A pour and spray integrated oil can
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SINOGLASS HOUSEWARES CO LTD
- Filing Date
- 2025-09-19
- Publication Date
- 2026-08-07
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;而且盖体大多采用一体结构,添油时需要将盖体全部取下或者通过出油口往瓶腔内倒,操作不便且易污染壶身或操作台;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 CN224598067U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of kitchenware 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 oil sprayers use a one-button switching mode, which is inconvenient to operate and the switching button is easily damaged. Moreover, the cap is mostly an integrated structure, so when adding oil, the entire cap needs to be removed or poured into the bottle cavity through the oil outlet, which is inconvenient to operate and easily contaminates the bottle body or work surface. Especially when the oil in the bottle is almost empty, the vertically set oil spray suction pipe has difficulty in successfully sucking out the small amount of oil. 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 body, and an oil spraying assembly. The cap body includes a bottom cap, a top cap, a dust cover, and a U-shaped reflux component. The bottle body is threadedly connected to the bottom cap. The top cap is movably mounted on top of the bottom cap. The dust cover is hinged to the top cap, the inner wall of the U-shaped reflux component is hinged to the top cap, and the outer wall of the U-shaped reflux component is hinged to the bottom cap. The bottom cap has an oil inlet and a mounting groove communicating with the inner cavity of the bottle body. The oil outlet channel at the bottom of the top cap is inserted into the oil inlet. The oil spraying assembly is inserted into the mounting groove. An oil nozzle is provided on the top of the top cap corresponding to the position of the oil outlet channel. A nozzle mounting port is provided on the front side wall of the bottom cap near the oil inlet. The bottom end of the mounting groove is inclined towards the nozzle mounting port.
[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 top cover has a mounting hole corresponding to the mounting groove; the top of the top cover has a return groove corresponding to the dust cover sealing part, and the oil outlet is located in the return groove; 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; the left and right inner sidewalls of the return groove have symmetrical shaft holes; the bottom wall of the return groove has an oil return hole on the side near the mounting hole; the top of the top cover has a first shaft seat corresponding to the position of the dust cover shaft connector, and the dust cover shaft connector is hinged to the first shaft seat of the top cover by a torsion spring.
[0007] Preferably, the bottom wall of the reflux trough is inclined backward and downward.
[0008] Preferably, the bottom cover sidewall has a return plate mounting port located below the nozzle mounting port; the bottom cover outer sidewall has symmetrically arranged locking blocks on the left and right sides of the return plate mounting port; and the bottom cover inner sidewall has symmetrically arranged first rotating shafts.
[0009] Preferably, the inner wall of the U-shaped return component is provided with a second rotating shaft corresponding to the position of the shaft hole; the outer wall of the U-shaped return component is provided with a second shaft seat corresponding to the position of the first rotating shaft; the inner wall of the U-shaped return component is hinged to the shaft hole of the top cover through the second rotating shaft; the outer wall of the U-shaped return component is hinged to the first rotating shaft of the bottom cover through the second shaft seat; the U-shaped return component is provided with an oil injection port corresponding to the position of the nozzle mounting port; the inner wall of the U-shaped return component is provided with an inwardly inclined and downwardly tilted return plate corresponding to the bottom position of the oil injection port, and the return plate is inserted into the return plate mounting port of the bottom cover; the inner wall of the U-shaped return component is provided with a groove corresponding to the position of the locking block; the locking block of the bottom cover is engaged with the groove of the U-shaped return component.
[0010] 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 top cover and is inserted into the top of the nozzle; the bottom of the nozzle is detachably connected to the suction pipe via a pressure booster; the fuel nozzle of the nozzle is inserted into the nozzle mounting port of the bottom cover.
[0011] More preferably, a handle is provided on the side of the outer wall of the bottom cover away from the nozzle mounting port.
[0012] Furthermore, preferably, the side wall of the mounting groove near the handle is provided with a return port that communicates with the inner cavity of the bottle.
[0013] More preferably, a silicone sealing ring is provided at the connection between the bottle body and the bottom cap.
[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. The lid structure of this utility model adopts a detachable connection method, which allows oil to be added to the oil can without opening the entire lid; 3. This utility model ensures that excess oil flows back into the inner cavity of the bottle through the return port, return plate and return groove, preventing oil from sticking to the cup lid wall; 4. The oil spraying component mounting groove of this utility model is set at an angle to ensure that the oil suction pipe is biased to the side of the oil spray nozzle after installation, so that the oil can be sucked out even when there is only a small amount of oil left at the bottom of the bottle. 5. The dust cover of this utility model adopts a torsion spring connection and an oil outlet with an outward-curving edge, 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 structural schematic diagram of the cover section; Figure 3 This is a schematic diagram of the bottom cover structure; where, Figure 3 (a) is the front view of the bottom cover; Figure 3 (b) is a top view of the bottom cover; Figure 4 This is a schematic diagram of the dust cover structure; Figure 5 This is a schematic diagram of the top cover structure; Figure 6 This is a schematic diagram of the fuel injection assembly. Figure 7 This is a schematic diagram of the U-shaped return component; where, Figure 7 (a) is the front view of the U-shaped return component; Figure 7 (b) is a rear view of the U-shaped return component; In the diagram, 1-bottle body; 2-bottom cover; 201-oil inlet; 202-mounting groove; 203-nozzle mounting port; 204-return plate mounting port; 205-first rotating shaft; 206-return port; 207-block; 3-dust cover; 301-sealing part; 302-pressing part; 303-shaft connector; 4-top cover; 401-oil outlet channel; 402-oil outlet nozzle; 403-mounting hole; 404-first shaft seat; 405-shaft hole; 406-oil return hole; 5-oil injection assembly; 501-button; 502-nozzle; 503-pressurizing component; 504-oil suction pipe; 6-U-shaped return component; 601-oil injection port; 602-second rotating shaft; 603-second shaft seat; 604-return plate; 605-groove. 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 1-2 As shown, an integrated spray and pour oil dispenser includes a bottle body 1, a cap body, and an oil spraying assembly 5. The cap body includes a bottom cap 2, a dust cover 3, a top cap 4, and a U-shaped return component 6.
[0019] Preferably, the bottle body 1 and the bottom cap 2 are threaded together; the top cap 4 is movably disposed on top of the bottom cap 2; the dust cover 3 and the top cap 4, the inner wall of the U-shaped reflux component 6 and the top cap 4, and the outer wall of the U-shaped reflux component 6 and the bottom cap 2 are all hinged. Of course, the dust cover 3 can also adopt a gravity-opening mode, which is not intended to further limit the present invention.
[0020] Preferably, the bottom cover 2 has an oil inlet 201 and an installation groove 202 that communicate with the inner cavity of the bottle body 1; the oil outlet channel 401 at the bottom of the top cover 4 is inserted into the oil inlet 201. When it is necessary to inject oil into the inner cavity of the bottle body 1, it is not necessary to remove the entire cover. Simply detach the dust cover 3, the top cover 4 and the U-shaped return component 6 from the bottom cover 2, and add oil from the oil inlet 201. This is convenient and hygienic.
[0021] Preferably, the oil injection assembly 5 is inserted into the mounting groove 202; the top of the top cover 4 is provided with an oil outlet 402 corresponding to the position of the oil outlet channel 401; and the front side wall of the bottom cover 2 is provided with a nozzle mounting port 203 on the side near the oil inlet 201.
[0022] 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.
[0023] like Figure 5 As shown, the top cover 4 has a mounting hole 403 corresponding to the mounting groove 202; the top of the top cover 4 has a first shaft seat 404 corresponding to the position of the shaft connector 303 of the dust cover 3, and the shaft connector 303 of the dust cover 3 is hinged to the first shaft seat 404 of the top cover 4 by a torsion spring. The top of the top cover 4 has a return groove corresponding to the position of the sealing part 301 of the dust cover 3, and the left and right inner sidewalls of the return groove have symmetrical shaft holes 405; the oil outlet 402 is located in the return groove, and the bottom wall of the return groove has an oil return hole 406 on the side near the mounting hole; the bottom wall of the return groove is inclined backward and downward.
[0024] It is worth noting that the top edge of the oil outlet 402 is turned outward to form an arc surface. When the dust cover 3 is in the closed state, the top edge of the oil outlet 402 fits against the inner bottom wall of the sealing part 301 of the dust cover 3, thereby sealing the oil outlet 402.
[0025] like Figure 3As shown in (a)-3(b), the side wall of the bottom cover 2 is provided with a return plate mounting port 204 corresponding to the position below the nozzle mounting port 203; the outer side wall of the bottom cover 2 is symmetrically provided with locking blocks 207 on the left and right sides of the return plate mounting port 204; the left and right inner side walls of the bottom cover 2 are symmetrically provided with first rotating shafts 205.
[0026] like Figure 7 As shown in (a)-7(b), the inner wall of the U-shaped return component 6 is provided with a second rotating shaft 602 corresponding to the position of the shaft hole 405; the outer wall of the U-shaped return component 6 is provided with a second shaft seat 603 corresponding to the position of the first rotating shaft 205; the inner wall of the U-shaped return component 6 is hinged to the shaft hole 405 of the top cover 4 through the second rotating shaft 602; the outer wall of the U-shaped return component 6 is hinged to the first rotating shaft 205 of the bottom cover 2 through the second shaft seat 603. The U-shaped return component 6 is provided with an oil injection port 601 at the position corresponding to the nozzle mounting port 203; the inner sidewall of the U-shaped return component 6 is provided with an inwardly inclined return plate 604 at the position corresponding to the bottom of the oil injection port 601, and the return plate 604 is inserted into the return plate mounting port 204 of the bottom cover 2; the inner sidewall of the U-shaped return component 6 is provided with a groove 605 at the position corresponding to the locking block 207 of the bottom cover 2; the locking block 207 of the bottom cover 2 is engaged with the groove 605 of the U-shaped return component 6.
[0027] like Figure 6 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 top cover 4 and is inserted into the top of the nozzle 502. The bottom of the nozzle 502 is detachably connected to the suction pipe 504 through a pressure booster 503; the fuel nozzle of the nozzle 502 is inserted into the nozzle mounting port 203 of the bottom cover 2.
[0028] It is worth noting that the side wall of the mounting groove 202 near the handle is also reserved with a return port 2061 that communicates with the inner cavity of the bottle body 1. After the oil outlet 402 has finished pouring oil, the oil hanging on the wall flows along the backward and downward sloping return groove to the return port 2061; while the oil flowing back from the nozzle of the spray head 502 drips into the return groove through the return plate 604, then flows to the return port 2061, and finally flows back into the inner cavity of the bottle body 1 through the return port 2061 to complete the recycling of the oil hanging on the wall.
[0029] To address the issue that when only a small amount of oil remains in the bottle, it cannot be drawn out of the bottle cavity through the suction pipe, the bottom end of the mounting groove 202 is tilted towards the nozzle mounting port 203. This ensures that after the oil spraying assembly 5 is installed, the suction pipe 504 at its bottom is tilted towards the nozzle mounting port 203, so that when only a small amount of oil remains in the inner cavity of the bottle 1, it can still be smoothly drawn out from the oil spraying assembly 5.
[0030] To facilitate user handling and prevent the oil bottle from slipping, a handle is provided on the outer side of the bottom cover 2 away from the nozzle mounting port 203.
[0031] More preferably, a silicone sealing ring is provided at the connection between the bottle body 1 and the bottom cap 2 to ensure the overall sealing of the oil can.
[0032] When in use, if the user needs a small amount of oil for cooking, simply press down on the button 501 of the oil spray assembly 5 to allow the oil to be sprayed out from the spray nozzle side of the nozzle 502 through the oil suction pipe 504. If the user needs a larger amount of oil, press down on one side of the pressing part 302 of the dust cover 3 to make the sealing part 301 of the dust cover 3 flip upward and separate from the top cover 4, and the oil can be poured out from the oil outlet 402. Then release the pressing part 302, and the torsion spring will reset the dust cover 3 and apply a downward pressure to ensure that the inner bottom wall of the sealing part 301 of the dust cover 3 fits against the top arc surface of the oil outlet 402, thus sealing the oil outlet 402.
[0033] This invention enables integrated oil spraying without the need for additional switching functions; at the same time, the inclined oil spraying component mounting slot ensures that even when the oil level in the bottle is low, the remaining small amount of oil can still be easily drawn out.
[0034] 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.
[0035] 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-on integrated oil dispenser, comprising a bottle body, a cap body, and an oil spraying assembly, characterized in that, The cover includes a bottom cover, a top cover, a dust cover, and a U-shaped return component; The bottle body is threadedly connected to the bottom cap; the top cap is movably mounted on top of the bottom cap; the dust cover and the top cap, the inner wall of the U-shaped reflux component and the top cap, and the outer wall of the U-shaped reflux component and the bottom cap are all hinged. The bottom cover has an oil inlet and a mounting groove that communicate with the inner cavity of the bottle; the oil outlet channel at the bottom of the top cover is inserted into the oil inlet; the oil spraying assembly is inserted into the mounting groove. The top cover has an oil outlet nozzle at the position corresponding to the oil outlet channel; the bottom cover has a nozzle mounting port on the front side wall near the oil inlet. The bottom end of the mounting groove is inclined toward the nozzle mounting port side.
2. The integrated spray and pour oil can according to claim 1, characterized in that, 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.
3. The integrated spray and pour oil can according to claim 2, characterized in that, The top cover has a mounting hole corresponding to the mounting groove; the top of the top cover has a return groove corresponding to the dust cover sealing part, and the oil outlet is located in the return groove; 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; the left and right inner side walls of the return groove have symmetrical shaft holes; the bottom wall of the return groove has an oil return hole on the side near the mounting hole. The top of the top cover is provided with a first shaft seat corresponding to the position of the dust cover shaft connector. The dust cover shaft connector is hinged to the first shaft seat of the top cover by a torsion spring.
4. The integrated spray and pour oil can according to claim 3, characterized in that, The bottom wall of the reflux trough is inclined backward and downward.
5. The integrated spray and pour oil can according to claim 3, characterized in that, The bottom cover sidewall has a return plate mounting port located below the nozzle mounting port; The outer wall of the bottom cover is symmetrically provided with locking blocks on the left and right sides of the reflux plate mounting port. The bottom cover has first rotating shafts symmetrically arranged on its left and right inner sidewalls.
6. The integrated spray and pour oil can according to claim 5, characterized in that, The inner wall of the U-shaped return component is provided with a second rotating shaft corresponding to the position of the shaft hole; the outer wall of the U-shaped return component is provided with a second shaft seat corresponding to the position of the first rotating shaft; the inner wall of the U-shaped return component is hinged to the shaft hole of the top cover through the second rotating shaft; the outer wall of the U-shaped return component is hinged to the first rotating shaft of the bottom cover through the second shaft seat. The U-shaped return component has an oil injection port at the position corresponding to the nozzle mounting port; the inner side wall of the U-shaped return component has an inwardly downward inclined return plate at the position corresponding to the bottom of the oil injection port, and the return plate is inserted into the return plate mounting port of the bottom cover. The inner wall of the U-shaped return component has a groove corresponding to the position of the locking block; the locking block of the bottom cover engages with the groove of the U-shaped return component.
7. 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 button passes through the mounting hole of the top cover 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 nozzle of the nozzle is inserted into the nozzle mounting port of the bottom cover.
8. The integrated spray and pour oil can according to claim 1, characterized in that, A handle is also provided on the outer side of the bottom cover away from the nozzle mounting port.
9. The integrated spray and pour oil can according to claim 8, characterized in that, The side wall of the mounting groove near the handle also has a 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, A silicone sealing ring is provided at the connection between the bottle body and the bottom cap.