A package container usable with a pourer
Patent Information
- Application Number
- CN202522099439.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-09-29
AI Technical Summary
[0002]目前市面上大多棒状类固体类产品包括口红、唇膏、防晒棒、止痒棒以及美妆行业所有棒状类固体类型的包材,都无法把料体用完,料体残留在底座或者珠子内,造成产品浪费,带来消费者投诉,包装上有料体残留也不利于包材的回收以及环境的保护
[0012]本实用新型的可用尽料体的包装容器,特别适用于膏状或者固状的产品,将传统的用于盛放料体的珠子改为珠子和底座两部分的组合体,消费者在料体快用尽时可以继续旋转包材把底座升起,推出珠子内的剩余料体,进而可以把容器内的料体全部用完,增加料体的使用率,使得消费者的使用体验更好。
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Figure CN224811380U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of cosmetic packaging technology, specifically relating to a packaging container that can be used to dispose of materials. Background Technology
[0002] Currently, most stick-shaped solid products on the market, including lipsticks, lip balms, sunscreen sticks, anti-itch sticks, and all stick-shaped solid packaging materials in the beauty industry, cannot use up all the material. The material remains in the base or beads, causing product waste and consumer complaints. Material residue on the packaging is also not conducive to the recycling of packaging materials and environmental protection. Utility Model Content
[0003] The purpose of this invention is to overcome the defects of the prior art and provide a packaging container that can use up all the material. When the material is almost used up, the packaging material can be rotated to raise the base and push out the material, so that all the material in the container can be used up, thus increasing the utilization rate of the material.
[0004] The technical solution to achieve the above objective is: a packaging container for saturated materials, comprising a cover, a base, a spiral tube, a guide tube, beads, and a base, wherein:
[0005] The guide tube, spiral tube, and base are coaxially arranged sequentially from the inside to the outside. The bottom of the guide tube is engaged with the bottom of the base, and the spiral tube is rotatably disposed between the base and the guide tube. Two guide grooves are formed on the wall of the guide tube, and the two guide grooves are distributed on both radial sides of the guide tube. Two spiral grooves are formed on the inner wall of the spiral tube, and an annular blocking platform with an inward horizontal fold is provided at the top of the spiral tube. The top of the guide tube is blocked by the annular blocking platform of the spiral tube. The upper parts of both the guide tube and the spiral tube extend to the outside of the base, and the cover covers the upper part of the spiral tube, with the lower end of the cover engaged with the upper end of the base.
[0006] The upper part of the inner wall of the bead is provided with multiple vertical ribs, which are distributed along the same circumference. The middle part of the inner wall of the bead is provided with a base plate. The bottom end of the tube wall of the bead is provided with two guide grooves II, which are distributed on both radial sides of the bead. The lower part of each guide groove II is constricted.
[0007] The outer wall of the base is evenly distributed with multiple rib clearance grooves that are adapted to the vertical ribs; the middle part of the outer wall of the base is provided with two outwardly protruding sliding bosses; the base is disposed in the bead; the two sliding bosses pass through the two guide grooves one by one; the outer edge of the top of the base abuts against the bottom end face of the base holder; the multiple vertical ribs are disposed in the multiple rib clearance grooves one by one.
[0008] The bead is placed inside the guide tube, and the ends of the two sliding bosses pass through the two guide grooves and are inserted into the two spiral grooves in a corresponding manner.
[0009] When the spiral tube is rotated, the spiral tube drives the sliding boss to move upward along the corresponding guide groove one, and the base drives the bead to move upward together in the guide tube; when the top of the bead is aligned with the top of the guide tube, the top surface of the bead is blocked by the annular stop of the spiral tube. As the spiral tube continues to rotate, the spiral tube drives the base to overcome the resistance of the base stop, and the sliding boss moves upward along the corresponding guide groove two and the remaining part of the guide groove one, and the base moves upward in the bead.
[0010] The above-mentioned packaging container for consuming materials, wherein each guide channel is composed of an upper horizontal part, a vertical part and a lower horizontal part connected together.
[0011] In the above-mentioned packaging container for saturated materials, the base moves upward within the beads until the top of the base is flush with the top of the beads.
[0012] This utility model provides a fully utilized packaging container, which is particularly suitable for paste or solid products. It replaces the traditional beads used to hold the material with a combination of beads and a base. When the material is almost used up, consumers can continue to rotate the packaging to raise the base and push out the remaining material in the beads, thus using up all the material in the container, increasing the utilization rate of the material and improving the consumer experience. Attached Figure Description
[0013] Figure 1 This is an exploded structural diagram of the packaging container for the finite material of this utility model;
[0014] Figure 2 This is a cross-sectional view of the initial state of the packaging container for the usable material of this utility model;
[0015] Figure 3 This is a cross-sectional view of the packaging container of the present invention in the state where the material is exhausted;
[0016] Figure 4 for Figure 3 A magnified view of part B in the middle section;
[0017] Figure 5 This is a schematic diagram of the structure of a bead;
[0018] Figure 6 This is a schematic diagram of the base structure;
[0019] Figure 7 Assembly diagram of beads and base Figure 1 (The sliding boss is inserted into the guide groove 2);
[0020] Figure 8 Assembly diagram of beads and base Figure 2 (The base and the base plate are in contact)
[0021] Figure 9 for Figure 8 A magnified view of part A in the middle;
[0022] Figure 10 This is a cross-sectional view of a spiral tube. Detailed Implementation
[0023] To enable those skilled in the art to better understand the technical solution of this utility model, its specific embodiments are described in detail below with reference to the accompanying drawings:
[0024] Please see Figures 1 to 10 The preferred embodiment of this utility model is a packaging container for consuming materials, comprising a cover 1, a base 2, a spiral tube 3, a guide tube 4, beads 5, and a base 6.
[0025] The guide tube 4, spiral tube 3, and base 2 are coaxially arranged sequentially from the inside out. The bottom of the guide tube 4 is snapped into the bottom of the base 2, and the spiral tube 3 is rotatably disposed between the base 2 and the guide tube 4. Two guide grooves 41 are formed on the wall of the guide tube 4, distributed on both radial sides of the guide tube 4. Each guide groove 41 is composed of an upper horizontal part, a vertical part, and a lower horizontal part connected together. Two spiral grooves 31 are formed on the inner wall of the spiral tube 3, and a ring-shaped, horizontally folded-inward annular support 32 is provided at the top of the spiral tube 3 (see...). Figure 10 The top end of the guide tube 4 is blocked by the annular stop 32 to prevent the guide tube 4 from coming out (see...). Figure 4 The upper parts of both the guide tube 4 and the spiral tube 3 extend to the outside of the base 2. The cover 1 covers the upper part of the spiral tube 3, and the lower end of the cover 1 is engaged with the upper end of the base 2.
[0026] The upper part of the inner wall of bead 5 is provided with multiple vertical ribs 51, which are distributed along the same circumference. The middle part of the inner wall of bead 5 is provided with a base plate 52. The bottom end of the tube wall of bead 5 has two guide grooves 53, which are distributed on both radial sides of bead 5. The lower part of each guide groove 53 is constricted.
[0027] The outer wall of the base 6 is evenly distributed with multiple rib clearance grooves 61 that are adapted to the vertical ribs 51; the middle of the outer wall of the base 6 is provided with two outwardly protruding sliding bosses 62. The base 6 is set inside the bead 5, and the two sliding bosses 62 pass through the two guide grooves 53 one-to-one. The outer edge of the top of the base 6 abuts against the bottom end face of the base retainer 52 (see Figure 8 and Figure 9 Multiple vertical ribs 51 are arranged one-to-one within multiple rib clearance grooves 61.
[0028] The bead 5 is placed inside the guide tube 4, and the ends of the two sliding bosses 62 pass through the two guide grooves 41 and are inserted into the two spiral grooves 31.
[0029] When the spiral tube 31 is rotated, the spiral tube 31 drives the sliding boss 62 to move upward along the corresponding guide groove 41, and the base 6 drives the bead 5 to move upward together in the guide tube 4. When the top of the bead 5 is aligned with the top of the guide tube 4, the top surface 54 of the bead 5 will be blocked by the annular stop 32 of the spiral tube 3 to prevent the bead 5 from falling out of the spiral tube 3. As the spiral tube 31 continues to rotate, the spiral tube 31 drives the base 6 to overcome the resistance of the base stop 52, and the sliding boss 62 moves upward along the corresponding guide groove 53 and the remaining part of the guide groove 41. The base 6 moves upward in the bead 5. At the end (when the material is used up), the top of the base 6 is aligned with the top of the bead 5.
[0030] This utility model provides a packaging container for saturated materials. When packaging paste or solid materials, the bottom of the material is placed inside beads 5, with the bottom surface of the material positioned at the top of the base 6. The vertical ribs 51 inside the beads 5 enhance the beads' grip on the paste, reducing the risk of the paste coming off. When the base 6 moves upward within the beads 5, the rib clearance grooves 61 move upward along the corresponding vertical ribs 51, which also serve as guides for the upward movement of the base 6.
[0031] This utility model provides a fully utilized packaging container. When in use, the cover 1 is opened, and the spiral tube 3 is rotated. Under the action of the guide tube 4, the rotation of the spiral tube 3 causes the beads 5 and the base 6 assembly to rise together, thus expelling the contents. Consumers can then use the container. After a certain period of use, such as when the top of the beads 5 is aligned with the top of the guide tube 4, the contents inside the beads 5 become inconvenient to use. At this point, the spiral tube 3 can be continued to rotate until the base 6 overcomes the resistance of the base retainer 52 on the inner wall of the beads 5 and continues to rise. The contents inside the beads 5 are continuously pushed out by the base 6, allowing consumers to continue using the container until all the contents are used up. At this point, the top of the base 6 is also aligned with the top of the beads 5, increasing the utilization rate of the contents.
[0032] In the initial use of this utility model's packaging container for saturated material, the assembly formed by the beads 5 and the base 6 moves upward together along the guide tube 4. This is a conventional first upward movement. Due to the resistance of the base clamp 52, the base 6 will not rise alone inside the beads 5. When it becomes inconvenient to use after the material inside the beads 5 is level with the top of the beads 5, the force of rotating the spiral tube 3 is increased until the base 6 breaks through the resistance of the base clamp 52 on the inner wall of the beads 5 and continues to rise. This is a second upward movement of the base alone. During the second upward movement, the remaining material inside the beads 5 will be continuously pushed out by the base 6. In this way, there is no material left after the packaging material is used up, which is also conducive to packaging material recycling and environmental protection.
[0033] In summary, the packaging container of this utility model, which allows for the use of all available material, can continue to rotate the packaging material to raise the base and push out the material when the material is almost used up, thereby using up all the material in the container, increasing the utilization rate of the material, and improving the user experience for consumers.
[0034] Those skilled in the art should recognize that the above embodiments are only used to illustrate the present utility model and are not intended to limit the present utility model. Any changes or modifications to the above embodiments within the scope of the essential spirit of the present utility model will fall within the scope of the claims of the present utility model.
Claims
1. A packaging container for utilitarian materials, characterized in that, Includes a cover, base, spiral tube, guide tube, beads, and base, wherein: The guide tube, spiral tube, and base are coaxially arranged sequentially from the inside to the outside. The bottom of the guide tube is engaged with the bottom of the base, and the spiral tube is rotatably disposed between the base and the guide tube. Two guide grooves are formed on the wall of the guide tube, and the two guide grooves are distributed on both radial sides of the guide tube. Two spiral grooves are formed on the inner wall of the spiral tube, and an annular blocking platform with an inward horizontal fold is provided at the top of the spiral tube. The top of the guide tube is blocked by the annular blocking platform of the spiral tube. The upper parts of both the guide tube and the spiral tube extend to the outside of the base, and the cover covers the upper part of the spiral tube, with the lower end of the cover engaged with the upper end of the base. The upper part of the inner wall of the bead is provided with multiple vertical ribs, which are distributed along the same circumference. The middle part of the inner wall of the bead is provided with a base plate. The bottom end of the tube wall of the bead is provided with two guide grooves II, which are distributed on both radial sides of the bead. The lower part of each guide groove II is constricted. The outer wall of the base is evenly distributed with multiple rib clearance grooves that are adapted to the vertical ribs; the middle part of the outer wall of the base is provided with two outwardly protruding sliding bosses; the base is disposed in the bead; the two sliding bosses pass through the two guide grooves one by one; the outer edge of the top of the base abuts against the bottom end face of the base holder; the multiple vertical ribs are disposed in the multiple rib clearance grooves one by one. The bead is placed inside the guide tube, and the ends of the two sliding bosses pass through the two guide grooves and are inserted into the two spiral grooves in a corresponding manner. When the spiral tube is rotated, the spiral tube drives the sliding boss to move upward along the corresponding guide groove one, and the base drives the bead to move upward together in the guide tube; when the top of the bead is aligned with the top of the guide tube, the top surface of the bead is blocked by the annular stop of the spiral tube. As the spiral tube continues to rotate, the spiral tube drives the base to overcome the resistance of the base stop, and the sliding boss moves upward along the corresponding guide groove two and the remaining part of the guide groove one, and the base moves upward in the bead.
2. A packaging container for usable material according to claim 1, characterized in that, Each guide groove is composed of an upper horizontal section, a vertical section, and a lower horizontal section connected together.
3. A packaging container for usable material according to claim 1, characterized in that, When the base moves upward inside the bead to the end, the top of the base is flush with the top of the bead.