INTEGRATED WATER FITTING ASSEMBLY
20220349424 · 2022-11-03
Assignee
Inventors
Cpc classification
E03D1/34
FIXED CONSTRUCTIONS
F04D13/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/669
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/426
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/66
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E03D1/34
FIXED CONSTRUCTIONS
Abstract
An integrated water fitting assembly includes a housing, a drainage mechanism, a dual-outlet micro-pump, and a drainage base. The drainage mechanism and the dual-outlet micro-pump are disposed in the housing, the drainage base is disposed below the housing, a water inlet, a washing water outlet, and a drainage control water outlet communicated with each other are formed in the dual-outlet micro-pump, moreover, the water inlet is communicated with a water source, the washing water outlet extends out of the housing, and the drainage control water outlet is connected inside the drainage mechanism. An integrated water fitting assembly further includes a housing, a drainage mechanism, a dual-head flow distribution assembly, a micro-pump, and a drainage base. A water inlet of the micro-pump is communicated with a water source. A flow water inlet, a washing water outlet, and a drainage control water outlet are formed in the dual-head flow distribution assembly.
Claims
1. An integrated water fitting assembly, comprising: a housing, a drainage mechanism, a dual-outlet micro-pump, and a drainage base, wherein the drainage mechanism and the dual-outlet micro-pump are disposed in the housing, the drainage base is disposed below the housing, a first water inlet, a washing water outlet, and a drainage control water outlet are communicated with each other, the first water inlet, the washing water outlet, and the drainage control water outlet are formed in the dual-outlet micro-pump, the first water inlet is communicated with a water source, the washing water outlet extends out of the housing, the drainage control water outlet is connected inside the drainage mechanism, and the drainage mechanism controls an open or a closing of a water outlet of the drainage base.
2. The integrated water fitting assembly according to claim 1, wherein the dual-outlet micro-pump comprises a water-passing cavity, a rotatable rotor shaft is arranged in the water-passing cavity, an impeller is disposed on the rotatable rotor shaft, the first water inlet, the washing water outlet, and the drainage control water outlet are all communicated with the water-passing cavity, the first water inlet is formed at a bottom of the dual-outlet micro-pump, and the washing water outlet and the drainage control water outlet are eccentrically formed on a side wall.
3. The integrated water fitting assembly according to claim 2, wherein a pressure relief hole is formed above the washing water outlet or the drainage control water outlet, the impeller is of a spiral type, and the washing water outlet and the drainage control water outlet are inclined outward in a water flow conveying direction of the impeller.
4. The integrated water fitting assembly according to claim 1, wherein the drainage control water outlet of the dual-outlet micro-pump has a head of 3-10 m and a flow rate of 3-10 L/min; and the washing water outlet of the dual-outlet micro-pump has a head of 3-5 m and a flow rate of 12-18 L/min.
5. The integrated water fitting assembly according to claim 1, wherein the drainage mechanism comprises a valve body, a return spring, a piston, and a water-sealing rubber, the piston is slidably arranged in the valve body to divide the valve body into an upper cavity and a lower cavity, the lower cavity is a drainage liquid cavity communicated with a second water inlet of the valve body, the return spring is disposed in the upper cavity, a bottom of the piston extends out of the valve body and the bottom of the piston is connected with the water-sealing rubber, the water-sealing rubber is sealed and adapted with the water outlet of the drainage base, an installation plate is connected below the second water inlet in an outer wall of the valve body, and the dual-outlet micro-pump is fixed on the installation plate to connect the drainage control water outlet to the second water inlet of the valve body.
6. The integrated water fitting assembly according to claim 1, wherein a water supplement tube and/or a water leakage tube is/are further arranged on the drainage base, the water supplement tube and the water leakage tube are communicated with the water outlet of the drainage base, and the washing water outlet is connected with a washing tubing.
7. The integrated water fitting assembly according to claim 1, further comprising a plurality of flushing aid tubes, wherein each of the plurality of flushing aid tubes comprises an inlet end connected with a pressurized water source end, and an outlet end inserted into the drainage base and connected with the water outlet of the drainage base.
8. The integrated water fitting assembly according to claim 7, wherein each of the plurality of flushing aid tubes is a venturi tube, wherein the venturi tube has a gradually reduced diameter, the pressurized water source end is a flushing aid pump, wherein the flushing aid pump is integratedly disposed in the housing or the flushing aid pump is disposed on a side of the drainage base outside the housing, the inlet end of each of the plurality of flushing aid tubes is connected to the flushing aid pump through a flushing aid tubing, an anti-siphon hole is formed in an upper part of the flushing aid tubing, wherein the anti-siphon hole is higher than a working water level set in a water cavity, a water-passing cavity of the flushing aid pump is arranged inside the flushing aid pump, an impeller of the flushing aid pump is located in the water-passing cavity of the flushing aid pump, and a third water inlet of the flushing aid pump and a water outlet of the flushing aid pump are both communicated with the water-passing cavity of the flushing aid pump.
9. The integrated water fitting assembly according to claim 7, wherein the pressurized water source end is an external tap water supply tube, and a solenoid valve is arranged on the external tap water supply tube.
10. The integrated water fitting assembly according to claim 1, wherein the housing comprises an upper housing and a lower housing assembled and connected with the upper housing, the dual-outlet micro-pump is arranged on the lower housing, a filter screen is arranged at a position of a water inlet of the dual-outlet micro-pump, snapping members are arranged on two sides of an outer wall of the upper housing, each of the snapping members comprises a middle part fixedly connected to the upper housing and two ends being cantilevers, and each of the snapping members comprises an upper end being a pressing part and a lower end clamped with the drainage base.
11. An integrated water fitting assembly, comprising: a housing, a drainage mechanism, a dual-head flow distribution assembly, a micro-pump, and a drainage base, wherein the drainage mechanism, the dual-head flow distribution assembly, and the micro-pump are disposed in the housing, the drainage base is disposed below the housing, and a water inlet of the micro-pump is communicated with a water source, a flow water inlet, a washing water outlet, and a drainage control water outlet are communicated with each other, the flow water inlet, the washing water outlet, and the drainage control water outlet are formed in the dual-head flow distribution assembly, the flow water inlet is connected with a water outlet of the micro-pump, the washing water outlet extends out of the housing, the drainage control water outlet is connected inside the drainage mechanism, and the drainage mechanism controls an open or a closing of a water outlet of the drainage base.
12. The integrated water fitting assembly according to claim 11, wherein the dual-head flow distribution assembly comprises a distribution body with a hollow cavity and a delay mechanism located inside the distribution body, the delay mechanism comprises a water distribution piston and a delay spring, the water distribution piston separates the hollow cavity of the distribution body into an upper cavity and a lower cavity, the delay spring is located in the upper cavity, a lower end of the delay spring abuts against the water distribution piston, in an initial state, either the washing water outlet or the drainage control water outlet is communicated with the flow water inlet due to an obstruction of the water distribution piston, and after a water pressure acts on the water distribution piston to compress the delay spring, the washing water outlet and the drainage control water outlet are both communicated with the flow water inlet.
13. The integrated water fitting assembly according to claim 12, wherein a piston limiting boss is arranged in the hollow cavity of the distribution body, and the water distribution piston is limited above the piston limiting boss.
14. The integrated water fitting assembly according to claim 12, wherein the delay mechanism further comprises an adjusting member, the adjusting member is disposed on the distribution body movably up and down, the adjusting member comprises a lower end located inside the distribution body and an upper end extending out of the distribution body, and an upper end of the delay spring abuts against the lower end of the adjusting member.
15. The integrated water fitting assembly according to claim 14, wherein the adjusting member comprises an adjusting knob and an adjusting plate fixedly connected with the adjusting knob, the upper end of the delay spring abuts against the adjusting plate, a threaded hole is formed in an upper part of the distribution body, an external thread is formed in an outer wall of the adjusting knob, and the adjusting knob is inserted into the threaded hole to be connected with the distribution body by a screw transmission.
16. The integrated water fitting assembly according to claim 12, wherein a first pressure relief hole is formed in an upper part of the distribution body, and a second pressure relief hole is formed in the water distribution piston, a water-passing cavity of the micro-pump is arranged inside the micro-pump, an impeller of the micro-pump is located in the water-passing cavity of the micro-pump, a third pressure relief hole is formed in a side wall of the water-passing cavity of the micro-pump, and the water inlet of the micro-pump, the water outlet of the micro-pump, and the third pressure relief hole of the micro-pump are all communicated with the water-passing cavity of the micro pump.
17. The integrated water fitting assembly according to claim 11, wherein the water outlet of the micro-pump has a head of 4-12 m, and a flow rate of 15-25 L/min; the drainage control water outlet of the micro-pump has a head of 3-10 m, and a flow rate of 3-10 L/min; and the washing water outlet of the micro-pump has a head of 3-5 m, and a flow rate of 12-18 L/min.
18. The integrated water fitting assembly according to claim 11, wherein the drainage mechanism comprises a valve body, a return spring, a piston, and a water-sealing rubber, the return spring is arranged in an inner cavity of the valve body, the return spring is located above the piston, a first end of the piston is slidably arranged in the valve body, a drainage liquid cavity communicated with a water inlet of the valve body is arranged below the piston, a second end of the piston extends out of the valve body, the second end of the piston is connected with the water-sealing rubber, the water-sealing rubber is sealed and adapted with the water outlet of the drainage base; an installation plate is connected below the water inlet in an outer wall of the valve body, and the dual-head flow distribution assembly is fixed on the installation plate to connect the drainage control water outlet to the water inlet of the valve body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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REFERENCE NUMERALS
[0057] 1: a housing, 11: an upper housing, 111: a through hole, 12: a lower housing, 13: a filter screen, 14: a snapping member, 141: a pressing part, 142: a snap, 2: a drainage mechanism, 21: a valve body, 22: a return spring, 23: a piston, 231: a drainage liquid cavity, 24: water-sealing rubber, 25: an installation plate, 3: a dual-outlet micro-pump, 31: a water-passing cavity, 32: a rotor shaft, 33: an impeller, 34: a water inlet, 35: a washing water outlet, 36: a drainage control water outlet, 37: a pressure relief hole, 4: a drainage base, 41: a water supplement tube, 42: a water leakage tube, 43: a flange, 5: a flushing aid pump, 51: a filter screen, 6: a flushing aid tube, 7: a flushing aid tubing, 71: an anti-siphon hole, 81: a water supply tube, 82: a solenoid valve, 9: an inlet valve, 10: a washing tubing, 200: a dual-head flow distribution assembly, 210: a flow water inlet, 220: a washing water outlet, 230: a drainage control water outlet, 240: a distribution body, 241: a piston limiting boss, 250: a first pressure relief hole, 260: a second pressure relief hole, 300: a micro-pump, 310: a third pressure relief hole, 400: a delay mechanism, 410: a water distribution piston, 420: a delay spring, 430: an adjusting knob, and 440: an adjusting plate.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0058] To enable those skilled in the art to better understand the technical solutions of the present disclosure, the present disclosure will be further described in detail below with reference to the accompanying drawings and specific embodiments.
Embodiment I
[0059] As shown in
[0060] The drainage mechanism 2 and the dual-outlet micro-pump 3 are disposed in the housing 1, the drainage base 4 is disposed below the housing 1, and the drainage mechanism 2 controls open or closing of a water outlet of the drainage base 4.
[0061] As shown in
[0062] As shown in
[0063] By reasonably setting a volume flow rate of the water-passing cavity 31 of the dual-outlet micro-pump 3, a diameter of the water inlet 34, a diameter of the washing water outlet 35, and a diameter of the drainage control water outlet 36, the drainage control water outlet of the dual-outlet micro-pump can have a head of 3-10 m, and a flow rate of 3-10 L/min, and the washing water outlet can have a head of 3-5 m, and a flow rate of 12-18 L/min, so as to satisfy the needs for washing and drainage of the smart toilet.
[0064] As shown in
[0065] In the present embodiment, the housing 1 includes an upper housing 11 and a lower housing 12 clamped with the upper housing 11. The dual-outlet micro-pump 3 and the valve body 21 are disposed on the lower housing 12, and a filter screen 13 is arranged at a position of the water inlet 34 of the dual-outlet micro-pump 3, as shown in
[0066] Snapping members 14 are arranged on two sides of an outer wall of the upper housing 11 and each of the snapping members 14 includes a middle part fixedly connected to the upper housing 11 and two ends being cantilevers. Each of the snapping members 14 includes an upper end being a pressing part 141 for pressing by hand. Each of the snapping members 14 includes a lower end provided with a snap 142. A flange 43 is formed in the periphery of the drainage base 4, and the snap 142 is clamped on the flange 43, so as to connect the drainage base 4 with the upper housing 11.
[0067] When disassembly is required, the pressing parts 141 of two snapping members 14 are pressed by hand at the same time, the upper ends of the snapping members 14 are pressed inward, and the lower ends are tilted outward, such that the snaps 142 at the lower ends are disengaged from the flange 43. The upper housing 11 is slightly broken upward, so as to realize the disassembly of the upper housing 11 and the lower housing 12.
[0068] The integrated drainage member of the present disclosure is in a dual control mode: as shown in
Embodiment II
[0069] The present embodiment provides an integrated water fitting assembly with a dual-outlet micro-pump, which has the functions of drainage, washing, and flushing. As shown in
[0070] As shown in
[0071] As shown in
[0072] As shown in
[0073] An anti-siphon hole 71 is formed in an upper part of the flushing aid tubing 7, and the anti-siphon hole 71 is higher than a working water level set in the water cavity, which can prevent siphoning.
[0074] When the smart toilet starts flushing, a main control unit independently drives the flushing aid pump 5 to work according to the needs. The flushing aid pump 5 pumps the water in the water cavity of the toilet into the flushing aid tube 6, the flow rate of the flushing aid water at the inlet end of the flushing aid tube 6 is a, and water is sprayed out from the outlet end of the flushing aid tube 6 through a small cross-sectional tube diameter. The flow rate of the flushing water is increased to a′. Due to the increased flow rate at the outlet end, the flow rate of the water discharged from the drainage base 4 is also increased, such that the flow rate of the water is increased from b to b′, thereby effectively improving the ability of flushing the toilet cavity.
Embodiment III
[0075] As shown in
[0076] When the smart toilet starts flushing, a main control unit independently drives the solenoid valve 82 to work according to the needs, the water in the inlet valve 9 enters the flushing aid tube 6 through the water supply tube 81, and the diameter of the outlet end of the flushing aid tube 6 is gradually reduced. Since the diameter is reduced, the flow rate of the fluid is increased when the restricted flow passes through the reduced flow cross-section. The flushing aid water flow of the flushing aid tube 6 is ejected from a nozzle to increase the flow rate of the water in the drainage base 4, which further drives the flow rate of the water in the flushing tubing of the smart toilet, thereby increasing the jet force for flushing the toilet cavity.
Embodiment IV
[0077] As shown in
[0078] The dual-head flow distribution assembly 200 in the present embodiment uses the existing three-way valve, including a flow water inlet 210, a washing water outlet 220, and a drainage control water outlet 230 that are communicated with each other.
[0079] The drainage mechanism 2, the dual-head flow distribution assembly 200, and the micro-pump 300 are disposed in the housing 1, the drainage base 4 is disposed below the housing 1, and a water inlet of the micro-pump 300 is communicated with a water source. The flow water inlet 210 is connected with a water outlet of the micro-pump 300, the washing water outlet 220 extends out of the housing 1, and the drainage control water outlet 230 is connected inside the drainage mechanism 2.
[0080] As shown in
[0081] In the present embodiment, the housing includes an upper housing 11 and a lower housing 12. The micro-pump 300 and the valve body 21 are disposed on the lower housing 12, and a filter screen 13 is arranged at a position of the lower housing 12 corresponding to the water inlet of the micro-pump 300, as shown in
[0082] As shown in
[0083] Snapping members 14 are arranged on two sides of an outer wall of the upper housing 11 and each of the snapping members 14 includes a middle part fixedly connected to the upper housing 11 and two ends being cantilevers. Each of the snapping members 14 includes an upper end being a pressing part 141 for pressing by hand. Each of the snapping members 14 includes a lower end provided with a snap 142. A flange 43 is formed in the periphery of the drainage base 4, and the snap 142 is clamped on the flange 43, so as to connect the drainage base 4 with the upper housing 11.
[0084] When disassembly is required, the pressing parts 141 of two snapping members 14 are pressed by hand at the same time, the upper ends of the snapping members 14 are pressed inward, and the lower ends are tilted outward, such that the snaps 142 at the lower ends are disengaged from the flange 43. The upper housing 11 is slightly broken upward, so as to realize the disassembly of the upper housing 11 and the lower housing 12.
[0085] The integrated drainage member of the present disclosure is in a dual control mode: as shown in
Embodiment V
[0086] As shown in
[0087] As shown in
[0088] The water distribution piston 410 separates the hollow cavity of the distribution body 240 into an upper cavity and a lower cavity, the delay spring 420 is located in the upper cavity, an upper end of the delay spring 420 abuts against the adjusting plate 440, and a lower end of the delay spring 420 abuts against the water distribution piston 410. A piston limiting boss 241 is arranged in the cavity of the distribution body 240, and the water distribution piston 410 is limited above the piston limiting boss 241.
[0089] As shown in
[0090] As shown in
[0091] As shown in
[0092] By reasonably setting a volume flow rate of the inner cavity of the dual-head flow distribution assembly, a diameter of the water inlet, a diameter of the washing water outlet, and a diameter of the drainage control water outlet, the water outlet of the micro-pump can have a head of 4-12 m and a flow rate of 15-25 L/min, the drainage control water outlet can have a head of 3-10 m and a flow rate of 3-10 L/min, and the washing water outlet can have a head of 3-5 m and a flow rate of 12-18 L/min, so as to satisfy the needs for washing and drainage of the smart toilet.
Embodiment VI
[0093] The present embodiment provides an integrated water fitting assembly, which has the functions of drainage, washing, and flushing aid. The present embodiment adds a flushing aid pump 5 and a flushing aid tube 6 on the basis of Embodiment IV or Embodiment V. The connection and use principle of the flushing aid pump 5 and the flushing aid tube 6 are the same as those in Embodiment II.
Embodiment VII
[0094] As shown in
[0095] The above described are merely preferred implementations of the present disclosure, and the protection scope of the present disclosure is not limited thereto. Any modification or replacement easily conceived by those skilled in the art within the technical scope of the present disclosure should fall within the protection scope of the present disclosure.