SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a scrap iron separator for bale plucker deironing solves the inconvenient problem that the cotton that will mix in iron was retrieved among the prior art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a bale plucker iron fillings separator for deironing, includes: the box body is erected on the ground, a channel, an air channel, an iron collecting chamber, a cotton collecting chamber and a cotton collecting passage are arranged in the box body, the channel is vertically arranged in the box body, the hopper body is installed at the top of the box body, the hopper body communicates the outside with the channel, the iron collecting chamber is located under the channel, the iron collecting chamber is communicated with the channel, the air channel penetrates through the box body, the air channel is communicated with the channel, the fan is installed at one end of the air channel and used for ventilating the air channel, the cotton collecting assembly is installed at one end, deviating from the fan, of the air channel, the cotton collecting assembly is used for preventing cotton from flowing out of the air channel, a groove is formed in a concave mode of the inner wall of the air channel at the left side of the cotton collecting assembly, the cotton collecting chamber is arranged below the channel, and the.
Compared with the prior art, the utility model discloses following beneficial effect has: when the device is used, the fan is started firstly, the fan ventilates towards the channel, then the mixture of the iron blocks and the cotton is put into the leakage hopper, the mixture of the iron blocks and the cotton enters the channel through the leakage hopper, when the mixture of the iron blocks and the cotton passes through the junction of the air duct and the channel, because the weight of the cotton is lighter, the cotton is blown to the cotton collecting component of the air duct under the action of wind force, the iron block enters the iron collecting chamber through the channel, the cotton blocked by the cotton collecting component falls into the groove and enters the cotton collecting chamber through the cotton collecting passage communicated with the groove, thereby realize the separation of cotton and iron, solved when the cotton that snatchs the bale plucker carries out deironing in advance, cotton and iron plate mix the inconvenient problem of separating together, need not the workman and go to separate cotton and iron plate with the hand, alleviateed workman's burden, also improved separation efficiency simultaneously.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
Fig. 1 is the structural schematic diagram of the iron scrap separating device for the bale plucker iron removal of the utility model.
Fig. 2 is an enlarged view of a portion a in fig. 1.
Fig. 3 is an enlarged view of fig. 2 at B.
Description of reference numerals: the device comprises a box body 1, a leakage hopper 2, a fan 3, a channel 4, an iron collecting chamber 5, an air duct 6, a groove 7, a cotton collecting passage 8, a second ventilation net 9, a motor 10, a dust removing brush 11, a pull rod 12, a first ventilation net 13, an iron collecting groove 14, a cotton collecting groove 15, a cotton collecting chamber 16, an output shaft 17, bristles 18, a base 19, a sliding groove 20, a clamping block 21, a mounting seat 22, a cavity 23, a clamping pin 24 and a spring 25.
Detailed Description
In order to make the utility model realize that technical means, creation characteristics, achievement purpose and effect are clearer and easily understand, it is right to combine below the figure and the detailed implementation mode the utility model discloses do further explanation:
as shown in fig. 1, the utility model provides a scrap iron separator for bale plucker deironing, include: the box body 1 is erected on the ground, a channel 4, an air duct 6, an iron collecting chamber 5, a cotton collecting chamber 16 and a cotton collecting passage 8 are arranged in the box body 1, the channel 4 is vertically arranged in the box body 1, the hopper 2 is arranged on the top of the box body 1, the hopper 2 communicates the outside with the channel 4, the iron collecting chamber 5 is positioned under the channel 4, the iron collecting chamber 5 is communicated with the channel 4, the air duct 6 penetrates through the box body 1, the air duct 6 is communicated with the channel 4, install fan 3 in one end of wind channel 6, fan 3 is used for ventilating in to wind channel 6, cotton collecting assembly installs the one end that deviates from fan 3 in wind channel 6, and cotton collecting assembly is used for preventing cotton from 6 outflow from wind channel, and the sunken recess 7 that forms of the left wind channel 6 inner wall of cotton collecting assembly, cotton collecting chamber 16 set up in passageway 4 below, and cotton collecting passage 8 is with cotton collecting chamber 16 and recess 7 intercommunication. When the device is used, firstly, the fan 3 is started, the fan 3 ventilates towards the channel 4, then the mixture of the iron blocks and the cotton is put into the hopper 2, the mixture of the iron blocks and the cotton enters the channel 4 through the hopper 2, when the mixture of the iron blocks and the cotton passes through the junction of the air duct 6 and the channel 4, because the weight of the cotton is light, the cotton is blown to the cotton collecting component of the air duct 6 under the action of wind force, the iron blocks enter the iron collecting chamber 5 through the channel 4, the cotton blocked by the cotton collecting component falls into the groove 7 and enters the cotton collecting chamber 16 through the cotton collecting passage 8 communicated with the groove 7, thereby realizing the separation of the cotton and the iron, solving the problem that the cotton and the iron blocks are mixed together and inconvenient to separate when the iron of the cotton grabbed by grabbing is removed in advance, avoiding the need of workers to separate the cotton from the iron blocks by hands, and lightening the burden of the workers, and simultaneously, the separation efficiency is improved.
As shown in fig. 2, the lint assembly comprises: second ventilation net 9, motor 10, dust removal brush 11, brush hair 18 and installation mechanism, second ventilation net 9 is detachably installed in wind channel 6 with intercepting, and second ventilation net 9 only supplies the air to pass through, is provided with at least one motor 10 on second ventilation net 9, and the output shaft 17 of motor 10 is connected to dust removal brush 11, and dust removal brush 11 passes through installation mechanism and motor 10 output shaft 17 and can dismantle the connection, and dust removal brush 11 is located one side that second ventilation net 9 is close to fan 3 and brush hair 18 on the dust removal brush 11 contacts with the ventilation net to the cotton of clearance adhesion on second ventilation net 9. The effect of second ventilation net 9 is when the cotton is blown to second ventilation net 9 by the wind, and second ventilation net 9 can block cotton from the wind channel 6 outflow for in the cotton enters into recess 7, and brush hair 18 on the dust removal brush 11 is under the drive of motor 10 simultaneously, and brush hair 18 can clear up the dust on the second ventilation net 9 and the cotton of adhesion on second ventilation net 9.
Further comprising: first ventilation net 13, first ventilation net 13 is installed in the junction of wind channel 6 and passageway 4, and first ventilation net 13 is located the one end that wind channel 6 is close to fan 3, and first ventilation net 13 only supplies the air to pass through. The first ventilation net 13 is used for preventing iron blocks from entering the air duct 6 at the side close to the fan 3 to damage the motor 10.
Further comprising: iron collecting groove 14 and cotton collecting groove 15, iron collecting groove 14 is installed in iron collecting chamber 5, and iron collecting groove 14 is located under passageway 4, cotton collecting groove 15 is installed in cotton collecting chamber 16, and cotton collecting groove 15 is located under cotton collecting passage 8, cotton collecting chamber 16 all communicates with the external world with iron collecting chamber 5. Through set up collection iron notch 14 in collection iron room 5, conveniently retrieve the iron plate that enters into in collection iron room 5, also conveniently take out the iron plate simultaneously, the cotton groove 15 of collection in the cotton room 16 of collection conveniently collects the cotton that enters into in the cotton room 16 of collection and takes out.
As shown in fig. 3, the mounting mechanism includes: base 19, chucking piece 21 and chucking spare, chucking piece 21 is two, and two chucking pieces 21 are installed respectively in motor 10 output shaft 17 both sides, have seted up spout 20 on base 19, and spout 20 only supplies output shaft 17 and two chucking pieces 21 to slide in it, and output shaft 17 can not be at the internal rotation of spout 20, installs two chucking spare in the both sides of base 19, and chucking spare is used for preventing that base 19 and motor 10 output shaft 17 from droing. Each retainer includes: mount pad 22, spring 25, pull rod 12 and bayonet lock 24, cavity 23 has been seted up in mount pad 22, install spring 25 on the cavity 23 inner wall, spring 25 is connected to the one end of bayonet lock 24, mount pad 22 and base 19 are passed to the other end of bayonet lock 24 under spring 25's elasticity and are inserted in spout 20, one end that bayonet lock 24 is located spout 20 is hugged closely with chucking piece 21, bayonet lock 24 is used for preventing chucking piece 21 from moving in the direction that deviates from base 19, the one end of pull rod 12 is installed to bayonet lock 24 one of being located cavity 23, the other end of pull rod 12 stretches out outside mount pad 22. The working principle of the mounting mechanism is as follows: when the dust removing brush 11 needs to be detached, only two pull rods 12 need to be pulled, two clamping pins 24 are pulled out of the sliding groove 20, then the dust removing brush 11 can be detached from the output shaft 17 of the motor 10 by moving the pulling base 19 towards the direction departing from the output shaft 17, the dust removing brush 11 is convenient to detach, maintain and replace, when the dust removing brush 11 is installed, only two pull rods 12 need to be pulled, two clamping pins 24 are pulled out of the sliding groove 20, then the output shaft 17 is aligned with the sliding groove 20, the output shaft 17 is inserted into the sliding groove 20, when the output shaft 17 is inserted into the bottom of the sliding groove 20, the two pull rods 12 are released, the two clamping pins 24 are inserted into the sliding groove 20, the two clamping pins 24 are tightly attached to the two clamping blocks 21 respectively, the clamping blocks 21 are prevented from sliding in the sliding groove 20, and the dust removing brush 11 is prevented from being separated.
Finally, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the present invention can be modified or replaced by other means without departing from the spirit and scope of the present invention, which should be construed as limited only by the appended claims.