CN210115005U - High-speed dispersion machine - Google Patents

High-speed dispersion machine Download PDF

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Publication number
CN210115005U
CN210115005U CN201920366961.2U CN201920366961U CN210115005U CN 210115005 U CN210115005 U CN 210115005U CN 201920366961 U CN201920366961 U CN 201920366961U CN 210115005 U CN210115005 U CN 210115005U
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mounting plate
mounting
assembly
rod
groove
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CN201920366961.2U
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Chinese (zh)
Inventor
黄书明
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Hangzhou Dena Coating Co Ltd
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Hangzhou Dena Coating Co Ltd
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Abstract

The utility model discloses a high-speed dispersion machine belongs to the dispersion equipment field, has solved among the prior art material bucket and has not covered and influence workman's operational environment's problem. The device comprises a lifting upright post, a cross beam, a stirring piece, a driving assembly for driving the stirring piece, a barrel cover and a mounting assembly arranged on the stirring piece and used for mounting the barrel cover; the stirring piece comprises a main rod connected with the driving assembly, and the mounting assembly comprises a mounting part rotationally connected to the main rod and a fixed rod connected between the mounting part and the cross beam; the mounting part comprises a mounting plate rotationally connected outside the main rod and an insertion groove formed in the mounting plate, one end of the insertion groove, which is far away from the stirring rod, is communicated, the barrel cover comprises a left assembly and a right assembly which are detachably connected with each other, and the left assembly and the right assembly are inserted into the insertion groove; one end of the fixed rod is fixed with the cross beam, and the other end of the fixed rod is connected with the mounting plate. The utility model discloses a set up the bung on the mobile jib and cover the material bucket, reduce material spill or volatilize in the material bucket.

Description

High-speed dispersion machine
Technical Field
The utility model relates to a dispersion equipment field, in particular to high-speed dispersion machine.
Background
The dispersion machine is a kind of stirrer in a broad sense. Because the high-speed stirrer can form strong turbulent flow locally, the high-speed stirrer usually has strong dispersion and emulsification effects on materials. Therefore, such high-speed mixers are also called dispersers. The dispersion machine is mainly divided into a lifting dispersion machine and a dispersion machine for a kettle.
Chinese patent publication No. CN208066241U discloses that the day is 2018, 1 month, 19 days discloses a high-speed dispersion machine for glass finishing agent production, including the high-speed dispersion machine body, rotate on the high-speed dispersion machine body and install the pivot, the bottom slip cap of pivot is equipped with the agitator disk, first recess has been seted up at the top of agitator disk, the bottom slidable mounting of pivot is in first recess, the cavity has been seted up in the pivot, fixed mounting has the slide bar in the cavity, the symmetrical slip cap is equipped with two sliders on the slide bar, the equal fixed mounting in one side that two sliders kept away from each other has the kelly, the kelly is kept away from the one end of slider and is extended outside the pivot, the second recess has been seted up on the top inner wall of cavity, slidable mounting has the ejector pin in the second recess.
In the prior art, the material barrel needs to be directly placed on the ground, and the stirring rod is lowered to extend into the material barrel; when carrying out high-speed stirring to the material bucket, because the material bucket does not cover, the material can be followed material bucket spill, in the volatile organic solvent of jar also can directly volatilize to the air, influence workman's operational environment.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming among the prior art material bucket not cover and influence workman's operational environment not enough, and providing a high-speed dispersion machine, reached the effect that reduces material bucket interior material spill or volatilize in a large number.
The above technical purpose of the present invention can be achieved by the following technical solutions:
a high-speed dispersion machine comprises a lifting upright post, a cross beam, a stirring piece, a driving assembly for driving the stirring piece, a barrel cover and a mounting assembly arranged on the stirring piece and used for mounting the barrel cover; the stirring piece comprises a main rod connected with the driving assembly, and the mounting assembly comprises a mounting part rotationally connected to the main rod and a fixed rod connected between the mounting part and the cross beam; the mounting part comprises a mounting plate rotationally connected outside the main rod and an insertion groove formed in the mounting plate, one end of the insertion groove, which is far away from the stirring rod, is communicated, the barrel cover comprises a left assembly and a right assembly which are detachably connected with each other, and the left assembly and the right assembly are inserted into the insertion groove; one end of the fixed rod is fixed with the cross beam, and the other end of the fixed rod is connected with the mounting plate.
By adopting the technical scheme, before stirring, the material barrel is placed on the ground, and the stirring piece is stretched into the material barrel; and the left component and the right component are inserted into the insertion groove of the mounting plate, the left component and the right component are mounted, and the barrel cover just covers the barrel opening of the material barrel to seal the barrel opening of the material barrel. During stirring, the main rod is rotatably connected with the mounting plate, and the fixing rod can provide a fixing support for the mounting plate and the barrel cover, so that the mounting plate and the barrel cover cannot be driven to rotate when the main rod rotates, the barrel cover can stand on the material barrel, the opening of the material barrel is closed, and the splashing or large volatilization of materials in the material barrel is reduced; after stirring is finished, the barrel cover can be also taken up by lifting the stirring piece without manually opening the cover. On the other hand, the bung can directly be taken off from the mounting panel and change and wash, and the material bucket of different bores can cooperate and use the bung of equidimension not.
More preferably: the main rod is provided with end-to-end rolling grooves along the circumferential direction of the main rod, and one side of each rolling groove, which is close to the mounting plate, is communicated; the mounting plate is provided with a holding tank, one side of the holding tank close to the main rod is communicated, the holding tank is internally provided with a ball, and one end of the ball is abutted to the inner wall of the rolling groove.
By adopting the technical scheme, the mounting plate is rotatably connected on the main rod through the matching of the rolling balls and the accommodating grooves, and the rolling balls generate small friction force when rolling and generate small resistance to the main rod; on the other hand, can realize spacing between rolling groove and the ball, restrict the mounting panel in the position at rolling groove place to reduce the pressure of mounting panel to the dead lever.
More preferably: the width of the opening of the accommodating groove close to one side of the main rod is smaller than the diameter of the ball.
By adopting the technical scheme, the ball can not fall out from the opening of the containing groove, the ball and the mounting plate are designed into a whole, and the complexity caused by the dispersion of parts during the disassembly and assembly is reduced.
More preferably: the mounting plate comprises a first assembly and a second assembly, wherein the first assembly is connected with a first mounting piece, and the first mounting piece extends from the end part of the first assembly close to the second assembly to one side close to or far away from the cross beam; the second assembly is connected with a second installation piece, the second installation piece and the first installation piece are arranged in the same direction, and the first installation piece and the second installation piece are connected through a bolt.
By adopting the technical scheme, the mounting plate is arranged into two spliced components, so that the mounting plate can be conveniently mounted and dismounted on the rolling groove, and the mounting plate can be directly dismounted from the rolling groove without being separated from two ends of the main rod; the mounting plate is mounted and dismounted through the cooperation of the first mounting piece, the second mounting piece and the bolt.
More preferably: a plurality of rolling grooves are formed in the main rod and are arranged along the axial direction of the main rod; the fixed rod is a telescopic rod and is in threaded connection with one side of the mounting plate close to the cross beam.
By adopting the technical scheme, as the heights of all the material barrels are different, in order to be matched with the material barrels of different models, the rolling grooves are arranged on the heights of the main rod, so that the mounting plates can be mounted on different heights, and the material barrels of different heights can be adapted.
More preferably: the dead lever includes the first section body fixed with the crossbeam, with the first section body threaded connection's the second section body, with the second section body rotate be connected and with mounting panel threaded connection's the third section body, end to end's rotation groove is seted up to circumference on the second section body, is fixed with the turning block of joint in rotating the inslot on the third section body.
By adopting the technical scheme, when in installation, the installation plate is firstly installed on the rolling groove with the corresponding height; and then the second section body is rotated to enable the third section body to be close to the mounting plate, when the third section body reaches the mounting plate, the junction of the second section body and the third section body is grasped, and the second section body and the third section body are rotated simultaneously, so that the threaded connection of the third section body and the mounting plate is realized while the total length of the fixed rod is extended. The second section body is rotatably connected with the third section body through the rotating groove and the rotating block.
More preferably: the rotating blocks are connected end to end.
By adopting the technical scheme, the abutting area of the rotating block and the rotating groove is increased, so that the supporting area of the fixing rod for the mounting block is increased, and the supporting force for the mounting plate is improved.
More preferably: the fixed rods are two and are respectively positioned at two sides of the mounting plate close to and far away from the lifting upright post.
By adopting the technical scheme, the two sides of the mounting plate are fixedly supported, and the stabilizing effect of the fixing rod on the mounting plate and the barrel cover is improved.
More preferably: the left component is provided with a splicing groove, and the right component is provided with a splicing block matched with the splicing groove; the left component is fixed with a buckling block, and the right component is rotatably connected with a buckling piece matched with the buckling block.
By adopting the technical scheme, the splicing blocks are spliced and spliced in the grooves, and the buckle pieces are rotated to the buckle blocks to be buckled, so that the left assembly and the right assembly can be detachably connected.
More preferably: the buckling block and the buckling piece are arranged on the side face of the barrel cover.
By adopting the technical scheme, if the buckling block and the mouth buckling piece are positioned on the top surface of the barrel cover, the barrel surface of the barrel cover needs to be pressed downwards when the buckling piece is buckled on the buckling block, and the barrel surface is easy to damage if the thickness of the barrel surface is not enough; when force is applied to the side face, the possibility of the situation can be reduced, and the barrel cover can be protected.
To sum up, the utility model discloses following beneficial effect has:
1. the barrel cover, the mounting part and the fixing rod are arranged, so that the barrel cover is mounted, and the splashing or large volatilization of substances in the material barrel is reduced;
2. the resistance of the mounting plate to the main rod is reduced by arranging the balls, the rolling grooves and the accommodating grooves;
3. the mounting plate is arranged into the first assembly and the second assembly, so that the mounting plate is convenient to disassemble and assemble;
4. through setting up a plurality of roll grooves for the bung can be installed at different heights, thereby realizes the adaptation to not co-altitude material bucket.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a top view of a portion of the structure of FIG. 1 (with the lifting column removed);
FIG. 3 is a partial cross-sectional view of section A-A of FIG. 2;
FIG. 4 is an enlarged view of portion A of FIG. 3;
fig. 5 is a schematic structural diagram of the mounting plate, the barrel cover and the fixing rod.
Reference numerals: 1. lifting the upright post; 2. a cross beam; 3. a stirring member; 31. a main rod; 311. a rolling groove; 32. a stirring rod; 4. a drive assembly; 41. a motor; 42. a first gear; 43. a second gear; 44. a gear belt; 45. mounting a rod; 5. a barrel cover; 51. a left component; 511. splicing grooves; 512. buckling blocks; 52. a right component; 521. splicing blocks; 522. buckling pieces; 6. mounting the component; 7. an installation part; 71. mounting a plate; 711. a first component; 712. a second component; 713. a first mounting piece; 714. a second mounting piece; 72. inserting grooves; 73. accommodating grooves; 74. a ball bearing; 8. fixing the rod; 81. a first segment; 82. a second segment; 821. a rotating groove; 83. a third segment; 831. and (6) rotating the block.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
A high-speed dispersion machine comprises a vertically arranged lifting upright post 1, a horizontal beam 2 fixed on the upper end surface of the lifting upright post 1 in a hollow manner, a stirring part 3 connected to the beam 2, a driving component 4 arranged in the beam 2 and on the beam 2 and used for driving the stirring part 3 to rotate, a barrel cover 5, and a mounting component 6 used for mounting the barrel cover 5, wherein the stirring part 3 is provided with the mounting component 6.
The stirring piece 3 and the lifting upright post 1 are respectively positioned at two ends of the cross beam 2. The stirring part 3 comprises a main rod 31 with a circular cross section and a stirring rod 32 which is detachably connected to the lower end of the main rod 31, wherein the upper end of the main rod 31 extends into the cross beam 2. As shown in fig. 2 and 3, the driving assembly 4 includes a motor 41 vertically fixed to the lower surface of the cross member 2, a first gear 42 fixed to an output shaft of the motor 41, a second gear 43 fixed to an upper end of the main lever 31, and a gear belt 44 engaged with both the first gear 42 and the second gear 43 and tensioned between the first gear 42 and the second gear 43. The output shaft of the motor 41 faces upwards and is positioned in the cross beam 2, and the motor 41 is positioned on one side of the lifting upright post 1 away from the main rod 31; two mounting rods 45 are vertically fixed in the cross beam 2, one of the mounting rods 45 is sleeved outside the main rod 31 and abuts against the lower surface of the second gear 43, and the remaining one of the mounting rods 45 is sleeved outside the output shaft of the motor 41 and abuts against the lower surface of the first gear 42.
As shown in fig. 3, the mounting assembly 6 includes a mounting portion 7 for mounting the tub cover 5, and a fixing lever 8 for fixing the mounting portion 7. The mounting part 7 comprises a mounting plate 71 which is rotatably connected outside the main rod 31, and the cross section of the mounting plate 71 is circular; the main rod 31 is horizontally provided with end-to-end rolling grooves 311, and one side of each rolling groove 311 close to the mounting plate 71 is communicated; six spherical accommodating grooves 73 are formed in the mounting plate 71, a ball 74 is arranged in each accommodating groove 73, one end of each ball 74 is located outside the mounting plate 71 and is abutted to the inner wall of the rolling groove 311, and the main rod 31 is not abutted to the mounting plate 71. The rolling grooves 311 are provided in three numbers, respectively located at different heights of the main lever 31.
As shown in fig. 5, the mounting plate 71 includes a first component 711 and a second component 712 which are equally divided, and the first component 711 and the second component 712 are provided with three receiving grooves 73 and balls 74. The end surface of the first component 711 close to the second component 712 is provided with four first mounting pieces 713, wherein two first mounting pieces 713 extend upwards from the top surface of the first component 711, and the remaining two first mounting pieces 713 extend downwards from the bottom surface of the first component 711; the end surface of the second component 712 close to the first component 711 is provided with four second mounting pieces 714, two of which extend upwards from the top surface of the second component 712, and the remaining two of which extend downwards from the bottom surface of the second component 712; the opposing first and second mounting tabs 713, 714 abut each other and are secured by bolts.
The outer wall surface of the mounting plate 71 is circumferentially provided with inserting grooves 72 which are connected end to end and have rectangular cross sections, and one side of each inserting groove 72, which is far away from the main rod 31, is penetrated; the tub cover 5 includes a left component 51 and a right component 52, the left component 51 is inserted into the insertion groove 72 of the first component 711, and the right component 52 is inserted into the insertion groove 72 of the second component 712. The end surface of the left component 51 close to the right component 52 is provided with a splicing groove 511 with a rectangular cross section, the end surface of the right component 52 close to the left component 51 is fixedly provided with two splicing blocks 521 matched with the splicing groove 511, and the splicing groove 511 is provided with two splicing grooves; the side wall surface of the left component 51 is fixed with a cuboid-shaped buckling block 512, the side wall surface of the right component 52 is rotatably connected with a buckling piece 522 buckled with the buckling block 512, and two buckling blocks 512 are fixed.
Two fixed rods 8 are respectively arranged at two sides of the mounting plate 71 close to and far away from the lifting upright post 1. As shown in fig. 4, the fixing rod 8 comprises a first segment 81 fixed to the lower surface of the cross beam 2, a second segment 82 screwed to the outer surface of the first segment 81, and a third segment 83 rotatably connected to the second segment 82; the cross sections of the first section body 81 and the third section body 83 are both circular, and the cross section of the second section body 82 is circular; the inner wall surface of the second section 82 is horizontally provided with a rotating groove 821 with a circular cross section, and the outer wall surface of the third section 83 is fixed with a rotating block 831 matched with the rotating groove 821. The upper surfaces of the first component 711 and the second component 712 are both provided with a threaded hole, and the third segment 83 is screwed in the threaded hole.
The implementation principle of the embodiment is as follows: when the installation is carried out, the first component 711 and the second component 712 are installed on the rolling grooves 311 with corresponding heights, and the first component 711 and the second component 712 are fixed through bolts, so that the installation of the installation plate 71 is completed; the second segment 82 is rotated to enable the third segment 83 to be close to the mounting plate 71, when the third segment 83 reaches the mounting plate 71, the junction of the second segment 82 and the third segment 83 is grasped, the second segment 82 and the third segment 83 are rotated simultaneously, and the third segment 83 is connected with the mounting plate 71 in a threaded mode while the total length of the fixing rod 8 is extended. The left component 51 and the right component 52 are respectively inserted into the first component 711 and the second component 712 and inserted into the insertion groove 72, the splicing of the splicing block 521 and the splicing groove 511 is realized, and the buckle piece 522 is buckled on the buckle block 512, so that the installation of the barrel cover 5 is completed. During the use, will stir 3 and rise to place the material bucket in stirring 3 below, at last will stir 3 and descend to puddler 32 and stretch into the material bucket, bung 5 seals the material bucket bung hole.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications to the present embodiment without inventive contribution as required after reading the present specification, but all of them are protected by patent laws within the scope of the claims of the present invention.

Claims (10)

1. A high-speed dispersion machine comprises a lifting upright post (1), a cross beam (2), a stirring piece (3), a driving component (4) for driving the stirring piece (3), and is characterized by further comprising a barrel cover (5) and a mounting component (6) arranged on the stirring piece (3) and used for mounting the barrel cover (5); the stirring piece (3) comprises a main rod (31) connected with the driving assembly (4), and the mounting assembly (6) comprises a mounting part (7) rotationally connected to the main rod (31) and a fixed rod (8) connected between the mounting part (7) and the cross beam (2); the mounting part (7) comprises a mounting plate (71) rotationally connected to the outside of the main rod (31) and a plug-in groove (72) formed in the mounting plate (71), one end, far away from the stirring rod (32), of the plug-in groove (72) is communicated, the barrel cover (5) comprises a left assembly (51) and a right assembly (52) which are detachably connected with each other, and the left assembly (51) and the right assembly (52) are plugged into the plug-in groove (72); one end of the fixed rod (8) is fixed with the beam (2), and the other end is connected with the mounting plate (71).
2. The high-speed dispersion machine according to claim 1, wherein the main rod (31) is provided with end-to-end rolling grooves (311) along the circumferential direction of the main rod (31), and one side of each rolling groove (311) close to the mounting plate (71) is through; an accommodating groove (73) is formed in the mounting plate (71), one side, close to the main rod (31), of the accommodating groove (73) penetrates through the accommodating groove, a ball (74) is arranged in the accommodating groove (73), and one end of the ball (74) abuts against the inner wall of the rolling groove (311).
3. A high-speed disperser according to claim 2, characterised in that the width of the opening of the accommodating tank (73) on the side close to the main bar (31) is smaller than the diameter of the balls (74).
4. A high-speed disperser according to claim 2, characterized in that the mounting plate (71) comprises a first module (711) and a second module (712), a first mounting plate (713) is attached to the first module (711), and the first mounting plate (713) extends from the end of the first module (711) close to the second module (712) to the side close to or far from the cross beam (2); the second assembly (712) is connected with a second installation sheet (714), the second installation sheet (714) and the first installation sheet (713) are arranged in the same direction, and the first installation sheet (713) and the second installation sheet (714) are connected through bolts.
5. The high-speed dispersion machine according to claim 4, wherein the rolling grooves (311) are opened in a plurality and arranged along the axial direction of the main rod (31); the fixed rod (8) is a telescopic rod and is in threaded connection with one side of the mounting plate (71) close to the cross beam (2).
6. The high-speed dispersion machine according to claim 5, wherein the fixing rod (8) comprises a first section (81) fixed to the beam (2), a second section (82) in threaded connection with the first section (81), and a third section (83) in threaded connection with the mounting plate (71) and rotatably connected with the second section (82), the second section (82) is circumferentially provided with a rotating groove (821) connected end to end, and the third section (83) is fixed with a rotating block (831) clamped in the rotating groove (821).
7. A high-speed disperser according to claim 6, characterised in that the rotor blocks (831) are connected end to end.
8. A high-speed disperser according to claim 1, characterised in that the two fixing bars (8) are located on either side of the mounting plate (71) adjacent to and remote from the lifting column (1).
9. The high-speed dispersion machine according to claim 1, wherein the left component (51) is provided with a splicing groove (511), and the right component (52) is provided with a splicing block (521) matched with the splicing groove (511); a buckle block (512) is fixed on the left component (51), and a buckle piece (522) matched with the buckle block (512) is rotatably connected on the right component (52).
10. The high-speed dispersion machine according to claim 9, wherein the fastening block (512) and the fastening piece (522) are arranged on the side surface of the barrel cover (5).
CN201920366961.2U 2019-03-21 2019-03-21 High-speed dispersion machine Active CN210115005U (en)

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Application Number Priority Date Filing Date Title
CN201920366961.2U CN210115005U (en) 2019-03-21 2019-03-21 High-speed dispersion machine

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Application Number Priority Date Filing Date Title
CN201920366961.2U CN210115005U (en) 2019-03-21 2019-03-21 High-speed dispersion machine

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CN210115005U true CN210115005U (en) 2020-02-28

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112495224A (en) * 2020-10-30 2021-03-16 中创科技孵化器泰州有限公司 Stirring tank is used in new material production and processing convenient to maintenance
CN112973519A (en) * 2021-03-29 2021-06-18 海南丰席树诺丽产业有限责任公司 Fruit juice jam is colloid dispersion devices for production and processing

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112495224A (en) * 2020-10-30 2021-03-16 中创科技孵化器泰州有限公司 Stirring tank is used in new material production and processing convenient to maintenance
CN112973519A (en) * 2021-03-29 2021-06-18 海南丰席树诺丽产业有限责任公司 Fruit juice jam is colloid dispersion devices for production and processing

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