Spraying and pouring oil can facilitating oil injection

Through the design of the hinged oil pot cover and the torsion spring structure, the oil pot cover can be automatically opened and closed, which solves the problem of the existing spray oil pot needing to manually unscrew the pot cover when filling oil, and improves the user experience and operation convenience.

CN223380502UActive Publication Date: 2025-09-26余刚
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Patent Information

Application Number
CN202422650838.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-09-26
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

The existing oil spray pot needs to be manually unscrewed when filling the oil, which easily dirtyes the table and is inconvenient to operate, affecting the user experience.

Method used

The hinged oil pot cover and torsion spring structure are used to realize automatic opening and closing of the oil pot cover. The oil filling channel and the automatically flipping oil pot cover are combined to simplify the oil filling operation.

Benefits of technology

You can quickly add oil without manually unscrewing the lid, avoiding desktop pollution, improving user experience, and saving time and effort.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the oil can, through the arrangement of a hinged type oil can upper cover and a torsional spring, automatic opening and closing of the oil can upper cover are achieved, the automatic cover turning function is achieved, a user does not need to unscrew a can cover manually during oil injection, and user experience is improved. In addition, through the cooperative arrangement of the oil injection channel and the oil can upper cover capable of turning over automatically, the oil injection mode is improved, when the oil can upper cover is turned over automatically, a user can directly and rapidly inject oil without unscrewing the oil can upper cover for oil injection, on one hand, the situation that when the cover is taken out independently, the main body and the straw part contaminate a table top can be avoided, and the consumer experience is improved; on the other hand, time and labor are saved.
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Description

Technical Field

[0001] The utility model relates to the field of oil cans, in particular to a pouring oil can which is convenient for oil filling. Background Art

[0002] An oil sprayer is a pot that can spray or pour oil.

[0003] Chinese Patent Publication No. CN219289292U discloses a multifunctional edible oil pot for both pouring and pouring, comprising an oil pot body, an oil pot cover, an oil pouring spout, and a nozzle. The oil pot cover has an installation opening between the front middle and the top, and a rotatable gravity flap is installed in the installation opening. The gravity flap can be used to drive the pouring switch, which is convenient to use and can be operated with one hand. It is hygienic and healthy, does not produce excess oil stains, and prevents edible oil from deteriorating. The gravity flap can also be locked to prevent incorrect operation. The oil pot can both pour and spray oil, meeting the various needs of users. It has a reasonable structure, is easy to assemble, and is reliable to use. However, the oil pot and the lid of the oil pot are manually unscrewed to fill the oil. This unscrewing method may cause oil to drip onto the inner wall of the unscrewed lid and contaminate the table surface during filling, making subsequent cleaning more troublesome and affecting the consumer experience. In addition, rotating the lid to fill the oil is more troublesome, and sometimes it is difficult to unscrew when there is oil on the main body.

[0004] Therefore, how to overcome the above-mentioned defects has become an important issue to be solved urgently by those skilled in the art. Utility Model Content

[0005] The utility model overcomes the shortcomings of the above-mentioned technology. Through the innovative design of improving the oil filling method, simplifying the oil filling operation, maintaining the hygiene of the oil pot and enhancing the functionality of the oil pot, it effectively solves the problems existing in the background technology and improves the user experience and the practicality of the oil pot.

[0006] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0007] A pouring oil pot for easy oil filling comprises an oil pot body 1, an oil pot top shell 2 and an oil pot upper cover 3; the oil pot top shell 2 is connected to the top of the oil pot body 1, and the oil pot upper cover 3 is hinged to the oil pot top shell 2 through a longitudinal rotating shaft 5 located on one side thereof, and a torsion spring 4 is connected to the hinge between the oil pot upper cover 3 and the oil pot top shell 2; an oil filling channel 211 is provided inside the oil pot top shell 2, and the oil filling channel 211 is communicated with the inside of the oil pot body 1 and is revealed when the oil pot upper cover 3 is flipped open; an oil pouring port 6 is provided on the top of the oil pot top shell 2; a flip cover structure for driving the oil pot upper cover 3 to automatically flip over is also provided between the oil pot top shell 2 and the oil pot upper cover 3.

[0008] Preferably, the oil pot top shell 2 includes: an internal bracket 21 that is rotatably connected to the top of the oil pot bottle body 1, and an outer shell 22 covering the outside of the internal bracket 21. The internal bracket 21 has two symmetrical oil filling channels 211 that protrude upward on its front and rear sides, a first bayonet 212 that protrudes upward on its left / right side, a through port 213 that is connected to the oil pot bottle body 1 is opened in the middle, and an oil pouring channel 214 that is connected to the oil pouring port 6 is provided below the oil pouring port 6. A nozzle 71 is laterally connected to the first bayonet 212, a pump core 72 is inserted into the through port 213, a suction pipe 73 inserted into the interior of the oil pot bottle body 1 is installed on the pump core 72, and an oil spray pressing structure 8 for drawing oil from the oil pot bottle body 1 to the nozzle 71 through the pump core 72 is installed on the internal bracket 21.

[0009] Preferably, the flip-cover structure includes: the torsion spring 4, a clip 91 installed on one side of the internal bracket 21, and a clip 92 opened on the oil can upper cover 3, the clip 91 is provided with a block portion 911 that passes through the clip 92 to achieve upper and lower clipping, a flip-cover button portion 912 exposed on the outer shell 22, and a spring 914 installed at the inner side of the corresponding flip-cover button portion 912. The outer shell 22 is provided with an avoidance opening 93 directly below the clip 92 that does not hinder the block portion 911 from passing through. The clip 91 is separated from the clip 92 when the flip-cover button portion 912 is pressed inward and rebounds to achieve clipping when there is no force.

[0010] Preferably, the oil pot top shell 2 is connected to a swing limiter 10 on the top surface, and the swing limiter 10 is provided with a limiting protrusion 101 protruding downward to the edge of the oil pouring port 6, a clamping protrusion 102 clamped with the oil pot top shell 2, and an installation space 103 for the longitudinal rotating shaft 5 to be installed thereon. A part of the torsion spring 4 is sleeved on the longitudinal rotating shaft 5, and the other part is connected to the oil pot upper cover 3.

[0011] Preferably, the oil pot upper cover 3 is provided with a sealing silica gel 201 at a position corresponding to the oil filling channel 211 .

[0012] Preferably, a sealing rubber ring 202 is provided between the internal bracket 21 and the top of the oil bottle body 1 .

[0013] Preferably, the oil spray pressing structure 8 of the oil pot bottle body 1 includes: a first connecting member 81, a connecting rod 82, and a pressing wrench 83. The first connecting member 81 is connected to the top of the pump core 72, and one side of the connecting rod 82 is hinged to the first connecting member 81 and the other side is hinged to the pressing wrench 83.

[0014] Preferably, the oil can upper cover 3 is provided with a flip-up gravity flap 31 above the corresponding oil pouring port 4, a pouring oil mark 32 for indicating that it is in pouring oil mode is provided on one side of the gravity flap 31, a spraying oil mark 33 for indicating that it is in spraying oil mode is provided next to the pouring oil mark 32, and a switching button 34 for switching between pouring oil mode and spraying oil mode is achieved by sliding to the corresponding mark position.

[0015] Preferably, the switch button 34 is provided with a main body mounting portion 341, a sliding protrusion 342 protruding from the bottom of the main body mounting portion 341, a touch protrusion 343 protruding from the top of the main body mounting portion 341 for human touch switching, and a blocking portion 344 protruding from the front end of one side of the main body mounting portion 341; the gravity flip cover 31 is reserved with a blocking gap 311 below the end of its flip cover, and the blocking portion 344 is in the blocking gap 311 when switching to the injection mark 33, so as to limit and block the gravity flip cover 31 to prevent it from flipping over.

[0016] Preferably, the oil pot top shell 2 is provided with a handle 200 below the pressing wrench 83 for easy grasping.

[0017] Compared with the prior art, the beneficial effects of the present invention are:

[0018] 1. This oil can features an articulated lid and a torsion spring, allowing the lid to automatically open and close. This automatic flip function eliminates the need for users to manually unscrew the lid when filling, enhancing the user experience. Furthermore, the combination of the filling channel and the automatically flipping lid improves the filling process. When the lid automatically opens, users can quickly refill the oil directly without unscrewing it. This not only prevents the main body and straw from soiling the table when removing the lid, but also saves time and effort. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the oil pot in this case.

[0020] Figure 2 This is a schematic diagram of the exploded structure of the oil can in this case.

[0021] Figure 3 It is a schematic diagram of the exploded structure of the top shell of the oil can in this case.

[0022] Figure 4 It is a structural diagram of the internal bracket of the oil can top shell in this case.

[0023] Figure 5 This is a partial structural diagram of this case with part of the structure hidden.

[0024] Figure 6 This is a schematic diagram of the structure of the oil bottle hidden in this case.

[0025] Figure 7 It is a schematic diagram of the cross-sectional structure of the oil can in this case.

[0026] Figure 8 It is a structural diagram of the swing limiter in this case.

[0027] Figure 9 This is a schematic diagram of the cross-sectional structure of the switch button in this case. DETAILED DESCRIPTION

[0028] The following examples further illustrate the features of the present invention and other related features to facilitate understanding by those skilled in the art:

[0029] like Figures 1 to 9 As shown, a pouring oil can that is easy to fill with oil includes an oil can body 1, an oil can top shell 2, and an oil can cover 3. The oil can top shell 2 is connected to the top of the oil can body 1, and the oil can cover 3 is hinged to the oil can top shell 2 via a longitudinal rotating shaft 5 located on one side of the oil can, allowing it to rotate around the axis. A torsion spring 4 is internally connected to the hinge between the oil can cover 3 and the oil can top shell 2 to provide elastic force for opening and closing the cover. An oil filling channel 211 is provided inside the oil can top shell 2, which is connected to the interior of the oil can body 1 and is revealed when the oil can cover 3 is flipped open. An oil pouring port 6 is provided at the top of the oil can top shell 2 for pouring out the oil in the can. In addition, a flip cover structure for driving the oil can cover 3 to automatically flip open is provided between the oil can top shell 2 and the oil can cover 3.

[0030] As described above, this embodiment utilizes a hinged oil can lid and a torsion spring to achieve automatic opening and closing of the oil can lid, providing an automatic flip-up function. This eliminates the need for users to manually unscrew the lid when filling oil, thereby enhancing the user experience. Furthermore, this embodiment utilizes the coordinated arrangement of the oil filling channel 211 and the automatically flipping oil can lid to improve the oil filling method. When the oil can lid automatically flips open, the user can quickly fill the oil directly without having to unscrew the lid. This not only prevents the main body and straw from soiling the tabletop when removing the lid separately, but also saves time and effort.

[0031] like Figure 2 and Figure 3As shown, in a specific implementation, the oil pot top shell 2 includes: an internal bracket 21 that is rotatably connected to the top of the oil pot bottle body 1, and an outer shell 22 covering the outside of the internal bracket 21. The internal bracket 21 has two symmetrical oil filling channels 211 that extend upward on its front and rear sides, and a first bayonet 212 that protrudes upward on its left / right side. A through port 213 that communicates with the oil pot bottle body 1 is opened in the middle, and an oil pouring channel 214 that communicates with the oil pouring port 6 is provided below the oil pouring port 6. A nozzle 71 is horizontally connected to the first bayonet 212, and a pump core 72 is inserted into the through port 213. A suction pipe 73 inserted into the interior of the oil pot bottle body 1 is installed on the pump core 72. An oil spray pressing structure 8 for extracting the oil from the oil pot bottle body 1 through the pump core 72 to be sprayed out from the nozzle 71 is installed on the internal bracket 21.

[0032] As described above, the design of the rotatable, snap-fit ​​internal bracket 21 allows users to more easily install and remove the oiler's top shell 2, facilitating cleaning and maintenance. The two symmetrical oil filling channels 211 allow users to fill oil from two different positions, accelerating filling speed. The first snap-fit ​​212 facilitates precise installation of the nozzle 71, while the transverse snap-fit ​​allows for flexible removal and replacement of the nozzle 71 during use. The opening 213 allows the pump core 72 and suction pipe 73 to be installed on the oiler's top shell 2, rather than on the oiler's upper cover 3. This prevents the suction pipe 73 from moving when the oiler's upper cover 3 is flipped, preventing contamination and oil splashing, further enhancing the consumer experience. The oil-spraying mechanism and nozzle arrangement enable this design to function as both a sprayer and a pourer. The pouring channel 214 allows oil to flow smoothly from the oiler's body through the internal bracket to the pouring port 6, making pouring convenient for users. The oil pouring channel 214 is separated from the oil filling channel 211 to prevent external contaminants from entering the oiler through the pouring channel during the pouring process, thereby ensuring the cleanliness of the oil. In summary, the various components of the internal bracket 21 are rationally arranged and compactly structured, achieving the basic functions of the oiler while saving space.

[0033] like Figure 5As shown, in a specific implementation, the oil spray pressing structure 8 of the oil bottle body 1 includes: a first connecting member 81, a connecting rod 82, and a pressing wrench 83. The first connecting member 81 is connected to the top of the pump core 72, and the connecting rod 82 is hinged on the first connecting member 81 on one side and hinged on the pressing wrench 83 on the other side. In a specific implementation, when oil spraying is required, the user can press the pressing wrench 83 downward to drive the connecting rod 82 to move downward, thereby driving the pump core 72 to move downward through the connecting rod 82 to achieve oil spraying. In this way, the user only needs to simply press the pressing wrench 83 downward to move the pump core 72 downward through the transmission action of the connecting rod 82, thereby achieving oil spraying, which greatly improves the user experience. The connecting rod 82 of the oil spray pressing structure 8 serves as a transmission component, and its design is reasonable and the transmission efficiency is high.

[0034] like Figure 3 and Figure 6 As shown, in a specific implementation, the flip cover structure includes: the torsion spring 4, a clip 91 installed on one side of the internal bracket 21, and a clip 92 opened on the oil can upper cover 3, the clip 91 is provided with a block portion 911 passing through the clip 92 to achieve upper and lower clipping, a flip cover button portion 912 exposed on the shell 22, and a spring 914 is installed at the inner position corresponding to the flip cover button portion 912 through a mounting protrusion 913, and the shell 22 is provided with an avoidance opening 93 that does not hinder the block portion 911 from passing out directly below the clip 92, and the clip 91 is separated from the clip 92 when the flip cover button portion 912 is pressed inward and rebounds to achieve clipping when there is no force.

[0035] In this way, by exposing the flip cover button portion 912 outside the shell 22, the user can easily access and operate it, thereby conveniently opening or closing the flip cover. By pressing the flip cover button portion 912 inward, the block portion 911 of the clamping member 91 can be quickly separated from the bayonet 92, realizing the function of quick unlocking. The block portion 911 passes through the bayonet 92 to achieve upper and lower clamping, ensuring the stability of the flip cover in the closed state and avoiding accidental opening or loosening. The installation of the spring 914 enables the clamping member 91 to automatically rebound when not under force, ensuring that the block portion 911 can be accurately and reliably clamped into the bayonet 92. The flip cover structure achieves a compact structure and saves space through the clever coordination of the internal bracket 21 and the shell 22. The provision of the avoidance opening 93 prevents the block portion 911 from being obstructed during the passage process, thereby reducing the safety risks caused by improper operation or component damage.

[0036] like Figure 6 and Figure 8As shown, in a specific implementation, the top surface of the oiler top shell 2 is connected to a swing limiter 10. The swing limiter 10 comprises a limiter protrusion 101 that protrudes downward to the edge of the oil pouring port 6, a locking protrusion 102 that engages with the oiler top shell 2, and a mounting space 103 for mounting the longitudinal shaft 5 thereon. A portion of the torsion spring 4 is sleeved on the longitudinal shaft 5, while the other portion is connected to the oiler top cover 3. In a specific implementation, the swing limiter 10 is configured such that the 95-degree position of the oiler top cover 3 is limited. Upon pressing the flip button, the torsion spring automatically opens to the 95-degree position. Without external force, the top cover will not flip back down and remains fixed at the 95-degree position. After oiling is completed, the oiler top cover 3 is manually flipped to the closed position and pressed down slightly to close the cover. The oiler top cover 3 automatically locks into the main body.

[0037] As described above, by providing a limiting protrusion 101 that protrudes downward to the edge of the oil pouring port 6, the swing limiter 10 can effectively limit the swing range of the oil pot cover 3, which helps the user to control the oil pouring process more stably and prevents oil from splashing or pouring too much due to excessive tilting. The snap-fit ​​design between the snap-fit ​​protrusion 102 and the oil pot top shell 2 allows the swing limiter 10 to be firmly mounted on the oil pot, while being convenient for the user to disassemble and replace. The installation space 103 provides a suitable installation position for the longitudinal rotating shaft 5, making the structure of the entire oil pot more compact and reasonable. A portion of the torsion spring 4 is sleeved on the longitudinal rotating shaft 5, and the other portion is connected to the oil pot cover 3, so that the oil pot cover 3 can automatically reset after swinging, thereby improving the convenience of use.

[0038] like Figure 6 and Figure 7 As shown, the oiler cover 3 is equipped with a sealing silicone rubber 201 at the position corresponding to the oil filling channel 211. A sealing rubber ring 202 is installed between the internal bracket 21 and the top of the oiler body 1. The sealing silicone rubber 201 seals the connection between the oil filling channel 211 and the oiler cover 3, ensuring that when pouring oil, the oil flows to the top cover of the flow channel and does not flow out.

[0039] like Figure 1 、 Figure 5 、 Figure 6As shown, in a specific embodiment, the oiler's upper cover 3 is equipped with a reversible gravity flap 31 above the corresponding pouring port 4. A pouring indicator 32 is located on one side of the gravity flap 31 to indicate that the oiler is in pouring mode. A spraying indicator 33 is located next to the pouring indicator 32 to indicate that the oiler is in spraying mode. A toggle button 34 is provided to switch between pouring and spraying modes by sliding to the corresponding indicator position. This reversible gravity flap allows the user to open the pouring port by simply tilting it, eliminating the need for additional complex operations, greatly improving ease of use. The toggle button allows the user to easily switch between pouring and spraying modes with a simple sliding motion. The pouring and spraying indicators provide intuitive mode indication for the user. The user can quickly determine the oiler's current operating mode by simply checking the currently selected indicator, avoiding operational errors caused by mode confusion.

[0040] like Figure 9 As shown, in a specific implementation, the switch button 34 is provided with a main body mounting portion 341, a sliding protrusion 342 protruding from the bottom of the main body mounting portion 341, a touch protrusion 343 protruding from the top of the main body mounting portion 341 for human touch switching, and a blocking portion 344 protruding from the front end of one side of the main body mounting portion 341; the gravity flip cover 31 is reserved with a blocking gap 311 below the end of the flip cover, and the blocking portion 344 is in the blocking gap 311 when switching to the injection mark 33, so as to limit and block the gravity flip cover 31 to prevent it from flipping over.

[0041] As described above, the design of the sliding protrusion 342 enables the switch button 34 to slide stably in the slide groove of the oil pot cover, ensuring that the user can experience a smooth and stable operating experience when switching modes. The setting of the touch protrusion 343 allows the user to easily find and operate the switch button. Even when the hands may be greasy or busy during the cooking process, the user can quickly locate and complete the switch through touch. The blocking portion 344 cooperates with the blocking gap 311 on the gravity flap 31. When the switch button is slid to the oil spray mark 33 position, the blocking portion will enter the blocking gap, thereby physically limiting the flipping of the gravity flap. This not only realizes the locking of the flap in the oil spray mode, but also effectively prevents the user from accidentally operating the flap when it does not need to pour oil, thereby improving the safety of use.

[0042] like Figure 9 As shown, in a specific implementation, the oil pot top shell 2 is installed with a handle 200 for easy grasping below the pressing wrench 83.

[0043] As mentioned above, this case protects a spray oil can that is easy to fill with oil. All technical solutions that are the same or similar to those in this case should be deemed to fall within the scope of protection of this case.

Claims

1. A spray oil pot that is easy to fill with oil, characterized in that The invention comprises an oil pot body (1), an oil pot top shell (2) and an oil pot upper cover (3); the oil pot top shell (2) is connected to the top of the oil pot body (1); the oil pot upper cover (3) is hinged to the oil pot top shell (2) via a longitudinal rotating shaft (5) located on one side thereof; a torsion spring (4) is connected to the hinge between the oil pot upper cover (3) and the oil pot top shell (2); an oil injection channel (211) is provided inside the oil pot top shell (2); the oil injection channel (211) is communicated with the inside of the oil pot body (1) and is exposed when the oil pot upper cover (3) is turned over and opened; an oil pouring port (6) is provided at the top of the oil pot top shell (2); and a flip cover structure for driving the oil pot upper cover (3) to automatically flip is further provided between the oil pot top shell (2) and the oil pot upper cover (3).

2. The oil pouring pot for easy oil filling according to claim 1, characterized in that The oil pot top shell (2) comprises: an internal bracket (21) rotatably connected to the top of the oil pot body (1), an outer shell (22) covering the internal bracket (21), two symmetrical oil injection channels (211) formed by upwardly protruding extension of the internal bracket (21), a first bayonet (212) formed by upwardly protruding on the left / right side thereof, a through port (213) communicating with the oil pot body (1) provided in the middle thereof, and an oil pouring channel (214) communicating with the oil pouring port (6) provided below the oil pouring port (6), a nozzle (71) being transversely connected to the first bayonet (212), a pump core (72) being plugged into the through port (213), a suction pipe (73) being installed on the pump core (72) being inserted into the interior of the oil pot body (1), and an oil spray pressing structure (8) for pumping oil from the oil pot body (1) to the nozzle (71) for spraying through the pump core (72).

3. The oil pouring pot for easy oil filling according to claim 2, characterized in that The flip cover structure comprises: the torsion spring (4), a clamping member (91) installed on one side of the internal bracket (21), a clamping port (92) provided on the upper cover (3) of the oil pot, the clamping member (91) being provided with a clamping block portion (911) passing through the clamping port (92) to achieve upper and lower clamping, a flip cover button portion (912) exposed from the housing (22), a spring (914) being installed at an inner position corresponding to the flip cover button portion (912), the housing (22) being provided with a relief opening (93) directly below the clamping port (92) that does not hinder the clamping block portion (911) from passing through, the clamping member (91) being separated from the clamping port (92) when the flip cover button portion (912) is pressed inwardly, and being clamped by rebounding under the action of the spring (914) when no force is applied.

4. The oil pouring pot for easy oil filling according to claim 1, characterized in that The oil pot top shell (2) is connected to a swing limiter (10) on the top surface. The swing limiter (10) is provided with a limiter protrusion (101) protruding downward to the edge of the oil pouring port (6), a clamping protrusion (102) clamped with the oil pot top shell (2), and an installation space (103) for the longitudinal rotating shaft (5) to be installed thereon. A portion of the torsion spring (4) is sleeved on the longitudinal rotating shaft (5), and the other portion is connected to the oil pot upper cover (3).

5. The oil pouring pot for easy oil filling according to claim 1, characterized in that The oil pot upper cover (3) is provided with sealing silica gel (201) at a position corresponding to the oil filling channel (211).

6. The oil pouring pot for easy oil filling according to claim 2, characterized in that A sealing rubber ring (202) is provided between the internal bracket (21) and the top of the oil pot body (1).

7. The oil pouring pot for easy oil filling according to claim 2, characterized in that The oil spray pressing structure (8) of the oil pot bottle body (1) comprises: a first connecting member (81), a connecting rod (82), and a pressing wrench (83); the first connecting member (81) is connected to the top of the pump core (72); one side of the connecting rod (82) is hinged to the first connecting member (81), and the other side is hinged to the pressing wrench (83).

8. The oil pouring pot for easy oil filling according to claim 1, characterized in that The oil pot upper cover (3) is provided with a reversible gravity flap (31) above the corresponding oil pouring port (6); an oil pouring mark (32) for indicating that the oil is in the oil pouring mode is provided on one side of the gravity flap (31); an oil spray mark (33) for indicating that the oil is in the oil spraying mode is provided next to the oil pouring mark (32); and a switching button (34) for switching between the oil pouring mode and the oil spraying mode by sliding to the corresponding mark position.

9. The oil pouring pot for easy oil filling according to claim 8, characterized in that The switch button (34) is provided with a main body mounting portion (341), a sliding protrusion (342) protruding from below the main body mounting portion (341), a touch protrusion (343) protruding from above the main body mounting portion (341) for switching by touching, and a blocking portion (344) protruding from the front end of one side of the main body mounting portion (341); the gravity flip cover (31) is provided with a blocking gap (311) below the flip end thereof, and the blocking portion (344) is located in the blocking gap (311) when switching to the oil injection mark (33), so as to limit and block the gravity flip cover (31) to prevent it from flipping.

10. The oil pouring pot for easy oil filling according to claim 7, characterized in that The oil pot top shell (2) is provided with a handle (200) below the pressing wrench (83) for easy grasping.

Citation Information

Patent Citations

  • Spraying and pouring dual-purpose multifunctional edible oil can

    CN219289292U