Pot rack and gas stove
By introducing a linkage component into the pot rack, multiple second supports can be switched in tandem, solving the problem of cumbersome operation of existing pot racks and improving user experience and support efficiency.
Patent Information
- Application Number
- CN202423313432.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing pot racks are cumbersome to switch positions, resulting in a poor user experience and difficulty in supporting both flat-bottomed and pointed-bottomed pans simultaneously.
Design a pot rack that uses a linkage component to connect with multiple second supports. The movement of the linkage component drives the multiple second supports to switch to different positions simultaneously, achieving stable support for flat-bottomed and pointed-bottomed pots.
The simplified support position switching operation enhances the user experience and can stably support different types of cookware at the same time, making the operation simple and efficient.
Smart Images

Figure CN223869259U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of stove technology, and in particular to a pot rack and a gas stove. Background Technology
[0002] A gas stove typically consists of a control panel, burners, and a pot rack. The burners are mounted on the control panel with their flame caps positioned above it. The pot rack is placed on the control panel, with the burner flame caps located on the inner ring of the pot rack. When cooking, the pot is placed on the pot rack for support, and flames from the flame caps heat the pot.
[0003] To enable a pot rack to support both flat-bottomed and pointed-bottomed pots, some existing pot racks have multiple first supports fixedly mounted on an energy-concentrating ring. Each first support is hinged with a second support, which can rotate relative to the first supports to switch between two different positions. When the multiple second supports are in one position, the multiple first supports can simultaneously support a flat-bottomed pot; when the multiple second supports are in the other position, they can simultaneously support a pointed-bottomed pot.
[0004] However, in the aforementioned pot rack, if the user wants to switch the position of the second support, they need to rotate multiple second supports one by one, which is cumbersome and affects the user experience. Utility Model Content
[0005] One of the technical problems solved by this utility model is to provide a pot rack that allows multiple second supports to switch positions simultaneously, making operation simple.
[0006] The second technical problem solved by this utility model is to provide a gas stove that allows multiple second supports to switch positions simultaneously, making operation simple.
[0007] The first technical problem mentioned above is solved by the following technical solution:
[0008] Pot rack, including:
[0009] Base;
[0010] Multiple first brackets are spaced apart and fixedly mounted on the base along the circumferential direction;
[0011] Multiple second supports are hinged to multiple first supports one by one. One of the first supports and the second supports is provided with a flat-bottomed pan support structure, and the other is provided with a pointed-bottomed pan support structure.
[0012] A linkage component is movably mounted on the base and connected to multiple second supports. The linkage component is movable relative to the base to drive multiple second supports to simultaneously switch to a first position or simultaneously switch to a second position. When the second support is in the first position, the pan support structure can support the pan. When the second support is in the second position, the pan support structure can support the pan.
[0013] The pot rack described in this utility model has the following advantages compared with the prior art:
[0014] The linkage mechanism in this pot holder allows multiple second supports to work together and switch to the second or first position simultaneously. Users do not need to operate each second support individually, making the operation simple, convenient, and improving the user experience.
[0015] When the pointed-bottom pan needs support, operate the linkage mechanism. The linkage mechanism moves relative to the base, causing multiple second supports to simultaneously switch to the second position. At this time, multiple pointed-bottom pan support structures work together to stably support the pointed-bottom pan. When it is necessary to switch the pointed-bottom pan support structure from the second position to the first position, operate the linkage mechanism. The linkage mechanism moves relative to the base, causing multiple second supports to simultaneously switch to the first position. At this time, multiple flat-bottom pan support structures work together to stably support the flat-bottom pan.
[0016] Users only need to operate the linkage to enable multiple second supports to work together and switch to the second or first position simultaneously. Users do not need to operate multiple second supports one by one, making the operation simple and improving the user experience.
[0017] In one embodiment, one of the linkage and the base is provided with a motion guide portion, and the other is provided with a motion guide groove that cooperates with the motion guide portion. The motion guide portion can move along the motion guide groove to allow the linkage to switch between a high position and a low position.
[0018] When the linkage is in the low position, the second bracket is in the first position, and the linkage can limit the second bracket.
[0019] When the linkage switches from the low position to the high position, the linkage pushes the second bracket to rotate to the second position.
[0020] In one embodiment, the linkage includes:
[0021] The linkage body is connected to multiple second brackets;
[0022] The motion guide is fixedly mounted on the linkage body. The base is provided with a low mounting slot and a high mounting slot that are interconnected by the motion guide slot. The motion guide can switch between the low mounting slot and the high mounting slot so that the linkage can switch between the low position and the high position.
[0023] In one embodiment, the linkage body includes:
[0024] The ring body has a motion guide fixedly disposed on the inner ring surface of the ring body, and the upper end of the ring body abuts against the plurality of second supports to support the second supports;
[0025] A handle is provided on the ring body.
[0026] In one embodiment, the low mounting slot and the high mounting slot are staggered along the circumference of the base, and the motion guide slot includes an oblique guide slot.
[0027] In one embodiment, the motion guide groove further includes a transition guide groove, which connects the oblique guide groove and the high-position mounting groove, wherein the lowest point of the high-position mounting groove is lower than the lowest point of the transition guide groove; or
[0028] The lowest point of the high-position mounting groove is lower than the highest point of the inclined guide groove.
[0029] In one embodiment, the second support further includes a first auxiliary support structure. When the second support is in the first position, the first auxiliary support structure is flush with the pan support structure, and the first auxiliary support structure is located inside or outside the pan support structure; and / or
[0030] The second support also includes a second auxiliary support structure. When the second support is in the second position, the second auxiliary support structure is higher than the pointed bottom pot support structure and extends in the horizontal direction.
[0031] In one embodiment, the pointed-bottom pot support structure includes multiple support positions. When the second bracket is in the second position, the multiple support positions have different heights, and along the vertical direction from bottom to top, the distance of each support position from the center of the base gradually increases.
[0032] In one embodiment, the second support includes:
[0033] Intermediate plate;
[0034] Two side plates are respectively disposed on both sides of the middle plate, the two side plates are disposed at a distance from each other, both side plates are hinged to the first bracket, and the pointed bottom pot support structure is provided on the side plates;
[0035] When the second bracket is in the first position, both side plates overlap the linkage member, and the upper surface of the middle plate is not higher than the pan support structure.
[0036] When the second bracket is in the second position, the linkage can contact the side plate and provide support to the second bracket.
[0037] In one embodiment, when the second support is in the first position, the upper surface of the intermediate plate is flush with the pan support structure; and / or
[0038] The intermediate plate includes a first stop structure, and when the second bracket is in the second position, the first stop structure abuts against the first bracket.
[0039] In one embodiment, the first support is further provided with a clearance structure, which is located inside the pan support structure. Along the center direction near the base, the height of the clearance structure gradually decreases to avoid the pan from being exposed to air.
[0040] In one embodiment, when the linkage moves relative to the base, the second bracket can switch from the second position to the first position under its own gravity.
[0041] The second technical problem mentioned above is solved by the following technical solution:
[0042] The gas stove includes a control panel and the aforementioned pot rack, the base of which is disposed on the control panel.
[0043] The gas stove described in this utility model has the following advantages compared with the prior art:
[0044] The gas stove includes the aforementioned pot rack. The linkage mechanism within the pot rack allows multiple second supports to move in tandem, simultaneously switching between the second and first positions. This eliminates the need for users to operate each second support individually, simplifying operation and enhancing user experience.
[0045] When the pointed-bottom pan needs support, operate the linkage mechanism. The linkage mechanism moves relative to the base, causing multiple second supports to simultaneously switch to the second position. At this time, multiple pointed-bottom pan support structures work together to stably support the pointed-bottom pan. When it is necessary to switch the pointed-bottom pan support structure from the second position to the first position, operate the linkage mechanism. The linkage mechanism moves relative to the base, causing multiple second supports to simultaneously switch to the first position. At this time, multiple flat-bottom pan support structures work together to stably support the flat-bottom pan.
[0046] Users only need to operate the linkage to enable multiple second supports to work together and switch to the second or first position simultaneously. Users do not need to operate multiple second supports one by one, making the operation simple and improving the user experience. Attached Figure Description
[0047] Figure 1 This utility model provides a schematic diagram of the structure of the furnace frame when the second support is in the first position.
[0048] Figure 2 This is a cross-sectional view of the furnace frame provided in an embodiment of the present invention when the second support is in the first position.
[0049] Figure 3 for Figure 2 Enlarged view of point A in the middle;
[0050] Figure 4 A schematic diagram showing the second support in the second position of the furnace frame provided in this embodiment of the utility model;
[0051] Figure 5 A schematic diagram showing the stove frame supporting a pointed-bottom pot according to an embodiment of this utility model;
[0052] Figure 6 for Figure 5 Enlarged view of point B in the middle;
[0053] Figure 7 This is an exploded structural diagram of the furnace frame provided in an embodiment of the present utility model;
[0054] Figure 8 A schematic diagram of the linkage component provided in an embodiment of this utility model;
[0055] Figure 9 for Figure 8 Enlarged view of point C in the middle;
[0056] Figure 10 A schematic diagram of the structure of the base provided in an embodiment of this utility model;
[0057] Figure 11 for Figure 10 Enlarged view of point D in the middle;
[0058] Figure 12 A schematic diagram illustrating another form of the low-position mounting groove and high-position mounting groove provided in this embodiment of the utility model on the base;
[0059] Figure 13 A schematic diagram of the structure of the first support provided in an embodiment of this utility model;
[0060] Figure 14 A schematic diagram of the structure of the second support provided in an embodiment of this utility model from one perspective;
[0061] Figure 15 This is a structural schematic diagram of the second support provided in an embodiment of the present invention from another perspective.
[0062] Label Explanation:
[0063] 1. Base; 11. Low-position mounting slot; 12. High-position mounting slot; 13. Angled guide slot; 14. Transition guide slot; 15. First bracket clearance area;
[0064] 2. First support; 21. Pan support structure; 22. Clearance structure;
[0065] 3. Second support; 31. Pointed-bottom pot support structure; 311. Support position; 32. First auxiliary support structure; 33. Second auxiliary support structure; 34. Middle plate; 341. First stop structure; 35. Side plate; 351. Overlapping edge;
[0066] 4. Linkage component; 41. Linkage component body; 411. Ring body; 412. Handle; 4121. Drive surface; 42. Motion guide;
[0067] 5. Hinge shaft. Detailed Implementation
[0068] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0069] In the description of this application, it should be understood that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0070] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, unless otherwise stated, "a plurality of" means two or more.
[0071] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or a contact connection between them under force. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0072] Example 1
[0073] See Figures 1-6 This embodiment provides a pot rack, which is applied to a gas stove to support the pot.
[0074] The pot rack includes a base 1, a linkage 4, multiple first supports 2, and multiple second supports 3.
[0075] Optionally, in this embodiment, the base 1 is an energy-concentrating ring. Of course, in other embodiments, a separate base 1 can also be fixedly installed on the energy-concentrating ring of the gas stove.
[0076] Multiple first brackets 2 are spaced apart and fixedly mounted on the base 1 along the circumferential direction.
[0077] Multiple second supports 3 are hinged to multiple first supports 2 in a one-to-one correspondence. One of the first supports 2 and the second support 3 is provided with a flat-bottomed pan support structure 21, and the other is provided with a pointed-bottomed pan support structure 31.
[0078] The linkage 4 is movably mounted on the base 1 and connected to multiple second supports 3. The linkage 4 can move relative to the base 1 to drive multiple second supports 3 to switch to the first position or switch to the second position simultaneously. When the second support 3 is in the first position, the pan support structure 21 can support the pan. When the second support 3 is in the second position, the pan support structure 31 can support the pan.
[0079] Optionally, in this embodiment, the first support 2 is provided with a flat-bottomed pan support structure 21, and the second support 3 is provided with a pointed-bottomed pan support structure 31.
[0080] When the second support 3 is in the first position, the flat-bottomed pan support structure 21 is not lower than the second support 3; when the second support 3 is in the second position, the pointed-bottomed pan support structure 31 is higher than the first support 2.
[0081] When the pot rack provided in this embodiment is in use, when it is necessary to support the frying pan, the multiple second supports 3 are controlled to be in the first position. At this time, the frying pan support structure 21 is not lower than the second supports 3, that is, the second supports 3 will not interfere with the frying pan support structure 21 supporting the frying pan. The frying pan support structure 21 of the multiple first supports 2 jointly provides stable support for the frying pan.
[0082] When the pointed-bottom pot needs support, the linkage 4 is operated. The linkage 4 moves relative to the base 1 to drive multiple second supports 3 to switch to the second position at the same time. At this time, the pointed-bottom pot support structure 31 is higher than the first support 2. The first support 2 will not interfere with the pointed-bottom pot support structure 31. The pointed-bottom pot support structure 31 of multiple second supports 3 provides stable support for the pointed-bottom pot.
[0083] When it is necessary to switch the pointed bottom pot support structure 31 from the second position to the first position, operate the linkage 4. The linkage 4 moves relative to the base 1 to drive multiple second supports 3 to switch to the first position at the same time.
[0084] With the linkage component 4 in place, users only need to operate the linkage component 4 to enable multiple second brackets 3 to move in tandem. Multiple second brackets 3 can switch to the second position or the first position simultaneously. Users do not need to operate multiple second brackets 3 one by one, making the operation simple and thus improving the user experience.
[0085] In one embodiment, when the linkage 4 moves relative to the base 1, the second bracket 3 can switch from the second position to the first position under its own gravity.
[0086] Of course, in other embodiments, the first support 2 may be provided with a pointed-bottom pot support structure 31; the second support 3 may be provided with a flat-bottom pot support structure 21.
[0087] Furthermore, in one embodiment, see [link to relevant documentation]. Figures 1-3 The second support 3 also includes a first auxiliary support structure 32. When the second support 3 is in the first position, the first auxiliary support structure 32 is flush with the pan support structure 21, and the first auxiliary support structure 32 is located on the inner or outer side of the pan support structure 21; and / or
[0088] See Figure 5 and Figure 6 The second support 3 also includes a second auxiliary support structure 33. When the second support 3 is in the second position, the second auxiliary support structure 33 is higher than the pointed bottom pot support structure 31 and extends in the horizontal direction.
[0089] Specifically, in this embodiment, the second support 3 further includes a first auxiliary support structure 32, and the second support 3 also includes a second auxiliary support structure 33.
[0090] The first auxiliary support structure 32 is configured such that when the second support 3 is in the first position, the first auxiliary support structure 32 is flush with the pan support structure 21, thus allowing the pan rack to accommodate a wider range of pan sizes. When the second support 3 is in the first position, the first auxiliary support structure 32 is located inside the pan support structure 21, allowing it to support smaller pans compared to the pan support structure 21. When the second support 3 is in the first position, the first auxiliary support structure 32 is located outside the pan support structure 21, providing more support points for the pan and resulting in more stable support.
[0091] The second auxiliary support structure 33 is set so that when the second bracket 3 is in the second position, the second auxiliary support structure 33 is higher than the pointed bottom pot support structure 31 and extends in the horizontal direction. In this way, the second auxiliary support structure 33 can also support the flat bottom pot. At this time, the user does not need to switch the position of the second bracket 3, so that the stove rack can support both the flat bottom pot and the pointed bottom pot.
[0092] Specifically, in one embodiment, the pointed-bottom pot support structure 31 includes multiple support positions 311. When the second bracket 3 is in the second position, the multiple support positions 311 have different heights, and along the vertical direction from bottom to top, the distance of each support position 311 from the center of the base 1 gradually increases. This arrangement allows the stove rack to support more pointed-bottom pots of different sizes.
[0093] Optionally, the support 311 may be toothed.
[0094] Preferably, the pointed-bottom pot support structure 31 is positioned higher than the center of the pointed-bottom pot. When supporting the pointed-bottom pot, the pointed-bottom pot support structure 31 is positioned relatively high, providing a higher and larger support range for the pointed-bottom pot, and the support point is higher, making it less likely for the pot to tip over.
[0095] Alternatively, in some embodiments, see Figure 6 The first support 2 is also equipped with a clearance structure 22, which is located inside the pan support structure 21. The height of the clearance structure 22 gradually decreases along the direction close to the center of the base 1. This arrangement ensures that when the second support 3 is in the second position, the clearance structure 22 can avoid the bottom of the pan, thus ensuring the stability of the pan.
[0096] Optionally, the clearance structure 22 can be inclined or concave.
[0097] In one embodiment, see Figures 7-9 One of the linkage 4 and the base 1 is provided with a motion guide 42, and the other is provided with a motion guide groove that cooperates with the motion guide 42. The motion guide 42 can move along the motion guide groove so that the linkage 4 can switch between a high position and a low position.
[0098] When the linkage 4 is in the low position, the second bracket 3 is in the first position. The linkage 4 can limit the second bracket 3, so that the second bracket 3 is stably in the first position.
[0099] When the linkage 4 switches from the low position to the high position, the linkage 4 pushes the second bracket 3 to rotate to the second position.
[0100] That is, when the second support 3 is in the first position, the linkage 4 limits the second support 3 to prevent the second support 3 from moving and affecting the normal use of the pot rack.
[0101] When the linkage 4 switches from the low position to the high position, the linkage 4 pushes the second bracket 3 upward to rotate to the second position; when the linkage 4 switches from the high position to the low position, the linkage 4 moves downward, and the end of the second bracket 3 away from its hinge also rotates downward under its own gravity. When the linkage 4 switches to the low position, the linkage 4 provides an upward support force to the second bracket 3 that has switched to the first position.
[0102] Further, see Figure 7-Figure 7 In one embodiment, the linkage 4 includes a linkage body 41 and a motion guide 42. That is, the motion guide 42 is disposed on the linkage 4, and the motion guide groove is formed on the base 1.
[0103] The linkage body 41 is connected to multiple second brackets 3.
[0104] The motion guide 42 is fixedly mounted on the linkage body 41.
[0105] Optionally, the motion guide 42 is a columnar structure fixedly disposed on the inner ring surface of the linkage body 41.
[0106] See Figure 10 and Figure 11 The base 1 is provided with a low mounting slot 11 and a high mounting slot 12 that are connected to each other by a motion guide slot, and the motion guide part 42 can switch between the low mounting slot 11 and the high mounting slot 12 so that the linkage 4 can switch between the low position and the high position.
[0107] When the linkage 4 is in the low position, the motion guide 42 is located in the low-position mounting groove 11, so that the position of the linkage 4 remains stable, ensuring that the linkage 4 provides stable support for the second bracket 3, and thus ensuring that the second bracket 3 is stably located in the first position. When the linkage 4 is in the high position, the motion guide 42 is located in the high-position mounting groove 12, so that the position of the linkage 4 remains stable, ensuring that the linkage 4 provides stable support for the second bracket 3, and thus ensuring that the second bracket 3 is stably located in the second position.
[0108] When the linkage 4 needs to switch from a low position to a high position, the user raises the linkage body 41, causing the motion guide 42 to move along the motion guide groove from the low position mounting groove 11 to the high position mounting groove 12; when the linkage 4 needs to switch from a high position to a low position, the user lowers the linkage body 41, causing the motion guide 42 to move along the motion guide groove from the high position mounting groove 12 to the low position mounting groove 11.
[0109] It should be noted that in this embodiment, the connection between the linkage body 41 and the second bracket 3 is as follows: the two are in contact and exert force on each other, and they are in close contact and can slide against each other. That is, when the linkage body 41 moves relative to the base 1, the second bracket 3 rotates relative to the first bracket 2 and the linkage body 41 and the second bracket 3 are in sliding contact. Part of the gravity of the second bracket 3 acts on the linkage body 41, and the linkage body 41 provides an upward supporting force to the second bracket 3.
[0110] In one embodiment, see Figure 8 and Figure 9 The linkage body 41 includes a ring body 411 and a handle part 412.
[0111] The motion guide 42 is fixedly disposed on the inner ring surface of the ring body 411, and the upper end of the ring body 411 abuts against the multiple second supports 3 to support the second supports 3.
[0112] That is, the upper edge of the ring 411 can drive multiple second supports 3 to rotate simultaneously.
[0113] The handle 412 is provided on the ring body 411.
[0114] In other embodiments, the handle 412 can also be a handle provided on the outer side of the ring 411, and there can be two handles for user convenience.
[0115] Specifically, in this embodiment, since the handle 412 is a ring-shaped outward flange arranged circumferentially along the upper end of the ring body 411, the upper surface of the handle 412 is the driving surface 4121. When the second bracket 3 is in the first position, the driving surface 4121 contacts the second bracket 3. When the second bracket 3 switches from the first position to the second position, the driving surface 4121 pushes the second bracket 3 to rotate upward.
[0116] Along the circumference of the ring body 411, a plurality of motion guides 42 are provided at intervals on the inner sidewall of the ring body 411.
[0117] It is understandable that when the motion guide 42 is in the low mounting groove 11, the motion guide 42 needs to abut against the bottom of the low mounting groove 11 in order to keep the linkage 4 stably in the low position; when the motion guide 42 is in the high mounting groove 12, the motion guide 42 needs to abut against the bottom of the high mounting groove 12 in order to keep the linkage 4 stably in the high position.
[0118] Alternatively, in one embodiment, see Figure 10 and Figure 11 Along the circumference of the base 1, the low mounting groove 11 and the high mounting groove 12 are staggered. The motion guide groove includes an oblique guide groove 13, which connects the low mounting groove 11 and the high mounting groove 12. This arrangement ensures that both the low mounting groove 11 and the high mounting groove 12 have a bottom, thereby supporting the motion guide part 42.
[0119] When switching the linkage 4 from the low position to the high position, first lift the linkage 4 so that the motion guide 42 disengages from the low position mounting groove 11, and then control the motion guide 42 to move along the inclined guide groove 13 (during this process, the linkage 4 will rotate in the first clockwise direction, the first clockwise direction is...). Figure 11 (From left to right) until the motion guide 42 falls into the high-position mounting groove 12. When switching the linkage 4 from the high position to the low position, first control the motion guide 42 to leave the high-position mounting groove 12, and then control the motion guide 42 to move along the inclined guide groove 13 (during this process, the linkage 4 will rotate in the second clockwise direction, which is opposite to the first clockwise direction, and the second clockwise direction is...). Figure 11 (From right to left) until the motion guide 42 falls into the low mounting slot 11.
[0120] The oblique guide groove 13 can guide the movement guide 42 to switch positions between the low mounting groove 11 and the high mounting groove 12, ensuring the smooth switching of the linkage 4 between the high and low positions.
[0121] Furthermore, in some embodiments, to prevent the motion guide 42 from sliding out of the high-position mounting groove 12 due to external force when the linkage 4 is in the high position, thus affecting the stable support of the pot rack for the pot, the motion guide groove also includes a transition guide groove 14. A transition guide groove 14 connects the oblique guide groove 13 and the high-position mounting groove 12, and the lowest point of the high-position mounting groove 12 is lower than the lowest point of the transition guide groove 14; or
[0122] The lowest point of the high-position mounting groove 12 is lower than the highest point of the inclined guide groove 13.
[0123] After the transition guide groove 14 is set, on the one hand, the transition guide groove 14 can guide the movement guide part 42 between the high-position mounting groove 12 and the inclined guide groove 13; on the other hand, since the lowest point of the high-position mounting groove 12 is lower than the lowest point of the transition guide groove 14, the side wall of the high-position mounting groove 12 can limit the movement guide part 42 in the high-position mounting groove 12, so as to prevent the linkage part 4 from moving when the pot rack supports the pointed bottom pot.
[0124] If the transition guide groove 14 is not provided, it is necessary to control the lowest point of the high-position mounting groove 12 to be lower than the highest point of the inclined guide groove 13. In this way, it is also possible to prevent the motion guide part 42 from sliding out of the high-position mounting groove 12 due to external force when the second bracket 3 is in the second position, and to make the structure and processing of the motion guide groove simpler.
[0125] Furthermore, in some embodiments, the base 1 is also provided with a first support clearance area 15 to avoid the first support 2.
[0126] To facilitate processing, the first bracket clearance area 15, low-position mounting groove 11, high-position mounting groove 12, oblique guide groove 13 and transition guide groove 14 are all connected. That is, irregular holes are opened on the base 1, and the first bracket clearance area 15, low-position mounting groove 11, high-position mounting groove 12, oblique guide groove 13 and transition guide groove 14 are directly formed at the irregular holes.
[0127] Optionally, see Figure 12 , Figure 12Another configuration of the low-position mounting slot 11 and the high-position mounting slot 12 is shown, and correspondingly, the motion guide slot is also in another form. In some embodiments, the low-position mounting slot 11 and the high-position mounting slot 12 can be arranged vertically at intervals. Specifically, the low-position mounting slot 11 and the high-position mounting slot 12 can be formed vertically at intervals along the side wall of the base 1, and the low-position mounting slot 11 and the high-position mounting slot 12 are interconnected. When the linkage 4 is switched from the low position to the high position, the linkage 4 is first lifted, then the linkage 4 is rotated to the right so that the motion guide part 42 disengages from the low-position mounting slot 11, then the linkage 4 is continued to be lifted so that the position of the linkage 4 is higher than the high-position mounting slot 12, then the linkage 4 is rotated to the left so that the motion guide part 42 moves above the high-position mounting slot 12, and finally the linkage 4 is lowered until the motion guide part 42 falls into the high-position mounting slot 12.
[0128] Figure 12 The arrangement of the low-position mounting slot 11 and the high-position mounting slot 12, compared to... Figure 11 The setup of the low-to-mid-level mounting slot 11 and the high-level mounting slot 12 is slightly cumbersome to operate, therefore, the preferred method is... Figure 11 The arrangement of the low-to-mid-level mounting slot 11 and the high-level mounting slot 12. And... Figure 11 In the middle, both the low-position mounting slot 11 and the high-position mounting slot 12 can provide more stable support for the linkage component 4.
[0129] Specifically, see Figure 13 In this embodiment, the first support 2 is plate-shaped, and its highest point is the pan support structure 21, which extends horizontally. By processing the plate to form a slope or oblique line, a clearance structure 22 can be formed, which is lower than the pan support structure 21.
[0130] The pan support structure 21 can be in the form of a support surface or a line, depending on the needs.
[0131] See Figure 7 , Figure 13 and Figure 15 In one embodiment, the second support 3 includes a middle plate 34 and two side plates 35.
[0132] Two side plates 35 are respectively disposed on both sides of the middle plate 34. The two side plates 35 are arranged at intervals relative to each other. Both side plates 35 are hinged to the first bracket 2. A pointed bottom pot support structure 31 is provided on the side plate 35.
[0133] When the second bracket 3 is hinged to the first bracket 2, the first bracket 2 is located between the two side plates 35.
[0134] The intermediate plate 34 serves to connect the two side plates 35. The intermediate plate 34 and the two side plates 35 form a cavity structure, and the outer surface of the intermediate plate 34 is the first auxiliary support structure 32.
[0135] When the second support 3 is in the first position, both side plates 35 overlap the driving surface 4121 of the linkage 4, and the upper surface of the middle plate 34 is not higher than the pan support structure 21. In this way, the linkage 4 restricts the movement of the second support 3, so that the second support 3 is stably in the first position.
[0136] When the second bracket 3 is in the second position, the linkage 4 can contact the side plate 35 and provide support for the second bracket 3.
[0137] That is, when the second support 3 is in the second position and the first position, the linkage 4 can contact the side plate 35 and provide support for the second support 3. In this way, the linkage 4 restricts the movement of the second support 3, so that the second support 3 is stably in the second position.
[0138] Specifically, the two side plates 35 are hinged to the first bracket 2 via hinge shafts 5. Furthermore, both the side plates 35 and the first bracket 2 are provided with hinge holes that mate with the hinge shafts 5.
[0139] Specifically, the side plate 35 includes an overlapping edge 351, which is always overlapping with the linkage 4 so that the linkage 4 can provide support for the second bracket 3.
[0140] Specifically, the second auxiliary support structure 33 is disposed on the side plate 35.
[0141] Furthermore, in one embodiment, when the second support 3 is in the first position, the upper surface of the intermediate plate 34 is flush with the pan support structure 21; and / or
[0142] The intermediate plate 34 includes a first stop structure 341. When the second support 3 is in the second position, the first stop structure 341 abuts against the first support 2.
[0143] When the second support 3 is in the first position, the upper surface of the middle plate 34 is flush with the pan support structure 21, that is, the upper surface of the middle plate 34 is the first auxiliary support structure 32.
[0144] Specifically, when the second support 3 is in the second position, the first stop structure 341 abuts against the first support 2, and at the same time, the linkage 4 abuts against the overlapping edge 351 of the side plate 35. The two cooperating structures enable the second support 3 to be stably in the second position.
[0145] Specifically, adopt Figure 11The arrangement of the low-position mounting slot 11 and the high-position mounting slot 12 shown indicates the following operation when switching the linkage 4 from the low position to the high position:
[0146] by Figure 11 Taking the indicated orientation as an example, first lift the linkage 4, causing the motion guide 42 to move to the upper side of the low mounting groove 11. Then rotate the linkage 4 to the right, at which point the motion guide 42 moves into the inclined guide groove 13. Control the motion guide 42 to move along the inclined guide groove 13 into the transition guide groove 14. Rotate the linkage 4 to the right, causing the motion guide 42 to move to the upper side of the high mounting groove 12. Lower the linkage 4, and the motion guide 42 falls into the high mounting groove 12. At this time, multiple second brackets 3 also simultaneously switch from the first position to the second position (specifically, multiple second brackets 3 simultaneously switch from the first position to the second position). Figure 1 The unfolded state shown has been switched to Figure 4 The collapsed state shown.
[0147] Specifically, adopt Figure 11 The arrangement of the low-position mounting slot 11 and the high-position mounting slot 12 shown indicates the following operation when switching the linkage 4 from the high position to the low position:
[0148] by Figure 11 Taking the indicated orientation as an example, first lift the linkage 4 so that the motion guide 42 moves to the upper side of the high mounting groove 12, then rotate the linkage 4 to the left so that the motion guide 42 moves into the transition guide groove 14. During this process, the motion guide 42 moves along the transition guide groove 14 towards the oblique guide groove 13. When the motion guide 42 reaches the junction of the transition guide groove 14 and the oblique guide groove 13, under the weight of the linkage 4 itself, the motion guide 42 will fall into the oblique guide groove 13. At this time, control the motion guide 42 to move along the oblique guide groove 13 towards the low mounting groove 11 (during this process, the linkage 4 rotates to the left as a whole). When the motion guide 42 leaves the oblique guide groove 13, it will fall into the low mounting groove 11. At this time, multiple second supports 3 also simultaneously switch from the second position to the first position (specifically, multiple second supports 3 simultaneously switch from the second position to the first position). Figure 4 The collapsed state shown has been switched to Figure 1 (The unfolded state shown).
[0149] It should be noted that when multiple second supports 3 are in Figure 1 and Figure 2 In the first position shown (i.e., the unfolded state), the motion guide 42 is in the low mounting slot 11, locking the multiple second supports 3 in the current position so that the pot rack stably supports the flat-bottomed pot; when the multiple second supports 3 are all in the... Figure 4 and Figure 5In the second position shown (i.e., the folded state), the motion guide 42 is in the high mounting groove 12, locking the multiple second brackets 3 in the current position so that the pot rack can stably support the pointed-bottom pot or the flat-bottom pot.
[0150] Example 2
[0151] This embodiment provides a gas stove, which includes a panel and a pot rack as described in Embodiment 1, with the base 1 of the pot rack disposed on the panel.
[0152] The gas stove provided in this embodiment includes the aforementioned pot rack. When the pot rack is in use, and it is necessary to support the flat-bottomed pan, multiple second supports 3 are controlled to be in the first position. At this time, the flat-bottomed pan support structures 21 of multiple first supports 2 jointly provide stable support for the flat-bottomed pan.
[0153] When the pointed-bottom pot needs to be supported, the linkage 4 is operated. The linkage 4 moves relative to the base 1 to drive multiple second supports 3 to switch to the second position at the same time. At this time, the pointed-bottom pot support structure 31 of multiple second supports 3 jointly provides stable support for the pointed-bottom pot.
[0154] When it is necessary to switch the pointed bottom pot support structure 31 from the second position to the first position, operate the linkage 4. The linkage 4 moves relative to the base 1 to drive multiple second supports 3 to switch to the first position at the same time.
[0155] With the linkage component 4 in place, users only need to operate the linkage component 4 to enable multiple second brackets 3 to move in tandem. Multiple second brackets 3 can switch to the second position or the first position simultaneously. Users do not need to operate multiple second brackets 3 one by one, making the operation simple and thus improving the user experience.
[0156] In the specific implementation of the above embodiments, the technical features can be combined in any non-contradictory way. For the sake of brevity, not all possible combinations of the above technical features are described. However, as long as the combination of these technical features is not contradictory, it should be considered to be within the scope of this specification.
[0157] The specific embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. A pot rack, characterized in that, include: Base (1); Multiple first brackets (2) are spaced apart and fixedly disposed on the base (1) in a circumferential direction; Multiple second supports (3) are hinged to multiple first supports (2) one by one. One of the first supports (2) and the second supports (3) is provided with a flat-bottomed pan support structure (21) and the other is provided with a pointed-bottomed pan support structure (31). Linkage component (4) is movably mounted on the base (1) and connected to multiple second supports (3). The linkage component (4) can move relative to the base (1) to drive multiple second supports (3) to switch to the first position or switch to the second position simultaneously. When the second support (3) is in the first position, the pan support structure (21) can support the pan. When the second support (3) is in the second position, the pointed pan support structure (31) can support the pointed pan.
2. The pot rack according to claim 1, characterized in that, One of the linkage (4) and the base (1) is provided with a motion guide (42), and the other is provided with a motion guide groove that cooperates with the motion guide (42). The motion guide (42) can move along the motion guide groove so that the linkage (4) can switch between a high position and a low position. When the linkage (4) is in the low position, the second bracket (3) is in the first position, and the linkage (4) can limit the second bracket (3); When the linkage (4) switches from the low position to the high position, the linkage (4) pushes the second bracket (3) to rotate to the second position.
3. The pot rack according to claim 2, characterized in that, The linkage component (4) includes: The linkage body (41) is connected to multiple second brackets (3); The motion guide (42) is fixedly mounted on the linkage body (41). The base (1) is provided with a low mounting groove (11) and a high mounting groove (12) that are interconnected by the motion guide groove. The motion guide (42) can switch between the low mounting groove (11) and the high mounting groove (12) so that the linkage (4) can switch between the low position and the high position.
4. The pot rack according to claim 3, characterized in that, The linkage body (41) includes a ring (411), and the motion guide (42) is fixedly disposed on the inner ring surface of the ring (411). The upper end of the ring (411) abuts against multiple second supports (3) to support the second supports (3). A handle (412) is provided on the ring body (411).
5. The pot rack according to claim 3, characterized in that, Along the circumference of the base (1), the low mounting groove (11) and the high mounting groove (12) are staggered, and the motion guide groove includes an oblique guide groove (13).
6. The pot rack according to claim 5, characterized in that, The motion guide groove also includes a transition guide groove (14), which connects the oblique guide groove (13) and the high-position mounting groove (12). The lowest point of the high-position mounting groove (12) is lower than the lowest point of the transition guide groove (14); or The lowest point of the high-position mounting groove (12) is lower than the highest point of the inclined guide groove (13).
7. The pot rack according to claim 1, characterized in that, The second support (3) further includes a first auxiliary support structure (32). When the second support (3) is in the first position, the first auxiliary support structure (32) is flush with the pan support structure (21), and the first auxiliary support structure (32) is located inside or outside the pan support structure (21); and / or The second support (3) also includes a second auxiliary support structure (33). When the second support (3) is in the second position, the second auxiliary support structure (33) is higher than the pointed bottom pot support structure (31) and extends in the horizontal direction.
8. The pot rack according to claim 1, characterized in that, The pointed bottom pot support structure (31) includes multiple support positions (311). When the second bracket (3) is in the second position, the heights of the multiple support positions (311) are different, and along the vertical direction from bottom to top, the distance of each support position (311) from the center of the base (1) gradually increases.
9. The pot rack according to any one of claims 1-8, characterized in that, The second support (3) includes: Intermediate plate (34); Two side plates (35) are respectively disposed on both sides of the middle plate (34). The two side plates (35) are arranged at intervals relative to each other. Both side plates (35) are hinged to the first bracket (2). The pointed bottom pot support structure (31) is provided on the side plates (35). When the second bracket (3) is in the first position, both side plates (35) overlap the linkage (4), and the upper surface of the middle plate (34) is not higher than the pan support structure (21). When the second bracket (3) is in the second position, the linkage (4) can contact the side plate (35) and provide support for the second bracket (3).
10. The pot rack according to claim 9, characterized in that, When the second support (3) is in the first position, the upper surface of the intermediate plate (34) is flush with the pan support structure (21); and / or The intermediate plate (34) includes a first stop structure (341), and when the second bracket (3) is in the second position, the first stop structure (341) abuts against the first bracket (2).
11. The pot rack according to any one of claims 1-8, characterized in that, The first support (2) is also provided with a clearance structure (22), which is located inside the pan support structure (21). Along the center direction close to the base (1), the height of the clearance structure (22) gradually decreases to avoid the pan from being exposed.
12. The pot rack according to any one of claims 1-8, characterized in that, When the linkage (4) moves relative to the base (1), the second bracket (3) can switch from the second position to the first position under its own gravity.
13. A gas stove, characterized in that, It includes a panel and a pot rack as described in any one of claims 1-12, wherein the base (1) of the pot rack is disposed on the panel.