Disclosure of Invention
The invention aims to provide an industrial wastewater purification device, which can remove and collect insoluble matters in industrial wastewater, automatically accelerate the purification speed when the industrial wastewater is polluted seriously when the insoluble matters in the industrial wastewater are more, and automatically slow down the purification speed when the industrial wastewater is polluted slightly when the insoluble matters in the industrial wastewater are less, thereby saving the use of a filter plate.
The purpose of the invention is realized by the following technical scheme:
the utility model provides an industrial wastewater purification device, includes complete machine support, power unit, speed change mechanism, pushing mechanism, planetary mechanism, collects mechanism and filter mechanism, power unit fixed connection is on complete machine support, speed change mechanism rotates and connects on complete machine support, power unit and speed change mechanism are connected through the belt drive, pushing mechanism rotates and connects on collecting the mechanism, it rotates and connects on complete machine support to collect the mechanism, planetary mechanism fixed connection is on complete machine support, speed change mechanism and pushing mechanism are connected through the belt drive, pushing mechanism and planetary mechanism pass through the gear engagement transmission, planetary mechanism and collection mechanism pass through the gear engagement transmission, it sets up in complete machine support to collect the mechanism, filter mechanism rotates and connects on complete machine support, filter mechanism and speed change mechanism pass through the belt drive connection, filter mechanism sets up in complete machine support.
As a further optimization of the technical scheme, the industrial wastewater purification device comprises a complete machine support, wherein the complete machine support comprises a purification rectangular pipeline, two front support plates and two rear support plates, the two front support plates and the two rear support plates are arranged in bilateral symmetry, the two front support plates are respectively and fixedly connected to the left end and the right end of the front side of the purification rectangular pipeline, and the two rear support plates are respectively and fixedly connected to the left end and the right end of the rear side of the purification rectangular pipeline.
As a further optimization of the technical scheme, the industrial wastewater purification device comprises a power mechanism and a power belt wheel, wherein the power belt wheel is fixedly connected to an output shaft of the motor, and the motor is fixedly connected to a front support plate positioned on the left side.
As a further optimization of the technical scheme, the industrial wastewater purification device comprises a speed change mechanism, a speed change bevel gear I, a speed change belt wheel I, a speed change connecting belt wheel, a rotating small shaft, a differential bevel gear, a speed change shaft II, a speed change belt wheel II and a speed change bevel gear II, wherein the speed change bevel gear I and the speed change belt wheel I are respectively and fixedly connected to the left end and the right end of the speed change shaft I, the speed change shaft I is rotatably connected to the right end of the speed change connecting belt wheel, the two ends of the rotating small shaft are rotatably connected to the speed change connecting belt wheel, the differential bevel gear is fixedly connected to the rotating small shaft, the speed change belt wheel II and the speed change bevel gear II are respectively and fixedly connected to the left end and the right end of the speed change shaft II, the speed change bevel gear II and the speed change bevel gear I are respectively in meshing transmission with the left side and the right side of the differential bevel gear, the speed, the variable-speed connecting belt wheel is in transmission connection with the power belt wheel through a belt.
As a further optimization of the technical scheme, the industrial wastewater purification device comprises a pushing mechanism, a pushing belt wheel, a pushing gear and a pushing spiral body, wherein the pushing belt wheel is fixedly connected to the right end of the pushing shaft, the pushing gear is fixedly connected to the middle end of the pushing shaft, the pushing spiral body is fixedly connected to the left end of the pushing shaft, and the pushing belt wheel is in transmission connection with a speed change belt wheel I through a belt.
As a further optimization of the technical scheme, the industrial wastewater purification device comprises a planetary gear carrier, a mounting column, two planetary gear rotating columns and two planetary gears, wherein one end of the mounting column is fixedly connected to the planetary gear carrier, the other end of the mounting column is fixedly connected to a purification rectangular pipeline, the two planetary gear rotating columns and the two planetary gears are fixedly connected to the planetary gear carrier, the two planetary gears are respectively and rotatably connected to the two planetary gear rotating columns, the inner sides of the two planetary gears are respectively engaged with a pushing gear, and the pushing shaft is in clearance fit with the planetary gear carrier.
As further optimization of the technical scheme, the industrial wastewater purification device comprises a collection mechanism, a connection cylinder, a gear ring, collection arcs, water passing grooves, collection baffles and a collection groove, wherein the connection cylinder is fixedly connected to the left end of the collection cylinder, the gear ring is fixedly connected to the connection cylinder, four collection arcs are uniformly arranged in the circumferential direction, the inner ends of the four collection arcs are fixedly connected to the collection cylinder, a plurality of water passing grooves are formed in the outer sides of the four collection arcs, the collection groove is formed in the inner sides of the four collection arcs, the collection baffles are connected to the four collection grooves in a rotating mode, two ends of the collection cylinder are respectively connected to the left end and the right end of a purification rectangular pipeline in a rotating mode, a pushing shaft is connected to the connection cylinder in a rotating mode, and the outer sides of the two planet wheels are meshed.
As a further optimization of the technical scheme, the industrial wastewater purification device comprises a filter shaft, filter belt wheels, filter supports, filter baffles, four activated carbon slots and filter plates, wherein the filter belt wheels are fixedly connected to the left end of the filter shaft, the number of the filter supports is four, the inner ends of the four filter supports are fixedly connected to the filter shaft, the two sides of each filter support are fixedly connected with the filter baffles, each pair of filter baffles form a rectangular groove, the number of the activated carbon slots is four, the four activated carbon slots are respectively arranged on the four filter supports and are respectively communicated with the four rectangular grooves, the two ends of the filter shaft are respectively rotatably connected to a purification rectangular pipeline, and the variable speed belt wheel II is connected with the filter belt wheels through belt transmission.
The industrial wastewater purification device has the beneficial effects that:
the industrial wastewater purification device can remove and collect insoluble matters in the industrial wastewater through the pushing mechanism and the collecting mechanism, the speed change mechanism with serious industrial wastewater pollution automatically accelerates the rotation speed of the filtering mechanism when the insoluble matters in the industrial wastewater are more, and the speed change mechanism with light industrial wastewater pollution automatically decelerates the rotation speed of the filtering mechanism when the insoluble matters in the industrial wastewater are less, so that the use of a filter plate is saved.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The first embodiment is as follows:
the embodiment is described below with reference to fig. 1 to 12, and an industrial wastewater purification device comprises a complete machine support 1, a power mechanism 2, a speed change mechanism 3, a pushing mechanism 4, a planetary mechanism 5, a collecting mechanism 6 and a filtering mechanism 7, wherein the power mechanism 2 is fixedly connected to the complete machine support 1, the speed change mechanism 3 is rotatably connected to the complete machine support 1, the power mechanism 2 and the speed change mechanism 3 are connected by belt transmission, the pushing mechanism 4 is rotatably connected to the collecting mechanism 6, the collecting mechanism 6 is rotatably connected to the complete machine support 1, the planetary mechanism 5 is fixedly connected to the complete machine support 1, the speed change mechanism 3 and the pushing mechanism 4 are connected by belt transmission, the pushing mechanism 4 and the planetary mechanism 5 are in gear meshing transmission, the planetary mechanism 5 and the collecting mechanism 6 are in gear meshing transmission, the collecting mechanism 6 is arranged in the complete machine support 1, the filtering mechanism 7 is rotatably connected to the complete machine, the filtering mechanism 7 is in transmission connection with the speed change mechanism 3 through a belt, and the filtering mechanism 7 is arranged in the whole machine bracket 1; the insoluble matters in the industrial wastewater can be removed and collected through the pushing mechanism 4 and the collecting mechanism 6, the speed change mechanism 3 with serious industrial wastewater pollution automatically accelerates the rotation speed of the filtering mechanism 7 when the insoluble matters in the industrial wastewater are more, and the speed change mechanism 3 with light industrial wastewater pollution automatically decelerates the rotation speed of the filtering mechanism 7 when the insoluble matters in the industrial wastewater are less, so that the use of the filtering plates 7-6 is saved.
The second embodiment is as follows:
the embodiment is described below with reference to fig. 1 to 12, and the embodiment further describes the first embodiment, where the complete machine support 1 includes a purifying rectangular pipe 1-1, a front support plate 1-2 and a rear support plate 1-3, the front support plate 1-2 and the rear support plate 1-3 are symmetrically arranged in left and right, the two front support plates 1-2 are respectively fixedly connected to the left and right ends of the front side of the purifying rectangular pipe 1-1, and the two rear support plates 1-3 are respectively fixedly connected to the left and right ends of the rear side of the purifying rectangular pipe 1-1; when in use, the industrial wastewater flows in from the rear end of the purifying rectangular pipeline 1-1, and the industrial wastewater flows in from the rear end of the purifying rectangular pipeline 1-1 and flows out from the front end of the purifying rectangular pipeline 1-1.
The third concrete implementation mode:
the embodiment is described below with reference to fig. 1 to 12, and the second embodiment is further described in the embodiment, where the power mechanism 2 includes a motor 2-1 and a power pulley 2-2, the power pulley 2-2 is fixedly connected to an output shaft of the motor 2-1, and the motor 2-1 is fixedly connected to a front support plate 1-2 located on the left side; the motor 2-1 is started, the output shaft of the motor 2-1 starts to rotate, and the output shaft of the motor 2-1 drives the power belt wheel 2-2 to start to rotate.
The fourth concrete implementation mode:
the third embodiment will be further described with reference to fig. 1-12, wherein the speed-changing mechanism 3 includes a speed-changing shaft i 3-1, a speed-changing bevel gear i 3-2, a speed-changing pulley i 3-3, a speed-changing connecting pulley 3-4, a rotating small shaft 3-5, a differential bevel gear 3-6, a speed-changing shaft ii 3-7, a speed-changing pulley ii 3-8 and a speed-changing bevel gear ii 3-9, the speed-changing bevel gear i 3-2 and the speed-changing pulley i 3-3 are respectively and fixedly connected to the left and right ends of the speed-changing shaft i 3-1, the speed-changing shaft i 3-1 is rotatably connected to the right end of the speed-changing connecting pulley 3-4, both ends of the rotating small shaft 3-5 are rotatably connected to the speed-changing connecting pulley 3-4, the differential bevel gear 3-6 is fixedly connected to the rotating small shaft 3-, the speed change belt wheels II 3-8 and the speed change bevel teeth II 3-9 are respectively and fixedly connected to the left end and the right end of the speed change shaft II 3-7, the speed change bevel teeth II 3-9 and the speed change bevel teeth I3-2 are respectively in meshing transmission with the left side and the right side of the differential bevel teeth 3-6, the speed change shaft II 3-7 is rotatably connected to the rear supporting plate 1-3 on the right side, the speed change shaft I3-1 is rotatably connected to the rear supporting plate 1-3 on the left side, and the speed change connecting belt wheel 3-4 and the power belt wheel 2-2 are connected through belt transmission; the power belt wheel 2-2 drives the variable-speed connecting belt wheel 3-4 to start to rotate, the variable-speed connecting belt wheel 3-4 circumferentially rotates by taking the variable-speed shaft I3-1 as a center, the variable-speed connecting belt wheel 3-4 pushes the rotary small shaft 3-5 to circumferentially rotate by taking the variable-speed shaft I3-1 as a center, the rotary small shaft 3-5 drives the differential bevel gear 3-6 to circumferentially rotate by taking the variable-speed shaft I3-1 as a center, the differential bevel gear 3-6 pushes the variable bevel gears I3-2 and II 3-9 on two sides to rotate, when the reaction forces transmitted by the variable-speed shaft I3-1 and the variable-speed shaft II 3-7 received by the variable bevel gear I3-2 and the variable bevel gear II 3-9 are the same, the differential bevel gear 3-6 does not self-rotate, when the reaction force transmitted by the variable-speed shaft I3-1 is greater than the reaction force transmitted by the variable-speed shaft II, the differential bevel gear 3-6 autorotates, the differential bevel gear 3-6 pushes the speed change bevel gear II 3-9 fixedly connected to the speed change shaft II 3-7 with smaller stress to rotate, the rotating speed of the speed change bevel gear II 3-9 is greater than that of the speed change bevel gear I3-2, when the reaction force transmitted from the speed change shaft I3-1 is smaller than that of the speed change shaft II 3-7, the differential bevel gear 3-6 autorotates, the differential bevel gear 3-6 pushes the speed change bevel gear I3-2 fixedly connected to the speed change shaft I3-1 with smaller stress to rotate, and the rotating speed of the speed change bevel gear II 3-9 is smaller than that of the speed change bevel gear I3-2.
The fifth concrete implementation mode:
the fourth embodiment is further described with reference to fig. 1 to 12, in which the pushing mechanism 4 includes a pushing shaft 4-1, a pushing belt pulley 4-2, a pushing gear 4-3 and a pushing spiral body 4-4, the pushing belt pulley 4-2 is fixedly connected to the right end of the pushing shaft 4-1, the pushing gear 4-3 is fixedly connected to the middle end of the pushing shaft 4-1, the pushing spiral body 4-4 is fixedly connected to the left end of the pushing shaft 4-1, and the pushing belt pulley 4-2 and the speed changing belt pulley i 3-3 are in belt transmission connection; the speed changing belt wheel I3-3 drives the pushing belt wheel 4-2 to rotate, the pushing belt wheel 4-2 drives the pushing shaft 4-1 to rotate, and the pushing shaft 4-1 drives the pushing gear 4-3 and the pushing spiral body 4-4 to rotate.
The sixth specific implementation mode:
the embodiment is described below with reference to fig. 1-12, and the embodiment further describes the fifth embodiment, where the planetary mechanism 5 includes a planetary carrier 5-1, a mounting column 5-2, a planetary rotation column 5-3 and planetary wheels 5-4, one end of the mounting column 5-2 is fixedly connected to the planetary carrier 5-1, the other end of the mounting column 5-2 is fixedly connected to the purifying rectangular pipe 1-1, two planetary rotation columns 5-3 and two planetary wheels 5-4 are provided, two planetary rotation columns 5-3 are fixedly connected to the planetary carrier 5-1, two planetary wheels 5-4 are respectively rotatably connected to the two planetary rotation columns 5-3, the inner sides of the two planetary wheels 5-4 are engaged with the pushing gear 4-3, the pushing shaft 4-1 is in clearance fit with the planet carrier 5-1; the push gear 4-3 drives the two planet gears 5-4 to rotate.
The seventh embodiment:
the embodiment is described below with reference to fig. 1 to 12, and the sixth embodiment is further described, in which the collecting mechanism 6 includes a collecting cylinder 6-1, a connecting cylinder 6-2, a gear ring 6-3, collecting arc-shaped plates 6-4, water passing grooves 6-5, collecting baffles 6-6 and collecting grooves 6-7, the connecting cylinder 6-2 is fixedly connected to the left end of the collecting cylinder 6-1, the gear ring 6-3 is fixedly connected to the connecting cylinder 6-2, four collecting arc-shaped plates 6-4 are uniformly arranged in the circumferential direction, the inner ends of the four collecting arc-shaped plates 6-4 are fixedly connected to the collecting cylinder 6-1, the outer sides of the four collecting arc-shaped plates 6-4 are provided with a plurality of water passing grooves 6-5, and the inner sides of the four collecting arc-shaped plates 6-4 are provided with collecting grooves 6-7, the four collecting tanks 6-7 are respectively and rotatably connected with collecting baffles 6-6, two ends of a collecting cylinder 6-1 are respectively and rotatably connected with the left end and the right end of a rectangular purifying pipeline 1-1, a pushing shaft 4-1 is rotatably connected on a connecting cylinder 6-2, and the outer sides of two planet wheels 5-4 are respectively meshed with a gear ring 6-3; two planet wheels 5-4 drive a gear ring 6-3 to rotate, the gear ring 6-3 drives a connecting cylinder 6-2 to rotate, the connecting cylinder 6-2 drives a collecting cylinder 6-1 to rotate, the collecting cylinder 6-1 drives four collecting arc plates 6-4 to rotate, the rotating direction of the four collecting arc plates 6-4 is opposite to the water flow direction, the four collecting arc plates 6 collect insoluble matters in the industrial wastewater, when the four collecting arc plates 6 drive the insoluble matters in the industrial wastewater to rotate to the upper side, the insoluble matters in the industrial wastewater push a collecting baffle plate 6-6 to rotate, the insoluble matters in the industrial wastewater go into the collecting cylinder 6-1 from a collecting tank 6-7, when the four collecting arc plates 6 drive the insoluble matters in the industrial wastewater to rotate to the lower side, insoluble matters in the industrial wastewater are stopped by the collecting baffle 6-6, the collecting baffle 6-6 stops the collecting groove 6-7 through the action of gravity, the insoluble matters in the industrial wastewater cannot fall out of the collecting groove 6-7, the spiral body 4-4 is pushed to push out the insoluble matters in the industrial wastewater in the collecting cylinder 6-1, and the insoluble matters in the industrial wastewater are pushed out from the left side of the collecting cylinder 6-1 and fall into the collecting device.
The specific implementation mode is eight:
the following describes the present embodiment with reference to fig. 1 to 12, and the present embodiment further describes an embodiment seven, where the filter mechanism 7 includes a filter shaft 7-1, filter pulleys 7-2, filter supports 7-3, filter baffles 7-4, activated carbon slots 7-5, and filter plates 7-6, the filter pulleys 7-2 are fixedly connected to the left end of the filter shaft 7-1, four filter supports 7-3 are uniformly arranged in the circumferential direction, the inner ends of the four filter supports 7-3 are all fixedly connected to the filter shaft 7-1, the two sides of the four filter supports 7-3 are all fixedly connected to the filter baffles 7-4, each pair of filter baffles 7-4 forms a rectangular slot, four activated carbon slots 7-5 are arranged, four activated carbon slots 7-5 are respectively arranged on the four filter supports 7-3, the four activated carbon slots 7-5 are respectively communicated with the four rectangular slots, two ends of the filtering shaft 7-1 are rotatably connected to the purifying rectangular pipeline 1-1, and the variable speed belt wheel II 3-8 and the filtering belt wheel 7-2 are in transmission connection through a belt; when the insoluble matter in the industrial waste water is more, the speed change mechanism 3 with serious industrial waste water pollution automatically increases the rotating speed of the filtering mechanism 7, and when the insoluble matter in the industrial waste water is less, the speed change mechanism 3 with light industrial waste water pollution automatically reduces the rotating speed of the filtering mechanism 7, thereby saving the use of the filtering plate 7-6.
The invention relates to an industrial wastewater purification device, which has the working principle that:
when the device is used, industrial wastewater flows in from the rear end of the purifying rectangular pipeline 1-1, the industrial wastewater flows in from the rear end of the purifying rectangular pipeline 1-1 and flows out from the front end of the purifying rectangular pipeline 1-1, the motor 2-1 is started, the output shaft of the motor 2-1 starts to rotate, the output shaft of the motor 2-1 drives the power belt wheel 2-2 to start to rotate, the power belt wheel 2-2 drives the variable speed connecting belt wheel 3-4 to start to rotate, the variable speed connecting belt wheel 3-4 circumferentially rotates around the variable speed shaft I3-1, the variable speed connecting belt wheel 3-4 pushes the rotating small shaft 3-5 to circumferentially rotate around the variable speed shaft I3-1, and the rotating small shaft 3-5 drives the differential bevel gear 3-6 to circumferentially rotate around the variable speed shaft I3-1, the differential bevel gear 3-6 pushes the variable speed bevel gear I3-2 and the variable speed bevel gear II 3-9 on two sides to rotate, when the reaction forces transmitted by the variable speed shaft I3-1 and the variable speed shaft II 3-7 received by the variable speed bevel gear I3-2 and the variable speed bevel gear II 3-9 are the same, the differential bevel gear 3-6 does not rotate, when the reaction force transmitted by the variable speed shaft I3-1 is greater than the reaction force transmitted by the variable speed shaft II 3-7, the differential bevel gear 3-6 rotates, the differential bevel gear 3-6 pushes the variable speed bevel gear II 3-9 fixedly connected with the variable speed shaft II 3-7 with smaller stress to rotate, the rotating speed of the variable speed bevel gear II 3-9 is greater than the rotating speed of the variable speed bevel gear I3-2, when the reaction force transmitted by the variable speed shaft I3-1 is less than the reaction force transmitted by the variable speed shaft II 3-7, the differential bevel gear 3-6 rotates, the differential bevel gear 3-6 pushes the speed change bevel gear I3-2 fixedly connected to the speed change shaft I3-1 with smaller stress to rotate, the rotation speed of the speed change bevel gear II 3-9 is smaller than that of the speed change bevel gear I3-2, the speed change belt wheel I3-3 drives the push belt wheel 4-2 to rotate, the push belt wheel 4-2 drives the push shaft 4-1 to rotate, the push shaft 4-1 drives the push gear 4-3 and the push spiral body 4-4 to rotate, the push gear 4-3 drives the two planet wheels 5-4 to rotate, the two planet wheels 5-4 drive the gear ring 6-3 to rotate, the gear ring 6-3 drives the connecting cylinder 6-2 to rotate, and the connecting cylinder 6-2 drives the collecting cylinder 6-1 to rotate, the collecting cylinder 6-1 drives the four collecting arc-shaped plates 6-4 to rotate, the rotating direction of the four collecting arc-shaped plates 6-4 is opposite to the water flow direction, the four collecting arc-shaped plates 6 collect insoluble matters in the industrial wastewater, when the four collecting arc-shaped plates 6 drive the insoluble matters in the industrial wastewater to rotate to the upper side, the insoluble matters in the industrial wastewater push the collecting baffle 6-6 to rotate, the insoluble matters in the industrial wastewater are conveyed into the collecting cylinder 6-1 from the collecting tank 6-7, when the four collecting arc-shaped plates 6 drive the insoluble matters in the industrial wastewater to rotate to the lower side, the insoluble matters in the industrial wastewater are blocked by the collecting baffle 6-6, the collecting baffle 6-6 blocks the collecting tank 6-7 through the gravity action, and the insoluble matters in the industrial wastewater cannot fall out from the collecting tank 6-7, pushing the spiral body 4-4 to push out insoluble matters in the industrial wastewater in the collecting cylinder 6-1, wherein the insoluble matters in the industrial wastewater are pushed out from the left side of the collecting cylinder 6-1 and fall into a collecting device; when the insoluble matter in the industrial waste water is more, the speed change mechanism 3 with serious industrial waste water pollution automatically increases the rotating speed of the filtering mechanism 7, and when the insoluble matter in the industrial waste water is less, the speed change mechanism 3 with light industrial waste water pollution automatically reduces the rotating speed of the filtering mechanism 7, thereby saving the use of the filtering plate 7-6.
It is to be understood that the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and that various changes, modifications, additions and substitutions which are within the spirit and scope of the present invention and which may be made by those skilled in the art are also within the scope of the present invention.