CN219837930U - Air current equipment of mating formation with circulation area - Google Patents

Air current equipment of mating formation with circulation area Download PDF

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Publication number
CN219837930U
CN219837930U CN202320357179.0U CN202320357179U CN219837930U CN 219837930 U CN219837930 U CN 219837930U CN 202320357179 U CN202320357179 U CN 202320357179U CN 219837930 U CN219837930 U CN 219837930U
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China
Prior art keywords
belt
paving
circulating
circulation
pavement
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CN202320357179.0U
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Chinese (zh)
Inventor
刘经伟
蔡亚男
赵飞
肖滨
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Asian Union Machinery Manufacturing Tangshan Co ltd
Yalian Machinery Ltd By Share Ltd
Yalian Machinery Manufacturing Shandong Co ltd
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Yalian Machinery Manufacturing Shandong Co ltd
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Priority to CN202320357179.0U priority Critical patent/CN219837930U/en
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Publication of CN219837930U publication Critical patent/CN219837930U/en
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Abstract

The utility model relates to the technical field of paving equipment, and provides airflow paving equipment with a circulating network belt, which comprises a paving chamber formed by a conveying belt with a feeding hole, a blowing device, an induced air and a bottom, wherein at least one network belt device capable of circulating or reciprocating through airflow is arranged between a feeding mixing area and the induced air area, a screening piece is positioned at the lower end of the network belt device, and one end of the screening device extends to the blowing side along the horizontal direction to the outside of the paving chamber. Through above-mentioned technical scheme, the problem that uses the shale shaker in the prior art can't effectively get rid of the impurity in the shaving board raw materials has been solved.

Description

Air current equipment of mating formation with circulation area
Technical Field
The utility model relates to the technical field of paving equipment, in particular to airflow paving equipment with a circulating network belt.
Background
The wood shavings are paved into uniform plate blanks according to the specified weight, specification and the like by a certain paving method after glue mixing before hot pressing. The importance of the paving process is that the quality of the slabs has a decisive influence on the performance of the particle board!
The density of the chipboard pressed by the plate blanks paved uniformly is consistent, the expansion and the shrinkage of each part in the chipboard are also consistent, the warping deformation is not easy to occur, and the physical and mechanical properties of the plates are also consistent. Therefore, in order to obtain a uniform board quality, the laying of the chipboard slabs must meet specific requirements.
The existing surface layer of the shaving board is formed by a pneumatic paving head. Based on the geometry of the shavings, it is possible to arrange the shavings in the desired order using pneumatic classification. Through one or more stable air flows, the tiny shavings are taken away and firstly fall onto the paving belt to form a fine surface layer formed by the tiny shavings, and the bigger and heavier shavings are less influenced by the air flow and can only fall on the formed tiny shavings layer to form a coarse shavings layer or an intermediate layer. EP2626179B1 describes a composite paving head combining the advantages of both a mechanical roller paving head and an air flow paving head for staged paving of particle board skins, which is widely used in current large scale industrial production.
However, with the continuous expansion of the raw tree species of the chipboard, for some special tree species such as paper mulberry, eucalyptus, cypress, etc., after the processing links of chipping, flaking, drying, screening, etc., the bark and phloem thereof are difficult to be completely separated from the xylem and removed, so that the long fibers in the bark and phloem thereof enter the surface wood shavings in the form of fluff of different sizes. These long fluff fibers not only tend to bind the classifying screens of the air flow laying head, resulting in a decrease in classifying efficiency, but also tend to intertwine on the rotating mechanical roller bed to form fluff balls, severely affecting the classifying ability of the roller bed. The existing self-cleaning design of the vibrating motor and the roller bed arranged on the screen can not effectively eliminate the adverse effect caused by the fluffy long fibers, and only can be frequently stopped for manual cleaning, so that the production efficiency of the production line and the stability of products are seriously affected.
DE102008011056a discloses a movable or rotatable cleaning belt parallel to the screen surface in a spreading machine for continuously cleaning agglomerations agglomerating on the screen, but this internal cleaning approach causes the agglomerations to fall into the spreading mat, forming a significantly high density spot or face.
Therefore, how to effectively separate and remove impurities in raw materials becomes a great problem in the industry.
Disclosure of Invention
The utility model provides airflow pavement equipment with a circulating net belt, which solves the problem that impurities in shaving board raw materials cannot be effectively removed by using a vibrating screen in the prior art.
The technical scheme of the utility model is as follows:
an airflow pavement equipment with circulating net belt is composed of a pavement chamber consisting of feeding inlet, blower, air outlet and bottom conveyer belt, and at least one circulating or reciprocating net belt unit between said feeding and mixing areas.
As a further technical scheme, the pavement system further comprises a screening piece, wherein the screening piece is positioned at the lower end of the mesh belt device, and one end of the screening piece extends to the blowing side along the horizontal direction to the outside of the pavement chamber.
As a further technical scheme, the mesh belt device comprises a circulating mesh belt, and the upper end of the circulating mesh belt extends to the outside of the pavement chamber.
As a further technical scheme, the cleaning device is located outside the paving chamber and is used for cleaning the mesh belt device.
The working principle and the beneficial effects of the utility model are as follows:
according to the scheme, the material hung on the mesh belt and impurities such as bark fluff can be continuously brought out of the box body to be cleaned by the circulation of the mesh belt through the circulation of the mesh belt; the automatic cleaning device solves the problem that bark fluff produced by different materials inside paved materials cannot be effectively eliminated due to the self-cleaning design of a vibrating motor and a roller bed installed on a screen, a circulating net belt is located on the inner side of a paved box body and is a working section, a cleaning section is located on the outer side of the paved box body, the circulating net belt is arranged in the paved box body to replace a conventional vibrating screen, the working section can bring out impurities such as adhesive blocks and fluff fibers of the materials on the net belt out of the paved box body, meanwhile, the cleaning section is cleaned of adhered impurities through a cleaning device arranged on the outer side of the paved box body, the working section and the cleaning section are converted mutually through the rotation of a net belt roller, the circulating net belt can continuously work, normal paving work of the inside of the paved box body is not affected, the adverse effect of special materials on paving caused by fluff is also solved, the adhesive blocks of the materials are prevented from being adhered on the net belt, and the cleaning device can reversely move through a blower or a material so as to separate from the circulating net belt for cleaning.
Drawings
The utility model will be described in further detail with reference to the drawings and the detailed description.
FIG. 1 is a schematic structural diagram of embodiment 2 of the present utility model;
FIG. 2 is a schematic structural diagram of embodiment 3 of the present utility model;
FIG. 3 is a schematic structural diagram of embodiment 4 of the present utility model;
FIG. 4 is a schematic top view of embodiment 5 of the present utility model;
FIG. 5 is a schematic view of the hollow roller structure of the present utility model;
in the figure: 1. the device comprises a feeding port, 2, a blowing device, 3, an air-out device, 4, a conveying belt, 5, a paving chamber, 6, a mixing area, 7, an air-guiding area, 8, a net belt device, 9, a screening piece, 10, a cleaning device, 11, a waste discharge port, 12, a working section, 13, a cleaning section, 14, a first net belt roller, 15, a second net belt roller, 16, a circulating net belt, 17, a third net belt roller, 18, a fourth net belt roller, 19, a tensioning roller, 20, a impurity removing section, 21, a guiding section, 22, a fifth net belt roller, 23, a sixth net belt roller, 25, a seventh net belt roller, 26 and an eighth net belt roller.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by one of ordinary skill in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Fig. 1-5 show an airflow pavement device with a circulation net belt, which relates to a pavement device of wood or non-wood particles and fibers, and comprises a pavement chamber 5 which is provided with a feed inlet 1, a blowing device 2, an induced draft 3 and a bottom conveyor belt 4, and is characterized in that at least one mesh belt device 8 capable of circulating or reciprocating through airflow is arranged between a feed mixing area 6 and an induced draft area 7.
The novel pavement room is characterized by further comprising a screening piece 9, wherein the screening piece 9 is positioned at the lower end of the mesh belt device 8, and one end of the screening piece 9 extends to the blowing side along the horizontal direction to the outside of the pavement room 5.
The mesh belt device 8 comprises a circulating mesh belt 16, and the upper end of the circulating mesh belt 16 extends out of the paving chamber 5.
Further comprises a cleaning device 10, wherein the cleaning device 10 is positioned outside the paving room 5, and the cleaning device 10 is used for cleaning the mesh belt device 8.
In the embodiment, the impurities such as materials and bark fluff hung on the mesh belt can be continuously taken out of the box body for cleaning by the circulation of the mesh belt 16; the automatic cleaning device solves the problem that bark fluff produced by different materials in paving materials cannot be effectively eliminated due to the self-cleaning design of a vibrating motor and a roller bed installed on a screen, the circulating net belt 16 is positioned on the inner side of a paving box body and is a working section 12, the circulating net belt 16 is positioned on the outer side of the paving box body and is a cleaning section 13, the conventional vibrating screen is replaced by the circulating net belt 16 in the paving box body, the working section 12 can bring out impurities such as material rubber blocks and fluff fibers adhered to the net belt out of the paving box body, meanwhile, the cleaning device arranged on the outer side of the paving box body can clean the impurities adhered to the cleaning section 13, and the working section 12 and the cleaning section 13 can realize mutual conversion through the rotation of the net belt roller, so that the circulating net belt 16 can continuously work, normal paving work in the paving box body is not affected, the adverse effect of special material fluff on paving is also solved, the material rubber blocks are prevented from being adhered to the net belt, and the cleaning device can reversely move through a blower or an induced draft fan, so that the impurities are separated from the circulating net belt 16.
In the embodiment, the first net belt roller 14 and the second net belt roller 15 drive the circulating net belt 16, the bark fluff and the material rubber blocks stuck on the circulating net belt 16 are taken out of the paving box body, and the adhered materials and fluff on the net belt are cleaned by a cleaning device; compared with the transversely arranged circulating mesh belt 16, the vertically arranged mesh belt can not influence the uniform distribution of materials due to the driving of the materials, massive impurities can fall from the circulating mesh belt 16 and are sent to the screw shaft through the material screening piece 9, and the impurities are sent to the waste discharge port 11 to be discharged through the rotation of the screw shaft.
The tensioning roller 19, tensioning roller 19 rotates to set up in the shop intracavity, tensioning roller 19 with circulation guipure 16 contact, tensioning roller 19 will work section 12 divide into edulcoration section 20 and water conservancy diversion section 21, the edulcoration section 20 with become the contained angle between the water conservancy diversion section 21, the exit end of water conservancy diversion section 21 is located the entrance point of exhaust port 11.
In this embodiment, this solution is another form of vertical placement of the circulation screen. The mode circulation net belt 16 can replace a conventional horizontal vibrating screen, relieves the condition of blocking of the horizontal vibrating screen under the condition of large yield, can enable the impurity removal section 20 to remove impurities in materials, can also convey impurities in the flow guide section 21 to the waste discharge port 11, and can convey and clean large-particle materials without placing the horizontal vibrating screen.
Example 4
In this embodiment, the circulating mesh belt 16 placed in this way can adjust the mesh belt spacing to adapt to different working conditions by adjusting the spacing between the sixth mesh belt rollers 23, but this embodiment needs to set the screening member 9 to screen and discharge large-particle materials, which is more flexible and more adaptive than other embodiments,
in embodiments 2 to 4, when the circulating belt 16 is vertically placed in the pavement box, the rollers of the circulating belt 16 in the pavement box are hollow rollers, so as to prevent accumulation at the contact position of the belt and the belt rollers from affecting the normal operation of the circulating belt 16, and the illustration is only in a hollow form; the present solution is not limited to this form.
Example 5
In this embodiment, the seventh and eighth net belt rollers 25 and 26 are placed laterally, and this placement mode is that the seventh and eighth net belt rollers 25 and 26 are placed outside the pavement box body, so that the net belt rollers do not need to be hollowed out, and at the same time, the horizontal placement is less strict with respect to the vertical placement, and at the same time, the placement position is selected to be diversified.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.

Claims (4)

1. An airflow pavement device with a circulation net belt relates to a pavement device of wooden or non-wooden particles and fibers, and comprises a pavement chamber (5) which is provided with a feed inlet (1), a blowing device (2), an induced air (3) and a bottom conveyor belt (4), and is characterized in that at least one net belt device (8) capable of circulating or reciprocating through airflow is arranged between a feed mixing area (6) and an induced air area (7).
2. An air flow paving apparatus with a circulation belt according to claim 1, further comprising a screen member (9), the screen member (9) being located at a lower end of the belt device (8), one end of the screen member (9) extending horizontally to a blowing side to outside the paving chamber (5).
3. An air flow laying device with a circulation belt according to claim 1, characterized in that the belt means (8) comprises a circulation belt (16), the upper end of the circulation belt (16) extending outside the laying chamber (5).
4. An air flow laying device with a circulation belt according to claim 3, characterized in that it further comprises a cleaning device (10), said cleaning device (10) being located outside said laying chamber (5), said cleaning device (10) being intended to clean said belt means (8).
CN202320357179.0U 2023-02-24 2023-02-24 Air current equipment of mating formation with circulation area Active CN219837930U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320357179.0U CN219837930U (en) 2023-02-24 2023-02-24 Air current equipment of mating formation with circulation area

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320357179.0U CN219837930U (en) 2023-02-24 2023-02-24 Air current equipment of mating formation with circulation area

Publications (1)

Publication Number Publication Date
CN219837930U true CN219837930U (en) 2023-10-17

Family

ID=88305064

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320357179.0U Active CN219837930U (en) 2023-02-24 2023-02-24 Air current equipment of mating formation with circulation area

Country Status (1)

Country Link
CN (1) CN219837930U (en)

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20240122

Address after: Innovation Workshop F4-2-201-43, No. 2016 Feiyue Avenue, High tech Zone, Jinan City, Shandong Province, 250000

Patentee after: Yalian Machinery Manufacturing (Shandong) Co.,Ltd.

Country or region after: China

Patentee after: Asian Union Machinery Manufacturing (Tangshan) Co.,Ltd.

Patentee after: Yalian machinery Limited by Share Ltd.

Address before: Innovation Workshop F4-2-201-43, No. 2016 Feiyue Avenue, High tech Zone, Jinan City, Shandong Province, 250000

Patentee before: Yalian Machinery Manufacturing (Shandong) Co.,Ltd.

Country or region before: China

TR01 Transfer of patent right