CN210204437U - Electric kettle - Google Patents

Electric kettle Download PDF

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Publication number
CN210204437U
CN210204437U CN201720579354.5U CN201720579354U CN210204437U CN 210204437 U CN210204437 U CN 210204437U CN 201720579354 U CN201720579354 U CN 201720579354U CN 210204437 U CN210204437 U CN 210204437U
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China
Prior art keywords
spout
protrusion
electric kettle
wall
upper edge
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CN201720579354.5U
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Chinese (zh)
Inventor
Xianping Xu
徐先平
Yun Liao
廖云
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Priority to CN201720579354.5U priority Critical patent/CN210204437U/en
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Abstract

The utility model provides an electric kettle, include: spout (10) and inner bag (20) of splendid attire liquid, spout (10) set up on the lateral wall of inner bag (20), be provided with at least one arch (30) on outer wall (100) of spout (10). This insulating pot through set up at least one arch (30) that outwards stretches out on outer wall (100) at hu zui (10), this arch (30) butt is on the frock, and then avoids hu zui (10) landing in the clearance of frock and inner bag (20), has improved the installation reliability of hu zui (10).

Description

Electric kettle
Technical Field
The utility model relates to the technical field of household appliances, especially, relate to an electric kettle.
Background
As a common water-containing heating container, the electric kettle is fast in heating, safe, reliable, simple to use and convenient to carry, and becomes a small household appliance with high use frequency, and people have higher and higher requirements on various aspects of the electric kettle.
The electric kettle comprises an inner container, a spout and a shell, wherein in the installation process, the spout is welded on the inner container, and then the shell is installed on the outer side of the inner container. When the spout is welded on the inner container, firstly, a tool is needed to fix the spout on the inner container, and after the spout and the inner container are fixed, the spout is welded on the inner container by using a welding gun and the like.
However, in the prior art, when the spout is welded on the inner container, the spout can slide off from the gap between the tool and the inner container, and the spout cannot be welded at the preset position of the inner container.
SUMMERY OF THE UTILITY MODEL
In order to solve at least one problem mentioned in the background art, the utility model provides an electric kettle, through set up at least one arch of outwards stretching out on the outer wall of hu zui, this arch can the butt on the frock, and then avoids hu zui landing in the clearance of frock and inner bag, has improved the installation reliability of hu zui.
The utility model provides an electric kettle, include: the kettle spout comprises a kettle spout and a liquid containing inner container, wherein the kettle spout is arranged on the side wall of the inner container, and at least one bulge is arranged on the outer wall of the kettle spout.
As above electric kettle, through set up the arch on the outer wall at hu zui, in electric kettle's installation, when hu zui was placed on the frock, the arch can the butt on the frock, and then avoids hu zui landing from the clearance of frock and inner bag, realizes the accurate positioning to hu zui, improves electric kettle's structural reliability.
In an embodiment of the present invention, the outer wall of the spout includes the upper edge of the spout, the protrusion is disposed on the upper edge, and the horizontal surface extends outward, thereby preventing the spout from slipping from the gap between the tool and the inner container.
In another embodiment of the utility model, the protrusion is arranged at the two ends of the upper edge, so that the protrusion at the two ends of the upper edge can be shielded by the shell after the shell is enclosed on the inner container, and the appearance of the spout is not affected.
Optionally, the protrusion is disposed in the middle of the upper edge.
In another embodiment of the present invention, the spout has a folded edge at the connection with the inner container, the protrusion is disposed on the folded edge, and the protrusion of the structure can be shielded by the outer shell when the outer shell is disposed on the inner container, without affecting the appearance of the spout.
The utility model discloses a further embodiment, the hem include first hem and with the second hem of first hem symmetry, protruding symmetry sets up first hem with on the second hem, and then improved the reliability of being connected of arch and frock.
Optionally, the protrusion and the spout are integrally formed. Therefore, the connection between the bulge and the spout is reliable, and the connection reliability between the bulge and the tool is further improved.
In another embodiment of the present invention, the protrusion is formed by bending the upper edge outwards; or the bulge is formed by bending the folded edge outwards. Like this with some as the arch on kettle mouth border, can avoid processing alone the protruding problem that increases insulating pot manufacturing cost, and then simplified the structure of insulating pot, reduced the manufacturing cost of insulating pot.
Optionally, the middle part of the upper edge protrudes outwards to form the protrusion.
Optionally, the protrusion is detachably connected with the spout, so that the position of the protrusion on the spout can be conveniently changed at any time according to actual conditions during installation, the assembly flexibility is realized, the protrusion can be recycled, and the processing cost of the electric kettle is reduced.
The structure of the present invention and other objects and advantages thereof will be more clearly understood from the following description of the preferred embodiments taken in conjunction with the accompanying drawings.
Drawings
Fig. 1 is a schematic structural diagram of a first embodiment of an electric kettle provided by the present invention;
fig. 2 is another schematic structural diagram of a first embodiment of an electric kettle provided by the present invention;
FIG. 3 is a schematic structural view of the electric kettle provided by the present invention, wherein the outer shell is enclosed on the inner container;
fig. 4 is a schematic structural diagram of a second embodiment of the electric kettle provided by the present invention;
FIG. 5 is a front view of the spout shown in FIG. 4;
fig. 6 is a left side view of the spout shown in fig. 4.
Description of reference numerals:
10-a kettle mouth; 20, an inner container; 30-bulge; 100-outer wall; 110 — top edge; 120-folding; 121-first folding; 122 — second hem; 40-a housing.
Detailed Description
Fig. 1 is a schematic structural view of a first embodiment of an electric kettle provided by the present invention, fig. 2 is another schematic structural view of the first embodiment of the electric kettle provided by the present invention, and fig. 3 is a schematic structural view of an enclosure of the electric kettle provided by the present invention on the inner container. As shown in fig. 1 to 3, the electric kettle of the present embodiment includes: the kettle spout comprises a kettle spout 10 and a liquid containing inner container 20, wherein the kettle spout 10 is arranged on the side wall of the inner container 20, and at least one bulge 30 is arranged on the outer wall 100 of the kettle spout 10.
At present, when the spout 10 is welded on the inner container 20, the spout 10 is firstly fixed on the inner container 20 by using a tool, the tool is usually formed by using a profiling technology, namely, the tool is provided with a groove with a shape opposite to that of the outer wall 100 of the spout 10, and when the spout 10 is placed on the tool, the outer wall 100 of the spout 10 just fits the groove of the tool completely.
However, since the spout 10 has a small thickness, when the spout 10 is placed in the fixture, the spout 10 is easily slid from the gap between the fixture and the inner container 20, so that the position where the spout 10 is welded to the inner container 20 deviates from the preset position, for example, to the left or to the right. Thus, when the outer shell 40 is subsequently fitted to the spout 10, the gap between the outer shell 40 and the spout 10 is not uniform, and even the outer shell 40 cannot be mounted on the inner container 20, which results in a defective product. Meanwhile, the spout 10 is not corresponding to the handle due to the offset of the spout 10, and when the handle is lifted to pour water, the boiling liquid may be scattered from the place other than the spout 10, which may scald the user.
In order to solve the technical problem, the protrusion 30 is arranged on the outer wall 100 of the spout 10, in the installation process of the electric kettle, when the spout 10 is placed on a tool, the protrusion 30 can abut against the tool, so that the spout 10 is prevented from sliding down from a gap between the tool and the inner container 20, the spout 10 is accurately positioned, and the structural reliability of the electric kettle is improved.
The position of the protrusion 30 on the outer surface of the spout 10 is not limited in this embodiment, and is determined according to the shape of the tool. Meanwhile, the number and shape of the protrusions 30 are not limited in this embodiment, and are specifically set according to actual needs. For example, the shape of the protrusion 30 may be a rectangular block, a hemisphere, or the like.
The protrusion 30 of the present embodiment may be non-detachably connected to the outer wall 100 of the spout 10 by welding or the like. Therefore, when the spout 10 is welded on the inner container 20, the protrusion 30 is also arranged on the outer wall 100 of the spout 10, the connection between the protrusion 30 and the spout 10 is reliable, the spout 10 can be stably hung on a tool, and the mounting accuracy of the spout 10 is further improved.
Optionally, the protrusion 30 of the present embodiment may be detachably connected to the outer wall 100 of the spout 10 by a clamping or clipping manner. Thus, when the spout 10 is welded to the inner container 20, the protrusion 30 can be removed without affecting the appearance of the spout 10. Meanwhile, the detachable connection mode is convenient to replace the position of the bulge 30 on the spout 10 at any time according to actual conditions during installation so as to realize the flexibility of assembly, and the bulge 30 can be recycled, so that the processing cost of the electric kettle is reduced.
The outer wall 100 of the spout 10 is a surface deviating from the inner container 20, and the outer wall 100 of the spout 10 includes an upper edge 110 of the spout 10, a folded edge 120 connecting the spout 10 and the inner container 20, and an arc surface enclosed by the upper edge 110 and the folded edge 120. The embodiment can refer to the shape of the fixture and the position relationship between the fixture and the spout 10, and the protrusion 30 can be arranged at any position of the outer wall 100 of the spout 10.
In the installation process of the electric kettle, the opening of the inner container 20 of the electric kettle faces upwards, and when the electric kettle is in a normal use state, the protrusion 30 is arranged at the intersection position of the outer wall 100 of the spout 10 and the top edge of the tool, the protrusion 30 is hung on the tool, and the spout 10 is prevented from sliding down from the gap between the tool and the inner container 20.
In a possible implementation manner of this embodiment, when the fixture covers the entire outer wall 100 of the spout 10, the protrusion 30 is disposed on the upper edge 110 of the spout 10 and horizontally extends outward, so that the spout 10 is hung on the fixture.
Specifically, as shown in fig. 1, when the shape of the fixture groove is opposite to the shape of the spout 10 and covers the entire outer wall 100 of the spout 10, a protrusion 30 may be disposed on an upper edge 110 of the spout 10, and the protrusion 30 is hung on a top edge of the fixture, so as to prevent the spout 10 from sliding down from a gap between the fixture and the inner container 20. For example, a plurality of protrusions 30 are uniformly arranged on the upper edge 110, or a plurality of protrusions 30 are symmetrically arranged, or one protrusion 30 is arranged in the middle of the upper edge 110, and the protrusion 30 only needs to be hung on the protrusion 30, and is not likely to protrude too much. The present embodiment also does not limit the specific size of the protrusion 30, the specific setting position of the protrusion 30 on the upper edge 110, and the number of the protrusions 30, and is specifically set according to the actual situation.
Alternatively, the protrusion 30 may be disposed at the middle portion of the upper edge 110.
Alternatively, an even number of protrusions 30 may be provided on the upper edge 110, and the protrusions 30 may be symmetrically provided at both ends of the upper edge 110. Because the two ends of the upper edge 110 are connected with the inner container 20, after the outer shell 40 is enclosed on the inner container 20, the outer shell 40 can shield the protrusions 30 at the two ends of the upper edge 110, thereby not affecting the appearance of the spout 10. Meanwhile, the protrusions 30 are provided at both ends of the upper edge 110 without affecting the user's use.
In another possible implementation manner of this embodiment, when the fixture covers part of the outer wall 100 of the spout 10, the protrusion 30 is disposed at a junction of the outer wall 100 of the spout 10 and a top edge of the fixture, and the protrusion 30 is hung on the fixture.
For example, the fixture is clamped in the middle of the spout 10, the intersection position of the outer wall 100 of the spout 10 and the top edge of the fixture is an arc line a-a shown in fig. 2, and the protrusion 30 needs to be arranged on the arc line a-a in order to hang the spout 10 on the fixture. Therefore, when the tool is clamped in the middle of the spout 10, the protrusion 30 can be hung on the top edge of the tool, and the spout 10 can be prevented from sliding off.
Optionally, the protrusion 30 of the present embodiment may also be disposed on the folded edge 120 of the spout 10 connected to the inner container 20. For example, the projection 30 may be provided at the uppermost portion of the flange 120 (i.e. where it joins the upper edge 110) when the fixture is wrapped around the entire spout 10. The bulge 30 with the structure can be shielded by the shell 40 when the shell 40 is arranged on the inner container 20, and the appearance of the spout 10 is not influenced. When the tooling is wrapped around a portion of the outer wall 100 of the spout 10, as shown in fig. 2, the projections 30 may be disposed at both ends of the arc a-a.
As shown in fig. 1 and 2, when the number of the protrusions 30 is an even number, the flaps 120 include a first flap 121 and a second flap 122 symmetrical to the first flap 121, and the protrusions 30 are symmetrically disposed on the first flap 121 and the second flap 122.
Specifically, the present embodiment refers to the left half of the fold 120 as a first fold 121 and the right half as a second fold 122. When the number of the protrusions 30 is even, for example, two, the protrusions 30 may be symmetrically disposed on the first folding edge 121 and the second folding edge 122, so as to improve the reliability of the connection between the protrusions 30 and the tool.
Fig. 4 is a schematic structural view of an embodiment of an electric kettle according to the present invention, fig. 5 is a front view of a spout shown in fig. 4, and fig. 6 is a left side view of the spout shown in fig. 4. On the basis of the above embodiments, the protrusion 30 of the present embodiment is integrally formed with the spout 10. Therefore, the connection between the bulge 30 and the spout 10 is reliable, and the connection reliability between the bulge 30 and the tool is further improved.
In one possible implementation of this embodiment, the protrusion 30 may be formed by bending the edge of the spout 10 outward, and the edge includes an upper edge 110 and a folded edge 120. For example, when the protrusion 30 is disposed on the upper edge 110 of the spout 10, the upper edge 110 may be bent outward to form the protrusion 30. When the protrusions 30 are provided on the flange 120, the flange 120 may be bent outward to form the protrusions 30.
Alternatively, as shown in fig. 4, when the tooling covers the entire outer wall 100 of the spout 10, a protrusion 30 is provided at each end of the flange 120. For example, the first folding edge 121 may be cut at a position close to the upper edge 110 of the spout 10 along the horizontal direction to form a small-sized notch, and then the cut portion is bent outward to form a protrusion 30. Similarly, a small-sized notch is horizontally cut at a symmetrical position of the second flange 122, and the cut flange 120 is bent outward to form another protrusion 30. It should be noted that the size of the projections 30 cut on the flange 120 is small, and does not affect the shape and structural stability of the spout 10. In the embodiment, a part of the folded edge 120 is used as the protrusion 30, so that the problem that the production cost of the electric kettle is increased by independently processing the protrusion 30 can be avoided, the structure of the electric kettle is simplified, and the production cost of the electric kettle is reduced.
Similarly, when the tooling covers the entire outer wall 100 of the spout 10, a gap may be cut at the upper edge 110 of the spout 10 along the vertical direction, and the cut upper edge 110 is bent outward to form the protrusion 30. For example, a notch is cut at each end of the upper edge 110 in the vertical direction, and the cut upper edge 110 is bent outward to form the protrusion 30.
The insulating pot of this embodiment, through set up arch 30 on outer wall 100 at hu zui 10, at the in-process of installation hu zui 10, arch 30 on hu zui 10 can be hung and is established on the frock, and then avoids hu zui 10 landing from the clearance between frock and the inner bag 20, and then has realized the accurate positioning of hu zui 10, has improved the installation reliability of insulating pot, and then has improved the safety in utilization and the outward appearance aesthetic property of insulating pot.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the embodiments of the present invention, and not to limit the same; although embodiments of the present invention have been described in detail with reference to the foregoing embodiments, those skilled in the art will understand that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the embodiments of the present invention.

Claims (8)

1. An electric kettle comprising: spout (10) and inner bag (20) of splendid attire liquid, spout (10) set up on the lateral wall of inner bag (20), its characterized in that, be provided with at least one arch (30) with the intersection of frock topside on outer wall (100) of spout (10), the frock be used for with spout (10) are installed on the lateral wall of inner bag (20).
2. An electric kettle as claimed in claim 1, characterized in that the outer wall (100) of the spout (10) comprises an upper edge (110) of the spout (10), the protrusion (30) being provided on the upper edge (110) and projecting horizontally outwards.
3. An electric kettle as claimed in claim 2, characterized in that the protrusions (30) are provided at both ends of the upper rim (110).
4. An electric kettle as claimed in claim 2, characterized in that the protrusion (30) is arranged in the middle of the upper edge (110).
5. An electric kettle as claimed in claim 2, characterized in that the connection of the spout (10) to the inner container (20) has a fold (120), the projection (30) being provided on the fold (120).
6. An electric kettle according to claim 5, characterized in that said flange (120) comprises a first flange (121) and a second flange (122) symmetrical to said first flange (121), said protrusions (30) being symmetrically arranged on said first flange (121) and on said second flange (122).
7. An electric kettle as claimed in claim 5, characterized in that said protrusion (30) is formed by bending said upper edge (110) outwards;
or the bulge (30) is formed by bending the folded edge (120) outwards.
8. An electric kettle as claimed in claim 2, characterized in that the middle of the upper rim (110) is outwardly convex forming the protrusion (30).
CN201720579354.5U 2017-05-23 2017-05-23 Electric kettle Active CN210204437U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720579354.5U CN210204437U (en) 2017-05-23 2017-05-23 Electric kettle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720579354.5U CN210204437U (en) 2017-05-23 2017-05-23 Electric kettle

Publications (1)

Publication Number Publication Date
CN210204437U true CN210204437U (en) 2020-03-31

Family

ID=69913911

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720579354.5U Active CN210204437U (en) 2017-05-23 2017-05-23 Electric kettle

Country Status (1)

Country Link
CN (1) CN210204437U (en)

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