A building water supply and drainage system

By using frame barriers and adjustment modules in the building water supply and drainage system, the problem of dust and debris accumulation in rain collecting structures on non-rainy days is solved, and the high cleanliness of rainwater is collected and simplified cleaning is achieved, reducing the difficulty of subsequent processing.

CN117051912BActive Publication Date: 2025-08-29KUNXIANG GRP CO LTD
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Patent Information

Application Number
CN202311064222.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-22
Publication Date
2025-08-29
Estimated Expiration
2043-08-22

AI Technical Summary

Technical Problem

In the existing building water supply and drainage system, the rain-collecting structure is prone to accumulate dust and debris, resulting in dirty rainwater collected and increasing the difficulty of subsequent treatment.

Method used

The locking frame connected by the fixed seat is rotatably connected to block the inside of the collection frame. On rainy days, the exposed collection frame can be rotated upward for rainwater collection, and the debris can be cleaned through the opening groove and the discharge hole design. Combined with the adjustment module and the motor-driven adjustment rod system, the automatic adjustment and cleaning of the locking frame is realized.

Benefits of technology

It improves the cleanliness of collected rainwater, reduces the difficulty of subsequent processing, ensures the quality of rainwater, and simplifies the cleaning process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of building water supply and drainage, and in particular to a building water supply and drainage system, comprising a collection module and an adjustment module, wherein the collection module comprises a collection frame, wherein the bottom surface of the collection frame is connected to a delivery pipe, and a plurality of sliding seats are equidistantly slidably provided on the top of the inner side of the collection frame, and two fixed seats are fixedly connected to one side of the top surface of the sliding seat, and the two fixed seats are rotatably connected to the opposing surfaces of the two fixed seats, and the side surface of one side of the blocking frame contacts the other side of the top surface of the adjacent sliding seat, and the side surface of the other side of the blocking frame is provided with an open groove. In the present invention, the blocking frame is rotatably connected to the fixed seat, and the blocking frame can block the interior of the collection frame to prevent debris from falling into the collection frame. On rainy days, the blocking frame can be rotated upward, at which time the interior of the collection frame can be exposed for rainwater collection. Dust and debris are not easily accumulated in the collection frame, which is conducive to improving the cleanliness of the collected rainwater and reducing the difficulty of subsequent treatment of the rainwater.
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Description

Technical Field

[0001] The present invention relates to the technical field of building water supply and drainage, and in particular to a building water supply and drainage system. Background Art

[0002] The building water supply and drainage system mainly controls the flow and discharge of water inside and outside the building, including water supply, drainage, rainwater and sewage treatment. In some energy-saving buildings, rainwater is sometimes converted into usable water resources through the water supply and drainage system. The rainwater is collected through the water supply and drainage system and then used after treatment, so as to achieve the purpose of saving resources and energy. When the existing building water supply and drainage system is in use, a rainwater collection structure is usually set on the top of the building to collect rainwater when it rains. However, the rainwater collection structure is directly exposed to the outside world, which makes it easy for dust and debris to accumulate in the rainwater collection structure in non-rainy weather. In this way, the rainwater may be relatively dirty when collected, increasing the difficulty of subsequent treatment of the rainwater. Summary of the Invention

[0003] In order to overcome the above-mentioned technical problems, the purpose of the present invention is to provide a building water supply and drainage system, which is rotatably connected to a baffle frame through a fixed seat. The baffle frame can block the interior of the collection frame to prevent debris from falling into the collection frame. On rainy days, the baffle frame can be rotated upward, and the interior of the collection frame can be exposed to collect rainwater. Dust and debris are not easily accumulated in the collection frame, which is beneficial to improving the cleanliness of the collected rainwater and reducing the difficulty of subsequent treatment of the rainwater.

[0004] The purpose of the present invention can be achieved through the following technical solutions:

[0005] A building water supply and drainage system includes a collection module and an adjustment module. The collection module includes a collection frame. The bottom surface of the collection frame is connected to a delivery pipe. A plurality of sliding seats are equidistantly slidably arranged on the top of the inner side of the collection frame. Two fixed seats are fixedly connected to one side of the top surface of the sliding seat. The two fixed seats are rotatably connected to the opposite surfaces of the two fixed seats, and the side surface of one side of the baffle frame contacts the other side of the top surface of the adjacent sliding seat. An open groove is provided on the side surface of the other side of the baffle frame. A delivery groove is provided on the top surface of the sliding seat. Connecting grooves are provided at the bottom of the inner sides on both sides of the delivery groove. A plurality of rows of holes are provided on the inner sides of both sides of the collection frame corresponding to the connecting grooves.

[0006] The sliding seat can block the adjacent baffle frame to prevent the baffle frame from rotating downward. The baffle frame can block the inside of the collection frame to prevent debris from falling into the collection frame. On rainy days, the baffle frame can be rotated upward. At this time, the inside of the collection frame can be exposed to collect rainwater. Dust and other dirt are not easy to fall into the collection frame, which is beneficial to improving the cleanliness of the collected rainwater and reducing the difficulty of subsequent treatment of the rainwater. After the baffle frame is rotated upward, the open groove will face the conveying groove. The rainwater falling into the baffle frame can pass through the open groove and flow into the conveying groove in the sliding seat, and then pass through the connecting groove and out through the drainage hole. The rainwater can carry away the dirt that falls into the baffle frame, thereby cleaning the inside of the baffle frame.

[0007] Furthermore, several baffles are equidistantly connected to the top of the inner side of the baffle frame for rotation, one side of the bottom surface of the baffle is fixedly connected to a limit block, and one side of the top surface of the baffle is provided with a limit slot corresponding to the limit block. When the baffle frame rotates upward, the baffle will remain vertical under the action of its own gravity, so that after the baffle frame rotates upward 90 degrees, the baffle will block the opening of the baffle frame, and the limit block will be inserted into the adjacent limit slot.

[0008] Material toggling mechanism, its both sides respectively have a cylinder pressure, and the cylinder pressure bar connects swing arm, and the swing arm end face has hook portion, and a bar passes position between the end of two swing arms and the hook portion. The swing arm ends up being rotated by the hook portion. The swing arm ends up being rotated by the hook portion.

[0009] Furthermore, one side of the opposite surfaces of the two adjustment frames is fixedly connected with a side rod fixedly connected to the side of the collection frame, the inner side of the side rod is rotatably connected to the transmission shaft, both ends of the transmission shaft extend into the interior of the adjacent adjustment frame, and both ends of the transmission shaft are rotatably connected to one end of the adjacent rotating shaft, an adjustment motor is provided on one side of an adjustment frame, the output end of the adjustment motor is transmission-connected to the other end of the adjacent rotating shaft, and the transmission shaft can drive the rotating shafts at both ends thereof to rotate, so that when the adjustment motor drives the adjacent rotating shafts to rotate, the rotating shafts in the two adjustment frames can rotate synchronously, thereby rotating the adjustment toothed belt to adjust the angle of the baffle frame.

[0010] Furthermore, several circular grooves are provided on the side of the sliding groove corresponding to the adjusting rod, and the side of the adjusting rod is fixedly connected to a long strip block which is slidably connected to the inner side of the adjacent circular groove, the inner side of the adjusting frame is fixedly connected to the support frame, and the side of the adjusting rod is rotatably connected to a sliding block which is slidably connected to the inner side of the support frame.

[0011] The adjusting motor can be started to rotate the adjusting toothed belt, thereby rotating the adjusting rod to adjust the angle of the baffle frame. The adjusting rod can drive the long block to rotate in the circular groove so that the long block is opposite the sliding groove. After the baffle frame rotates upward 90 degrees, the sliding seat will prevent the baffle frame from continuing to rotate upward, and at this time the missing gear will be disengaged from the adjusting toothed belt. The adjusting toothed belt continues to rotate, and the adjusting gear can be moved to move the sliding seat and the baffle frame located on the side close to the side rod, and the long block is inserted into the sliding groove. After the sliding seat moves a certain distance, it can push the sliding seat in front of its moving direction to move, thereby moving several sliding seats to the side of the collection frame away from the side rod, exposing a larger area of ​​the collection frame, facilitating cleaning the inside of the collection frame, and helping to keep the inside of the collection frame clean, thereby reducing the difficulty of subsequent rainwater treatment.

[0012] Furthermore, a connecting line is fixedly connected between two adjacent sliding blocks, and a torsion spring is provided between the adjusting rod and the inner side surface of the sliding block.

[0013] After the cleaning is completed, the adjusting toothed belt can be rotated in the opposite direction. Since the sliding groove can limit the rotation of the long strip, the adjusting toothed belt can toggle the adjusting gear to move in the opposite direction, so that the sliding seat and the baffle frame move in the opposite direction. The adjusting rod can drive the sliding block to move in the opposite direction. After the sliding block moves a certain distance, the sliding block behind its moving direction can be pulled by the connecting line, so that the sliding seat behind the sliding seat in the forward direction moves in turn, thereby gradually moving several sliding seats to their original positions. At this time, the long strip will be located in a circular groove of corresponding diameter. Under the action of the torsion spring, the adjusting toothed belt can re-engage with the missing gear, thereby lowering the baffle frame again to block the top of the collection frame.

[0014] Furthermore, the lengths of the plurality of long strips decrease from one side of the adjustment frame to the other side. Since the diameter of the circular groove decreases from one side of the adjustment frame close to the side rod to the other side, the long strips can smoothly pass through the circular groove with a smaller diameter when sliding in the sliding groove.

[0015] Furthermore, the adjustment module is equipped with a rain collecting cylinder, the bottom of which is transparent, and a pressure sensor is provided on the bottom surface of the rain collecting cylinder. When it rains, rainwater can fall into the rain collecting cylinder. Since the rain collecting cylinder is wide at the top and narrow at the bottom, the drainage inside the rain collecting cylinder is slow. When a certain amount of rainwater accumulates in the rain collecting cylinder, a certain pressure can be generated on the pressure sensor, thereby triggering the pressure sensor and starting the adjustment motor.

[0016] Beneficial effects of the present invention:

[0017] 1. A baffle is rotatably connected to the fixed seat. The baffle can block the inside of the collection frame to prevent debris from falling into the collection frame. On rainy days, the baffle can be rotated upward to expose the inside of the collection frame for rainwater collection. When the baffle rotates upward, rainwater falling into the baffle can flow into the sliding seat through the opening groove and then out through the drainage hole. The rainwater can carry away the dirt that falls into the baffle, thereby cleaning the inside of the baffle. Dust and debris are not easily accumulated in the collection frame, which is beneficial to improving the cleanliness of the collected rainwater and reducing the difficulty of subsequent treatment of the rainwater.

[0018] 2. A long strip is fixedly connected to the side of the adjusting rod, and the adjusting gear and the missing gear can be rotated by driving the toothed belt, so that several baffles can be rotated upward synchronously. After the baffle rotates 90 degrees, the sliding seat can prevent the baffle from continuing to rotate, and at this time the long strip is facing the sliding groove. At this time, the driving toothed belt can move the adjusting gear to move a baffle on one side of the adjusting frame to move to the other side of the adjusting frame, and the baffle can push other baffles to move, thereby concentrating the baffles on the side of the collection frame away from the side rod. In this way, after the collection frame has been used for a period of time, it is convenient to expose the inside of the collection frame and clean the inside of the collection frame to avoid the inside of the collection frame being too dirty and affecting the subsequent rainwater collection, thereby reducing the difficulty of subsequent rainwater treatment. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The present invention will be further described below with reference to the accompanying drawings.

[0020] Figure 1 This is a schematic diagram of the overall structure of a building water supply and drainage system of the present invention;

[0021] Figure 2 This is a schematic diagram of the internal structure of the collection frame in the present invention;

[0022] Figure 3 It is a schematic diagram of the sliding seat structure of the present invention;

[0023] Figure 4 This is a schematic diagram of the internal structure of the baffle frame in the present invention;

[0024] Figure 5 It is a schematic structural diagram of the adjustment module in the present invention;

[0025] Figure 6 This is a schematic diagram of the front view structure of the adjustment frame in the present invention;

[0026] Figure 7 It is a schematic diagram of the internal structure of the adjustment frame in the present invention;

[0027] Figure 8 This is a schematic diagram of the rear view structure of the internal structure of the adjustment frame of the present invention;

[0028] Figure 9This is a schematic diagram of the rear view structure of the support frame in the present invention;

[0029] Figure 10 It is a schematic diagram of the sliding block structure in the present invention.

[0030] In the figure: 100, collecting module; 110, collecting frame; 111, conveying pipe; 120, sliding seat; 121, fixing seat; 122, conveying trough; 123, connecting trough; 130, baffle frame; 131, opening trough; 140, baffle; 141, limit block; 142, limit groove; 200, adjusting module; 210, adjusting frame; 211, sliding trough; 212, circular trough; 213, rotating shaft; 214, driving gear; 220, side rod; 221, transmission shaft; 230, adjusting rod; 231, long strip; 232, sliding block; 240, adjusting toothed belt; 250, adjusting gear; 260, missing gear; 270, supporting frame; 280, connecting line; 300, rain collecting cylinder. DETAILED DESCRIPTION

[0031] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.

[0032] See also Figure 1-10 As shown, a building water supply and drainage system includes a collection module 100 and an adjustment module 200. The collection module 100 includes a collection frame 110. The bottom surface of the collection frame 110 is connected to a delivery pipe 111. A plurality of sliding seats 120 are equidistantly slidingly arranged on the top of the inner side of the collection frame 110. Two fixed seats 121 are fixedly connected to one side of the top surface of the sliding seat 120. The two fixed seats 121 are rotatably connected to the opposite surfaces of the baffle frame 130, and the side surface of one side of the baffle frame 130 contacts the other side of the top surface of the adjacent sliding seat 120. An open groove 131 is provided on the other side of the baffle frame 130. A delivery groove 122 is provided on the top surface of the sliding seat 120. Connecting grooves 123 are provided on the bottom of the inner sides on both sides of the delivery groove 122. A plurality of rows of holes are provided on the inner sides of the collecting frame 110 corresponding to the connecting grooves 123.

[0033] The sliding seat 120 can block the adjacent baffle 130 and prevent the baffle 130 from rotating downward. The baffle 130 can block the inside of the collecting frame 110 to prevent debris from falling into the collecting frame 110. On rainy days, the baffle 130 can be rotated upward. At this time, the inside of the collecting frame 110 can be exposed for rainwater collection. Dust and other dirt are not easily dropped into the collecting frame 110, which is beneficial to improving the cleanliness of the collected rainwater and reducing the difficulty of subsequent treatment of the rainwater. After the baffle 130 is rotated upward, the open groove 131 will face the conveying groove 122. The rainwater falling into the baffle 130 can pass through the open groove 131 and flow into the conveying groove 122 in the sliding seat 120, and then pass through the connecting groove 123 and flow out through the drainage hole. The rainwater can carry away the dirt falling into the baffle 130, thereby cleaning the inside of the baffle 130.

[0034] Several baffles 140 are equidistantly connected to the top of the inner side of the baffle frame 130 for rotation. A limit block 141 is fixedly connected to one side of the bottom surface of the baffle 140, and a limit slot 142 is provided on one side of the top surface of the baffle 140 corresponding to the limit block 141. When the baffle frame 130 rotates upward, the baffle 140 will remain vertical under the action of its own gravity. In this way, after the baffle frame 130 rotates upward 90 degrees, the baffle 140 will block the opening of the baffle frame 130, and the limit block 141 will be inserted into the adjacent limit slot 142.

[0035] The adjustment module 200 includes two adjustment frames 210, the sides of the two adjustment frames 210 are fixedly connected to the inner side of the collection frame 110, and the opposite surfaces of the two adjustment frames 210 are provided with sliding grooves 211. The sliding grooves 211 are provided with a plurality of adjustment rods 230 corresponding to the fixed seats 121. One end of the adjustment rod 230 extends into the interior of the adjustment frame 210, and the other end of the adjustment rod 230 is rotatably connected to the inner side of the adjacent fixed seat 121, and the other end of the adjustment rod 230 is fixedly connected to the side of the adjacent baffle 130. Both sides of the inner side of the adjustment frame 210 are rotatably connected to the rotating shaft 213, and the side of the rotating shaft 213 is fixedly sleeved with a driving gear 214. The two driving gears 214 are meshed and transmitted with the adjustment toothed belt 2 40. An adjusting rod 230 located on one side of the interior of the adjusting frame 210 has an adjusting gear 250 fixedly sleeved on one end, and several adjusting rods 230 located on the other side of the interior of the adjusting frame 210 have a missing gear 260 fixedly sleeved on one end. The tops of the adjusting gear 250 and the several missing gears 260 are meshed with the top of the inner side of the adjusting toothed belt 240. When the rotating shaft 213 rotates, it can drive the driving gear 214 to rotate, and the driving gear 214 can drive the adjusting toothed belt 240 to rotate. The adjusting toothed belt 240 can drive the adjusting gear 250 and the missing gear 260 to rotate, so that the several adjusting rods 230 rotate synchronously, and the adjusting rod 230 can drive the baffle frame 130 to rotate, so that the baffle frame 130 rotates upward to expose the inside of the collection frame 110.

[0036] The two adjustment frames 210 are fixedly connected to the side of the opposite surface with a side rod 220 fixedly connected to the side of the collection frame 110, and the inner side of the side rod 220 is rotatably connected to the transmission shaft 221. Both ends of the transmission shaft 221 extend into the interior of the adjacent adjustment frame 210, and both ends of the transmission shaft 221 are rotatably connected to one end of the adjacent rotating shaft 213. An adjustment motor is provided on one side of an adjustment frame 210, and the output end of the adjustment motor is transmission-connected to the other end of the adjacent rotating shaft 213. The transmission shaft 221 can drive the rotating shafts 213 at both ends to rotate. In this way, when the adjustment motor drives the adjacent rotating shafts 213 to rotate, the rotating shafts 213 in the two adjustment frames 210 can rotate synchronously, thereby adjusting the toothed belt 240 to rotate the adjustment angle of the baffle frame 130.

[0037] Several circular grooves 212 are provided on the side of the sliding groove 211 corresponding to the adjusting rod 230. The side of the adjusting rod 230 is fixedly connected with a long strip block 231 that is slidably connected to the inner side of the adjacent circular groove 212. The inner side of the adjusting frame 210 is fixedly connected to the support frame 270. The side of the adjusting rod 230 is rotatably connected with a sliding block 232 that is slidably connected to the inner side of the support frame 270.

[0038] The adjusting motor can be started to rotate the adjusting toothed belt 240, thereby rotating the adjusting rod 230 to adjust the angle of the baffle 130. The adjusting rod 230 can drive the long block 231 to rotate in the circular groove 212 so that the long block 231 is facing the sliding groove 211. After the baffle 130 rotates 90 degrees upward, the sliding seat 120 will prevent the baffle 130 from continuing to rotate upward, and at this time the missing gear 260 will be disengaged from the adjusting toothed belt 240. The adjusting toothed belt 240 continues to rotate, and the adjusting gear 250 can be toggled to move so that the baffle 130 is located near the adjusting gear. The sliding seat 120 and the baffle frame 130 on the side of the proximal rod 220 move, and the long block 231 is inserted into the sliding groove 211. After the sliding seat 120 moves a certain distance, it can push the sliding seat 120 in front of its moving direction to move, thereby moving several sliding seats 120 to the side of the collection frame 110 away from the side rod 220, exposing a larger area of ​​the collection frame 110, making it easier to clean the inside of the collection frame 110, and helping to keep the inside of the collection frame 110 clean, thereby reducing the difficulty of subsequent rainwater treatment.

[0039] A connecting line 280 is fixedly connected between each adjacent sliding block 232, and a torsion spring is provided between the adjusting rod 230 and the inner side surface of the sliding block 232. After cleaning is completed, the adjusting toothed belt 240 can be rotated in the opposite direction. Since the sliding groove 211 can limit the rotation of the long strip 231, the adjusting toothed belt 240 can toggle the adjusting gear 250 to move in the opposite direction, causing the sliding seat 120 and the blocking frame 130 to move in the opposite direction. The adjusting rod 230 can drive the sliding block 232 to move in the opposite direction. After the sliding block 232 moves a certain distance, the connecting line 280 can pull the sliding block 232 behind it in the direction of movement, thereby causing the sliding seat 120 behind it in the forward direction to move in sequence, thereby gradually moving the plurality of sliding seats 120 to their original positions. At this time, the long strip 231 will be located in the circular groove 212 of the corresponding diameter. Under the action of the torsion spring, the adjusting toothed belt 240 can re-engage with the missing gear 260, thereby lowering the blocking frame 130 again to block the top of the collection frame 110.

[0040] The lengths of the plurality of long strips 231 decrease from one side of the adjustment frame 210 to the other side of the adjustment frame 210. Since the diameter of the circular groove 212 decreases from the side of the adjustment frame 210 close to the side rod 220 to the other side, the long strips 231 can smoothly pass through the circular groove 212 with a smaller diameter when sliding in the sliding groove 211.

[0041] The regulating module 200 is equipped with a rain collecting tube 300. The bottom of the rain collecting tube 300 is transparent, and a pressure sensor is provided on the bottom surface of the rain collecting tube 300. When it rains, rainwater can fall into the rain collecting tube 300. Since the rain collecting tube 300 is wide at the top and narrow at the bottom, the drainage inside the rain collecting tube 300 is slow. When a certain amount of rainwater accumulates in the rain collecting tube 300, a certain pressure can be generated on the pressure sensor, thereby triggering the pressure sensor and starting the regulating motor.

[0042] Working principle: When in use, the baffle 130 will block the inside of the collection frame 110. When it rains, rainwater will fall into the baffle 130 and into the rain collecting tube 300. Since the rain collecting tube 300 is wide at the top and narrow at the bottom, the drainage inside the rain collecting tube 300 is slow. When a certain amount of rainwater accumulates in the rain collecting tube 300, a certain pressure will be generated on the pressure sensor, thereby triggering the pressure sensor and starting the adjustment motor. The adjustment motor can drive the adjacent rotating shaft 213 to rotate. A rotating shaft 213 in one adjustment frame 210 can drive the transmission shaft 221 to rotate. The transmission shaft 221 can drive the inner of another adjustment frame 210 to rotate. A rotating shaft 213 rotates, thereby causing the rotating shafts 213 in the two adjustment frames 210 to rotate synchronously through the transmission shaft 221. The rotating shaft 213 can drive the driving gear 214 to rotate, and the driving gear 214 can drive the adjusting toothed belt 240 to rotate. The adjusting toothed belt 240 can drive the adjusting gear 250 and the missing gear 260 to rotate, thereby causing the multiple adjusting rods 230 to rotate synchronously. The adjusting rods 230 can drive the baffle frame 130 to rotate and cause the long block 231 to rotate in the circular groove 212. After the baffle frame 130 rotates upward, the interior of the collection frame 110 can be exposed, so that the collection frame 110 can collect rainwater;

[0043] When the baffle 130 rotates upward, the baffle 140 will remain vertical under the action of its own gravity. In this way, after the baffle 130 rotates upward 90 degrees, the baffle 140 will block the opening of the baffle 130, and the opening groove 131 will face the conveying groove 122. The rainwater falling into the baffle 130 can flow downward, and the rainwater can pass through the opening groove 131 into the conveying groove 122, and then pass through the connecting groove 123 and the drainage hole on the collection frame 110, thereby draining the rainwater in the baffle 130. The rainwater can be discharged from the baffle 130. The dust and other dirt accumulated in the baffle 130 are taken away, and the rainwater collected in the collection frame 110 can be transported to the processing equipment through the delivery pipe 111 for treatment. After the rain ends and the rainwater in the rain collecting cylinder 300 is drained, the adjustment motor can drive the rotating shaft 213 to rotate in the opposite direction. Due to the action of the torsion spring, the missing gear 260 is attached to the adjustment toothed belt 240. In this way, when the adjustment toothed belt 240 rotates in the opposite direction, the missing gear 260 can be rotated in the opposite direction, thereby lowering the baffle 130.

[0044] When it is necessary to clean the inside of the collection frame 110, the adjustment motor can be started to rotate the rotating shaft 213 through the driving gear 214 to drive the adjustment toothed belt 240 to rotate, so that the baffle 130 is rotated 90 degrees upward. At this time, the sliding seat 120 will prevent the baffle 130 from continuing to rotate upward, and the missing gear 260 will be disengaged from the adjustment toothed belt 240. At the same time, the adjustment rod 230 can drive the long block 231 to rotate, so that the long block 231 is facing the sliding groove 211, and the adjustment toothed belt 240 continues to rotate. The adjusting gear 250 is toggled to move the sliding seat 120 and the blocking frame 130 located on the side close to the side rod 220, thereby inserting the long block 231 into the sliding groove 211. After the sliding seat 120 contacts the sliding seat 120 in front of it in the moving direction, it pushes the sliding seat 120 in front of it to move, thereby moving several sliding seats 120 to the side of the collection frame 110 away from the side rod 220, exposing a larger area of ​​the collection frame 110, and then the interior of the collection frame 110 can be cleaned;

[0045] After the cleaning is completed, the motor can be adjusted to rotate the adjusting toothed belt 240 in the opposite direction. Since the sliding groove 211 can limit the rotation of the long strip 231, the adjusting toothed belt 240 can toggle the adjusting gear 250 to move in the opposite direction, so that the adjusting rod 230 drives the long strip 231 and the sliding block 232 to move in the opposite direction, so that the sliding seat 120 and the baffle 130 move in the opposite direction. Since the diameter of the circular groove 212 decreases from the side of the adjusting frame 210 close to the side rod 220 to the other side, the long strip 231 will smoothly pass through the circular groove with a smaller diameter. 212. After the sliding seat 120 and the baffle frame 130 are at a certain distance, the sliding block 232 will pull the sliding block 232 behind its moving direction through the connecting line 280, so that the sliding seat 120 behind the forward direction of the sliding seat 120 moves in sequence. After the sliding seat 120 moves to its original position, the long block 231 will be located in the circular groove 212 of the corresponding diameter. Under the action of the torsion spring, the adjusting toothed belt 240 can re-engage with the missing gear 260, so that the baffle frame 130 is lowered again to block the top of the collection frame 110.

[0046] Throughout this specification, references to terms such as "one embodiment," "example," or "specific example" indicate that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

[0047] The above contents are merely examples and explanations of the present invention. Those skilled in the art may make various modifications or additions to the described specific embodiments or replace them in similar ways. As long as they do not deviate from the invention or exceed the scope defined by the claims, they should all fall within the scope of protection of the present invention.

Claims

1. A building water supply and drainage system, characterized in that: The invention comprises a collecting module (100) and an adjusting module (200), wherein the collecting module (100) comprises a collecting frame (110), the bottom surface of the collecting frame (110) is connected with a conveying pipe (111), a plurality of sliding seats (120) are equidistantly arranged on the top of the inner side surface of the collecting frame (110), two fixed seats (121) are fixedly connected to one side of the top surface of the sliding seat (120), the two fixed seats (121) are rotatably connected to a stop frame (130) on opposite sides, and one side surface of the stop frame (130) contacts the other side of the top surface of the adjacent sliding seat (120), an opening groove (131) is provided on the other side surface of the stop frame (130), a conveying groove (122) is provided on the top surface of the sliding seat (120), and connecting grooves (123) are provided on the bottom of the inner side surfaces on both sides of the conveying groove (122), and a plurality of rows of holes are provided on the inner side surfaces on both sides of the collecting frame (110) corresponding to the connecting grooves (123).

2. A building water supply and drainage system according to claim 1, characterized in that: A plurality of baffles (140) are equidistantly connected to the top of the inner side of the baffle frame (130) for rotation; a limiting block (141) is fixedly connected to one side of the bottom surface of the baffle (140); and a limiting groove (142) is provided on one side of the top surface of the baffle (140) corresponding to the limiting block (141).

3. A building water supply and drainage system according to claim 1, characterized in that: The adjustment module (200) includes two adjustment frames (210), the sides of the two adjustment frames (210) are fixedly connected to the inner side of the collection frame (110), the opposite sides of the two adjustment frames (210) are provided with sliding grooves (211), and a plurality of adjustment rods (230) are provided inside the sliding grooves (211) corresponding to the fixed seats (121), one end of the adjustment rod (230) extends into the inside of the adjustment frame (210), and the other end of the adjustment rod (230) is rotatably connected to the inner side of the adjacent fixed seat (121), and the other end of the adjustment rod (230) is fixedly connected to the side of the adjacent baffle frame (130), and the adjustment frame Both sides of the inner side surface of (210) are rotatably connected with a rotating shaft (213), and the side surface of the rotating shaft (213) is fixedly sleeved with a driving gear (214), and the two driving gears (214) are meshed and connected with an adjusting toothed belt (240). One end of an adjusting rod (230) located on one side of the adjusting frame (210) is fixedly sleeved with an adjusting gear (250), and one end of a plurality of adjusting rods (230) located on the other side of the adjusting frame (210) are fixedly sleeved with a missing gear (260), and the tops of the adjusting gear (250) and the plurality of missing gears (260) are meshed with the top of the inner side of the adjusting toothed belt (240).

4. A building water supply and drainage system according to claim 3, characterized in that: A side rod (220) fixedly connected to the side of the collecting frame (110) is fixedly connected to one side of the opposite surface of the two adjusting frames (210); an inner side of the side rod (220) is rotatably connected to a transmission shaft (221); both ends of the transmission shaft (221) extend into the interior of the adjacent adjusting frame (210), and both ends of the transmission shaft (221) are rotatably connected to one end of the adjacent rotating shaft (213); an adjusting motor is provided on one side of one adjusting frame (210), and an output end of the adjusting motor is transmission-connected to the other end of the adjacent rotating shaft (213).

5. A building water supply and drainage system according to claim 3, characterized in that: The side surface of the sliding groove (211) is provided with a plurality of circular grooves (212) corresponding to the adjusting rod (230); the side surface of the adjusting rod (230) is fixedly connected with a long strip (231) that is slidably connected to the inner side surface of the adjacent circular groove (212); the inner side surface of the adjusting frame (210) is fixedly connected with the support frame (270); the side surface of the adjusting rod (230) is rotatably connected with a sliding block (232) that is slidably connected to the inner side surface of the support frame (270).

6. A building water supply and drainage system according to claim 5, characterized in that: A connecting line (280) is fixedly connected between two adjacent sliding blocks (232), and a torsion spring is provided between the adjusting rod (230) and the inner side surface of the sliding block (232).

7. A building water supply and drainage system according to claim 5, characterized in that: The lengths of the plurality of long strips (231) decrease sequentially from one side of the adjustment frame (210) to the other side of the adjustment frame (210).

8. A building water supply and drainage system according to claim 1, characterized in that: The regulating module (200) is equipped with a rain collecting cylinder (300), the bottom of the rain collecting cylinder (300) is transparent, and a pressure sensor is provided on the inner bottom surface of the rain collecting cylinder (300).

Citation Information

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