A side pipe fitting
By designing inclined runners and steps in the pipe fittings, the existing 90° elbows have been solved, and more efficient drainage and anti-overflow effects are achieved.
Patent Information
- Application Number
- CN201910157693.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-03-01
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2039-03-01
AI Technical Summary
The existing 90° elbows are slow to drain during use and are prone to reverse overflow.
A side pipe fitting is designed, with one end of the pipe fitting body equipped with a first interface and the other end of the pipe fitting with a second interface. The two interfaces are connected through the flow channel. The bottom of the flow channel is inclined downward along the second interface direction, and an upward step is provided at the junction of the flow channel and the second interface.
Through the design of inclined runners and steps, the drainage speed is improved and the water overflow is effectively prevented.
Smart Images

Figure CN109737261B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of pipe fittings, in particular to a side pipe fitting. Background Art
[0002] Elbows are a common type of connecting pipe in piping systems, mainly used for connecting pipe bends to change the direction of pipes. According to the angle, the most commonly used elbows are 45°, 90° and 180°. As for various existing sewage outlets, most of them use 90° elbows; however, 90° elbows have the following defects in actual use: the drainage speed is relatively slow, and backflow is common. Summary of the invention
[0003] The technical problem to be solved by the present invention is to provide a side pipe fitting, by which the problems of slow drainage speed and easy backflow in the prior art can be solved.
[0004] The present invention is implemented as follows: a side pipe fitting comprises a pipe fitting body; a first interface is upwardly provided at the top of one end of the pipe fitting body, and a second interface is extended outwardly on any one side of the other end of the pipe fitting body; the interior of the pipe fitting body connects the first interface with the second interface through a flow channel; the bottom of the flow channel is a slope inclined downward along the direction of the second interface.
[0005] Furthermore, it includes a pipe body; a first interface is provided upward at the top of one end of the pipe body, and a second interface is provided outwardly on any side of the other end of the pipe body; the interior of the pipe body connects the first interface with the second interface through a flow channel; the bottom of the flow channel is a slope inclined downward along the direction of the second interface.
[0006] Furthermore, the second interface is provided with an upward step on a side communicating with the flow channel.
[0007] Furthermore, the pipe body is provided with a third interface extending outwardly on the other side corresponding to the second interface.
[0008] Furthermore, the pipe body is provided with a supporting foot at the bottom near one end of the first interface.
[0009] The advantages of the present invention are:
[0010] 1. The bottom of the flow channel is set as a slope that slopes downward along the direction of the second interface, so that the drainage speed can be increased during specific use;
[0011] 2. By setting a downward step at the junction of the flow channel and the second interface, combined with the design of the slope, the first interface and the second interface, water overflow can be effectively prevented. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The present invention will be further described below in conjunction with embodiments with reference to the accompanying drawings.
[0013] Figure 1 It is a stereoscopic diagram of a side pipe fitting according to a first specific embodiment of the present invention.
[0014] Figure 2 yes Figure 1 Rear view of.
[0015] Figure 3 It is a schematic diagram of the internal structure of a side pipe fitting of the present invention.
[0016] Figure 4 It is a structural schematic diagram of a side pipe fitting (with supporting feet) according to the second specific embodiment of the present invention.
[0017] Figure 5 It is a structural schematic diagram of a side pipe fitting (provided with supporting feet and a third interface) according to a third specific embodiment of the present invention.
[0018] Description of reference numerals:
[0019] 100-side pipe fitting, 1-pipe fitting body, 2-first interface, 3-second interface, 4-flow channel, 5-slope, 6-step, 7-support foot, 8-third interface. DETAILED DESCRIPTION Specific embodiment one:
[0021] Please refer to Figures 1 to 3 As shown, a preferred embodiment of a side pipe fitting 100 of the present invention includes a pipe fitting body 1; a first interface 2 is upwardly provided at the top of one end of the pipe fitting body 1, and a second interface 3 is extended outwardly on any side of the other end of the pipe fitting body 1; the interior of the pipe fitting body 1 connects the first interface 2 with the second interface 3 through a flow channel 4; the bottom of the flow channel 4 is a slope 5 inclined downward along the direction of the second interface 3.
[0022] When the side pipe fitting 100 of the present invention is in use, water can enter the pipe body 1 from the first interface 2, flow along the flow channel 4 to the second interface 3, and finally flow out from the second interface 3. In the design of the present invention, since the bottom of the flow channel 4 is set as a slope 5 that is inclined downward along the direction of the second interface 3, after water enters the pipe body 1 from the first interface 2, it can quickly flow to the second interface 3 along the slope 5, so that the drainage speed can be increased in specific use.
[0023] In the first specific embodiment, the second interface 3 is provided with an upward step 6 on the side connected to the flow channel 4. Since the existing 90° elbow is easy to cause backflow when in use, the present invention can effectively prevent water backflow by providing an upward step 6 at the junction of the flow channel 4 and the second interface 3, and then cooperating with the design of the slope 5. By applying the side pipe fitting 100 of the present invention to the sewage outlet, the discharged sewage can be well prevented from overflowing. In addition, due to the design of the first interface 2 and the second interface 3 in the first specific embodiment of the present invention, after the water flows back from the second interface 3, it will first collide with the side wall of the pipe fitting body 1, unlike the 90° elbow, once the water flows back, it will flow to the water inlet; therefore, through the cooperation of the first interface 2, the second interface 3, the slope 5 and the step 6 of the present invention, it is completely possible to prevent the occurrence of sewage backflow. Specific embodiment 2:
[0025] Please focus on FIG. 4 , which is a preferred embodiment of a side pipe fitting 100 of the present invention, comprising a pipe fitting body 1; a first interface 2 is upwardly provided at the top of one end of the pipe fitting body 1, and a second interface 3 is extended outwardly on any side of the other end of the pipe fitting body 1; the interior of the pipe fitting body 1 connects the first interface 2 with the second interface 3 through a flow channel 4; the bottom of the flow channel 4 is a slope 5 inclined downward along the direction of the second interface 3.
[0026] When the side pipe fitting 100 of the present invention is in use, water can enter the pipe body 1 from the first interface 2, flow along the flow channel 4 to the second interface 3, and finally flow out from the second interface 3. In the design of the present invention, since the bottom of the flow channel 4 is set as a slope 5 that is inclined downward along the direction of the second interface 3, after water enters the pipe body 1 from the first interface 2, it can quickly flow to the second interface 3 along the slope 5, so that the drainage speed can be increased in specific use.
[0027] In the second specific embodiment, the second interface 3 is provided with an upward step 6 on the side connected to the flow channel 4. Since the existing 90° elbow is easy to cause backflow when in use, the present invention can effectively prevent water backflow by providing an upward step 6 at the junction of the flow channel 4 and the second interface 3, and then cooperating with the design of the slope 5. By applying the side pipe fitting 100 of the present invention to the sewage outlet, the discharged sewage can be well prevented from overflowing. In addition, due to the design of the first interface 2 and the second interface 3 in the second specific embodiment of the present invention, after the water flows back from the second interface 3, it will first collide with the side wall of the pipe fitting body 1, unlike the 90° elbow, once the water flows back, it will flow to the water inlet; therefore, through the cooperation of the first interface 2, the second interface 3, the slope 5 and the step 6 of the present invention, it is completely possible to prevent the occurrence of sewage backflow.
[0028] In the second specific embodiment, the pipe body 1 is provided with a supporting foot 7 at the bottom near one end of the first interface 2, and the supporting foot 7 can provide good support for the end of the pipe body 1, thereby ensuring the stability of the entire side pipe 100. Specific embodiment three:
[0030] Please refer to Figure 5 As shown, a preferred embodiment of a side pipe fitting 100 of the present invention includes a pipe fitting body 1; a first interface 2 is upwardly provided at the top of one end of the pipe fitting body 1, and a second interface 3 is extended outwardly on any side of the other end of the pipe fitting body 1; the interior of the pipe fitting body 1 connects the first interface 2 with the second interface 3 through a flow channel 4; the bottom of the flow channel 4 is a slope 5 inclined downward along the direction of the second interface 3.
[0031] When the side pipe fitting 100 of the present invention is in use, water can enter the pipe body 1 from the first interface 2, flow along the flow channel 4 to the second interface 3, and finally flow out from the second interface 3. In the design of the present invention, since the bottom of the flow channel 4 is set as a slope 5 that is inclined downward along the direction of the second interface 3, after water enters the pipe body 1 from the first interface 2, it can quickly flow to the second interface 3 along the slope 5, so that the drainage speed can be increased in specific use.
[0032] In the third specific embodiment, the second interface 3 is provided with an upward step 6 on the side connected to the flow channel 4. Since the existing 90° elbow is easily prone to overflow during use, the present invention can effectively prevent water overflow by providing an upward step 6 at the junction of the flow channel 4 and the second interface 3, combined with the design of the slope 5. By applying the side pipe fitting 100 of the present invention to the sewage outlet, the discharged sewage can be well prevented from overflowing.
[0033] In the third specific embodiment, the pipe body 1 is provided with a third interface 8 extending outwardly on the other side corresponding to the second interface 3. A three-way structure can be formed by the first interface 2, the second interface 3 and the third interface 8 to meet actual use requirements.
[0034] In the third specific embodiment, the pipe body 1 is provided with a supporting foot 7 at the bottom near one end of the first interface 2, and the supporting foot 7 can provide good support for the end of the pipe body 1, thereby ensuring the stability of the entire side pipe 100.
[0035] In summary, the present invention has the following beneficial effects:
[0036] 1. The bottom of the flow channel is set as a slope that slopes downward along the direction of the second interface, so that the drainage speed can be increased during specific use;
[0037] 2. By setting a downward step at the junction of the flow channel and the second interface, combined with the design of the slope, the first interface and the second interface, reverse overflow of water can be effectively prevented.
[0038] Although the specific implementation modes of the present invention are described above, those skilled in the art should understand that the specific implementation modes described are only illustrative and are not intended to limit the scope of the present invention. Equivalent modifications and changes made by those skilled in the art in accordance with the spirit of the present invention should be included in the scope of protection of the claims of the present invention.
Claims
1. A side pipe fitting, Features: The invention comprises a pipe body; a first interface is upwardly provided on the top of one end of the pipe body, and a second interface is extended outwardly on any side of the other end of the pipe body; the first interface and the second interface are connected through a flow channel inside the pipe body; the bottom of the flow channel is a slope inclined downward along the direction of the second interface; The second interface is provided with an upward step on a side connected with the flow channel; the pipe body is provided with a third interface extending outwardly on the other side corresponding to the second interface.
2. A side pipe fitting according to claim 1, Features: The pipe body is provided with a supporting foot at the bottom near one end of the first interface.
Citation Information
Patent Citations
Lateral pipe fitting
CN209604745U