A pour and spray integrated oil can
Patent Information
- Application Number
- CN202522015251.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-19
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-09-19
AI Technical Summary
[0003]目前,常见的喷油一体壶多采用一键切换模式,操作不便且切换键易损坏;尤其当油壶内油液见底时,竖直设置的喷油吸管很难将少量油液顺利吸出
1.本实用新型结构简单、方便操作,无需单独切换即可实现喷油、倒油两种模式;
Smart Images

Figure CN224806398U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of kitchen utensils technology, specifically to an integrated spray and pour oil dispenser. Background Technology
[0002] Oil bottles are essential kitchen utensils. Most common oil dispensers use a pouring method. With the country advocating for less oil and salt and a healthy diet, spray oil dispensers and integrated spray oil dispensers have emerged.
[0003] Currently, most common integrated fuel injector tanks use a one-button switching mode, which is inconvenient to operate and the switching button is prone to damage; especially when the fuel in the tank is almost empty, the vertically positioned fuel injector suction pipe has difficulty sucking out the small amount of fuel smoothly. Utility Model Content
[0004] To overcome the shortcomings of the prior art, this utility model provides an integrated spray and pour oil dispenser, the specific technical solution of which is as follows: An integrated spray and pour oil container includes a bottle body, a cap, and an oil spraying assembly. The top of the cap is hinged with a dust cover. The cap has an oil outlet channel and a mounting groove communicating with the inner cavity of the bottle. A nozzle mounting port is provided on the front side wall of the cap. The mounting groove is located on the side of the oil outlet channel away from the nozzle mounting port. An oil nozzle is provided at the top of the oil outlet channel. The bottom end of the mounting groove is inclined towards the nozzle mounting port. The oil spraying assembly is inserted into the mounting groove.
[0005] Preferably, the dust cover includes a front sealing part and a rear pressing part; two shaft connectors are symmetrically arranged on the left and right sides of the bottom of the dust cover, located between the sealing part and the pressing part.
[0006] Preferably, the cover includes a bottom cover and a component mounting base; the component mounting base is engaged with the bottom cover.
[0007] Preferably, the mounting groove and the oil outlet channel are both located on the bottom cover; a return groove is provided on the inner bottom wall of the bottom cover near the nozzle mounting port, and the mounting groove and the oil outlet channel are both located in the return groove; the bottom wall of the return groove is inclined downward from front to back.
[0008] Preferably, the component mounting base has a mounting hole at a position diagonally above the mounting groove; the inclination angle and direction of the mounting hole are consistent with the mounting groove; the oil injection component passes through the mounting hole of the component mounting base and the mounting groove of the bottom cover in sequence to achieve fixation with the cover body; a shaft seat is provided on the top of the component mounting base corresponding to the position of the dust cover shaft connector; the shaft connector of the dust cover is hinged to the shaft seat of the component mounting base by a torsion spring; and locking blocks are symmetrically provided on the left and right outer walls of the component mounting base.
[0009] Preferably, the inner wall of the bottom cover is provided with a groove corresponding to the position of the locking block; the locking block of the component mounting base engages with the groove of the bottom cover; positioning plates are symmetrically provided on both sides of the inner wall of the bottom cover adjacent to the front side wall of the component mounting base; and a handle is also provided on the outer side wall of the bottom cover away from the nozzle mounting port.
[0010] Preferably, the top edge of the oil outlet is turned outward to form an arc surface and fits against the inner bottom wall of the dust cover sealing part.
[0011] More preferably, the fuel injection assembly includes a button, a nozzle, and a suction pipe; the lower part of the button passes through the mounting hole of the assembly mounting base and is inserted into the top of the nozzle; the bottom of the nozzle is detachably connected to the suction pipe through a pressure booster; the fuel nozzle of the nozzle is inserted into the nozzle mounting port of the bottom cover.
[0012] Furthermore, preferably, the rear side wall of the mounting groove is provided with an oil return port that communicates with the inner cavity of the bottle.
[0013] More preferably, the bottle body is threadedly connected to the bottom cap, and a silicone sealing gasket is provided at the connection between the bottom cap and the bottle body.
[0014] The beneficial effects of this utility model are: 1. This utility model has a simple structure and is easy to operate, and can realize both oil spraying and oil pouring modes without separate switching; 2. This utility model, through the mounting holes and mounting grooves that are inclined on the cover, can ensure that the bottom of the oil suction pipe of the oil injection assembly is tilted toward the nozzle mounting port, so that even if there is only a small amount of oil left in the bottle, it can be smoothly sucked out of the bottle cavity. 3. This utility model, by setting a reflux groove with a bottom wall that slopes backward and downward, combined with an oil return port that communicates with the inner cavity of the bottle, can effectively recover the oil left at the oil outlet into the bottle cavity, making it cleaner and more hygienic. 4. The dust cover of this utility model adopts a torsion spring connection and an oil outlet with outward-curving edges, which can effectively achieve a sealed fit between the dust cover and the top of the oil outlet when the dust cover is closed. Attached Figure Description
[0015] The accompanying drawings constituting this utility model are provided to further understand this application and do not constitute an undue limitation on this application.
[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the cover structure; where, Figure 2 (a) is the front view of the cover; Figure 2 (b) is a sectional view of the cover; Figure 3 This is a schematic diagram of the bottom cover structure; Figure 4This is a schematic diagram of the dust cover structure; Figure 5 A schematic diagram showing the installation of the component mounting bracket and the paint injection assembly; Figure 6 This is a structural diagram of the component mounting base; where, Figure 6 (a) is the front view of the component mounting base; Figure 6 (b) is a side view of the component mounting bracket; Figure 7 This is a schematic diagram of the fuel injection assembly. Figure 8 These are diagrams illustrating two usage states of this utility model; wherein, Figure 8 (a) is a diagram showing the fuel injection status; Figure 8 (b) is a diagram showing the oil pouring process; In the diagram, 1-bottle body; 2-bottom cover; 201-nozzle mounting port; 202-oil outlet channel; 2021-oil outlet nozzle; 203-mounting groove; 2031-oil return port; 204-groove; 205-positioning plate; 206-handle; 207-return groove; 3-dust cover; 301-sealing part; 302-pressing part; 303-shaft connector; 304-torsion spring; 4-component mounting base; 401-shaft seat; 402-mounting hole; 403-block; 5-oil injection component; 501-button; 502-nozzle; 5021-oil injector; 503-pressurizing component; 504-oil suction pipe. Detailed Implementation
[0017] The specific implementation of the integrated spray and pour oil can provided by this utility model will be further described with reference to the accompanying drawings and embodiments.
[0018] like Figure 1 As shown, an integrated spray oil container includes a bottle body 1, a cap, and an oil spraying assembly 5. A dust cover 3 is hinged to the top of the cap; however, the dust cover 3 can also be gravity-operated, which is not intended to further limit the invention. The cap has an oil outlet channel 202 and a mounting groove 203 communicating with the inner cavity of the bottle body 1; a nozzle mounting port 201 is provided on the front side wall of the cap; it is worth noting that the mounting groove 203 is located on the side of the oil outlet channel 202 away from the nozzle mounting port 201. An oil nozzle 2021 is provided at the top of the oil outlet channel 202; the bottom end of the mounting groove 203 is inclined towards the nozzle mounting port 201, and the oil spraying assembly 5 is inserted into the mounting groove 203.
[0019] like Figure 4 As shown, the dust cover 3 includes a sealing part 301 located on the front side and a pressing part 302 located on the rear side. Two shaft connectors 303 are symmetrically arranged on the left and right sides of the bottom of the dust cover 3, between the sealing part 301 and the pressing part 302.
[0020] like Figure 2 As shown in (a) and 6(b)-3, the cover includes a bottom cover 2 and a component mounting base 4, which are snapped together with the bottom cover 2. The oil outlet channel 202 and the mounting groove 203 are both located on the bottom cover 2. To facilitate the recovery of oil adhering to the wall of the oil outlet nozzle 2021, a return groove 207 is provided on the inner bottom wall of the bottom cover 2 near the nozzle mounting port 201. The oil outlet channel 202 and the mounting groove 203 are both located within the return groove 207. The rear side wall of the mounting groove 203 is provided with an oil return port 2031 communicating with the inner cavity of the bottle body 1.
[0021] It is worth noting that the bottom wall of the return channel 207 is inclined downward from front to back, that is, the side of the installation channel 203 is lower than the side of the oil outlet channel 202. The oil hanging on the wall of the oil outlet 2021 will flow along the side wall of the oil outlet channel 202 to the side of the installation channel 203, and finally flow into the bottle cavity from the return port 2031, thereby realizing the return of oil.
[0022] To reduce the problem of oil dripping from the oil outlet 2021 after pouring, the top edge of the oil outlet 2021 is turned outward to form an arc surface and fits against the inner bottom wall of the sealing part 301 of the dust cover 3.
[0023] like Figure 5-6 As shown in (a) and (b), a shaft seat 401 is provided on the top of the component mounting base 4 corresponding to the position of the shaft connector 303 of the dust cover 3; the shaft connector 303 of the dust cover 3 is hinged to the shaft seat 401 of the component mounting base 4 via a torsion spring 304. The left and right outer sidewalls of the component mounting base 4 are symmetrically provided with locking blocks 403. The inner sidewall of the bottom cover 2 is provided with a groove 204 corresponding to the position of the locking block 403; the locking block 403 of the component mounting base 4 engages with the groove 204 of the bottom cover 2.
[0024] Preferably, positioning plates 205 are symmetrically arranged on both sides of the inner sidewall of the bottom cover 2, which are close to the front sidewall of the component mounting base 4. On the one hand, this facilitates the precise alignment of the installation position of the component mounting base 4, and on the other hand, it provides a squeezing action for the component mounting base 4, ensuring that the component mounting base 4 can be firmly locked on the base 2 without shaking when using the oil injection component 5.
[0025] like Figure 7 As shown, the fuel injection assembly 5 includes a button 501, a nozzle 502, and a suction pipe 504. The lower part of the button 501 passes through the mounting hole 403 of the assembly mounting base 44 and is inserted into the top of the nozzle 502; the bottom of the nozzle 502 is detachably connected to the suction pipe 504 via a pressure booster 503. The fuel injector 5021 of the nozzle 502 is inserted into the nozzle mounting port 201 of the bottom cover 2.
[0026] To address the issue that when there is insufficient oil remaining in the bottle, the suction pipe 504 often struggles to draw out a small amount of oil smoothly, the component mounting base 4 has a mounting hole 402 located diagonally above the mounting groove 203. It is worth noting that the tilt angle and direction of the mounting hole 402 are consistent with those of the mounting groove 203. The oil injection component 5 passes through the mounting hole 402 of the component mounting base 4 and the mounting groove 203 of the bottom cover 2 in sequence, achieving an inclined fixation with the cover body, so that after installation, the bottom of the suction pipe of the oil injection component 5 tilts towards the nozzle mounting port 201.
[0027] More preferably, the bottle body 1 and the bottom cap 2 are threaded together. To improve the overall sealing of the bottle body, a silicone sealing gasket (not shown in the figure) is provided at the connection between the bottom cap 2 and the bottle body 1.
[0028] More preferably, for ease of holding, a handle 206 is provided on the outer side wall of the bottom cover 2 away from the nozzle mounting port 201.
[0029] In use, when the user needs a small amount of oil, press down on button 501 of the fuel injection assembly 5 to spray oil from the fuel injector 5021 inside the nozzle mounting port 201. Figure 8 As shown in (a); when the user needs a larger amount of oil, press down on the pressing part 302 of the dust cover 3 to open the dust cover 3, and pour the oil from the inner cavity of the bottle 1 through the oil outlet 2021, as shown. Figure 8 As shown in (b), after use, the torsion spring 304 of the dust cover 3 resets it and applies a downward pressure to the dust cover 3, so that it fits tightly against the outwardly curved surface of the top of the oil outlet 2021, thus completing the seal.
[0030] This invention enables integrated oil spraying without the need for additional switching functions; at the same time, with the inclined oil spraying component mounting slot, it ensures that even when the oil in the bottle is almost empty, the remaining small amount of oil can still be smoothly sucked out by the oil suction pipe of the oil spraying component.
[0031] In this utility model, terms such as "upper," "lower," "bottom," and "top" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are merely used to facilitate the description of the structural relationships of the various components or elements of this utility model and do not specifically refer to any part or element of this utility model; they should not be construed as limiting this utility model. Terms such as "connected" and "linked" should be interpreted broadly, indicating a fixed connection, an integral connection, or a detachable connection; a direct connection or an indirect connection through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in this utility model can be determined according to the specific circumstances, and they should not be construed as limiting this utility model.
[0032] Of course, the above description is not intended to limit the present utility model, and the present utility model is not limited to the examples given above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of the present utility model should also fall within the protection scope of the present utility model.
Claims
1. A spray-and-pour integrated oil dispenser, characterized in that, It includes a bottle body, a cap body, and an oil spraying assembly, wherein a dust cover is hinged to the top of the cap body; The cap is provided with an oil outlet channel and a mounting groove that communicate with the inner cavity of the bottle; the front side wall of the cap is provided with a nozzle mounting port; the mounting groove is located on the side of the oil outlet channel away from the nozzle mounting port; an oil outlet nozzle is provided at the top of the oil outlet channel. The bottom end of the mounting groove is inclined toward the nozzle mounting port; the oil injection assembly is inserted into the mounting groove.
2. The integrated spray and pour oil can according to claim 1, characterized in that, The dust cover includes a sealing part on the front and a pressing part on the rear; Two shaft connectors are symmetrically arranged on the left and right sides of the bottom of the dust cover, between the sealing part and the pressing part.
3. The integrated spray and pour oil can according to claim 2, characterized in that, The cover includes a bottom cover and a component mounting base; the component mounting base is snapped into the bottom cover.
4. The integrated spray and pour oil can according to claim 3, characterized in that, Both the mounting groove and the oil outlet channel are located on the bottom cover; A return groove is provided on the inner bottom wall of the bottom cover near the nozzle mounting port. The mounting groove and the oil outlet channel are both located in the return groove. The bottom wall of the return groove is inclined downward from front to back.
5. The integrated spray and pour oil can according to claim 4, characterized in that, The component mounting base has a mounting hole located diagonally above the mounting groove; the inclination angle and direction of the mounting hole are consistent with those of the mounting groove. The oil injection assembly passes through the mounting holes of the component mounting base and the mounting groove of the bottom cover in sequence to achieve fixation with the cover body; The top of the component mounting base is provided with a shaft seat corresponding to the position of the dust cover shaft connector; the shaft connector of the dust cover is hinged to the shaft seat of the component mounting base by a torsion spring. The component mounting base has symmetrically arranged locking blocks on its left and right outer side walls.
6. The integrated spray and pour oil can according to claim 5, characterized in that, The inner wall of the bottom cover is provided with a groove corresponding to the position of the locking block; the locking block of the component mounting base engages with the groove of the bottom cover; Positioning plates are symmetrically arranged on both sides of the inner wall of the bottom cover, which are close to the front wall of the component mounting base. A handle is also provided on the outer side wall of the bottom cover away from the nozzle mounting port.
7. The integrated spray and pour oil can according to claim 2, characterized in that, The top edge of the oil outlet is turned outward to form an arc surface and fits against the inner bottom wall of the dust cover sealing part.
8. The integrated spray and pour oil can according to claim 3, characterized in that, The fuel injection assembly includes a button, a nozzle, and a fuel suction pipe; The lower part of the button passes through the mounting hole of the component mounting base and is inserted into the top of the nozzle; the bottom of the nozzle is detachably connected to the oil suction pipe through a pressure booster; the oil nozzle of the nozzle is inserted into the nozzle mounting port of the bottom cover.
9. The integrated spray and pour oil can according to claim 1, characterized in that, The rear side wall of the mounting groove is provided with an oil return port that communicates with the inner cavity of the bottle.
10. The integrated spray and pour oil can according to claim 1, characterized in that, The bottle body is threadedly connected to the bottom cap, and a silicone sealing gasket is provided at the connection between the bottom cap and the bottle body.