Lipstick replacement suit
Through the removable inner and outer gallbladder design, combined with the brush head and sealing structure, the problem of traditional lipstick cannot be replaced separately with color paste and hygiene quality, achieving the effect of reducing costs and improving hygiene.
Patent Information
- Application Number
- CN202422153097.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-09-02
AI Technical Summary
Traditional lipstick products cannot be replaced separately, which increases the cost of use and has hygiene quality problems.
The removable inner and outer gallbladder design is adopted. The inner gallbladder is equipped with a mixed material structure. The outer gallbladder is used as a protective structure. The inner gallbladder can be replaced separately. The bottle cap is equipped with a brush head to avoid direct spin-spraying of color paste, and a good sealing design is adopted.
It reduces the cost of use, ensures the hygienic quality of the lipstick slurry, simplifies the replacement process, reduces the opportunity for shell contamination, and improves the environmental protection and reliability of the product.
Smart Images

Figure CN223262500U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of mechanical intelligent manufacturing technology, and specifically, to a lipstick replacement package. Background Art
[0002] Lipstick, as an important beauty product in the cosmetics industry, has always been a focus of consumer attention for its quality and user experience. Traditional lipstick products typically adopt an integrated design, where the lipstick paste and outer shell are integral and cannot be removed. This design presents the following problems during preparation and use:
[0003] (1) When consumers have finished using the lipstick paste, they cannot replace the paste separately because the shell and the paste are integrated. They can only buy a new lipstick. This not only increases the cost of use for consumers, but also brings inconvenience.
[0004] (2) When using traditional lipstick, the color paste is applied directly by rotating the shell. However, this method easily causes the shell to be contaminated, thus affecting the sanitary quality of the lipstick paste. Summary of the Invention
[0005] In order to solve the above technical problems, the present application provides a lipstick replacement package to at least solve or alleviate the above problems in the prior art.
[0006] The present application provides a lipstick replacement package, comprising: a bottle body (1) and a bottle cap (2), wherein the bottle body (1) has a bottle mouth, and the bottle cap (2) is assembled on the bottle mouth; the bottle body (1) comprises an inner liner (11) and an outer liner (12), wherein a raw material mixing structure (111) is assembled in the inner liner (11), and the inner liner (11) is assembled in the outer liner (12) in a detachable manner, so that when preparing the finished lipstick, the inner liner (11) is removed from the outer liner (12) and placed in a lipstick machine to drive the raw material mixing structure (111) to mix the raw materials contained in the bottle body (1); the bottle cap (2) is equipped with a brush head (21), and the brush head (21) is used to dip the finished lipstick.
[0007] Optionally, the inner liner (11) is screwed to the outer liner (12) so that the inner liner (11) is assembled in the outer liner (12) in a detachable manner.
[0008] Optionally, a male thread is provided on the outer wall of the inner liner (11), and a female thread (121) is provided on the inner wall of the outer liner (12), and the female thread (121) is screwedly connected to the male thread; or, a female thread (121) is provided on the outer wall of the inner liner (11), and a male thread is provided on the inner wall of the outer liner (12), and the male thread is screwedly connected to the female thread (121), so that the inner liner (11) is assembled in the outer liner (12) in a detachable manner.
[0009] Optionally, the bottle cap (2) comprises a bottle cap liner (22) and a bottle cap outer shell (23), the bottle cap liner (22) is assembled in the bottle cap outer shell (23), and the brush head (21) is assembled on the bottle cap liner (22), so that the brush head (21) is lifted into the bottle body (1).
[0010] Optionally, the inner wall of the bottle cap shell (23) is provided with a first clamping rib (231), and the outer wall of the bottle cap liner (22) is provided with a second clamping rib (221), and the second clamping rib (221) is clamped with the first clamping rib (231) to assemble the bottle cap liner (22) in the bottle cap shell (23) in a detachable manner.
[0011] Optionally, an assembly column (223) is provided on the bottle cap liner (22), the assembly column (223) points to the finished lipstick in the bottle body (1), and a rubber plug (2231) is sleeved on the assembly column (223), and the brush head (21) is assembled in the rubber plug (2231).
[0012] Optionally, the rubber plug (2231) is covered with a hoop (22311) to provide a tight hoop force for the brush head (21) assembled in the rubber plug (2231).
[0013] Optionally, the raw material mixing structure (111) comprises: a stirring paddle mechanism (1111), and a cutting paddle mechanism (1112), wherein the stirring paddle mechanism (1111) and the cutting paddle mechanism (1112) are arranged in the inner cavity of the bottle body (1), so that when preparing the finished lipstick, the target raw material contained in the inner cavity of the bottle body (1) is stirred by the stirring paddle mechanism (1111), and the target raw material is cut by the cutting paddle mechanism (1112).
[0014] Optionally, the stirring paddle mechanism (1111) is nested with the bottom of the cutting paddle mechanism (1112), so that when the stirring paddle mechanism (1111) stirs the target raw material contained in the inner cavity of the bottle body (1), the cutting paddle mechanism (1112) simultaneously cuts the target raw material.
[0015] Optionally, the stirring paddle mechanism (1111) rotates around the cutting paddle mechanism (1112) in the inner cavity of the bottle body (1) to stir the target raw material contained in the inner cavity of the bottle body (1), and the cutting paddle mechanism (1112) is fixed and forms a passive collision with the stirred target raw material to synchronously cut the target raw material.
[0016] Optionally, the stirring paddle mechanism (1111) includes a stirring paddle (11111) and a stirring paddle base (11112), and the stirring paddle (11111) is arranged on the stirring paddle base (11112) so as to drive the stirring paddle (11111) to stir the target raw material contained in the inner cavity of the bottle body (1) when the stirring paddle base (11112) rotates.
[0017] Optionally, the cutting paddle mechanism (1112) comprises a cutting paddle mechanism body (11121) and a cutting paddle (11122), wherein the cutting paddle mechanism body (11121) is nested and connected to the stirring paddle base (11112), and the cutting paddle (11122) is arranged on the cutting paddle mechanism body (11121), so that when the stirring paddle mechanism (1111) stirs the target raw material contained in the inner cavity of the bottle body (1), the cutting paddle mechanism body (11121) remains stationary, so that the cutting paddle (11122) is fixed, thereby cutting the target raw material synchronously.
[0018] Optionally, the cutting paddle mechanism body (11121) has an assembly hole (111211), the stirring paddle base (11112) has a protrusion (111121), and the assembly hole (111211) passes through the protrusion (111121) so that the cutting paddle mechanism body (11121) and the stirring paddle base (11112) are nested and connected.
[0019] Optionally, the stirring paddle base (11112) is connected to a stirring drive mechanism so that when the finished lipstick is prepared, the stirring paddle base (11112) is driven by the stirring drive mechanism to rotate.
[0020] A lipstick refill comprises: a bottle body (1); a raw material mixing structure (111) is assembled in the bottle body (1), so that when preparing a finished lipstick, the inner liner (11) is removed from the outer liner (12) and placed in a lipstick machine, so as to drive the raw material mixing structure (111) to mix the raw materials contained in the bottle body (1) to prepare the finished lipstick.
[0021] As can be seen, the lipstick refill package in the embodiment of the present application, on the one hand, features a detachable inner and outer liner. The inner liner houses a raw material mixing structure and contains lipstick paste. The outer liner, as the exterior structure of the lipstick, secures and protects the inner liner. This design allows users to replace the inner liner separately when the lipstick paste runs out, without having to discard the entire lipstick. Furthermore, since the inner liner can be replaced separately, consumers can simply replace the original outer liner with a new one, thereby reducing costs. This design also conforms to environmental protection and reduces unnecessary waste. Furthermore, the simple and reliable connection between the inner and outer liner makes replacement quick and easy. Users can complete the replacement process without requiring specialized tools or skills. Furthermore, because the color paste is encapsulated in a separate inner liner, there is no direct contact between the outer shell and the color paste. This effectively prevents contamination of the outer shell during use, thereby ensuring the hygienic quality of the lipstick paste. Furthermore, the bottle cap in this embodiment is equipped with a brush head for applying the color paste. This design prevents users from applying the color paste directly by rotating the outer shell, thereby reducing the chance of outer shell contamination. In addition, the brush head can be replaced or cleaned regularly to maintain cleanliness and hygiene. Finally, a strong seal design is used between the inner and outer liner, as well as between the bottle cap and the bottle mouth, to prevent external contaminants from entering the inner liner and contaminating the color paste. This design further improves the hygienic quality of the lipstick paste. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The drawings that constitute part of this application are used to provide a further understanding of this application and make other features, objects and advantages of this application more apparent. The illustrative embodiment drawings of this application and their descriptions are used to explain this application and do not constitute an improper limitation of this application. In the drawings:
[0023] Figure 1 This is an overall schematic diagram of the lipstick replacement package according to an embodiment of the present application.
[0024] Figure 2 This is a cross-sectional view of a lipstick replacement package according to an embodiment of the present application.
[0025] Figure 3 This is a cross-sectional view of the bottle cap according to an embodiment of the present application.
[0026] Figure 4A This is a schematic diagram of the bottle body of an embodiment of the present application.
[0027] Figure 4B This is one of the schematic diagrams of the interior of the bottle cap according to the embodiment of the present application.
[0028] Figure 5A This is the second schematic diagram of the interior of the bottle cap according to the embodiment of the present application.
[0029] Figure 5B This is a schematic diagram of the inner container according to an embodiment of the present application.
[0030] Figure 6A Schematic diagram of an outer shell according to an embodiment of the present application.
[0031] Figure 6B This is a schematic diagram of the bottle body of an embodiment of the present application.
[0032] Figure 7 This is a schematic diagram of the bottle cap shell according to an embodiment of the present application.
[0033] Figure 8 This is a schematic diagram of stirring and cutting in an embodiment of the present application.
[0034] Figure 9 This is a schematic diagram of the stirring structure of an embodiment of the present application.
[0035] Figure 10 This is a schematic diagram of the cutting structure of an embodiment of the present application. DETAILED DESCRIPTION
[0036] In order to enable those skilled in the art to better understand the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.
[0037] It should be noted that the term "including" in the specification and claims of this application and the above-mentioned drawings is intended to cover non-exclusive inclusions. In this application, the terms "upper," "lower," "vertical," "horizontal," etc. indicate positions or positional relationships based on the positions or positional relationships shown in the drawings. These terms are primarily intended to better describe this application and its embodiments, and are not intended to limit the indicated components to specific positions. For those of ordinary skill in the art, the specific meanings of these terms in this application can be understood based on the specific circumstances.
[0038] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0039] See also Figure 1-10As shown, the present application provides a lipstick replacement package, which comprises: a bottle body (1), a bottle cap (2), wherein the bottle body (1) has a bottle mouth, and the bottle cap (2) is assembled on the bottle mouth; the bottle body (1) comprises an inner liner (11) and an outer liner (12), wherein the inner liner (11) is equipped with a raw material mixing structure (111), and the inner liner (11) is assembled in the outer liner (12) in a detachable manner, so that when preparing the finished lipstick, the inner liner (11) is removed from the outer liner (12) and placed in a lipstick machine to drive the raw material mixing structure (111) to mix the raw materials contained in the bottle body (1); the bottle cap (2) is equipped with a brush head (21), and the brush head (21) is used to dip the finished lipstick.
[0040] As can be seen, the lipstick refill package in the embodiment of the present application, on the one hand, features a detachable inner and outer liner. The inner liner houses a raw material mixing structure and contains lipstick paste. The outer liner, as the exterior structure of the lipstick, secures and protects the inner liner. This design allows users to replace the inner liner separately when the lipstick paste runs out, without having to discard the entire lipstick. Furthermore, since the inner liner can be replaced separately, consumers can simply replace the original outer liner with a new one, thereby reducing costs. This design also conforms to environmental protection and reduces unnecessary waste. Furthermore, the simple and reliable connection between the inner and outer liner makes replacement quick and easy. Users can complete the replacement process without requiring specialized tools or skills. Furthermore, because the color paste is encapsulated in a separate inner liner, there is no direct contact between the outer shell and the color paste. This effectively prevents contamination of the outer shell during use, thereby ensuring the hygienic quality of the lipstick paste. Furthermore, the bottle cap in this embodiment is equipped with a brush head for applying the color paste. This design prevents users from applying the color paste directly by rotating the outer shell, thereby reducing the chance of outer shell contamination. In addition, the brush head can be replaced or cleaned regularly to maintain cleanliness and hygiene. Finally, a strong seal design is used between the inner and outer liner, as well as between the bottle cap and the bottle mouth, to prevent external contaminants from entering the inner liner and contaminating the color paste. This design further improves the hygienic quality of the lipstick paste.
[0041] Optionally, the inner liner (11) is screwed to the outer liner (12) so that the inner liner (11) is assembled in the outer liner (12) in a detachable manner.
[0042] Optionally, a male thread is provided on the outer wall of the inner liner (11), and a female thread (121) is provided on the inner wall of the outer liner (12), and the female thread (121) is screwedly connected to the male thread; or, a female thread (121) is provided on the outer wall of the inner liner (11), and a male thread is provided on the inner wall of the outer liner (12), and the male thread is screwedly connected to the female thread (121), so that the inner liner (11) is assembled in the outer liner (12) in a detachable manner.
[0043] It can be seen that the design of realizing detachable assembly between the inner liner (11) and the outer liner (12) through threaded connection brings the following significant technical benefits:
[0044] (1) The inner liner (11) can be easily screwed into or out of the outer liner (12) by screwing the male and female threads (121). This design not only makes it convenient and quick to remove the inner liner and put it into the lipstick machine for mixing the raw materials during the preparation process, but also allows consumers to easily replace the used inner liner during use without any special tools or skills.
[0045] (2) The threaded connection itself has good sealing performance, which can ensure a tight connection between the inner liner (11) and the outer liner (12), preventing the lipstick paste from leaking during storage and use. This not only ensures the quality of the lipstick paste, but also avoids waste and pollution caused by leakage.
[0046] (3) The threaded connection provides a stable mechanical connection, allowing the inner liner (11) to be firmly fixed in the outer liner (12), preventing the inner liner from loosening or falling out due to accidental collision or falling. This stability ensures the safety and reliability of the lipstick refill during use.
[0047] (4) Since the inner and outer liner can be replaced separately, when the color paste in the inner liner is used up, consumers only need to use a new inner liner or make new color paste for the inner liner and continue to use the original outer liner.
[0048] Optionally, the bottle cap (2) comprises a bottle cap liner (22) and a bottle cap outer shell (23), the bottle cap liner (22) is assembled in the bottle cap outer shell (23), and the brush head (21) is assembled on the bottle cap liner (22), so that the brush head (21) is lifted into the bottle body (1).
[0049] In combination with the above technical solution, the bottle cap (2) is composed of a bottle cap liner (22) and a bottle cap shell (23), and the brush head (21) is assembled on the bottle cap liner (22), so that the brush head (21) can be raised into the bottle body (1) to dip into the lipstick paste. This design has the following technical advantages:
[0050] (1) Since the brush head (21) is assembled on the bottle cap liner (22), and the bottle cap liner (22) is assembled in the bottle cap shell (23), this modular design allows the brush head (21) and the bottle cap liner (22) to be easily disassembled for cleaning. This not only ensures the sanitary quality of the lipstick slurry, but also extends the service life of the brush head (21).
[0051] (2) The brush head (21) can be raised into the bottle body (1) to dip into the lipstick color paste. This design allows the user to dip into the color paste by simply extending the brush head (21) into the bottle body (1) without having to turn the lipstick over or tilt it as a whole when using it, thereby improving the convenience and stability of use.
[0052] (3) The assembly relationship between the bottle cap liner (22) and the bottle cap shell (23), as well as the connection method between the brush head (21) and the bottle cap liner (22), can ensure the sealing performance of the entire bottle cap. This can prevent the lipstick paste from drying out or being contaminated during storage, thereby ensuring the quality and hygiene of the product.
[0053] (4) Since the brush head (21) is assembled on the bottle cap liner (22), when the brush head (21) is worn or seriously contaminated, the user can replace the brush head (21) alone without having to replace the entire bottle cap (2). This design not only reduces the cost of use, but also conforms to the concept of environmental protection.
[0054] (5) The assembly relationship between the bottle cap liner (22) and the bottle cap outer shell (23) ensures the stability of the entire bottle cap structure. This stability makes the bottle cap less likely to loosen or fall off during assembly and use, thereby improving the reliability and safety of the product.
[0055] Optionally, the inner wall of the bottle cap shell (23) is provided with a first clamping rib (231), and the outer wall of the bottle cap liner (22) is provided with a second clamping rib (221), and the second clamping rib (221) is clamped with the first clamping rib (231) to assemble the bottle cap liner (22) in the bottle cap shell (23) in a detachable manner.
[0056] Therefore, when the inner wall of the bottle cap shell (23) is provided with a first clamping rib (231), and the outer wall of the bottle cap liner (22) is provided with a second clamping rib (221), and detachable assembly is achieved through these two clamping ribs, this design has the following technical advantages:
[0057] (1) The design of the first clamping rib (231) and the second clamping rib (221) allows the bottle cap liner (22) to be easily assembled into the bottle cap shell (23) and also facilitates disassembly. This design facilitates cleaning and maintenance by the user during use, especially when the brush head (21) needs to be cleaned or replaced, the operation can be completed quickly.
[0058] (2) The design of the snap-fit ribs provides a stable mechanical connection, allowing the bottle cap liner (22) to be firmly fixed in the bottle cap shell (23). This stability ensures the reliability of the bottle cap during use and prevents the bottle cap from loosening or falling off due to accidental collision or falling.
[0059] (3) Through the close fit of the clamping ribs, a good sealing effect can be formed between the bottle cap liner (22) and the bottle cap shell (23). This helps prevent the lipstick paste from drying out or being contaminated during storage, thereby ensuring the quality and hygiene of the product.
[0060] (4) Since the bottle cap liner (22) and the bottle cap shell (23) are detachable, when one part is damaged or needs to be replaced, the user can purchase and replace it separately or use the liner to re-make the color paste without having to discard the entire bottle cap. This design reduces the cost of use and is also in line with the concept of environmental protection.
[0061] Optionally, an assembly column (223) is provided on the bottle cap liner (22), the assembly column (223) points to the finished lipstick in the bottle body (1), and a rubber plug (2231) is sleeved on the assembly column (223), and the brush head (21) is assembled in the rubber plug (2231).
[0062] Therefore, when the bottle cap liner (22) is provided with an assembly column (223), and a rubber plug (2231) is sleeved on the assembly column (223), and the brush head (21) is assembled in the rubber plug (2231), this design has the following technical advantages:
[0063] (1) The rubber plug (2231) can protect the brush head (21) from external contamination and damage. When the bottle cap is closed, the rubber plug (2231) and the assembly column (223) together seal the brush head (21) inside the bottle cap, effectively preventing dust, bacteria or other contaminants from contacting the brush head, thereby keeping the brush head clean and hygienic.
[0064] (2) The close fit between the rubber plug (2231) and the assembly column (223), coupled with the softness and elasticity of the rubber plug itself, provides a good sealing effect. This helps prevent the finished lipstick in the bottle (1) from evaporating, drying out, or becoming contaminated during storage, thereby ensuring the quality and freshness of the lipstick paste.
[0065] (3) When the user needs to use the brush head to dip the lipstick paste, he only needs to gently push the rubber plug (2231) to expose the brush head (21) and then easily dip the paste. This design simplifies the operation steps and improves the convenience of use.
[0066] (4) Since the rubber plug (2231) and the brush head (21) are both detachable, when the brush head is worn or severely contaminated, the user can replace the brush head alone without having to replace the entire bottle cap liner (22). This design reduces the cost of use and is also in line with the concept of environmental protection.
[0067] (5) The design of the assembly column (223) and the rubber plug (2231) enables the brush head (21) to be accurately positioned when dipping the color paste, avoiding direct contact and friction between the brush head and the inner wall of the bottle body (1), thereby reducing wear and scratches on the bottle body.
[0068] Optionally, the rubber plug (2231) is covered with a hoop (22311) to provide a tight hoop force for the brush head (21) assembled in the rubber plug (2231).
[0069] Optionally, the raw material mixing structure (111) comprises: a stirring paddle mechanism (1111), and a cutting paddle mechanism (1112), wherein the stirring paddle mechanism (1111) and the cutting paddle mechanism (1112) are arranged in the inner cavity of the bottle body (1), so that when preparing the finished lipstick, the target raw material contained in the inner cavity of the bottle body (1) is stirred by the stirring paddle mechanism (1111), and the target raw material is cut by the cutting paddle mechanism (1112).
[0070] Therefore, based on the application scenario of the raw material mixing structure in the above-mentioned lipstick machine refill, since the stirring paddle mechanism (1111) and the cutting paddle mechanism (1112) are provided in the inner container, when the finished lipstick in the lipstick machine refill is used up, the inner container is put back into the lipstick machine, and various raw materials are added to the inner container through the lipstick machine, and then mixed in the lipstick machine to re-make the finished lipstick. Therefore, designing the stirring paddle mechanism (1111) and the cutting paddle mechanism (1112) in the inner container has the following detailed technical advantages:
[0071] (1) The stirring paddle mechanism (1111) can effectively stir the target raw materials in the inner cavity of the bottle body (1), ensuring that the raw materials are mixed quickly and evenly. This is crucial for the preparation of lipstick slurry because even mixing can ensure the consistency and stability of the lipstick color.
[0072] (2) The cutting paddle mechanism (1112) can not only cut the target raw material, but also refine the larger raw material particles, increase the contact area between the raw material and the base liquid, and thus improve the solubility and dispersibility of the raw material. This helps to produce a finer and more uniform lipstick slurry.
[0073] (3) By placing the inner container in the lipstick machine to drive the stirring paddle mechanism (1111) and the cutting paddle mechanism (1112) to work, the raw materials can be mixed and cut, eliminating the step of mixing the raw materials in other equipment before transferring them to the lipstick machine. This not only simplifies the operation process, but also reduces the waste and pollution of raw materials that may be generated during the transfer process, thereby improving production efficiency.
[0074] (4) Through the precise control of the stirring paddle mechanism and the cutting paddle mechanism, the uniformity and stability of the raw materials during the mixing and cutting process can be ensured. This helps to ensure the quality and consistency of the lipstick paste, thereby improving the quality and reliability of the final product.
[0075] (5) The design of the stirring paddle mechanism and the cutting paddle mechanism can be adjusted and optimized according to different raw material characteristics and mixing requirements. This makes the solution highly adaptable and can meet the preparation requirements of different types and colors of lipstick pastes.
[0076] Optionally, the stirring paddle mechanism (1111) is nested with the bottom of the cutting paddle mechanism (1112), so that when the stirring paddle mechanism (1111) stirs the target raw material contained in the inner cavity of the bottle body (1), the cutting paddle mechanism (1112) simultaneously cuts the target raw material.
[0077] Therefore, when the stirring paddle mechanism (1111) and the cutting paddle mechanism (1112) are nested and connected, and the stirring paddle mechanism stirs the target raw material by rotating around the cutting paddle mechanism, while the cutting paddle mechanism is fixed and passively collides with the stirred target raw material to cut it, this design has the following technical advantages:
[0078] (1) Since the stirring paddle mechanism and the cutting paddle mechanism are nested and connected, the stirring paddle mechanism rotates and stirs the target raw material while the cutting paddle mechanism can cut the raw material synchronously. This synchronous operation ensures that the raw material is cut promptly and evenly during the stirring process, which helps to improve the dispersion of the raw material and the uniformity of the lipstick slurry.
[0079] (2) The rotation of the stirring paddle mechanism can cause the target raw material in the inner cavity to flow and rotate, while the fixed impact of the cutting paddle mechanism can further break up the raw material particles, allowing the raw material to be dispersed into the base liquid more quickly. This combined operation can significantly improve the mixing efficiency and shorten the preparation time of lipstick slurry.
[0080] (3) The cutting paddle mechanism is stationary and forms a passive collision with the target raw material being stirred. This collision mode enables the blades of the cutting paddle mechanism to cut the raw material particles more accurately, reducing the waste and unnecessary breakage of raw materials. At the same time, since the cutting paddle mechanism is stationary, it can also avoid the additional resistance caused by the movement of the blades during the stirring process, thereby improving the rotation efficiency of the stirring paddle mechanism.
[0081] (4) The nested connection design of the stirring paddle mechanism and the cutting paddle mechanism simplifies the overall structure, reduces the number of parts, and reduces production and maintenance costs. At the same time, the simple structure also makes operation more convenient and reduces the equipment failure rate caused by improper operation.
[0082] (5) The design can be adjusted and optimized according to different raw material characteristics and mixing requirements. For example, the stirring paddle mechanism and the cutting paddle mechanism can be replaced with different shapes and sizes to meet the preparation requirements of different types and colors of lipstick paste. This highly adaptable design makes the solution have a wider application prospect.
[0083] Optionally, the stirring paddle mechanism (1111) rotates around the cutting paddle mechanism (1112) in the inner cavity of the bottle body (1) to stir the target raw material contained in the inner cavity of the bottle body (1), and the cutting paddle mechanism (1112) is fixed and forms a passive collision with the stirred target raw material to synchronously cut the target raw material.
[0084] To this end, a design is adopted in which the stirring paddle mechanism (1111) rotates around the cutting paddle mechanism (1112), while the cutting paddle mechanism is kept stationary, so as to passively impact the target material being stirred to perform cutting. This technical design brings the following significant technical benefits:
[0085] (1) The rotation of the stirring paddle mechanism can evenly stir the target raw materials in the inner cavity, ensuring that the raw materials and the base liquid are fully mixed. At the same time, the fixed blades of the cutting paddle mechanism can effectively cut and crush larger raw material particles through passive impact with the raw materials, further promoting the uniform dispersion of the raw materials. This simultaneous stirring and cutting improves the efficiency and effect of raw material mixing.
[0086] (2) Since the cutting paddle mechanism is fixed, the additional resistance caused by the movement of the blade during the mixing process is avoided, reducing energy consumption. At the same time, since the raw material particles are precisely cut during the cutting process, the waste of raw materials and unnecessary breakage are reduced, thus reducing production costs. In addition, the fixed cutting paddle mechanism also helps to reduce the pollution caused by the movement of the blade, maintaining the purity of the lipstick paste.
[0087] (3) The synergistic effect of the stirring paddle mechanism and the cutting paddle mechanism ensures that the raw materials are fully stirred and cut during the mixing process, making the raw materials more evenly distributed in the lipstick paste, thereby improving the quality and stability of the lipstick paste. At the same time, this design also helps to reduce the agglomeration and precipitation of raw material particles, maintaining the uniformity and durability of the lipstick paste.
[0088] (4) The nested connection design of the stirring paddle mechanism and the cutting paddle mechanism simplifies the overall structure and makes operation more convenient. At the same time, the simple structure also reduces the maintenance cost of the equipment. When the stirring paddle mechanism and the cutting paddle mechanism need to be replaced or cleaned, they can be easily disassembled and installed, which improves the maintainability of the equipment.
[0089] (5) This design can be adjusted and optimized according to different raw material characteristics and mixing requirements. For example, the stirring paddle mechanism and cutting paddle mechanism can be replaced with different shapes and sizes to meet the preparation requirements of different types and colors of lipstick paste. This highly adaptable design makes this solution have a wider application prospect.
[0090] Optionally, the stirring paddle mechanism (1111) includes a stirring paddle (11111) and a stirring paddle base (11112), and the stirring paddle (11111) is arranged on the stirring paddle base (11112) so as to drive the stirring paddle (11111) to stir the target raw material contained in the inner cavity of the bottle body (1) when the stirring paddle base (11112) rotates.
[0091] To this end, a stirring paddle mechanism (1111) is designed to include a stirring paddle (11111) and a stirring paddle base (11112), wherein the stirring paddle (11111) is arranged on the stirring paddle base (11112), and when the stirring paddle base rotates, the stirring paddle is driven to stir the target raw material contained in the inner cavity. This design brings the following technical advantages:
[0092] (1) The rotation of the stirring paddle base (11112) can stably drive the stirring paddle (11111) to rotate, thereby ensuring that the stirring paddle produces an effective stirring effect in the raw materials. This design can ensure that the raw materials are fully and evenly stirred in the inner cavity, thereby improving the efficiency and uniformity of raw material mixing.
[0093] (2) The stirring paddle base (11112) serves as a supporting structure for the stirring paddle (11111), providing a stable rotating platform and fixed support, so that the stirring paddle maintains a stable motion trajectory during the stirring process. This structural stability helps reduce shaking and vibration during the stirring process, thereby improving the stirring effect and the reliability of the equipment.
[0094] (3) The separate design of the stirring paddle (11111) and the stirring paddle base (11112) makes the maintenance and cleaning of the equipment more convenient. When the stirring paddle needs to be replaced or cleaned, the stirring paddle part can be easily disassembled and installed, reducing maintenance costs and time.
[0095] (4) The shape and size of the stirring paddle (11111) can be customized according to different raw material characteristics and mixing requirements. By replacing the stirring paddles of different shapes and sizes, it is possible to meet the preparation requirements of different types and colors of lipstick pastes, thereby improving the adaptability and flexibility of the equipment.
[0096] (5) The rotation of the stirring paddle base (11112) can be driven by an electric or other power source to achieve efficient stirring operation. At the same time, this design can also adjust the stirring speed and time according to the stirring requirements to achieve the goals of energy saving and high efficiency.
[0097] Optionally, the cutting paddle mechanism (1112) comprises a cutting paddle mechanism body (11121) and a cutting paddle (11122), wherein the cutting paddle mechanism body (11121) is nested and connected to the stirring paddle base (11112), and the cutting paddle (11122) is arranged on the cutting paddle mechanism body (11121), so that when the stirring paddle mechanism (1111) stirs the target raw material contained in the inner cavity of the bottle body (1), the cutting paddle mechanism body (11121) remains stationary, so that the cutting paddle (11122) is fixed, thereby cutting the target raw material synchronously.
[0098] To this end, a cutting paddle mechanism (1112) is designed to include a cutting paddle mechanism body (11121) and a cutting paddle (11122), wherein the cutting paddle mechanism body (11121) is nested and connected to the stirring paddle base (11112), and the cutting paddle (11122) is arranged on the cutting paddle mechanism body (11121) and remains stationary so as to perform cutting synchronously when the stirring paddle mechanism (1111) stirs the target raw material. This design brings the following technical benefits:
[0099] (1) The raw materials are passively impacted by the fixed cutting paddle (11122) during the mixing process, thereby achieving an efficient cutting effect. This design ensures that the raw material particles are evenly and effectively cut, promoting the uniform dispersion of the raw materials in the lipstick slurry.
[0100] (2) Since the cutting paddle (11122) is fixed, it can accurately cut the raw material particles during the mixing process, avoiding unnecessary breakage and waste. At the same time, this design also helps to reduce splashing and overflow of raw materials during the cutting process, improve production efficiency and reduce costs.
[0101] (3) The nested connection between the cutting paddle mechanism body (11121) and the stirring paddle base (11112) ensures the stability of the cutting paddle mechanism (1112) during the stirring process. This design enables the cutting paddle (11122) to maintain a fixed position and is not affected by the rotation of the stirring paddle mechanism (1111), thereby ensuring the accuracy and consistency of the cutting effect.
[0102] (4) Since the cutting blade (11122) is fixed, the user does not need to perform additional operations or adjust the position of the cutting blade. This makes the operation simpler and more convenient, and reduces the difficulty and error rate of the operation.
[0103] (5) The shape, size and number of the cutting paddles (11122) can be customized according to different raw material characteristics and mixing requirements. By replacing cutting paddles of different specifications and types, it is possible to meet the preparation requirements of different types and colors of lipstick pastes, thereby improving the adaptability and flexibility of the equipment.
[0104] (6) Since the cutting paddle mechanism (1112) is relatively independent from the stirring paddle mechanism (1111), the user can easily clean and maintain the cutting paddle mechanism. When the cutting paddle needs to be replaced or cleaned, only the cutting paddle mechanism body (11121) needs to be disassembled, without the need to disassemble the entire stirring paddle mechanism, thereby improving the maintenance efficiency of the equipment.
[0105] Optionally, the cutting paddle mechanism body (11121) has an assembly hole (111211), the stirring paddle base (11112) has a protrusion (111121), and the assembly hole (111211) passes through the protrusion (111121) so that the cutting paddle mechanism body (11121) and the stirring paddle base (11112) are nested and connected.
[0106] Therefore, when the cutting paddle mechanism body (11121) passes through the assembly hole (111211) on the cutting paddle mechanism body (11121) and is nested with the stirring paddle base (11112), this design brings the following technical benefits:
[0107] (1) Through the nested connection between the assembly hole (111211) and the protrusion (111121), the cutting paddle mechanism body (11121) and the stirring paddle base (11112) are tightly combined, making the entire stirring and cutting mechanism compact and taking up little space. This is particularly important for devices with limited space, such as lipstick machines, as it can improve the overall efficiency of the device.
[0108] (2) The nested connection design makes the installation of the cutting paddle mechanism body (11121) simple and quick. It only needs to align the assembly hole (111211) with the protrusion (111121) and insert it. There is no need for complicated fixing steps or tools, which reduces the difficulty and cost of installation.
[0109] (3) The nested connection between the assembly hole (111211) and the protrusion (111121) provides stable support and positioning, ensuring that the cutting paddle mechanism body (11121) remains stationary during the mixing process. This stability helps reduce vibration and noise, and improves the accuracy and efficiency of mixing and cutting.
[0110] (4) The nested connection design also makes it easy to disassemble the cutting paddle mechanism body (11121). When the cutting paddle needs to be cleaned, repaired, or replaced, it is only necessary to pull the assembly hole (111211) out of the protrusion (111121) without disassembling the entire stirring paddle mechanism, thereby improving the maintainability of the equipment.
[0111] (5) The size and shape of the assembly hole (111211) and the protrusion (111121) can be adjusted as needed to accommodate cutting paddle mechanism bodies and stirring paddle bases of different specifications and types. This design makes the mechanism highly compatible and can adapt to lipstick machine equipment of different brands and models.
[0112] Optionally, the stirring paddle base (11112) is connected to a stirring drive mechanism so that when the finished lipstick is prepared, the stirring paddle base (11112) is driven by the stirring drive mechanism to rotate.
[0113] To this end, when the stirring paddle base (11112) is connected to the stirring drive mechanism and is driven to rotate by the stirring drive mechanism when preparing the finished lipstick, this design brings the following technical benefits:
[0114] (1) The stirring drive mechanism can stably and continuously provide power to rotate the stirring paddle base (11112) at a set speed and direction. This rotational action can ensure that the stirring paddle (11111) fully and evenly stirs the target raw material, thereby accelerating the mixing process of the raw material and the base liquid and improving the preparation efficiency.
[0115] (2) The stirring drive mechanism usually has adjustable speed and direction of rotation, so the rotation speed and direction of the stirring paddle base (11112) can be adjusted according to different preparation requirements. This precise control helps to optimize the stirring effect and ensure the uniform distribution and stability of the raw materials in the lipstick slurry.
[0116] (3) The need for manual operation is reduced through the automated control of the stirring drive mechanism. This not only reduces labor intensity, but also reduces the impact of human factors on the preparation process and improves the consistency and stability of the preparation.
[0117] (4) The stirring drive mechanism is usually designed with safety protection measures, such as overload protection and overheating protection, to ensure the safety of the equipment during operation. In addition, by reducing manual operation, the risk of operator injury is also reduced.
[0118] (5) The stirring drive mechanism can usually be integrated with the lipstick machine to form a complete miniaturized automated production equipment.
[0119] Based on the embodiment of a lipstick machine reprocessing finished lipstick, an exemplary description is given below, with the inner liner serving as the material receiving tube in the following embodiment.
[0120] The lipstick machine is provided with a sliding assembly (1) and a material receiving pipe assembly (2), wherein the sliding assembly (1) is slidably connected to the material receiving pipe assembly (2) to drive the material receiving pipe assembly (2) to slide to the bottom of a target raw material pipe to receive the target raw material from the target raw material pipe.
[0121] The receiving pipe assembly (2) is pre-loaded with a target base material, and the target raw material tube is pre-loaded with a target colorant. To this end, the receiving pipe assembly (2) slides below the target raw material tube to receive the target colorant from the target raw material tube.
[0122] To this end, in the embodiment of the present application, by introducing a sliding assembly (1) and a material receiving pipe assembly (2), and by their sliding connection, the material receiving pipe assembly (2) can automatically slide to the bottom of the target raw material pipe, thereby automatically receiving the target raw material, greatly reducing the need for manual operation and improving the efficiency and accuracy of material receiving.
[0123] Optionally, a plurality of raw material pipes (3) are provided above the material receiving pipe assembly (2), each raw material pipe containing a predetermined raw material, the target raw material pipe is at least one of the plurality of raw material pipes (3), and the target raw material corresponds to the predetermined raw material in the raw material pipe.
[0124] To this end, a plurality of raw material tubes (3) are arranged above the material receiving tube assembly (2), each raw material tube containing a predetermined raw material, and the target raw material tube is at least one of these raw material tubes (3), which has the following technical advantages:
[0125] (1) Since multiple raw material pipes are arranged above the receiving pipe assembly at the same time, the receiving pipe assembly can be quickly moved to the bottom of the target raw material pipe for receiving the material through the sliding assembly. This design reduces the time of manual operation and improves the overall production efficiency.
[0126] (2) The existence of multiple raw material tubes allows the system to adapt to the mixing needs of multiple raw materials. Raw material tubes can be easily replaced or added according to product needs, thereby producing lipsticks of different colors.
[0127] (3) The raw materials in each raw material tube are predetermined, ensuring the purity and quality of the raw materials. Compared with manual operation, this design reduces the risk of raw material contamination or confusion due to human factors.
[0128] (4) By automatically selecting the target raw material tube and accurately moving the receiving tube assembly to the bottom of it for receiving the material, it can be ensured that the raw materials mixed each time are accurate, thereby improving the quality and consistency of the product.
[0129] (5) The design of the raw material pipe is usually easy to disassemble and replace, which helps the maintenance and cleaning of the system. When it is necessary to replace the raw material or clean the system, the operation can be carried out quickly and easily.
[0130] (6) Arranging multiple raw material pipes vertically above the receiving pipe assembly can save horizontal space, make the equipment more compact, and be suitable for production environments of different sizes.
[0131] Optionally, the sliding assembly (1) includes a sliding drive mechanism (11), a sliding transmission mechanism (12), and a sliding mechanism (13); the sliding drive mechanism (13) is connected to the sliding transmission mechanism (12) and is used to generate a sliding drive force and transmit the sliding drive force to the sliding transmission mechanism (12); the sliding transmission mechanism (12) is connected to the sliding mechanism (13); the sliding transmission mechanism (12) transmits the received sliding drive force to the sliding mechanism (13) to drive the sliding mechanism (13) to move and drive the material receiving pipe assembly (2) to slide to the bottom of the target raw material pipe.
[0132] Therefore, the detailed design of the sliding assembly (1) mentioned above brings the following technical benefits to the material splicing system:
[0133] (1) The sliding drive mechanism (11) can accurately generate the sliding drive force and accurately transmit this force to the sliding mechanism (13) through the sliding transmission mechanism (12). This precise control ensures that the receiving pipe assembly (2) can accurately slide under the target raw material pipe, thereby reducing errors and waste.
[0134] (2) The sliding transmission mechanism (12) acts as a bridge for driving force transmission and can effectively transmit the sliding driving force from the driving mechanism (11) to the sliding mechanism (13). This efficient transmission method ensures that the loss of driving force during the transmission process is small, thereby improving the efficiency of the entire system.
[0135] (3) After receiving the sliding driving force, the sliding mechanism (13) can operate stably and reliably to drive the material receiving pipe assembly (2) to slide to the predetermined position. This stability and reliability are crucial to ensure the accuracy and efficiency of material receiving.
[0136] (4) The modular design of the sliding assembly (1) makes each part relatively independent, which is convenient for maintenance and adjustment. For example, when it is necessary to adjust the material connection position or replace the raw material pipe, the sliding mechanism (13) or the sliding transmission mechanism (12) can be operated separately without making large-scale changes to the entire system.
[0137] (5) By introducing the sliding assembly (1), the material receiving system can realize the automated material receiving process, reduce the reliance on manual operation, and improve the level of production automation. This can not only reduce labor costs, but also improve production efficiency and product quality.
[0138] (6) Since the design of the sliding assembly (1) is relatively independent and modular, it can be flexibly configured and expanded according to production needs. For example, more raw material tubes can be added or the travel range of the sliding assembly can be adjusted to meet the production needs of lipstick machines of different specifications and models.
[0139] Optionally, the sliding drive mechanism (11) is a drive motor, a power output end of the drive motor is connected to a first bevel gear (14A), and the first bevel gear (14A) is engaged with the sliding transmission mechanism (12) to transmit the generated sliding drive force to the sliding transmission mechanism (12).
[0140] Therefore, when the sliding drive mechanism (11) adopts a driving motor and transmits the sliding driving force through the first bevel gear (14A) meshing with the sliding transmission mechanism (12), the following technical advantages are achieved:
[0141] (1) The drive motor can provide a precise and controllable rotational force, which can be converted into a linear sliding driving force through the engagement of the first bevel gear (14A), and the sliding position and speed of the material receiving pipe assembly (2) can be precisely controlled. This ensures that the material receiving pipe assembly (2) can accurately and stably slide to the bottom of the target raw material pipe, thereby improving the accuracy of material receiving.
[0142] (2) The design of helical gears allows for power to be transmitted with greater efficiency. Because the tooth surfaces of helical gears are inclined, contact between them is gradual, resulting in smoother force transmission and reduced energy loss. This enables the sliding assembly (1) to operate efficiently, reducing energy consumption.
[0143] (3) The drive motor and helical gear as mechanical transmission components have high durability and reliability. They can withstand high loads and frequent working cycles, ensuring long-term stable operation of the material receiving system.
[0144] (4) The drive motor and helical gear (14A) are standard mechanical components that are easy to replace and maintain. When replacement or repair is required, new parts can be quickly removed and installed, reducing downtime and repair costs.
[0145] Optionally, a power input end of the sliding transmission mechanism (12) is connected to a second bevel gear (14B), and the second bevel gear (14B) is engaged with the sliding drive mechanism (11) to receive the sliding drive force generated by the sliding drive mechanism (11).
[0146] Therefore, when the power input end of the sliding transmission mechanism (12) is engaged with the sliding drive mechanism (11) through the second bevel gear (14B) to receive the sliding drive force, the following technical advantages are achieved:
[0147] (1) The meshing design of the helical gear (14B) ensures stable transmission between the sliding transmission mechanism (12) and the sliding drive mechanism (11). The inclination of the tooth surface of the helical gear makes the contact between them smoother, reducing energy loss and noise caused by vibration or impact, thereby ensuring the stability and reliability of the transmission.
[0148] (2) The meshing method of the helical gears enables efficient power transmission. Due to the shape and arrangement of the tooth surfaces of the helical gears, the contact area between them is large, allowing the power to be distributed to more tooth surfaces during transmission, thereby reducing wear and damage caused by concentrated stress. This ensures that the sliding transmission mechanism (12) can operate stably for a long time and effectively transmits the sliding drive force to the sliding mechanism (13).
[0149] (3) By selecting the appropriate number of teeth and module of the helical gear, a precise transmission ratio can be achieved. This means that the rotational speed of the sliding drive mechanism (11) can be accurately converted into the linear sliding speed of the sliding mechanism (13), thereby achieving precise control of the position of the butt-jointed tube assembly (2). This is crucial for applications requiring high-precision positioning.
[0150] (4) The helical gear (14B) is a standard transmission element that is easy to maintain and replace. When replacement or repair is required, the new helical gear can be quickly removed and installed, reducing downtime and repair costs.
[0151] Specifically, the first bevel gear (14A) and the second bevel gear (14B) are engaged with each other, so that the sliding transmission mechanism (12) receives the sliding driving force generated by the sliding driving mechanism (11).
[0152] Optionally, the sliding transmission mechanism (12) includes: a nut (121), a mounting bracket (122), a screw rod (123), and a bearing (124), and both ends of the screw rod (123) are fixed to the mounting bracket (122) through a bearing (124) respectively, so that the screw rod (123) passes through the nut (121) in sequence, and the sliding mechanism (13) is arranged on the mounting bracket (122), and the screw rod is driven to rotate by the sliding drive mechanism (11), and the rotating screw rod cooperates with the nut (121) to drive the sliding mechanism to slide.
[0153] Therefore, when the sliding transmission mechanism (12) adopts a combination of a screw rod (123), a screw nut (121), a mounting bracket (122) and a bearing (124), the following technical advantages are achieved:
[0154] (1) The combination of the screw (123) and the nut (121) enables high-precision linear motion. Due to the helical structure of the screw and nut, the motion between them is continuous, enabling minute displacement adjustments, ensuring that the sliding mechanism (13) can accurately slide to the target position. This is crucial for applications such as lipstick machines that require precise control of the amount of raw material received.
[0155] (2) The screw (123) is fixed to the mounting bracket (122) via two bearings (124), so that the screw can maintain a stable axis during rotation. This stability ensures smooth fit between the screw and the nut, reduces errors caused by vibration or impact, and improves the accuracy and stability of the material connection.
[0156] (3) The screw drive mechanism has high reliability. Since the screw and nut have a simple structure and are not easily affected by the external environment, they can operate stably under various working conditions. In addition, the screw drive mechanism also has high durability and can withstand long-term use and frequent operation.
[0157] (4) The various components of the screw drive mechanism are relatively independent and easy to disassemble and replace. When a component fails or needs maintenance, it can be quickly replaced or adjusted, reducing downtime and maintenance costs.
[0158] (5) The screw drive mechanism can efficiently convert the rotational power of the sliding drive mechanism (11) into the linear motion of the sliding mechanism (13). Due to the helical structure between the screw and the nut, a larger transmission ratio can be achieved, thereby improving the energy transmission efficiency.
[0159] Optionally, the sliding mechanism (13) includes a first slider (131) and a guide rod (132), the first slider (131) is fixed with the nut (121), the screw rod (123) passes through the nut (121) in sequence, and the first slider (131) is arranged on the mounting bracket (122), the guide rod (132) is passed through the mounting bracket (122) and is parallel to the screw rod, and the screw rod is driven to rotate by the sliding drive mechanism (11), and the rotating screw rod cooperates with the nut (121) to drive the first slider (131) to slide along the guide rod (132).
[0160] Therefore, when the sliding mechanism (13) adopts a combination of the first slider (131) and the guide rod (132), combined with the transmission mechanism of the screw rod (123) and the nut (121), the following technical advantages are achieved:
[0161] (1) The first slider (131) slides along the guide rod (132), which provides a stable sliding path. The screw rod (123) and the nut (121) are screwed together to ensure the sliding accuracy, so that the first slider can be accurately moved to the predetermined position, thereby achieving precise control of the docking tube assembly (2).
[0162] (2) The guide rod (132) not only provides directionality for sliding, but also enhances the stability of the entire sliding mechanism. During the sliding process, the first slider (131) slides along the guide rod, avoiding deviation or shaking caused by external forces or other factors, thereby ensuring the smoothness and accuracy of sliding.
[0163] (3) The parallel arrangement of the guide rod (132) and the screw rod (123), as well as the screw transmission mechanism of the screw rod and the nut, makes the entire sliding mechanism have a high load-bearing capacity. This means that the sliding mechanism can withstand a large load and is suitable for scenarios where a large amount of raw materials needs to be received.
[0164] (4) The various components of the sliding mechanism are relatively independent and easy to disassemble and install. When maintenance or replacement of parts is required, the operation can be carried out conveniently, reducing downtime and maintenance costs.
[0165] (5) Due to the restriction of the guide rod (132) and the spiral fit between the screw rod (123) and the nut (121), the sliding mechanism can maintain a stable sliding speed during operation, thereby reducing errors and losses caused by speed fluctuations.
[0166] Optionally, the number of the screw rod is one, the number of the guide rods (132) is two, and the two guide rods (132) are arranged on the mounting bracket (122) in a manner that they are parallel to the screw rod and located on both sides of the screw rod.
[0167] Optionally, the two guide rods are parallel and have a set installation height difference with the screw rod.
[0168] To this end, when the number of the screw rod in the sliding mechanism (13) is one and the number of the guide rods (132) is two, and the two guide rods are parallel to the screw rod and located on both sides thereof, the following technical advantages are achieved:
[0169] (1) By providing two guide rods (132), the first slider (131) is better guaranteed to be stable during the sliding process. The guide rods provide two parallel sliding tracks, which limit the movement of the first slider in a direction perpendicular to the sliding direction, thereby effectively preventing the slider from deflecting or shaking during the sliding process.
[0170] (2) The parallelism of the guide rod (132) and its fixed mounting position relationship with the screw rod (123) ensure that the first slider (131) slides along a predetermined trajectory. This helps to improve the positioning accuracy of the material receiving pipe assembly (2) and achieve a more accurate material receiving operation.
[0171] (3) The supporting effect of the two guide rods (132) enhances the load-bearing capacity of the entire sliding mechanism (13). Even when subjected to a large load, the sliding mechanism can maintain stable sliding performance and is not prone to deformation or damage.
[0172] (4) The height difference between the two guide rods and the lead screw can further optimize the performance of the sliding mechanism. This design helps reduce the interference and friction between the lead screw and the guide rod, reduces energy consumption and wear, and increases the service life of the sliding mechanism.
[0173] (5) The guide rod (132) and the screw rod (123) are independent components and can be easily adjusted and maintained. When it is necessary to adjust the accuracy of the sliding mechanism or replace worn parts, the guide rod or the screw rod can be operated separately without disassembling the entire mechanism.
[0174] Optionally, the material receiving pipe assembly (2) includes: a fixed base (21), a material receiving pipe (22), and the material receiving pipe (22) is arranged on the fixed base (21), so that the sliding assembly (1) drives the material receiving pipe assembly (2) to slide and drives the material receiving pipe (22) to slide to the bottom of the target raw material pipe to receive the target raw material from the target raw material pipe.
[0175] To this end, when the material receiving pipe assembly (2) includes a fixed base (21) and a material receiving pipe (22), the following technical advantages are achieved:
[0176] (1) The modular design of the material receiving pipe assembly (2) makes each part relatively independent and easy to assemble, disassemble and maintain. The fixed base (21) serves as a supporting structure for the material receiving pipe (22), providing a stable installation foundation, while the material receiving pipe (22) is directly used to receive the raw materials. This design allows the material receiving pipe assembly (2) to adapt to different production needs and can be easily replaced or adjusted.
[0177] (2) Driven by the sliding assembly (1), the receiving pipe assembly (2) can accurately slide to the bottom of the target raw material pipe. This high-precision positioning capability ensures that the receiving pipe (22) can accurately dock with the raw material pipe, avoiding waste and contamination of raw materials. At the same time, it also improves the efficiency and accuracy of the material connection, making the production process more reliable and efficient.
[0178] (3) Due to the separate design of the material receiving pipe assembly (2) and the sliding assembly (1), the material receiving pipe assembly (2) can flexibly adapt to different raw material pipe positions and layouts. Whether it is a fixed position on the production line or when the raw materials need to be frequently changed, the material receiving pipe assembly (2) can quickly adjust its position to meet production needs.
[0179] (4) The receiving pipe (22), as a component that directly contacts the raw materials, requires frequent cleaning and maintenance. Due to the modular design of the receiving pipe assembly (2), the receiving pipe (22) can be easily removed from the fixed base (21) for separate cleaning and inspection. This design greatly reduces the difficulty and time of cleaning and maintenance, thereby improving the utilization rate and production efficiency of the equipment.
[0180] (5) By replacing the receiving pipe (22) with different specifications and models, the receiving pipe assembly (2) can adapt to different raw material receiving requirements. This scalability enables the receiving system to be flexibly applied to different production scenarios and process requirements, thereby improving the versatility and adaptability of the equipment.
[0181] Optionally, the material receiving pipe assembly (2) further includes: a locking member (23), wherein the locking member (23) is connected to the fixed base (21), and the material receiving pipe (22) is locked on the fixed base (21) or removed from the fixed base (21) through the locking member (23).
[0182] Therefore, when the material receiving pipe assembly (2) includes a locking member (23), the following technical advantages are achieved:
[0183] (1) The locking member (23) enables the material receiving pipe (22) to be easily and quickly installed or removed from the fixed base (21). This is particularly useful in scenarios where it is necessary to frequently change raw materials or adjust the position of the material receiving pipe, and can significantly improve work efficiency.
[0184] (2) The locking member (23) is usually designed with a precise positioning structure to ensure that the receiving tube (22) is accurately positioned on the fixed base (21). This helps ensure that the receiving tube (22) can accurately slide under the target raw material tube, avoiding waste or contamination of raw materials caused by position deviation.
[0185] (3) The locking member (23) is generally capable of providing a reliable seal when securing the receiving pipe (22). This helps prevent leakage of raw materials during the receiving process, thereby ensuring a clean working environment and the quality of the raw materials.
[0186] (4) The locking member (23) can ensure the stability of the material receiving pipe (22) on the fixed base (21), thereby preventing the material receiving pipe from falling off or shifting due to vibration or impact during the operation of the equipment, thereby improving the safety of the equipment.
[0187] (5) The design of the locking member (23) allows the material receiving pipe (22) to be easily removed from the fixed base (21) for cleaning and maintenance. This helps to keep the equipment clean and sanitary and extend the service life of the equipment.
[0188] Optionally, the locking member (23) includes: a locking frame (231), a slide lock (232), and a pressure block (233); the slide lock (232) is arranged on the fixed base (21); the pressure block (233) is slidably connected to the slide lock (232); the locking frame (231) is connected to the pressure block (233); the material receiving tube (22) is fixed on the locking frame (231), so that the locking frame (231) is driven to move, thereby driving the pressure block (233) and the slide lock (232) to slide relative to each other, so that the material receiving tube (22) is set on the fixed base (21) or removed from the fixed base (21).
[0189] Therefore, when the locking member (23) is designed to include a locking frame (231), a sliding lock (232) and a pressing block (233), this structure provides the following technical advantages for the material receiving pipe assembly (2):
[0190] (1) By driving the locking frame (231), the sliding between the pressing block (233) and the sliding lock (232) can be easily achieved. This design makes the installation and removal of the material receiving pipe (22) very simple, without the need for complicated tools or operations, and improves work efficiency.
[0191] (2) When the pressing block (233) and the sliding lock (232) slide into place, the locking mechanism between them can ensure that the material receiving pipe (22) is firmly fixed on the fixed base (21). This firm locking state can prevent the material receiving pipe (22) from loosening or falling off due to vibration or impact during the operation of the equipment, thereby ensuring the stability and safety of the equipment.
[0192] (3) Due to the design flexibility of the locking member (23), it can adapt to different specifications and models of the material receiving pipe (22). By adjusting the position and size of the locking frame (231) and the pressing block (233), the material receiving pipes of different sizes can be easily installed and removed, thereby improving the versatility and adaptability of the equipment.
[0193] (4) All parts of the locking member (23) are detachable and reusable, which reduces the maintenance cost of the equipment. When the receiving pipe (22) needs to be replaced or repaired, it is only necessary to simply remove the locking member (23) without replacing the entire fixed base (21) or the sliding assembly (1), saving resources and reducing costs.
[0194] (5) Due to the design of the locking member (23), the material receiving pipe (22) can be easily disassembled for cleaning and maintenance, which helps to keep the equipment clean and hygienic. At the same time, since all parts of the locking member (23) are detachable, it is also convenient for the repair and maintenance of the equipment.
[0195] Optionally, the locking frame (231) includes a locking panel (2311) and a locking leg (2312), wherein a through hole (23111) is provided on the locking panel (2311) so that the material receiving tube (22) passes through the through hole (23111) to be fixed on the locking frame (231), and the locking leg (2312) is arranged below the locking panel (2311) and is connected to the pressing block (233) so as to slide relative to each other by driving the locking panel (2311) and transmitting through the locking leg (2312).
[0196] Therefore, when the locking frame (231) adopts a design including a locking panel (2311) and a locking leg (2312), this structure brings the following technical benefits to the material receiving pipe assembly (2):
[0197] (1) The through hole (23111) provided on the locking panel (2311) provides a clear installation location for the material receiving tube (22). This allows the material receiving tube (22) to be quickly fixed to the locking frame (231), reducing errors and uncertainties during the installation process.
[0198] (2) The locking legs (2312) serve as a connection between the locking panel (2311) and the pressure block (233), ensuring the stability of the entire locking frame (231) structure. This stability helps to maintain the fixed position of the receiving pipe (22) during the operation of the equipment and prevent it from loosening or falling off due to vibration or impact.
[0199] (3) By driving the locking panel (2311), the sliding between the pressing block (233) and the sliding lock (232) can be easily achieved. This operation method is intuitive and simple, allowing the operator to quickly and accurately complete the installation and removal of the material receiving pipe (22).
[0200] (4) Since the various components of the locking frame (231) are relatively independent and easy to disassemble, they can be easily operated when cleaning, repair or replacement of components is required. This design reduces the maintenance cost of the equipment and improves the reliability and service life of the equipment.
[0201] (5) By adjusting the position and size of the locking panel (2311) and the locking foot (2312), the material receiving tube (22) of different specifications and models can be adapted. This design makes the material receiving tube assembly (2) more versatile and adaptable, and can meet different production needs.
[0202] Optionally, the slide lock (232) includes a sliding block (2321), a locking tongue (2322), and a fixed wing (2323); the sliding block (2321) is arranged on the locking tongue (2322) and is slidably connected to the pressing block (233); the fixed wing (2323) is connected to the sliding block (2321); the slide lock (232) is arranged on the fixed base (21) through the fixed wing (2323), so that the locking tongue (2322) is connected to or disconnected from the fixed base (21) through the mutual sliding between the pressing block (233) and the slide lock (232), so that the material receiving tube (22) can be set on the fixed base (21) or removed from the fixed base (21).
[0203] Therefore, when the slide lock (232) adopts a design including a sliding block (2321), a locking tongue (2322) and a fixed wing (2323), this structure brings the following technical benefits to the material receiving pipe assembly (2):
[0204] (1) The connection or disconnection between the locking tongue (2322) and the fixed base (21) can be conveniently controlled by sliding between the pressing block (233) and the sliding block (2321). This design makes the installation and removal process of the material receiving pipe (22) faster and more efficient.
[0205] (2) The connection between the locking tongue (2322) and the fixed base (21) provides a stable locking mechanism. When the locking tongue is fully connected to the fixed base, the material receiving tube (22) is firmly fixed to the fixed base (21) and is not easily loosened due to vibration or impact, thereby ensuring the stability of the material receiving process.
[0206] (3) The sliding block (2321) serves as a component connecting the pressing block (233) and the locking tongue (2322), allowing the operator to intuitively see and operate the locking and unlocking process. This design reduces the difficulty of operation and improves work efficiency.
[0207] (4) The components of the slide lock (232) are compactly designed and occupy a small space, which is conducive to achieving efficient locking and unlocking functions within a limited equipment space.
[0208] (5) By adjusting the size and shape of the sliding block (2321) and the locking tongue (2322), it can adapt to different specifications and models of the material receiving tube (22). This design makes the sliding lock (232) have strong versatility and adaptability, and can meet different production needs.
[0209] (6) The components of the slide lock (232) are relatively independent and easy to disassemble, and can be easily operated when cleaning, repair or replacement of components is required. This design reduces the maintenance cost of the equipment and improves the reliability and service life of the equipment.
[0210] Optionally, a spring (23231) is provided on the fixed wing (2323), and the spring (23231) is deformed when the pressure block (233) and the slide lock (232) slide against each other, so that the lock tongue (2322) is connected to or disconnected from the fixed base (21) when the pressure block (233) and the slide lock (232) slide against each other.
[0211] Therefore, when the fixed wing (2323) is provided with a spring (23231), this design brings the following technical benefits to the material receiving pipe assembly (2):
[0212] (1) The presence of the spring (23231) provides the slide lock (232) with an automatic reset function. When the pressure block (233) is pushed and slides with the slide lock (232) to release the lock tongue (2322), the spring (23231) automatically pushes the slide lock (232) and the lock tongue (2322) back to their original position, achieving automatic locking. This greatly simplifies the operation process and improves work efficiency.
[0213] (2) The spring (23231) stores energy in a compressed state. When the locking tongue (2322) is connected to the fixed base (21), the elastic force of the spring further enhances the locking force, thereby ensuring the stability of the material receiving tube (22) on the fixed base (21).
[0214] (3) Due to the automatic reset function of the spring (23231), the operator does not need to precisely control the sliding distance of the slide lock (232). The operator only needs to push the pressing block (233) to a certain position to achieve locking or unlocking. This reduces operating errors and improves the reliability of the equipment.
[0215] (4) The design of the spring (23231) can reduce the wear on the slide lock (232) and the fixed base (21) caused by frequent operation. This helps to extend the service life of the equipment and reduce maintenance costs.
[0216] (5) During the locking or unlocking process, the spring (23231) can act as a buffer, reducing vibration and noise caused by impact and protecting the device from damage.
[0217] (6) The elastic force and compression amount of the spring (23231) can be adjusted according to actual needs to adapt to different specifications and models of the material receiving pipe (22). This makes the material receiving pipe assembly (2) more versatile and adaptable.
[0218] Optionally, the sliding block (2321) and the pressing block (233) both have a sloped surface, and the sloped surface on the sliding block (2321) and the sloped surface on the pressing block (233) form surface contact, so that the pressing block (233) and the slide lock (232) can slide relative to each other.
[0219] Therefore, when both the sliding block (2321) and the pressing block (233) are designed with sloped surfaces, and the two sloped surfaces form surface contact, this design brings the following technical benefits to the material receiving pipe assembly (2):
[0220] (1) The design of the sloped surface increases the contact area between the pressing block (233) and the sliding block (2321), thereby reducing the friction during sliding and making the sliding between the two smoother. This helps to simplify the operation process and improve the efficiency of installing and removing the material receiving pipe (22).
[0221] (2) The surface contact of the sloped surface provides a stable sliding guide, so that the pressing block (233) can move along a predetermined path when pushing the sliding block (2321). This design ensures that the connection or disconnection between the locking tongue (2322) and the fixed base (21) can be accurately achieved, avoiding operational failure or equipment damage caused by inaccurate positioning.
[0222] (3) Surface contact can withstand greater pressure than point contact or line contact. This means that even under a large operating force, the contact surface between the sliding block (2321) and the pressing block (233) will not be easily damaged or deformed, thereby ensuring the durability and stability of the device.
[0223] (4) The surface contact of the sloped surface makes the contact pressure distribution during the sliding process more uniform, reducing the possibility of local wear. This helps to extend the service life of the sliding block (2321) and the pressure block (233) and reduce the maintenance cost of the equipment.
[0224] (5) The design of the slope surface can be adjusted according to actual needs to adapt to different specifications and models of the material receiving pipe (22). This design makes the material receiving pipe assembly (2) more versatile and adaptable, and can meet different production needs.
[0225] Optionally, the pressing block (233) includes: a support frame (2331), a sliding wedge (2332), the support frame (2331) is connected to the sliding block (2321), and the sliding wedge (2332) is arranged in the support frame (2331) and has a slope surface, which serves as the slope surface on the pressing block (233) to form the surface contact with the slope surface on the sliding block (2321).
[0226] To this end, when the pressing block (233) adopts a design including a support frame (2331) and a sliding wedge (2332), and the slope surface of the sliding wedge (2332) forms a surface contact with the slope surface of the sliding block (2321), this design brings the following technical benefits to the material receiving pipe assembly (2):
[0227] (1) The support frame (2331) provides stable support for the sliding wedge (2332), ensuring that the sliding wedge (2332) does not deviate or shake during the sliding process. This stability ensures that the surface contact between the pressing block (233) and the sliding block (2321) is always reliable, thereby improving the accuracy and reliability of locking and unlocking.
[0228] (2) The sloped surface of the sliding wedge (2332) forms surface contact with the sloped surface of the sliding block (2321), thereby increasing the contact area and reducing the sliding friction. This makes it smoother for the pressing block (233) to push the sliding block (2321), reduces the difficulty of operation, and improves work efficiency.
[0229] (3) The slope of the sliding wedge (2332) can be adjusted or replaced according to actual needs to adapt to different specifications and models of the material receiving pipe (22). This design makes the material receiving pipe assembly (2) more versatile and adaptable, and can meet different production needs.
[0230] (4) By ensuring stable surface contact between the pressing block (233) and the sliding block (2321), this design reduces the risk of accidental unlocking due to improper operation or equipment failure. This helps to improve the safety of the equipment and reduce the occurrence of production accidents.
[0231] Optionally, the support frame (2331) has two outwardly protruding connecting feet (23311), the sliding block (2321) is provided with a plug hole (23211), a connecting rod is passed through the plug hole (23211), and the two ends of the connecting rod are respectively located in an outwardly protruding connecting foot (23311), so that the support frame (2331) is connected to the sliding block (2321).
[0232] Therefore, when the support frame (2331) is connected to the insertion hole (23211) on the sliding block (2321) and the connecting rod through the two protruding connecting feet (23311), this design brings the following technical benefits to the material receiving pipe assembly (2):
[0233] (1) The two protruding connecting feet (23311) of the support frame (2331) are fixed to the plug holes (23211) on the sliding block (2321) through a connecting rod, forming a stable mechanical connection. This connection method ensures the stability between the pressing block (233) and the sliding block (2321) and prevents sliding or dislocation due to uneven force during operation.
[0234] (2) The design of the connecting rod makes the installation and removal of the support frame (2331) simple and quick. When the pressure block (233) needs to be replaced or repaired, the support frame (2331) can be easily separated from the sliding block (2321) by simply removing the connecting rod from the insertion hole (23211). This design reduces maintenance costs and improves work efficiency.
[0235] (3) Due to the limitation of the connecting rod, the position of the support frame (2331) on the sliding block (2321) is fixed, thereby ensuring that the slope surface between the sliding wedge (2332) and the sliding block (2321) can be accurately aligned and form surface contact. This precise positioning helps to improve the accuracy and reliability of locking and unlocking.
[0236] (4) By adjusting the length of the connecting rod or replacing the connecting rod with a different length, it is possible to adapt to different specifications of the sliding block (2321) and the support frame (2331). This design makes the material receiving pipe assembly (2) have strong versatility and adaptability, and can meet different production requirements.
[0237] (5) The stable connection reduces the safety risk caused by looseness or misalignment between the pressing block (233) and the sliding block (2321). This design helps to improve the overall safety of the device.
[0238] Optionally, the plug hole (23211) has a set hole space so that the connecting rod can move longitudinally in the hole space to cooperate with the surface contact, so that the pressure block (233) and the slide lock (232) can slide relative to each other.
[0239] Therefore, when the plug hole (23211) has a set hole space, allowing the connecting rod to move longitudinally in the hole space, this design brings the following technical benefits to the material connection pipe assembly (2):
[0240] (1) Since the connecting rod can move longitudinally in the hole space of the plug hole (23211), this design allows a certain degree of freedom between the pressing block (233) and the sliding lock (232) when sliding. This degree of freedom ensures that the sliding wedge (2332) always maintains surface contact with the slope surface of the sliding block (2321), thereby maintaining the smoothness and stability of the sliding process.
[0241] (2) The longitudinal movement of the connecting rod in the hole space makes it easier for the operator to push the pressing block (233) to slide with the slide lock (232). This design reduces the difficulty of operation, improves work efficiency, and reduces the risk of damage or failure due to improper operation.
[0242] (3) Because the connecting rod can move longitudinally in the hole space, this design can accommodate support frames (2331) and sliding blocks (2321) of different sizes. This means that even if the sizes of the components are slightly different, the correct connection and sliding operation between the pressing block (233) and the sliding lock (232) can be ensured by adjusting the position of the connecting rod in the hole space.
[0243] (4) This design improves the overall reliability of the device by ensuring a stable sliding connection between the pressure block (233) and the slide lock (232). It reduces the risk of failure due to loose or misaligned connections and extends the service life of the device.
[0244] (5) Due to the design of the connecting rod and the socket (23211), the pressing block (233) and the slide lock (232) can be easily disassembled and reassembled when maintenance or replacement of parts is required. This design reduces maintenance costs and improves the maintainability of the equipment.
[0245] Optionally, the material receiving pipe (22) includes: a bottle body (221), a stirring paddle mechanism (222), and a cutting paddle mechanism (223); the bottle body (221) is connected to the locking member (23) so that the material receiving pipe (22) is located above the fixed base (21); the stirring paddle mechanism (222) and the cutting paddle mechanism (223) are arranged in the inner cavity of the bottle body (221) so as to stir the target raw material contained in the inner cavity of the bottle body (1) through the stirring paddle mechanism (222) and cut the target raw material through the cutting paddle mechanism (223).
[0246] As previously mentioned, since the base material is pre-loaded into the material receiving tube assembly (e.g., specifically the material receiving tube), and the colorant is subsequently loaded into the material receiving tube assembly, the nodes where the base material and colorant enter the material receiving tube assembly are separated. This allows for flexible selection of base materials and configuration of colorants based on the needs of the application, thereby increasing the color gamut of the mixed color paste and enriching its texture. Furthermore, since the colorant is loaded into the material receiving tube assembly independently of the base material, the raw material tube (in this case, the raw material tube can also be referred to as the colorant tube) contains only colorant, and its concentration can be independently adjusted. Therefore, the material receiving tube assembly only contains the base material, and its concentration can also be independently adjusted. This increases the difficulty of selecting and mixing the base material and colorant. During mixing, since the base material is pre-loaded in the material receiving tube assembly, only the colorant in the raw material tube needs to be loaded into the material receiving tube assembly, which also reduces the difficulty of mixing.
[0247] Therefore, when the receiving pipe (22) includes the bottle body (221), the stirring paddle mechanism (222), and the cutting paddle mechanism (223), and is used in combination with the locking member (23) and the fixed base (21), this design brings the following technical advantages:
[0248] (1) The provision of the stirring paddle mechanism (222) enables the target raw material to be effectively stirred in the inner cavity of the bottle body (221). The stirring operation helps to uniformly mix the raw materials, avoids sedimentation or stratification of the raw materials, and ensures the stability and consistency of the output raw materials.
[0249] (2) The cutting paddle mechanism (223) is capable of cutting the target raw material, which is particularly important when processing raw materials that are highly viscous or prone to agglomeration. The cutting operation helps prevent the raw material from clogging in the pipeline or equipment, maintaining the smooth operation of the system.
[0250] (3) The connection design between the bottle body (221) and the locking member (23) enables the material receiving pipe (22) to be conveniently installed above the fixed base (21). This design reduces the difficulty of installation and disassembly and improves work efficiency.
[0251] (4) Through the synergistic effect of the stirring paddle mechanism (222) and the cutting paddle mechanism (223), the material receiving pipe (22) is capable of processing various types of target raw materials, thereby improving the applicability and reliability of the system. At the same time, the connection between the locking member (23) and the fixed base (21) ensures the stability of the system and reduces the risk of loosening or leakage caused by vibration or external force.
[0252] (5) The stirring paddle mechanism (222) and the cutting paddle mechanism (223) are generally designed as detachable parts, which makes it easy to operate when maintenance or replacement is required. This design reduces maintenance costs and improves the maintainability of the equipment.
[0253] Optionally, the stirring paddle mechanism (222) is nested with the bottom of the cutting paddle mechanism (223), so that when the stirring paddle mechanism (222) stirs the target raw material contained in the inner cavity of the bottle body (1), the cutting paddle mechanism (223) cuts the target raw material synchronously.
[0254] Therefore, when the stirring paddle mechanism (222) and the cutting paddle mechanism (223) adopt a bottom nested connection design, this configuration brings the following technical benefits to the material receiving pipe (22):
[0255] (1) The synchronous operation of the stirring paddle mechanism (222) and the cutting paddle mechanism (223) ensures that the stirring and cutting actions can be performed simultaneously. This synchronization not only improves the efficiency of processing the target raw material, but also makes the entire processing process smoother and more efficient.
[0256] (2) During the stirring process, the cutting paddle mechanism (223) simultaneously cuts the target raw material, which helps to further refine the raw material particles and ensure the uniformity and consistency of the raw material. The cutting operation can also prevent the raw material from agglomerating or clogging, ensuring the maximum stirring effect.
[0257] (3) The bottom nested connection design simplifies the structure of the stirring paddle mechanism (222) and the cutting paddle mechanism (223), reducing the number and complexity of parts. This design not only reduces manufacturing costs but also improves the stability and reliability of the system.
[0258] (4) Due to the nested connection design of the stirring paddle mechanism (222) and the cutting paddle mechanism (223), these components can be more easily disassembled and assembled during maintenance and cleaning. This design reduces maintenance costs and improves the maintainability of the equipment.
[0259] (5) This synchronous stirring and cutting design enables the receiving pipe (22) to process a variety of target raw materials, including those with high viscosity or prone to agglomeration. This adaptability improves the versatility and flexibility of the system, making it suitable for a wider range of application scenarios.
[0260] Optionally, the stirring paddle mechanism (222) rotates around the cutting paddle mechanism (223) in the inner cavity of the bottle body (1) to stir the target raw material contained in the inner cavity of the bottle body (1), and the cutting paddle mechanism (223) is fixed and forms a passive collision with the stirred target raw material to synchronously cut the target raw material.
[0261] To this end, when the stirring paddle mechanism (222) is designed to rotate around the fixed cutting paddle mechanism (223) in the inner cavity of the receiving pipe (22) to stir the target raw material, and the cutting paddle mechanism (223) synchronously cuts the target raw material through passive impact, this design brings the following technical benefits:
[0262] (1) The rotation of the stirring paddle mechanism (222) ensures that the target raw material is uniformly and effectively stirred in the inner cavity, thereby avoiding sedimentation and stratification of the raw material. At the same time, the cutting paddle mechanism (223) forms a passive collision with the target raw material during stirring by being fixed in position, thereby achieving a synchronous cutting effect, effectively breaking up any possible agglomeration of the raw material, and further improving the uniformity of stirring.
[0263] (2) Since the cutting paddle mechanism (223) is fixed, no additional power source is required to drive its movement, which greatly simplifies the internal structure of the material receiving pipe (22) and reduces the complexity of manufacturing and maintenance.
[0264] (3) The fixed design of the cutting paddle mechanism (223) reduces vibration and wear caused by moving parts, thereby improving the stability and durability of the system.
[0265] (4) The dual effects of stirring and cutting can be achieved simply by driving the stirring paddle mechanism (222) to rotate. This design optimizes energy consumption and improves energy efficiency. Fewer moving parts means fewer possible failure points, thereby reducing maintenance costs and downtime.
[0266] (5) This design is applicable to target raw materials of various types and viscosities. Regardless of the nature of the raw materials, effective stirring and cutting can be achieved through the rotation of the stirring paddle mechanism (222) and the passive impact of the cutting paddle mechanism (223).
[0267] Optionally, the stirring paddle mechanism (222) comprises: a stirring paddle base (2221) and a stirring paddle (2222), wherein the stirring paddle is arranged on the stirring paddle base (2221) so as to drive the stirring paddle to stir the target raw material contained in the inner cavity of the bottle body (1) when the stirring paddle base (2221) rotates.
[0268] Therefore, when the stirring paddle mechanism (222) includes a stirring paddle base (2221) and a stirring paddle (2222), and the stirring paddle (2222) is driven by the rotation of the stirring paddle base (2221) to stir the target raw material, this design brings the following technical benefits:
[0269] (1) The rotation of the stirring paddle base (2221) can drive the stirring paddle (2222) to move in the inner cavity of the receiving pipe (22) at a certain speed and direction, ensuring that the target raw material is fully and evenly stirred. This design can effectively prevent the sedimentation and stratification of the raw material and improve the uniformity and stability of the raw material.
[0270] (2) The stirring paddle mechanism (222) consists of two parts: a stirring paddle base (2221) and a stirring paddle (2222), and has a simple and clear structure. This design not only reduces manufacturing costs but also makes it easier to maintain and replace the stirring paddle.
[0271] (3) The shape and size of the stirring paddle (2222) can be customized according to specific application requirements to accommodate target raw materials of different types, viscosities, and volumes. This design makes the stirring paddle mechanism (222) highly adaptable and flexible.
[0272] (4) By controlling the rotation speed and direction of the stirring paddle base (2221), the motion trajectory and stirring effect of the stirring paddle (2222) in the inner cavity of the receiving tube (22) can be precisely controlled. This control capability makes the stirring process more accurate and reliable.
[0273] (5) The rotation of the stirring paddle mechanism (222) is usually driven by a power source such as a motor, but due to its simple structure and low friction resistance, the energy consumption is relatively low. This design helps to reduce production costs and energy consumption.
[0274] (6) The connection between the stirring paddle base (2221) and the stirring paddle (2222) is usually designed to be detachable, so as to facilitate cleaning, repair or replacement when necessary. This design improves the maintainability and service life of the equipment.
[0275] Optionally, the cutting paddle mechanism (223) comprises a cutting paddle mechanism (2231) and a cutting paddle (2232), wherein the cutting paddle mechanism (2231) is nested and connected to the stirring paddle base (2221), and the cutting paddle is arranged on the cutting paddle mechanism (2231), so that when the stirring paddle mechanism (222) stirs the target raw material contained in the inner cavity of the bottle body (1), the cutting paddle is kept stationary by the cutting paddle mechanism (2231), so as to synchronously cut the target raw material.
[0276] To this end, when the cutting paddle mechanism (223) includes a cutting paddle mechanism (2231) and a cutting paddle (2232), and is nested and connected with the stirring paddle base (2221) to remain fixed during the stirring process, so as to synchronously cut the target raw material, this design brings the following technical benefits:
[0277] (1) The stirring paddle mechanism (222) is driven by the stirring paddle base (2221) to rotate and stir the target raw material, while the cutting paddle mechanism (2231) and the cutting paddle (2232) thereon remain stationary. This design ensures that the stirring and cutting processes are carried out simultaneously, thereby improving processing efficiency.
[0278] (2) The fixed cutting blade (2232) forms a passive collision with the target raw material during stirring, so that the raw material is effectively cut and broken during the stirring process. This cutting method can effectively prevent the raw material from agglomerating and maintain the uniformity and fluidity of the raw material.
[0279] (3) Since the cutting blade mechanism (2231) and the cutting blade (2232) remain stationary, no additional power source is required to drive their movement, thereby reducing the energy consumption of the overall system.
[0280] (4) The nested connection design of the cutting paddle mechanism (2231) and the stirring paddle base (2221) simplifies the structure and reduces the number of parts. At the same time, due to the fixed nature of the cutting paddle mechanism (2231), possible failure points are reduced, thereby reducing maintenance costs.
[0281] (5) The fixed design of the cutting paddle mechanism (2231) reduces vibration and wear caused by moving parts, thereby improving the stability and durability of the entire system.
[0282] (6) This design is applicable to target raw materials of various types and viscosities. Regardless of the nature of the raw materials, the rotation of the stirring paddle mechanism (222) and the fixed cutting of the cutting paddle mechanism (2231) can ensure that the raw materials are processed uniformly and effectively.
[0283] Optionally, the cutting paddle mechanism (2231) has a protrusion (22311), and the stirring paddle base (2221) has an assembly hole (22211), and the protrusion passes through the assembly hole so that the cutting paddle mechanism (2231) and the stirring paddle base (2221) are nested and connected.
[0284] Therefore, when the cutting paddle mechanism (2231) is nested and connected with the assembly hole (22211) of the stirring paddle base (2221) through the protrusion (22311) thereon, this design brings the following technical benefits:
[0285] (1) By nesting the protrusion (22311) and the assembly hole (22211), the cutting paddle mechanism (2231) can be quickly and accurately installed on the stirring paddle base (2221) without the need for complex fixtures or tools, thereby simplifying the assembly process.
[0286] (2) The close fit between the protrusion (22311) and the assembly hole (22211) ensures a stable connection between the cutting paddle mechanism (2231) and the stirring paddle base (2221). This stability not only ensures the smooth progress of the stirring and cutting process, but also extends the service life of the equipment.
[0287] (3) When the cutting blade mechanism (2231) needs to be cleaned, repaired or replaced, it can be removed from the stirring blade base (2221) by simple operation. This design makes maintenance work more convenient and faster, and reduces maintenance costs.
[0288] (4) The nested connection design avoids equipment failure or safety accidents caused by loose connections. Even during high-speed stirring, the cutting paddle mechanism (2231) can remain stable, ensuring the safety of the operator.
[0289] (5) By adjusting the size and shape of the protrusion (22311) and the assembly hole (22211), the stirring paddle base (2221) of different specifications and models can be adapted, so that the cutting paddle mechanism (2231) has greater versatility and adaptability.
[0290] Optionally, the stirring paddle base (2221) is connected to a stirring drive mechanism, and the stirring paddle base (2221) rotates under the drive of the stirring drive mechanism.
[0291] Optionally, the fixed base (21) comprises: a fixed frame (211) and a bracket (212); the material receiving pipe assembly is assembled on one side of the fixed frame (211); and the bracket (212) is assembled on the other side of the fixed frame (211) and connected to the sliding assembly (1).
[0292] Optionally, the fixed base (21) further comprises a sealing plate (213), the sealing plate being assembled on the bracket (212) to cooperate with the sliding assembly (1) to cover the bracket (212).
[0293] To this end, when the fixed base (21) includes a fixed frame (211), a bracket (212) and a sealing plate (213), and is designed as such a structure, it has the following technical advantages:
[0294] (1) The fixed frame (211) serves as the main supporting structure of the entire base and provides a stable mounting platform for the material receiving pipe assembly. This design ensures the stability and reliability of the material receiving pipe assembly during operation and avoids displacement or damage caused by vibration or external force.
[0295] (2) The bracket (212) is assembled on the other side of the fixed frame (211) and connected to the sliding assembly (1). This design allows the entire fixed base (21) to be easily assembled and disassembled with the sliding assembly (1), thereby improving the flexibility and maintainability of the equipment.
[0296] (3) The sealing plate (213) is assembled on the bracket (212) and cooperates with the sliding assembly (1) to cover the bracket (212). The existence of the sealing plate can effectively protect the sliding assembly (1) from interference and damage from the external environment, such as dust, moisture, etc. At the same time, the sealing plate can also prevent the sliding assembly (1) from scattering debris or waste generated during operation, thereby keeping the equipment clean and tidy.
[0297] (4) The cover plate (213) and the sliding assembly (1) are covered together, which not only protects the sliding assembly (1) but also enhances the safety of the entire device. This design can reduce the operator's direct contact with the sliding assembly (1) during operation, reducing the safety risks caused by misoperation or negligence.
[0298] Preferably, with Figure 8 The difference is that the cutting slurry is spiral-shaped and has only one vertical rod that performs the cutting function.
[0299] Based on the above embodiment, the embodiment of the present application further provides a lipstick replacement package, which comprises: a bottle body (1); the bottle body (1) is equipped with a raw material mixing structure (111), so that when preparing the finished lipstick, the inner liner (11) is removed from the outer liner (12) and placed in a lipstick machine to drive the raw material mixing structure (111) to mix the raw materials contained in the bottle body (1) to prepare the finished lipstick.
[0300] The lipstick refill in this embodiment can be equipped with the above-mentioned inner liner, outer liner, and brush head. In addition, the structure of the raw material mixing structure (111) can be found in the above-mentioned embodiment in detail.
[0301] Based on the above embodiments, an embodiment of the present application further provides a lipstick machine, which includes the material receiving system described in any of the above embodiments.
[0302] Based on the above embodiments, a lipstick machine is provided, which includes the material receiving system described in any embodiment of the present application. The raw materials of each raw material tube are different in color, and the raw materials of multiple raw material tubes can be mixed to obtain the required lipstick color.
[0303] It should be noted that the material receiving system of the present application can be applied not only to the lipstick machine field, but also to the following technical fields:
[0304] (1) In a candy production line, the receiving system can be used to receive syrups or jams of different colors from multiple raw material tubes and then mix or inject them into the mold separately.
[0305] (2) On the chemical production line, the material receiving system can receive chemical raw materials of different components and mix them according to the preset ratio to ensure the quality of the final product.
[0306] (3) In the production of pigments or dyes, the material receiving system can realize the automatic proportioning and mixing of multiple colors to meet the customized needs of different customers.
[0307] (4) On the pharmaceutical production line, the material receiving system can accurately receive pharmaceutical ingredients from multiple raw material tubes, perform precise proportioning and mixing, and ensure that the composition and dosage of the medicine are accurate.
[0308] (5) In pharmaceutical laboratories, the receiving system can be used to receive and mix different reagents for drug development and testing.
[0309] (6) In addition to lipstick machines, the material receiving system can also be used for the production of other cosmetics, such as liquid foundation, eye shadow, blush, etc., to achieve automatic proportioning and mixing of multiple colors.
[0310] (7) In the field of 3D printing, the material receiving system can be used to receive and mix different printing materials (such as plastic filaments, metal powders, etc.) to support multi-material or multi-color printing.
[0311] To this end, the application of the above-mentioned replacement package to the lipstick machine can realize a built-in stirring and dispersing structure of the raw materials (including but not limited to at least one of the colorant and the base) used in making lipstick, so as to achieve sufficient mixing and dispersion of the colorant and the base in the replacement package, and ultimately achieve the purpose of accurate color matching of the target color. In addition, in the lipstick replacement package, the bottle cap (2) equipped with the brush head (21) and the bottle body (1) can be clamped by pressing to assemble the bottle cap (2) on the bottle mouth. After the user prepares the replacement package, he only needs to disassemble the bottle body and the bottle cap (2), then put the new replacement package into the bottle body, and then press the bottle cap (2) and the bottle body (1) again. In addition, this clamping method between the bottle cap (2) and the bottle body (1) can achieve that even if the user uses multiple replacement packages, the bottle cap (2) and the bottle body (1) can be continuously reused, thereby achieving the purpose of environmental protection and energy saving.
[0312] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Various modifications and variations are possible for those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.
Claims
1. A lipstick replacement package, characterized in that: include: A bottle body (1) and a bottle cap (2), wherein the bottle body (1) has a bottle mouth, and the bottle cap (2) is assembled on the bottle mouth; the bottle body (1) comprises an inner liner (11) and an outer liner (12), wherein a raw material mixing structure (111) is assembled in the inner liner (11), and the inner liner (11) is assembled in the outer liner (12) in a detachable manner, so that when preparing a finished lipstick, the inner liner (11) is removed from the outer liner (12) and placed in a lipstick machine to drive the raw material mixing structure (111) to mix the raw materials contained in the bottle body (1); the bottle cap (2) is equipped with a brush head (21), and the brush head (21) is used to dip the finished lipstick.
2. A lipstick refill according to claim 1, characterized in that: The inner liner (11) is screwed to the outer liner (12) so that the inner liner (11) is assembled in the outer liner (12) in a detachable manner.
3. The lipstick refill according to claim 2, characterized in that: The outer wall of the inner liner (11) is provided with a male thread, and the inner wall of the outer liner (12) is provided with a female thread, and the female thread (121) is screwed together with the male thread, or the outer wall of the inner liner (11) is provided with a female thread, and the inner wall of the outer liner (12) is provided with a male thread, and the male thread is screwed together with the female thread (121), so that the inner liner (11) is assembled in the outer liner (12) in a detachable manner.
4. The lipstick refill according to claim 1, characterized in that: The bottle cap (2) comprises a bottle cap liner (22) and a bottle cap outer shell (23); the bottle cap liner (22) is assembled in the bottle cap outer shell (23); and the brush head (21) is assembled on the bottle cap liner (22) so that the brush head (21) is lifted into the bottle body (1).
5. The lipstick refill according to claim 4, characterized in that: The inner wall of the bottle cap shell (23) is provided with a first clamping rib (231), and the outer wall of the bottle cap liner (22) is provided with a second clamping rib (221), and the second clamping rib (221) is clamped with the first clamping rib (231) to assemble the bottle cap liner (22) in the bottle cap shell (23) in a detachable manner.
6. The lipstick refill according to claim 4, characterized in that: An assembly column (223) is provided on the bottle cap inner liner (22), the assembly column (223) points to the finished lipstick in the bottle body (1), and a rubber plug (2231) is sleeved on the assembly column (223), and the brush head (21) is assembled in the rubber plug (2231).
7. The lipstick refill according to claim 6, characterized in that: The rubber plug (2231) is covered with a hoop (22311) to provide a tight hoop force for the brush head (21) assembled in the rubber plug (2231).
8. The lipstick refill according to claim 1, characterized in that: The raw material mixing structure (111), the stirring paddle mechanism (1111), the cutting paddle mechanism (1112), the stirring paddle mechanism (1111), and the cutting paddle mechanism (1112) are arranged in the inner cavity of the bottle body (1), so that when preparing the finished lipstick, the target raw material contained in the inner cavity of the bottle body (1) is stirred by the stirring paddle mechanism (1111), and the target raw material is cut by the cutting paddle mechanism (1112).
9. The lipstick refill according to claim 8, characterized in that: The stirring paddle mechanism (1111) is nested with the bottom of the cutting paddle mechanism (1112), so that when the stirring paddle mechanism (1111) stirs the target raw material contained in the inner cavity of the bottle body (1), the cutting paddle mechanism (1112) cuts the target raw material synchronously.