Multi-bin split type rotary selective discharging container

By designing a multi-compartment, split-type rotary selection discharge container, the problem of existing containers being unable to extract materials on demand has been solved, enabling on-demand selection and mixed discharge, thus improving the user experience.

CN223949849UActive Publication Date: 2026-02-27YAER (ZHEJIANG) DIGITAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520772140.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2026-02-27
Estimated Expiration
2035-04-22

AI Technical Summary

Technical Problem

Existing containers cannot extract specific materials individually on demand, resulting in a poor user experience.

Method used

Design a multi-compartment split rotary selective discharge container, which includes a first compartment and multiple second compartments. Different second pump cores are selected and connected by rotating the pusher. Independent discharge is achieved by combining a sealing element and a one-way valve structure.

Benefits of technology

It enables on-demand selection and mixed discharge, improving the user experience, and the seals ensure no leakage during the discharge process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The multi-bin split type rotary selective discharging container comprises a bottle body, a shoulder sleeve and a pressing head, the bottle body comprises a first material bin and at least two second material bins, the shoulder sleeve is fixedly installed at an opening in the upper end of the bottle body, a first pump core and at least two second pump cores are installed on the shoulder sleeve, the first pump core is connected with the first material bin, and the second pump core is connected with the second material bin. Each second pump core is connected with one second stock bin, the pressing head is rotationally installed on the first pump core and comprises a first channel, a second channel, a first nozzle and a second nozzle, the first channel is connected with the first pump core and the first nozzle, and the second channel can communicate with the second nozzle and any second pump core; different second stock bins can be selectively connected through the rotating pressing head, simultaneous discharging of the first stock bin and the different second stock bins can be achieved by pressing the pressing head, and user experience is better.
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Description

TECHNICAL FIELD

[0001] The utility model relates to packing container technical field more specifically, relate to a kind of multi-bin split type rotation selection discharge container. BACKGROUND

[0002] In prior art, most containers only support mixed discharge, cannot individually extract specific material body as needed, and the market is commonly seen as double-bin, three-bin etc. independent or mixed discharge, cannot control the extraction of material body for customized products, and user experience is poor, so a technical solution is needed to solve the above problems. UTILITY MODEL CONTENT

[0003] The utility model aims at overcoming the deficiencies of the prior art, and can extract material body from different bins, and provides a multi-bin split type rotation selection discharge container.

[0004] To achieve the above object, the utility model adopts the following technical scheme:

[0005] The utility model discloses a multi-bin split type rotation selection discharge container, comprising:

[0006] The bottle body comprises a first bin, at least two second bins;

[0007] The shoulder sleeve is fixedly installed at the upper end opening of the bottle body, and the shoulder sleeve is installed with a first pump core and at least two second pump cores; the first pump core is connected with the first bin, and each second pump core is connected with a second bin;

[0008] The press head is rotatably installed on the first pump core, and the press head comprises a first channel, a second channel, a first spout and a second spout; the first channel is connected with the first pump core and the first spout; the second channel can communicate the second spout with any one of the second pump cores.

[0009] Further, the press head comprises a second connecting pipe, which is located at one end of the second channel connected with the second pump core; the second connecting pipe is installed with a sealing element, which is located at one end of the second connecting pipe facing the second pump core; the sealing element can be elastically deformed; the sealing element is provided with a gap; the second pump core is installed with a third connecting pipe, which is located at one end of the second pump core facing the sealing element; the third connecting pipe can pass through the gap and enter the second channel.

[0010] Further, the second channel comprises a slot, which is located at one end of the second channel facing the third connecting pipe; the third connecting pipe comprises a plug, which can be inserted into the slot; the slot comprises a step, and the upper end of the plug can abut against the step.

[0011] Further, the inner diameter of the slot is larger than the outer diameter of the plug, and when the plug is inserted into the slot, the sealing part is deformed between the outer side wall of the plug and the inner side wall of the slot.

[0012] Further, the sealing part comprises a ring flange, and the ring flange is fixed between the fixing part and the second connecting pipe.

[0013] Further, the sealing part comprises an abutting surface, the abutting surface is located at the end surface of the sealing part facing the third connecting pipe, the abutting surface is a circular arc surface, and the center of the abutting surface is recessed in a direction away from the third connecting pipe.

[0014] Further, the gap is a cross shape.

[0015] Further, the pressing head comprises at least one limiting block and at least one guide strip, the shoulder sleeve comprises a first ring plate and a second ring plate, the first ring plate and the second ring plate extend in the direction of the pressing head, the first ring plate is provided with a plurality of limiting grooves corresponding to the limiting blocks, the second ring plate is provided with a plurality of guide grooves corresponding to the guide strips, and the guide grooves are communicated with the upper end surface of the second ring plate; when the limiting block is located in the limiting groove, the guide strip corresponds to one of the guide grooves.

[0016] Further, each limiting groove corresponds to one second pump core, and the corresponding limiting groove and the second pump core are located in the same radial direction of the shoulder sleeve; and one limiting block and the second channel are located in the same radial direction of the pressing head.

[0017] Further, the bottle body is provided with a plurality of partitions, each partition divides the bottle body into one second material bin, and all the partitions form a first material bin, which is located at the center of the bottle body, and a plurality of second material bins are distributed in a ring shape.

[0018] The bottle body has the advantages that:

[0019] 1. The bottle body is provided with a first material bin and a plurality of second material bins, different second pump cores can be selected by rotating the pressing head, each pump core is connected with one second material bin, each second material bin is provided with different material bodies, different second material bins can be switched by rotating the pressing head, and the first material bin and the second material bin can be discharged at the same time by pressing the pressing head, so that the user experience is better.

[0020] 2, The part of the pressing head connected with the second pump core is provided with a sealing element, a gap provided through the sealing element enables the third connecting pipe provided on the second pump core to be inserted into the second connecting pipe, the sealing element is deformed to form a sealing effect of the insertion of the second connecting pipe and the third connecting pipe, and can play a wall scraping role when the third connecting pipe leaves the second connecting pipe, the sealing element plays a role of a one-way valve, after the third connecting pipe leaves the second connecting pipe, the gap can be closed to seal the lower end opening of the second connecting pipe, and the material in the second channel 32 will not flow out through the gap. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a schematic view of the embodiment.

[0022] Figure 2 It is a sectional view of the embodiment.

[0023] Figure 3 It is Figure 2 It is an enlarged view of A in the middle.

[0024] Figure 4 It is a schematic view of the bottle body in the embodiment.

[0025] Figure 5 It is a schematic view of the shoulder sleeve, the first pump core and the second pump core in the embodiment.

[0026] Figure 6 It is a schematic view of the pressing head in the embodiment.

[0027] Figure 7 It is a schematic view of the sealing element in the embodiment.

[0028] Reference signs: 1, bottle body; 11, first material bin; 12, second material bin; 13, partition plate; 2, shoulder sleeve; 21, first ring plate; 211, limiting groove; 22, second ring plate; 221, guide groove; 3, pressing head; 31, first channel; 311, first connecting pipe; 32, second channel; 321, second connecting pipe; 3211, insertion slot; 3212, step; 33, first spout; 34, second spout; 35, limiting block; 36, guide strip; 4, first pump core; 5, second pump core; 51, third connecting pipe; 511, plug; 6, sealing element; 61, gap; 62, abutting surface; 63, ring edge; 7, fixing element; 71, through hole; 8, outer cover. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments will be described clearly and completely in the embodiments with reference to the drawings in the embodiments, obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the range protected by the utility model.

[0030] As Figures 1-7 shown, the embodiment discloses a multi-bin body including a bottle body 1, a shoulder sleeve 2, a pressing head 3, an outer cover 8, the bottle body 1 includes a first material bin 11, at least two second material bins 12, the bottle body 1 is provided with a plurality of partitions 13, each partition 13 divides the bottle body 1 into a second material bin 12, and the first material bin 11 is formed between all the partitions 13, the first material bin 11 is located at the center of the bottle body 1, and the plurality of second material bins 12 are distributed in a ring shape, four second material bins 12 are arranged in the embodiment, different material bodies can be arranged in each second material bin 12, the material bodies in each second material bin 12 can be mixed after being discharged from the first material bin 11 to produce different effects, and the material bodies can be mixed and applied after being extruded.

[0031] The shoulder sleeve 2 is fixedly installed at the upper end opening of the bottle body 1, the shoulder sleeve 2 is fixedly connected with the bottle body 1, a sealing gasket is installed between the shoulder sleeve 2 and the upper end opening of the bottle body 1, the sealing gasket seals the upper edge of the bottle body 1 and the partition 13, so that the first material bin 11 and each second material bin 12 are independent cavities, the shoulder sleeve 2 is installed with a first pump core 4 and at least two second pump cores 5, the first pump core 4 is connected with the first material bin 11, each second pump core 5 is connected with a second material bin 12, the pressing head 3 is rotatably installed on the first pump core 4, the pressing head 3 includes a first connecting pipe 311, the first pump core 4 is fixedly installed in the shoulder sleeve 2, the first connecting pipe 311 is in plug-in connection with the first pump core 4 and can rotate relative to the first pump core 4, the pressing head 3 includes a first channel 31, a second channel 32, a first spout 33 and a second spout 34, the first spout 33 and the second spout 34 are communicated with the outer side wall of the pressing head 3, the first spout 33 and the second spout 34 can extrude different two kinds of material bodies through the pressing of the pressing head 3, the first channel 31 connects the first pump core 4 and the first spout 33, the second channel 32 can communicate the second spout 34 with any one of the second pump cores 5, the rotation of the pressing head 3 can make the second channel 32 connect different second pump cores 5, when the pressing head 3 rotates, the second channel 32 is in a state of not being communicated with all the second pump cores 5, when the second channel 32 is in position correspondence with any one of the second pump cores 5, the second channel 32 and the second pump core 5 are communicated to discharge material in the process of pressing the pressing head 3, different material bodies can be extracted from different second material bins 12, better customization is realized, and the user experience is better.

[0032] As Figure 2 , Figure 3As shown, the embodiment also includes a fixing member 7, the head 3 includes a second connecting pipe 321, the second connecting pipe 321 is located at one end of the second channel 32 connected to the second pump core 5, the second connecting pipe 321 is installed with a sealing member 6, the sealing member 6 is located at one end of the second connecting pipe 321 towards the second pump core 5, the fixing member 7 is fixedly installed on the second connecting pipe 321, the sealing member 6 includes a ring flange 63, the ring flange 63 is fixed between the fixing member 7 and the second connecting pipe 321, the fixing member 7 presses the sealing member 6 on the second connecting pipe 321, and the sealing between the second connecting pipe 321 and the fixing member 7 is realized by pressing the ring flange 63.

[0033] The sealing member 6 can be elastically deformed, the sealing member 6 is made of silica gel, the sealing member 6 is provided with a gap 61, the gap 61 is cross-shaped, the fixing member 7 is provided with a through hole 71, the second pump core 5 is installed with a third connecting pipe 51, the third connecting pipe 51 is located at one end of the second pump core 5 towards the sealing member 6, the third connecting pipe 51 can pass through the through hole 71, the third connecting pipe 51 can pass through the gap 61 and enter the second channel 32, when the third connecting pipe 51 passes through the gap 61 to expand the gap 61, the part of the sealing member 6 provided with the gap 61 is deformed upwards and pressed, so that the sealing member 6 seals the outer side wall of the third connecting pipe 51 when the third connecting pipe 51 passes through, preventing leakage between the second connecting pipe 321 and the third connecting pipe 51 when the head 3 is pressed, the sealing member 6 plays a role of a one-way valve, after the third connecting pipe 51 leaves the second connecting pipe 321, the gap 61 can be closed to seal the lower end opening of the second connecting pipe 321, and the material in the second channel 32 will not flow out through the gap 61.

[0034] The second channel 32 includes a slot 3211, the slot 3211 is located at one end of the second channel 32 towards the third connecting pipe 51, the third connecting pipe 51 includes a plug 511, the plug 511 can be inserted into the slot 3211, the slot 3211 includes a step 3212, the upper end of the plug 511 can abut against the step 3212, when the head 3 is pressed downwards, the plug 511 originally located outside the slot 3211 will pass through the gap 61 of the sealing member 6 as the head 3 gradually descends, the inner diameter of the slot 3211 is greater than the outer diameter of the plug 511, when the plug 511 is inserted into the slot 3211, the sealing member 6 is partially deformed between the outer side wall of the plug 511 and the inner side wall of the slot 3211, the deformation of the sealing member 6 will seal the outer side wall of the plug 511 and the inner side wall of the slot 3211, until the plug 511 abuts against the step 3212, the third connecting pipe 51 is communicated with the second channel 32, so that the head 3 can press the second pump core 5, the second pump core 5 takes material from the second material bin 12, and the material of the second material bin 12 is sprayed out from the second spray port 34.

[0035] More preferably, the sealing member 6 comprises an abutting surface 62 located at an end surface of the sealing member 6 facing the third connecting pipe 51, the abutting surface 62 is a circular arc surface, the center of the abutting surface 62 is recessed in a direction away from the third connecting pipe 51, the circular arc abutting surface 62 makes the part of the sealing member 6 provided with the gap 61 have better supportability, can better restore after deformation of the sealing member 6, and can also guide insertion of the plug 511, when the pressing head 3 is reset upward, in the process of the plug 511 exiting the insertion slot 3211, the sealing member 6 can scrape the outer side wall of the plug 511, preventing material from leaking out.

[0036] As shown in Figure 5 , Figure 6 , the pressing head 3 comprises at least one limiting block 35 and at least one guide strip 36, the shoulder sleeve 2 comprises a first ring plate 21 and a second ring plate 22, the first ring plate 21 and the second ring plate 22 extend towards the pressing head 3, the first ring plate 21 is provided with a plurality of limiting grooves 211 corresponding to the limiting blocks 35, the limiting blocks 35 are matched with the limiting grooves 211, each limiting groove 211 corresponds to a second pump core 5, the corresponding limiting groove 211 and the second pump core 5 are located in the same radial direction of the shoulder sleeve 2, one limiting block 35 and the second channel 32 are located in the same radial direction of the pressing head 3, so as to realize limiting corresponding in position between the second connecting pipe 321 and the third connecting pipe 51 inside the pressing head 3 when the pressing head 3 rotates, the limiting block 35 and the limiting groove 211 are matched through protrusions and grooves, and the contact edges of the limiting block 35 and the limiting groove 211 are all provided with a round corner design, so that the feedback effect and the hand feeling are better when a user rotates the pressing head 3.

[0037] The second ring plate 22 is provided with a plurality of guide grooves 221 corresponding to the guide strips 36, the guide grooves 221 are communicated with the upper end surface of the second ring plate 22, when the pressing head 3 is at the initial height, the lower end of the guide strip 36 is higher than the upper end of the second ring plate 22, when the limiting block 35 is located in the limiting groove 211, the guide strip 36 corresponds to one of the guide grooves 221, the guide groove 221 plays a guiding role in the up-down movement of the guide strip 36 when the pressing head 3 is pressed, and only when the limiting block 35 is located in the limiting groove 211, the guide strip 36 can move up and down along the guide groove 221, thereby preventing mispressing.

[0038] The preferred embodiments of the present application have been described above, the protection scope of the present application is not limited to the above-mentioned embodiments, any technical solutions falling within the idea of the present application shall fall within the protection scope of the present application. It should be noted that, for ordinary technical personnel in the technical field, some improvements and decorations without departing from the principle of the present application shall also be considered as the protection scope of the present application.

Claims

1. A multi-compartment split rotary selection discharge container, characterized by, The utility model relates to a bottle body (1) comprising a first material bin (11), at least two second material bins (12), a shoulder sleeve (2) fixedly installed on the upper end opening of the bottle body (1), the shoulder sleeve (2) is installed a first pump core (4), at least two second pump cores (5), the first pump core (4) is connected the first material bin (11), and each second pump core (5) is connected a second material bin (12), a press head (3) is rotatably installed on the first pump core (4), the press head (3) comprises a first channel (31), a second channel (32), a first spout (33), a second spout (34), the first channel (31) is connected the first pump core (4) with the first spout (33), and the second channel (32) can communicate second spout (34) with any one second pump core (5). The press head (3) comprises a second connecting pipe (321), and the second connecting pipe (321) is located at one end of the second channel (32) connected to the second pump core (5). A sealing element (6) is installed on the second connecting pipe (321). The sealing element (6) is located at one end of the second connecting pipe (321) facing the second pump core (5). The sealing element (6) can be elastically deformed. The sealing element (6) is provided with a gap (61). A third connecting pipe (51) is installed on the second pump core (5). The third connecting pipe (51) is located at one end of the second pump core (5) facing the sealing element (6). The third connecting pipe (51) can pass through the gap (61) and enter the second channel (32). The second channel (32) comprises a slot (3211). The slot (3211) is located at one end of the second channel (32) facing the third connecting pipe (51). The third connecting pipe (51) comprises a plug (511). The plug (511) can be inserted into the slot (3211). The slot (3211) comprises a step (3212). The upper end of the plug (511) can abut against the step (3212). The inner diameter of the slot (3211) is greater than the outer diameter of the plug (511). When the plug (511) is inserted into the slot (3211), the sealing element (6) is partially deformed between the outer sidewall of the plug (511) and the inner sidewall of the slot (3211).

2. The multi-compartment, split-body, rotary selection dispensing container of claim 1, wherein, The utility model comprises a fixing element (7) fixedly installed on the second connecting pipe (321). The sealing element (6) comprises a ring (63) fixed between the fixing element (7) and the second connecting pipe (321).

3. The multi-compartment, split-body, rotary selection discharge container of claim 2, wherein, The sealing element (6) comprises an abutting surface (62) located at the end surface of the sealing element (6) facing the third connecting pipe (51). The abutting surface (62) is a circular arc surface. The center of the abutting surface (62) is recessed in a direction away from the third connecting pipe (51).

4. The multi-compartment, split-body, rotary selection discharge container of claim 3, wherein, The gap (61) is cross-shaped.

5. The multi-compartment, split-body, rotary-select dispensing container of claim 2, wherein, ​ 6. The multi-compartment, split-body, rotary-select dispensing container of claim 2, wherein, ​ 7. The multi-compartment, split-body, rotary-select dispensing container of claim 2, wherein, ​ 8. The multi-compartment, split-body, rotary-select dispensing container of claim 1, wherein, The pressing head (3) comprises at least one limiting block (35) and at least one guide strip (36), the shoulder sleeve (2) comprises a first ring plate (21) and a second ring plate (22), the first ring plate (21) and the second ring plate (22) extend towards the pressing head (3), the first ring plate (21) is provided with a plurality of limiting grooves (211) corresponding to the limiting block (35), the second ring plate (22) is provided with a plurality of guide grooves (221) corresponding to the guide strip (36), the guide grooves (221) are communicated with the upper end surface of the second ring plate (22), when the limiting block (35) is located in the limiting groove (211), the guide strip (36) corresponds to one of the guide grooves (221).

9. The multi-compartment, split-body, rotary-selected dispensing container of claim 8, wherein, Each of the limiting grooves (211) corresponds to one of the second pump cores (5), the corresponding limiting groove (211) and the second pump core (5) are located in the same radial direction of the shoulder sleeve (2), one of the limiting blocks (35) and the second channel (32) are located in the same radial direction of the pressing head (3).

10. The multi-compartment, split-body, rotary-select dispensing container of claim 1, wherein, The bottle body (1) is provided with a plurality of partitions (13), each of the partitions (13) divides the bottle body (1) into one of the second material bins (12), all of the partitions (13) form a first material bin (11), the first material bin (11) is located in the center of the bottle body (1), and a plurality of the second material bins (12) are distributed in a ring shape.