CN212066737U - Coupling agent heater with quick heating function - Google Patents

Coupling agent heater with quick heating function Download PDF

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Publication number
CN212066737U
CN212066737U CN202020339949.5U CN202020339949U CN212066737U CN 212066737 U CN212066737 U CN 212066737U CN 202020339949 U CN202020339949 U CN 202020339949U CN 212066737 U CN212066737 U CN 212066737U
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shell
volumetric flask
heating pipe
lead
couplant
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CN202020339949.5U
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Chinese (zh)
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叶剑生
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Foshan Pingchuang Medical Technology Co ltd
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Foshan Pingchuang Medical Technology Co ltd
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Abstract

The utility model provides a couplant heater with quick heating function, include: the bottle mouth is opened to first casing, second casing, base and lid on the lid, the second casing is opened to the movable cover unification bottle lid on the bottleneck, then pours the couplant into the volumetric flask, pours into the back that finishes, closes the second casing, then passes lid behind the first intercommunication groove with the lid on the volumetric flask, meanwhile, opens the controller, generates heat simultaneously through first heating pipe of controller control and second heating pipe, can heat the couplant in the volumetric flask well. After the heating is finished, the bottle cap on the bottle opening is opened, then the push rod is pushed, and then the push rod drives the push plate to move, so that the coupling agent in the volumetric flask can flow to the cover body along with the pushing of the push plate and then flows out along the bottle opening. Therefore, in the using process, the method is simple and convenient, and the whole checking work efficiency is improved.

Description

Coupling agent heater with quick heating function
Technical Field
The utility model relates to a couplant firing equipment technical field especially relates to a couplant heater with rapid heating function.
Background
In medical ultrasonic diagnosis, if a probe is in direct contact with the skin, the emitted ultrasonic waves cannot reach and enter the human body due to the strong reflection action of an air layer between the probe and the skin. Therefore, a medical ultrasonic coupling agent is required to be filled between the surface of the probe and the skin to expel air, so that a channel for smooth and undistorted transmission of ultrasonic waves is formed, and when the ultrasonic coupling agent is coated on the skin, the patient is easily uncomfortable when the ultrasonic coupling agent is coated on a large area due to the temperature difference between the coupling agent and the skin of a human body. Particularly in cold autumn and winter, the ultrasonic couplant with lower temperature can bring obvious discomfort and tension to patients, and doctors can only slowly coat the ultrasonic couplant, so that in more hospitals, when the couplant needs to be used, the couplant is heated by the couplant heater, and the comfort level of the couplant in the coating process is improved.
The couplant heater in the existing market is inconvenient to use, the charging and heating work is complex, and a power supply device needs to be closed to in the use process, so that the couplant heater is not convenient enough in clinical use, and the checking work efficiency is greatly reduced.
SUMMERY OF THE UTILITY MODEL
In order to solve the above problem, the utility model adopts the following technical scheme: a couplant heater with rapid heating, comprising: the device comprises a first shell, a second shell, a base and a cover body;
the first shell and the second shell are both arranged on one surface of the base, a volumetric flask is arranged on one surface of the first shell, a first cavity is formed inside the first shell, a first heating pipe is arranged in the first cavity, a first through hole is formed in one surface of the first shell, which is provided with the volumetric flask, and the first through hole is communicated with the first cavity;
the second shell is movably abutted against the first shell, a containing groove is formed in the second shell, the volumetric flask is movably arranged in the containing groove, a first connecting groove is further formed in the second shell, the first connecting groove is communicated with the containing groove, a second cavity is formed in the second shell, a second heating pipe is arranged in the second cavity, a second through hole is formed in one surface, provided with the containing groove, of the second shell, and the second through hole is communicated with the second cavity;
the lid passes first intercommunication groove movable cover is located on the volumetric flask, the volumetric flask is kept away from the opening has been seted up to the one end of lid, wear to be equipped with a push rod on the base, second intercommunication groove has been seted up on the second casing, second intercommunication groove with the storage tank intercommunication, the one end of push rod is provided with the push pedal, the push pedal passes the opening set up in the volumetric flask, just the lateral wall of push pedal with the inside wall butt of volumetric flask, the push rod part set up in the second intercommunication inslot, be provided with controller and power in the one side of base, first heating pipe with the second heating pipe all with controller electric signal connection, first heating pipe the second heating pipe with the controller all with the power electricity is connected.
Further, be provided with temperature-sensing ware on the lateral wall of volumetric flask, temperature-sensing ware with the controller electricity is connected.
Further, the outside of second casing is provided with the display screen, the display screen with the power electricity is connected, temperature-sensing ware with the display screen electricity is connected.
Further, a first heat insulation layer is arranged on the first shell and attached to the outer side wall of the first shell.
Further, a second heat insulation layer is arranged on the second shell and attached to the outer side wall of the second shell.
Furthermore, the first heat insulation layer and the second heat insulation layer are made of glass fibers.
Further, a connecting plate is arranged on the base, and the connecting plate is vertically arranged on one surface of the base.
Further, the first shell is fixedly connected with the connecting plate, and the second shell is hinged to the connecting plate.
Furthermore, a channel is arranged inside the connecting plate, a first lead and a second lead are arranged in the channel, one end of the first lead penetrates through the first through hole to be connected with the first heating pipe, the other end of the first lead is connected with the controller, one end of the second lead penetrates through the second through hole to be connected with the second heating pipe, and the other end of the second lead is connected with the controller.
Further, a protection tube is arranged on one surface of the connecting plate and used for protecting the first lead and the second lead.
The utility model has the advantages that: the bottleneck has been seted up on the lid, the second casing is opened to the movable cover unification bottle lid on the bottleneck, then pours the couplant into the volumetric flask, pours into the back that finishes, closes the second casing, then passes lid behind the first intercommunication groove with the lid on the volumetric flask, meanwhile, opens the controller, generates heat simultaneously through first heating pipe of controller control and second heating pipe, can heat the couplant in the volumetric flask well. After the heating is finished, the bottle cap on the bottle opening is opened, then the push rod is pushed, and then the push rod drives the push plate to move, so that the coupling agent in the volumetric flask can flow to the cover body along with the pushing of the push plate and then flows out along the bottle opening. Therefore, in the using process, the method is simple and convenient, and the whole checking work efficiency is improved.
Drawings
The figures further illustrate the invention, but the embodiments in the figures do not constitute any limitation of the invention.
Fig. 1 is a schematic overall structure diagram of a couplant heater with a rapid heating function according to an embodiment;
FIG. 2 is a schematic diagram of an embodiment of a couplant heater with a rapid heating function;
FIG. 3 is a schematic view of an embodiment of a base;
fig. 4 is a schematic diagram of an internal structure of a couplant heater with a rapid heating function according to an embodiment;
fig. 5 is a schematic internal structural view of a first housing according to an embodiment;
fig. 6 is a schematic internal structural diagram of a second housing according to an embodiment.
Detailed Description
The following will combine the drawings of the embodiments of the present invention to further describe the technical solution of the present invention, and the present invention is not limited to the following specific embodiments. It should be noted that, in the present invention, the embodiments and features of the embodiments may be combined with each other without conflict.
As shown in fig. 1 to 6, a couplant heater with a rapid heating function includes: first casing 100, second casing 200, base 300 and lid 400, first casing 100 with second casing 200 all set up in on the one side of base 300, just be provided with volumetric flask 500 on the one side of first casing 100, the inside of first casing 100 has first cavity 110, be provided with first heating pipe 111 in the first cavity 110, first casing 100 is provided with first perforation has been seted up on the one side of volumetric flask 500, first perforation with first cavity 110 intercommunication.
The second housing 200 is movably abutted against the first housing 100, the second housing 200 is provided with a containing groove 210, the volumetric flask 500 is movably disposed in the containing groove 210, the second housing 200 is further provided with a first connecting groove 220, the first connecting groove 220 is communicated with the containing groove 210, the second housing 200 is internally provided with a second cavity 230, a second heating pipe 231 is disposed in the second cavity 230, one surface of the second housing 200, which is provided with the containing groove 210, is provided with a second through hole, the second through hole is communicated with the second cavity 230, the cover 400 is movably covered on the volumetric flask 500 through the first connecting groove 220, one end of the volumetric flask 500, which is far away from the cover 400, is provided with an opening, the base 300 is provided with a push rod 600 in a penetrating manner, and the second housing 200 is provided with a second communicating groove 240, the second intercommunication groove 240 with the storage tank 210 intercommunication, the one end of push rod 600 is provided with push pedal 610, push pedal 610 passes the opening set up in the volumetric flask 500, just the lateral wall of push pedal 610 with the inside wall butt of volumetric flask 500, push rod 600 part set up in the second intercommunication groove 240, be provided with controller 700 and power 800 in the one side of base 300, first heating pipe 111 with second heating pipe 231 all with controller 700 electric signal connection, first heating pipe 111 the second heating pipe 231 with controller 700 all with power 800 electricity is connected.
Specifically, a bottle opening is formed in the cover body 400, a bottle cap is movably covered on the bottle opening, the second casing 200 is opened, then the couplant is poured into the volumetric flask 500, after the pouring is finished, the second casing 200 is closed, that is, one surface of the first casing 100 and one surface of the second casing 200 are abutted to each other, the volumetric flask 500 at the moment is placed in the accommodating groove 210, then the cover body 400 penetrates through the first connecting groove 220 and then is covered on the volumetric flask 500, meanwhile, the controller 700 is opened, the first heating pipe 111 and the second heating pipe 231 are controlled by the controller 700 to simultaneously heat, and the couplant in the volumetric flask 500 can be well heated. After the heating is finished, the bottle cap on the bottle opening is opened, then the push rod 600 is pushed, and then the push rod 600 drives the push plate 610 to move, so that the coupling agent in the volumetric flask 500 can flow to the cover body 400 along with the pushing of the push plate 610 and then flow out along the bottle opening. That is, the couplant in the volumetric flask 500 can be extruded directly by pushing the push rod 600. It should be noted that the first casing 100 and the second casing 200 are formed in a shape suitable for being directly held by a hand of a user, i.e. capable of being directly held by the hand, so as to be conveniently used directly. Therefore, in the using process, the method is simple and convenient, and the whole checking work efficiency is improved.
In one embodiment, a temperature sensor 510 is disposed on an outer sidewall of the volumetric flask 500, and the temperature sensor 510 is electrically connected to the controller 700. And a display screen 250 is arranged on the outer side of the second casing 200, the display screen 250 is electrically connected with the power supply 800, and the temperature sensor 510 is electrically connected with the display screen 250. Further, a first heat insulation layer is disposed on the first casing 100, and the first heat insulation layer is attached to an outer side wall of the first casing 100. The second shell 200 is provided with a second heat insulation layer, and the second heat insulation layer is attached to the outer side wall of the second shell 200. And the first heat insulation layer and the second heat insulation layer are made of glass fibers. That is, by providing the temperature sensor 510, the temperature can be directly detected when the couplant is heated, and then the user can directly observe the couplant by transmitting the detection data to the display screen 250. Further, by arranging the first heat insulation layer on the first casing 100 and the second heat insulation layer on the second casing 200, the problem that the holding of a user is affected due to heating of the first casing 100 and the second casing 200 caused by heating can be avoided.
In one embodiment, the base 300 is provided with a connection plate 310, and the connection plate 310 is vertically arranged on one surface of the base 300. The first casing 100 is fixedly connected to the connection plate 310, the second casing 200 is hinged to the connection plate 310, a channel is formed in the connection plate 310, a first lead and a second lead are arranged in the channel, one end of the first lead penetrates through the first through hole to be connected to the first heating pipe 111, the other end of the first lead is connected to the controller 700, one end of the second lead penetrates through the second through hole to be connected to the second heating pipe 231, and the other end of the second lead is connected to the controller 700. Further, a protection tube is disposed on one surface of the connection plate 310, and the protection tube is used for protecting the first conductive wire and the second conductive wire. That is, the first housing 100 and the second housing 200 can be better disposed on the base 300 by disposing the connection plate 310, and the connection plate 310 can facilitate the connection of the first lead wire and the first heating pipe 111 and the connection of the second lead wire and the second heating pipe 231, that is, make the whole more beautiful, and avoid being easily damaged due to the exposure of the first lead wire and the second lead wire. It is worth mentioning that the use safety of the first lead and the second lead can be well ensured by arranging the protection tube.
As described above, the above embodiments are not limiting embodiments of the present invention, and modifications or equivalent variations made by those skilled in the art based on the substance of the present invention are within the technical scope of the present invention.

Claims (10)

1. A couplant heater with rapid heating, comprising: the device comprises a first shell, a second shell, a base and a cover body;
the first shell and the second shell are both arranged on one surface of the base, a volumetric flask is arranged on one surface of the first shell, a first cavity is formed inside the first shell, a first heating pipe is arranged in the first cavity, a first through hole is formed in one surface of the first shell, which is provided with the volumetric flask, and the first through hole is communicated with the first cavity;
the second shell is movably abutted against the first shell, a containing groove is formed in the second shell, the volumetric flask is movably arranged in the containing groove, a first connecting groove is further formed in the second shell, the first connecting groove is communicated with the containing groove, a second cavity is formed in the second shell, a second heating pipe is arranged in the second cavity, a second through hole is formed in one surface, provided with the containing groove, of the second shell, and the second through hole is communicated with the second cavity;
the lid passes first intercommunication groove movable cover is located on the volumetric flask, the volumetric flask is kept away from the opening has been seted up to the one end of lid, wear to be equipped with a push rod on the base, second intercommunication groove has been seted up on the second casing, second intercommunication groove with the storage tank intercommunication, the one end of push rod is provided with the push pedal, the push pedal passes the opening set up in the volumetric flask, just the lateral wall of push pedal with the inside wall butt of volumetric flask, the push rod part set up in the second intercommunication inslot, be provided with controller and power in the one side of base, first heating pipe with the second heating pipe all with controller electric signal connection, first heating pipe the second heating pipe with the controller all with the power electricity is connected.
2. The couplant heater with rapid heating function of claim 1, wherein: the outer side wall of the volumetric flask is provided with a temperature sensor, and the temperature sensor is electrically connected with the controller.
3. The couplant heater with a rapid heating function according to claim 2, wherein: the outside of second casing is provided with the display screen, the display screen with the power electricity is connected, temperature-sensing ware with the display screen electricity is connected.
4. The couplant heater with rapid heating function of claim 1, wherein: the first shell is provided with a first heat insulation layer, and the first heat insulation layer is attached to the outer side wall of the first shell.
5. The couplant heater with rapid heating function of claim 4, wherein: the second shell is provided with a second heat insulation layer, and the second heat insulation layer is attached to the outer side wall of the second shell.
6. The couplant heater with a rapid heating function according to claim 5, wherein: the first heat insulation layer and the second heat insulation layer are made of glass fibers.
7. The couplant heater with rapid heating function of claim 1, wherein: the base is provided with a connecting plate, and the connecting plate is vertically arranged on one surface of the base.
8. The couplant heater with a rapid heating function according to claim 7, wherein: the first shell is fixedly connected with the connecting plate, and the second shell is hinged to the connecting plate.
9. The couplant heater with a rapid heating function according to claim 8, wherein: the connecting plate is internally provided with a channel, a first lead and a second lead are arranged in the channel, one end of the first lead penetrates through the first through hole to be connected with the first heating pipe, the other end of the first lead is connected with the controller, one end of the second lead penetrates through the second through hole to be connected with the second heating pipe, and the other end of the second lead is connected with the controller.
10. The couplant heater with rapid heating function of claim 9, wherein: and one surface of the connecting plate is provided with a protective tube, and the protective tube is used for protecting the first lead and the second lead.
CN202020339949.5U 2020-03-17 2020-03-17 Coupling agent heater with quick heating function Active CN212066737U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020339949.5U CN212066737U (en) 2020-03-17 2020-03-17 Coupling agent heater with quick heating function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020339949.5U CN212066737U (en) 2020-03-17 2020-03-17 Coupling agent heater with quick heating function

Publications (1)

Publication Number Publication Date
CN212066737U true CN212066737U (en) 2020-12-04

Family

ID=73561176

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020339949.5U Active CN212066737U (en) 2020-03-17 2020-03-17 Coupling agent heater with quick heating function

Country Status (1)

Country Link
CN (1) CN212066737U (en)

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