Ceramic raw material stirring device

文档序号:1222306 发布日期:2020-09-08 浏览:24次 中文

阅读说明:本技术 一种陶瓷原料搅拌装置 (Ceramic raw material stirring device ) 是由 赵云海 于 2020-06-06 设计创作,主要内容包括:本发明涉及陶瓷品生产的技术领域,尤其是涉及一种陶瓷原料搅拌装置,包括搅拌桶本体,所述搅拌桶本体一侧面的偏心位置设有与搅拌桶本体内部连通设置的第一连接孔,所述第一连接孔内穿过有磁铁棒,所述磁铁棒插入搅拌桶本体内部并且与搅拌桶本体内壁之间通过连接机构连接,所述搅拌桶本体设有第一连接孔的一侧通过拆卸机构连接有将第一连接孔盖住的端盖。本发明具有尽可能将陶瓷原料的中铁杂质去除的效果。(The invention relates to the technical field of ceramic product production, in particular to a ceramic raw material stirring device which comprises a stirring barrel body, wherein a first connecting hole communicated with the inside of the stirring barrel body is formed in an eccentric position of one side face of the stirring barrel body, a magnet rod penetrates through the first connecting hole, the magnet rod is inserted into the stirring barrel body and is connected with the inner wall of the stirring barrel body through a connecting mechanism, and one side, provided with the first connecting hole, of the stirring barrel body is connected with an end cover covering the first connecting hole through a dismounting mechanism. The invention has the effect of removing the iron impurities in the ceramic raw material as much as possible.)

1. The utility model provides a ceramic raw material mixing device, includes agitator body (2), its characterized in that: the eccentric position of agitator body (2) a side is equipped with first connecting hole (25) that set up with agitator body (2) inside intercommunication, it has magnet stick (3) to pass in first connecting hole (25), magnet stick (3) insert agitator body (2) inside and with be connected through coupling mechanism (4) between agitator body (2) the inner wall, one side that agitator body (2) were equipped with first connecting hole (25) is connected with end cover (51) that covers first connecting hole (25) through disassembly body (5).

2. The ceramic raw material stirring apparatus according to claim 1, characterized in that: coupling mechanism (4) include three piece at least connecting rods (41) of agitator body (2) inner wall fixed connection, connecting rod (41) encircle first connecting hole (25) a week and set up and evenly distributed, the both ends difference fixedly connected with first connecting block (42) and second connecting block (43) of magnet stick (3), second connecting block (43) are arranged in the space that connecting rod (41) formed and second connecting block (43) and connecting rod (41) butt, first connecting block (42) are arranged in first connecting hole (25) and the inner wall butt of first connecting block (42) and first connecting hole (25), one side fixedly connected with handle (421) of magnet stick (3) are kept away from in first connecting block (42).

3. The ceramic raw material stirring apparatus according to claim 2, characterized in that: the disassembly mechanism (5) comprises a threaded rod (52) fixedly connected with one side, provided with a first connecting hole (25), of the stirring barrel body (2), the end cover (51) is provided with a plug hole (511) for the threaded rod (52) to be plugged, the threaded rod (52) is in threaded connection with a butterfly nut (53), and the butterfly nut (53) is abutted to one side, far away from the stirring barrel body (2), of the end cover (51).

4. The ceramic raw material stirring apparatus according to claim 2, characterized in that: the first connecting block (42) is provided with a second connecting hole (422) penetrating through the first connecting block (42) along the axial direction of the magnet rod (3), and the second connecting hole (422) penetrates through a bearing plate (423) which is arranged on the lower side of the magnet rod (3) and is used for bearing iron impurities.

5. The ceramic raw material stirring apparatus according to claim 4, wherein: the magnet rod (3) is sleeved with a scraping piece (31), and the scraping piece (31) is connected with the magnet rod (3) in a sliding mode.

6. The ceramic raw material stirring apparatus according to claim 4, wherein: one side of the second connecting block (43) close to the bearing plate (423) is provided with a connecting groove (431) for the bearing plate (423) to be inserted.

7. The ceramic raw material stirring apparatus according to claim 6, wherein: the shape of the second connecting hole (422) is arc-shaped, the middle part of the second connecting hole (422) is sunken downwards, and the cross section of the bearing plate (423) is the same as that of the second connecting hole (422).

8. A ceramic raw material stirring apparatus according to claim 3, characterized in that: one side of the end cover (51) close to the stirring barrel body (2) is fixedly connected with a lug (512) arranged around the surface of the end cover (51) for a circle, and one side of the stirring barrel body (2) close to the end cover (51) is provided with an insertion groove (26) for the lug (512) to be inserted.

9. The ceramic raw material stirring apparatus according to claim 8, wherein: one side of the convex block (512) far away from the cover body (23) is fixedly connected with a sealing gasket (5121) abutted against the insertion groove (26).

Technical Field

The invention relates to the technical field of ceramic product production, in particular to a ceramic raw material stirring device.

Background

At present, in the process of manufacturing ceramic articles, various raw materials for producing ceramics and water are required to be mixed and then uniformly stirred by a stirring device, and the ceramic raw materials are required to be filtered and the like after being uniformly stirred.

As shown in fig. 1 and 2, a conventional stirring device for ceramic raw materials includes a pair of supporting frames 1, a stirring barrel body 2 is rotatably connected between the supporting frames 1, and the stirring barrel body 2 is connected with a motor 21 for driving the stirring barrel body 2 to rotate. The surface of the stirring barrel body 2 is provided with a feed inlet 22, and the feed inlet 22 is connected with a cover body 23 which covers the feed inlet 22. A pair of fixing rods 24 is fixedly connected to the surface of the stirring barrel body 2 near the feed inlet 22, and one end of the fixing rod 24 far away from the stirring barrel body 2 is rotatably connected with a pressing plate 241 which can only rotate around the axis of the fixing rod 24. When the cover 23 covers the throat 22, the pressing plate 241 is rotated to make the pressing plate 241 closely contact with the cover 23, and the pressing plate 241 connects the cover 23 with the throat 22.

When the ceramic raw material needs to be stirred, the feed port 22 is disposed at the upper side, and the ceramic raw material and water are added into the stirring barrel body 2. The cover plate covers the feed opening 22, and the pressing plate 241 is rotated to tightly abut the cover body 23 and connect the cover body 23 to the feed opening 22. The motor 21 drives the stirring barrel body 2 to rotate, so that the ceramic raw materials are fully stirred. After ceramic raw material stirs fully, with lid 23 and feed inlet 22 separation, then feed inlet 22 rotates to the downside, and ceramic raw material leaves agitator body 2 from feed inlet 22, carries out collection work to the ceramic raw material who leaves agitator body 2.

However, in the practical application process, the ceramic raw material contains metal impurities such as iron, and if the iron impurities are not removed, the quality of the finished ceramic product is greatly affected.

Disclosure of Invention

In view of the defects of the prior art, the invention aims to provide a ceramic raw material stirring device which has the effect of removing iron impurities in the ceramic raw material as much as possible in the process of stirring the ceramic raw material.

The above object of the present invention is achieved by the following technical solutions: the utility model provides a ceramic raw material stirring device, includes the agitator body, the eccentric position of agitator body side is equipped with the first connecting hole that sets up with the inside intercommunication of agitator body, it has the magnet stick to pass in the first connecting hole, the magnet stick insert the agitator body inside and with be connected through coupling mechanism between the agitator body inner wall, one side that the agitator body was equipped with first connecting hole is connected with the end cover that covers first connecting hole through the disassembly body.

Through adopting above-mentioned technical scheme, when needs stir ceramic raw materials, add ceramic raw materials and water and stir the work inside the agitator body, the end cover passes through disassembly body and this body coupling of agitator, and the end cover covers first connecting hole. The agitator body rotates, and the agitator body pivoted in-process, the agitator body passes through coupling mechanism and drives the magnet stick and follow the agitator body and rotate together. The magnet rod contacts with the ceramic raw material in the rotating process, and iron impurities in the ceramic raw material are adsorbed by the magnet rod. The magnet stick is at the in-process of ceramic raw materials stirring, and the magnet stick rotates along with the agitator body, and the magnet stick not only can fully contact with ceramic raw materials, adsorbs the iron impurity in the ceramic raw materials as far as possible, and the in-process of pivoted magnet stick and ceramic raw materials contact can also play and make ceramic raw materials stir ground more abundant moreover. At the in-process that the agitator stirred ceramic raw materials, because the effect of gravity and centrifugal force, ceramic raw materials arranges this internal one side of keeping away from agitator body axis in the agitator in, and first connecting hole sets up the eccentric position in agitator body side, and then makes the magnet stick arrange the inside position of keeping away from agitator body axis in the agitator body in, can make magnet stick and ceramic raw materials fully contact. After the stirring work of ceramic raw materials is completed, the ceramic raw materials are separated from the stirring barrel body, and the ceramic raw materials leaving the stirring barrel body are collected. The end cover is separated from the stirring barrel body through the dismounting mechanism, and the end cover does not cover the first connecting hole any more. Take out the magnet stick from first connecting hole, magnet stick and the inside separation of agitator body carry out the cleaning work to the iron impurity of magnet stick surface adsorption. After the cleaning work is finished, the magnet rod is connected with the inner wall of the stirring barrel body through the connecting mechanism, the end cover is connected with the stirring barrel body through the disassembling mechanism, and the magnet rod is used for removing iron impurities from the next batch of ceramic raw materials.

The present invention in a preferred example may be further configured to: coupling mechanism includes three at least connecting rods of agitator body inner wall fixed connection, the connecting rod encircles first connecting hole a week and sets up and evenly distributed, the both ends of magnet stick are the first connecting block of fixedly connected with and second connecting block respectively, the second connecting block is arranged in the space that the connecting rod formed and second connecting block and connecting rod butt, first connecting block is arranged in first connecting hole and the inner wall butt of first connecting block and first connecting hole, one side fixedly connected with handle of magnet stick is kept away from to first connecting block.

Through adopting above-mentioned technical scheme, at the in-process that stirs to the agitator body, ceramic raw materials can get into the space that forms between the connecting rod inside, and ceramic raw materials and magnet stick contact, the magnet stick carries out adsorption work to the iron impurity among the ceramic raw materials. When the magnet rod needs to be taken out for cleaning, a worker holds the handle to take the magnet rod out of the first connecting hole. Leave the inside in-process of agitator body at the magnet stick, the second connecting block is in the state with the connecting rod butt always, and the connecting rod plays the supporting role to the second connecting block, and the second connecting block plays the supporting role to the magnet stick, prevents the in-process of magnet stick and the inside separation of agitator body, and the magnet stick contacts with first connecting hole inner wall, reduces the adsorbed iron impurity of magnet stick and is bumped the possibility of falling the agitator body inside.

The present invention in a preferred example may be further configured to: the disassembly mechanism comprises a threaded rod fixedly connected with one side of the stirring barrel body, wherein the first connecting hole is formed in the stirring barrel body, the end cover is provided with an inserting hole for inserting the threaded rod, the threaded rod is in threaded connection with a butterfly nut, and the butterfly nut is abutted to one side, far away from the stirring barrel body, of the end cover.

Through adopting above-mentioned technical scheme, when needs the end cover to cover first connecting hole, the threaded rod is pegged graft with the spliced eye. The threaded rod is in threaded connection with the butterfly nut, the butterfly nut is screwed tightly, the butterfly nut is enabled to be in tight butt joint with the end cover, then the end cover is enabled to be in tight butt joint with one side of the stirring barrel body, which is provided with the first connecting hole, the end cover covers the first connecting hole, and the connecting process is convenient. When the first connecting hole needs to be opened, the butterfly nut is unscrewed, the butterfly nut is separated from the threaded rod, the threaded rod is separated from the inserting hole, the end cover is separated from the threaded rod, and the first connecting hole is opened.

The present invention in a preferred example may be further configured to: the first connecting block is provided with a second connecting hole penetrating through the first connecting block along the axis direction of the magnet rod, and the second connecting hole penetrates through a bearing plate which is arranged on the lower side of the magnet rod and used for bearing iron impurities.

Through adopting above-mentioned technical scheme, when needs take out the magnet stick and clear up, will accept board and second connecting hole and spread groove and peg graft, accept the downside that the magnet stick was arranged in to the board. In the process of taking out the magnet rod, the second connecting block is in contact with the connecting rod, and the magnet rod can generate tiny vibration in the contact process. The in-process of magnet stick vibration may have a small amount of iron impurity to drop, and the iron impurity that drops is accepted the board and is caught, reduces because the magnet stick in-process that takes out gets into the inside possibility of agitator body because the iron impurity that the magnet stick vibration dropped.

The present invention in a preferred example may be further configured to: the magnet rod is sleeved with a scraping piece, and the scraping piece is connected with the magnet rod in a sliding mode.

Through adopting above-mentioned technical scheme, when the magnet stick takes out the back and need clear up the iron impurity on magnet stick surface, along the axis direction reciprocating motion doctor-bar of magnet stick, the in-process that the doctor-bar removed, and the doctor-bar scrapes the iron impurity on magnet stick surface, and the iron impurity that falls drops on accepting the board, then to accepting the board side iron impurity and collect the work. The scraper is moved to scrape off iron impurities on the surface of the magnet rod, so that the magnet rod cleaning device has the effect of conveniently cleaning the magnet rod.

The present invention in a preferred example may be further configured to: one side of the second connecting block, which is close to the bearing plate, is provided with a connecting groove for the bearing plate to be inserted.

Through adopting above-mentioned technical scheme, accept the board and peg graft with the spread groove, stability when increasing and accept board and second connecting hole and peg graft.

The present invention in a preferred example may be further configured to: the shape of the second connecting hole is arc, the middle part of the second connecting hole is sunken downwards, and the cross section of the bearing plate is the same as that of the second connecting hole.

Through adopting above-mentioned technical scheme, the shape of second connecting hole is the arc, and the mid portion undercut of second connecting hole, the cross sectional shape of accepting the board is the same with the shape of second connecting hole, and when iron impurity fell to the upside of accepting the board, it was above-mentioned shape to accept the board cross-section, more was favorable to collecting work to iron impurity, makes iron impurity be difficult for leaving the upside of accepting the board.

The present invention in a preferred example may be further configured to: one side of the end cover close to the stirring barrel body is fixedly connected with a lug arranged around the surface of the end cover for a circle, and one side of the stirring barrel body close to the end cover is provided with an inserting groove for inserting the lug.

Through adopting above-mentioned technical scheme, when the end cover covers first connecting hole, the lug is pegged graft with the inserting groove, increases the stability when the end cover covers first connecting hole.

The present invention in a preferred example may be further configured to: one side of the lug, which is far away from the cover body, is fixedly connected with a sealing gasket which is abutted against the insertion groove.

Through adopting above-mentioned technical scheme, when lug and inserting groove are pegged graft, sealed the pad with the inseparable butt of inserting groove, sealed the leakproofness when the sealed pad further increases the end cover and covers first connecting hole.

In summary, the invention includes at least one of the following beneficial technical effects:

1. the magnet rod removes iron impurities from the ceramic raw material, and has the effect of removing the iron impurities in the ceramic raw material as much as possible in the process of stirring the ceramic raw material;

2. the second connecting block plays certain supporting role to the magnet stick, prevents the in-process of magnet stick and the inside separation of agitator body, and the magnet stick contacts with first connecting hole inner wall, reduces the adsorbed iron impurity of magnet stick and is bumped the possibility that falls to the agitator body inside.

Drawings

FIG. 1 is a schematic diagram of the structure of a background;

FIG. 2 is a schematic view of a cover in the prior art;

FIG. 3 is a schematic structural diagram according to the first embodiment;

FIG. 4 is a schematic view of an embodied end cap according to one embodiment;

FIG. 5 is a schematic view of a bump according to one embodiment;

FIG. 6 is a schematic structural view of the second embodiment;

FIG. 7 is a schematic view showing the second embodiment in which the ferrite rod is leaving the inside of the stirring barrel body.

Reference numerals: 1. a support frame; 2. a stirring barrel body; 21. a motor; 22. a feed inlet; 23. a cover body; 24. fixing the rod; 241. a compression plate; 25. a first connection hole; 26. inserting grooves; 3. a magnet bar; 31. scraping a blade; 4. a connecting mechanism; 41. a connecting rod; 42. a first connection block; 421. a handle; 422. a second connection hole; 423. a bearing plate; 43. a second connecting block; 431. connecting grooves; 5. a disassembly mechanism; 51. an end cap; 511. inserting holes; 512. a bump; 5121. a gasket; 52. a threaded rod; 53. butterfly nuts.

Detailed Description

The present invention will be described in further detail with reference to the accompanying drawings.

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