Double-head cooking range convenient for oil stain cleaning

By designing inner and outer baffles with flow channels and collection bins on the double-burner stove, the problem of frequent oil stain cleaning in commercial stoves is solved, achieving automatic oil stain diversion and simplified cleaning, thus improving cleaning efficiency.

CN224150994UActive Publication Date: 2026-04-21WUHAN JINGANGSUI KITCHEN EQUIP MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUHAN JINGANGSUI KITCHEN EQUIP MFG CO LTD
Filing Date
2025-04-14
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing dual-burner stoves in commercial settings require frequent manual cleaning of the drip tray to collect liquids such as grease, soup, and sauce, which is cumbersome and inconvenient.

Method used

The design incorporates an inner and outer baffle ring to form a flow channel, which, together with the discharge hole and collection bucket, enables automatic flow and collection of oil sludge. The design also includes a detachable liquid tray and burner head to simplify the cleaning process.

Benefits of technology

It achieves automatic diversion and directional collection of oil stains, reduces manual intervention, simplifies the cleaning process to "take the tray - empty the bucket - rinse", improves cleaning efficiency, and is especially suitable for high-frequency commercial scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of double-end stoves, and particularly relates to a double-end stove convenient for cleaning greasy dirt, which comprises a stove body and a bedplate fixed at the top end of the stove body, and further comprises two symmetrically distributed liquid containing plates, a burner; the inner check ring is fixed to the inner circle face of the top of the liquid containing disc. The outer check ring is fixed to the outer circular face of the top of the liquid containing disc. An impurity collecting barrel; according to the utility model, the inner check ring and the outer check ring are designed on the liquid containing disc, the inner check ring and the outer check ring define the flow guide gallery, and the flow guide gallery is matched with the impurity discharging hole and the impurity collecting barrel below, so that automatic flow guide and collection of oil stains are realized, manual intervention is reduced, the liquid containing disc does not need to be frequently cleaned, and the problem that the oil stains need to be frequently cleaned manually in a commercial scene is solved; the liquid containing plate, the furnace end and the table plate are designed in a modularized mode and can be independently and fully cleaned, if a single accessory is damaged, the damaged accessory can be conveniently and independently replaced, and cost is reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of double-burner stove technology, specifically relating to a double-burner stove that is easy to clean of oil stains. Background Technology

[0002] A dual-burner stove is a kitchen cooking appliance with an integrated dual-burner design. It enables simultaneous multitasking through two independent heating zones and is widely used in homes, commercial settings, and outdoor environments.

[0003] Commercial dual-burner stoves are core equipment in the kitchens of the catering industry. Their design focuses on three core requirements: high power output, efficient cooking, and safety and durability. They are widely used in hotels, canteens, chain restaurants and other scenarios.

[0004] The liquid collection tray is an important component of a double-burner stove. It is usually located around the burner and is used to collect liquids produced during cooking, such as grease, broth, and sauce.

[0005] For example, in the prior art, Chinese utility model patent with authorization announcement number CN208418824U discloses "an environmentally friendly fuel stove", which includes a fuel stove panel. The fuel stove panel is provided with a burner core, a burner frame, a liquid tray, an ignition switch and a flame adjuster. The bottom of the fuel stove panel is provided with an oil pump, a fan, an igniter and a transformer. The burner core is a cylindrical material made of double-layer stainless steel. The side wall of the burner core is provided with an oil inlet hole, which is connected to the oil pump through an oil inlet pipe.

[0006] While existing stoves, including those mentioned above, can meet general usage needs, the liquids collected in the drip tray, such as grease, soup, and sauce (and sometimes solid residue), require manual cleaning. In commercial settings, this necessitates frequent cleaning of the drip tray, which is quite inconvenient.

[0007] To address the aforementioned problems, this utility model proposes a double-burner stove that facilitates the cleaning of oil stains. Utility Model Content

[0008] To address the aforementioned problems in the existing technology, this utility model provides a double-burner stove that is easy to clean of oil stains, featuring convenient use and easy cleaning.

[0009] To achieve the above objectives, this utility model provides the following technical solution: a double-burner stove for easy cleaning of oil stains, comprising a stove body and a platform fixed to the top of the stove body, wherein the platform is provided with drainage holes, and further comprising:

[0010] Two symmetrically distributed liquid-holding trays are provided with stepped mounting holes machined on the platform, and the liquid-holding trays are detachably mounted in the stepped mounting holes.

[0011] The burner head has a mounting hole machined on the liquid tray, and the burner head is detachably mounted in the mounting hole.

[0012] An inner retaining ring is fixed to the top inner circular surface of the liquid-collecting tray;

[0013] An outer baffle ring is fixed to the top outer circular surface of the liquid collection tray, and a flow guide channel is formed between the outer baffle rings. A notch communicating with the impurity discharge hole is machined on the outer baffle ring.

[0014] A collection bin is slidably installed inside the furnace body, and the collection bin is located directly below the discharge hole.

[0015] As a preferred embodiment of this utility model, the opposing surfaces of the inner and outer baffles are both inclined surfaces, so that the flow guide channel has an inverted trapezoidal groove structure.

[0016] As a preferred embodiment of this utility model, it further includes:

[0017] A U-shaped positioning frame is fixed inside the furnace body, and the impurity collection bucket is slidably installed inside the U-shaped positioning frame. When the impurity collection bucket slides to its farthest point, it is located directly below the impurity discharge hole.

[0018] Two handles are symmetrically fixed to the outer wall of the collection bucket.

[0019] As a preferred embodiment of this utility model, it further includes:

[0020] A guide tube is fixed to the bottom surface of the platform and communicates with the waste discharge hole.

[0021] As a preferred embodiment of this utility model, it further includes:

[0022] A porous filter disc is disposed inside the collection bin. A positioning block is fixed on the outer wall of the porous filter disc, and a positioning groove is machined at the top of the collection bin for the positioning block to be embedded.

[0023] As a preferred embodiment of this utility model, it further includes:

[0024] A limiting plate is disposed within the U-shaped positioning frame, and a slot for embedding the limiting plate is machined on the inner wall of the U-shaped positioning frame.

[0025] As a preferred embodiment of this utility model, it further includes a locking mechanism, wherein the liquid-holding tray is mounted on the platform using multiple sets of locking mechanisms evenly distributed along the circumferential direction, wherein the locking mechanism includes:

[0026] L-shaped plate, the L-shaped plate being fixed to the bottom surface of the liquid-holding tray;

[0027] n-type mounting base, wherein the n-type mounting base is rotatably mounted on the bottom surface of the platform using a pin;

[0028] A locking pin passes through the n-shaped mounting base, and a locking hole is provided on the vertical part of the L-shaped plate for the locking pin to pass through.

[0029] A limiting ring, which is fixed to the locking pin;

[0030] A return spring, which is sleeved on the locking pin and located between the inner wall of the n-type mounting base and the limiting ring;

[0031] A pull ring is fixed to the end of the locking pin away from the L-shaped plate.

[0032] As a preferred embodiment of this utility model, it further includes a locking mechanism. The furnace head is mounted on the liquid-holding tray using multiple sets of locking mechanisms evenly distributed along the circumferential direction. The locking mechanism includes:

[0033] A positioning stud, which is fixed to the bottom end of the furnace head and penetrates the horizontal part of the L-shaped plate;

[0034] A wing nut, which is installed on the protruding end of the positioning stud by means of thread engagement.

[0035] Compared with the prior art, the beneficial effects of this utility model are:

[0036] In this invention, an inner and outer baffle ring are designed on the liquid collection tray, forming a flow guide corridor. Combined with the discharge hole and the collection bucket below, automatic oil collection and drainage are achieved, reducing manual intervention and eliminating the need for frequent cleaning of the liquid collection tray. This solves the problem of frequent manual cleaning of oil stains in commercial settings. The liquid collection tray, stove head, and platform adopt a modular design, allowing for thorough cleaning of each component individually. If a single component is damaged, it is easy to replace the damaged component, reducing costs.

[0037] Other additional advantages and beneficial effects of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this invention. Attached Figure Description

[0038] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:

[0039] Figure 1This is a schematic diagram of the structure of this utility model;

[0040] Figure 2 This is a schematic diagram of the isometric structure of the platform in this utility model;

[0041] Figure 3 This utility model Figure 2 Enlarged structural diagram at point A in the diagram;

[0042] Figure 4 This is a schematic diagram of the isometric structure of the furnace head in this utility model;

[0043] Figure 5 This utility model Figure 4 A magnified schematic diagram of the engagement mechanism in the diagram;

[0044] Figure 6 This utility model Figure 4 A magnified schematic diagram of the locking mechanism in the diagram;

[0045] Figure 7 This is a schematic diagram of the isometric structure of the collection bucket in this utility model;

[0046] Figure 8 This utility model Figure 7 Enlarged structural diagram at point B in the diagram;

[0047] Figure 9 This utility model Figure 7 A magnified structural diagram at point C in the diagram.

[0048] In the diagram: 1. Furnace body; 2. Platform; 21. Stepped mounting hole; 22. Impurity discharge hole; 3. Liquid collection tray; 31. Furnace head mounting hole; 32. Inner retaining ring; 33. Outer retaining ring; 34. Flow guide channel; 35. Notch; 4. Furnace head; 5. Impurity collection bucket; 51. Handle; 52. Positioning groove; 6. U-shaped positioning frame; 61. Slot; 7. Engaging mechanism; 71. L-shaped plate; 711. Locking hole; 72. N-shaped mounting base; 73. Pin; 74. Locking pin; 75. Limiting ring; 76. Return spring; 77. Pull ring; 8. Locking mechanism; 81. Positioning stud; 82. Wing nut; 9. Flow guide pipe; 10. Porous filter plate; 101. Positioning block; 11. Limiting plate. Detailed Implementation

[0049] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0050] Please see Figures 1-9 The present invention provides the following technical solution: a double-headed stove that is easy to clean oil stains, including a stove body 1 and a platform 2 fixed to the top of the stove body 1. The platform 2 is provided with a drain hole 22. It also includes two symmetrically distributed liquid trays 3, a stove head 4, an inner baffle ring 32, an outer baffle ring 33, and a collection bucket 5.

[0051] Furthermore, by Figures 1-3 As shown, stepped mounting holes 21 are machined on the platform 2, and the liquid collection tray 3 is detachably installed in the stepped mounting holes 21. A burner head mounting hole 31 is machined on the liquid collection tray 3, and the burner head 4 is detachably installed in the burner head mounting hole 31. An inner baffle ring 32 is fixed to the inner top surface of the liquid collection tray 3, and an outer baffle ring 33 is fixed to the outer top surface of the liquid collection tray 3. A flow guide channel 34 is formed between the outer baffle rings 33. A notch 35 communicating with the waste discharge hole 22 is machined on the outer baffle ring 33. The waste collection bucket 5 is slidably installed on the furnace body 1. Inside, and the collection bucket 5 is located directly below the discharge hole 22, with the above solution, when oil stains, soup and other liquids generated during cooking drip onto the surface of the countertop 2, they will first be intercepted by the guide corridor 34 formed by the outer baffle ring 33 and the inner baffle ring 32. The inner baffle ring 32 is close to the outer perimeter of the burner head 4, which can prevent the liquid splashed around the burner head 4 from spreading to the center. The outer baffle ring 33 is set along the edge of the liquid tray 3. The inclined guide corridor 34 between the two forms a natural slope, so that the liquid converges along the corridor to the gap 35 under the action of gravity.

[0052] After the liquid enters the drain hole 22 of the platform 2 through the notch 35, it falls directly into the collection bucket 5 below, realizing the directional collection of oil stains. Since the liquid tray 3 is detachably connected to the platform 2 through the stepped mounting hole 21, the burner head 4 can also be detachably installed in the burner head mounting hole 31 of the liquid tray 3. When cleaning is required, the liquid tray 3 and the burner head 4 can be removed as a whole, and the stubborn stains on the surface of the guide corridor 34, inner baffle ring 32 and outer baffle ring 33 can be deeply scrubbed. The collection bucket 5 adopts a sliding design and can be directly pulled out from the front of the furnace body 1. After pouring out the oil stains, it can be rinsed with water.

[0053] This utility model, through an integrated design of "interception-diversion-collection-removable cleaning", transforms the hard-to-clean countertop crevices and dead corners around the burner head 4 of traditional stoves into detachable independent components. Combined with the low-position storage of the collection bucket 5, oil stains do not need to come into contact with the internal structure of the stove body 1. This not only avoids the corrosion of the stove's circuitry or gas lines by liquid leakage, but also simplifies daily cleaning to a three-step operation of "removing the plate-emptying the bucket-rinsing", significantly improving kitchen cleaning efficiency, and is especially suitable for high-frequency commercial scenarios.

[0054] Preferably, by Figures 1-3As shown in this embodiment, the opposing surfaces of the inner baffle ring 32 and the outer baffle ring 33 are both inclined surfaces, so that the guide channel 34 has an inverted trapezoidal groove structure, that is, the guide channel 34 has an inverted trapezoidal cross section that is wider at the top and narrower at the bottom. With the above solution, when in use, the inclined surface design makes the bottom width of the guide channel 34 smaller than the top, forming a natural flow gathering effect. After the liquid drips into the guide channel 34, it will converge towards the bottom central axis due to the guidance of the inclined surfaces on both sides, and flow quickly towards the gap 35 along the slope, avoiding diffusion on the surface of the platform 2. In addition, compared with the traditional flat or right-angled groove, the inverted trapezoidal structure reduces the contact area between the liquid and the platform, and there are no right-angle dead corners. Even viscous oil stains can slide off under the action of gravity, preventing the solidification and accumulation of oil stains in the gaps during long-term use.

[0055] The inner baffle ring 32 has an inclined surface that slopes outward toward the burner head 4, which can effectively block oil droplets or soup splashing around the burner flame and allow them to slide into the guide channel 34 along the inclined surface instead of splashing onto the edge of the tabletop 2. The outer baffle ring 33 has an inclined surface that slopes outward, forming a transition buffer with the surface of the tabletop 2. Even if liquid accidentally overflows the top of the outer baffle ring 33, the inclined surface can guide it to flow down along the outer side of the outer baffle ring 33 (because the flow speed is not fast, the liquid will flow down along the outer wall of the outer baffle ring 33) instead of leaking to the connection between the stove body 1 and the tabletop 2.

[0056] The sloping surface of the inverted trapezoidal groove has no vertical sharp edges. Combined with the detachable design of the liquid collection tray 3, when cleaning, simply wipe along the sloping surface in one direction with a cloth or scraper to easily push the residual stains into the bottom of the corridor. Rinsing with clean water will then remove them completely.

[0057] Preferably, by Figure 1 and Figure 7 As shown, this embodiment further includes: a U-shaped positioning frame 6 and a handle 51. The U-shaped positioning frame 6 is fixed inside the furnace body 1, and the collection bucket 5 is slidably installed inside the U-shaped positioning frame 6. When the collection bucket 5 slides to its farthest point, it is located directly below the discharge hole 22. The two handles 51 are symmetrically fixed to the outer wall of the collection bucket 5. With the above solution, when in use, the U-shaped positioning frame 6 provides a precise and stable sliding track for the collection bucket 5. When the stove is put into use, when oil stains and impurities generated during cooking fall down along the discharge hole 22, the collection bucket 5 can accurately stop directly below the discharge hole 22 thanks to the guiding effect of the U-shaped positioning frame 6. This ensures that all the stains discharged from the discharge hole 22 can fall smoothly into the collection bucket 5, avoiding the situation where oil stains splash into other areas inside the furnace body 1, and keeping the inside of the furnace body 1 clean.

[0058] The presence of the U-shaped positioning frame 6 enhances the stability of the collection bucket 5 during sliding. The U-shaped positioning frame 6 can effectively constrain the collection bucket 5, prevent it from shifting or shaking during sliding, and ensure that the collection bucket 5 is always in the correct collection position.

[0059] When it is necessary to clean the collection bin 5, the user can easily hold the handle 51 fixed to the outer wall of the collection bin 5 and gently pull the handle 51. The collection bin 5 will slide smoothly out of the furnace body 1 along the U-shaped positioning frame 6.

[0060] After cleaning, hold the handle 51 and push the collection bucket 5 back into the furnace body 1 along the U-shaped positioning frame 6 until it is accurately positioned directly below the discharge hole 22 again, so as to continue to collect oil and impurities.

[0061] Preferably, by Figure 1 and Figure 7 As shown, this embodiment further includes a guide pipe 9, which is fixed to the bottom surface of the platform 2 and communicates with the discharge hole 22. With the above solution, the presence of the guide pipe 9 prevents the liquid from splashing or leaking at the discharge hole 22 during use. It is tightly connected to the bottom surface of the platform 2 and communicates with the discharge hole 22, forming a sealed and smooth channel, so that the liquid can flow steadily downward along the inner wall of the guide pipe 9. In this way, even if the liquid has a certain impact force when flowing into the discharge hole 22, it can be effectively controlled by the guide pipe 9 to ensure that it all flows into the collection bucket 5 below.

[0062] In actual use, the guide tube 9 is fixed to the bottom surface of the platform 2 at an angle, and the angle of inclination is determined according to the actual working conditions.

[0063] Preferably, by Figure 1 , Figure 7 and Figure 8 As shown, this embodiment further includes: a porous filter plate 10, which is disposed inside the collection bucket 5. A positioning block 101 is fixed on the outer wall of the porous filter plate 10, and a positioning groove 52 for the positioning block 101 to be embedded is processed on the top of the collection bucket 5. With the above solution, when in use, the filter holes of the porous filter plate 10 are evenly distributed, which can effectively intercept solid impurities (such as food residue, seasoning particles, etc.) dripping during cooking, and only allow liquid oil to fall into the bottom of the collection bucket 5 through the filter holes. This design avoids solid impurities from accumulating and clumping in the collection bucket 5, and prevents the guide pipe 9 or the discharge hole 22 from being blocked due to impurities. At the same time, it also eliminates the need to manually sort the solids when pouring out liquid oil. The upper residue and the lower liquid can be separated by simply lifting the porous filter plate 10, which greatly reduces contact contamination during cleaning.

[0064] The cooperation between the positioning block 101 and the positioning groove 52 ensures that the porous filter disc 10 is precisely locked at the top of the collection tank 5, which not only ensures that the porous filter disc 10 will not shift under liquid impact (such as when the filter disc shakes with the liquid and causes residue to fall off when pouring oil), but also allows for manual disassembly and assembly through simple "pressing to embed" or "lifting upward".

[0065] Preferably, by Figure 1 , Figure 7 and Figure 9 As shown, this embodiment further includes: a limiting plate 11, which is disposed within the U-shaped positioning frame 6. A slot 61 for the limiting plate 11 to be embedded is machined on the inner wall of the U-shaped positioning frame 6. With the above solution, during use, the limiting plate 11 becomes the "positioning anchor point" of the sliding trajectory of the collection bucket 5 by being embedded in the slot 61 on the inner wall of the U-shaped positioning frame 6. When the collection bucket 5 slides to the working position directly below the discharge hole 22, the limiting plate 11 abuts against the bucket body to ensure that the collection bucket 5 is precisely aligned with the discharge hole 22, and to avoid the oil stains falling off due to excessive sliding.

[0066] Optionally, by Figure 1 , Figure 4 and Figure 5 As shown, in this embodiment, a locking mechanism 7 is further included. The liquid tray 3 is mounted on the platform 2 using multiple sets of locking mechanisms 7 evenly distributed along the circumference. The locking mechanism 7 includes: an L-shaped plate 71, an n-shaped mounting base 72, a locking pin 74, a limiting ring 75, a return spring 76, and a pull ring 77. The L-shaped plate 71 is fixed to the bottom surface of the liquid tray 3, and the n-shaped mounting base 72 is rotatably mounted to the bottom surface of the platform 2 using a pin 73. The locking pin 74 passes through the n-shaped mounting base 72, and a locking hole for the locking pin 74 to pass through is provided on the vertical part of the L-shaped plate 71. 711, the limiting ring 75 is fixed on the locking pin 74, the return spring 76 is sleeved on the locking pin 74 and is located between the inner wall of the n-type mounting base 72 and the limiting ring 75, and the pull ring 77 is fixed on the end of the locking pin 74 away from the L-shaped plate 71. With the above scheme, when using it, first place the liquid tray 3 in the stepped mounting hole 21 of the platform 2 so that the L-shaped plate 71 and the n-type mounting base 72 are roughly aligned. At this time, the operator pulls the pull ring 77, and the pull ring 77 drives the locking pin 74 to move outward. The return spring 76 is compressed, and the limiting ring 75 moves accordingly.

[0067] After the locking pin 74 has moved a sufficient distance from the corresponding position of the n-type mounting base 72, rotate the n-type mounting base 72 so that it is aligned with the vertical part of the L-type plate 71.

[0068] Next, the pull ring 77 is released, and under the elastic restoring force of the return spring 76, the locking pin 74 is inserted into the locking hole 711 of the vertical part of the L-shaped plate 71, thereby firmly fixing the liquid tray 3 to the platform 2.

[0069] When cleaning or maintenance of the liquid tray 3 is required, simply pull the pull ring 77 again to disengage the locking pin 74 from the locking hole 711, and then rotate the n-shaped mounting base 72 to easily remove the liquid tray 3 from the platform 2. This convenient disassembly method allows users to quickly and thoroughly clean the liquid tray 3, including the flow channel 34, the inner baffle ring 32, and the outer baffle ring 33, ensuring the stove is in good sanitary condition.

[0070] The design of the locking mechanism 7 makes the installation and disassembly of the liquid tray 3 simple and efficient, ensuring the stability and sealing of the stove during use, and facilitating daily cleaning and maintenance by users. This further enhances the overall performance of the dual-burner stove in cleaning oil stains, providing users with a better user experience.

[0071] Optionally, by Figure 1 , Figure 4 and Figure 4 As shown, in this embodiment, a locking mechanism 8 is further included. The furnace head 4 is installed on the liquid tray 3 using multiple sets of locking mechanisms 8 evenly distributed along the circumference. The locking mechanism 8 includes a positioning stud 81 and a wing nut 82. The positioning stud 81 is fixed to the bottom of the furnace head 4 and passes through the horizontal part of the L-shaped plate 71. The wing nut 82 is installed on the protruding end of the positioning stud 81 by thread engagement. With the above solution, when installing the furnace head 4, it is only necessary to align the positioning stud 81 with the through hole and insert it, and then manually tighten the wing nut 82 to complete the fixation.

[0072] When it is necessary to clean the burner head 4 or the liquid tray 3, simply loosen the wing nut 82 in the opposite direction to remove the burner head 4 from the liquid tray 3. This makes cleaning convenient and is especially suitable for commercial scenarios where frequent disassembly and cleaning are required.

[0073] Components not described in detail in this article are existing technologies.

[0074] The working principle and usage process of this utility model: When the double-burner stove of this utility model is in use, when oil stains, soup and other liquids produced during cooking drip onto the surface of the countertop 2, they will first be intercepted by the guide corridor 34 formed by the outer baffle ring 33 and the inner baffle ring 32. The inner baffle ring 32 is close to the outer periphery of the burner head 4, which can prevent the liquid splashed around the burner head 4 from spreading to the center. The outer baffle ring 33 is set along the edge of the liquid tray 3. The inclined guide corridor 34 between the two forms a natural slope, so that the liquid converges along the corridor to the gap 35 under the action of gravity.

[0075] After the liquid enters the drain hole 22 of the platform 2 through the notch 35, it falls directly into the collection bucket 5 below, realizing the directional collection of oil stains. Since the liquid tray 3 is detachably connected to the platform 2 through the stepped mounting hole 21, the burner head 4 can also be detachably installed in the burner head mounting hole 31 of the liquid tray 3. When cleaning is required, the liquid tray 3 together with the burner head 4 can be removed as a whole, and the stubborn stains on the surface of the guide corridor 34, inner baffle ring 32 and outer baffle ring 33 can be deeply cleaned.

[0076] The collection bucket 5 adopts a sliding design and can be pulled out directly from the front of the furnace body 1. After pouring out the oil, it can be rinsed with water.

[0077] This utility model, through an integrated design of "interception-diversion-collection-removable cleaning", transforms the hard-to-clean countertop crevices and dead corners around the burner head 4 of traditional stoves into detachable independent components. Combined with the low-position storage of the collection bucket 5, oil stains do not need to come into contact with the internal structure of the stove body 1. This not only avoids the corrosion of the stove's circuitry or gas lines by liquid leakage, but also simplifies daily cleaning to a three-step operation of "removing the plate-emptying the bucket-rinsing", significantly improving kitchen cleaning efficiency, and is especially suitable for high-frequency commercial scenarios.

[0078] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A double-burner stove for easy cleaning of oil stains, comprising a stove body (1) and a platform (2) fixed to the top of the stove body (1), wherein the platform (2) is provided with a waste drainage hole (22), characterized in that, Also includes: Two symmetrically distributed liquid-holding trays (3) are provided with stepped mounting holes (21) on the platform (2). The liquid-holding trays (3) are detachably installed in the stepped mounting holes (21). The burner head (4) has a burner head mounting hole (31) machined on the liquid tray (3), and the burner head (4) is detachably installed in the burner head mounting hole (31); Inner retaining ring (32), the inner retaining ring (32) is fixed to the top inner circular surface of the liquid holding tray (3); Outer baffle (33) is fixed to the top outer circular surface of the liquid tray (3), and there is a flow guide channel (34) between the outer baffle (33) and the outer baffle (33). A notch (35) communicating with the discharge hole (22) is machined on the outer baffle (33). The collection bucket (5) is slidably installed inside the furnace body (1) and is located directly below the discharge hole (22).

2. The dual burner stove of claim 1, wherein: The inner baffle (32) and the outer baffle (33) are both inclined surfaces, so that the flow guide channel (34) has an inverted trapezoidal groove structure.

3. The dual burner stove of claim 1, wherein: Further includes: U-shaped positioning frame (6), the U-shaped positioning frame (6) is fixed inside the furnace body (1), the collection bucket (5) is slidably installed inside the U-shaped positioning frame (6), and when the collection bucket (5) slides to the farthest section, it is located directly below the discharge hole (22); Handles (51), two handles (51) are symmetrically fixed to the outer wall of the collection bucket (5).

4. The dual burner range according to claim 1, wherein: Further includes: The guide pipe (9) is fixed to the bottom surface of the platform (2) and communicates with the discharge hole (22).

5. The dual burner range according to claim 1, wherein: Further includes: A porous filter disc (10) is disposed inside the collection bucket (5). A positioning block (101) is fixed on the outer wall of the porous filter disc (10). A positioning groove (52) for the positioning block (101) to be embedded is processed on the top of the collection bucket (5).

6. The dual burner range according to claim 3, wherein: Further includes: A limiting plate (11) is disposed within the U-shaped positioning frame (6), and a slot (61) for the limiting plate (11) to be embedded is processed on the inner wall of the U-shaped positioning frame (6).

7. The dual burner range according to claim 1, wherein: The liquid-holding tray (3) is further included with a locking mechanism (7), wherein the liquid-holding tray (3) is mounted on the platform (2) by multiple sets of locking mechanisms (7) evenly distributed along the circumferential direction, wherein the locking mechanism (7) includes: L-shaped plate (71), the L-shaped plate (71) is fixed to the bottom surface of the liquid tray (3); n-type mounting base (72), which is rotatably mounted on the bottom surface of the platform (2) by means of a pin (73); A locking pin (74) passes through the n-shaped mounting base (72), and a locking hole (711) is provided on the vertical part of the L-shaped plate (71) for the locking pin (74) to pass through. A limiting ring (75) is fixed to the locking pin (74); A return spring (76) is sleeved on the locking pin (74) and located between the inner wall of the n-type mounting base (72) and the limiting ring (75); Pull ring (77), the pull ring (77) is fixed to the end of the locking pin (74) away from the L-shaped plate (71).

8. A double-burner stove for easy cleaning of grease according to claim 7, characterized in that: The furnace head (4) is further equipped with a locking mechanism (8), which is mounted on the liquid tray (3) by multiple sets of locking mechanisms (8) evenly spaced along the circumferential direction. The locking mechanism (8) includes: Positioning stud (81), the positioning stud (81) is fixed to the bottom end of the furnace head (4) and passes through the horizontal part of the L-shaped plate (71); A wing nut (82) is installed on the protruding end of the positioning stud (81) by means of thread engagement.

Citation Information

Patent Citations

  • Environmental protection fuel stove

    CN208418824U