CN212142446U - Agitating unit is used in polyurea lubricating grease production - Google Patents

Agitating unit is used in polyurea lubricating grease production Download PDF

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Publication number
CN212142446U
CN212142446U CN202022144886.0U CN202022144886U CN212142446U CN 212142446 U CN212142446 U CN 212142446U CN 202022144886 U CN202022144886 U CN 202022144886U CN 212142446 U CN212142446 U CN 212142446U
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China
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stirring
cylinder
wall
discharge
churn
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CN202022144886.0U
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Chinese (zh)
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刘建兴
刘益帮
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Tianjin Haohang Composite Pipe Co ltd
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Tianjin Haohang Composite Pipe Co ltd
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Abstract

The utility model relates to a polyurea lubricating grease production is with agitating unit, including churn one, a churn bottom center is equipped with out feed cylinder one, go out feed cylinder one bottom and be equipped with horizontally churn two, just churn one with pass through between the churn two go out feed cylinder one intercommunication, two bottom both ends of churn correspondence has set firmly a pair of feed cylinder two, two bottoms of churn are equipped with and connect the workbin, just it wears to advance to go out feed cylinder two connect in the workbin, connect place in the workbin with go out the feed cylinder that feed cylinder two correspond, be equipped with rabbling mechanism one in the churn and scrape wall mechanism one, be equipped with rabbling mechanism two in the churn two and scrape wall mechanism two, just be equipped with guide mechanism in going out feed cylinder two. The utility model discloses stirring effect is good, the misce bene, and avoid a large amount of lubricating grease to adhere on the churn inner wall, avoid extravagant.

Description

Agitating unit is used in polyurea lubricating grease production
Technical Field
The utility model relates to a lubricating grease processing field especially relates to a polyurea lubricating grease production is with agitating unit.
Background
Lubricating grease: thick greasy semisolid. The friction part is used for machinery and plays a role in lubrication and sealing; also used on metal surface to fill gap and prevent rust. Is prepared mainly from mineral oil or synthetic lubricating oil and thickening agent. Now for making lubricating oil performance more superior, often use polyurea as densifier, and the stirring is indispensable manufacturing procedure, because lubricating grease is more viscous, easily adheres on the churn inner wall, causes the waste, and current stirring process is fairly simple, and the mixed effect is general.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects of the prior art and providing a stirring device for producing polyurea lubricating grease.
The utility model discloses a realize above-mentioned purpose, adopt following technical scheme: a stirring device for producing polyurea lubricating grease comprises a first stirring cylinder, wherein a first discharging cylinder is arranged at the center of the bottom of the first stirring cylinder, a second horizontal stirring cylinder is arranged at the bottom of the first discharging cylinder, the first stirring cylinder and the second stirring cylinder are communicated through the first discharging cylinder, a pair of second discharging cylinders is correspondingly and fixedly arranged at two ends of the bottom of the second stirring cylinder, a material receiving box is arranged at the bottom of the second stirring cylinder, the second discharging cylinder penetrates into the material receiving box, a material receiving cylinder corresponding to the second discharging cylinder is arranged in the material receiving box, a cylinder cover is sleeved at the top of the first stirring cylinder, and a material guide mechanism is arranged in the second discharging cylinder,
a first stirring mechanism is arranged in the first stirring cylinder, the first stirring mechanism comprises a first motor vertically and fixedly arranged at the center of the top of the cylinder cover and a first stirring shaft vertically and fixedly connected to the bottom of the output end of the first motor, the first stirring shaft penetrates through the cylinder cover and then penetrates into the first stirring cylinder, the bottom of the first stirring shaft is positioned at the inner bottom of the first discharging cylinder, a spiral stirring blade is fixedly arranged on the side wall of the first stirring shaft from top to bottom,
the first stirring shaft is provided with a first wall scraping mechanism, the first wall scraping mechanism comprises a pair of rotating rods fixedly arranged between the top and the bottom of the two sides of the first stirring shaft, the rotating rods are in profile modeling with the inner walls of the first stirring cylinder and the first discharging cylinder, one side of each rotating rod, which is close to the inner wall of the first stirring cylinder, is fixedly provided with a first brush and a first scraper respectively, the first brush and the first scraper are both in contact with the inner wall of the first stirring cylinder and the inner wall of the first discharging cylinder,
a wall scraping mechanism II is arranged in the mixing drum II and comprises a pair of electric cylinders and a circular scraper blade II, the scraper blade II is vertically arranged in the mixing drum II in a left-right sliding manner and is contacted with the inner wall of the mixing drum II, mounting boxes are fixedly arranged at two sides of the mixing drum II, the electric cylinders are horizontally and fixedly connected on the inner wall of the mounting box at one side, and piston rods of the electric cylinders are fixedly connected with the scraper blade II after penetrating into the mixing drum II,
the stirring cylinder II is internally provided with a stirring mechanism II, the stirring mechanism II comprises a motor II and a pair of stirring shaft II, the stirring shaft II is horizontally and rotatably connected to the inner walls of the two sides of the stirring cylinder II, a plurality of pairs of arc-shaped stirring blades are staggered and fixedly arranged on the stirring shaft II, the arc-shaped stirring blades are positioned in the inner circle of the scraper blade II, the motor II is horizontally and fixedly arranged on the inner wall of the installation box far away from the electric cylinder, one stirring shaft II penetrates into the installation box and is fixedly connected with the output end of the motor II, the other stirring shaft II penetrates into the installation box and is rotatably connected with the inner wall of the installation box, and a pair of meshed gears is fixedly arranged on the two stirring shafts in the installation box.
Particularly, a plurality of first support columns are vertically and fixedly connected between the bottom edge of the first mixing drum and the top of the second mixing drum, and a plurality of second support columns are vertically and fixedly connected between the bottom edge of the second mixing drum and the top of the material receiving box.
Particularly, a plurality of first feeding holes are formed in the top of the first stirring barrel, a plurality of second feeding holes are formed in the top of the second stirring barrel, and the top of the first feeding hole and the top of the second feeding hole are in threaded connection with a plugging cap.
Particularly, electric heating pipes are laid in the interlayer of the inner walls of the first stirring cylinder and the second stirring cylinder.
The material guide mechanism comprises a third motor and a spiral conveying rod, a supporting plate in an L shape is correspondingly and fixedly arranged at the bottom of one side, deviating from the second discharging barrel, of the discharging barrel, the third motor is fixedly connected to the top of a horizontal plate of the supporting plate, the spiral conveying rod is vertically arranged in the second discharging barrel, the output end of the third motor penetrates into the second discharging barrel and then is fixedly connected with the spiral conveying rod, the bottom of the second discharging barrel is downwards inclined, a downwards inclined discharging port is fixedly arranged at the bottom of the opposite side of the discharging barrel, and the material receiving barrel is located below the discharging port.
Particularly, a first valve is arranged at the bottom of the first discharge barrel, a second valve is arranged at the top of the second discharge barrel, and a transparent box cover is hinged to the front side of the material receiving box.
The utility model has the advantages that: the utility model discloses a set up churn one, churn two, connect workbin, rabbling mechanism one, rabbling mechanism two, scrape wall mechanism one, scrape wall mechanism two, guide mechanism, be convenient for carry out stirring twice, and can avoid lubricating grease adhesion on section of thick bamboo wall during the lubricating grease stirring, mix effectually, lubricating grease derives the convenience, avoids extravagantly.
Drawings
Fig. 1 is a schematic structural view of the present invention;
in the figure: 1-a first feeding hole; 2, a first motor; 3-a cylinder cover; 4-an electric heating tube; 5-a brush; 6-rotating the rod; 7-stirring shaft I; 8-spiral stirring blades; 9-a first scraper; 10-a first discharging barrel; 11-motor two; 12-mounting a box; 13-stirring cylinder II; 14-a material receiving box; 15-receiving barrel; 16-a support plate; 17-motor three; 18-a discharge hole; 19-a screw conveying rod; 20-discharging cylinder II; 21-scraper II; 22-an electric cylinder; 23-feeding hole II; 24-stirring shaft II; 25-arc stirring blades; 26-a first stirring cylinder;
the following detailed description will be made in conjunction with embodiments of the present invention with reference to the accompanying drawings.
Detailed Description
The invention will be further explained with reference to the following figures and examples:
as shown in fig. 1, a stirring device for producing polyurea lubricating grease comprises a first stirring cylinder 26, a first discharge cylinder 10 is arranged at the center of the bottom of the first stirring cylinder 26, a second horizontal stirring cylinder 13 is arranged at the bottom of the first discharge cylinder 10, the first stirring cylinder 26 is communicated with the second stirring cylinder 13 through the first discharge cylinder 10, a pair of second discharge cylinders 20 is correspondingly and fixedly arranged at two ends of the bottom of the second stirring cylinder 13, a material receiving box 14 is arranged at the bottom of the second stirring cylinder 13, the second discharge cylinder 20 penetrates into the material receiving box 14, a material receiving cylinder 15 corresponding to the second discharge cylinder 20 is arranged in the material receiving box 14, a cylinder cover 3 is sleeved at the top of the first stirring cylinder 26, and a material guide mechanism is arranged in the second discharge cylinder 20,
a first stirring mechanism is arranged in the first stirring cylinder 26, the first stirring mechanism comprises a first motor 2 vertically and fixedly arranged at the top center of the cylinder cover 3 and a first stirring shaft 7 vertically and fixedly connected to the bottom of the output end of the first motor 2, the first stirring shaft 7 penetrates through the cylinder cover 3 and then penetrates into the first stirring cylinder 26, the bottom of the first stirring shaft 7 is positioned at the inner bottom of the first discharging cylinder 10, a spiral stirring blade 8 is fixedly arranged on the side wall of the first stirring shaft 7 from top to bottom,
the stirring shaft I7 is provided with a first wall scraping mechanism, the first wall scraping mechanism comprises a pair of rotating rods 6 fixedly arranged between the tops and the bottoms of the two sides of the stirring shaft I7, the rotating rods 6 are in inner wall profile modeling with the first stirring cylinder 26 and the first discharging cylinder 10, one sides of the rotating rods 6, which are close to the first stirring cylinder 26, are respectively fixedly provided with a brush 5 and a first scraper 9, the brush 5 and the first scraper 9 are in contact with the first stirring cylinder 26 and the first discharging cylinder 10,
a wall scraping mechanism II is arranged in the second mixing drum 13 and comprises a pair of electric cylinders 22 and a circular scraper blade II 21, the scraper blade II 21 is vertically arranged in the second mixing drum 13 in a left-right sliding manner, the scraper blade II 21 is contacted with the inner wall of the second mixing drum 13, mounting boxes 12 are fixedly arranged on two sides of the second mixing drum 13, the electric cylinders 22 are horizontally and fixedly connected on the inner wall of the mounting box 12 on one side, piston rods of the electric cylinders 22 penetrate into the second mixing drum 13 and then are fixedly connected with the scraper blade II 21,
a second stirring mechanism is arranged in the second stirring cylinder 13, the second stirring mechanism comprises a second motor 11 and a second pair of stirring shafts 24, the second pair of stirring shafts 24 are horizontally and rotatably connected to inner walls on two sides of the second stirring cylinder 13, a plurality of pairs of arc-shaped stirring blades 25 are alternately and fixedly arranged on the second stirring shafts 24, the arc-shaped stirring blades 25 are located in an inner circle of the second scraping plate 21, the second motor 11 is horizontally and fixedly arranged on an inner wall of the installation box 12 far away from the electric cylinder 22, one stirring shaft 24 penetrates into the installation box 12 and is fixedly connected with an output end of the second motor 11, the other stirring shaft 24 penetrates into the installation box 12 and is rotatably connected with the inner wall of the installation box 12, and a pair of meshed gears is fixedly arranged on the two stirring shafts 24 in the installation box 12.
Particularly, a plurality of first supports are vertically and fixedly connected between the bottom edge of the first stirring cylinder 26 and the top of the second stirring cylinder 13, and a plurality of second supports are vertically and fixedly connected between the bottom edge of the second stirring cylinder 13 and the top of the material receiving box 14.
Particularly, a plurality of first feed inlets 1 are formed in the tops of the first mixing drums 26, a plurality of second feed inlets 23 are formed in the tops of the second mixing drums 13, and the tops of the first feed inlets 1 and the second feed inlets 23 are in threaded connection with blocking caps.
Particularly, the electric heating pipes 4 are laid in the interlayer of the inner walls of the first stirring cylinder 26 and the second stirring cylinder 13.
Specially, the guide mechanism includes three motors 17, screw conveyer rod 19, two ejection of compact section of thick bamboo 20 back of the body one side bottom correspondence has set firmly the backup pad 16 that is the L shape, the vertical rigid coupling of three motors 17 is in the horizontal plate top of backup pad 16, screw conveyer rod 19 is vertical to be located in two ejection of compact sections of thick bamboo 20, just three motors 17's output is worn into two ejection of compact sections of thick bamboo 20 in the back with screw conveyer rod 19 rigid coupling, two ejection of compact sections of thick bamboo 20 bottom downward sloping sets up, just two 20 opposite face bottoms of ejection of compact section of thick bamboo have set firmly the discharge gate 18 of downward sloping, it is located to connect the feed cylinder 15 the discharge gate 18 below.
Particularly, the first valve is arranged at the bottom of the first discharging barrel 10, the second valve is arranged at the top of the second discharging barrel 20, and a transparent box cover is hinged to the front side of the material receiving box 14.
When the utility model works, the electric heating pipes 4 in the first mixing drum 26 and the second mixing drum 13 are respectively electrified and heated to a specified temperature, various materials are added into the first mixing drum 26 through the first feeding hole 1, the first starting motor 2, the first mixing shaft 7 drives the spiral mixing blade 8 and the rotating rod 6 to rotate, the first scraper blade 9 and the brush 5 can prevent lubricating grease from adhering to the drum wall, after a period of mixing, the mixed lubricating grease enters the second mixing drum 13 through the first discharging drum 10, if the additives need to be additionally added, the additives can be added through the second feeding hole 23, the second starting motor 11 and the electric cylinder 22 are started, the second mixing shaft 24 drives the arc mixing blade 25 to rotate, the second scraper blade 21 slides left and right, the lubricating grease on the drum wall is scraped, after the mixing is completed, the third starting motor 17 is started, the spiral conveying rod 19 rotates, the lubricating grease in the second discharging drum 20 is conveyed to the discharging hole 18 and falls in the material, and replacing the material receiving barrel 15 with a new one after the material receiving barrel is filled.
The present invention has been described above with reference to the accompanying drawings, and it is obvious that the present invention is not limited by the above embodiments, and various improvements made by the method concept and technical solution of the present invention or directly applied to other occasions without improvement are all within the protection scope of the present invention.

Claims (6)

1. The stirring device for producing the polyurea lubricating grease comprises a first stirring cylinder (26) and is characterized in that a first discharge cylinder (10) is arranged at the center of the bottom of the first stirring cylinder (26), a second horizontal stirring cylinder (13) is arranged at the bottom of the first discharge cylinder (10), the first stirring cylinder (26) and the second stirring cylinder (13) are communicated through the first discharge cylinder (10), a pair of second discharge cylinders (20) is correspondingly and fixedly arranged at two ends of the bottom of the second stirring cylinder (13), a material receiving box (14) is arranged at the bottom of the second stirring cylinder (13), the second discharge cylinders (20) penetrate into the material receiving box (14), material receiving cylinders (15) corresponding to the second discharge cylinders (20) are arranged in the material receiving box (14), a cylinder cover (3) is sleeved at the top of the first stirring cylinder (26), and a material guide mechanism is arranged in the second discharge cylinder (20),
a first stirring mechanism is arranged in the first stirring cylinder (26), the first stirring mechanism comprises a first motor (2) vertically and fixedly arranged at the top center of the cylinder cover (3) and a first stirring shaft (7) vertically and fixedly connected to the bottom of the output end of the first motor (2), the first stirring shaft (7) penetrates through the cylinder cover (3) and then penetrates into the first stirring cylinder (26), the bottom of the first stirring shaft (7) is positioned at the inner bottom of the first discharging cylinder (10), a spiral stirring blade (8) is fixedly arranged on the side wall of the first stirring shaft (7) from top to bottom,
be equipped with on (mixing) shaft (7) and scrape wall mechanism one, scrape wall mechanism one including a pair of dwang (6) that sets firmly between (mixing) shaft (7) both sides top and bottom, dwang (6) with churn (26) with play feed cylinder (10) inner wall profile modeling, and two dwang (6) are close to churn (26) inner wall one side has set firmly brush (5) and scraper blade (9) respectively, brush (5) with scraper blade (9) all with churn (26) inner wall with go out feed cylinder (10) inner wall contact,
the wall scraping mechanism II is arranged in the mixing drum II (13) and comprises a pair of electric cylinders (22) and a circular scraper plate II (21), the scraper plate II (21) is vertically and horizontally arranged in the mixing drum II (13) in a sliding manner, the scraper plate II (21) is in contact with the inner wall of the mixing drum II (13), mounting boxes (12) are fixedly arranged on two sides of the mixing drum II (13), the electric cylinders (22) are horizontally and fixedly connected on the inner wall of the mounting box (12) on one side, piston rods of the electric cylinders (22) penetrate into the mixing drum II (13) and then are fixedly connected with the scraper plate II (21),
a second stirring mechanism is arranged in the second stirring cylinder (13), the second stirring mechanism comprises a second motor (11) and a pair of second stirring shafts (24), the pair of second stirring shafts (24) are horizontally and rotatably connected to the inner walls of the two sides of the second stirring cylinder (13), and a plurality of pairs of arc-shaped stirring blades (25) are fixedly arranged on the second stirring shaft (24) in a staggered manner, the arc-shaped stirring blade (25) is positioned in the inner circle of the second scraper blade (21), the second motor (11) is horizontally and fixedly arranged on the inner wall of the installation box (12) far away from the electric cylinder (22), and one of the second stirring shafts (24) penetrates into the mounting box (12) and is fixedly connected with the output end of the second motor (11), the other second stirring shaft (24) penetrates into the mounting box (12) and is rotatably connected with the inner wall of the mounting box, and a pair of meshed gears is fixedly arranged on the two second stirring shafts (24) in the mounting box (12).
2. The stirring device for producing polyurea grease as claimed in claim 1, wherein a plurality of first supporting columns are vertically and fixedly connected between the bottom edge of the first stirring cylinder (26) and the top of the second stirring cylinder (13), and a plurality of second supporting columns are vertically and fixedly connected between the bottom edge of the second stirring cylinder (13) and the top of the material receiving box (14).
3. The stirring device for producing polyurea lubricating grease according to claim 2, wherein a plurality of first feeding holes (1) are formed in the top of the first stirring cylinder (26), a plurality of second feeding holes (23) are formed in the top of the second stirring cylinder (13), and the tops of the first feeding holes (1) and the second feeding holes (23) are in threaded connection with blocking caps.
4. The stirring device for producing polyurea lubricating grease according to claim 3, wherein an electric heating pipe (4) is laid in the interlayer of the inner walls of the first stirring cylinder (26) and the second stirring cylinder (13).
5. The stirring device for producing polyurea lubricating grease according to claim 4, wherein the material guiding mechanism comprises a third motor (17) and a spiral conveying rod (19), the bottom of the opposite side of the second discharge cylinder (20) is correspondingly and fixedly provided with an L-shaped support plate (16), the third motor (17) is vertically and fixedly connected to the top of a horizontal plate of the support plate (16), the spiral conveying rod (19) is vertically arranged in the second discharge cylinder (20), the output end of the third motor (17) penetrates into the second discharge cylinder (20) and then is fixedly connected with the spiral conveying rod (19), the bottom of the second discharge cylinder (20) is arranged in a downward inclined manner, the bottom of the opposite side of the second discharge cylinder (20) is fixedly provided with a downward inclined discharge hole (18), and the material receiving cylinder (15) is located below the discharge hole (18).
6. The stirring device for producing polyurea lubricating grease according to claim 5, wherein a first valve is arranged at the bottom of the first discharging cylinder (10), a second valve is arranged at the top of the second discharging cylinder (20), and a transparent box cover is hinged to the front side of the material receiving box (14).
CN202022144886.0U 2020-09-27 2020-09-27 Agitating unit is used in polyurea lubricating grease production Active CN212142446U (en)

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Application Number Priority Date Filing Date Title
CN202022144886.0U CN212142446U (en) 2020-09-27 2020-09-27 Agitating unit is used in polyurea lubricating grease production

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Application Number Priority Date Filing Date Title
CN202022144886.0U CN212142446U (en) 2020-09-27 2020-09-27 Agitating unit is used in polyurea lubricating grease production

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112957977A (en) * 2021-02-08 2021-06-15 浙江机电职业技术学院 High viscosity medium agitated vessel
CN113019195A (en) * 2021-03-05 2021-06-25 李和成 Medical treatment department of stomatology uses dental cast raw material mixing device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112957977A (en) * 2021-02-08 2021-06-15 浙江机电职业技术学院 High viscosity medium agitated vessel
CN113019195A (en) * 2021-03-05 2021-06-25 李和成 Medical treatment department of stomatology uses dental cast raw material mixing device

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