CN212923604U - Vibrating feeder capable of separating waste materials - Google Patents
Vibrating feeder capable of separating waste materials Download PDFInfo
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- CN212923604U CN212923604U CN202021892665.5U CN202021892665U CN212923604U CN 212923604 U CN212923604 U CN 212923604U CN 202021892665 U CN202021892665 U CN 202021892665U CN 212923604 U CN212923604 U CN 212923604U
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Abstract
The utility model discloses a vibrating feeder of separable waste material, including the air-blower that is used for separating light waste material for increase the material transfer time and hinder the waste material baffle that the waste material removed simultaneously, be used for separating the waste material hole and the net fence of waste material, thereby waste material baffle adjustable position influences the opening size in waste material hole and then accurate separation waste material, the air-blower can make light waste material pass the net fence or fall into the garbage collection case through the waste material hole. This vibrating feeder of separable waste material's structural design not only is in through increasing the material time on the vibration board increases its vibration number of times to promote its even degree, alleviateed the degree of difficulty of follow-up processing, still separate out light waste material and tiny particle waste material in the material simultaneously, make the finished product's that the material was processed the quality reinforcing.
Description
Technical Field
The utility model relates to a mining machinery's technical field especially relates to a vibrating feeder of separable waste material.
Background
The vibrating feeder is used for regularly and continuously feeding blocky and granular materials into a receiving device from a storage bin in a production process. The material can be continuously and uniformly fed to a crushing machine in a sandstone production line, and the material is roughly sieved, so that the material is widely applied to crushing and sieving combined equipment in industries such as metallurgy, coal mine, mineral separation, building materials, chemical engineering, grinding materials and the like.
Further exploration and optimization of the structure of the vibrating feeder to enable the vibrating feeder to have better performance in the technical field of mining machinery is a technical problem to be urgently solved by the technical personnel in the field.
SUMMERY OF THE UTILITY MODEL
In the feeding process in the prior art, the materials at the feeding port are transmitted in a vibrating mode through the resonance body, the materials enter the screening device or the stone breaking device without hindrance due to vibration, the materials can be made to be uniform in transmission time, but due to the fact that the inclined vibrating feeder is not hindered, the time of the materials staying on the resonance body is short, the materials can enter the next flow under the condition that the materials are not uniform, and therefore the work of a machine below is affected. And various impurities exist in the original material, and the purity of a finished product is influenced by processing the impurities together with the material, so that the quality of a reprocessed product is influenced.
To the even degree of the delivery in-process that exists among the above-mentioned prior art and the problem that the existence waste material can influence further processing of material and finished product quality, the utility model provides a vibrating feeder of separable waste material can not only improve the even degree of material but also can separate the waste material, effectively promotes the off-the-shelf quality of material.
The technical means of the utility model as follows, a vibrating feeder of separable waste material, include: vibration board, setting are in side shield, waste material baffle and net fence, garbage collection box, air-blower, waste material hole on the vibration board, the waste material baffle sets up and has the hindrance effect to the motion of material on the face of vibration board, sets up the one side of keeping away from the side shield of garbage collection box of vibration board below is provided with the waste material box baffle, the net fence sets up on the vibration board of waste material box baffle one side, the air-blower sets up enable the waste material on the side shield to the net fence direction is removed, and the waste material can be followed the waste material hole of waste material baffle front side or pass the net fence falls into the waste material collection box.
In the scheme, a side baffle is arranged on one side of the vibrating plate, an air blower is arranged on the side baffle, a net fence is arranged on the other side of the vibrating plate, a waste collecting box is further arranged, the waste collecting box is located below the vibrating plate, a waste box baffle is further arranged on one side of the net fence, the vibrating plate is located in the net fence and an area between the side baffles is provided with the waste baffle, the material moving on the vibrating plate is hindered, and meanwhile, the motion path of the material can be changed through the restraint of the waste baffle on the conveyed material, so that the uniform mixing effect is further improved. The vibrating plate on the front side of the waste baffle is provided with a waste hole, and in the material vibrating process, waste materials can be shielded by the waste baffle due to small particles and enter the waste collecting box from the waste hole under the vibrating condition. The air blower on the side baffle is simultaneously in the work of vibration board vibration, when the waste material is the light, will remove to the net fence direction under the effect of air blower to through waste material hole or pass the net fence falls into the garbage collection box under the effect of waste material case baffle, thereby realizes the separation and the collection of waste material.
The preferable scheme is as follows: the feeding box is characterized in that the vibrating plate is provided with a feeding box, the opening area of the feeding box is larger than the bottom area of the feeding box, the side faces of the feeding box are inclined planes, the vibrating baffle is arranged in the feeding box in a state of inclining downwards to the right, the net fence can be changed according to the size of materials, the waste baffle is fixed on the vibrating plate through a shaft which is connected to the vibrating plate in a positioning mode, and two sides of the vibrating plate are provided with limiting rings which are sleeved on the shaft.
The further technical scheme is as follows:
the side of the feeding box is all the inclined plane, and the opening area is larger than the bottom area, so that the material can enter the feeding box more conveniently, and the leakage of the material due to the undersize of the opening is reduced. The vibrating plate in the feeding box is in a state that the part of the vibrating plate and the outside of the vibrating plate are inclined downwards to the right, the vibrating plate is connected with the box body of the feeding box, and when the vibrating plate vibrates, the feeding box can be driven to vibrate, so that the accumulation surface of materials falling into the feeding box is flattened, and overflow caused by too fast feeding is reduced. The material also can follow under the vibration board of slope moves forward, moves waste baffle department, and partly waste material can be blocked and then fall into the waste material hole, and the part is by in the waste material collecting box is blown to the air-blower, thereby waste baffle can adjust its position according to the size of waste material and realize the effect of better separation waste material, simultaneously, can change the motion path of material to the restraint of being conveyed the material through waste baffle to further increase the effect of homogeneous mixing, will realize that the structure of two kinds of different functions fuses in a part, has simplified the structure of the vibrating feeder of separable waste material.
The beneficial effects of the utility model are that:
in the scheme, the air blower arranged on the side baffle is further provided with the net fence which is at the same side as the collecting box baffle, the vibration plate for transmitting the materials is provided with the waste baffle, and the front side of the waste baffle is provided with the waste hole. In addition, the waste material falls into the waste material collecting box from a waste material hole at the front side of the waste material baffle plate under the blocking of the waste material baffle plate. The light waste materials can move towards the net fence under the action of the air blower, pass through the net fence and fall into the waste material collecting box or fall into the waste material hole to enter the waste material collecting box. Therefore, the uniformity of the materials is improved, the waste materials in the materials are separated, and the quality of finished products can be effectively improved.
Drawings
Fig. 1 is a schematic structural view of a specific embodiment of a waste material separating vibratory feeder according to the present invention;
fig. 2 is a schematic diagram of a position relationship between a waste hole and a waste baffle in a specific embodiment of the vibrating feeder for separating waste according to the present invention, which is a partially enlarged view of a point a in fig. 1;
fig. 3 is a schematic structural diagram of an adjustable waste material baffle in a specific embodiment of the waste material separating vibratory feeder of the present invention.
The reference numerals in the figures are respectively: 1. the device comprises a feeding box, 2, a vibrating device, 3, a net fence, 4, an air blower, 5, a waste baffle, 6, a waste collecting box, 7, a vibrating plate, 8, a limiting ring, 9, a shaft, 10, a side baffle, 11 and a waste hole.
Detailed Description
The present invention will be described in further detail with reference to the following examples, but the present invention is not limited to the following examples.
Example 1:
as shown in fig. 1 to 3, a waste material-separable vibratory feeder includes: vibration board 7, the setting is in side shield 10, waste material baffle 5 and net fence 3, garbage collection box 6, air-blower 4, waste material hole 11 on the vibration board 7, waste material baffle 5 sets up and has the hindrance effect to the motion of material on the face of vibration board 7, sets up the one side of keeping away from side shield 10 of garbage collection box 6 of vibration board 7 below is provided with the waste material box baffle, net fence 3 sets up on the vibration board 7 of waste material box baffle one side, air-blower 4 sets up enable the waste material on the side shield 10 to net fence 3 direction removal, the waste material can be followed waste material hole 11 in waste material baffle 5 front side or pass net fence 3 falls into in the waste material collection box 6.
In the scheme, a side baffle 10 is arranged on one side of the vibrating plate 7, an air blower 4 is arranged on the side baffle 10, a net fence 3 and a waste collecting box 6 are arranged on the other side of the vibrating plate 7, the waste collecting box 6 is positioned below the vibrating plate 7, a waste box baffle is further arranged on one side of the net fence 3, a waste baffle 5 is arranged in an area between the net fence 3 and the side baffle 10 of the vibrating plate 7, the material moving on the vibrating plate 7 is hindered, and meanwhile, the motion path of the material can be changed by restricting the material to be conveyed through the waste baffle 5, so that the uniform mixing effect is further improved. A waste hole 11 is arranged on the vibrating plate 7 at the front side of the waste baffle 5, and in the material vibrating process, waste materials can be shielded by the waste baffle 5 due to small particles and enter the waste collection box 6 from the waste hole under the vibrating condition. The blower 4 on the side baffle 10 works when the vibrating plate 7 vibrates, when the waste is light, the waste can move towards the net fence 3 under the action of the blower 4, and then falls into the waste collecting box 6 through the waste hole 11 or through the net fence 3 under the action of a waste box baffle, so that the waste is separated and collected.
Example 2:
the embodiment provides a specific implementation manner on the basis of embodiment 1, as shown in fig. 1 to 3, the implementation manner includes a feeding box 1, a shaft 9, a limiting ring 8, a vibrating plate 7, a net fence 3, and a waste baffle 5, the feeding box 1 having an opening area larger than a bottom area and side surfaces both inclined is provided on the vibrating plate 7, a portion of the vibrating baffle 5 in the feeding box 1 is in a state of being inclined downward to the right, the net fence 3 can be exchanged according to the size of a material, the waste baffle 5 is fixed on the vibrating plate 7 by the shaft 9 positioned and connected on the vibrating plate 7, and the limiting rings 8 sleeved on the shaft 9 are provided on both sides of the vibrating plate 7.
The side of feeding case 1 is all for the inclined plane and opening area is greater than the bottom surface area, makes the material more convenient when getting into feeding case 1, reduces because the opening undersize, and the material spills. The vibrating plate 7 and the outer part of the feeding box 1 are in a state of inclining downwards to the right, the vibrating plate 7 is connected with the box body of the feeding box 1, and when the vibrating plate 7 vibrates, the feeding box 1 can also be driven to vibrate, so that the accumulation surface of materials falling into the feeding box 1 is flattened, and overflow caused by too fast feeding is reduced. The material also can be under the vibration along the vibration board of slope moves forward, moves to trash baffle 5 department, and partly waste material can be blocked and then fall into waste material hole 11, partly by during blower 4 blows waste material collection box 6, thereby the size of the waste material hole that can 5 front sides of trash baffle is adjusted to trash baffle 5 according to the size of waste material on the size regulating shaft 9 spacing ring 8's position realizes the better effect of separating the waste material. Meanwhile, the movement path of the materials can be changed by restricting the materials to be conveyed through the waste baffle 5, so that the uniform mixing effect is further increased, the structures of two different functions are integrated into one component, and the structure of the vibrating feeder capable of separating the waste materials is simplified.
The foregoing is a more detailed description of the present invention, taken in conjunction with the specific preferred embodiments thereof, and it is not intended that the invention be limited to the specific embodiments thereof. To the utility model belongs to the technical field of the ordinary technical personnel, do not deviate from the utility model discloses a technical scheme under the other embodiments that reach all should contain in corresponding utility model's protection scope.
Claims (4)
1. A vibratory feeder of separable waste material, comprising: a vibrating plate (7), a side baffle (10), a waste baffle (5), a net fence (3), a waste collecting box (6), a blower (4) and a waste hole (11), the waste baffle (5) is arranged on the plate surface of the vibrating plate (7) and has an effect of hindering the movement of materials, the waste collection box (6) is arranged below the vibrating plate (7), a waste material box baffle is arranged on one side of the waste material collecting box (6) far away from the side baffle (10), the net fence (3) is arranged on a vibrating plate (7) at one side of the baffle plate of the waste bin, the side baffle (10) is arranged on the other side of the vibrating plate (7), the air blower (4) is arranged on the side baffle (10) and can enable waste materials to move towards the net fence (3), and the waste materials can fall into the waste material collecting box (6) from a waste material hole (11) in the front side of the waste material baffle (5) or through the net fence (3).
2. A waste-separating vibratory feeder according to claim 1, characterised in that it further comprises a feeding box (1), the opening area of the feeding box (1) is larger than the bottom area, the side surfaces are all inclined surfaces, and the part of the vibrating plate (7) in the feeding box (1) is inclined to the right and the leftmost end is connected with the feeding box (1) in a positioning way.
3. A waste-separating vibratory feeder according to claim 1, characterised in that the net pen (3) is detachably connected.
4. A vibrating feeder capable of separating wastes according to claim 1, characterized in that the waste baffle (5) is fixed by a shaft (9) which is positioned and connected on the vibrating plate (7), and both sides of the waste baffle (5) are provided with limit rings (8) which are sleeved on the shaft (9).
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CN202021892665.5U CN212923604U (en) | 2020-09-02 | 2020-09-02 | Vibrating feeder capable of separating waste materials |
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CN202021892665.5U CN212923604U (en) | 2020-09-02 | 2020-09-02 | Vibrating feeder capable of separating waste materials |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115156050A (en) * | 2022-07-13 | 2022-10-11 | 福建省曾志环保科技有限公司 | Vertical winnowing machine |
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2020
- 2020-09-02 CN CN202021892665.5U patent/CN212923604U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115156050A (en) * | 2022-07-13 | 2022-10-11 | 福建省曾志环保科技有限公司 | Vertical winnowing machine |
CN115156050B (en) * | 2022-07-13 | 2024-04-26 | 福建省曾志环保科技有限公司 | Vertical winnowing machine |
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