SUMMERY OF THE UTILITY MODEL
The utility model discloses aim at solving one of the technical problem that exists among the prior art at least. Therefore, the utility model provides a material loading dust collector, this material loading dust collector can realize cleanly in the material loading, has improved efficiency, has saved the manpower.
The utility model discloses still provide an equipment, this equipment cleans when the material loading, and clean efficiency is higher, and can use manpower sparingly.
In a first aspect, an embodiment of the present invention provides a feeding and dedusting device, for material dedusting, including:
the feeding turntable is provided with a plurality of bearing parts;
the dust hood is positioned above the feeding turntable;
the air blowing pipe extends into the dust hood and is used for blowing air towards the to-be-cleaned area of the material;
the dust collection pipe is communicated with the dust collection cover;
the feeding turntable driving piece is connected with the feeding turntable and used for driving the feeding turntable to rotate relative to the dust hood;
the dust collection cover driving part is connected with the dust collection cover, and the dust collection cover driving part is used for driving the dust collection cover to move along the vertical direction so as to cover the to-be-cleaned area of the material.
The utility model discloses material loading dust collector has following beneficial effect at least: through the rotatory material loading of material loading carousel, when the material loading carousel rotated to the below of suction hood, the gas blow pipe in the suction hood blown the dust on the material surface that bears on the bearing part of this position on the material loading carousel to in time be siphoned away by the dust absorption pipe, thereby realize automatic feeding and cleanness, and clean efficiency is higher, has saved the manpower.
According to the utility model discloses a material loading dust collector of other embodiments, be equipped with the opening on the lateral wall of suction hood, the opening with the dust absorption pipe links to each other.
According to the utility model discloses a material loading dust collector of other embodiments still includes slide rail fixed plate, slide rail and slider, the suction hood driving piece with slide rail fixed plate fixed connection, the slide rail is located along vertical direction on the slide rail fixed plate, the slider with suction hood fixed connection, the slider can be followed the slide rail slides.
According to the utility model discloses a material loading dust collector of other embodiments, spacing post is used for blockking the slider.
According to the utility model discloses a material loading dust collector of other embodiments, be equipped with holding tank and stopper in the bearing part, the stopper is used for supporting holding the lateral wall of material.
According to the utility model discloses a material loading dust collector of other embodiments, be equipped with a plurality of hole sites on the bearing part, the stopper can be fixed in wantonly through threaded fastener hole site department.
In a second aspect, an embodiment of the present invention provides an apparatus, including the above feeding and dust removing device.
The utility model discloses equipment has following beneficial effect at least: through the rotatory material loading of material loading carousel in this equipment, when the below of material loading carousel rotatory to the suction hood, the gas blow pipe in the suction hood blows the dust on the material surface that bears on the bearing part of this position on the material loading carousel to in time by the suction pipe siphoning away, thereby realize automatic feeding and cleanness, and clean efficiency is higher, has saved the manpower.
Detailed Description
The conception and the resulting technical effects of the present invention will be described clearly and completely with reference to the following embodiments, so that the objects, features and effects of the present invention can be fully understood. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and other embodiments obtained by those skilled in the art without inventive labor based on the embodiments of the present invention all belong to the protection scope of the present invention.
In the description of the embodiments of the present invention, if an orientation description is referred to, for example, the directions or positional relationships indicated by "upper", "lower", "front", "rear", "left", "right", etc. are based on the directions or positional relationships shown in the drawings, only for convenience of description and simplification of description, but not for indicating or implying that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present invention.
In the description of the embodiments of the present invention, if a feature is referred to as being "disposed", "fixed", "connected", or "mounted" on another feature, it can be directly disposed, fixed, or connected to the other feature or indirectly disposed, fixed, connected, or mounted on the other feature. In the description of the embodiments of the present invention, if "a plurality" is referred to, it means one or more, if "a plurality" is referred to, it means two or more, if "greater than", "less than" or "more than" is referred to, it is understood that the number is not included, and if "more than", "less than" or "within" is referred to, it is understood that the number is included. If reference is made to "first" or "second", this should be understood to distinguish between features and not to indicate or imply relative importance or to implicitly indicate the number of indicated features or to implicitly indicate the precedence of the indicated features.
Referring to fig. 1 and 2, an overall structural schematic diagram and a partial structural schematic diagram of the feeding and dust removing device in the first embodiment are respectively shown. In this embodiment, a feeding turntable driving member 100 and a feeding turntable 200 are provided, the feeding turntable driving member 100 is located at the bottom of the feeding turntable 200, and the feeding turntable driving member 100 selects a motor to drive the feeding turntable 200 to rotate in a horizontal plane. The dust hood 400 is located above the loading turntable 200.
The material loading turntable 200 is provided with a plurality of bearing parts 300 for bearing materials. The dust hood 400 is located above the loading turntable 200, and the air blowing pipe 700 extends into the dust hood 400. The material is placed on the bearing part 300, and the material loading turntable 200 is driven to rotate by the material loading turntable driving part 100 so as to be rotated below the dust hood 400.
The dust hood 400 is movable in a vertical direction to cover an area to be cleaned of the material. The cover can be that the dust hood 400 is directly attached to the top surface of the material, or a small gap is formed between the dust hood and the material, so long as most of dust is not easy to escape. Specifically, the suction hood 400 is driven to move in the vertical direction by the suction hood driving member 500. The dust hood driving part 500 selects an air cylinder, one end of the connecting plate 600 is fixedly connected with the telescopic end of the air cylinder, and the other end of the connecting plate is fixedly connected with the dust hood 400.
Further, the suction hood driving member 500 is fixedly connected with the slide rail fixing plate 800, the slide rail 810 is arranged on the slide rail fixing plate 800 along the vertical direction, the suction hood 400 is fixedly connected with a sliding block 900, and when the suction hood driving member 500 drives the suction hood 400 to move along the vertical direction, the sliding block 900 slides along the slide rail 810, so that the movement stability of the suction hood 400 is improved.
Further, the top and the bottom of the slide rail fixing plate 800 are provided with the limiting posts 820, and when the slider 900 moves to the limiting posts 820, the slider will be blocked by the limiting posts 820, so as to limit the movement stroke of the dust hood 400.
The high pressure gas is introduced into the blowing pipe 700 to blow up the dust on the surface of the material placed on the carrier 300. Due to the cover of the dust hood 400, the lifting range of the dust can be limited, and the dust is prevented from being blown down to other areas. The side wall of the dust hood 400 is provided with an opening 410 which communicates with a dust suction pipe (not shown). The dust suction pipe is connected with another suction piece, and the suction piece sucks dust lifted up in the dust suction hood 400 through the dust suction pipe, so that the surface of the material is cleaned. After cleaning, the dust hood 400 moves upwards, and the material loading turntable 200 continues to rotate until the cleaned material is rotated to the material taking position of the next station.
Referring to fig. 3, a schematic structural view of the bearing part in the first embodiment is shown. The supporting portion 300 is provided with an accommodating groove 310 and a limiting block 320. The material is placed in the holding groove 310, and a plurality of stopper 320 are fixed on the bearing part 300 through threaded fasteners, and abut against the side wall of the material for a circle. The material is limited in point by the plurality of limiting blocks 320, and compared with the conventional surface limiting, the material is not easy to clamp when being placed.
Preferably, a plurality of hole sites 330 are provided on the carrier portion 300, and the limiting block 320 can be fixed at different hole sites 330 by a threaded fastener to change the size of the actual accommodating space of the accommodating groove 310, so as to adapt to materials with different sizes.
Furthermore, the limiting block 320 is elastically abutted against the side wall of the material, so that the material is better limited, the material is prevented from being clamped when the size deviation occurs, a certain buffering effect is achieved, and the material is prevented from being damaged. Specifically, an elastic member, such as a spring, may be additionally installed on the side of the limiting block 320 close to the material sidewall.
In addition, this embodiment also provides an equipment, and this equipment includes foretell material loading dust collector.
The utility model discloses in through the rotatory material loading of material loading carousel 200, when the below of material loading carousel 200 rotatory to suction hood 400, the dust on the material surface that bears on the bearing part 300 of this position on with material loading carousel 200 is blown up to gas blow pipe 700 in the suction hood 400 to in time be siphoned away by the dust absorption pipe, thereby realize automatic feeding and cleanness, and clean efficiency is higher, has saved the manpower.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art. Furthermore, the embodiments of the present invention and features of the embodiments may be combined with each other without conflict.