CN214262389U - Three-dimensional rotating nozzle - Google Patents

Three-dimensional rotating nozzle Download PDF

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Publication number
CN214262389U
CN214262389U CN202023057319.8U CN202023057319U CN214262389U CN 214262389 U CN214262389 U CN 214262389U CN 202023057319 U CN202023057319 U CN 202023057319U CN 214262389 U CN214262389 U CN 214262389U
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CN
China
Prior art keywords
conical gear
valve body
nozzle
static valve
speed reducer
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CN202023057319.8U
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Chinese (zh)
Inventor
孙田文
孔福太
姜建
肖军军
李恒
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Shanghai Weituo Water Jet Technology Co ltd
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Shanghai Weituo Water Jet Technology Co ltd
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Priority to CN202023057319.8U priority Critical patent/CN214262389U/en
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Abstract

The utility model discloses a three-dimensional rotary nozzle, which comprises a motor, a speed reducer, a static valve body upper flange, a speed reducer transmission shaft, a protective sleeve, a mounting flange, an inner connecting pipe, a cone-tight sealing sleeve, a cone-tight locking nut, a first conical gear, a second conical gear, a rotator shell, a second conical gear shaft, a nozzle rotator and a plurality of nozzles; the inner connecting pipe penetrates through the first conical gear, and the other end of the inner connecting pipe is connected with the rotator shell; the second conical gear is sleeved on the inner shaft of the rotator shell in a penetrating mode, and the second conical gear is in meshed connection with the first conical gear. The utility model discloses a three-dimensional rotatory nozzle simple structure, convenient operation can design according to operating condition, are suitable for the inside washing of the jar body.

Description

Three-dimensional rotating nozzle
Technical Field
The utility model relates to a water jet field, in particular to three-dimensional rotatory nozzle.
Background
With the rapid development of industries such as food, brewing, petroleum, chemical engineering and the like, large-scale industrial equipment such as stirring tanks, storage tanks, barrel tanks, reaction kettles and the like is widely applied to the industries. However, these devices are usually "bellied", and the cleaning device is difficult to clean the interior of the device, and usually adopts an electric three-dimensional rotating nozzle to clean the interior of the device. However, most of the existing electric three-dimensional rotary cleaning nozzles are complex in structure and large in size, and are not suitable for tanks with various inlet calibers, so that inconvenience is brought to use.
A three-dimensional rotary nozzle with simple structure and convenient operation is needed to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a three-dimensional rotatory nozzle, the utility model discloses a three-dimensional rotatory nozzle simple structure, convenient operation can design according to operating condition, are suitable for the inside washing of the jar body.
The utility model discloses a solve above-mentioned technical problem through following technical scheme:
the utility model provides a three-dimensional rotary nozzle, which comprises a motor, a speed reducer, a static valve body upper flange, a speed reducer transmission shaft, a protective sleeve, a mounting flange, an inner connecting pipe, a cone-tight sealing sleeve, a cone-tight locking nut, a first conical gear, a second conical gear, a rotator shell, a second conical gear shaft, a nozzle rotator and a plurality of nozzles; the motor is connected with the speed reducer, one end of a speed reducer transmission shaft is connected to the speed reducer, the speed reducer transmission shaft penetrates through the static valve body and the static valve body upper flange, and the other end of the speed reducer transmission shaft is connected with one end of the inner connecting pipe; the static valve body is fixed on the static valve body upper flange, and the static valve body upper flange is fixed on the speed reducer; the upper flange of the static valve body is connected with the mounting flange; the upper part of the conical locking nut is connected with the mounting flange, the lower part of the conical locking nut is provided with a conical hole, the conical locking nut is tightly sleeved between the conical hole and the protective sleeve, the protective sleeve is arranged outside the inner connecting pipe, and the protective sleeve is connected with the first conical gear and the mounting flange; the inner connecting pipe penetrates through the first conical gear, and the other end of the inner connecting pipe is connected with the rotator shell; the second conical gear is sleeved on the inner shaft of the rotator shell in a penetrating manner, and the second conical gear is meshed with the first conical gear; the second conical gear shaft tightly presses the second conical gear on the rotator shell, and the nozzle rotating body is connected with the rotator shell through the second conical gear shaft; the nozzle is fixed on the nozzle rotating body; the static valve body is provided with a water inlet, the joint of the speed reducer transmission shaft and the inner connecting pipe is communicated with the water inlet, the inner connecting pipe is hollow, the rotator shell is hollow, and the second bevel gear shaft is hollow.
In the present invention, the motor is conventional in the art, and is a power element of the three-dimensional rotary nozzle.
The utility model discloses in, the speed reducer is used for transmitting the power speed reduction of motor for the speed reducer transmission shaft.
In the utility model, the static valve body is a water inlet mechanism of the three-dimensional rotating nozzle;
preferably, a sealing element is arranged between the static valve body and the transmission shaft of the speed reducer.
In the utility model, the upper flange of the static valve body is used for installing the static valve body and the installation flange on the speed reducer;
preferably, the upper static valve body flange is connected with the static valve body through screws, and the upper static valve body flange is connected with the speed reducer through screws.
The utility model discloses in, the speed reducer transmission shaft is used for driving power transmission to the nipple joint, and it is rotatory to drive the nipple joint.
In the utility model, the protecting sleeve plays a role in protecting the inner connecting pipe;
preferably, the protective sleeve and the first conical gear are in threaded connection, and the protective sleeve and the mounting flange are in threaded connection.
In the utility model, the mounting flange is used for mounting the three-dimensional rotary nozzle on the cleaning tank body;
preferably, the mounting flange and the static valve body upper flange are connected through studs and nuts, and the number of the studs is 2-4.
In the utility model, the inner connecting pipe is used for driving the rotator shell and the second bevel gear to rotate and is matched with the rotator shell and the second bevel gear shaft to convey cleaning water into the nozzle rotator;
preferably, the inner connecting pipe and the reducer transmission shaft are connected through threads.
The utility model discloses in, the tight sealing cover of awl is used for locking mounting flange, the inside that three-dimensional rotatory nozzle was sputtered to the washing water that prevents the splash when wasing.
The utility model discloses in, awl lock nut with the tight sealing cover of awl is sealed together mounting flange and protective casing.
In the utility model, the first conical gear and the second conical gear are in meshing transmission, so that the nozzle rotating body can rotate around the center of the first conical gear and also can rotate;
preferably, the included angle between the axis of the first conical gear and the axis of the second conical gear is 100-120 degrees.
In the utility model, the rotator shell is used for installing and connecting the first conical gear and the second conical gear, and the first conical gear and the second conical gear can be meshed for transmission;
preferably, a sealing member is provided between the rotator housing and the nozzle rotator, and a sealing member is provided between the second bevel gear shaft and the nozzle rotator.
The utility model discloses in, second bevel gear axle is used for compressing tightly second bevel gear on the circulator casing.
In the present invention, the nozzle rotator is used as the mounting carrier of the nozzle.
In the utility model, the nozzle is used for spraying out the cleaning water;
preferably, the number of the nozzles is 2-3, and the nozzles are fixed on the nozzle rotating body at equal intervals.
The utility model discloses a three-dimensional rotatory nozzle's use flow does: the motor is decelerated through the speed reducer to drive the transmission shaft of the speed reducer to rotate. The speed reducer transmission shaft drives the inner connecting pipe to rotate, the inner connecting pipe drives the rotator shell to rotate, the rotator shell can rotate around the axis of the inner connecting pipe, in the process, the first conical gear is fixed and does not rotate, and the second conical gear is fixed on the rotator shell and can be meshed with the first conical gear for transmission, so that the second conical gear can rotate around the axis of the inner connecting pipe together with the nozzle rotating body and can also rotate around the axis of the second conical gear shaft. When the water inlet of the static valve body is connected with a water source, water flow enters the nozzle rotating body through a hollow pipeline formed by the speed reducer transmission shaft, the inner connecting pipe, the rotator shell and the second bevel gear shaft and is sprayed out through the nozzle, and the function of three-dimensional rotary cleaning is achieved.
This practicality goes on positive progress effect: the utility model discloses a three-dimensional rotatory nozzle simple structure, convenient operation can design according to operating condition, are suitable for the inside washing of the jar body.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
Fig. 1 is a schematic structural diagram of a three-dimensional rotary sprinkler according to an embodiment of the present invention.
Description of reference numerals:
1. a motor; 2. a speed reducer;
3. a static valve body upper flange; 4. a static valve body;
5. a speed reducer transmission shaft; 6. a protective sleeve;
7. installing a flange; 8. an inner connecting pipe;
9. a stud; 10. a nut;
11. a sealing sleeve is tightly screwed; 12. the locking nut is screwed;
13. a first conical gear; 14. a rotator housing;
15. a second conical gear; 16. a nozzle;
17. a second bevel gear shaft; 18. a nozzle rotating body;
19. a water inlet.
Detailed Description
The following description will further describe embodiments of the present invention with reference to the accompanying drawings and examples. The following examples are only for illustrating the technical solutions of the present invention more clearly, and the protection scope of the present invention is not limited thereby.
As shown in fig. 1, the embodiment provides a three-dimensional rotary nozzle, which includes a motor 1, a speed reducer 2, a static valve body 4, a static valve body upper flange 3, a speed reducer transmission shaft 5, a protective casing 6, a mounting flange 7, an inner connecting pipe 8, a taper-lock gland 11, a taper-lock nut 12, a first conical gear 13, a second conical gear 15, a rotator housing 14, a second conical gear shaft 17, a nozzle rotator 18, and 2 nozzles 16; the motor 1 is connected with the speed reducer 2, one end of a speed reducer transmission shaft 5 is connected to the speed reducer 2, the speed reducer transmission shaft 5 penetrates through the static valve body 4 and the static valve body upper flange 3, and the other end of the speed reducer transmission shaft 5 is connected with one end of the inner connecting pipe 8; the static valve body 4 is fixed on the static valve body upper flange 3, and the static valve body upper flange 3 is fixed on the speed reducer 2; the upper flange 3 of the static valve body is connected with a mounting flange 7; the upper part of the cone-tight locking nut 12 is connected with the mounting flange 7, the lower part of the cone-tight locking nut 12 is provided with a cone hole, the cone-tight sealing sleeve 11 is arranged between the cone hole and the protecting sleeve 6, the protecting sleeve 6 is arranged outside the inner connecting pipe 8, and the protecting sleeve 6 is connected with the first cone gear 13 and the mounting flange 7; the inner joint pipe 8 penetrates the first conical gear 13, and the other end of the inner joint pipe 8 is connected with the rotator housing 14; a second conical gear 15 is sleeved on the inner shaft of the rotator shell 14 in a penetrating way, and the second conical gear 15 is meshed with the first conical gear 13; the second conical gear shaft 17 tightly presses the second conical gear 15 against the rotator housing 14, and the nozzle rotator 18 is connected with the rotator housing 14 through the second conical gear shaft 17; the nozzle 16 is fixed on the nozzle rotator 18; the static valve body 4 is provided with a water inlet 19, the joint of the speed reducer transmission shaft 5 and the inner connecting pipe 8 is communicated with the water inlet 19, the inner connecting pipe 8 is hollow, the rotator shell 14 is hollow, and the second bevel gear shaft 17 is hollow.
In this embodiment, the motor 1 is a power element of the three-dimensional rotary nozzle.
In this embodiment, the speed reducer 2 is used to reduce the speed of the power of the motor 1 and transmit the power to the speed reducer transmission shaft 5.
In this embodiment, the static valve body 4 is a water inlet mechanism of a three-dimensional rotary nozzle.
In this embodiment, the static valve body upper flange 3 is used for mounting the static valve body 4 and the mounting flange 7 on the speed reducer 2; the upper static valve body flange 3 is connected with the static valve body 4 through screws, and the upper static valve body flange 3 is connected with the speed reducer 2 through screws.
In this embodiment, the reducer transmission shaft 5 is used to transmit power to the inner joint pipe 8, and drive the inner joint pipe 8 to rotate.
In this embodiment, the protection sleeve 6 protects the inner connection pipe 8; the protective sleeve 6 is in threaded connection with the first conical gear 13, and the protective sleeve 6 is in threaded connection with the mounting flange 7.
In this embodiment, the mounting flange 7 is used for mounting the three-dimensional rotating nozzle on the cleaning tank body; the mounting flange 7 is connected with the static valve body upper flange 3 through a stud 9 and a nut 10.
In this embodiment, the inner connecting pipe 8 is used for driving the rotator housing 14 and the second bevel gear 15 to rotate, and is matched with the rotator housing 14 and the second bevel gear shaft 17 to convey cleaning water into the nozzle rotator 18; the inner connecting pipe 8 and the reducer transmission shaft 5 are connected through threads.
In this embodiment, the tapered sealing sleeve 11 is used for locking the mounting flange 7, and the cleaning water splashed during cleaning is prevented from being splashed into the three-dimensional rotating nozzle.
In this embodiment, the cone lock nut 12 seals the mounting flange 7 and the protective sleeve 6 together with the cone seal 11.
In this embodiment, the first conical gear 13 and the second conical gear 15 are in meshing transmission, so that the nozzle rotating body 18 can rotate around the center of the first conical gear 13 and can also rotate; the angle between the axis of the first conical gear 13 and the axis of the second conical gear 15 is 100 °.
In the embodiment, the rotator housing 14 is used for installing and connecting the first conical gear 13 and the second conical gear 15, and enabling the two to be in meshing transmission; a seal is provided between the spinner housing 14 and the nozzle rotary body 18, and a seal is provided between the second bevel gear shaft 17 and the nozzle rotary body 18.
In the present embodiment, the second bevel gear shaft 17 is used to press the second bevel gear 15 against the rotator housing 14.
In the present embodiment, the nozzle rotator 18 is used as a mounting carrier for the nozzle 16.
In this embodiment, the nozzle 16 is used to spray the cleaning water.
The use flow of the three-dimensional rotating nozzle of the embodiment is as follows: the motor is decelerated through the speed reducer to drive the transmission shaft of the speed reducer to rotate. The speed reducer transmission shaft drives the inner connecting pipe to rotate, the inner connecting pipe drives the rotator shell to rotate, the rotator shell can rotate around the axis of the inner connecting pipe, in the process, the first conical gear is fixed and does not rotate, and the second conical gear is fixed on the rotator shell and can be meshed with the first conical gear for transmission, so that the second conical gear can rotate around the axis of the inner connecting pipe together with the nozzle rotating body and can also rotate around the axis of the second conical gear shaft. When the water inlet of the static valve body is connected with a water source, water flow enters the nozzle rotating body through a hollow pipeline formed by the speed reducer transmission shaft, the inner connecting pipe, the rotator shell and the second bevel gear shaft and is sprayed out through the nozzle, and the function of three-dimensional rotary cleaning is achieved.
The three-dimensional rotating nozzle of the embodiment is simple in structure and convenient to operate, can be designed according to actual working conditions, and is suitable for cleaning the inside of the tank body.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (9)

1. A three-dimensional rotating nozzle is characterized by comprising a motor, a speed reducer, a static valve body upper flange, a speed reducer transmission shaft, a protective sleeve, a mounting flange, an inner connecting pipe, a cone-tight sealing sleeve, a cone-tight locking nut, a first conical gear, a second conical gear, a rotator shell, a second conical gear shaft, a nozzle rotating body and a plurality of nozzles; the motor is connected with the speed reducer, one end of a speed reducer transmission shaft is connected to the speed reducer, the speed reducer transmission shaft penetrates through the static valve body and the static valve body upper flange, and the other end of the speed reducer transmission shaft is connected with one end of the inner connecting pipe; the static valve body is fixed on the static valve body upper flange, and the static valve body upper flange is fixed on the speed reducer; the upper flange of the static valve body is connected with the mounting flange; the upper part of the conical locking nut is connected with the mounting flange, the lower part of the conical locking nut is provided with a conical hole, the conical locking nut is tightly sleeved between the conical hole and the protective sleeve, the protective sleeve is arranged outside the inner connecting pipe, and the protective sleeve is connected with the first conical gear and the mounting flange; the inner connecting pipe penetrates through the first conical gear, and the other end of the inner connecting pipe is connected with the rotator shell; the second conical gear is sleeved on the inner shaft of the rotator shell in a penetrating manner, and the second conical gear is meshed with the first conical gear; the second conical gear shaft tightly presses the second conical gear on the rotator shell, and the nozzle rotating body is connected with the rotator shell through the second conical gear shaft; the nozzle is fixed on the nozzle rotating body; the static valve body is provided with a water inlet, the joint of the speed reducer transmission shaft and the inner connecting pipe is communicated with the water inlet, the inner connecting pipe is hollow, the rotator shell is hollow, and the second bevel gear shaft is hollow.
2. The three-dimensional rotating spray head of claim 1, wherein a seal is disposed between the static valve body and the reducer drive shaft.
3. The three-dimensional rotating sprinkler according to claim 1, wherein the static valve body upper flange and the static valve body are coupled by screws, and the static valve body upper flange and the reducer are coupled by screws.
4. The three-dimensional rotating spray head of claim 1, wherein the protective sleeve and the first conical gear are in threaded connection, and the protective sleeve and the mounting flange are in threaded connection.
5. The three-dimensional rotating sprinkler according to claim 1, wherein the mounting flange and the static valve body upper flange are connected by a stud and a nut, and the number of the studs is 2-4.
6. The three-dimensional rotating sprinkler according to claim 1, wherein the inner nipple and the reducer drive shaft are connected by a screw thread.
7. The three-dimensional rotating sprinkler head according to claim 1, wherein an angle between an axis of the first conical gear and an axis of the second conical gear is 100 to 120 °.
8. The three-dimensional rotary sprinkler head according to claim 1, wherein a sealing member is provided between the rotator housing and the nozzle rotator, and a sealing member is provided between the second bevel gear shaft and the nozzle rotator.
9. The three-dimensional rotating sprinkler according to claim 1, wherein the number of the nozzles is 2 to 3, and the nozzles are fixed to the nozzle rotating body at equal intervals.
CN202023057319.8U 2020-12-17 2020-12-17 Three-dimensional rotating nozzle Active CN214262389U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023057319.8U CN214262389U (en) 2020-12-17 2020-12-17 Three-dimensional rotating nozzle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023057319.8U CN214262389U (en) 2020-12-17 2020-12-17 Three-dimensional rotating nozzle

Publications (1)

Publication Number Publication Date
CN214262389U true CN214262389U (en) 2021-09-24

Family

ID=77799266

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023057319.8U Active CN214262389U (en) 2020-12-17 2020-12-17 Three-dimensional rotating nozzle

Country Status (1)

Country Link
CN (1) CN214262389U (en)

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