Tea room water inlet and outlet socket device
Through the design of the leakage detector and drainage slag filter, the sealing problem of the tea room water supply device in high temperature environment and the problem of retained water pollution are solved, and the safety and efficiency of the tea room water supply are improved.
Patent Information
- Application Number
- CN202510596323.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-09
- Publication Date
- 2025-08-08
AI Technical Summary
The existing tea room water supply device is prone to deformation and failure in high temperature environments, and the tea leaves are blocked from the valve, resulting in water leakage or insufficient water temperature, and the retained water quality is easily contaminated, affecting the efficiency and health of tea brewing.
A tea room water inlet and outlet socket device is designed, adopting a water leakage detector and water inlet valve structure, combined with a drainage filter, to achieve leakage power outage protection and rapid discharge of retained water, and accelerate water flow through spiral blades to prevent tea from being blocked.
It realizes sealing maintenance in high-temperature environments, timely power outage protection, rapid water temperature recovery and water quality purification, and improves tea brewing efficiency and safety.
Smart Images

Figure CN120453804A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of teahouse water supply, and in particular to a water inlet and outlet socket device for a teahouse. Background Art
[0002] The tea room water inlet and outlet sockets are mainly used to solve the water and electricity needs in the tea room. It integrates the water inlet, water outlet functions and power sockets into one device, providing the tea room with convenient water supply, wastewater discharge and power support.
[0003] Designed to provide convenient water supply, wastewater discharge, and power support for the teahouse, its main functions include water inlet, water outlet, and power supply. The water inlet function provides clean water for brewing tea and washing tea sets by connecting to tap water or other water sources; the water outlet function is used to discharge used wastewater to keep the teahouse environment clean.
[0004] The power socket provides power to electric kettles, tea stoves and other electrical appliances, making it convenient to heat water or keep it warm. The design of this device usually adopts an integrated structure, integrating the water inlet, water outlet and power socket into one device, which saves space and is beautiful and practical.
[0005] For example, a water inlet and outlet device for a pressure water barrel with publication number CN117449401A relates to the field of new energy vehicle technology. The existing technology includes a three-way pipe, one end of which is provided with a one-way device, the other end is provided with a detachable top-opening device, and the middle position is connected with an angle valve. The end of the three-way pipe close to the one-way device and the output end of the angle valve are both provided with a snap-fit sealing device.
[0006] However, the above-mentioned prior art still has some defects when supplying water to teahouses:
[0007] The above-mentioned prior art relies on multiple sealing components (such as sealing rings and snap-fit parts) to achieve sealing. In a tea room environment, the water used is used to brew tea. High temperature may cause the sealing ring to deform. The sealing ring may expand or twist at high temperature and lose its original shape and size. This deformation will destroy the tight fit between the sealing ring and the pipe or interface, resulting in seal failure. Water seeps out from the gap, and the seepage causes a short circuit in the wires or electronic components. The heat generated by the short circuit may cause a fire.
[0008] At the same time, the push rod will push open the internal valve or sealing structure of the pressure water barrel, allowing water to flow from the pressure water barrel into the tee pipe. However, in the tea room, the discharged wastewater may contain tea leaves, and the tea leaves may be stuck between the push rod and the internal valve, which will cause the push rod to fail to completely push open the valve, or after it is pushed open, the tea leaves may hinder the normal closing of the valve. Specifically, the tea leaves may be entangled on the push rod or accumulate near the valve, forming a physical obstacle. This situation will prevent water from flowing smoothly, or cause leakage when the valve is not completely closed.
[0009] In addition, after the water flows out of the pipe, the water flow will be retained in the pipe, and the water in the pipe will gradually cool down. When the user uses it to make tea next time, the temperature of the water initially released from the pipe may not be high enough and cannot immediately reach the ideal tea-making temperature. The user needs to wait for a while until the cold water in the pipe is drained before obtaining hot water of the appropriate temperature. This waiting process will affect the efficiency of tea making and the overall user experience.
[0010] Water trapped in pipes stays in a closed environment for a long time, which can easily breed bacteria and other microorganisms. These microorganisms may pollute the water quality and have adverse effects on human health. Over time, the trapped water may react with the pipe materials, causing the water quality to deteriorate.
[0011] Based on this, under the statement of the above viewpoints, the existing technology for supplying water to tea rooms still has room for improvement. Summary of the Invention
[0012] In order to solve the above technical problems, the present application provides a tea room water inlet and outlet socket device, which adopts the following technical solutions:
[0013] A tea room water inlet and outlet socket device, comprising a socket box, a socket cover provided at the upper end of the socket box, a support plate provided inside the socket box, a water inlet pipe and a water outlet pipe respectively passing through the support plate, one end of the water inlet pipe being configured as a water inlet end and the other end being configured as an outlet end, the water inlet end of the water inlet pipe extending outside the socket box, and the outlet end extending upward to above the socket cover;
[0014] One end of the water outlet pipe is configured as a drainage end and the other end is configured as a discharge end. The drainage end of the water outlet pipe passes upward to the top of the socket cover, and the discharge end of the water outlet pipe passes outside the socket box. A water leakage detector is provided at the bottom of the socket box.
[0015] The water leakage detector comprises a conductive plate arranged at the bottom of the socket box, a power-carrying plate is arranged at the upper end of the conductive plate, and an insulating plate is arranged between the conductive plate and the power-carrying plate.
[0016] Preferably, the water leakage detector includes a plurality of connecting holes distributed in a matrix and opened between the insulating plate and the power-carrying plate, wherein a conductive block connected to the conductive plate is arranged in the connecting hole, a gap is reserved between the conductive block and the connecting hole, and an insulating ring connected to the insulating plate is arranged in the gap.
[0017] Preferably, a water inlet valve is provided in the water inlet pipe;
[0018] The water inlet valve comprises a water retaining ring arranged in the water inlet pipe, a water retaining plug located on one side of the water retaining ring is slidably arranged in the water inlet pipe, and a plurality of flow holes are circumferentially opened on the water retaining plug.
[0019] Preferably, a bracket is provided in the water inlet pipe, and a pressing spring is provided between the bracket and the water stopper.
[0020] Preferably, a connecting pipe is provided on the water inlet pipe, the two ends of the connecting pipe are respectively a front end and a rear end, the front end of the connecting pipe is connected to the water inlet pipe, and the rear end of the connecting pipe is connected to the water outlet pipe, and a one-way valve is provided on the connecting pipe.
[0021] Preferably, the height of the water inlet pipe is relatively higher than that of the water outlet pipe.
[0022] Preferably, a sliding rod connected to the water stopper is slidably provided on the bracket, a water blocking plate connected to the sliding rod is slidably provided in the connecting pipe, and the water blocking plate corresponds to the front end of the connecting pipe.
[0023] Preferably, a drainage filter is provided in the water outlet pipe;
[0024] The drainage filter includes a spiral blade rotatably arranged in the connecting pipe, a rotating shaft coaxially arranged in the outlet pipe, and a plurality of water wheel blades corresponding to the rear end of the connecting pipe are arranged on the rotating shaft.
[0025] Preferably, the rear end of the connecting pipe deviates to one side of the axis of the water outlet pipe.
[0026] Preferably, the edge of the water wheel blade is configured as a blade.
[0027] In summary, this application includes at least one of the following beneficial technical effects:
[0028] 1. When the water inlet pipe, outlet pipe or connecting valve of the present invention leaks, water drops will fall on the electrified plate and electrically connect the conductive plate and the electrified plate through the conductive block, thereby detecting the water leakage. The electrical connection between the electrified plate and the conductive plate will trigger the power-off protection in the socket box.
[0029] 2. After the water supply of the water inlet pipe of the present invention stops, the compressed holding spring will push the water stop plug to move and hold the water stop ring tightly. At this time, the water stop plug will drive the sliding rod, which will drive the water blocking plate to move to open the front end of the connecting pipe, so that the hot water retained in the water inlet pipe will enter the connecting pipe from the front end, flow through the connecting pipe and enter the water outlet pipe from the rear end, and then be discharged from the water outlet pipe, thereby preventing the water retained in the water inlet pipe from staying in a closed environment for a long time.
[0030] 3. The wastewater of the present invention will pass through the several filter holes opened on the filter disc, and the impurities such as tea leaves in the wastewater will be blocked. A part of the wastewater will enter the slag discharge section, and the blocked tea leaves and other impurities will enter the slag discharge section along with this part of the wastewater. Then, the tea leaves impurities will enter the filter residue tank along with the wastewater, avoiding blockage of the water outlet pipe.
[0031] At the same time, the wastewater will pass through the drain hole and enter the connecting pipe from the slag pipe. The wastewater enters the connecting pipe from the front end and is accelerated by the spiral blades. The water flow ejected from the rear end of the connecting pipe will drive the water wheel blades to drive the rotating shaft to rotate. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 It is a structural schematic diagram of the present invention.
[0033] Figure 2 It is a three-dimensional cross-sectional view of the present invention.
[0034] Figure 3 It is a structural schematic diagram of the support plate, water inlet pipe and water outlet pipe of the present invention.
[0035] Figure 4 It is a cross-sectional view of the socket box of the present invention.
[0036] Figure 5 It is a structural schematic diagram of the water leakage detector of the present invention.
[0037] Figure 6 This invention Figure 5 A partial enlarged view of point A.
[0038] Figure 7 It is a structural schematic diagram of the water inlet valve of the present invention.
[0039] Figure 8 This invention Figure 7 A partial enlarged view of point B.
[0040] Figure 9 It is a cross-sectional view of the water inlet valve of the present invention.
[0041] Figure 10 It is a structural schematic diagram of the drainage residue filter of the present invention.
[0042] Figure 11 This invention Figure 10 A partial enlarged view of point C.
[0043] Figure 12 It is a cross-sectional view between the slag discharge pipe, the slag outlet pipe and the connecting pipe of the present invention.
[0044] Explanation of reference numerals: 1. socket box; 11. socket cover; 2. support plate; 3. water inlet pipe; 31. water inlet end; 32. output end; 4. water outlet pipe; 41. drainage end; 42. drainage end; 43. connecting valve; 5. water leakage detector; 51. conductive plate; 52. power supply plate; 53. insulating plate; 54. connecting hole; 55. conductive block; 56. gap; 57. insulating ring; 6. water inlet valve; 61. water retaining ring; 62. water retaining plug; 621. circulation hole; 63. bracket; 64 , tightening spring; 65, connecting pipe; 651, front end; 652, rear end; 66, one-way valve; 67, sliding rod; 68, water blocking plate; 7, drainage filter; 71, spiral blade; 72, rotating shaft; 73, water wheel blade; 731, blade; 74, conveying blade; 75, filter disc; 751, filter hole; 76, slag discharge pipe; 761, slag discharge section; 762, filter hole; 77, slag tank; 771, filter plate; 772, drain hole; 78, slag discharge pipe; 79, scraper. DETAILED DESCRIPTION
[0045] The following is combined with Figures 1 to 12 This application is described in further detail.
[0046] An embodiment of the present application discloses a water inlet and outlet socket device for a tea room. By staggering the conductive power sources, the conductive power sources are disconnected. When a water leak occurs in the pipe, the water droplets will connect the conductive power sources and trigger the power-off protection. At the same time, the water in the water inlet pipe is discharged, preventing the water retained in the pipe from staying in a closed environment for a long time.
[0047] Example 1:
[0048] Reference Figure 1 、 Figure 2 and Figure 3 As shown, a tea room water inlet and outlet socket device includes a socket box 1, a socket cover 11 is provided at the upper end of the socket box 1, a support plate 2 is provided inside the socket box 1, and a water inlet pipe 3 and a water outlet pipe 4 are respectively passed through the support plate 2, one end of the water inlet pipe 3 is configured as a water inlet end 31 and the other end is configured as an output end 32, the water inlet end 31 of the water inlet pipe 3 passes through the outside of the socket box 1 and is connected to the water supply equipment, and the output end 32 passes upward to the top of the socket cover 11 and is connected to the water use equipment.
[0049] The tea room water inlet and outlet sockets integrate the water inlet and outlet functions and the power socket in the socket box 1. When making tea with water, hot water will enter from the water inlet end 31 of the water inlet pipe 3, and then flow out from the output end 32 into the water device for use.
[0050] One end of the water outlet pipe 4 is constructed as a drainage end 41 and the other end is constructed as a discharge end 42. The drainage end 41 of the water outlet pipe 4 extends upward to the top of the socket cover 11 and is connected to drainage equipment such as the tea table drain outlet to discharge waste water in the tea room, and the discharge end 42 of the water outlet pipe 4 extends to the outside of the socket box 1 and is connected to the wastewater discharge equipment to recycle and treat the waste water discharged from the tea room.
[0051] When the wastewater is discharged, the wastewater enters the outlet pipe 4 from the drainage end 41 and then flows out from the discharge end 42 of the outlet pipe 4 .
[0052] Both the water inlet pipe 3 and the water outlet pipe 4 are provided with a connecting valve 43 located inside the socket box 1. Since the socket box 1 is integrated with electronic equipment such as a power supply, a water leakage detector 5 provided at the bottom of the socket box 1 will detect whether the connecting valve 43 inside the socket box 1 is leaking. When the connecting valve 43 leaks, the power supply is disconnected to protect the equipment and power supply safety.
[0053] Reference Figure 4 、 Figure 5 and Figure 6 As shown, specifically, the water leakage detector 5 includes a conductive plate 51 arranged at the bottom of the socket box 1, a power-on plate 52 is arranged at the upper end of the conductive plate 51, an insulating plate 53 is arranged between the conductive plate 51 and the power-on plate 52, and the electrical connection between the conductive plate 51 and the power-on plate 52 is blocked by the insulating plate 53. The water leakage detector 5 includes a plurality of connecting holes 54 distributed in a matrix and jointly opened between the insulating plate 53 and the power-on plate 52, and a conductive block 55 connected to the conductive plate 51 is arranged in the connecting hole 54.
[0054] Under normal circumstances, a gap 56 is reserved between the conductive block 55 and the connecting hole 54, so that the electrical connection between the conductive block 55 and the power-on plate 52 is disconnected and the power-off protection is not triggered. An insulating ring 57 connected to the insulating plate 53 is provided in the gap 56 to further ensure that the conductive block 55 and the power-on plate 52 will not be connected to the power supply.
[0055] When water leaks from the water inlet pipe 3, the water outlet pipe 4 or the connecting valve 43, water drops will fall on the electrified plate 52 and electrically connect the conductive plate 51 and the electrified plate 52 through the conductive block 55, thereby detecting the water leak. The electrical connection between the electrified plate 52 and the conductive plate 51 will trigger the power-off protection in the socket box 1.
[0056] Reference Figure 7 、 Figure 8 and Figure 9 As shown, in order to prevent the water retained in the water inlet pipe 3 from staying in a closed environment for a long time, a water inlet valve 6 is provided in the water inlet pipe 3. The water inlet valve 6 can timely block the flow in the water inlet pipe 3 and discharge the hot water retained in the water inlet pipe 3.
[0057] Specifically, the water inlet valve 6 includes a water stop ring 61 provided in the water inlet pipe 3 , a water stop plug 62 is slidably provided in the water inlet pipe 3 and is located on one side of the water stop ring 61 , and a bracket 63 is provided in the water inlet pipe 3 .
[0058] When hot water enters the water inlet pipe 3 from the water inlet end 31, the water flow will hit the water stop plug 62 from the middle of the water stop ring 61, causing the water stop plug 62 to move to one side and compress the clamping spring 64 set between the bracket 63 and the water stop plug 62, so that a gap is generated between the water stop plug 62 and the water stop ring 61. Then the hot water passes through the gap through the multiple flow holes 621 opened circumferentially on the water stop plug 62 and flows to the output end 32 of the water inlet pipe 3 to supply water to the tea room.
[0059] When the water supply is stopped, the compressed pressing spring 64 will push the water stop plug 62 to press against the water stop ring 61, and the water stop ring 61 will block the flow hole 621 to prevent hot water from entering.
[0060] A connecting pipe 65 is provided on the water inlet pipe 3 , and the two ends of the connecting pipe 65 are respectively a front end 651 and a rear end 652 . The front end 651 of the connecting pipe 65 is connected to the water inlet pipe 3 , and the rear end 652 of the connecting pipe 65 is connected to the water outlet pipe 4 .
[0061] When the water stop plug 62 is pressed against the water stop ring 61 to prevent hot water from entering, since the position height of the water inlet pipe 3 is relatively higher than the position height of the water outlet pipe 4, the hot water retained in the water inlet pipe 3 will enter the connecting pipe 65 from the front end 651, flow through the connecting pipe 65 and enter the water outlet pipe 4 from the rear end 652, and then be discharged from the water outlet pipe 4. A one-way valve 66 is provided on the connecting pipe 65 to ensure that the waste water in the water outlet pipe 4 will not enter the water inlet pipe 3.
[0062] A sliding rod 67 connected to the water stopper 62 is slidably provided on the bracket 63 , and a water blocking plate 68 connected to the sliding rod 67 is slidably provided in the connecting pipe 65 , and the water blocking plate 68 corresponds to the front end 651 of the connecting pipe 65 .
[0063] When the hot water pushes the water stop plug 62 to move, the water stop plug 62 will drive the sliding rod 67 to move together, and the sliding rod 67 will drive the water blocking plate 68 connected to it to move the water blocking plate 68 to the front end 651 of the connecting pipe 65, thereby blocking the front end 651 of the connecting pipe 65 and allowing the hot water to pass through the water inlet pipe 3 smoothly.
[0064] When the water supply is stopped, the compressed pressing spring 64 will push the water stop plug 62 to move and press against the water stop ring 61. At this time, the water stop plug 62 will drive the sliding rod 67, so that the sliding rod 67 drives the water blocking plate 68 to move, so as to open the front end 651 of the connecting pipe 65, so that the hot water retained in the water inlet pipe 3 will enter the connecting pipe 65 from the front end 651, flow through the connecting pipe 65 and enter the water outlet pipe 4 from the rear end 652, and then be discharged from the water outlet pipe 4.
[0065] Reference Figure 9 、 Figure 10 and Figure 11 As shown, a drainage filter 7 is provided in the outlet pipe 4, and the drainage filter 7 is used to collect and crush impurities such as tea leaves in the wastewater to avoid blockage of the outlet pipe 4.
[0066] Specifically, the drainage filter 7 includes a spiral blade 71 rotatably arranged in the connecting pipe 65, a rotating shaft 72 coaxial with the connecting pipe 4 is rotatably arranged in the outlet pipe 4, and a plurality of water wheel blades 73 corresponding to the rear end 652 of the connecting pipe 65 are arranged on the rotating shaft 72.
[0067] By driving the spiral blade 71 to rotate, the rotating spiral blade 71 will drive the water retained in the water inlet pipe 3 into the connecting pipe 65 from the front end 651. The water enters the connecting pipe 65 from the front end 651 of the connecting pipe 65, and is accelerated by the spiral blade 71. The water flows from the rear end 652 of the connecting pipe 65 into the water outlet pipe 4.
[0068] Since the rear end 652 of the connecting pipe 65 deviates toward one side of the axis of the water outlet pipe 4, the water flow ejected from the rear end 652 of the connecting pipe 65 will drive the water wheel blades 73 to drive the rotating shaft 72 to rotate. The edge of the water wheel blade 73 is constructed as a blade 731. The blade 731 of the rotating water wheel blade 73 will cut tea leaves and other debris to avoid clogging the water outlet pipe 4.
[0069] Example 2:
[0070] Reference Figure 10 、 Figure 11 and Figure 12 On the basis of the first embodiment, the drainage filter 7 is also used to separate the impurities such as tea leaves in the wastewater discharged from the tea room.
[0071] Among them, a conveying blade 74 is provided on the rotating shaft 72, which is located on the side of the water wheel blade 73 close to the discharge end 42. When water is ejected from the rear end 652 of the connecting pipe 65 to drive the water wheel blade 73 to drive the rotating shaft 72 to rotate, the rotating rotating shaft 72 will drive the conveying blade 74 provided thereon, and the wastewater enters the outlet pipe 4 from the drainage end 41, and then flows out from the discharge end 42 of the outlet pipe 4.
[0072] A filter disc 75 is provided in the water inlet pipe 3 and is located on the side of the water wheel blade 73 close to the discharge end 41. A plurality of filter holes 751 are provided on the filter disc 75. A slag discharge pipe 76 is provided on the water outlet pipe 4 and is located between the filter disc 75 and the water wheel blade 73. One end of the slag discharge pipe 76 passes through the water outlet pipe 4 and is provided with a slag discharge section 761. One end of the slag discharge section 761 passes through one side of the filter disc 75 and is flush with one side of the filter disc 75. A plurality of filter holes 762 are provided on the slag discharge section 761.
[0073] During this process, the wastewater will pass through the several filter holes 751 opened on the filter plate 75, and the tea leaves and other impurities in the wastewater will be blocked, and a part of the wastewater will enter the slag discharge section 761. The blocked tea leaves and other impurities will enter the slag discharge section 761 along with this part of the wastewater. Then, the tea leaves impurities will enter the filter residue tank 77 set at one end of the slag discharge pipe 76 along with the wastewater, and a part of the wastewater in the slag discharge section 761 will pass through the filter holes 762 again and return to the outlet pipe 4.
[0074] A filter plate 771 is provided in the filter residue tank 77 , and a plurality of drainage holes 772 are opened on the filter plate 771 . A slag discharge pipe 78 connected to the connecting pipe 65 is provided at the lower end of the filter residue tank 77 .
[0075] Impurities such as tea leaves in the wastewater will be blocked by the filter plate 771, and the wastewater will pass through the drain hole 772 and enter the connecting pipe 65 from the slag discharge pipe 76. The wastewater enters the connecting pipe 65 from the front end 651 of the connecting pipe 65, and is accelerated by the spiral blade 71. The water flow ejected from the rear end 652 of the connecting pipe 65 will drive the water wheel blade 73 to drive the rotating shaft 72 to rotate.
[0076] One end of the rotating shaft 72 rotates through the filter disc 75 and is provided with a scraper 79 , which contacts one end of the filter disc 75 .
[0077] The rotating shaft 72 drives the scraper 79 to rotate on the filter disc 75 , thereby scraping impurities such as tea leaves on the filter disc 75 into the slag discharge section 761 of the slag discharge pipe 76 .
[0078] The implementation principle of the present invention is:
[0079] (1): Under normal circumstances, a gap 56 is reserved between the conductive block 55 and the connecting hole 54, so that the conductive block 55 and the power-on plate 52 are electrically disconnected and the power-off protection is not triggered. In addition, an insulating ring 57 connected to the insulating plate 53 is provided in the gap 56 to further ensure that the conductive block 55 and the power-on plate 52 are not connected to the power supply.
[0080] (2): When water leaks from the water inlet pipe 3, the water outlet pipe 4 or the connecting valve 43, water drops will fall on the electrified plate 52 and electrically connect the conductive plate 51 and the electrified plate 52 through the conductive block 55, thereby detecting the water leak. The electrical connection between the electrified plate 52 and the conductive plate 51 will trigger the power-off protection in the socket box 1.
[0081] (3): When hot water enters the water inlet pipe 3 from the water inlet end 31, the water flow will hit the water stop plug 62 from the middle of the water stop ring 61, causing the water stop plug 62 to move to one side and compress the retaining spring 64 set between the bracket 63 and the water stop plug 62, so that a gap is generated between the water stop plug 62 and the water stop ring 61. Then, the hot water passes through the multiple flow holes 621 opened on the circumference of the water stop plug 62 from the gap and flows to the output end 32 of the water inlet pipe 3 to supply water to the tea room. When the water supply is stopped, the compressed retaining spring 64 will push the water stop plug 62 to press against the water stop ring 61, and the water stop ring 61 will block the flow holes 621 to isolate the hot water from entering.
[0082] (4): When the water stop plug 62 is pressed against the water stop ring 61 to block the entry of hot water, since the height of the water inlet pipe 3 is relatively higher than that of the water outlet pipe 4, the hot water retained in the water inlet pipe 3 will enter the connecting pipe 65 from the front end 651, flow through the connecting pipe 65 and enter the water outlet pipe 4 from the rear end 652, and then be discharged from the water outlet pipe 4. The one-way valve 66 ensures that the waste water in the water outlet pipe 4 will not enter the water inlet pipe 3.
[0083] (5): When hot water pushes the water stopper 62 to move, the water stopper 62 will drive the sliding rod 67 to move together, and the sliding rod 67 will drive the water blocking plate 68 connected to it, so that the water blocking plate 68 moves to the front end 651 of the connecting pipe 65, thereby blocking the front end 651 of the connecting pipe 65 and allowing hot water to pass through the water inlet pipe 3 smoothly.
[0084] (6): When the water supply is stopped, the compressed pressing spring 64 will push the water stop plug 62 to move and press against the water stop ring 61. At this time, the water stop plug 62 will drive the sliding rod 67, so that the sliding rod 67 drives the water blocking plate 68 to move, so as to open the front end 651 of the connecting pipe 65, so that the hot water retained in the water inlet pipe 3 will enter the connecting pipe 65 from the front end 651, flow through the connecting pipe 65 and enter the water outlet pipe 4 from the rear end 652, and then be discharged from the water outlet pipe 4.
[0085] (7): By driving the spiral blade 71 to rotate, the rotating spiral blade 71 will drive the water retained in the water inlet pipe 3 into the connecting pipe 65 from the front end 651. The water enters the connecting pipe 65 from the front end 651 of the connecting pipe 65, and is accelerated by the spiral blade 71. The water flows from the rear end 652 of the connecting pipe 65 into the outlet pipe 4. Since the rear end 652 of the connecting pipe 65 deviates to one side of the axis of the outlet pipe 4, the water flow ejected from the rear end 652 of the connecting pipe 65 will drive the water wheel blade 73 to drive the rotating shaft 72 to rotate.
[0086] (8): During this process, the wastewater will pass through the several filter holes 751 opened on the filter plate 75, and the tea leaves and other impurities in the wastewater will be blocked, and a part of the wastewater will enter the slag discharge section 761. The blocked tea leaves and other impurities will enter the slag discharge section 761 along with this part of the wastewater, and then the tea leaves impurities will enter the filter residue tank 77 set at one end of the slag discharge pipe 76 along with the wastewater.
[0087] (9): Impurities such as tea leaves in the wastewater will be blocked by the filter plate 771, and the wastewater will pass through the drain hole 772 and enter the slag discharge pipe 76 into the connecting pipe 65. The wastewater enters the connecting pipe 65 from the front end 651 of the connecting pipe 65, and is accelerated by the spiral blade 71. The water flow ejected from the rear end 652 of the connecting pipe 65 will drive the water wheel blade 73 to drive the rotating shaft 72 to rotate.
[0088] The embodiments of this specific implementation method are all preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, any equivalent changes made based on the structure, shape, and principle of the present invention should be included in the scope of protection of the present invention.
Claims
1. A tea room water inlet and outlet socket device, comprising a socket box (1), a socket cover (11) provided at the upper end of the socket box (1), a support plate (2) provided inside the socket box (1), a water inlet pipe (3) and a water outlet pipe (4) respectively passing through the support plate (2), characterized in that: One end of the water inlet pipe (3) is configured as a water inlet end (31) and the other end is configured as an output end (32); the water inlet end (31) of the water inlet pipe (3) passes through the outside of the socket box (1), and the output end (32) passes upward to the top of the socket cover (11); One end of the water outlet pipe (4) is configured as a drainage end (41) and the other end is configured as a discharge end (42); the drainage end (41) of the water outlet pipe (4) extends upward to the top of the socket cover (11), and the discharge end (42) of the water outlet pipe (4) extends to the outside of the socket box (1); a water leakage detector (5) is provided at the bottom of the socket box (1); The water leakage detector (5) comprises a conductive plate (51) arranged at the bottom of the socket box (1), a power-carrying plate (52) is arranged at the upper end of the conductive plate (51), and an insulating plate (53) is arranged between the conductive plate (51) and the power-carrying plate (52).
2. A tea room water inlet and outlet socket device according to claim 1, characterized in that: The water leakage detector (5) comprises a plurality of communication holes (54) arranged in a matrix between an insulating plate (53) and a conducting plate (52); a conductive block (55) connected to the conductive plate (51) is arranged in the communication hole (54); a gap (56) is reserved between the conductive block (55) and the communication hole (54); and an insulating ring (57) connected to the insulating plate (53) is arranged in the gap (56).
3. A tea room water inlet and outlet socket device according to claim 2, characterized in that: A water inlet valve (6) is provided in the water inlet pipe (3); The water inlet valve (6) comprises a water retaining ring (61) arranged in the water inlet pipe (3), a water retaining plug (62) slidably arranged in the water inlet pipe (3) and located on one side of the water retaining ring (61), and a plurality of flow holes (621) are circumferentially formed on the water retaining plug (62).
4. A tea room water inlet and outlet socket device according to claim 3, characterized in that: A bracket (63) is provided in the water inlet pipe (3), and a pressing spring (64) is provided between the bracket (63) and the water stopper (62).
5. A tea room water inlet and outlet socket device according to claim 4, characterized in that: The water inlet pipe (3) is provided with a connecting pipe (65), the two ends of the connecting pipe (65) are respectively a front end (651) and a rear end (652), the front end (651) of the connecting pipe (65) is communicated with the water inlet pipe (3), and the rear end (652) of the connecting pipe (65) is communicated with the water outlet pipe (4), and a one-way valve (66) is provided on the connecting pipe (65).
6. The tea room water inlet and outlet socket device according to claim 1, characterized in that: The height of the water inlet pipe (3) is relatively higher than the height of the water outlet pipe (4).
7. The tea room water inlet and outlet socket device according to claim 5, characterized in that: A sliding rod (67) connected to the water stopper (62) is slidably provided on the bracket (63), and a water blocking plate (68) connected to the sliding rod (67) is slidably provided in the connecting pipe (65), and the water blocking plate (68) corresponds to the front end (651) of the connecting pipe (65).
8. The tea room water inlet and outlet socket device according to claim 5, characterized in that: A drainage filter (7) is provided in the water outlet pipe (4); The drainage filter (7) comprises a spiral blade (71) rotatably arranged in a connecting pipe (65), a rotating shaft (72) coaxial with the outlet pipe (4) rotatably arranged in the outlet pipe (4), and a plurality of water wheel blades (73) corresponding to the rear end (652) of the connecting pipe (65) are arranged on the rotating shaft (72).
9. The tea room water inlet and outlet socket device according to claim 8, characterized in that: The rear end (652) of the connecting pipe (65) deviates toward one side of the axis of the water outlet pipe (4).
10. The tea room water inlet and outlet socket device according to claim 9, characterized in that: The edge of the water wheel blade (73) is configured as a blade (731).
Citation Information
Patent Citations
Water inlet and outlet device for pressure bucket
CN117449401A