Textile washing wastewater recycling device
Technical Field
The utility model relates to the technical field of textile wastewater recovery, in particular to a textile washing wastewater recovery and reutilization device.
Background
In the process of washing cotton textiles, a large amount of water resources are consumed, particularly in the printing and dyeing and washing processes, along with the increasing shortage of the water resources, recycling the washing wastewater becomes an important way for relieving the pressure of the water resources, and the consumption of fresh water resources can be obviously reduced through recycling.
The cotton textile can receive the impact force of rivers and self mutual friction in the washing process, and drop certain fibre down, and these fibres form the cotton wool in aqueous, and the existence of cotton wool in waste water can cause the jam to the filter screen subassembly on the water recovery plant, this normal operating who influences waste water recovery system has also reduced the life of equipment, often needs the manual work frequently to go to clear up, comparatively wastes time and energy.
Disclosure of utility model
Aiming at the defects of the prior art, the utility model provides a textile washing wastewater recycling device, which can solve the problems that cotton wool in textile washing wastewater in the traditional mode blocks a filter screen assembly on water recycling equipment, the service life of the equipment is shortened, the recycling efficiency is influenced, frequent manual cleaning is often required, and time and labor are wasted.
The textile washing wastewater recycling device comprises a recycling container, wherein the two sides of the recycling container are fixedly connected with a water inlet and a water outlet respectively, and a cleaning and impurity removing component is arranged on the recycling container and used for cleaning cotton wool in textile washing wastewater;
the cleaning and impurity removing assembly comprises a first hexagonal shaft, an outer gear ring, a baffle groove, a rotating shaft, a hexagonal shaft, a first gear, a second rotating shaft, a pinion, a middle gear, a spring, a brush roller, a top block, a waste collecting box and a motor;
The cleaning and impurity removing assembly further comprises a baffle plate which is fixedly connected to the inner wall of the recovery container, a plurality of baffle grooves are formed in the arc surface of the baffle plate, the baffle grooves are uniformly distributed in a circumferential array, and the baffle grooves are used for blocking cotton wool impurities in the washing wastewater;
The bottom wall at the recovery container is rotated to the pivot, and hexagonal axle is fixed to be cup jointed in the surface of pivot, and hexagonal axle and the circular arc surface of baffle laminate mutually and set up, and first hexagonal axle fixed connection is in the upper end of pivot, and hexagonal axle is used for driving cotton wool and impurity on the fender groove and upwards moves.
Preferably, the outer surface sliding connection of first hexagonal axle has two fixed plates, and the second pivot rotates to be connected between two fixed plates, and the brush roller rotates the lower extreme surface of connecting at the second pivot, and the brush roller is used for taking out batting and impurity of fender groove upper end.
Preferably, the kicking block rotates the lower extreme of connecting at the second pivot, and the kicking block material is made for the teflon material that has certain self-lubricating effect, and the kicking block is laminated mutually with the surface of hexagonal axle, and the kicking block is used for driving brush roller and reciprocates.
Preferably, the spring is sleeved on the outer surface of the second rotating shaft, the spring is positioned between the two fixing plates, the pinion is fixedly sleeved on the outer surface of the upper end of the second rotating shaft, the outer gear ring is meshed with the pinion and is fixedly connected with the recovery container through the fixing frame.
Preferably, the middle gear is fixedly connected to the upper end of the second rotating shaft, the first gear is fixedly sleeved at the upper end of the first hexagonal shaft, the middle gear is connected with the first gear in a meshed mode, and the first gear is used for driving the brush roller to reversely rotate around the first hexagonal shaft.
Preferably, the motor is fixedly arranged at the bottom of the recovery container, an output shaft of the motor is fixedly inserted into the recovery container, and the waste collection box is fixedly arranged at the upper edge position of the baffle plate.
Compared with the prior art, the utility model provides a textile washing wastewater recycling device, which has the following beneficial effects:
This fabrics washing waste water recycling device drives pinion and external ring gear meshing through the second pivot and is connected, the second pivot of this moment can be with the speed reverse round second pivot rotation that is faster than hexagonal shaft self rotational speed, simultaneously the kicking block of second pivot lower extreme can be under the effect of the hexagonal shaft of lasting rotation and upwards remove, the spring of this moment is compressed, until the kicking block march to the top of hexagonal shaft, the cotton wool impurity that rises gradually of this moment can upwards clear up out and break away from baffle groove cotton wool and impurity meeting flow to the waste collection box with the cotton wool impurity that is located baffle upper portion, can make the cotton wool impurity clearance that is located baffle groove upper edge in the waste collection box through the operation of above structure, this cotton wool among the fabrics washing waste water has avoided in the traditional mode causes the jam to the filter screen subassembly on the water recovery plant, reduce equipment life, often need artifical frequent clearance, comparatively waste time and energy waste problem.
This fabrics washing waste water recycling device, through clear up in the edulcoration subassembly kicking block can be under the effect of the hexagonal axle that lasts the rotation and upwards remove, the spring of this moment is compressed, and the spring is followed to the top of hexagonal axle to the kicking block, then receives the elastic force of spring and strikes at the surface of hexagonal axle, and vibration and the impact force that produces this moment can make some cotton wool and impurity separation that adhere to on the hexagonal axle to can be better by the clearance.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of the top block structure of the present utility model;
FIG. 3 is a schematic view of a baffle slot structure according to the present utility model.
1, A recovery container; 2, a hexagonal shaft, 3, an outer gear ring, 4, a baffle plate, 5, a baffle groove, 6, a rotating shaft, 7, a hexagonal shaft, 8, a first gear, 9, a second rotating shaft, 10, a pinion, 11, a middle gear, 12, a spring, 13, a brush roller, 14, a top block, 15, a fixed plate, 16, a waste collection box, 17 and a motor.
Detailed Description
Reference will now be made in detail to the present embodiments of the present utility model, examples of which are illustrated in the accompanying drawings, wherein the accompanying drawings are used to supplement the description of the written description so that one can intuitively and intuitively understand each technical feature and overall technical scheme of the present utility model, but not to limit the scope of the present utility model.
In the description of the present utility model, it should be understood that references to orientation descriptions such as upper, lower, front, rear, left, right, etc. are based on the orientation or positional relationship shown in the drawings, are merely for convenience of description of the present utility model and to simplify the description, and do not indicate or imply that the apparatus or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be construed as limiting the present utility model.
In the description of the present utility model, greater than, less than, exceeding, etc. are understood to exclude this number, and above, below, within, etc. are understood to include this number, if first and second are described only for the purpose of distinguishing technical features, they are not to be interpreted as indicating or implying relative importance or implicitly indicating the number of technical features indicated or implicitly indicating the precedence of the technical features indicated.
In the description of the present utility model, unless explicitly defined otherwise, terms such as arrangement, installation, connection, etc. should be construed broadly and the specific meaning of the terms in the present utility model can be reasonably determined by a person skilled in the art in combination with the specific contents of the technical scheme.
Referring to fig. 1-3, the utility model provides a novel technical scheme that a textile washing wastewater recycling device comprises a recycling container 1, wherein water inlets and water outlets are respectively fixedly connected to two sides of the recycling container 1, a cleaning and impurity removing component is arranged on the recycling container 1 and used for cleaning cotton wool in textile washing wastewater;
the cleaning and impurity removing assembly comprises a first hexagonal shaft 2, an outer gear 3, a baffle groove 5, a rotating shaft 6, a hexagonal shaft 7, a first gear 8, a second rotating shaft 9, a pinion 10, a middle gear 11, a spring 12, a brush roller 13, a top block 14, a waste collecting box 16 and a motor 17;
The cleaning and impurity removing assembly further comprises a baffle plate 4, the baffle plate 4 is fixedly connected to the inner wall of the recovery container 1, a plurality of baffle grooves 5 are formed in the arc surface of the baffle plate 4, the baffle grooves 5 are uniformly distributed in a circumferential array, and the baffle grooves 5 are used for blocking cotton wool impurities in the washing wastewater;
The bottom wall at recovery container 1 is connected in the rotation of pivot 6, and hexagonal shaft 7 is fixed to be cup jointed in the surface of pivot 6, and hexagonal shaft 7 and the circular arc face of baffle 4 laminate mutually and set up, and first hexagonal shaft 2 fixed connection is in the upper end of pivot 6, and hexagonal shaft 7 is used for driving cotton wool and impurity on the fender groove 5 and upwards moves.
Further, the outer surface sliding connection of the first hexagonal shaft 2 has two fixed plates 15, the second rotating shaft 9 is rotationally connected between the two fixed plates 15, the brush roller 13 is rotationally connected to the outer surface of the lower end of the second rotating shaft 9, and the brush roller 13 is used for bringing out cotton wool and impurities at the upper end of the baffle slot 5.
Further, the ejector block 14 is rotatably connected to the lower end of the second rotating shaft 9, the ejector block 14 is made of teflon material with a certain self-lubricating effect, the ejector block 14 is attached to the surface of the hexagonal shaft 7, and the ejector block 14 is used for driving the brush roller 13 to move up and down.
Further, the spring 12 is sleeved on the outer surface of the second rotating shaft 9, the spring 12 is positioned between the two fixing plates 15, the pinion 10 is fixedly sleeved on the outer surface of the upper end of the second rotating shaft 9, the outer gear ring 3 is meshed with the pinion 10, and the outer gear ring 3 is fixedly connected with the recovery container 1 through a fixing frame.
Further, the middle gear 11 is fixedly connected to the upper end of the second rotating shaft 9, the first gear 8 is fixedly sleeved on the upper end of the first hexagonal shaft 2, the middle gear 11 is in meshed connection with the first gear 8, and the first gear 8 is used for driving the brush roller 13 to reversely rotate around the first hexagonal shaft 2.
Further, the motor 17 is fixedly installed at the bottom of the recovery container 1, the output shaft of the motor 17 is fixedly inserted into the rotating shaft 6, and the waste collection box 16 is fixedly installed at the upper edge position of the baffle 4.
Further, through the waste water of the water inlet input washing of follow during the use, waste water can be followed and passed through in baffle groove 5 on baffle 4, cotton wool in the waste water can be blocked by baffle 4, start motor 17 drive pivot 6 and hexagonal shaft 7 rotation on this moment, can upwards remove cotton wool and impurity on baffle 4 arc surface when hexagonal shaft 7 is rotatory, and still can drive in the same time can be through first hexagonal shaft 2 and first gear 8 when pivot 6 is rotatory gear 11 and surround the rotation, the well gear 11 of this moment can drive pinion 10 through second pivot 9 and be connected with the meshing of outer ring gear 3, the second pivot 9 of this moment can be with the speed reverse round second pivot 9 that is faster than first hexagonal shaft 2 self rotational speed, simultaneously the kicking block 14 of second pivot 9 lower extreme can be under the effect of continuously rotatory hexagonal shaft 7 and upwards move, spring 12 at this moment is compressed, until the top of hexagonal shaft 7 is advanced to the kicking block 14, the brush 13 that rises gradually can be located on baffle 4 part can be located and break away from the cotton wool groove 5 and can be used for the waste material to the waste material can be removed to the waste material can be replaced in the waste water can be replaced to the waste water can be reduced to the waste material can be recovered to the waste water to the equipment to the waste material is recovered to the waste material is replaced in the waste water is more than the waste material is recovered to the equipment is in the waste material is required to the waste material is washed to the equipment is more clean up to the waste material is to can is more has more had.16 is more has more had.
Further, the ejector block 14 in the cleaning and impurity removing assembly can move upwards under the action of the continuously rotating hexagonal shaft 7, the spring 12 is compressed until the ejector block 14 moves to the top of the hexagonal shaft 7 and then is impacted on the outer surface of the hexagonal shaft 7 by the elastic force of the spring 12, and the vibration and impact force generated at the moment can separate some cotton wool and impurities attached to the hexagonal shaft 7, so that the cleaning and impurity removing assembly can be better cleaned.
The waste water washing device is characterized in that the waste water is input from a water inlet, the waste water passes through a baffle groove 5 on a baffle plate 4, cotton wool in the waste water can be blocked by the baffle plate 4, a motor 17 is started to drive a rotating shaft 6 and a hexagonal shaft 7 on the rotating shaft 7 to rotate, cotton wool and impurities attached to an arc surface of the baffle plate 4 can be moved upwards when the hexagonal shaft 7 rotates, meanwhile, when the rotating shaft 6 rotates, a middle gear 11 is driven to rotate around the rotating shaft through the hexagonal shaft 2 and a first gear 8, the middle gear 11 can drive a pinion 10 to be meshed with an outer gear 3 through a second rotating shaft 9, the second rotating shaft 9 can reversely rotate around the second rotating shaft 9 at a speed higher than the rotating speed of the hexagonal shaft 2, a top block 14 at the lower end of the second rotating shaft 9 can be moved upwards under the action of the continuously rotating hexagonal shaft 7, a spring 12 is compressed until the top block 14 moves to the top of the hexagonal shaft 7, and a gradually rising brush 13 can clean cotton wool at the upper part of the baffle plate 4 upwards out of the baffle groove 5 and separate from the cotton wool and impurities from the outer gear 3 to the cotton wool groove 16, and the impurities can fall into a waste material collecting box 16 through the brush structure, and the waste material can be collected in the waste material collecting box 16.
The ejector block 14 in the cleaning and impurity removing assembly can move upwards under the action of the continuously rotating hexagonal shaft 7, the spring 12 is compressed until the ejector block 14 moves to the top of the hexagonal shaft 7 and then is impacted on the outer surface of the hexagonal shaft 7 by the elastic force of the spring 12, and the vibration and impact force generated at the moment can separate some cotton wool and impurities attached to the hexagonal shaft 7, so that the cleaning and impurity removing assembly can be better cleaned.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.