CN218243861U - Bottom water inlet and outlet type full glass heating and temperature sensing container - Google Patents

Bottom water inlet and outlet type full glass heating and temperature sensing container Download PDF

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Publication number
CN218243861U
CN218243861U CN202221431327.0U CN202221431327U CN218243861U CN 218243861 U CN218243861 U CN 218243861U CN 202221431327 U CN202221431327 U CN 202221431327U CN 218243861 U CN218243861 U CN 218243861U
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container
water
hole
electric heating
full glass
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CN202221431327.0U
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程克勇
李寿林
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Fujian Huilun Infant And Child Articles Co ltd
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Fujian Huilun Infant And Child Articles Co ltd
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Abstract

The utility model relates to a bottom discrepancy water formula all glass heating and temperature sensing container, its characterized in that: including the full glass container of concavity and the fixed electric heating plate of establishing in full glass container bottom surface, the coating has the heat-conducting glue layer between electric heating plate and the full glass container bottom surface to conduct the heat with electric heating plate inside the full glass container through heat-conducting glue layer and full glass container bottom, electric heating plate is last to wear to be equipped with the oral siphon and to be used for detecting the temperature sensor of full glass container internal water temperature, is equipped with the via hole that is used for the water hole of crossing that is used for with the oral siphon intercommunication and is used for penetrating the temperature sensor on full glass container. Because the water in the container does not contact the metallic electric heating plate and the container is made of glass, the influence on the quality of water to be heated can be reduced or avoided, meanwhile, the water does not need to be added manually, and the use is convenient.

Description

Bottom water inlet and outlet type full glass heating and temperature sensing container
The technical field is as follows:
the utility model relates to a bottom water inlet and outlet type full glass heating and temperature sensing container.
Background art:
at present, in water heating containers for milk conditioners, health preserving kettles, electric kettles, tea boilers and the like on the market, heating elements made of metal materials are usually installed in the containers, and water to be heated is directly contacted with the heating elements, so that the heating elements made of metal can influence the quality of the heated water.
In addition, some of the all-glass heating containers disclosed in the prior art require artificial water addition before heating, and thus are not convenient to use.
The invention content is as follows:
in view of the above existing problem, the utility model provides a bottom discrepancy water formula all-glass heating and temperature sensing container, this bottom discrepancy water formula all-glass heating and temperature sensing container reasonable in design are favorable to facilitating the use and reduce the influence to heating the water quality.
The utility model is realized by adopting the following scheme,
the utility model discloses bottom discrepancy water formula all glass heating and temperature sensing container, its characterized in that: including the full glass container of concavity and the fixed electric heating plate of establishing in full glass container bottom surface, the coating has the heat-conducting glue layer between electric heating plate and the full glass container bottom surface to conduct the heat with electric heating plate inside the full glass container through heat-conducting glue layer and full glass container bottom, electric heating plate is last to wear to be equipped with the oral siphon and to be used for detecting the temperature sensor of full glass container internal water temperature, is equipped with the via hole that is used for the water hole of crossing that is used for with the oral siphon intercommunication and is used for penetrating the temperature sensor on full glass container.
Furthermore, a filter screen is arranged on the water inlet pipe or a channel of the water inlet pipe communicated with the inside of the all-glass container.
Furthermore, the pipe orifice of the water inlet pipe is embedded on the electric heating plate.
Further, above-mentioned electric heating plate includes plate body and the upper shield plate body of cover on the plate body down, and electric heating plate's heating element fixes the lower surface at plate body down, be equipped with first ladder hole down on the plate body, the mouth of pipe of oral siphon has the outward flange, the outward flange inlays in the upper portion slotted hole of first ladder hole, and the body of oral siphon is worn to establish in the lower part through-hole of first ladder hole, be equipped with second ladder hole on the upper shield plate body, be equipped with filter screen in the upper portion slotted hole of second ladder hole, the lower surface pressure of upper shield plate body is put on the orificial terminal surface of oral siphon to spacing oral siphon axial displacement.
Furthermore, the diameter of the through hole at the lower part of the second stepped hole is equivalent to the inner diameter of the water inlet pipe, and the filter mesh is pressed by the bottom surface of the all-glass container and limited in the groove hole at the upper part of the second stepped hole so as to limit the axial movement of the filter mesh.
Furthermore, the upper part of the temperature sensor is in a stepped cylindrical shape, a third stepped hole is formed in the electric heating plate, and a waterproof sealing ring is arranged between the third stepped hole and the stepped cylindrical shape of the temperature sensor.
Furthermore, the all-glass container is a cup body or a kettle body which is integrally formed by glass, and a layer of heat-conducting coating is coated on the bottom surface of the all-glass container.
Furthermore, the surface flatness tolerance of the heat-conducting coating is 0.02-0.30mm; the electric heating plate is a PTC heating body.
Further, the temperature sensor is an NTC temperature sensor.
Furthermore, the water inlet pipe is communicated with the output end of the water pump through a pipeline.
The utility model discloses bottom discrepancy water formula all glass heating and temperature sensing container's application method, pass through the pipe connection water pump with the oral siphon, or have the running water exit end of switch through the pipe connection, when needs add water, the switch through starting the water pump or opening the running water realizes adding water, water gets into in the container through the oral siphon, then start electric heating plate and generate heat, the heat of electric heating plate conducts in the container through heat-conducting adhesive layer and all glass container bottom, the realization is to the heating of water, detect the interior water temperature of container after up to standard at the temperature sensor, cut off the power supply of electric heating plate promptly.
Because the water in the container does not contact the metallic electric heating plate and the container is made of glass, the influence on the quality of water to be heated can be reduced or avoided, meanwhile, the water does not need to be added manually, and the use is convenient.
Description of the drawings:
the utility model will be further explained with the attached drawings;
FIG. 1 is a perspective view of the present invention;
fig. 2 is a perspective view of another perspective of the present invention;
FIG. 3 is an exploded view of FIG. 2;
fig. 4 is a cross-sectional view of the present invention;
FIG. 5 is a top view of FIG. 4;
fig. 6 is a partial view of fig. 4.
The specific implementation mode is as follows:
the present invention will be further described with reference to the accompanying drawings and the following detailed description.
The utility model discloses the whole glass heating of bottom discrepancy water formula and temperature sensing container include the whole glass container 1 of concavity and the fixed electric heating plate 2 of establishing in the whole glass container bottom surface, and the whole body of adoption glass of whole glass container is made, and the whole glass container can be drinking cup or kettle, and its periphery can cladding plastics shell cover etc. and electric heating plate 2 is located the below of whole glass container bottom surface, and not with hot water contact.
The coating has heat-conducting adhesive layer 3 between electric heating plate and the full glass container bottom surface, and inside this heat-conducting adhesive layer 3 can conduct the heat that electric heating plate produced to full glass container through heat-conducting adhesive layer and full glass container bottom, and this heat-conducting adhesive layer 3's effect lies in bonding electric heating plate and full glass container bottom surface, has the effect of heat conduction simultaneously, and this heat-conducting adhesive layer 3 does not describe here for having the glue of extensive application now.
Wear to be equipped with the oral siphon 4 and be used for detecting temperature sensor 5 of temperature in the full glass container on electric heating plate, this temperature sensor can be NTC temperature sensor, be equipped with on full glass container be used for with the oral siphon intercommunication cross water hole 6 and be used for penetrating the via hole 7 of temperature sensor, through this oral siphon 4 and cross water hole 6, can be with waiting to add in the hot water input full glass container, the oral siphon 4's the delivery port that the water inlet end can pass through the pipe connection water pump, or can pass through the delivery port of pipe connection running water, of course, the play water that realizes full glass container 1 through the oral siphon also can, it is more convenient and controllable to carry out water through the water pump, and go into water and go out water and all can realize control, for the embodiment of preferred, it is opened and close to this water pump accessible circuit control.
In order to reduce the impurities input into the water to be heated, the filter mesh 8 is arranged on the water inlet pipe or the channel of the water inlet pipe communicated into the full glass container, the filter mesh 8 can filter the impurities in the water and the like, and the effect of improving the water quality is achieved, the filter mesh 8 can be arranged at the inlet end or the outlet end of the water inlet pipe or can be arranged on the channel of the water inlet pipe communicated into the full glass container, namely the installation position of the filter mesh 8 is not limited to the position; the material of the filter mesh sheet 8 may be a sheet-like filter membrane, a rigid filter membrane, a filter net, or the like.
For reasonable in design, the mouth of pipe of above-mentioned oral siphon can inlay and establish on electric heating plate, and the mode on electric heating plate is inlayed to the mouth of pipe of this oral siphon, can adopt the mouth of pipe adhesion or the buckle of oral siphon to connect on electric heating plate, provides a mouth of pipe below and inlays the concrete structure on electric heating plate.
Above-mentioned electric heating plate 2 includes plate body 201 and the upper cover plate body 202 of cover on the plate body down, and lower plate body 201 is bipartite part with upper cover plate body 202, can all adopt materials such as aluminum alloy to make, and both can realize connecting through modes such as screw lock solid or bonding fixation, and electric heating plate's heating element 203 can be fixed at the lower surface of plate body down through welding or integrative casting shaping, be equipped with first shoulder hole 204 down on the plate body, the mouth of pipe of oral siphon 4 has outward flange 401, the outward flange inlays in the upper portion slotted hole 205 of first shoulder hole, and the body of oral siphon is worn to establish in the lower part through-hole 206 of first shoulder hole, and the lower surface pressure through first shoulder hole and upper cover plate body is put on the orificial terminal surface of oral siphon, can restrict the axial displacement of oral siphon.
The upper cover plate body 202 is provided with a second stepped hole 207, a filter mesh 8 is arranged in an upper slotted hole 208 of the second stepped hole 207, and the filter mesh 8 is pressed by the bottom surface of the all-glass container and limited in the upper slotted hole of the second stepped hole so as to limit the axial movement of the filter mesh.
The diameter of the lower through hole of the second stepped hole 207 may be equal to the inner diameter of the water inlet pipe, and certainly, the use is not affected by a little larger or smaller through hole.
The upper part of the temperature sensor 5 is a stepped cylinder shape, the upper end of the temperature sensor can be a spherical surface, a third stepped hole 209 is arranged on the electric heating plate, a waterproof sealing ring 210 is arranged between the third stepped hole and the stepped cylinder shape of the temperature sensor, and water leakage can be prevented through the waterproof sealing ring 210.
Furthermore, the full glass container can be a cup body or a kettle body which is integrally formed by glass, the full glass container is adopted, so that the quality of water can be ensured, and the bottom surface of the full glass container is coated with a heat-conducting coating which has the thickness of 0.005-0.5mm.
Furthermore, the tolerance of the surface flatness of the heat-conducting coating is 0.02-0.30mm; the electric heating plate is a PTC heating body, and the flatness tolerance of the surface of the electric heating plate, which is in contact with the heat-conducting coating, is also 0.02-0.30mm; the better flatness tolerance of the two is beneficial to increasing the contact area and improving the heat conduction efficiency.
The utility model discloses a method for manufacturing a bottom water inlet and outlet type all-glass heating and temperature sensing container, which comprises the steps of firstly processing and manufacturing a glass blank of an all-glass container 1, namely drilling a water hole 6 and a via hole 7 on the outer bottom surface of the glass blank, grinding the outer bottom surface, then coating a heat conducting coating on the outer bottom surface and drying; the electric heating plate 2 provided with the water inlet pipe 4 is assembled, namely the water inlet pipe 4 is placed in a first stepped hole on the lower plate body 201, the water inlet end of the water inlet pipe 4 extends out of the lower plate body, the upper cover plate body 202 covers the lower plate body 201, the lower plate body 201 and the upper cover plate body 202 are locked through a screw, and then the temperature sensor 5 sleeved with the waterproof sealing ring 210 is placed in the through hole 7 and locked through the screw; the surface coating of electric heating plate 2 that will assemble is with the heat conduction glue, with electric heating plate 2 and 1 bottom surface bonding stoving of full glass container, accomplishes promptly the utility model discloses the bottom discrepancy water formula full glass heating and the equipment of temperature sensing container.
The utility model discloses bottom discrepancy water formula full glass heating and temperature sensing container's application method, pass through the tube coupling water pump with the oral siphon, or the running water exit end that has the switch through the tube coupling, when needs add water, realize adding water through the switch that starts the water pump or open the running water, water is in oral siphon gets into the container, then start electric heating plate and generate heat, electric heating plate's heat is conducted in the container through heat-conducting adhesive layer and full glass container bottom, the realization is to the heating of water, detect the interior water temperature of container back up to standard at the temperature sensor, cut off electric heating plate's power supply promptly.
Because the water in the container does not contact the metallic electric heating plate and the container is made of glass, the influence on the quality of water to be heated can be reduced or avoided, meanwhile, the water does not need to be added manually, and the use is convenient.
It should be finally noted that the above examples are only intended to illustrate the technical solution of the present invention and not to limit it; although the present invention has been described in detail with reference to preferred embodiments, it should be understood by those skilled in the art that: the invention can be modified or equivalent substituted for some technical features; without departing from the spirit of the present invention, it should be understood that the scope of the claims is intended to cover all such modifications and variations.

Claims (10)

1. The utility model provides a bottom goes out full glass heating of water formula and temperature sensing container which characterized in that: including the full glass container of concavity and the fixed electric heating plate of establishing in full glass container bottom surface, the coating has the heat-conducting glue layer between electric heating plate and the full glass container bottom surface to conduct the heat of electric heating plate inside the full glass container through heat-conducting glue layer and full glass container bottom, wear to be equipped with the oral siphon on the electric heating plate and be used for detecting the temperature sensor of temperature in the full glass container, be equipped with the via hole that is used for penetrating the temperature sensor with the water hole of crossing of oral siphon intercommunication on the full glass container.
2. The bottom entry and exit water type all-glass heating and temperature sensing container of claim 1, wherein: and a filter mesh is arranged on the water inlet pipe or a channel of the water inlet pipe communicated with the inside of the all-glass container.
3. The bottom entry and exit type all-glass heating and temperature sensing container according to claim 1 or 2, wherein: the pipe orifice of the water inlet pipe is embedded on the electric heating plate.
4. The bottom entry and exit type all-glass heating and temperature sensing container according to claim 1 or 2, wherein: electric heating plate includes plate body and the upper shield plate body of cover on plate body down, and electric heating plate's heating element fixes the lower surface at plate body down, be equipped with first ladder hole down on the plate body, the mouth of pipe of oral siphon has the outward flange, the outward flange inlays in the upper portion slotted hole of first ladder hole, and the body of oral siphon is worn to establish in the lower part through-hole of first ladder hole, be equipped with second ladder hole on the upper shield plate body, be equipped with filter screen in the upper portion slotted hole of second ladder hole, the lower surface pressure of upper shield plate body is put on the orificial terminal surface of oral siphon to spacing oral siphon axial displacement.
5. The bottom entry and exit water type all-glass heating and temperature sensing container of claim 4, wherein: the diameter of the through hole at the lower part of the second stepped hole is equivalent to the inner diameter of the water inlet pipe, and the filter mesh is pressed by the bottom surface of the all-glass container and limited in the groove hole at the upper part of the second stepped hole so as to limit the axial movement of the filter mesh.
6. The bottom entry and exit water type all-glass heating and temperature sensing container of claim 5, wherein: the upper portion of temperature sensor is ladder cylinder shape, is equipped with third ladder hole on electric heating plate, is equipped with waterproof sealing washer between the ladder cylinder shape of third ladder hole and temperature sensor.
7. The bottom entry and exit water type all-glass heating and temperature sensing container of claim 6, wherein: the full glass container is a cup body or a kettle body which is integrally formed by glass, and a layer of heat conducting coating is coated on the bottom surface of the full glass container.
8. The bottom entry and exit water type all-glass heating and temperature sensing container of claim 7, wherein: the surface flatness tolerance of the heat-conducting coating is 0.02-0.30mm; the electric heating plate is a PTC heating body.
9. The bottom entry and exit type all-glass heating and temperature sensing container according to claim 1 or 2, wherein: the temperature sensor is an NTC temperature sensor.
10. The bottom entry and exit type all-glass heating and temperature sensing container according to claim 1 or 2, wherein: the water inlet pipe is communicated with the output end of the water pump through a pipeline.
CN202221431327.0U 2022-06-09 2022-06-09 Bottom water inlet and outlet type full glass heating and temperature sensing container Active CN218243861U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221431327.0U CN218243861U (en) 2022-06-09 2022-06-09 Bottom water inlet and outlet type full glass heating and temperature sensing container

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221431327.0U CN218243861U (en) 2022-06-09 2022-06-09 Bottom water inlet and outlet type full glass heating and temperature sensing container

Publications (1)

Publication Number Publication Date
CN218243861U true CN218243861U (en) 2023-01-06

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ID=84671084

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221431327.0U Active CN218243861U (en) 2022-06-09 2022-06-09 Bottom water inlet and outlet type full glass heating and temperature sensing container

Country Status (1)

Country Link
CN (1) CN218243861U (en)

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