CN215330322U - Anti-clogging inverted siphon sewage pipeline - Google Patents

Anti-clogging inverted siphon sewage pipeline Download PDF

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Publication number
CN215330322U
CN215330322U CN202121699371.5U CN202121699371U CN215330322U CN 215330322 U CN215330322 U CN 215330322U CN 202121699371 U CN202121699371 U CN 202121699371U CN 215330322 U CN215330322 U CN 215330322U
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China
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processing
river course
pipe
bevel gear
clogging
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CN202121699371.5U
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Inventor
李孔义
张爱平
张建
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Hubei Haochuan Water Conservancy And Hydropower Engineering Co ltd
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Hubei Haochuan Water Conservancy And Hydropower Engineering Co ltd
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Abstract

The utility model belongs to the technical field of the technique of the siphon blowdown of falling and specifically relates to a prevent silting up formula sewage conduit of falling siphon is related to, including river course one and river course two, the water level of river course one is higher than river course two, is provided with between river course one and river course two to be used for communicateing blow off pipe between them, the tip of blow off pipe is connected with the bottom of river course one and river course two respectively, the one end an organic whole that the blow off pipe is close to river course one is provided with the processing portion, be provided with the reducing mechanism who is used for handling crushing impurity in the processing portion, the one end that the processing portion deviates from the blow off pipe is provided with the guiding tube, be provided with the fender frame that is used for keeping apart impurity on the guiding tube. The sewage treatment device has the effect of reducing the phenomenon of blockage of the sewage pipeline.

Description

Anti-clogging inverted siphon sewage pipeline
Technical Field
The application relates to the technical field of inverted siphon sewage discharge, in particular to an anti-clogging inverted siphon sewage pipeline.
Background
The inverted siphon means that the channel and the road ditch are close in elevation, when the channel and the road ditch are crossed, a structure needs to be built, so that water passes through the road surface or the ditch, and the inverted siphon and the siphon have the same water delivery principle, namely the water level difference between the upstream and the downstream is utilized. The construction form is simple and convenient and is convenient for cleaning silt. When sewage is required to be treated, a trench is dug in a river channel or under the sewage, a pipeline is buried in the trench, and the sewage in the river channel is discharged into a river channel by means of the fact that the water level of the sewage river channel is higher than the water level of another river channel to be discharged with the sewage.
In view of the above-mentioned related art, the inventor believes that the sewage contains a large amount of impurities, and when the impurities enter the sewage pipe, the sewage pipe is easily blocked.
SUMMERY OF THE UTILITY MODEL
In order to reduce the phenomenon that sewage pipes are blocked, the application provides an anti-clogging type inverted siphon sewage pipe.
The application provides a prevent silting up formula and fall siphon sewer line adopts following technical scheme:
the utility model provides a prevent silting up formula sewage pipes of siphon that falls, includes river course one and river course two, and the water level of river course one is higher than river course two, is provided with the blow off pipe that is used for communicateing both between river course one and river course two, the tip of blow off pipe is connected with the bottom of river course one and river course two respectively, the one end an organic whole that the blow off pipe is close to river course one is provided with the processing portion, be provided with the reducing mechanism who is used for handling crushing impurity in the processing portion, the one end that the processing portion deviates from the blow off pipe is provided with the guiding tube, be provided with the fender frame that is used for keeping apart impurity on the guiding tube.
Through adopting above-mentioned technical scheme, impurity enters into the processing portion in the back, smashes impurity through reducing mechanism, sets up simultaneously and keeps off the frame and filter great impurity, and then reduces the phenomenon that impurity appears blockking up the blow off pipe.
Optionally, the reducing mechanism includes crushing blade, the drive assembly who is used for transmitting power and is used for driving crushing blade pivoted driving piece, be provided with the bracing piece in the processing portion, crushing blade rotates the setting on the bracing piece, the driving piece sets up the outside at the processing portion, driving piece and crushing blade pass through drive assembly and connect.
Through adopting above-mentioned technical scheme, the driving piece passes through drive assembly and drives crushing blade rotation, cuts impurity to carry out the breakage to impurity.
Optionally, the transmission assembly includes bevel gear set one, bevel gear set two and transfer line, it is provided with the dwang to rotate on the bracing piece, the dwang is connected with crushing blade, the output of driving piece is provided with the installation pole, installation pole and dwang setting are at coplanar and parallel arrangement, the transfer line passes the setting of processing portion between installation pole and dwang, bevel gear set one and bevel gear set two set up the both ends at the transfer line respectively, the transfer line passes through bevel gear set one and installs the pole connection, the transfer line passes through bevel gear set two and connects with the dwang.
Through adopting above-mentioned technical scheme, the installation pole passes through bevel gear group one and drives the transfer line and rotate, and the transfer line rotates and drives the dwang through bevel gear two and rotate, and the dwang rotates and drives crushing blade and rotate, and then cuts impurity.
Optionally, the transmission assembly and the crushing blade are both provided with two sets along the length direction of the mounting rod, and the first bevel gear set in the two sets of transmission assemblies is set to have different transmission ratios.
Through adopting above-mentioned technical scheme, the rotational speed that sets up every group crushing blade is different to handle the not impurity of equidimension, promote the crushing efficiency of impurity.
Optionally, the guide tube is funnel-shaped, and the small end of the guide tube is connected with the treatment part.
Through adopting above-mentioned technical scheme, set to leak hopper-shaped to sewage enters into the sewer and discharges, promotes the blowdown effect.
Optionally, the fender frame outside is the semicircle sphere, it scrapes the pole to rotate to be provided with on the guiding tube, scrape the inboard pole and keep off frame outside butt, be provided with the coupling assembling that is used for connecting the installation pole and scrapes the pole in the processing portion.
Through adopting above-mentioned technical scheme, set up in the outside of keeping off the frame and scrape the pole, get rid of the adhesion in the outside impurity that keeps off the frame, reduce the adhesion and appear influencing the phenomenon that sewage enters into the sewage pipe in the outside impurity that keeps off the frame.
Optionally, coupling assembling includes disc, connecting plate and connecting gear, the end connection of disc and installation pole, installation pole perpendicular to disc sets up, the connecting plate slides along the direction of perpendicular to installation pole on the processing portion and sets up, connecting gear sets up the rotation end of scraping the pole, the tooth's socket has been seted up on the connecting plate, connecting gear and tooth's socket meshing, the adjustment tank has been seted up along vertical direction on the connecting plate, the eccentric cylindric regulating block that is provided with on the disc, the setting of sliding in the adjustment tank of regulating block.
Through adopting above-mentioned technical scheme, disc and connecting plate drive and connect the gear and do reciprocating motion, and then drive and scrape the pole and do reciprocating motion, promote the clearance effect to keeping off the frame.
Optionally, an isolation frame is arranged outside the processing part, and the isolation frame is arranged outside the driving part and the mounting rod.
Through adopting above-mentioned technical scheme, set up the isolation frame, reduce impurity and appear entering into the driving piece and install the phenomenon between the pole, promote installation pole pivoted stability.
Drawings
Fig. 1 is a schematic structural view of an anti-clogging inverted siphon sewage pipe according to an embodiment of the present application.
Fig. 2 is a partial view of an anti-clogging type inverted siphon sewage pipe according to an embodiment of the present application.
Fig. 3 is a structural view of a pulverizing apparatus in an anti-clogging type inverted siphon sewage pipe according to an embodiment of the present application.
Fig. 4 is a structural view of a blocking frame in an anti-clogging type inverted siphon sewage pipe according to an embodiment of the present application.
Reference numerals: 1. a first river channel; 2. a second river channel; 3. a blow-off pipe; 4. a processing unit; 41. a support bar; 42. rotating the rod; 43. a bearing block; 44. an isolation frame; 5. a crushing device; 51. a crushing blade; 52. a transmission assembly; 521. a bevel gear set I; 522. a bevel gear set II; 523. a transmission rod; 53. a drive member; 531. mounting a rod; 6. a guide tube; 7. a blocking frame; 8. a scraping rod; 9. a connecting assembly; 91. a disc; 911. an adjusting block; 92. a connecting plate; 921. an adjustment groove; 922. a tooth socket; 93. a connecting gear.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The application discloses prevent stifled formula sewage conduit of falling siphon. Referring to fig. 1 and 2, prevent silting up formula and fall siphon sewer pipe includes two river courses 1 and river course two 2 that are used for the blowdown, and the water level in river course 1 is higher than the water level in river course two 2, is provided with blow off pipe 3 between river course 1 and river course two 2, and blow off pipe 3 is the shape of falling the U, and one end setting is in the bottom of river course 1, and the other end setting is in the bottom of river course two 2, discharges the sewage in river course 1 to river course two 2 in through blow off pipe 3.
Referring to fig. 1 and 2, a treatment part 4 is integrally arranged at the end of a sewage discharge pipe 3, the treatment part 4 is arranged in a river channel 1, a crushing device 5 for treating garbage is arranged in the treatment part 4, the crushing device 5 comprises a crushing blade 51, a transmission component 52 and a driving part 53, the driving part 53 can be set as a motor, a supporting rod 41 is arranged in the treatment part 4, the crushing blade 51 is rotatably arranged on the supporting rod 41, the rotating axis of the crushing blade 51 is arranged along the central line direction of the treatment part 4, the driving part 53 can be set as a motor, the motor is arranged outside the treatment part 4, the transmission component 52 is arranged on the treatment part 4 and is connected with the motor and the crushing blade 51, when impurities enter the treatment part 4, the motor drives the crushing blade 51 to rotate through the transmission component 52 to crush the impurities, and the phenomenon of blockage of the impurities is reduced.
Referring to fig. 2 and 3, a mounting rod 531 is disposed at an output end of the motor, the transmission assembly 52 includes a bevel gear set 521, a bevel gear set 522 and a transmission rod 523, a rotation rod 42 is rotatably disposed on the support rod 41, the rotation rod 42 is connected to the crushing blade 51, rotation axes of the rotation rod 42 and the crushing blade 51 are disposed on the same straight line, the rotation rod 42 and the mounting rod 531 are disposed on the same plane, the rotation rod 42 and the mounting rod 531 are disposed in parallel and spaced, the transmission rod 523 is disposed between the rotation rod 42 and the mounting rod 531, the transmission rod 523 is disposed perpendicular to the mounting rod 531, and the transmission rod 523, the mounting rod 531 and the rotation rod 42 are disposed on the same plane. The bevel gear set 521 and the bevel gear set II are respectively arranged at two ends of the transmission rod 523, one end of the transmission rod 523 is connected with the installation rod 531 through the bevel gear set 521, the other end of the transmission rod 523 is connected with the installation rod 531 through the bevel gear set II 522, the motor drives the installation rod 531 to rotate, the installation rod 531 drives the transmission rod 523 to rotate through the bevel gear set I521, and the transmission rod 523 drives the crushing blade 51 to rotate through the bevel gear set II 522 and the rotation rod 42 so as to crush impurities.
Referring to fig. 2 and 3, two sets of the transmission assemblies 52 and the crushing blades 51 are provided, and the two sets of the transmission assemblies 52 and the crushing blades 51 are arranged at intervals along the length direction of the mounting rod 531, the transmission ratios of the two bevel gear sets on the mounting rod 531 are set to different values, the radius of the slave bevel gear in the bevel gear set one 521 near the sewage pipe 3 is smaller than that of the slave bevel gear in the other bevel gear set one 521, and the radii of the master bevel gears in the two sets of the bevel gears are the same. When the installation rod 531 rotates, the two sets of crushing blades 51 are driven to crush the impurities at different rotating speeds, and the crushing effect of the impurities is improved.
Referring to fig. 3 and 4, a guide pipe 6 is provided at one end of the treating part 4 departing from the sewage drain pipe 3, the guide pipe 6 is funnel-shaped, one end with a small opening is connected with the treating part 4, and the opening is arranged towards the direction departing from the river bottom, and the guide pipe 6 is provided so that sewage enters the sewage drain pipe 3. The guide pipe 6 is provided with a baffle frame 7 for filtering impurities and reducing the impurities with larger volume entering the sewage discharge pipe 3. Set up and keep off frame 7 and be board spherical shell form, rotate on the guiding tube 6 and be provided with and scrape pole 8, scrape pole 8 and be the semicircle ring-type, and scrape inboard and the 7 outside butts of fender frame of pole 8, be provided with the coupling assembling 9 that is used for connecting installation pole 531 and scrapes pole 8 on processing portion 4, installation pole 531 drives through coupling assembling 9 and scrapes pole 8 and rotate, strikes off the outside impurity of fender frame 7, reduces impurity and appears the phenomenon of adhesion on fender frame 7.
Referring to fig. 3 and 4, a separation frame 44 is provided outside the processing portion 4, and the motor and the mounting rod 531 are both disposed in the separation frame 44, so that the phenomenon that impurities affect the rotation of the mounting rod 531 is reduced. The connecting assembly 9 comprises a disc 91, a connecting plate 92 and a connecting gear 93, wherein the disc 91 is arranged at the end part of the mounting rod 531, the mounting rod 531 is perpendicular to the disc 91, a bearing block 43 is arranged on the processing part 4, the connecting plate 92 is arranged on a bearing frame in a sliding mode, the sliding direction is perpendicular to the mounting rod 531, an adjusting groove 921 is formed in the connecting plate 92 along the vertical direction, an adjusting block 911 is eccentrically arranged on the disc 91, the adjusting block 911 is arranged in the adjusting groove 921 in a sliding mode along the length direction of the adjusting groove 921, the adjusting block 911 is cylindrical, the connecting gear 93 is arranged at the rotating end of the scraping rod 8, a tooth groove 922 is formed in the connecting plate 92 along the sliding direction, and the connecting gear 93 is meshed with the tooth groove 922. The disc 91 rotates, the connecting plate 92 is driven to move through the adjusting block 911 and the adjusting groove 921, the connecting plate 92 moves, the connecting gear 93 drives the scraping rod 8 to do reciprocating swing rotation, and impurities are treated.
The implementation principle of the application is as follows: the impurities entering the processing part 4 are crushed by the crushing blade 51, so that the volume of the impurities is reduced, and the phenomenon that the sewage discharge pipe 3 is blocked is reduced.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a prevent silt up formula and fall siphon sewer line, includes river course (1) and river course two (2), and the water level of river course (1) is higher than river course two (2), is provided with between river course (1) and river course two (2) and is used for communicateing blow off pipe (3) between them, its characterized in that: the end part of the drain pipe (3) is respectively connected with the bottoms of the river channel I (1) and the river channel II (2), one end of the drain pipe (3) close to the river channel I (1) is integrally provided with a processing part (4), a crushing device (5) for processing crushed impurities is arranged in the processing part (4), one end of the processing part (4) deviating from the drain pipe (3) is provided with a guide pipe (6), and a blocking frame (7) for isolating the impurities is arranged on the guide pipe (6).
2. The anti-clogging inverted siphon sewage conduit according to claim 1, characterized in that: reducing mechanism (5) are including smashing blade (51), be used for transmission power's drive assembly (52) and being used for driving and smash blade (51) pivoted driving piece (53), be provided with bracing piece (41) in processing portion (4), smash blade (51) rotate the setting on bracing piece (41), driving piece (53) set up the outside at processing portion (4), driving piece (53) and crushing blade (51) are connected through drive assembly (52).
3. The anti-clogging inverted siphon sewage conduit according to claim 2, characterized in that: the utility model discloses a grinding machine, including transmission assembly (52), bracing piece (41) are provided with dwang (42) including bevel gear set (521), bevel gear group two (522) and transfer line (523), it is provided with dwang (42) to rotate on bracing piece (41), dwang (42) and crushing blade (51) are connected, the output of driving piece (53) is provided with installation pole (531), installation pole (531) and dwang (42) set up in the coplanar and parallel arrangement, transfer line (523) pass processing portion (4) and set up between installation pole (531) and dwang (42), bevel gear set (521) and bevel gear group two (522) set up the both ends at transfer line (523) respectively, transfer line (523) are connected through bevel gear set (521) and installation pole (531), transfer line (523) are connected through bevel gear set two (522) and dwang (42).
4. The anti-clogging inverted siphon sewer pipe according to claim 3, characterized in that: the transmission assembly (52) and the crushing blade (51) are respectively provided with two groups along the length direction of the mounting rod (531), and bevel gear sets (521) in the two groups of transmission assemblies (52) are set to be different in transmission ratio.
5. The anti-clogging inverted siphon sewer pipe according to claim 3, characterized in that: the guide pipe (6) is funnel-shaped, and one end of the guide pipe (6) with a small opening is connected with the processing part (4).
6. The anti-clogging inverted siphon sewer pipe according to claim 5, characterized in that: keep off frame (7) outside and be the hemisphere form, it scrapes pole (8) to rotate to be provided with on guiding tube (6), scrape pole (8) inboard and keep off frame (7) outside butt, be provided with coupling assembling (9) that are used for connecting installation pole (531) and scrape pole (8) on processing portion (4).
7. The anti-clogging inverted siphon sewer pipe according to claim 6, characterized in that: coupling assembling (9) include disc (91), connecting plate (92) and connecting gear (93), the end connection of disc (91) and installation pole (531), installation pole (531) perpendicular to disc (91) set up, connecting plate (92) slide along the direction of perpendicular to installation pole (531) on processing portion (4) and set up, connecting gear (93) set up the rotation end of scraping pole (8), tooth's socket (922) have been seted up on connecting plate (92), connecting gear (93) and tooth's socket (922) meshing, adjustment tank (921) have been seted up along vertical direction on connecting plate (92), the eccentricity is provided with cylindric regulating block (911) on disc (91), adjusting block (911) slide in adjustment tank (921).
8. The anti-clogging inverted siphon sewer pipe according to claim 7, characterized in that: an isolation frame (44) is arranged outside the processing part (4), and the isolation frame (44) is arranged outside the driving part (53) and the mounting rod (531).
CN202121699371.5U 2021-07-24 2021-07-24 Anti-clogging inverted siphon sewage pipeline Active CN215330322U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121699371.5U CN215330322U (en) 2021-07-24 2021-07-24 Anti-clogging inverted siphon sewage pipeline

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121699371.5U CN215330322U (en) 2021-07-24 2021-07-24 Anti-clogging inverted siphon sewage pipeline

Publications (1)

Publication Number Publication Date
CN215330322U true CN215330322U (en) 2021-12-28

Family

ID=79572290

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121699371.5U Active CN215330322U (en) 2021-07-24 2021-07-24 Anti-clogging inverted siphon sewage pipeline

Country Status (1)

Country Link
CN (1) CN215330322U (en)

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