WATER PATH CONTROL VALVE STRUCTURE FOR FLUSHING TOILET LID
20210080017 ยท 2021-03-18
Inventors
Cpc classification
Y10T137/87129
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T137/87161
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16K11/0743
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K11/166
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T137/87145
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E03D9/00
FIXED CONSTRUCTIONS
F16K11/076
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K11/163
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E03D9/08
FIXED CONSTRUCTIONS
International classification
Abstract
A water path control valve structure for flushing the toilet lid, which is divided into upper and lower valve parts, including a valve body, a linkage valve core and a sealing component. The sealing component is installed on the linkage valve core, and the linkage valve core is arranged in the hollow valve body and one end of the linkage valve core extends out of the valve body. The linkage valve core includes an upper valve core and a lower valve core arranged coaxially, and one end of the upper valve core extends out of the valve body. The upper and lower valve cores are respectively installed with the sealing member.
Claims
1. A water path control valve structure for flushing toilet lid, which is divided into a upper valve part and a lower valve part, comprising a valve body, a linkage valve core and a sealing component, the sealing component is installed on the linkage valve core, the linkage valve core is arranged in a hollow cavity of the valve body and one end of the linkage valve core extends out of the valve body, wherein the linkage valve core comprises an upper valve core and a lower valve core arranged coaxially, one end of the upper valve core extends out of the valve body, and the upper valve core and the lower valve core are installed with a sealing member, respectively.
2. The water path control valve structure for flushing toilet lid according, to claim 1, wherein the upper valve core and the lower valve core are in form of an integrated valve core or a detachable connecting valve core.
3. The water path control valve structure for flushing toilet lid according to claim 2, wherein, one end of the lower valve core abutted jointed with the upper valve core is a connecting end, and the connecting end of the lower valve core is provided with a plug-in groove, and a plug-in protrusion matched the plug-in groove is provided at an end of the upper valve core, so that the plug-in protrusion of the upper valve core is connected to the plug-in groove of the lower valve core to achieve a rotation linkage.
4. The water path control valve structure for flushing toilet lid according to claim 2, wherein the upper valve core is connected to the sealing member, the sealing member is a sealing gasket, and the sealing gasket is an arc-shaped gasket which is able to be connected to the upper valve core and is in linkage with the upper valve core, the sealing gasket rotates with a rotation of the upper valve core to aligned or misaligned to a port on the valve body, so as to realize a control of a connection or a disconnection of a corresponding water path; a lower end of the lower valve core is connected by an other sealing member, the other sealing member is a sealing disc group, the sealing disc group comprises two sealing discs that cooperate with each other to achieve selective sealing.
5. The water path control valve structure for flushing toilet lid according, to claim 4, wherein the two sealing discs are an upper sealing disc and a lower sealing disc, respectively, wherein the lower sealing disc, mounted in an interior of the valve body, and two water through holes are provided on the lower sealing disc; the upper sealing disc, connected to the lower valve core and in linkage with the lower valve core, one water through hole is provided on the upper sealing disc; the upper sealing, disc rotates with the lower valve core, and then drives the water through hole on the upper sealing disc to aligned or misaligned to any water through hole on the lower sealing disc, so as to control the connection or the disconnection of the corresponding water path.
6. The water path control valve structure for flushing toilet lid according, to claim 1, wherein the upper valve part, is a directional-control valve part, the, lower valve part is a mechanical on-off valve part, the upper valve core is a directional-control valve core, and the lower valve core is a on-off valve core; further, the valve body is provided with a hot water inlet, a first outlet and a second outlet corresponding to the upper valve core, and the valve body is provided with a cold water inlet and a cold water outlet corresponding to the lower valve core.
7. The water path control valve structure for flushing toilet lid according to claim 6, wherein the hot water, inlet is respectively communicated with the first water outlet and the second water outlet to form a first water outlet path and a second water outlet path; the directional-control valve core equipped with the sealing member is rotated to control a connection or a disconnection of the hot water inlet and the first water outlet, and a connection or a disconnection of the hot water inlet and the second water outlet, respectively; the cold water inlet is communicated with the cold water outlet to form a cold water path, and the on-off valve core equipped with the other sealing member is rotated by the directional-control valve core to control a connection or a disconnection of the cold water path.
8. The water path control valve structure for flushing toilet lid according to claim 1, wherein the upper valve part is a mechanical on-off valve part, the lower valve part is a directional-control valve part, the upper valve core is a on-off valve core, and the lower valve core is a directional-control valve core; further, the valve body is provided with a cold water inlet and a cold water outlet corresponding to the upper valve core, and the valve body is provided with a hot water inlet, a first outlet and a second outlet corresponding to the lower valve core.
9. The water path control valve structure for flushing toilet lid according to claim 8, wherein the cold water inlet, is communicated with the cold water outlet to form a cold water path, and the on-off valve core equipped with the sealing member is rotated to control a connection or a disconnection of the cold water path; the hot water inlet is respectively communicated with the first water outlet and the second water outlet to form a first water outlet path and a second water outlet path, and the directional-control valve core equipped with the other sealing member is rotated by the on-off valve core to control a connection or a disconnection of the hot water inlet and the first water outlet and a connection or a disconnection of the hot water inlet and the second water outlet, respectively.
10. The water path control valve structure for flushing toilet lid according to claim 7, wherein the first water outlet is a hip washing water outlet and the second water outlet is a female washing water outlet, or the first water outlet is the female washing water outlet and the second water outlet is the hip washing water outlet.
11. The water path control valve structure for flushing toilet lid according to claim 3, wherein the upper valve core is connected to the sealing member, the sealing member is a sealing gasket, and the sealing gasket is an arc-shaped gasket which is able to be connected to the upper valve core and is in linkage with the upper valve core, the sealing gasket rotates with a rotation of the upper valve core to aligned or misaligned to a port on the valve body, so as to realize a control of a connection or disconnection of a corresponding water path; a lower end of the lower valve core is connected by an other sealing member, the other sealing member is a scaling disc group, the scaling disc group comprises two sealing discs that cooperate with each other to achieve selective sealing.
12. The water path control valve structure for flushing toilet lid according to claim 1 wherein the two sealing discs are an upper sealing disc and a lower sealing disc, respectively, wherein the lower sealing disc, mounted in an interior of the valve body, and two water through holes are provided on the lower sealing disc; the upper sealing disc, connected to the lower valve core and in linkage with the lower valve core, one water through hole is provided on the upper sealing disc; the upper sealing disc rotates with the lower valve core, and then drives the water through hole on the upper sealing disc to aligned or misaligned to any water through hole on the lower sealing disc, so as to control the connection or the disconnection of the corresponding water path.
13. The water path control valve structure for flushing toilet lid according to claim wherein the first water outlet is a hip washing water outlet and the second water outlet is, a female washing water outlet, or the first water outlet is the female washing water outlet and the second water outlet is the hip washing water outlet.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0029]
[0030]
[0031]
[0032]
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[0036]
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[0041]
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0046] In the prior art, there is a toilet lid water path control system that uses a electromagnetic valve and a directional-control valve to realize the control of the water inlet and function reversal of the toilet lid system. Although the structure can intercept the water pressure to the water inlet, the installation of the electromagnetic valve has disadvantages such as high cost, short maintenance period, and high failure rate. Another type uses the mechanical pressure stabilizing valve and the directional-control valve to realize the control of water inlet and functional reversal of the toilet lid system. The structure can only adjust the water pressure at the water inlet to a certain range, but it cannot keep the system in a state without water pressure. When the pressure stabilizing valve fails or is damaged, it directly causes the product have to be repaired, which can not be used normally.
[0047] In view of the above technical problems, the inventor has continuously researched valve core to find the technical solution of a water path control valve structure for flushing toilet lid, which is divided into upper part and lower valve part, including a valve body, a linkage valve core and a sealing component. The sealing component is installed on the linkage valve core, and the linkage valve core is arranged in a hollow cavity of the valve body and one end of the linkage valve core extends out of the valve body. Wherein, the linkage valve core includes a upper valve core and a lower valve core arranged coaxially, one end of the upper valve core extends out of the valve body, and the upper core and lower valve core are installed with the sealing member, respectively.
[0048] In the technical solution of the present disclosure, it includes two linked valve core structures, so that the two valve core structures can cooperate with each other to achieve the purpose of controlling the two valve cores at one time, realizing the purpose of reasonable structure and convenient operation. In addition, the two valve cores can be on-off valve core or directional-control valve core respectively, so as to ensure that the water flow is trapped outside the water inlet, and the mechanical structure can also be used to ensure the service life and safety of the product, thereby reducing the shortcomings brought by the electromagnetic valve such as high cost and short service life, thereby solving the technical problems existing in the prior art.
[0049] The specific solution in the above structure is as follows:
[0050] As shown in
[0051] The linkage valve core includes an upper valve core 2-A and a lower valve core 2-B arranged coaxially, one end of the upper valve core 2-A extends out of the valve body 1, and the upper core 2-A and lower valve core 2-B are installed with the sealing member, respectively.
[0052] In the specific processing and production process, the upper and lower valve cores 2-A and 2-B are connected in one, or the upper and lower valve cores 2-A and 2-B are two valve cores which are coaxial and can be detachable.
[0053] Preferably, as shown in
[0054] As shown in
[0055] As shown in
[0056] Wherein the lower sealing disc 42, mounted in an interior of the valve body 1, and two water through holes 421 are provided on the lower sealing disc.
[0057] The upper sealing disc 41, connected to the plug-in groove 23 of the lower valve core 2-B through a cross-shaped buckle 411 and in linkage with the lower valve core (as shown in
[0058] The upper sealing disc 41 rotates with the lower valve core 2-B, and then drives the water through hole 412 on the upper sealing disc 41 to aligned or misaligned to any water through hole 421 on the lower sealing disc 42, so as to control the connection or the disconnection of the corresponding water path.
[0059] The specific embodiments of the upper and lower valve cores in the present disclosure will be described in detail in combination with the attached drawings.
Embodiment 1
[0060] As shown in
[0061] As shown in
[0062] As shown in
[0063] As shown in
[0064] As shown in
[0065] The directional-control valve core 2-A and the on-off valve core 2-B are in plug-in connection, and a rotating ring 10 is sleeved at the position where they are connected. The rotating ring is provided with a limited slot, and the arc-shaped gasket 3 is installed at the limited slot of the rotating ring, and the external force is used to rotate the directional-control valve core 2-A to realize the rotation, so as to realize the control of the hip washing water outlet water path and the female washing water outlet water path. The rotation of the directional-control valve core 2-A drives the rotation of the on-off valve core 2-B, thereby, the on-off valve core 2-B drives the sealing disc group 4 for sealing the end face, to control the cold water path.
[0066] Specifically: As shown in
[0067] As shown in
[0068] As shown in
Embodiment 2
[0069] As shown in
[0070] As shown in
[0071] Referring to the structure as shown in
[0072] As shown in
[0073] As shown in
[0074] The on-off valve core 2-A and the directional-control valve core 2-B are in plug-in connection, and a rotating ring 10 is sleeved at the position where they are connected. The rotating ring is provided with a limited slot, and the arc-shaped gasket 3 is installed at the limited slot of the rotating ring, and the external force is used to rotate the on-off valve core 2-A to realize the rotation, so as to realize the control of the cold water path. The rotation of the on-off valve core 2-A drives the rotation of the directional-control valve core 2-B, thereby, the directional-control valve 2-B drives the sealing disc group 4 for sealing the end face, to control the hip washing water outlet water path and the female washing water outlet water path.
[0075] Specifically: when the on-off valve core 2-A is rotated to close the cold water path, the water in the whole system will be intercepted, so as to keep no water in the toilet lid system, which is also a normal state when the toilet lid system in the unused state.
[0076] When the on-off valve core 2-A is rotated anticlockwise, the on-off valve core 2-A drives the directional-control valve core 2-B and the sealing disc group 4 in sequence, wherein the rotation of the sealing gasket 3 realizes the connection of the cold water inlet 6 and the cold water outlet 7, so as to realize the connection of the cold water path. After the connection of the cold water path, the cold water enters into the heating pipe for realizing the electric heating, and then enters from the hot water inlet. By the linkage of the directional-control valve 2-B and the sealing disc group 4, the upper sealing disc 41 in the sealing disc group 4 is driven to rotate, so that the water through hole 412 of the upper sealing disc 41 is communicated with the first water through hole 421 of the lower sealing disc 42, and then the water through hole 412 of the lower sealing disc 4 is communicated with the hip washing water outlet 8 to realize the communication of the hot water inlet 5 and the hip washing water outlet 8, so that the hip washing water outlet water path is separately connected, and the female washing water outlet water path is intercepted.
[0077] When the extended on-off valve core 2-A is rotated clockwise, the on-off valve core 2-A drives the directional-control valve core 2-B and the sealing disc group 4 in sequence, wherein the rotation of the sealing gasket 3 realizes the communication of the cold water inlet 6 and the cold water outlet 7, so that the connection of the cold water path is realized. After the connection of the cold water path, the cold water enters into the heating pipe for realizing the electric heating, and then the heated water enters from the hot water inlet 5. By the linkage of the directional-control valve core 2-B and the sealing disc group 4, the upper sealing disc 41 in the sealing disc group 4 is driven to rotate, so that the water through hole 412 of the upper sealing disc 41 is communicated with another water through hole 421 of the lower sealing disc 42, and then the other water through hole 421 of the lower sealing disc 42 is communicated with the female washing water outlet 9, so as to realize the communication of the hot water inlet 2 and the female washing water outlet 9, so that the female washing water outlet water path is separately connected, and the hip washing water outlet water path is intercepted.
[0078] The above structure and the structure described in embodiment 1 and 2 overcome the deficiencies of the prior art, and provide a structure with less electric control part, which is easy to operation and has a reliable intelligent flushing toilet lid structure. At the same time, the mechanical on-off valve cooperated with the directional-control valve is used to block the front high water pressure water path and the structure configured to switch the water path at the rear position after the treatment by the water treatment device. Namely, the on-off valve and the directional-control valve are coaxially rotated, the on-off valve is operated and the model of the directional-control valve is switched at the same time. By using of the mechanical principle, the structure is simpler, more reliable and safe in function.
[0079] Although the present disclosure is disclosed as above in the preferred embodiment, it is not a limitation to the present disclosure. There are changes and modifications can be made by any person skilled in the art without departing from the spirit and scope of the present disclosure. Therefore, the scope of the present disclosure shall be subject to the scope defined in the claims.