Rotor ultrasonic cleaning equipment capable of checking temperature control through temperature control

The rotor ultrasonic cleaning equipment controlled by infrared temperature sensors and heating devices solves the problems of low rotor cleaning efficiency and high energy consumption, achieving a highly efficient and energy-saving cleaning effect.

CN223556700UActive Publication Date: 2025-11-18CSR ZHUZHOU ELECTRIC CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422921283.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-11-18
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

Existing rotor cleaning equipment is inefficient. After cleaning, the rotor surface is covered with cleaning fluid, and the heat evaporates to form a gas film, which increases energy consumption and is not conducive to energy conservation and environmental protection.

Method used

An infrared temperature sensor is used to detect the rotor temperature in real time. Combined with the heating device in the ultrasonic cleaning equipment, the temperature of the cleaning solution is controlled. After standing, the rotor is immersed in the cleaning equipment through a clamping structure to remove the flux.

Benefits of technology

It improves rotor cleaning efficiency, avoids heat evaporation and gas film formation, reduces energy consumption, and achieves energy-saving and environmentally friendly cleaning results.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223556700U_ABST
    Figure CN223556700U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of rotor cleaning equipment, in particular to rotor ultrasonic cleaning equipment capable of checking temperature control through temperature control, which comprises a support rod, an infrared temperature sensor, a lifting air pump, a cross rod, a connecting plate, a hanger plate, a cleaning box body and a connecting seat, the vertical face of one side of the connecting base is connected with the outer side of the cleaning box in an attached mode, the upper end of the supporting rod is connected with a lifting air pump, the upper portion of the lifting air pump is connected with a lifting sleeve, the lifting sleeve is arranged on an air pipe vertically arranged on the lifting air pump in a sleeving mode, the upper portion of the lifting sleeve is connected with a transverse rod which is transversely arranged, and the transverse rod is fixed to the lower portion of one end of the transverse rod. The other end of the cross rod is fixedly connected with the upper end of a connecting plate, the two opposite sides of the connecting plate are each provided with a hanging plate, and the lower portions of the two hanging plates are each provided with an opening; real-time temperature detection is performed on the to-be-cleaned rotor pre-installed in the cleaning basket through the arranged infrared temperature measuring equipment, and boiling and evaporation of a water body caused by too high temperature are avoided.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to rotor cleaning equipment field especially through temperature control check temperature control's rotor ultrasonic cleaning equipment. BACKGROUND

[0002] The rotor needs to carry out the dirt cleaning of outer surface, but the existing rotor cleaning is manual operation, therefore work efficiency is lower.

[0003] The existing rotor cleaning equipment is generally put into the ultrasonic cleaning device when using, and after cleaning, it is fished out, because the rotor surface is attached with a large amount of cleaning fluid after cleaning, and the rotor is taken out after finishing processing before cleaning, at this time, the rotor has certain temperature, and when needing to clean, it is easy to evaporate the heat and clean the solution, and it is also easy to form the diaphragm (air film etc.) on the rotor surface, not only reduces the cleaning efficiency of the rotor, but also increases the energy consumption of the equipment, is not conducive to energy saving and environmental protection, for this, we provide a kind of rotor cleaning equipment for rotor processing. UTILITY MODEL CONTENTS

[0004] In view of the technical defects in the background art, the utility model provides a kind of rotor ultrasonic cleaning equipment by temperature control check temperature control, solves the above-mentioned technical problems and meets the actual demand, and the specific technical scheme is as follows:

[0005] A kind of rotor ultrasonic cleaning equipment by temperature control check temperature control, including: support rod, infrared temperature sensor, lifting air pump, crossbar, connecting plate, hanging plate, cleaning box and adapter seat, the support rod is located in the upper of the adapter seat, the vertical surface of the one side of the adapter seat is connected with the outside of the cleaning box, the upper end of the support rod is connected with the lifting air pump, the lifting sleeve pipe is connected above the lifting air pump, the lifting sleeve pipe is sleeved in the air pipe vertically arranged above the lifting air pump, the lifting sleeve pipe is connected with the crossbar arranged transversely above, and is fixed below one end of the crossbar, the other end of the crossbar is fixedly connected with the upper end of the connecting plate, the opposite sides of the connecting plate are respectively provided with the hanging plate, and the lower side of the two hanging plates is respectively provided with an opening;The upper side of the cleaning box is provided with an opening, and the connecting plate and the two hanging plates are respectively inserted into the cleaning box from top to bottom along the opening of the cleaning box;The cleaning box is respectively provided with a plurality of ultrasonic generators and a heating plate, and a control unit is arranged in the bottom of the cleaning box;The side of the cleaning box and the adapter seat is closely fitted with at least two transverse convex strips, the adapter seat is provided with two transverse grooves corresponding to the two transverse convex strips, one of the two transverse convex strips is embedded with a first metal contact piece towards the side of the corresponding transverse groove, and a second metal contact piece is arranged in the corresponding transverse groove, and the first metal contact piece and the second metal contact piece are mutually fitted.

[0006] The support rod is hollow, and a plurality of wire pipes are arranged in the support rod, one end of the plurality of wire pipes in the support rod extends into the adapter seat;A rotating seat is arranged at the lower end of the support rod, and the support rod is fixed above the adapter seat through the rotating seat, an embedded column is arranged at the upper end of the rotating seat, and the embedded column is inserted into the inside of the lower end of the support rod, a plurality of protrusions are arranged on the vertical surface of the outside of the embedded column, the embedded column is fixed in the support rod through the protrusions, a circular ring is arranged at the edge below the embedded column, a plurality of meshing teeth are arranged on the vertical surface of the outside of the circular ring, the circular ring of the embedded column is inserted above the rotating seat, a gear motor is arranged in the rotating seat, and the gear motor is connected with the surface of the circular ring of the embedded column through a gear;A vertical pipe is arranged in the rotating seat and the center of the embedded column, and a plurality of wire pipes are arranged in the vertical pipe, the gear motor is arranged in the vertical pipe of the rotating seat through the wire pipes, and extends into the adapter seat;The support rod is rotated in a direction less than or equal to one hundred and eighty degrees through the cooperation of the rotating seat, the embedded column and the gear motor.

[0007] The infrared temperature sensor is fixed outside the support rod, and the infrared temperature sensor extends to the support rod through a wire tube and extends to the adapter seat inside the support rod; the lifting air pump is arranged above the support rod, an air inlet and outlet is arranged at the edge of the lifting air pump, the lifting air pump extends to the support rod through a wire tube and extends to the adapter seat inside the support rod, and a gap is arranged between the air pipe end of the lifting air pump extending upward and the upper part of the lifting sleeve; a plurality of wire tubes are arranged in the cross rod, one end of the plurality of wire tubes extends along the lifting sleeve and the air pipe, penetrates the rotating seat and the embedded column, extends to the adapter seat, a sealing film is arranged between the lifting sleeve and the wire tube, the wire tube segment between the air pipe end and the lifting sleeve is arranged in a curved manner, and a gap is arranged between the wire tube and the air pipe; the other end of the plurality of wire tubes arranged in the cross rod extends to the connecting plate.

[0008] One side of the connecting plate is provided with a wire slot, at least two vertical sliding grooves are arranged on one side of the connecting plate, one of the two sliding grooves is connected to one of the two hanging plates, and the other hanging plate is arranged on the side of the connecting plate away from the hanging plate; a wiring board is arranged in the connecting plate and connected with the plurality of wire tubes of the cross rod, the wiring board extends to the wire slot through the wire tube and extends to the two hanging plates; a push air pump is arranged on each of the opposite sides of the connecting plate, the two push air pumps extend to the outside of the connecting plate through air pipes and are respectively connected with air cylinders, one end of the two air cylinders is provided with a push rod, and the two push rods are respectively fixed to the outside of the other hanging plate; the other hanging plate is reciprocally moved to one direction of the connecting plate by cooperation of the air cylinders and the push rods.

[0009] A moving motor is arranged in the hanging plate connected with the connecting plate, the moving motor is provided with two gears embedded in the two sliding grooves arranged on the connecting plate, and the two sliding grooves are provided with toothed belts matched with the moving motor; the hanging plate is moved up and down in one direction along the two sliding grooves by the moving motor; the wiring board in the connecting plate extends to the outside of the connecting plate through a wire tube and is connected with the other hanging plate.

[0010] The lower end of each of the hanging plates is provided with an embedding entrance, one side of the embedding entrance is provided with an insertion entrance, a semi-ring groove is formed above the embedding entrance, one end of the semi-ring groove extends to the inside of the embedding entrance and is opposite to the insertion entrance, a lock ring is arranged in the semi-ring groove, and a rack is arranged on the outer side surface of the lock ring; an opening is formed above the semi-ring groove, a gear is embedded in the opening, and the gear is connected to a driving motor; the driving motor is connected to the rack of the lock ring through gear meshing; the lock ring slides along the semi-ring groove through the driving motor and closes the embedding entrance, and one end of the lock ring is inserted into the insertion entrance.

[0011] The two embedding entrances are respectively sleeved on two embedding rods arranged on a cleaning basket, and the two embedding entrances are respectively buckled below the two embedding rods through the corresponding lock rings; the cleaning basket is moved from the outside to the cleaning box through the two hanging plates; a water inlet is arranged at the opening edge of the cleaning box, and the water inlet is connected with a water pump or a water injection device.

[0012] The rotor ultrasonic cleaning equipment has the beneficial effects that:

[0013] The infrared temperature sensor is arranged to detect the temperature of the rotor to be cleaned in the cleaning basket in real time, and the internal heating device of the cleaning equipment is started to heat and treat the cleaning solution in the cleaning box, so that the temperature of the cleaning solution in the cleaning box can melt the flux on the surface of the rotor; at this time, the rotor is placed and the temperature thereof is reduced to 90-95 ° (to avoid the evaporation of water due to high temperature and the formation of air film between the rotor and the water due to the bubbles formed in the evaporation process), and the infrared temperature sensor is arranged to detect during the standing process; after the standing process is completed, the infrared temperature sensor feeds back the instruction to the control unit, and the control unit starts the lifting device to immerse the cleaning basket and the rotor to be cleaned in the cleaning equipment, so as to peel off the flux on the surface of the rotor and achieve the cleaning purpose. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a structure diagram of a rotor ultrasonic cleaning equipment for temperature control inspection and temperature control.

[0015] Figure 2 It is an internal structure combination diagram of a supporting rod of a rotor ultrasonic cleaning equipment for temperature control inspection and temperature control.

[0016] Figure 3 It is a combination connection structure diagram of two hanging plates and a connecting plate of a rotor ultrasonic cleaning equipment for temperature control inspection and temperature control.

[0017] Figure 4 It is an internal structure diagram of a hanging plate and a connecting plate of a rotor ultrasonic cleaning equipment for temperature control inspection and temperature control.

[0018] Figure 5 It is a kind of through temperature control check the internal structure diagram of the lower end of the hanging plate of temperature-controlled rotor ultrasonic cleaning equipment. DETAILED DESCRIPTION

[0019] The embodiments of the present application will be described below in conjunction with the accompanying drawings and related examples, and the embodiments of the present application are not limited to the following examples, and the present application relates to the necessary components in the related technical field, which should be regarded as the known technology in the technical field, and can be known and mastered by the skilled in the art.

[0020] As Figures 1 to 5 shown, a rotor ultrasonic cleaning equipment for temperature control check temperature control includes: support rod 1, infrared temperature sensor 2, lifting air pump 3, cross bar 4, connecting plate 5, hanging plate 6, cleaning box 7 and adapter seat 8, support rod 1 is arranged above the adapter seat 8, one side of the adapter seat 8 is vertically connected with the outside of the cleaning box 7, the upper end of the support rod 1 is connected with a lifting air pump 3, the lifting air pump 3 is connected with a lifting sleeve 31 above, the lifting sleeve 31 is sleeved on the air pipe vertically arranged upwardly on the lifting air pump 3, a cross bar 4 is connected above the lifting sleeve 31 and fixed below one end of the cross bar 4, the other end of the cross bar 4 is fixedly connected with the upper end of a connecting plate 5, the connecting plate 5 is provided with two hanging plates 6 on the opposite sides, and each hanging plate 6 is provided with an opening below; the upper end of the cleaning box 7 is provided with an opening, the connecting plate 5 and the two hanging plates 6 are inserted into the cleaning box 7 along the opening of the cleaning box 7 from top to bottom; the cleaning box 7 is provided with a plurality of ultrasonic generators 72 and a heating plate 73, and a control unit 9 is arranged in the bottom of the cleaning box 7; the side of the cleaning box 7 close to the adapter seat 8 is provided with at least two transverse protrusions, the adapter seat 8 is provided with two transverse grooves corresponding to the two transverse protrusions, one of the two transverse protrusions is embedded with a first metal contact piece 92 towards the side of the corresponding transverse groove, and the corresponding transverse groove is provided with a second metal contact piece 82, and the first metal contact piece 92 and the second metal contact piece 82 are in close contact with each other.

[0021] The infrared temperature sensor 2 detects the temperature of the rotor to be cleaned in the cleaning basket 10 in real time, and the several ultrasonic generators 72 and the heating plate 73 in the cleaning box 7 are started to heat and ultrasonic vibrate the cleaning solution in the cleaning box 7, so that the temperature of the cleaning solution in the cleaning box can melt the flux on the surface of the rotor, at this time, the rotor is placed and the temperature is reduced to 90-95 ° (to avoid the water from boiling and evaporating due to high temperature, and to avoid the gas film formed between the rotor and the water due to the bubbles formed in the evaporation process), and during the standing process, the infrared temperature sensor 2 detects, after the standing is completed, the infrared temperature sensor 2 feeds back the control unit 9, and the control unit 9 starts the clamping structure to immerse the cleaning basket 10 and the rotor to be cleaned in the cleaning box 7, and the flux on the surface of the rotor is stripped to achieve the cleaning purpose.

[0022] After the above structure, it needs to be further explained that the control unit 9 of the utility model is composed of several circuit boards, wherein the circuit board of the control unit 9 is linearly electrically connected with the power supply and the control computer (such as computer and the like), and the control unit 9 of the utility model is used for controlling the start and stop of the electric device in the utility model.

[0023] In the above, the clamping structure includes the supporting rod 1, the lifting air pump 3, the cross rod 4, the connecting plate 5, the hanging plate 6, and the adapter seat 8, and the above structure is used for clamping the cleaning basket 10 in which the workpiece is placed, and during the clamping process, the supporting rod 1 swings the lifting air pump 3, the cross rod 4, the connecting plate 5 and the two hanging plates 6 outside the cleaning box 7, clamps the cleaning basket 10 in which several or one rotor is placed outside, and after clamping, the lifting air pump 3, the cross rod 4, the connecting plate 5 and the two hanging plates 6 move the cleaning basket 10 into the cleaning box 7, and immerse the cleaning basket 10 in the cleaning solution in the cleaning box 7, and after cleaning, the lifting air pump 3, the cross rod 4, the connecting plate 5 and the two hanging plates 6 clamp and move the cleaning basket 10 out of the cleaning box 7, and place it in the placement area.

[0024] The support rod 1 is hollow, and a plurality of line pipes are arranged in the support rod 1, and the plurality of line pipes in the support rod 1 extend to the connection seat 8; a rotating seat 11 is arranged at the lower end of the support rod 1, and the support rod 1 is fixed above the connection seat 8 through the rotating seat 11; an embedded column 12 is arranged at the upper end of the rotating seat 11, and the embedded column 12 is inserted into the lower end of the support rod 1; a plurality of protrusions are arranged on the vertical surface of the outer side of the embedded column 12, and the embedded column 12 is fixed in the support rod 1 through the protrusions; a ring is arranged at the edge below the embedded column 12, and a plurality of meshing teeth are arranged on the vertical surface of the outer side of the ring; the ring of the embedded column 12 is inserted above the rotating seat 11; a gear motor 13 is arranged in the rotating seat 11, and the gear motor 13 is connected to the surface of the ring of the embedded column 12 through a gear; a vertical through pipe is arranged at the center of the rotating seat 11 and the embedded column 12, and a plurality of line pipes are arranged in the vertical through pipe; the gear motor 13 is arranged in the vertical through pipe of the rotating seat 11 through the line pipes, and extends to the connection seat 8; and the support rod 1 is rotated in a direction by less than or equal to 180 degrees through the cooperation of the rotating seat 11, the embedded column 12 and the gear motor 13.

[0025] After the above structure, it is further explained that the support rod 1 is used to lift the lifting air pump 3, the cross rod 4, the connecting plate 5 and the two hanging plates 6, and the rotating motor arranged in the support rod 1 is used to rotate the lifting air pump 3, the cross rod 4, the connecting plate 5 and the two hanging plates 6 by 180 degrees, so that the lifting air pump 3, the cross rod 4, the connecting plate 5 and the two hanging plates 6 can clamp the cleaning basket 10 from the outside to the cleaning box 7, and clamp the cleaning basket 10 from the cleaning box 7 to the outside (another direction).

[0026] The connection seat 8 of the utility model is inserted into the two horizontal grooves in the direction of the two horizontal protrusions, realizes the fixation between the two, and the horizontal protrusion provided with the first metal contact piece 92 and the horizontal groove provided with the second metal contact piece 82 are embedded with each other, the first metal contact piece 92 and the second metal contact piece 82 are in contact, the control unit 10 is connected to the concentrated wire plate 81 in the connection seat 8 through the contact between the first metal contact piece 92 and the second metal contact piece 82, the concentrated wire plate 81 is used to connect the line pipes of the lifting air pump 3, the cross rod 4, the connecting plate 5 and the two hanging plates 6, and after the first metal contact piece 92 and the second metal contact piece 82 are connected, the control unit 9 can start and stop and control the connection seat 8 and the lifting air pump 3, the cross rod 4, the connecting plate 5 and the two hanging plates 6.

[0027] The infrared temperature sensor 2 is fixed outside the supporting rod 1, and the infrared temperature sensor 2 is crossed to the supporting rod 1 by a wire tube and extends to the connecting seat 8 in the supporting rod 1; the lifting air pump 3 is arranged above the supporting rod 1, an air inlet and outlet are formed in the edge of the lifting air pump 3, the lifting air pump 3 extends to the supporting rod 1 by a wire tube and extends to the connecting seat 8 in the supporting rod 1, and a gap is formed between the end of the air pipe of the lifting air pump 3 and the upper part of the lifting sleeve 31; a plurality of wire tubes are arranged in the cross rod 4, and one end of the plurality of wire tubes extends along the lifting sleeve 31 and the air pipe, penetrates the rotating seat 11 and the embedded column 12, extends to the connecting seat 8, a sealing film is arranged between the lifting sleeve 31 and the wire tube, the wire tube section between the end of the air pipe and the lifting sleeve 31 is arranged in a curved manner, and a gap is formed between the wire tube and the air pipe; the other end of the plurality of wire tubes arranged in the cross rod 4 extends to the connecting plate 5.

[0028] After the above structure, it needs to be further explained that the infrared temperature sensor 2 is a device for measuring temperature by using infrared rays, and the infrared temperature sensor 2 can measure temperature without contacting the measured object, thereby avoiding physical interference and measurement error that may be caused by the traditional contact type temperature measurement.

[0029] The infrared temperature sensor 2 of the utility model is a photoelectric infrared temperature sensor, and the working principle is to measure the reflectivity and transmittance of the target surface by using photoelectric effect, so as to determine the properties and temperature of the target surface.

[0030] The lifting air pump 3 can lift the lifting sleeve 31 by extracting air outside and expanding the air pipe, and when the lifting sleeve 31 needs to be lowered, the lifting air pump 3 can extract air from the inside to the outside to lower the lifting sleeve 31.

[0031] The connecting plate 5 is provided with a wire slot, at least two vertical sliding grooves 51 are formed in one side of the connecting plate 5, one of the two sliding grooves 51 is connected to one of the two hanging plates 6, and the other hanging plate 6 is arranged on the side of the connecting plate 5 away from the hanging plate 6; a wire board 50 is arranged in the connecting plate 50 and connected to the plurality of wire tubes of the cross rod 4, the wire board 50 is arranged in the wire slot by a wire tube and extends, and extends into the two hanging plates 6; a pushing air pump is arranged in the connecting plate 5 and on the opposite sides, respectively, two pushing air pumps are arranged outside the connecting plate 5 by air pipes, respectively, and are connected to a gas cylinder 62, respectively, one end of the two gas cylinders 62 is provided with a pushing rod 63, and the two pushing rods 63 are fixed to the other hanging plate 6, respectively, the other hanging plate 6 is reciprocally moved in one direction of the connecting plate 5 by cooperation of the two gas cylinders 62 and the pushing rods 63.

[0032] After the above structure, it needs to be further explained that the connecting plate 5 is used as a support, wherein the wire slot opened therein is used to provide extended wire tube storage when the hanging plate 6 attached outside moves up and down, avoiding pulling and breaking or clamping and breaking between the connecting plate 5 and the hanging plate 6.

[0033] The two hanging plates 6 are adapted to different specifications of the cleaning basket 10, and the distance between the two hanging plates 6 is adjusted by two air cylinders 62, two push rods 63 and two push air pumps.

[0034] One of the hanging plates 6 attached to the connecting plate 5 is provided with a moving motor 64, which is embedded in two sliding grooves 51 opened in the connecting plate 5 by two gears, and the two sliding grooves 51 are provided with a toothed belt matched with the moving motor 64. The hanging plate 6 moves up and down in one direction along the two sliding grooves 51 by the moving motor 64; the connecting plate 5 is extended by a wire tube and is provided outside the connecting plate 5, and is connected to the other hanging plate 6.

[0035] After the above structure, it needs to be further explained that the hanging plate 6 reciprocally moves outside the connecting plate 55 by the moving motor 64, and in order to avoid the hanging plate 6 from falling off the connecting plate 5, one side of the connecting plate 5 is provided with two T-shaped grooves, and the attached hanging plate 6 is provided with two protrusions matched with the T-shaped grooves. During installation, the hanging plate 6 is aligned with the two T-shaped grooves of the connecting plate 5 from top to bottom by the two T-shaped grooves, and moves down by starting the moving motor 64, and realizes attachment.

[0036] The lower end of each hanging plate 6 is provided with an embedding entrance 66, one side of which is provided with an insertion entrance, and a half-ring groove 671 is opened above the embedding entrance 66, one end of which extends to the inside of the embedding entrance 66 and is opposite to the insertion entrance, a lock ring 67 is arranged in the half-ring groove 671, and a rack is arranged on the outer surface of the lock ring 67; an opening is arranged above the half-ring groove 671, a gear is embedded in the opening, and the gear is connected to the driving motor 65, the driving motor 65 is connected to the rack of the lock ring 67 by gear meshing; the lock ring 67 slides along the half-ring groove 671 by the driving motor 65, and closes the embedding entrance 66, and one end of the lock ring 67 is inserted into the insertion entrance.

[0037] The two hanging plates 6 are respectively sleeved on two embedding rods arranged on the cleaning basket 10 by the embedding entrances 66; the two embedding entrances 66 are respectively buckled below the two embedding rods by the corresponding lock rings 67; the cleaning basket 10 is moved from the outside to the cleaning box 7 by the two hanging plates 6; a water inlet 71 is arranged at the edge of the opening of the cleaning box 7, and the water inlet 71 is connected to an external water pump or water injection equipment.

[0038] The above merely is preferred implementation manner of the present application, it should be pointed out, for ordinary skilled person in the technical field, under the premise of not departing from the principle of the present application, can also make several improvements and refinements, these improvements and refinements also should be regarded as the protection scope of the present application.

Claims

1. A rotor ultrasonic cleaning device with temperature control via temperature monitoring, comprising: The support rod comprises an infrared temperature sensor, a lifting air pump, a crossbar, a connecting plate, a hanging plate, a cleaning box, and a connecting seat. The support rod is positioned above the connecting seat, and one vertical side of the connecting seat is abutted against the outer side of the cleaning box. A lifting air pump is connected to the upper end of the support rod, and a lifting sleeve is connected above the lifting air pump. The lifting sleeve is fitted over an air pipe vertically positioned above the lifting air pump. A horizontally positioned crossbar is connected above the lifting sleeve and fixed below one end of the crossbar. The other end of the crossbar is fixedly connected to the upper end of a connecting plate. A hanging plate is provided on each of the opposite sides of the connecting plate, and an opening is provided below each of the two hanging plates. The cleaning box has an opening at the top, and the connecting plate and the two hanging plates are inserted into the cleaning box from top to bottom through the opening. The cleaning chamber is equipped with several ultrasonic generators and a heating plate, and a control unit is located at the bottom of the cleaning chamber. The cleaning box body has at least two transverse protrusions on the side that is in close contact with the connecting seat. The connecting seat has two transverse grooves that correspond to the two transverse protrusions. A first metal contact piece is embedded in one of the two transverse protrusions facing the corresponding transverse groove, and a second metal contact piece is provided in the corresponding transverse groove. The first metal contact piece and the second metal contact piece are in contact with each other.

2. The rotor ultrasonic cleaning device with temperature control via temperature monitoring according to claim 1, characterized in that: The support rod is hollow inside and has several conduits running through it. One end of each conduit extends into the connector. The lower end of the support rod is provided with a rotating seat, and the support rod is fixed above the connecting seat through the rotating seat. The upper end of the rotating seat is provided with an embedded post, and the embedded post is inserted into the interior of the lower end of the support rod. The vertical surface of the outer side of the embedded post is provided with several protrusions, and the embedded post is fixed inside the support rod by the protrusions. The lower edge of the embedded post is provided with a ring, and the vertical surface of the outer side of the ring is provided with several meshing teeth. The ring of the embedded post is inserted above the rotating seat. A gear motor is provided inside the rotating seat, and the gear motor is connected to the surface of the ring of the embedded post through gears. A vertical through pipe is opened at the center of the rotating seat and the embedded column, and several wire pipes are passed through the vertical through pipes. The gear motor is connected to the vertical through pipe of the rotating seat by wire pipes and extends into the connecting seat. The support rod rotates in one direction by less than or equal to 180 degrees through the cooperation of the rotating seat, the embedded column and the gear motor.

3. The rotor ultrasonic cleaning device with temperature control via temperature monitoring according to claim 2, characterized in that: The infrared temperature sensor is fixed outside the support rod, and the infrared temperature sensor is connected to the support rod by a conduit that extends through the support rod and into the connector. The lifting air pump is located above the support rod. An air inlet and outlet are provided on the edge of the lifting air pump. The lifting air pump extends into the support rod via a conduit and extends into the connecting seat along the support rod. A gap is provided between the end of the air pipe extending upward from the lifting air pump and the upper part of the lifting sleeve. Several conduits are threaded through the crossbar, and one end of each conduit extends along the lifting sleeve and the air pipe, passes through the rotating seat and the embedded column, and extends into the connecting seat. A sealing membrane is provided between the lifting sleeve and the conduits. The conduit section between the end of the air pipe and the lifting sleeve is bent, and a gap is provided between the conduit and the air pipe. Several conduits are threaded through the crossbar, with the other end extending into the connecting plate.

4. The rotor ultrasonic cleaning device with temperature control via temperature monitoring according to claim 1, characterized in that: A groove is provided on one side of the connecting plate, and at least two vertically arranged sliding grooves are provided on one side of the connecting plate. The two sliding grooves are used to fit and connect one of the two hanging plates. The other hanging plate is provided on the side of the connecting plate away from the hanging plate. The connecting plate is provided with a terminal block and is connected to several conduits of the crossbar. The terminal block is provided with conduits that pass through and extend into the wire groove and into the two hanging plates. Inside the connecting plate, on opposite sides, there is a push air pump. The two push air pumps extend to the outside of the connecting plate via air pipes and are connected to an air cylinder. A push rod is passed through one end of each of the two air cylinders. The two push rods are fixed to the outside of another hanging plate. The other hanging plate moves back and forth in one direction of the connecting plate through the cooperation of the two air cylinders and the push rods.

5. The rotor ultrasonic cleaning device with temperature control via temperature monitoring according to claim 4, characterized in that: A movable motor is installed inside a hanging plate that is attached to the connecting plate. The movable motor uses two gears that are respectively embedded in two sliding grooves opened in the connecting plate. The two sliding grooves are provided with toothed strips that cooperate with the movable motor. The hanging plate moves up and down in one direction along the two sliding grooves by means of the movable motor. The wiring board inside the connecting plate extends through a conduit and is connected to the other hanging plate.

6. The rotor ultrasonic cleaning device with temperature control via temperature monitoring according to claim 1, characterized in that: Each of the hanging plates has an insertion opening at its lower end, an insertion port on one side of the insertion opening, a semi-annular groove above the insertion opening, one end of the semi-annular groove extending to the inside of the insertion opening and opposite to the insertion port, a locking ring inside the semi-annular groove, and a toothed rack on the outer surface of the locking ring. An opening is provided above the semi-annular groove, and a gear is embedded in the opening. The gear is connected to a drive motor, and the drive motor is connected to the rack of the locking ring by gear meshing. The locking ring slides along the semi-annular groove via the drive motor and closes the insertion port, with one end of the locking ring inserted into the insertion port.

7. The rotor ultrasonic cleaning device with temperature control via temperature monitoring according to claim 6, characterized in that: The two hanging plates are respectively fitted with two fitting rods in a cleaning basket using the embedded sleeves; The two insertion ports are respectively fastened to the bottom of the two fitting rods by corresponding locking rings; The cleaning basket is moved from the outside into the cleaning box via two hanging plates; The cleaning chamber has a water inlet at the edge of its opening, which is connected to an external water pump or water injection device.