CN219129064U - Ultrasonic stirrer - Google Patents

Ultrasonic stirrer Download PDF

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Publication number
CN219129064U
CN219129064U CN202223452427.4U CN202223452427U CN219129064U CN 219129064 U CN219129064 U CN 219129064U CN 202223452427 U CN202223452427 U CN 202223452427U CN 219129064 U CN219129064 U CN 219129064U
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China
Prior art keywords
ultrasonic
stirring
ultrasonic generator
splashing
plate
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CN202223452427.4U
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Chinese (zh)
Inventor
张子荣
秦孟良
姚肖利
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Hangzhou Ronghao Technology Co ltd
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Hangzhou Ronghao Technology Co ltd
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Priority to CN202223452427.4U priority Critical patent/CN219129064U/en
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Abstract

The utility model relates to the technical field of ultrasonic stirring, and discloses an ultrasonic stirrer, which is technically characterized by comprising a bracket, a position adjusting part, a rocker arm, an ultrasonic generator and an anti-splashing part; the utility model provides a horizontal stirring device, including rocking arm, ultrasonic generator, position control portion, anti-splash portion, wherein rocking arm one end rotates with position control portion to be connected, the other end and ultrasonic generator fixed connection, position control portion sets up on the support for adjust the position of rocking arm, anti-splash portion sets up on ultrasonic generator, be used for preventing splashing, produce the ultrasonic wave through utilizing ultrasonic generator, thereby utilize the ultrasonic wave to carry out the stirring to aluminium liquid and recycle the position control portion to adjust the position of rocking arm, thereby accomplish the regulation of position according to different container degree of depth, and utilize the rocking arm can accomplish the change of plane position angle, the stirring can be more abundant, stirring position selectivity is higher, reuse and prevent splashing the portion and cover container open-ended position, thereby prevent that aluminium liquid from splashing out the damage staff health and reduce the loss of cost in the stirring process.

Description

Ultrasonic stirrer
Technical Field
The utility model relates to the technical field of ultrasonic stirring, in particular to an ultrasonic stirrer.
Background
The ultrasonic stirring uses ultrasonic waves generated by the ultrasonic generator to be transmitted to materials to be stirred through some mediums, so that stirring is completed, the defects that the existing direct contact stirrer is unhygienic, difficult to clean and uneven in stirring are overcome, the effect of ultrasonic stirring in stirring of aluminum liquid is best, and honeycomb gas in the aluminum liquid can be stirred and discharged.
The traditional ultrasonic stirrer is divided into two types, one type is a container with stirring, the size of the container is limited, the application range is too small, the other type is that an ultrasonic stirrer is matched in the existing container, the application range of the mode is wider, meanwhile, due to the fact that the containers with different specifications are different in depth and diameter, the stability of the existing mode for adjusting the ultrasonic stirrer is insufficient, the problem that the connecting position is loose due to vibration in the stirring process is inconvenient to place better, and due to the fact that the larger the vibration amplitude is, the larger the aluminum liquid splashing amplitude is, the safety of staff is inconvenient to protect, and cost loss is caused after the aluminum liquid splashing.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model aims to provide the ultrasonic stirrer, ultrasonic is generated by utilizing the ultrasonic generator, so that the position of the rocker arm is adjusted by utilizing the ultrasonic to stir and reuse the aluminum liquid, the position is adjusted according to different container depths, the stirring is more convenient, the change of the plane position angle can be completed by utilizing the rocker arm, the stirring can be more sufficient, the stirring position selectivity is higher, and the position of the opening of the container is covered by utilizing the splash preventing part, so that the aluminum liquid is prevented from splashing in the stirring process to damage the body of a worker and the loss of cost is reduced.
In order to achieve the above purpose, the present utility model provides the following technical solutions: an ultrasonic stirrer comprises a bracket, a position adjusting part, a rocker arm, an ultrasonic generator and an anti-splashing part; the utility model provides a three-dimensional aluminum liquid stirring device, including rocking arm, ultrasonic generator, position control portion, anti-splash portion and cover the open-ended position of container, rocking arm one end is rotated with position control portion and is connected, the other end is with ultrasonic generator fixed connection, position control portion sets up on the support for adjust the position of rocking arm, anti-splash portion sets up on ultrasonic generator, be used for preventing splashing, through utilizing ultrasonic generator to produce the ultrasonic wave, thereby utilize the ultrasonic wave to carry out the stirring to aluminium liquid and recycle the position of position control portion adjustment rocking arm, thereby accomplish the regulation of position according to different container degree of depth, more convenient stirring, and utilize the rocking arm can accomplish the change of plane position angle, the stirring can be more abundant, stirring position selectivity is higher, the reuse is prevented splashing the portion and is covered the open-ended position of container, thereby prevent that aluminium liquid from splashing out the damage staff health and reduce cost's loss.
As a further improvement of the utility model, the splash guard comprises a shielding plate, at least two telescopic plates, a rotating sleeve and at least two driving structures; the shielding plate is fixedly arranged on the ultrasonic generator, the rotating sleeve is rotatably arranged on the shielding plate, the two telescopic plates are slidably arranged in the shielding plate, the two driving structures are arranged in the shielding plate and used for driving the two telescopic plates to extend out, and the telescopic plates are driven to be unfolded to adjust the area by utilizing the driving structures, so that containers with different diameters are adapted, and splashing during stirring of aluminum liquid is avoided.
As a further improvement of the utility model, the position adjusting part comprises a hand wheel, a moving sleeve, a plurality of threaded holes, at least two rotating columns, at least two screws and a transmission belt; the movable sleeve is slidably mounted on the support, the threaded holes are formed in the support, the two rotating columns are rotatably mounted on the movable sleeve, the two threaded rods are respectively in the two rotating columns in a threaded mode, the driving belt is used for connecting the two rotating columns, one rotating column is fixedly connected with the hand wheel, the movable sleeve is provided with a through hole for the threaded rods to pass through, the threaded holes are in threaded fit with the threaded rods, the movable sleeve is rotatably connected with the rocker arm, all the rotating columns are driven to rotate by means of the aid of one hand wheel, and accordingly the threaded rods can be matched with the threaded holes in different positions, and the position of the rocker arm is convenient to adjust.
As a further improvement of the utility model, the driving structure comprises annular teeth, a gear set, a rack and a belt pulley set; the annular teeth are fixedly connected to the rotating sleeve, the gear sets are formed by combining two gears, the gear sets are all rotatably mounted on the shielding plate, one of the gear sets is meshed with the annular teeth, the other gear sets are meshed with the racks, the racks are fixedly connected to the telescopic plate, the belt pulley sets are connected with the two gears and used for transmission, driving is more convenient through the transmission of the gear sets, and synchronous transmission is more stable through the belt pulley sets.
As a further development of the utility model, the splash guard further comprises at least two adjustment assemblies; the two adjusting components are respectively arranged in the two telescopic plates and used for increasing the coverage area, and the adjusting component sub-plates, the sliding grooves and the springs; the expansion board is characterized in that the sliding groove is formed in the expansion board, the sub-board is slidably mounted in the sliding groove, one end of the spring is fixedly connected to the side wall of the sliding groove, the other end of the spring is fixedly connected to the sub-board, and the sub-board is additionally mounted in the expansion board, so that the expansion board can lead to the problem of incomplete splashing prevention due to the fact that the line outlet distance is reserved after the expansion board extends out, the sub-board is utilized to naturally pop up against the side face of the other expansion board, the coverage area is increased, splashing is avoided, and the gas in the aluminum liquid flows out by utilizing a small interval.
The utility model has the beneficial effects that:
(1) According to the utility model, the ultrasonic generator is utilized to generate ultrasonic waves, so that the position of the rocker arm is adjusted by utilizing the ultrasonic wave to stir and reuse the aluminum liquid, the position adjustment is completed according to different container depths, the stirring is more convenient, the change of the plane position angle can be completed by utilizing the rocker arm, the stirring position selectivity is more sufficient, and the position of the container opening is covered by utilizing the splash preventing part, so that the aluminum liquid is prevented from splashing out in the stirring process to damage the body of a worker and reduce the loss of cost.
(2) According to the utility model, the expansion plate is driven by the driving structure to adjust the expansion area, so that the expansion plate is suitable for containers with different diameters, splashing is avoided when aluminum liquid is stirred, all the rotating columns are driven by one hand wheel to rotate, the screw can be matched with threaded holes in different positions, the position of the rocker arm is convenient to adjust, the driving is more convenient by the transmission of the gear set, and the synchronous transmission is more stable by the belt pulley set.
(3) According to the utility model, the daughter board is additionally arranged in the expansion board, so that the problem of incomplete splashing prevention caused by the outgoing line distance after the expansion board is extended is solved, the daughter board is naturally ejected to abut against the side surface of the other expansion board, the coverage area is increased, splashing is avoided, and the gas in the aluminum liquid flows out by using a small distance.
Drawings
FIG. 1 is a schematic diagram of the front view of the present utility model;
FIG. 2 is a schematic side elevational view of the present utility model;
FIG. 3 is a schematic view of the structure of the ultrasonic wave generator of FIG. 2 according to the present utility model;
FIG. 4 is an enlarged schematic view of the structure of the splash guard of FIG. 3 according to the present utility model;
FIG. 5 is an enlarged schematic view of the drive structure of FIG. 4 in accordance with the present utility model;
FIG. 6 is a schematic view of the internal structure of the expansion plate of FIG. 3 according to the present utility model;
fig. 7 is an enlarged schematic view of the position adjusting portion in fig. 2 according to the present utility model.
Reference numerals: 1. a bracket; 2. a position adjustment unit; 21. a hand wheel; 22. moving the sleeve; 23. a threaded hole; 24. rotating the column; 25. a screw; 26. a transmission belt; 3. a rocker arm; 4. an ultrasonic generator; 5. an anti-splash part; 51. a shielding plate; 52. a telescoping plate; 521. a sub-board; 522. a sliding groove; 523. a spring; 53. rotating the sleeve; 6. a driving structure; 61. annular teeth; 62. a gear set; 63. a rack; 64. a belt pulley group.
Detailed Description
The utility model will now be described in further detail with reference to the drawings and examples. Wherein like parts are designated by like reference numerals. It should be noted that the words "front", "back", "left", "right", "upper" and "lower" used in the following description refer to directions in the drawings, and the words "bottom" and "top", "inner" and "outer" refer to directions toward or away from, respectively, the geometric center of a particular component.
Referring to fig. 1 to 7, an ultrasonic stirrer of the present embodiment includes a bracket 1, a position adjusting portion 2, a rocker arm 3, an ultrasonic generator 4, and an anti-splash portion 5; the rocking arm 3 one end rotates with position control portion 2 to be connected, the other end and ultrasonic generator 4 fixed connection, position control portion 2 sets up on support 1 for adjust the position of rocking arm 3, prevent that splash portion 5 sets up on ultrasonic generator 4, be used for preventing to splash, through utilizing ultrasonic generator 4 to utilize the ultrasonic wave to carry out the stirring to aluminium liquid and recycle position control portion 2 to adjust the position of rocking arm 3, thereby accomplish the regulation in position according to different container degree of depth, more convenient stirring, and utilize rocking arm 3 to accomplish the change of plane position angle, the stirring can be more abundant, stirring position selectivity is higher, reuse prevents splash portion 5 to cover container open-ended position, thereby prevent that aluminium liquid from splashing out the damage staff health and reduce cost's loss at stirring in-process.
As shown in fig. 1-7, the splash guard 5 comprises a shielding plate 51, at least two telescopic plates 52, a rotating sleeve 53 and at least two driving structures 6; the shielding plate 51 is fixedly installed on the ultrasonic generator 4, the rotating sleeve 53 is rotatably installed on the shielding plate 51, the two telescopic plates 52 are slidably installed in the shielding plate 51, the two driving structures 6 are arranged in the shielding plate 51 and used for driving the two telescopic plates 52 to extend out, and the telescopic plates 52 are driven by the driving structures 6 to adjust the unfolding area, so that containers with different diameters are adapted, and splashing during stirring of aluminum liquid is avoided.
As shown in fig. 1-7, the position adjusting part 2 comprises a hand wheel 21, a moving sleeve 22, a plurality of threaded holes 23, at least two rotating columns 24, at least two screws 25 and a transmission belt 26; the movable sleeve 22 is slidably mounted on the support 1, a plurality of threaded holes 23 are formed in the support 1, two rotary columns 24 are rotatably mounted on the movable sleeve 22, two threaded rods 25 are respectively in threaded connection with the two rotary columns 24, a transmission belt 26 connects the two rotary columns 24, a hand wheel 21 is fixedly connected with one of the rotary columns 24, a through hole for the threaded rods 25 to pass through is formed in the movable sleeve 22, the threaded holes 23 are in threaded fit with the threaded rods 25, the movable sleeve 22 is rotatably connected with the rocker arm 3, and all the rotary columns 24 are driven to rotate by using the hand wheel 21, so that the threaded rods 25 can be matched with the threaded holes 23 in different positions, and the position of the rocker arm 3 can be conveniently adjusted.
As shown in fig. 1-7, the drive structure 6 includes an annular tooth 61, a gear set 62, a rack 63, and a pulley set 64; the annular teeth 61 are fixedly connected to the rotating sleeve 53, the gear sets 62 are formed by combining two gear sets 62, the gear sets 62 are rotatably installed on the shielding plate 51, one of the gear sets is meshed with the annular teeth 61, the other gear set is meshed with the rack 63, the rack 63 is fixedly connected to the telescopic plate 52, the two gears are connected through the belt pulley set 64 and used for transmission, the driving is more convenient through the transmission of the gear sets 62, and the synchronous transmission is more stable through the belt pulley set 64.
As shown in fig. 1-7, the splash guard 5 further comprises at least two adjustment assemblies; the two adjusting components are respectively arranged in the two telescopic plates 52 for increasing the coverage area, and the adjusting component sub-plates 521, the sliding grooves 522 and the springs 523; the sliding groove 522 is formed in the expansion plate 52, the sub-plate 521 is slidably mounted in the sliding groove 522, one end of the spring 523 is fixedly connected to the side wall of the sliding groove 522, the other end of the spring 523 is fixedly connected to the sub-plate 521, and through the additional installation of the sub-plate 521 in the expansion plate 52, the expansion plate 52 can prevent incomplete splashing due to the wire outlet distance after extending, the sub-plate 521 is utilized to naturally pop up against the side surface of the other expansion plate 52, so that the coverage area is increased, splashing is avoided, and the gas in the molten aluminum flows out by utilizing a small distance.
Working principle: in use, as shown in figures 1 to 7, the hand wheel 21 is rotated so that the intermediate rotatable post 24 (shown in figure 7) is rotated, then the other rotatable posts 24 are driven by the drive belt 26 so that all of the screws 25 are rotated out of the threaded bores 23, then adjusted to the appropriate position, and then the hand wheel 21 is rotated in reverse so that the intermediate rotatable post 24 (shown in figure 7) is rotated, and then the other rotatable post 24 is driven by the drive belt 26 so that all of the screws 25 are rotated into the threaded bores 23.
The ultrasonic generator 4 is started so as to start stirring the aluminum liquid, splashing starts to be gradually generated along with the lifting of power in the stirring process, at the moment, the rotating sleeve 53 is rotated so that the annular teeth 61 are driven, the gear set 62 is driven by the belt pulley set 64 to enable the expansion plate 52 to stretch out and draw back, when the expansion plate 52 stretches out, the spring 523 pushes the daughter board 521 to stretch out, the daughter board 521 stretches out and then abuts against the side face of the other expansion plate 52, then large-area coverage is completed, a small interval is reserved, gas in the aluminum liquid is conveniently discharged, and splashing is avoided in a large range.
The above is only a preferred embodiment of the present utility model, and the protection scope of the present utility model is not limited to the above examples, and all technical solutions belonging to the concept of the present utility model belong to the protection scope of the present utility model. It should be noted that modifications and adaptations to the present utility model may occur to one skilled in the art without departing from the principles of the present utility model and are intended to be within the scope of the present utility model.

Claims (5)

1. An ultrasonic stirrer, characterized in that: comprises a bracket (1), a position adjusting part (2), a rocker arm (3), an ultrasonic generator (4) and an anti-splashing part (5);
one end of the rocker arm (3) is rotationally connected with the position adjusting part (2), the other end of the rocker arm is fixedly connected with the ultrasonic generator (4), the position adjusting part (2) is arranged on the bracket (1) and used for adjusting the position of the rocker arm (3), and the splash preventing part (5) is arranged on the ultrasonic generator (4) and used for preventing splashing;
the splash prevention part (5) comprises a shielding plate (51), at least two telescopic plates (52), a rotating sleeve (53) and at least two driving structures (6);
the shielding plate (51) is fixedly arranged on the ultrasonic generator (4), the rotating sleeve (53) is rotatably arranged on the shielding plate (51), the two telescopic plates (52) are slidably arranged in the shielding plate (51), and the two driving structures (6) are arranged in the shielding plate (51) and used for driving the two telescopic plates (52) to extend out.
2. An ultrasonic stirrer according to claim 1, wherein: the position adjusting part (2) comprises a hand wheel (21), a movable sleeve (22), a plurality of threaded holes (23), at least two rotating columns (24), at least two screws (25) and a transmission belt (26);
the movable sleeve (22) is slidably mounted on the support (1), a plurality of threaded holes (23) are formed in the support (1), two rotating columns (24) are rotatably mounted on the movable sleeve (22), two threaded rods (25) are respectively in threaded connection with the two rotating columns (24), a transmission belt (26) is used for connecting the two rotating columns (24), one rotating column (24) is fixedly connected with the hand wheel (21), a through hole for the threaded rod (25) to penetrate is formed in the movable sleeve (22), the threaded holes (23) are in threaded fit with the threaded rods (25), and the movable sleeve (22) is rotatably connected with the rocker arm (3).
3. An ultrasonic stirrer according to claim 1, wherein: the driving structure (6) comprises annular teeth (61), a gear set (62), a rack (63) and a belt pulley set (64);
the annular teeth (61) are fixedly connected to the rotating sleeve (53), the gear sets (62) are formed by combining two gears, the gear sets are rotatably installed on the shielding plate (51), one of the gear sets is meshed with the annular teeth (61), the other gear sets are meshed with the racks (63), the racks (63) are fixedly connected to the telescopic plate (52), and the two gears are connected by the belt pulley sets (64) and used for transmission.
4. An ultrasonic stirrer according to claim 1, wherein: the splash guard (5) further comprises at least two adjustment assemblies; the two adjusting assemblies are respectively arranged in the two telescopic plates (52) and are used for increasing the coverage area.
5. An ultrasonic stirrer according to claim 4, wherein: the adjusting assembly comprises a sub-plate (521), a sliding groove (522) and a spring (523);
the sliding groove (522) is formed in the expansion plate (52), the sub-plate (521) is slidably mounted in the sliding groove (522), one end of the spring (523) is fixedly connected to the side wall of the sliding groove (522), and the other end of the spring is fixedly connected to the sub-plate (521).
CN202223452427.4U 2022-12-22 2022-12-22 Ultrasonic stirrer Active CN219129064U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223452427.4U CN219129064U (en) 2022-12-22 2022-12-22 Ultrasonic stirrer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223452427.4U CN219129064U (en) 2022-12-22 2022-12-22 Ultrasonic stirrer

Publications (1)

Publication Number Publication Date
CN219129064U true CN219129064U (en) 2023-06-06

Family

ID=86602512

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223452427.4U Active CN219129064U (en) 2022-12-22 2022-12-22 Ultrasonic stirrer

Country Status (1)

Country Link
CN (1) CN219129064U (en)

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