Oil pouring pot
The design of the oil pouring can solves the problems of inconvenience and pollution associated with existing oil pouring cans, providing a convenient way to pour oil and sealing protection. The structure is reasonably designed, easy to clean, and aesthetically pleasing.
Patent Information
- Application Number
- CN202422842882.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-11-20
AI Technical Summary
Existing oil dispensers require unscrewing the cap to pour the oil, which is inconvenient, and the exposed spout makes it easy for foreign objects to enter and contaminate the oil.
An oil pouring container was designed, which features an oil pouring hole, a sealing gasket, and a sliding sealing structure inside the container body. Combined with a limiting structure and a rotating buckle on the lid, it achieves sealing and oil pouring functions. The through hole is sealed by the weight of a steel ball to prevent foreign objects from entering.
It features convenient oil pouring and sealing protection to prevent foreign object contamination, a detachable structure for easy cleaning, and an attractive appearance.
Smart Images

Figure CN223489612U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of oil container technology, and in particular to an oil pouring pot. Background Technology
[0002] Oil dispensers are an essential part of daily cooking, serving as containers for cooking oil. However, existing oil dispensers require unscrewing the lid to pour the oil, which is extremely inconvenient. Furthermore, some dispensers have spouts that are exposed both inside and out, without any protective structure, making it easy for foreign objects to enter and contaminate the oil. Utility Model Content
[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide an oil pouring container.
[0004] This utility model is achieved through the following technical solution: an oil pouring pot, comprising a pot body, a pot shell, and a pot lid; the pot shell is fitted onto the pot body, and the pot lid is installed on the pot shell; an oil pouring hole is provided on the upper side of the pot body, and a sealing gasket with a through hole is fitted inside the oil pouring hole; the pot lid is provided with a spout, the lower end of the spout communicating with the oil pouring hole, and the upper end of the spout communicating with the outside to form an oil pouring port; the spout is provided with a sealing structure that can slide along the lower section of the spout and a limiting structure for restricting the travel of the sealing structure, and the sealing structure blocks or opens the through hole of the sealing gasket.
[0005] The oil inside the kettle enters the spout through the pouring hole and the through hole of the sealing gasket, and then flows out of the kettle through the pouring hole, thus realizing the oil pouring function; the sealing gasket enhances the sealing performance; the sealing structure is used to block the through hole of the sealing gasket; the limiting structure can restrict the stroke of the sealing structure and prevent the sealing structure from falling off.
[0006] The kettle body has a positioning hole, and the kettle shell is provided with a positioning cylinder and a screw. The screw passes through the positioning cylinder and is screwed into the positioning hole to lock the kettle shell and the kettle body together.
[0007] The positioning cylinder has a locking mechanism, and the inner side of the lid protrudes inward to form a convex part. The convex part engages with the locking mechanism as the lid rotates, or the convex part disengages from the locking mechanism as the lid rotates. The cooperation between the convex part and the locking mechanism allows the lid to be fastened or loosened from the kettle shell.
[0008] The positioning holes are provided in a plurality of evenly distributed manner, and the number of positioning cylinders matches the number of positioning holes. The presence of multiple positioning holes and positioning cylinders enhances the stable fit between the kettle shell and the kettle lid.
[0009] The spout includes a first pouring channel and a second pouring channel. The upper end of the first pouring channel communicates with the second pouring channel, and the other end of the second pouring channel is a pouring port communicating with the outside. The outer periphery of the first pouring channel is a cylindrical structure, and the lower side of the cylindrical structure abuts against the upper side of the kettle shell. The sealing structure is a sphere located in the lower section of the first pouring channel. The limiting structure is a rib installed on the inner side of the upper section of the first pouring channel. The distance between the free end of the rib and the side wall of the first pouring channel on the opposite side of the rib is less than the diameter of the sphere. The rib restricts the range of motion of the sphere, preventing it from sliding from the first pouring channel into the second pouring channel and thus out of the kettle lid. The cylindrical structure on the outer periphery of the first pouring channel abuts against the kettle shell, providing support for the spout. The gravity of the sphere allows the kettle to seal the through hole of the sealing structure and the pouring hole of the kettle body by its own weight when not in use.
[0010] The sphere is a steel ball.
[0011] The second oil pouring channel is a channel that is inclined upwards.
[0012] The kettle shell has a mounting hole corresponding to the position of the through hole; the sealing gasket is an annular structure with a through hole, and the upper part of its outer periphery protrudes outward to form a raised ring; when the sealing gasket is fitted into the oil drain hole, the lower part of the outer periphery of the sealing gasket abuts against the side wall of the oil drain hole, the lower side of the raised ring abuts against the upper side of the kettle body, and the outer side of the raised ring abuts against the inner wall of the mounting hole.
[0013] The front center of the teapot body protrudes outwards, gradually narrowing towards the top and transitioning into a rounded shape towards the bottom. The teapot body is recessed inwards to form an insert for mounting the teapot shell. This insert gradually slopes upwards from the bottom of the rear side of the teapot towards the front, forming a stepped position. The teapot shell is fitted into this insert, with its lower side abutting against the stepped position. The outer circumference of the teapot shell is flush with the outer circumference of the teapot body. This insert, designed for mounting the teapot shell, and its flushness with the teapot body, creates a smooth and aesthetically pleasing structure.
[0014] Compared with the existing technology, the advantages of this utility model are as follows: the oil can is detachable, which is convenient for disassembly and cleaning; when pouring oil, simply tilt the can body, and the steel ball will separate from the through hole of the sealing gasket under its own weight, connecting the spout with the oil pouring hole, thereby realizing the oil pouring function; after pouring oil, lay the oil can flat, and the steel ball will automatically fall back to block the through hole of the sealing gasket, which can seal and protect the oil pouring hole and prevent foreign objects from entering and contaminating the can. Attached Figure Description
[0015] Figure 1 This is a front view of an embodiment of the present utility model;
[0016] Figure 2 This is a side view of an embodiment of the present utility model;
[0017] Figure 3 for Figure 1 Sectional view along line AA;
[0018] Figure 4 for Figure 2 Sectional view along the BB direction;
[0019] Figure 5 This is a perspective view of an embodiment of the present utility model;
[0020] Figure 6 This is an exploded view of the structure of an embodiment of the present utility model;
[0021] Figure 7 This is a schematic diagram of the structure of this utility model cut along the longitudinal direction;
[0022] Figure 8 This is a schematic diagram of the structure of the pot lid in the unscrewed state according to an embodiment of the present invention;
[0023] Figure 9 This is a schematic diagram of the lid of the pot in the screw-on state according to an embodiment of the present invention;
[0024] Figure 10 This is a schematic diagram of the structure of the lid of the pot in the lower direction according to an embodiment of the present invention;
[0025] Figure 11 This is a perspective view of the lid of the pot according to an embodiment of the present utility model;
[0026] Figure 12 This is a schematic diagram of the longitudinal section of the lid of the pot according to an embodiment of the present invention;
[0027] Figure 13 This is a schematic diagram of the structure of the lid of the pot in another direction after being cut along the longitudinal direction in an embodiment of this utility model.
[0028] The meanings of the labels in the attached diagram are as follows: 1. Kettle body; 11. Pouring hole; 12. Positioning hole; 13. Embedded part; 14. Stage; 2. Kettle shell; 21. Positioning cylinder; 22. Buckle; 23. Mounting hole; 3. Kettle lid; 31. Pouring spout; 32. Protrusion; 33. First pouring channel; 34. Second pouring channel; 4. Sealing structure; 5. Limiting structure; 6. Sealing gasket; 7. Screw. Detailed Implementation
[0029] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0030] Example
[0031] See Figures 1 to 13 An oil pouring bottle includes a bottle body 1, a bottle shell 2, and a bottle lid 3. The bottle shell 2 is fitted onto the bottle body 1, and the bottle lid 3 is installed on the bottle shell 2. An oil pouring hole 11 is provided on the upper side of the bottle body 1, and a sealing gasket 6 with a through hole is fitted inside the oil pouring hole 11. The bottle lid 3 is provided with a spout, the lower end of which is connected to the oil pouring hole 11, and the upper end of which is connected to the outside to form an oil pouring port 31. A sealing structure 4 that can slide along the lower part of the spout and a limiting structure 5 for restricting the stroke of the sealing structure 4 are provided inside the spout. The sealing structure 4 blocks or opens the through hole of the sealing gasket 6.
[0032] The oil inside the pot body 1 enters the spout through the oil pouring hole 11 and the through hole of the sealing gasket 6, and then flows out of the pot through the oil pouring hole 11, thus realizing the oil pouring function; the setting of the sealing gasket 6 can enhance the sealing performance; the setting of the sealing structure 4 is used to block the through hole of the sealing gasket 6; the limiting structure 5 can constrain the stroke of the sealing structure 4 and prevent the sealing structure 4 from falling off.
[0033] The body 1 has a positioning hole 12, and the shell 2 has a positioning cylinder 21 and a screw 7. The screw 7 passes through the positioning cylinder 21 and is screwed into the positioning hole 12 to lock the shell 2 and the body 1 together.
[0034] The positioning cylinder 21 has a latch 22, and the inner side of the lid 3 protrudes inward to form a protrusion 32. The protrusion 32 is engaged into the latch 22 as the lid 3 rotates, or the protrusion 32 is disengaged from the latch 22 as the lid 3 rotates. The cooperation between the protrusion 32 and the latch 22 can achieve the fastening or loosening of the lid 3 and the kettle shell 2.
[0035] Several positioning holes 12 are provided and evenly distributed, and the number of positioning cylinders 21 matches the number of positioning holes 12. The multiple positioning holes 12 and positioning cylinders 21 can enhance the stable fit between the kettle shell 2 and the kettle lid 3.
[0036] The spout includes a first pouring channel 33 and a second pouring channel 34. The upper end of the first pouring channel 33 is connected to the second pouring channel 34, and the other end of the second pouring channel 34 is a pouring port 31 connected to the outside. The outer periphery of the first pouring channel 33 is a cylindrical structure, and the lower side of the cylindrical structure abuts against the upper side of the kettle shell 2. The sealing structure 4 is a sphere located in the lower section of the first pouring channel 33. The limiting structure 5 is a rib installed on the inner side of the upper section of the first pouring channel 33, and the distance between the free end of the rib and the side wall of the first pouring channel 33 on the opposite side of the rib is less than the diameter of the sphere. The rib restricts the range of motion of the sphere (controls the stroke of the sphere and is used to block the sphere), preventing the sphere from sliding from the first pouring channel 33 into the second pouring channel 34 and thus out of the kettle lid 3. The cylindrical structure on the outer periphery of the first pouring channel 33 abuts against the kettle shell 2, providing support for the spout. The sphere's gravity allows the oil dispenser to seal the through hole of the sealing structure 4 and the oil pouring hole 11 of the body 1 by its own weight when it is not in use.
[0037] The sphere is made of steel.
[0038] The second oil pouring channel 34 is a channel that is inclined upwards.
[0039] The kettle shell 2 has a mounting hole 23 opposite to the position of the through hole; the sealing gasket 6 is an annular structure with a through hole, and the upper part of its outer periphery protrudes outward to form a raised ring; when the sealing gasket 6 is fitted into the oil drain hole 11, the lower part of the outer periphery of the sealing gasket 6 abuts against the side wall of the oil drain hole 11, the lower side of the raised ring abuts against the upper side of the kettle body 1, and the outer side of the raised ring abuts against the inner wall of the mounting hole 23.
[0040] The front center of the teapot body 1 protrudes outwards, gradually narrowing towards the top and transitioning into a rounded shape towards the bottom. The teapot body 1 is recessed inwards to form an insert 13 for mounting the teapot shell 2. The insert 13 extends upwards from the rear bottom of the teapot body 1 towards the front, forming a step 14. The teapot shell 2 is fitted into the insert 13, with its lower side abutting the step 14. The outer circumference of the teapot shell 2 is flush with the outer circumference of the teapot body 1. The insert 13, used to mount the teapot shell 2, and the flushness of the outer circumference of the teapot shell 2 with the outer circumference of the teapot body 1, contributes to a smoother and more aesthetically pleasing structure.
[0041] In this embodiment, a washer (not shown in the figure) can also be provided on the lower side of the second oil pouring channel 34. The steel ball is located above the washer, and the washer can limit the lower position of the steel ball to prevent it from falling off. The through hole of the washer is opposite to the through hole of the lower sealing washer 6. In this embodiment, the entire oil pouring container is shaped like a penguin. In this embodiment, the sealing washer 6 is a silicone washer.
[0042] Assembly in this embodiment:
[0043] 1) Place the kettle shell 2 on top of the kettle body 1, and put the kettle shell 2 on the kettle body 1 from top to bottom, so that the holes of the three positioning cylinders 21 set on the kettle shell 2 are concentric with the positioning holes 12 set on the kettle body 1, and use screws 7 to lock the kettle shell 2 and the kettle body 1.
[0044] 2) Place the sealing gasket 6 on top of the kettle shell 2, and press the sealing gasket 6 into the oil drain hole 11 set in the kettle shell 2 from top to bottom;
[0045] 3) Place the spout above the teapot shell 2, and move the spout downwards until its bottom surface contacts the top surface of the teapot shell 2. Figure 8 Then turn the spout clockwise until... Figure 9 Engaged state.
[0046] The principle of this embodiment:
[0047] 1) When the oil can is in the unscrewed position (e.g.) Figure 8Lift the spout upwards to remove it, and the liquid can be added into the body 1 through the through hole in the middle of the sealing gasket 6;
[0048] 2) When the oil can is in the unscrewed position (e.g.) Figure 8 Turn the spout clockwise to turn the oil bottle from the open to the closed position, then tilt the oil bottle towards the spout opening to pour out the liquid from the spout opening.
[0049] In this embodiment, when the pot body 1 is tilted to pour oil, the steel ball separates from the through hole of the sealing gasket 6 under its own weight; when the oil pot is laid flat, the steel ball automatically blocks the through hole of the sealing gasket 6.
[0050] The above detailed description is a specific description of a feasible embodiment of the present utility model. This embodiment is not intended to limit the patent scope of the present utility model. All equivalent implementations or modifications that do not depart from the present utility model should be included in the patent scope of this case.
Claims
1. An oil pouring container, characterized in that: The device includes a body, a shell, and a lid. The shell is fitted onto the body, and the lid is mounted on the shell. An oil pouring hole is provided on the upper side of the body, and a sealing gasket with a through hole is fitted inside the oil pouring hole. The lid has a spout, the lower end of which communicates with the oil pouring hole, and the upper end of which communicates with the outside to form an oil pouring port. The spout has a sealing structure that can slide along the lower part of the spout and a limiting structure for restricting the travel of the sealing structure. The sealing structure blocks or opens the through hole of the sealing gasket.
2. The oil dispenser according to claim 1, characterized in that: The kettle body has a positioning hole, and the kettle shell is provided with a positioning cylinder and a screw. The screw passes through the positioning cylinder and is screwed into the positioning hole to lock the kettle shell and the kettle body together.
3. The oil dispenser according to claim 2, characterized in that: The positioning cylinder has a latch, and the inner side of the lid protrudes inward to form a protrusion. The protrusion is engaged in the latch as the lid rotates, or the protrusion is disengaged from the latch as the lid rotates.
4. The oil dispenser according to claim 2, characterized in that: The positioning holes are provided in a plurality of evenly distributed form, and the number of positioning cylinders matches the number of positioning holes.
5. The oil dispenser according to claim 1, characterized in that: The spout includes a first pouring channel and a second pouring channel. The upper end of the first pouring channel is connected to the second pouring channel, and the other end of the second pouring channel is a pouring port connected to the outside. The outer periphery of the first pouring channel is a cylindrical structure, and the lower side of the cylindrical structure abuts against the upper side of the kettle shell. The sealing structure is a sphere, which is located in the lower section of the first pouring channel. The limiting structure is a rib, which is installed on the inner side of the upper section of the first pouring channel. The distance between the free end of the rib and the side wall of the first pouring channel on the opposite side of the rib is less than the diameter of the sphere.
6. The oil dispenser according to claim 5, characterized in that: The sphere is a steel ball.
7. The oil dispenser according to claim 5, characterized in that: The second oil pouring channel is a channel that is inclined upwards.
8. The oil dispenser according to claim 1, characterized in that: The kettle shell has a mounting hole corresponding to the position of the through hole; the sealing gasket is an annular structure with a through hole, and the upper part of its outer periphery protrudes outward to form a raised ring; when the sealing gasket is fitted into the oil drain hole, the lower part of the outer periphery of the sealing gasket abuts against the side wall of the oil drain hole, the lower side of the raised ring abuts against the upper side of the kettle body, and the outer side of the raised ring abuts against the inner wall of the mounting hole.
9. The oil dispenser according to claim 1, characterized in that: The front middle of the teapot body protrudes outward, with the protrusion tapering towards the top of the teapot body and transitioning into an arc shape towards the bottom of the teapot body. The teapot body is recessed inward to form an insert for mounting the teapot shell. The insert gradually slopes upward from the bottom of the rear side of the teapot body towards the front of the teapot body to form a step. The teapot shell is fitted into the insert, with the lower side of the teapot shell abutting against the step. The outer periphery of the teapot shell is flush with the outer periphery of the teapot body.