CN219045766U - Self-adaptive movable pot rack and kitchen range using same - Google Patents
Self-adaptive movable pot rack and kitchen range using same Download PDFInfo
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- CN219045766U CN219045766U CN202222461147.3U CN202222461147U CN219045766U CN 219045766 U CN219045766 U CN 219045766U CN 202222461147 U CN202222461147 U CN 202222461147U CN 219045766 U CN219045766 U CN 219045766U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B40/00—Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers
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Abstract
The utility model provides a self-adaptation activity pot frame and use its cooking utensils, includes support and pot stabilizer blade, the pot stabilizer blade is installed through the pivot rotationally on the support, still include and gather can the ring, the support set up in gather can the inner wall of ring, the pot stabilizer blade is around pivot rotation angle is passed through respectively gather can the top edge of ring with gather can the inner wall of ring carry out spacingly, thereby will the pot stabilizer blade is limited between first position and second position. Compared with the prior art, the technical scheme provided by the utility model has the following advantages: high energy efficiency value, simple structure and production process, convenient operation, less parts, clean appearance and low production cost.
Description
Technical Field
The utility model relates to the field of pot holders, in particular to a self-adaptive movable pot holder and a kitchen range using the same.
Background
At present, most of the existing movable pot holders in the market cannot effectively prevent wind and gather energy, for example, chinese patent application publication No. CN202118970U entitled kitchen range movable pot holder discloses: including base (4) and stabilizer blade (1) more than 3, pot frame still includes support (3) equal with the quantity of stabilizer blade (1), and the outer edge of base (4) is evenly or symmetric distribution is followed to support (3) to with base (4) fixed connection, the middle part of stabilizer blade (1) is articulated with support (3). According to the technical scheme, heat of flames at the furnace end cannot be effectively gathered, wind prevention is not achieved, and therefore the energy efficiency value is not high.
Therefore, many manufacturers are devoted to developing a pot rack with high energy efficiency, for example, the Chinese patent with the grant of publication number of CN202647931U entitled to a novel heat preservation and insulation cover for gas cookers discloses: comprises a heat insulation ring (1), an adjustable furnace frame main frame (2), a movable frame (3), fixing plates (4), fixing clamps (5), a pot support (6), a lower fixing bolt (7) and a steel ring (9), wherein the heat insulation ring (1) is in a round table shape with the top diameter larger than or equal to the bottom diameter, the inner wall of the heat insulation ring (1) is a curved surface formed by oblique lines or multi-section oblique fold lines, heat insulation ring grooves (14) which are mutually embedded with the adjustable furnace frame are arranged in the heat insulation ring (1), the number of the heat insulation ring grooves (14) is more than or equal to 3, the middle position of the adjustable furnace frame main frame (2) is provided with main frame tooth grooves (11) which are matched with the tooth grooves (12) of the movable frame, the number of the adjustable furnace frame main frame (2) is more than or equal to 3, the movable frame (3) is arranged at the middle lower part of the adjustable furnace frame main frame (2), the movable frame tooth grooves (12) are arranged at the outer side of the upper part of the movable frame (3), the number of the movable frame tooth grooves (3) is more than or equal to 3 through the number of the movable frame tooth grooves (12) and the adjustable furnace frame main frame (2) which are mutually embedded with the adjustable furnace frame main frame (2), the number of the adjustable furnace frame main frame (2) is more than or equal to 3 is arranged at the middle position of the adjustable furnace frame main frame (2) and the adjustable furnace frame main frame (2) is arranged at the fixed at the bottom position (2), the fixing clamp (5) is movably connected with the movable frame (3) through the lower fixing bolt (7), the pot supports (6) are arranged at the upper part of the adjustable furnace frame main frame (2), the number of the pot supports (6) is equal to or more than 3 with the number of the adjustable furnace frame main frame (2), and the steel rings (9) are arranged at the lower part of the inner side of the adjustable furnace frame main frame (2) and are fixedly welded with the adjustable furnace frame main frame (2) or form an integral casting with the adjustable furnace frame main frame (2). The technical scheme of the utility model has the advantages of complex structure, large number of parts and high production cost.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model provides the pot rack and the kitchen range using the same, which have the advantages of high energy efficiency value, simple structure and production process, convenient operation, less parts, neat appearance and low production cost.
The utility model mainly adopts the following technical scheme:
the utility model provides a self-adaptation activity pot frame, includes support and pot stabilizer blade, the pot stabilizer blade is installed through the pivot rotationally on the support, still include and gather can the ring, the support set up in gather can the inner wall of ring, the pot stabilizer blade is around the rotation angle of pivot is passed through respectively gather can the top edge of ring with gather can the inner wall of ring carry out spacingly, thereby will the pot stabilizer blade is limited between first position and second position.
Wherein the pot support leg is in a triangular structure, the pivot is arranged at a position close to the vertex angle alpha, and when the pot support leg is positioned at the first position, one side adjacent edge S of the pot support leg 1 Abutting against the top edge of the energy collecting ring, opposite sides S of the pot support legs α For supporting the pot; when the pot support leg is positioned at the second position, the other side adjacent edge S of the pot support leg 2 Is abutted against the inner wall of the energy gathering ring, and one side adjacent edge S of the pot support leg 1 For supporting the pot.
Wherein the distance h between the pivot and the inner wall of the energy-gathering ring 1 Adjacent edge S of the other side of the pot support leg is away from the pivot 2 Distance h of (2) 2 Equal.
Wherein when the pot support is positioned at the second position, one side of the pot support is adjacent to the side S 1 Extending in the horizontal direction.
Wherein when the pot support is positioned at the second position, one side of the pot support is adjacent to the side S 1 The height from the upper edge of the energy gathering ring is 5-30mm.
Wherein the height of the pivot is at least 3mm higher than the height of the upper edge of the energy accumulating ring.
Wherein, the opposite sides S of the top angle alpha of the pot support leg α Is concave inwardsAn arc-shaped structure.
Wherein, the opposite sides S of the top angle alpha of the pot support leg α The anti-skid structure is also arranged on the upper part, and the anti-skid structure adopts at least one of tooth-shaped bulges, wavy bulges and punctiform bulges.
Wherein when the pot support leg is positioned at the first position, the adjacent side S of one side of the pot support leg opposite to the vertex angle alpha 1 Vertex P of (1) 1 The height of the pot support leg is lower than the adjacent side S on the other side of the pot support leg opposite to the vertex angle alpha 2 Vertex P of (1) 2 At the height of and at the vertex P 2 Above the inside of the pivot.
A kitchen range, which uses the self-adaptive movable pot rack.
According to the technical scheme of the utility model, the method has the following beneficial effects: the top edge of the energy-collecting ring and the inner wall of the energy-collecting ring are adopted to limit the pot support legs respectively, other limiting structures are not required to be arranged independently, the process flow is simple, and the production efficiency is improved correspondingly; the pot support leg adopts the triangle-shaped structure that stability is high, for the follow-up principle of utilizing "tumbler" provides convenience, conveniently takes the bottom of a round bottom pot with paste, need not the manual pot support leg of turning over, prevents to take place the scald danger.
Drawings
Fig. 1 is a schematic view of the structure of the pot stand with the pot support legs in the second position.
Fig. 2 is a schematic view of the structure of the pot stand with the pot legs in the first position.
Fig. 3 is a perspective view of the side structure of the pot rack in fig. 1.
Fig. 4 is a side structural perspective view of the pot rack of fig. 2.
FIG. 5 is a schematic top view of a support and energy collecting ring according to one embodiment.
Fig. 6 is a schematic view of the structure of the pot support.
FIG. 7 is a schematic view of a pivot structure.
FIG. 8 is a perspective view of a portion of the structure of one embodiment of the pan leg in a first position.
FIG. 9 is a perspective view of a portion of the structure of the embodiment of FIG. 8 with the pan leg in between the first and second positions.
FIG. 10 is a perspective view of a portion of the construction of the embodiment of FIG. 8 with the pan leg in a second position.
FIG. 11 is a perspective view of a portion of another embodiment of a pan leg between a first position and a second position.
FIG. 12 is a perspective view of a portion of the structure of a still further embodiment of a pan leg between a first position and a second position.
Fig. 13 is a schematic view of a kitchen range using the pot holder.
1 pot support leg, 2 support, 3 energy gathering ring, 4 pivot.
Detailed Description
The utility model is further elucidated below in connection with the accompanying drawings:
referring to fig. 1-13, an adaptive movable pot rack comprises a support and pot support legs, wherein the pot support legs are rotatably installed on the support through pivots, the pot support further comprises energy gathering rings, the support is arranged on the inner walls of the energy gathering rings, and the rotation angles of the pot support legs around the pivots are limited through top edges of the energy gathering rings and the inner walls of the energy gathering rings respectively, so that the pot support legs are limited between a first position and a second position. The structure design can limit the position by utilizing the top edge of the energy-collecting ring and the inner wall of the energy-collecting ring without independently arranging other limiting structures, and the process flow is simple. Preferably, the pot feet are provided on the inner wall of the energy gathering ring by means of a connection such as welding, riveting, etc., or by means of integral casting, in some embodiments for ease of production, the support is provided astride the top edge of the energy gathering ring in addition to the inner wall of the energy gathering ring. Preferably, the energy-collecting ring is of a closed ring type or a cone ring type (including the situation that the cone ring is inverted, such as a cone table type) so as to collect heat of the burner flame and prevent heat dissipation, and also has a windproof effect, so that the energy efficiency value of the burner flame is improved, and more preferably, the energy-collecting ring is of a circular ring type or a square ring type. Preferably, the burner also comprises supporting feet which lift the energy collecting ring by 3-15mm so as to supplement enough air for the inner flame of the burner flame, ensure full combustion and prevent harmful gas. Preferably, the support and the energy-gathering ring form a U-shaped groove structure, the groove width of the U-shaped groove is larger than the thickness of the pot support leg so that the pot support leg rotates, a through hole penetrating through the pivot is formed in the side face of the U-shaped groove structure, and the pivot is pressed by a press riveter so as to prevent the pivot from falling out of the through hole from the side face of the U-shaped groove structure. Preferably, the number of pot feet is 3-6, more preferably, the number of pot feet is 4 or 5.
Referring to fig. 6, 8-12, the pan leg has a triangular configuration with a pivot disposed near the apex angle α, and when the pan leg is in the first position, one side of the pan leg abuts the side S 1 Against the top edge of the energy-gathering ring, the opposite edge S of the pot support leg α For supporting the pot; when the pot support is positioned at the second position, the other side adjacent edge S of the pot support 2 Against the inner wall of the energy-gathering ring, and one side adjacent edge S of the pot support leg 1 For supporting the pot. Preferably, the corner angle alpha is formed with a chamfer structure, which can facilitate the rotation of the pan leg especially when a large amount of food residues or greasy dirt is accumulated. Preferably, the top edge of the energy collecting ring is provided with an adjacent side S with one side of the pot support leg 1 And the matched inclined plane ensures that the pot support leg can be propped against the upper surface more stably.
Referring to FIGS. 8-12, the pivot is spaced a distance h from the inner wall of the energy concentrating ring 1 Adjacent edge S of the other side of the pot support leg away from the pivot 2 Distance h of (2) 2 Equal. The structure design ensures that the adjacent side S of the other side of the pot support leg positioned at the second position 2 Can closely lean on the inner wall of gathering the ability ring to guarantee that the stability of support is higher.
Referring to FIGS. 1, 3 and 10, when the pan leg is in the second position, one side of the pan leg abuts the side S 1 Extending in the horizontal direction. Preferably, the included angle beta between the inner wall of the energy-gathering ring and the horizontal direction is equal to the angle alpha of the top angle, and the structural design can ensure that one side adjacent edge S of the pot support leg is adjacent to the other side 1 Extending along the horizontal direction and simultaneously further leading the adjacent edge S on the other side of the pot support leg 2 The inner wall of the energy gathering ring is abutted against the surface of the shell, the structure is more compact, and the product integrity is stronger. Preferably, the angle alpha and the angle beta can be one of acute angle, right angle or obtuse angle.
Referring to figures 1-4 and 8-13, the pot supportWhen the feet are positioned at the second position, one side adjacent edge S of the pot support leg 1 The height from the upper edge of the energy gathering ring is 5-30mm. The structural design makes one side adjacent edge S of the pot support leg 1 The bottom of the pan can be stably and compactly supported, and on the other hand, enough space can be ensured between the upper edge of the energy collecting ring and the bottom of the pan so as to supplement enough oxygen for the outer flame of the burner flame, ensure full combustion and prevent harmful gas.
Referring to fig. 1-4, 8-13, the height of the pivot is at least 3mm above the height of the upper edge of the energy gathering ring.
Referring to FIG. 6, opposite sides S of the top angle alpha of the pan leg α Is in a concave arc structure. The structural design can lead the opposite sides S of the pot support legs to be opposite α Better contains the bottom of the round bottom pot.
Referring to FIG. 6, opposite sides S of the top angle alpha of the pan leg α The upper part is also provided with an anti-skid structure, and the anti-skid structure adopts at least one of tooth-shaped bulges, wavy bulges and punctiform bulges.
Referring to FIG. 8, when the pan leg is in the first position, an adjacent side S of the pan leg opposite the apex angle alpha 1 Vertex P of (1) 1 The height of the pot leg is lower than the adjacent side S of the other side of the pot leg opposite to the vertex angle alpha 2 Vertex P of (1) 2 At the height of and at the vertex P 2 Above the inside of the pivot. The structural design can ensure that the bottom of the round bottom pot is firstly matched with the peak P positioned at the high position in the process of lowering the round bottom pot 2 Is contacted with the pot leg to rotate to make the peak point P 1 The bottom of the round bottom pot is contacted, so that the bottom of the round bottom pot can be grasped more stably, and the phenomena of pot sliding and pot turning in the cooking process are prevented. Preferably, the pan legs are arranged such that the center of gravity of the pan support is such that the apex P is when the round bottom pan is lifted 2 Restoring to above vertex P 1 So that the opposite sides S of the pot support leg can be made to be opposite by utilizing the tumbler principle α The state of being capable of receiving the newly placed round bottom pot is always kept, and the risk of scalding caused by manual operation again is avoided.
Referring to fig. 13, a stove uses the adaptive movable pot holder described above. In fig. 13, the left side shows the state when the pot holder is used in cooperation with the round bottom pot, and the right side shows the state when the pot holder is used in cooperation with the round bottom pot.
While the foregoing has been with reference to the preferred embodiments of the present utility model, it will be appreciated by those skilled in the art that changes may be made in this embodiment without departing from the principles and spirit of the utility model, the scope of which is defined in the claims and their equivalents.
Claims (10)
1. The utility model provides a self-adaptation activity pot frame, includes support and pot stabilizer blade, the pot stabilizer blade is installed through pivot rotatably on the support, its characterized in that: still include gathering can the ring, the support set up in gather can the inner wall of ring, the pot stabilizer blade is around the rotation angle of pivot is respectively through gather can the top edge of ring with gather can the inner wall of ring and carry out spacingly, thereby will the pot stabilizer blade is limited between first position and second position.
2. The adaptive movable pot rack of claim 1, wherein: the pot support leg is in a triangular structure, the pivot is arranged at a position close to the vertex angle alpha, and when the pot support leg is positioned at the first position, one side of the pot support leg is adjacent to the side S 1 Abutting against the top edge of the energy collecting ring, opposite sides S of the pot support legs α For supporting the pot; when the pot support leg is positioned at the second position, the other side adjacent edge S of the pot support leg 2 Is abutted against the inner wall of the energy gathering ring, and one side adjacent edge S of the pot support leg 1 For supporting the pot.
3. The adaptive movable pot rack of claim 2, wherein: distance h between the pivot and the inner wall of the energy-gathering ring 1 Adjacent edge S of the other side of the pot support leg is away from the pivot 2 Distance h of (2) 2 Equal.
4. The adaptive movable pot rack of claim 2, wherein: the pot support leg is positioned at theIn the second position, one side adjacent edge S of the pot support leg 1 Extending in the horizontal direction.
5. The adaptive movable pot rack of claim 4, wherein: when the pot support is positioned at the second position, one side of the pot support is adjacent to the side S 1 The height from the upper edge of the energy gathering ring is 5-30mm.
6. The adaptive movable pot rack of any one of claims 1 to 5, wherein: the height of the pivot is at least 3mm higher than the height of the upper edge of the energy accumulating ring.
7. The adaptive movable pot rack of claim 2, wherein: opposite sides S of the top angle alpha of the pot support leg α Is in a concave arc structure.
8. The adaptive movable pot rack of claim 7, wherein: opposite sides S of the top angle alpha of the pot support leg α The anti-skid structure is also arranged on the upper part, and the anti-skid structure adopts at least one of tooth-shaped bulges, wavy bulges and punctiform bulges.
9. The adaptive movable pot rack of claim 7 or 8, wherein: when the pot support is positioned at the first position, the adjacent side S of one side of the pot support opposite to the vertex angle alpha 1 Vertex P of (1) 1 The height of the pot support leg is lower than the adjacent side S on the other side of the pot support leg opposite to the vertex angle alpha 2 Vertex P of (1) 2 At the height of and at the vertex P 2 Above the inside of the pivot.
10. A stove, characterized in that: use of the adaptive movable pot holder of any one of claims 1 to 9.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222461147.3U CN219045766U (en) | 2022-09-16 | 2022-09-16 | Self-adaptive movable pot rack and kitchen range using same |
Applications Claiming Priority (1)
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CN202222461147.3U CN219045766U (en) | 2022-09-16 | 2022-09-16 | Self-adaptive movable pot rack and kitchen range using same |
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CN219045766U true CN219045766U (en) | 2023-05-19 |
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CN202222461147.3U Active CN219045766U (en) | 2022-09-16 | 2022-09-16 | Self-adaptive movable pot rack and kitchen range using same |
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- 2022-09-16 CN CN202222461147.3U patent/CN219045766U/en active Active
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