet has the advantages of safe use, low cost, and convenient use.
Drawings
Fig. 1 is a schematic diagram of an embodiment of a toilet flush line of the present utility model.
Fig. 2 is a schematic view of another embodiment of the toilet flush line of the present utility model.
FIG. 3 is a schematic illustration of a linkage member of one embodiment of the present utility model.
Fig. 4 is a schematic view of a linkage member of another embodiment of the present utility model.
Fig. 5 is a schematic view of the structure of the toilet body of the present utility model.
Wherein: 1. the water inlet pipeline 2, the water storage container 21, the container water inlet 22, the container water outlet 3, the flushing pipeline 41, the first delay valve 42, the second delay valve 43, the operating handle 44, the linkage part 5, the tee joint 51, the first tee joint 52, the second tee joint 55, the water inlet 56, the first water outlet 57, the second water outlet 6, the second flushing pipe 61, the toilet flushing pipe 9, the toilet 91, the toilet flushing port 911, the toilet flushing port 912 and the toilet flushing port.
Detailed Description
The utility model is further described below with reference to the accompanying drawings.
As shown in fig. 1 and 2, a toilet flushing pipeline with a delay valve comprises a water inlet pipeline 1, a water storage container 2 and a flushing pipeline 3, wherein the water storage container is provided with a container water inlet 21 and a container water outlet 22, the water inlet pipeline is connected with the container water inlet, the container water outlet is communicated with the flushing pipeline, the water storage container is a closed container, and the other end of the flushing pipeline is a component communicated with a toilet flushing port, and the toilet flushing pipeline is characterized in that: the delay valve is a normally closed valve, only the opening time is opened, and the delay valve is a first delay valve 41.
The utility model has the advantages of automatic closing, safety and low cost due to the use of the time delay valve, and can realize the purpose of the utility model.
The pressure of the water storage container of the utility model is derived from the pressure of tap water.
The time delay valve is a component in the prior art.
The direction of arrow F in fig. 1 and 2 is the direction of water flow into the flush line of the toilet.
Further, as shown in fig. 1, the water inlet pipe is further provided with a tee joint 5, the tee joint is a first tee joint 51, the tee joint is provided with a water inlet 55 and two water outlets, the two water outlets are a first water outlet 56 and a second water outlet 57, the water inlet and the first water outlet of the first tee joint are connected in series between the water inlet pipe and the water inlet of the container, the second water outlet of the first tee joint is further communicated with a section of flushing pipe, the section of flushing pipe is a second flushing pipe 6, a delay valve is arranged between the second flushing pipes, the delay valve is a second delay valve 42, the outlet of the second delay valve is connected with a toilet flushing pipe 61, and when the toilet flushing pipe is used, the toilet flushing pipe is communicated with the other toilet flushing port of the toilet.
Some toilets have two toilet flushing ports, for example, one is a toilet flushing port and the other is a urinal flushing port, water entering from the toilet flushing port can flush the toilet, and water entering from the urinal flushing port can flush the urinal; the utility model can realize the purpose as long as one water flow is used for flushing the toilet through the flushing port of the toilet, and the water flow has water supply pressure.
When the toilet is used, the water flow used by the second flushing pipe can be directly connected with tap water (without passing through the water storage container), so that the volume of the water storage container is reduced, and the flushing flow of the toilet is increased.
In the above technical solution, the other water flow flowing to the toilet bowl water inlet is the water flow not passing through the water storage container, and this water flow uses the water flow flowing out of the second water flushing pipe 6, and of course, a valve is installed on the second water flushing pipe, and this valve controls the water flow of the second water flushing pipe to the toilet bowl water inlet.
Further, as shown in fig. 3 and 4, the first delay valve and the second delay valve are respectively provided with an operation handle 43, and a linkage component 44 is respectively connected with the operation handles of the first delay valve and the second delay valve, so that the linkage component is operated, and the first delay valve and the second delay valve are opened simultaneously.
For example, in the embodiment of the utility model, the periphery of the operating handle is provided with a gear, as shown in fig. 3, the linkage component is a rack which acts on the operating handle together, the rack is operated, and the two delay switches act simultaneously; as shown in fig. 4, the periphery of the operating handle is provided with a moving protrusion, the linkage part is a limiting plate for limiting the two moving protrusions, the limiting plate is operated, and the two delay valves act simultaneously; the utility model has the advantages of stronger consistency and more labor saving when two delay valves are opened.
The direction of arrow D in fig. 3 and 4 is the direction in which the linkage member is pulled.
In one technical scheme, as shown in fig. 2, the flushing pipe is further connected with a tee joint, the tee joint is a second tee joint 52, and the second tee joint is provided with two water outlet pipes which are respectively communicated with different flushing ports of the toilet bowl when in use.
The utility model has the advantages that the water flows for the two toilet flushing ports of the toilet are all water flows in the water storage container.
The technical scheme adopted by the toilet bowl is as follows: as shown in fig. 5, the toilet comprises a toilet body 9, the toilet body is provided with a toilet flushing port 91, and a toilet flushing pipeline is further arranged on the toilet body, and the toilet is characterized in that: the flushing pipeline is the toilet flushing pipeline with the delay valve, and the other end of the flushing pipeline is communicated with a toilet flushing port.
In one technical scheme, the toilet flushing port comprises a toilet flushing port 911 and a toilet flushing port 912, and the communication of the other end of the flushing pipeline with the toilet flushing port means that any one of the two flushing ports is communicated; the other flushing port is communicated with a tap water inlet pipe.
In another technical scheme, the toilet flushing port comprises a toilet flushing port and a toilet flushing port, and the communication of the other end of the flushing pipeline with the toilet flushing port means that the two flushing ports are communicated.
In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "first," "second," and the qualifiers of the parts and the like are based on the orientation or positional relationship shown in the drawings, are merely for convenience in describing the present utility model, and do not indicate or imply that the apparatus or element in question must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the utility model.