A wall-to-floor shifter
Patent Information
- Application Number
- CN202522334258.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-04
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-04
AI Technical Summary
而传统的移位器的长度是固定的, 因此,需要两种不同规格的移位器,兼容性不高,给人们购买与安装座便器带来诸多不便
[0019]由上述对本实用新型的描述可知,与现有技术相比,本实用新型的有益效果是:本申请通过限定移位器的结构组成,在上移位管与下移位管之间设置可调节管件,由多个拼接管的拼接,使得该移位器能够适配200-400mm 坑距的安装需求,提高了装置的通用性和适用性;且用户在购买时,无需测量选择坑距;同时陶瓷体可实现贴墙安装,同一规格,无需区别305mm/400mm的坑距;其中,具体限定转接管的结构,通过倾斜设置的转接段,可使排泄物冲落时顺利变向,同时利用重力和倾斜角度增加水流冲刷速度,增加对排泄物的推动力,有效避免排泄物的滞留,保证排水顺畅。
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Figure CN224785032U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of bathroom technology, specifically relating to a wall-mounted to floor-mounted displacement device. Background Technology
[0002] Currently, during the installation of existing toilets, the toilet's drain outlet is often misaligned with the drain pipe due to the relatively fixed positions of the bathroom wall and the drain outlet. Therefore, a toilet offset adapter is typically used to connect the toilet's drain outlet to the drain pipe. Since the location of the toilet's drain pipe in apartment bathrooms is fixed, people can only connect the toilet's drain outlet to the drain pipe during installation and cannot adjust the position of the drain pipe. To address this issue, toilet offset adapters are used. According to current national standards, the drain distance is available in two specifications: 305mm and 400mm. However, traditional offset adapters have a fixed length, thus requiring two different sizes of adapters, resulting in low compatibility and causing considerable inconvenience for people purchasing and installing toilets.
[0003] To address the aforementioned issues, existing technology CN223017769U discloses a toilet drain connection pipe as follows: "A drain connection pipe comprising a first bend fitting, a second bend fitting, and a third bend fitting, through the telescopic sealing connection between these fittings, enables automatic height adjustment and pit distance adaptation of the toilet," thus facilitating wall-mounted to floor-mounted conversion. However, the design structure of the aforementioned drain connection pipe is unreasonable, resulting in poor flushing performance and easy clogging; furthermore, the adjustable pit distance range is limited, failing to adapt to the commonly used 200-400mm pit distance range on the market; further improvements are needed. Utility Model Content
[0004] The purpose of this invention is to overcome the shortcomings of the prior art and provide a wall-mounted to ground-mounted displacement device.
[0005] The present invention adopts the following technical solution:
[0006] A wall-mounted to floor-mounted outlet adapter includes an adapter tube, an upper outlet tube, and a lower outlet tube.
[0007] The adapter pipe, which is connected to the sewage outlet, includes a first connecting section and an adapter section. The first end of the first connecting section is sealed to the sewage outlet, and the adapter section is inclined downward at the second end of the first connecting section.
[0008] The upper shifting tube, connected to the transition section, includes a receiving section and a second connecting section. The receiving section extends along the inclined direction of the transition section. The second connecting section is horizontally arranged, with its first end connected to the receiving section and its second end connected to the lower shifting tube.
[0009] The lower displacement pipe is connected between the second connecting section and the sewage outlet.
[0010] Furthermore, it also includes an adjustable pipe fitting, which is disposed between the second connecting section and the lower displacement pipe and includes multiple splicing pipes connected in sequence; the splicing pipe includes a splicing pipe body and a splicing part, the splicing pipe body is connected to the second connecting section or an adjacent splicing part, and the splicing part is connected to an adjacent splicing pipe body or a lower displacement pipe.
[0011] Furthermore, the inner diameter of the splicing part is adapted to the outer diameter of the splicing pipe body or the lower displacement pipe, and the outer diameter of the splicing pipe body is adapted to the inner diameter of the second connecting section, so that the splicing pipe can be spliced with the adjacent splicing pipe body or the upper displacement pipe or the lower displacement pipe.
[0012] Furthermore, the first connecting section is provided with a first connecting part and a first sealing ring. The first connecting part is located at the first end of the first connecting section. The first sealing ring is sleeved on the first connecting part and located between the first connecting part and the drain outlet to achieve a sealed connection between the transfer pipe and the drain outlet.
[0013] Furthermore, the lower displacement tube includes a third connecting section and a discharge section. The first end of the third connecting section is connected to the adjacent second connecting section, and the discharge section is arranged perpendicularly to the second end of the third connecting section and connected to the sewage outlet.
[0014] Furthermore, the lower displacement tube also includes a second sealing ring, which is sleeved on the end of the discharge section and located between the discharge section and the sewage outlet, so that the lower displacement tube and the sewage outlet are sealed together.
[0015] Furthermore, the cross-section of the third connecting section is square, circular, or irregular, and the cross-section of the discharge section is circular, square, or irregular.
[0016] Furthermore, the receiving section is provided with a second connecting part that connects to the transition section, and the inner diameter of the second connecting part is adapted to the outer diameter of the receiving section.
[0017] Furthermore, the cross-section of the transition section is square, circular, or irregular, and the cross-section of the receiving section is square, circular, or irregular.
[0018] Furthermore, the cross-section of the splicing pipe is square, circular, or irregularly shaped.
[0019] As can be seen from the above description of this utility model, compared with the prior art, the beneficial effects of this utility model are as follows: This application, by defining the structural composition of the shifter, sets an adjustable pipe fitting between the upper and lower shifting pipes, and splices multiple connecting pipes, so that the shifter can adapt to the installation requirements of 200-400mm pit distance, improving the versatility and applicability of the device; and users do not need to measure and select the pit distance when purchasing; at the same time, the ceramic body can be installed against the wall, and for the same specification, there is no need to distinguish between 305mm / 400mm pit distances; in particular, the structure of the transfer pipe is specifically defined, and the inclined transfer section allows the excrement to smoothly change direction when flushed down, while using gravity and the tilt angle to increase the flushing speed of the water flow, increase the pushing force on the excrement, effectively avoid the retention of excrement, and ensure smooth drainage. Attached Figure Description
[0020] Figure 1 This is a three-dimensional structural diagram of the first embodiment of this application;
[0021] Figure 2 This is an exploded view of the first embodiment of this application;
[0022] Figure 3 This is a structural cross-sectional view of the first embodiment of this application;
[0023] Figure 4 This is a three-dimensional structural diagram of the second embodiment of this application;
[0024] Figure 5 This is a side view of the second embodiment of the present application;
[0025] In the diagram, 1. Transfer pipe; 2. Upper displacement pipe; 3. Adjustable fitting; 4. Lower displacement pipe; 11. First connecting section; 12. Transfer section; 13. First connecting part; 14. First sealing ring; 21. Receiving section; 22. Second connecting section; 23. Second connecting part; 31. Splicing pipe; 32. Splicing pipe body; 33. Splicing part; 41. Third connecting section; 42. Discharge section; 43. Second sealing ring. Detailed Implementation
[0026] The present invention will be further described below through specific embodiments.
[0027] A wall-to-floor drain conversion device is installed between the toilet drain outlet and the drain pipe outlet, as shown in the reference. Figures 1 to 3 As shown, the first embodiment of this application includes a transfer pipe 1, an upper displacement pipe 2, an adjustable pipe fitting 3, and a lower displacement pipe 4, which can be applied to installations with a pit distance greater than 200mm to a pit distance less than or equal to 400mm.
[0028] The adapter pipe 1, connected to the toilet's drain outlet, includes a first connecting section 11 and an adapter section 12. The first connecting section 11 is sealed to the drain outlet, and the adapter section 12 is inclined downwards at the second end of the first connecting section 11, with the second end of the first connecting section 11 bent and connected to the adapter section 12. The inclined design of the adapter section 12 allows for smooth deflection of waste during flushing, while simultaneously increasing the flushing speed of the water flow using gravity and the inclination angle, thus increasing the pushing force on the waste and effectively preventing waste retention. Specifically, the first connecting section 11 is provided with a first connecting part 13 and a first sealing ring 14. The first connecting part 13 is located at the first end of the first connecting section 11; the first sealing ring 14 is fitted onto the end of the first connecting part 13, located between the first connecting part 13 and the drain outlet, to achieve a sealed connection between the adapter pipe 1 and the drain outlet, ensuring continuous drainage.
[0029] The upper displacement pipe 2, connected to the adapter section 12, includes a receiving section 21 and a second connecting section 22. The receiving section 21 is connected to the lower end of the adapter section 12 and extends along the inclined direction of the adapter section 12. It can cooperate with the adapter section 12 to further increase the flushing speed of the water flow and the pushing force on the excrement, effectively preventing the phenomenon of excrement blockage. The second connecting section 22 is horizontally set, with its first end connected to the lower end of the receiving section 21 and its second end connected to the adjustable pipe fitting 3. Specifically, the receiving section 21 is provided with a second connecting part 23 that connects to the adapter section 12. The inner diameter of the second connecting part 23 is adapted to the outer diameter of the adapter section 12. The second connecting part 23 and the adapter section 12 can be sealed with glue to ensure a sealed connection between the adapter pipe 1 and the upper displacement pipe 2, preventing leakage and affecting the use of the toilet. Furthermore, the cross-section of the receiving section 21 is square, and the cross-section of the transition section 12 is also square. However, the cross-sections of the receiving section 21 and the transition section 12 are not limited to square; they can also be circular or irregular. The square shape can effectively increase the scouring cross-section. However, for application scenarios where the requirements for the scouring interface are not high, the cross-sectional shape of the receiving section 21 and the transition section 12 can also be circular or irregular.
[0030] Adjustable fitting 3 is disposed between the second connecting section 22 and the lower displacement pipe 4, and includes a plurality of splicing pipes 31 connected in sequence. The cross-section of the splicing pipe 31 is square, and includes a splicing pipe body 32 and a splicing part 33. The splicing pipe body 32 is connected to the second connecting section 22 or to an adjacent splicing part 33; the splicing part 33 is connected to an adjacent splicing pipe body 32 or to the lower displacement pipe 4. Specifically, the inner diameter of the splicing part 33 is adapted to the outer diameter of the splicing pipe body 32 or the lower displacement pipe 4, and the outer diameter of the splicing pipe body 32 is adapted to the inner diameter of the second connecting section 22, so that the splicing pipe 31 can be spliced with adjacent splicing pipes or upper displacement pipes 2 or lower displacement pipes 4. By limiting the structural composition of the splicing pipe 31, multiple splicing pipes 31 can be nested and stacked with each other. During installation, different numbers of splicing pipes 31 can be stacked according to the required pit distance to adjust the overall length of the adjustable pipe fitting 3, thereby achieving a pit distance of 200-400mm, improving the versatility and applicability of the device; and the splicing method is simple, easy for construction personnel to operate, and effectively improves installation efficiency. Furthermore, the inner wall of the splicing pipe 31 adopts a smooth design to reduce the resistance when water flow and excrement pass through; the cross-section of the splicing pipe 31 is not limited to square, but can also be circular or irregular. The square setting can effectively increase the scouring cross section, but for application scenarios where the scouring interface requirements are not high, the cross-sectional shape of the splicing pipe 31 can also be circular or irregular.
[0031] The lower displacement tube 4, connected to the sewage outlet, includes a third connecting section 41, a discharge section 42, and a second sealing ring 43. The third connecting section 41 has a square cross-section, with its first end connected to the adjacent splicing pipe 31, and its outer diameter matching the inner diameter of the adjacent splicing part 33. The discharge section 42 has a circular cross-section and is arranged perpendicular to the second end of the third connecting section 41. The second sealing ring 43 is fitted onto the end of the discharge section 42, located between the discharge section 42 and the sewage outlet, ensuring a sealed connection between the lower displacement tube 4 and the sewage outlet. Specifically, the lower displacement tube 4 is connected to the splicing pipe 31 or the sewage outlet using adhesive, as are the splicing pipes 31, and the upper displacement tube 2 is also connected to the adjacent splicing pipe 31 using adhesive. This ensures a secure connection between the upper displacement tube 2, the adjustable fitting 3, and the lower displacement tube 4, preventing loosening during use and facilitating installation. Furthermore, the cross-section of the third connecting section 41 is not limited to a square shape, but can also be circular or irregular; the cross-section of the discharge section 42 is also not limited to a circle, but can also be square or irregular.
[0032] Specifically, the irregular shapes mentioned in this application refer to special shapes that differ from conventional shapes, such as ellipses, T-shapes, L-shapes, cross-shapes, etc., while conventional shapes include circles or polygons.
[0033] Reference Figures 4 to 5As shown, the second embodiment of this application has a structure that is basically the same as the first embodiment, except that it does not include the adjustable pipe 3, and the lower displacement pipe 4 is connected to the upper displacement pipe 2, which is suitable for installation with a pit distance of about 200mm. The third connecting section 41 is connected to the second connecting section 22, and the outer diameter of the third connecting section 41 matches the inner diameter of the second connecting section 22, achieving a firm connection through adhesive.
[0034] This application defines the structural composition of the displacement device by setting an adjustable fitting 3 between the upper displacement pipe 2 and the lower displacement pipe 4. The fitting is made up of multiple splicing pipes 31, which allows the displacement device to adapt to the installation requirements of 200-400mm pit distance, improving the versatility and applicability of the device. Users do not need to measure and select the pit distance when purchasing. At the same time, the ceramic body can be installed against the wall, and there is no need to distinguish between 305mm / 400mm pit distances for the same specification. Specifically, the structure of the adapter pipe 1 is defined. The inclined adapter section 12 allows the excrement to be smoothly changed direction when flushed down. At the same time, the gravity and the inclined angle increase the flushing speed of the water flow, increase the pushing force on the excrement, effectively avoid the retention of excrement, and ensure smooth drainage.
[0035] The above description is merely a preferred embodiment of the present utility model, and therefore cannot be construed as limiting the scope of the present utility model. All equivalent changes and modifications made in accordance with the scope of the present utility model application and the contents of the specification should still fall within the scope of the present utility model application.
Claims
1. A wall-mounted to ground-mounted displacement device, characterized in that: Includes adapter tubes, upper shift tubes, and lower shift tubes. The adapter pipe, which is connected to the sewage outlet, includes a first connecting section and an adapter section. The first end of the first connecting section is sealed to the sewage outlet, and the adapter section is inclined downward at the second end of the first connecting section. The upper shifting tube, connected to the transition section, includes a receiving section and a second connecting section. The receiving section extends along the inclined direction of the transition section. The second connecting section is horizontally arranged, with its first end connected to the receiving section and its second end connected to the lower shifting tube. The lower displacement pipe is connected between the second connecting section and the sewage outlet.
2. The wall-mounted to ground-mounted displacement device according to claim 1, characterized in that: It also includes an adjustable pipe fitting, which is disposed between the second connecting section and the lower displacement pipe and includes multiple splicing pipes connected in sequence; the splicing pipe includes a splicing pipe body and a splicing part, the splicing pipe body is connected to the second connecting section or an adjacent splicing part, and the splicing part is connected to an adjacent splicing pipe body or a lower displacement pipe.
3. The wall-mounted to ground-mounted displacement device according to claim 2, characterized in that: The inner diameter of the splicing part is adapted to the outer diameter of the splicing pipe body or the lower displacement pipe, and the outer diameter of the splicing pipe body is adapted to the inner diameter of the second connecting section, so that the splicing pipe can be spliced with the adjacent splicing pipe body or the upper displacement pipe or the lower displacement pipe.
4. A wall-mounted to ground-mounted displacement device according to claim 2, characterized in that: The cross-section of the splicing pipe is square, circular, or irregularly shaped.
5. A wall-mounted to ground-mounted displacement device according to claim 1, characterized in that: The first connecting section is provided with a first connecting part and a first sealing ring. The first connecting part is located at the first end of the first connecting section. The first sealing ring is sleeved on the first connecting part and located between the first connecting part and the drain outlet to achieve a sealed connection between the transfer pipe and the drain outlet.
6. A wall-mounted to ground-mounted displacement device according to claim 1, characterized in that: The lower displacement tube includes a third connecting section and a discharge section. The first end of the third connecting section is connected to the adjacent second connecting section. The discharge section is arranged perpendicularly to the second end of the third connecting section and is connected to the sewage outlet.
7. A wall-mounted to ground-mounted displacement device according to claim 6, characterized in that: The lower displacement tube also includes a second sealing ring, which is sleeved on the end of the discharge section and located between the discharge section and the sewage outlet, so that the lower displacement tube and the sewage outlet are sealed together.
8. A wall-mounted to ground-mounted displacement device according to claim 6, characterized in that: The cross-section of the third connecting section is square, circular, or irregular, and the cross-section of the discharge section is circular, square, or irregular.
9. A wall-mounted to ground-mounted displacement device according to claim 1, characterized in that: The receiving section is provided with a second connecting part that connects to the transition section, and the inner diameter of the second connecting part is adapted to the outer diameter of the receiving section.
10. A wall-mounted to ground-mounted displacement device according to claim 9, characterized in that: The cross-section of the transition section is square, circular, or irregular, and the cross-section of the receiving section is square, circular, or irregular.
Citation Information
Patent Citations
Sewage discharge connecting pipe of pedestal pan
CN223017769U