Self-standing patterned dispensing package container
By designing a self-standing, patterned dispensing packaging container, the problems of uneven dispensing and inability to stand upright in cosmetic containers are solved, achieving uniform dispensing and self-standing functions, thus improving the user experience.
Patent Information
- Application Number
- CN202423269838.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing cosmetic containers have uneven discharge holes and cannot stand upright when extruding materials, which affects the user experience.
Design a self-standing patterned discharge packaging container, comprising a body, a discharge cover, a push plate, and a knob. The push plate is moved by the knob to achieve uniform discharge. A bent discharge channel is set between the material passage and the discharge hole. The discharge cover and the body are designed separately for easy replacement.
It achieves uniform material discharge, the container can stand upright, and the discharge cover is replaceable, improving the user experience.
Smart Images

Figure CN223606136U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of packaging container technology, and specifically refers to a self-standing patterned dispensing packaging container. Background Technology
[0002] Cosmetic containers are typically made of plastic or metal and are designed as tubes for easy squeezing, allowing for control of the amount of cosmetics used. They are widely used in the packaging of products such as face creams, facial cleansers, and toothpaste.
[0003] When designing products, for both functional and aesthetic reasons, some cosmetic containers require the discharge holes to be designed in a radial pattern, evenly distributed around the central axis, to create an effect similar to flower petals blooming when extruded. However, in actual use, due to factors such as internal air pressure, the discharge effect of each discharge hole is not consistent. This is because the release of air pressure may accelerate the material flow of one or more discharge holes, causing them to discharge before the others. Furthermore, existing cosmetic containers are typically soft tubes, with only the cap end capable of standing upright. However, the cap end is also the discharge end, meaning the container cannot stand upright when the cap is open, which negatively impacts the user experience. Utility Model Content
[0004] The main purpose of this utility model is to provide a self-standing patterned discharge packaging container, which solves the problems existing in the prior art, can achieve self-standing, and avoids inconsistent discharge from each discharge hole during extrusion, thus achieving uniform discharge.
[0005] To achieve the above objectives, the solution of this utility model is:
[0006] A self-standing patterned dispensing packaging container includes a body, a dispensing cover, a push plate, and a knob. One end face of the body has a material passage hole. The dispensing cover fits over the end face of the body and has dispensing holes spaced at equal angles around the axis of the material passage hole. A dispensing channel is formed between the end face of the body and the opposite face of the dispensing cover, allowing communication between the material passage hole and the dispensing holes. The dispensing channel has at least one bend between the material passage hole and the dispensing holes. The push plate is axially movable within the body. The knob is rotatably fitted onto the other end face of the body and is drively connected to the push plate, driving the push plate to move axially.
[0007] The self-standing pattern discharge packaging container further comprises an inner tube and a transmission member; one end of the inner tube is sealingly fitted in the body, and the other end of the inner tube is exposed from the body; the push plate is sealingly fitted in the inner tube, and the body, the push plate and the inner tube form a cavity for containing materials; the knob is rotatably sleeved on the other end of the inner tube; and the transmission member is a screw threadedly connected with the push plate, and the end of the transmission member is keyed connected with the knob to realize synchronous rotation.
[0008] Preferably, the other end of the inner tube is provided with a ring of rotation ring grooves, and the inner wall of the knob is provided with a plurality of movable protrusions movably fitted in the rotation ring grooves.
[0009] Preferably, the end of the transmission member is provided with a rotation plate sealingly fitted in the inner wall of the inner tube, the surface of the rotation plate is provided with a plurality of first teeth in a radial shape, the opposite surface of the knob is provided with a plurality of second teeth in a radial shape, the first teeth are embedded between adjacent second teeth, and the inner wall of the inner tube is provided with a limiting step for abutting against the rotation plate.
[0010] Preferably, the periphery of the other end of the inner tube is provided with a stop arm, and the inner wall of the knob is provided with a stop gear for movably fitting the stop arm.
[0011] The body is in a cylindrical shape, the axis of the end surface of the body is provided with a material passing pipe, the material passing hole is arranged at the axis of the material passing pipe, the periphery of the material passing pipe is recessed to form a material passing ring groove, the opposite surface of the discharge cover is protruded in the direction of the inside of the material passing hole to form a ring of guide flanges, the guide flanges are embedded in the material passing ring groove, and the inner and outer side walls of the material passing ring groove are not in contact with the guide flanges.
[0012] Preferably, the opposite surface of the discharge cover is protruded in the direction of the outside of the material passing hole to form a ring of first sealing flanges, the end surface of the body is provided with a boss, the material passing pipe and the material passing ring groove around the material passing pipe are coaxially arranged on the end surface of the boss, and the periphery of the boss is protruded to form a ring of second sealing flanges, the first sealing flanges are tightly fitted on the periphery of the boss, and the second sealing flanges abut against the opposite surface of the discharge cover.
[0013] The periphery of the discharge cover is provided with a ring of clamping hooks, and the periphery of the body is provided with clamping grooves for clamping and fitting the clamping hooks.
[0014] The self-standing pattern discharge packaging container further comprises a cover body detachably covering the end of the body, and a sealing gasket fitted in the cover body; when the cover body is in a covering state, the sealing gasket blocks the material discharging ends of the material discharging holes.
[0015] Preferably, the sealing gasket is made of silica gel material; the cover body is provided with a mounting groove for embedding the sealing gasket.
[0016] With the above technical scheme, the utility model has the following technical effects:
[0017] (1) The utility model discloses a body one end is provided with the push plate, can be through the rotation knob and drive the push plate in the body interior movement, and then realize the extrusion function of material, and the knob is not in the body's discharge end, no matter the body itself is the hose or the hard pipe, can utilize the end face of knob and make the container stand up, satisfy the user's use demand.
[0018] (2) The utility model discloses the discharge passage with at least one bending between the material passing hole and the discharge hole, makes the flow distance between the material passing hole and the discharge hole be extended, even in the extrusion moment, the material of partial direction is not bounced out of the discharge hole, but is left in the discharge passage, is pushed and advances by the material of subsequent extrusion, and then cooperates the discharge hole of uniform distribution, finally presents the effect that each discharge hole is even and simultaneously discharges, can simulate the state that petal blooms.
[0019] (3) The discharge cover and the body belong to the split design, so that the discharge cover can be replaced, cooperates the discharge hole shape of different, and also facilitates the processing of the body and the discharge cover to obtain the discharge flow passage shape that satisfies the use demand. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is the combined state cross-sectional view of the embodiment of the utility model;
[0021] Figure 2 It is the exploded state cross-sectional view of the embodiment of the utility model;
[0022] Figure 3 It is the exploded state perspective view of the embodiment of the utility model;
[0023] Figure 4 It is the cover body perspective view of the embodiment of the utility model;
[0024] EXPLANATION OF DRAWINGS:
[0025] 1-body;11-passing hole;12-passing pipe;13-passing ring groove;14-convex table;15-second sealing flange;16-clamping groove;
[0026] 2-discharge cover;21-discharge hole;22-guiding flange;23-first sealing flange;24-clamping hook;
[0027] 3-push plate;
[0028] 4 - knob; 41 - movable protrusion; 42 - second tooth; 43 - gear tooth;
[0029] 5 - inner tube; 51 - rotating ring groove; 52 - limiting step; 53 - gear arm;
[0030] 6 - transmission; 61 - rotating plate; 62 - first tooth;
[0031] 7 - cover; 71 - mounting groove;
[0032] 8 - sealing gasket;
[0033] a - cavity. DETAILED DESCRIPTION
[0034] In order to further explain the technical scheme of the utility model, the utility model will be described in detail through specific embodiments.
[0035] Reference Figures 1-4 As shown in the figure, the utility model discloses a self-standing pattern discharging packaging container, including body 1, discharge cover 2, push plate 3 and knob 4;
[0036] The one end surface of body 1 is provided with the material passing hole 11;
[0037] Discharge cover 2 covers the end surface of body 1, and is provided with the discharge hole 21 that is distributed at equal angle interval around the axis of material passing hole 11;
[0038] The opposite surface between the end surface of body 1 and discharge cover 2 forms the discharge channel that makes material passing hole 11 and discharge hole 21 communicate, and the discharge channel forms at least one bending place between material passing hole 11 and discharge hole 21;
[0039] Push plate 3 is axially moved and cooperates in body 1;
[0040] Knob 4 relatively rotates and cooperates in the other end surface of body 1, and is transmission connected with push plate 3, is used for driving push plate 3 to carry out axial movement.
[0041] By the above scheme, the body 1 is provided with the knob 4 at the other end, the knob 4 can drive the push plate 3 to move in the body 1, and the extrusion function of the material is realized, and the knob 4 is not at the discharging end of the body 1, no matter whether the body 1 is a hose or a hard pipe, the container can be self-supported by the end face of the knob 4, and the use requirement of the user is met; the discharging channel with at least one bending part is arranged between the material passing hole 11 and the discharging hole 21, the flow distance between the material passing hole 11 and the discharging hole 21 is prolonged, even if the material in some direction is pushed by the air pressure at the moment of extrusion, the material will not jump out of the discharging hole 21, but is left in the discharging channel and is pushed forward by the material extruded subsequently, and the effect that the discharging holes 21 are uniformly and simultaneously discharged is finally realized, and the state that petals are blooming can be simulated; the discharging cover 2 is designed in a split mode with the body 1, so that the discharging cover 2 can be replaced, the different shapes of the discharging holes 21 are matched, and the body 1 and the discharging cover 2 are respectively machined to obtain the discharging flow channel shape meeting the use requirement.
[0042] The specific implementation manner of the present application is shown below.
[0043] In the embodiment, the discharging hole 21 is in the shape of a water drop, one end of the water drop is small and faces the axis of the material passing hole 11, and the other end of the water drop is large and deviates from the axis of the material passing hole 11.
[0044] The present application further comprises an inner tube 5 and a transmission member 6; one end of the inner tube 5 is sealingly matched in the body 1, and the other end of the inner tube 5 is exposed from the body 1; the push plate 3 is sealingly matched in the inner tube 5, the body 1, the push plate 3 and the inner tube 5 form a cavity a for containing the material; the knob 4 is rotatably sleeved at the other end of the inner tube 5; the transmission member 6 is a screw rod which is threadedly connected with the push plate 3, and the end of the screw rod is keyed connected with the knob 4 to realize synchronous rotation with the knob 4. Thus, the user can drive the screw rod to synchronously rotate by rotating the knob 4, the push plate 3 can be driven to move axially in the inner tube 5, so as to change the volume of the cavity a, and the material can be extruded when the volume of the cavity a presents a trend of becoming smaller. In the embodiment, the push plate 3 can be made of plastic material, and has hardness and elasticity, so as to realize dynamic sealing in the cavity a.
[0045] In some embodiments of the present application, the other end of the inner tube 5 is provided with a ring of rotating ring grooves 51, and the inner wall of the knob 4 is provided with a plurality of movable protrusions 41 movably matched in the rotating ring grooves 51, so as to realize the rotating matching of the knob 4 at the end of the inner tube 5 without axial movement.
[0046] In some embodiments of the utility model, the end of transmission part 6 is provided with rotating plate 61 matched with the inner wall of inner tube 5 in dynamic sealing, the surface of rotating plate 61 is provided with a plurality of first clamping teeth 62 in radial shape, the opposite surface of knob 4 is provided with a plurality of second clamping teeth 42 in radial shape, first clamping tooth 62 is embedded between adjacent second clamping teeth 42, so as to realize the key connection of transmission part 6 and knob 4, and then the synchronous rotation of the two is realized, the inner wall of inner tube 5 is provided with limiting step 52 for abutting against rotating plate 61, so that rotating plate 61 is clamped between inner tube 5 and knob 4 and cannot move axially, and rotating plate 61 can cooperate with push plate 3 to realize the secondary sealing of cavity a.
[0047] In some embodiments of the utility model, the circumferential surface of the other end of inner tube 5 is provided with a blocking elastic arm 53, and the inner wall of knob 4 is provided with a blocking tooth 43 for the movable cooperation of elastic arm 53. Therefore, the movable cooperation of blocking elastic arm 53 and blocking tooth 43 can realize the rotation limiting of knob 4, and knob 4 will not rotate randomly when it is not operated by the user, and the user can have a sound feedback similar to "click" when operating knob 4, and the operation experience is better.
[0048] The above-mentioned body 1 is in cylindrical shape, the axis position of the end surface is provided with a material passing pipe 12, and a material passing hole 11 is arranged at the axis of the material passing pipe 12; the periphery of the material passing pipe 12 is recessed to form a material passing ring groove 13, and the opposite surface of the discharging cover 2 protrudes in the inner side direction of the discharging hole 21 to form a guide flange 22; the guide flange 22 is embedded in the material passing ring groove 13 and does not contact the inner and outer side walls of the material passing ring groove 13, that is, a certain spacing is reserved, so as to form the above-mentioned discharging channel. Figure 1 The discharging channel formed by the material passing ring groove 13 and the guide flange 22 together makes the material need to pass through multiple turns of horizontal movement, downward movement, upward movement, horizontal movement and upward movement after being extruded through the material passing hole 11, so that the discharging distance is greatly improved, and the discharging effect of the product is guaranteed.
[0049] Further, the opposite surface of the discharging cover 2 protrudes in the outer side direction of the discharging hole 21 to form a first sealing flange 23, the end surface of the body 1 is provided with a boss 14, the above-mentioned material passing pipe 12 and the material passing ring groove 13 around the material passing pipe 12 are coaxially arranged on the end surface of the boss 14, and the periphery of the boss 14 protrudes to form a second sealing flange 15, the first sealing flange 23 is tightly matched with the periphery of the boss 14, and the second sealing flange 15 abuts against the opposite surface of the discharging cover 2, so as to realize the sealing of the discharging cover 2 after being covered on the end surface of the body 1, prevent material leakage, and the second sealing flange 15 can avoid the abutment of the opposite surface of the discharging cover 2 and the boss 14, so as to form the above-mentioned discharging channel.
[0050] The above-mentioned discharging cover 2 is buckled with the body 1, so as to facilitate disassembly and assembly.
[0051] Further, the peripheral surface of the discharge cover 2 is provided with a ring of hooks 24, and the peripheral surface of the body 1 is provided with a clamping groove 16 for clamping the hooks 24.
[0052] The utility model also includes a cover body 7 detachably covering the end of the body 1, and a sealing gasket 8 fitted in the cover body 7; when the cover body 7 is in the covering state, the sealing gasket 8 blocks the discharge ends of the discharge holes 21. The cover body 7 can cover the discharge cover 2 to prevent it from being contaminated by dust; the sealing gasket 8 can prevent material from leaking during non-use, avoiding contamination of the cover body 7.
[0053] Further, the sealing gasket 8 can be made of silica gel material, and the cover body 7 is provided with a mounting groove 71 for embedding the sealing gasket 8.
[0054] The above embodiments and drawings do not limit the product form and style of the utility model, and any appropriate changes or modifications made by ordinary technical personnel in the technical field shall be considered as not departing from the patent category of the utility model.
Claims
1. A self-standing patterned dispensing package container, characterized in that: comprising a body, a dispensing cover, a push plate and a knob; one end surface of the body is provided with a material passing hole; the dispensing cover covers the end surface of the body and is provided with dispensing holes which are equiangularly and spacedly distributed around the axis of the material passing hole; the end surface of the body and the opposite surface of the dispensing cover form a dispensing channel which connects the material passing hole and the dispensing hole, and the dispensing channel forms at least one bending part between the material passing hole and the dispensing hole; the push plate is axially movably fitted in the body; the knob is relatively rotatably fitted on the other end surface of the body and is in transmission connection with the push plate for driving the push plate to move axially.
2. The self-standing patterned dispensing package container according to claim 1, characterized in that: further comprising an inner tube and a transmission member; one end of the inner tube is sealingly fitted in the body, and the other end of the inner tube is exposed out of the body; the push plate is sealingly fitted in the inner tube, and the body, the push plate and the inner tube form a cavity for containing material; the knob is rotatably sleeved on the other end of the inner tube; and the transmission member is a screw which is in threaded connection with the push plate and has an end which is in key connection with the knob for synchronous rotation.
3. The self-standing patterned dispensing package container according to claim 2, characterized in that: a rotation ring groove is provided on the peripheral surface of the other end of the inner tube, and the inner wall of the knob is provided with a plurality of movable protrusions which are movably fitted in the rotation ring groove.
4. The self-standing patterned dispensing package container according to claim 2, characterized in that: the end of the transmission member is provided with a rotation plate which is sealingly fitted in the inner wall of the inner tube, the surface of the rotation plate is provided with a plurality of first clamping teeth which are radially distributed, the opposite surface of the knob is provided with a plurality of second clamping teeth which are radially distributed, the first clamping teeth are embedded between adjacent second clamping teeth, and the inner wall of the inner tube is provided with a limiting step which is abutted by the rotation plate.
5. The self-standing patterned dispensing package container according to claim 2, characterized in that: a blocking spring arm is provided on the peripheral surface of the other end of the inner tube, and the inner wall of the knob is provided with a blocking tooth for movably fitting the spring arm.
6. The self-standing patterned dispensing package container according to claim 1, characterized in that: the body is in a cylindrical shape, the axis of the end surface of the body is provided with a material passing pipe, the material passing hole is provided at the axis of the material passing pipe, the peripheral surface of the material passing pipe is recessed to form a material passing ring groove, the opposite surface of the dispensing cover is protruded to form a guide flange in the direction of the inside of the dispensing hole, and the guide flange is embedded in the material passing ring groove and does not contact the inner and outer side walls of the material passing ring groove.
7. The self-standing patterned dispensing package container according to claim 6, characterized in that: The opposite surface of the discharge cover is outwardly convex to form a first sealing flange outside the discharge hole; the end surface of the body is provided with a boss, the discharge pipe and the discharge ring groove around the discharge pipe are coaxially arranged on the end surface of the boss, and the periphery of the boss is outwardly convex to form a second sealing flange; the first sealing flange is tightly fitted on the peripheral surface of the boss, and the second sealing flange abuts against the opposite surface of the discharge cover.
8. The self-standing pattern discharge packaging container according to claim 1, characterized in that: The peripheral surface of the discharge cover is provided with a clamping hook, and the peripheral surface of the body is provided with a clamping groove for clamping cooperation of the clamping hook.
9. The self-standing pattern discharge packaging container according to claim 1, characterized in that: Further comprising a cover body detachably covering the end of the body, and a sealing gasket fitted in the cover body; when the cover body is in the covering state, the sealing gasket blocks the discharge end of each discharge hole.
10. The self-standing pattern discharge packaging container according to claim 9, characterized in that: The sealing gasket is made of silica gel material; and the cover body is provided with a mounting groove for embedding the sealing gasket.