Aromatherapy and its forming mold

By designing an aromatherapy bottle cap with controllable opening and closing and a fixed aromatherapy base, the problem of aromatherapy being easily touched or ingested by children has been solved, thus improving safety and production efficiency.

CN117414454BActive Publication Date: 2026-05-12TIANDA PLASTIC PROD (HUIZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
TIANDA PLASTIC PROD (HUIZHOU) CO LTD
Filing Date
2023-10-23
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing aromatherapy products can easily lead to children accidentally touching or ingesting aromatherapy solids, causing skin allergies and toxicity risks.

Method used

An aromatherapy diffuser and its molding die were designed. The aromatherapy bottle cap can be opened and closed in a controlled manner by using a snap-fit ​​groove and an unlocking groove to prevent the diffusion of aromatherapy solids. The aromatherapy base and bottle body are fixed by a snap-fit ​​of protrusions and annular grooves, and the mold is formed by using an ejection mechanism.

Benefits of technology

It effectively prevents children from coming into contact with aromatherapy solids, reducing the risk of accidental contact and ingestion, while also achieving efficient production of aromatherapy products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of aromatherapy, in particular to an aromatherapy and a forming die thereof, which comprises an aromatherapy, the aromatherapy comprises an aromatherapy base, aromatherapy solids, an aromatherapy bottle body and an aromatherapy bottle cap, the aromatherapy base comprises a supporting part and a mounting part, the supporting part is provided with a first containing cavity, the supporting part is arranged on the inner wall of the first containing cavity, the aromatherapy bottle body is provided with a second containing cavity, the aromatherapy solids are arranged on the mounting part, the two ends of the aromatherapy are respectively provided with a clamping groove and an unlocking groove, the clamping groove and the unlocking groove are communicated, the aromatherapy bottle cap comprises a closed bottle cap and a clamping rod, the clamping rod is clamped and matched with the clamping groove, one end of the aromatherapy bottle body is provided with an overflow groove, the closed bottle cap is clamped and matched with the overflow groove, when the closed bottle cap is clamped and matched with the overflow groove, the closed bottle cap is shielded on the overflow groove, and a fixing assembly is arranged between the supporting part and the aromatherapy bottle body. The application has the effect of reducing the possibility that small children can contact the aromatherapy solids through the aromatherapy bottle opening, and causing the situation of accidental touch or accidental eating.
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Description

Technical Field

[0001] This application relates to the technical field of aromatherapy, and in particular to an aromatherapy product and its molding die. Background Technology

[0002] Aromatherapy refers to the application technology of releasing natural plant essential oils or chemically synthesized aromatic substances through methods such as heating or diffusion to improve the air environment, regulate emotions, and promote physical health.

[0003] Existing aromatherapy products include an aromatherapy bottle, an opening in the bottle, solid aromatherapy oil inside the bottle, and an aromatherapy bottle cap on the opening. The bottle cap typically achieves the diffusion of solid aromatherapy oil through the opening in three ways: by snapping it into the opening, by covering the opening, and by threading it onto the opening. By achieving this assembly relationship between the bottle cap and the opening, the opening can be kept either open or closed. When the opening is open, the solid aromatherapy oil diffuses outwards; when the opening is closed, the solid aromatherapy oil cannot diffuse outwards.

[0004] However, in the related technologies of aromatherapy, it is easy to achieve the assembly relationship between the aromatherapy bottle cap and the aromatherapy bottle mouth. Children can come into contact with the aromatherapy solid through the aromatherapy bottle mouth, which can easily lead to accidental contact or ingestion, and thus cause problems such as skin allergies and toxicity risks. Summary of the Invention

[0005] In order to improve the existing easy assembly relationship between the aromatherapy bottle cap and the aromatherapy bottle mouth, which allows children to come into contact with the aromatherapy solid through the aromatherapy bottle mouth, thus easily causing accidental contact or ingestion, and resulting in problems such as skin allergies and toxicity risks, this application provides an aromatherapy product and its molding mold.

[0006] The present application provides a fragrance and its molding die, which adopts the following technical solution:

[0007] An aromatherapy diffuser includes a base, a solid aromatherapy component, a bottle body, and a cap. The base includes a support and a mounting portion. The support has a first receiving cavity and is disposed within the inner wall of the first receiving cavity. The bottle body has a second receiving cavity. The solid aromatherapy component is disposed on the mounting portion and is contained within the first and second receiving cavities. The diffuser has a snap-fit ​​groove and an unlocking groove at its two ends, respectively. The unlocking groove is connected, and the aromatherapy bottle cap includes a sealing cap and a snap-fit ​​rod. The snap-fit ​​rod engages with the snap-fit ​​groove. An overflow groove is provided at the end of the aromatherapy bottle body away from the aromatherapy base. The overflow groove is connected to the two receiving cavities. The sealing cap engages with the overflow groove. When the sealing cap engages with the overflow groove, the sealing cap covers the overflow groove. A fixing component for fixing the support part and the aromatherapy bottle body is provided between the support part and the aromatherapy bottle body.

[0008] By adopting the above technical solution, when the aromatherapy solid needs to diffuse outward, an external force is applied to the locking rod in the unlocking groove using a finger or tool. The locking rod, under this force, slides towards the overflow groove. Simultaneously, the locking rod slides, causing the sealing cap to slide as well. At this point, the sealing cap is away from the sealing groove, so the overflow groove is not blocked by the sealing cap, and the aromatherapy solid in the first and second accommodating cavities diffuses outward through the overflow groove. When the aromatherapy solid does not need to diffuse outward, i.e., when the fragrance needs to be retained, an external force is applied to the sealing cap in the direction of the sealing groove. The locking rod, under this force, slides relative to the locking groove. Simultaneously, the locking rod slides, causing the sealing cap to slide towards the sealing groove until the sealing cap engages with the overflow groove. At the same time, the sealing cap blocks the overflow groove, and the locking rod engages with the locking groove, preventing the aromatherapy solid in the first and second accommodating cavities from diffusing outward through the overflow groove. By applying external force to the locking rod in the unlocking slot, the bottle cap is sealed, eliminating the obstruction of the overflow slot and reducing the risk of children accidentally touching or ingesting the aromatherapy solids through the bottle opening.

[0009] Preferably, the fixing component includes a protrusion disposed on the support portion and an annular groove disposed on the aromatherapy bottle body, wherein the annular groove engages with the protrusion.

[0010] By adopting the above technical solution, the support part and the aromatherapy bottle are fixedly connected through the snap-fit ​​of the protrusion and the annular groove, thereby achieving a fixed connection between the aromatherapy base and the aromatherapy bottle.

[0011] Preferably, the support portion is provided with a first wave pattern, and the aromatherapy bottle body is provided with a second wave pattern. When the annular groove and the protrusion engage, the protrusion of the first wave pattern corresponds to the concave portion of the second wave pattern, and the concave portion of the first wave pattern corresponds to the protrusion of the second wave pattern.

[0012] By adopting the above technical solution, by rotating the first wave pattern, the convex part of the first wave pattern slides toward the convex part of the second wave pattern. At this time, since there is an inclined surface between the convex and concave parts of the second wave pattern, the convex part of the first wave pattern slides along the inclined surface, and the annular groove slides along with it until the convex part of the first wave pattern is located at the convex part of the second wave pattern. At this time, the annular groove and the convex part are no longer engaged, thereby achieving the purpose of eliminating the engagement between the aromatherapy base and the aromatherapy bottle.

[0013] Preferably, the support portion is provided with an annular insertion block, and the aromatherapy bottle body is provided with an annular insertion groove, wherein the annular insertion groove and the annular insertion block are inserted into each other.

[0014] By adopting the above technical solution, the support part and the aromatherapy bottle are quickly positioned by the insertion and cooperation of the annular plug and the annular plug groove. At this time, the convex part of the first wave pattern and the concave part of the second wave pattern are aligned; the concave part of the first wave pattern and the convex part of the second wave pattern are aligned.

[0015] Preferably, the inner wall of the snap-fit ​​groove is provided with a plurality of stabilizing ribs.

[0016] By adopting the above technical solution, the stabilizing rib is used to stabilize the clamping rod in the vertical direction, thereby reducing the swaying of the clamping rod in the lateral direction.

[0017] Preferably, a reinforcing rib is provided between the inner wall of the first accommodating cavity and the mounting portion.

[0018] By adopting the above technical solution, the reinforcing ribs are used to enhance the stability of the connection between the support part and the mounting part.

[0019] Preferably, the molding die for the aromatherapy diffuser includes a base die, which includes an upper base die, a lower base die, a first injection molding component disposed on the upper base die, and a first ejection mechanism disposed on the lower base die. The upper base die is disposed on one side of the lower base die, and an upper base injection block is disposed on the upper base die. A lower base mounting block and a lower base injection block are disposed on the lower base die. A base molding component for injection molding the aromatherapy diffuser base is disposed between the upper base injection block and the lower base injection block.

[0020] By adopting the above technical solution, the first injection molding component injects into the upper base injection block, and at the same time, the base molding component is used to mold the aromatherapy base. Finally, the first ejection mechanism ejects the aromatherapy base after injection molding, thereby realizing the molding of the aromatherapy base.

[0021] Preferably, the first ejection mechanism includes a first base plate, a first top plate, a fourth top plate, a first ejector rod, a second ejector rod, a lifting rod, a lifting cylinder, and a secondary lifting assembly. The first ejector rod and the second ejector rod are both disposed on the first top plate. The first top plate is disposed on one side of the lower base mounting block. The fourth top plate is disposed on the side of the first top plate opposite to the lower base mounting block. The first base plate is disposed on the side of the fourth top plate opposite to the first top plate. The piston rod of the lifting cylinder passes through the first base plate and the fourth top plate in sequence and is disposed on one side of the first top plate. The end of the first ejector rod away from the first top plate and the end of the second ejector rod away from the second top plate are both slidably disposed through the lower base injection block and are used to eject the aromatherapy base and the lower base injection block, respectively. The two ends of the lifting rod are respectively disposed on the fourth top plate and the lower base mounting block. The secondary lifting assembly is used to drive the first ejector rod and the second ejector rod to lift the lower base injection block.

[0022] By adopting the above technical solution, when the lifting cylinder is activated, its piston rod lifts and drives the first top plate to slide towards the lower injection block. As the first top plate slides, it drives the first top rod, the second top rod, and the lifting rod to slide, thereby enabling the first top rod and the second top rod to respectively eject the aromatherapy base and the lower base injection block, and at the same time, enabling the lifting rod to eject the lower base mounting block.

[0023] Preferably, the fourth top plate has a sliding cavity on the side facing the sliding shell. The secondary lifting assembly includes a compression spring disposed in the sliding cavity, a linkage block slidably disposed in the sliding cavity, a sliding shell fixedly disposed on the first base plate, a sliding groove opened in the sliding shell facing the fourth top plate, a driving block slidably disposed in the sliding groove, and a lifting rod disposed on the first top plate. One end of the lifting rod away from the first top plate is disposed on the lower base mounting block. One end of the compression spring is disposed on the side of the linkage block away from the fourth top plate, and the other end is disposed on the inner wall of the sliding cavity facing the fourth top plate.

[0024] By adopting the above technical solution, when the lifting cylinder is started, the first top plate slides while driving the drive block slides, the drive block slides while driving the connecting block slides, and the connecting block slides while driving the fourth top plate slides. When the connecting block abuts against the edge of the drive block, the compression spring is compressed by the abutting force. While the compression spring is compressed, it drives the connecting block to slide into the sliding cavity, thereby making way for the drive block. Therefore, the third and fourth top plates cannot continue to slide, thus preventing the lifting rod from sliding and preventing the lower base mounting block from continuing to lift. The first and second lifting rods continue to push out the aromatherapy base and the lower base injection block respectively, thereby further lifting the inverted position of the aromatherapy base.

[0025] Preferably, the driving block has a first inclined surface facing the linkage block, and the linkage block has a second inclined surface facing the driving block.

[0026] By adopting the above technical solution, when the first inclined surface and the second inclined surface come into contact, the second inclined surface guides the linkage block to slide into the sliding cavity, thereby allowing the linkage block to give way to the sliding block, thus improving the smoothness of the sliding drive block.

[0027] In summary, this application includes at least one of the following beneficial technical effects:

[0028] 1. By applying external force to the locking rod in the unlocking slot, the bottle cap is sealed and the overflow slot is cleared, thereby reducing the chance of children coming into contact with the aromatherapy solid through the aromatherapy bottle opening and accidentally touching or ingesting it.

[0029] 2. If the inverted position of the aromatherapy base has not been lifted out during the first lifting, the inverted position of the aromatherapy base can be further lifted by the secondary lifting component, thereby achieving the purpose of lifting the inverted position of the aromatherapy base. Attached Figure Description

[0030] Figure 1 This is a schematic diagram of the overall structure of Embodiment 1 of this application;

[0031] Figure 2 This is a partial sectional view used to show the internal structure of the aromatherapy base;

[0032] Figure 3 This is a partial sectional view used to show the internal structure of the aromatherapy bottle;

[0033] Figure 4 This is a schematic diagram used to demonstrate the structure of an aromatherapy bottle cap;

[0034] Figure 5 This is a structural diagram used to demonstrate the base mold;

[0035] Figure 6This is a structural diagram used to illustrate the upper base mold;

[0036] Figure 7 It is used to show a partial exploded view of the base mold;

[0037] Figure 8 It is used for Figure 7 Enlarged view of point A in the middle;

[0038] Figure 9 It is a partial sectional view used to show the mating relationship between the connecting block and the drive rod;

[0039] Figure 10 It is a structural diagram used to illustrate the assembly relationship between the compression spring and the linkage block;

[0040] Figure 11 This is a structural diagram used to demonstrate the bottle mold;

[0041] Figure 12 This is a structural diagram used to show the upper bottle body mold;

[0042] Figure 13 It is used to show a partial exploded view of the lower bottle model;

[0043] Figure 14 This is a structural diagram used to demonstrate the bottle cap mold;

[0044] Figure 15 This is a schematic diagram used to show the structure of the upper bottle cap mold;

[0045] Figure 16 It is used to display a partial exploded view of the lower bottle model.

[0046] Explanation of reference numerals in the attached drawings: 1. Aromatherapy diffuser; 101. Aromatherapy base; 102. Aromatherapy solid; 103. Aromatherapy bottle body; 104. Aromatherapy bottle cap; 111. Support part; 112. Mounting part; 2. First receiving cavity; 3. Second receiving cavity; 4. Reinforcing rib; 5. First annular groove; 6. Protrusion; 7. First wave pattern; 1110. Annular insertion block; 8. Second annular groove; 9. Annular insertion groove; 10. Annular groove; 11. Second wave pattern; 12. Snap-fit ​​groove; 13. Unlocking groove; 1031. Sealing cap; 1032. Snap-fit ​​rod; 14. Sealing groove; 15. Overflow groove; 16. Stabilizing rib; 17. Base mold; 18. Bottle body Mold; 19. Bottle cap mold; 171. Upper base mold; 172. Lower base mold; 173. First injection molding assembly; 174. First ejection mechanism; 1711. Upper base injection block; 1721. Lower base mounting block; 1722. Lower base injection block; 201. Base cavity; 202. Unlocking punch; 203. Stabilizing groove; 204. First receiving groove; 205. Recessed part; 206. Third annular groove; 207. Third wave pattern; 208. Receiving punch; 209. Reinforcing groove; 210. Mounting groove; 1741. First base plate; 1742. First top plate; 1743. Second top plate; 1744. Third top plate; 1745. Fourth top plate; 1746. First ejector rod; 1747. Second ejector rod; 1748. Lifting cylinder; 1749. Lifting rod; 1750. Secondary lifting assembly; 21. Sliding cavity; 17501. Sliding shell; 17502. Sliding groove; 17503. Drive block; 17504. Linking block; 17505. Compression spring; 22. Positioning block; 23. Positioning groove; 24. Spring cavity; 25. First inclined surface; 26. Second inclined surface; 181. Upper bottle mold; 182. Lower bottle mold; 183. Second injection assembly; 184. Second ejection mechanism; 1811. Upper bottle injection block; 1821. Lower bottle injection... 27. Bottle body molding assembly; 271. Bottle body cavity; 272. Second receiving groove; 273. Bottle body punch; 274. Sealing groove; 275. Overflow groove; 276. Annular protrusion; 277. Fourth wave pattern; 278. Annular recess; 191. Upper bottle cap mold; 192. Lower bottle cap mold; 193. Third injection molding assembly; 194. Third ejection mechanism; 1911. Upper bottle cap injection block; 1921. Lower bottle cap mounting block; 1922. Lower bottle cap injection block; 28. Bottle cap molding assembly; 281. Bottle cap cavity; 282. Bottle cap punch; 283. Snap-fit ​​groove; 1941. Third ejector rod; 1942. Fourth ejector rod. Detailed Implementation

[0047] The following is in conjunction with the appendix Figure 1-16 This application will be described in further detail.

[0048] This application discloses an aromatherapy product, referring to... Figure 1and Figure 2 The device includes an aromatherapy diffuser 1, which comprises an aromatherapy base 101, an aromatherapy solid 102, an aromatherapy bottle 103, and an aromatherapy bottle cap 104. The aromatherapy base 101 is snapped into the aromatherapy bottle 103; the aromatherapy solid 102 is inserted into the aromatherapy base 101; and the aromatherapy bottle cap 104 is snapped into the aromatherapy base 101.

[0049] Reference Figure 2 The aromatherapy base 101 includes a support portion 111 and a mounting portion 112. A first receiving cavity 2 is formed on one side of the support portion 111. The aromatherapy solid 102 is inserted and fitted into the support portion 111, and one end of the aromatherapy solid 102 is received in the first receiving cavity 2. Figure 3 The aromatherapy bottle 103 has a second receiving cavity 3 on the side near the support part 111, and the other end of the aromatherapy solid 102 is received in the second receiving cavity 3. The mounting part 112 is installed on the inner wall of the first receiving cavity 2 facing its opening, and the mounting part 112 is located at the center of the first receiving cavity 2. A plurality of reinforcing ribs 4 are installed between the inner wall of the first receiving cavity 2 and the mounting part 112, and the reinforcing ribs 4 are used to enhance the stability of the connection between the support part 111 and the mounting part 112.

[0050] Reference Figure 2 The support part 111 has a first annular groove 5 circumferentially formed along its outer wall, and the first annular groove 5 has a plurality of protrusions 6 circumferentially formed along its outer wall. Figure 3 The first annular groove 5 is provided with a first wave pattern 7 on the inner wall of the aromatherapy bottle 103. An annular insertion block 1110 is installed on the side of the support part 111 facing the aromatherapy bottle 103, and the annular insertion block 1110 is arranged in a ring.

[0051] Reference Figure 2 and Figure 3 The second accommodating cavity 3 has a second annular groove 8 circumferentially formed along its inner wall, and an annular insertion groove 9 circumferentially formed along its bottom wall, and the annular insertion groove 9 is inserted into and engaged with the annular insertion block 1110. The second annular groove 8 has an annular recess 10 circumferentially formed along its inner wall, the annular recess 10 is located above the annular insertion block 1110, and the annular recess 10 is engaged with the protrusion 6.

[0052] Reference Figure 2 and Figure 3The aromatherapy bottle 103 has a second wave pattern 11 on the side near the support 111. When the aromatherapy bottle 103 is engaged with the aromatherapy base 101, the concave part of the first wave pattern 7 corresponds to the convex part of the second wave pattern 11, and the convex part of the second wave pattern 11 corresponds to the concave part of the second wave pattern 11. At the same time, the annular groove 10 engages with the protrusion 6, and the annular insertion slot 9 engages with the annular insertion block 1110. By rotating the first wave pattern 7, the convex part of the first wave pattern 7 slides toward the convex part of the second wave pattern 11. At this time, since there is a slope between the convex and concave parts of the second wave pattern 11, the convex part of the first wave pattern 7 slides along the slope, and the annular groove 10 slides accordingly until the convex part of the first wave pattern 7 is located at the convex part of the second wave pattern 11. At this time, the annular groove 10 and the protrusion 6 are no longer engaged, thereby canceling the engagement between the aromatherapy base 101 and the aromatherapy bottle 103.

[0053] Reference Figure 2 and Figure 4 The mounting part 112 has a snap-fit ​​groove 12 on the side near the aromatherapy bottle cap 104, and an unlocking groove 13 on the side away from the aromatherapy bottle cap 104, with the snap-fit ​​groove 12 and the unlocking groove 13 communicating with each other. The aromatherapy bottle cap 104 includes a sealing cap 1031 and a snap-fit ​​rod 1032. The snap-fit ​​rod 1032 slides through the snap-fit ​​groove 12 and engages with it, thereby achieving a fixed connection between the snap-fit ​​rod 1032 and the mounting part 112, and thus a fixed connection between the aromatherapy bottle cap 104 and the aromatherapy base 101. When it is necessary to remove the fixed connection between the aromatherapy bottle cap 104 and the aromatherapy base 101, external force can be applied to the snap-fit ​​rod 1032 through the unlocking groove 13.

[0054] Reference Figure 3 and Figure 4 The aromatherapy bottle 103 has a sealing groove 14 on the side away from the support 111, which is adapted to the aromatherapy bottle cap 104. An overflow groove 15 is formed on the inner wall of the sealing groove 14 facing its opening. The overflow groove 15 communicates with the second receiving cavity 3 and is used for the outward diffusion of the aromatherapy solid 102. The bottle cap 1031 engages with the overflow groove 15. When the locking rod 1032 engages with the locking groove 12, the bottom of the bottle cap 1031 abuts against the inner wall of the sealing groove 14 facing its opening and blocks the overflow groove 15, reducing the outward diffusion of the aromatherapy solid 102 from the overflow groove 15. Several stabilizing ribs 16 are installed on the inner wall of the locking groove 12. The stabilizing ribs 16 are used to stabilize the locking rod 1032 in the vertical direction, thereby reducing the wobbling of the locking rod 1032 in the lateral direction.

[0055] The implementation principle of the aromatherapy 1 in this application embodiment is as follows: when the aromatherapy solid 102 needs to diffuse outward, an external force is applied to the locking rod 1032 in the unlocking groove 13 by using a finger or tool. After receiving the external force, the locking rod 1032 slides in the direction of the overflow groove 15. At the same time as the locking rod 1032 slides, it drives the sealing cap 1031 to slide. At this time, the sealing cap 1031 is away from the sealing groove 14, so the overflow groove 15 is not blocked by the sealing cap 1031. The aromatherapy solid 102 located in the first accommodating cavity 2 and the second accommodating cavity 3 diffuses outward through the overflow groove 15. When the aromatherapy solid 102 does not need to diffuse outward, i.e., when the fragrance needs to be retained, an external force is applied to the sealed bottle cap 1031 toward the sealing groove 14. The locking rod 1032 is subjected to the external force and slides relative to the locking groove 12. While the locking rod 1032 slides, it also drives the sealed bottle cap 1031 to slide toward the sealing groove 14 until the sealed bottle cap 1031 is engaged with the overflow groove 15. At the same time, the sealed bottle cap 1031 blocks the overflow groove 15 and the locking rod 1032 is engaged with the locking groove 12. The aromatherapy solid 102 located in the first accommodating cavity 2 and the second accommodating cavity 3 cannot diffuse outward through the overflow groove 15.

[0056] Reference Figure 5 , Figure 11 as well as Figure 14 This application also provides a molding die for an aromatherapy product, which specifically includes: a base die 17, a bottle die 18, and a cap die 19.

[0057] Reference Figure 5 The base mold 17 includes an upper base mold 171, a lower base mold 172, a first injection molding assembly 173 disposed on the upper base mold 171, and a first ejection mechanism 174 disposed on the lower base mold 172. Combined Figure 6 The upper base mold 171 includes an upper base injection block 1711, and the lower base mold 172 includes a lower base mounting block 1721 disposed on one side of the upper base mold 171 and a lower base injection block 1722 embedded in the lower base mounting block 1721 on the side opposite to the upper base mold 171. A base molding assembly (not shown in the figure) for injection molding the aromatherapy base 101 is disposed between the upper base injection block 1711 and the lower base injection block 1722. The first injection molding assembly 173 is used to injection mold the upper base injection block 1711. Figure 7 The first ejection mechanism 174 is used to eject the aromatherapy base 101 after injection molding.

[0058] Reference Figure 6 , Figure 7 as well as Figure 8The base molding assembly includes a base cavity 201 formed in the upper base injection block 1711, an unlocking punch 202 installed in the base cavity 201, a plurality of stabilizing grooves 203 formed around the outer wall of the unlocking punch 202, a first receiving groove 204 formed in the lower base injection block 1722 facing the upper base injection block 1711, a plurality of recesses 205 formed around the inner wall of the first receiving groove 204, a third annular groove 206 formed around the inner wall of the first receiving groove 204, a third wave pattern 207 provided at the bottom of the third annular groove 206, a receiving punch 208 installed in the first receiving groove 204, a plurality of reinforcing grooves 209 formed around the outer wall of the receiving punch 208, and a mounting groove 210 formed on the side of the receiving punch 208 away from the lower base injection block 1722.

[0059] Among them, reference Figure 2 and Figure 6 The base cavity 201 is correspondingly provided with the support part 111; combined with Figure 7 The snap-fit ​​groove 12 and the unlocking groove 13 are both set to correspond to the unlocking punch 202; the stabilizing groove 203 is set to correspond to the stabilizing rib 16; the recessed part 205 is set to correspond to the protrusion 6; the first wave pattern 7 is set to correspond to the third wave pattern 207; the receiving punch 208 is set to correspond to the second receiving cavity 3; the reinforcing groove 209 is set to correspond to the reinforcing rib 4; and the mounting groove 210 is set to correspond to the mounting part 112.

[0060] Reference Figure 5 and Figure 7 The first ejection mechanism 174 includes a first base plate 1741, a first top plate 1742, a second top plate 1743, a third top plate 1744, a fourth top plate 1745, a first ejector rod 1746, a second ejector rod 1747, a lifting cylinder 1748, a lifting rod 1749, and two sets of secondary lifting assemblies 1750. The first top plate 1742 is installed on the side of the lower base mounting block 1721 opposite to the side of the upper base injection molding block 1711, and the second top plate 1743 is installed on the side of the first top plate 1742 opposite to the side of the lower base mounting block 1711. On one side of block 1721, the first top plate 1742 and the second top plate 1743 are fixedly connected by bolts; the third top plate 1744 is installed on the side of the second top plate 1743 away from the first top plate 1742, and the fourth top plate 1745 is installed on the side of the third top plate 1744 away from the second top plate 1743. The third top plate 1744 and the fourth top plate 1745 are fixedly connected by bolts; the first bottom plate 1741 is installed on the side of the fourth top plate 1745 away from the third top plate 1744.

[0061] Reference Figure 7The first push rod 1746 and the second push rod 1747 are both installed on the side of the first top plate 1742 near the lower base injection block 1722. The end of the first push rod 1746 away from the first top plate 1742 slides through the side of the lower base injection block 1722 opposite to the first top plate 1742 and is used to push out the aromatherapy bottle 103. The end of the second push rod 1747 away from the first top plate 1742 slides through the side of the lower base injection block 1722 opposite to the first top plate 1742 and is used to push out the lower base injection block 1722. The piston rod of the lifting cylinder 1748 passes through the first base plate 1741, the first top plate 1742, the second top plate 1743, and the third top plate 1744 in sequence and finally connects to the fourth top plate 1745. One end of the lifting rod 1749 is installed inside the third top plate 1744, and the other end of the lifting rod 1749 away from the first top plate 1742 is installed inside the lower base mounting block 1721. When the lifting cylinder 1748 is activated, its piston rod lifts and simultaneously drives the first top plate 1742 to slide towards the lower injection molding block. As the first top plate 1742 slides, it also drives the first lifting rod 1746, the second lifting rod 1747, and the lifting rod 1749 to slide, thereby enabling the first lifting rod 1746 and the second lifting rod 1747 to respectively eject the aromatherapy base 101 and the lower base injection molding block 1722, and simultaneously enabling the lifting rod 1749 to eject the lower base mounting block 1721.

[0062] Reference Figure 9 and Figure 10 The fourth top plate 1745 has sliding cavities 21 on both opposite sides. The secondary lifting assembly 1750 includes a sliding shell 17501, a sliding groove 17502 on one side of the sliding shell 17501, a driving block 17503 slidably disposed in the sliding groove 17502, a connecting block 17504 disposed in the sliding cavity 21, and a compression spring 17505 disposed in the sliding cavity 21. A positioning block 22 is installed on the side of the sliding shell 17501 facing the base, and a positioning groove 23 is provided on the side of the base facing the sliding shell 17501. The positioning block 22 and the positioning groove 23 are inserted into each other. Through the insertion and engagement of the positioning block 22 and the positioning groove 23, the sliding shell 17501 and the base are quickly positioned, and the sliding shell 17501 and the base are fixedly connected by bolts. The linkage block 17504 has several spring cavities 24 on the side facing the sliding cavity 21. One end of the compression spring 17505 is installed in the spring cavity 24, and the other end of the compression spring 17505 is installed on the inner wall of the sliding cavity 21 facing the fourth top plate 1745. The sliding groove 17502 provides sliding space for the drive block 17503. The end of the linkage block 17504 away from the compression spring 17505 abuts against the drive block 17503. The side of the drive block 17503 facing the linkage block 17504 has a first inclined surface 25, and the side of the drive block 17503 facing the drive block 17503 has a second inclined surface 26.

[0063] Reference Figure 9 and Figure 10 When the lifting cylinder 1748 is activated, the first top plate 1742 slides, simultaneously driving the drive block 17503 to slide. The drive block 17503, in turn, drives the connecting block 17504 to slide, and the connecting block 17504, in turn, drives the fourth top plate 1745 to slide. When the first inclined surface 25 abuts against the second inclined surface 26, the compression spring 17505 is compressed by the abutment force. Simultaneously, the compression spring 17505 drives the connecting block 17504 to slide into the sliding cavity 21, thus making way for the drive block 17503. Therefore, the third top plate 1744 and the fourth top plate 1745 cannot continue to slide, preventing the lifting rod 1749 from sliding, and consequently preventing the lower base mounting block 1721 from continuing to lift. Figure 7 Furthermore, the first push rod 1746 and the second push rod 1747 continue to push out the aromatherapy base 101 and the lower base injection block 1722 respectively.

[0064] Reference Figure 11 and Figure 12 The bottle mold 18 includes an upper bottle mold 181, a lower bottle mold 182, a second injection molding assembly 183 disposed on the upper bottle mold 181, and a second ejection mechanism 184 disposed on the lower bottle mold 182. The upper bottle mold 181 includes an upper bottle injection block 1811, combined with... Figure 13 The lower bottle mold 182 includes a lower bottle injection block 1821. A bottle forming assembly 27 (not shown in the figure) for injection molding the aromatherapy bottle 103 is provided between the upper bottle injection block 1811 and the lower bottle injection block 1821. The second injection assembly 183 is used to inject the aromatherapy bottle 103 into the upper mold injection block. The second ejection mechanism 184 is used to eject the aromatherapy bottle 103 after injection molding.

[0065] Reference Figure 12 and Figure 13 The bottle forming assembly 27 includes a bottle cavity 271 formed on the side of the upper bottle injection block 1811 near the lower bottle injection block 1821, a second receiving groove 272 formed on the side of the lower bottle injection block 1821 facing the upper bottle injection block 1811, a bottle punch 273 disposed in the second receiving groove 272, a sealing groove 274 formed on the top of the bottle punch 273, an overflow groove 275 formed on the bottom wall of the sealing groove 274, an annular protrusion 276 arranged around the inner wall of the bottle punch 273, a fourth wave pattern 277 arranged around the inner wall of the bottle punch 273, and an annular recess 278 arranged around the inner wall of the bottle punch 273. In combination with... Figure 3The bottle cavity 271 is correspondingly set to the aromatherapy bottle 103; the bottle punch 273 is correspondingly set to the second receiving groove; the sealing protrusion is correspondingly set to the sealing groove 14; the overflow groove 275 is correspondingly set to the overflow groove 15; the annular protrusion 276 is correspondingly set to the annular groove 10; the fourth wave pattern 277 is correspondingly set to the second wave pattern 11; and the annular recess 278 is correspondingly set to the annular insertion block 1110.

[0066] Reference Figure 14 and Figure 15 The bottle cap mold 19 includes an upper bottle cap mold 191, a lower bottle cap mold 192, a third injection molding assembly 193 disposed on the upper bottle cap mold 191, and a third ejection mechanism 194 disposed on the lower bottle cap mold 192. The upper bottle cap mold 191 includes an upper bottle cap injection block 1911, combined with... Figure 16 The lower cap mold 192 includes a lower base mounting block 1721 disposed on one side of the upper cap injection block 1911 and a lower base injection block 1722 embedded in the lower base mounting block 1721 on the side opposite to the upper base mold 171. A cap forming assembly 28 (not shown in the figure) for injection molding the aromatherapy bottle cap 104 is disposed between the upper cap injection block 1911 and the lower cap injection block 1922. The third injection molding assembly 193 is used to inject the upper cap injection block 1911. The third ejection mechanism 194 is used to eject the aromatherapy bottle cap 104 after injection molding.

[0067] Reference Figure 15 and Figure 16 The bottle cap forming assembly 28 includes a first bottle cap cavity 281 located on the side of the upper bottle cap injection block 1911 near the lower bottle cap injection block 1922, a second bottle cap cavity 281 located on the lower bottle cap injection block 1922 near the upper bottle cap injection block 1911, a bottle cap punch 282 disposed in the second bottle cap cavity 281, and a snap-fit ​​groove 283 disposed on the top of the bottle cap punch 282. The bottle cap cavity 281 is correspondingly provided with the closed bottle cap 1031; the snap-fit ​​groove 283 is correspondingly provided with the snap-fit ​​rod 1032.

[0068] Reference Figure 15 and Figure 16 The third ejection mechanism 194 includes a third ejector rod 1941 and a fourth ejector rod 1942, combined with Figure 9 and Figure 10 Furthermore, the structure of the third ejection mechanism 194 is the same as that of the first ejection mechanism 174. The difference is that one end of the third ejector rod 1941 and one end of the fourth ejector rod 1942 are slidably inserted into the lower bottle cap injection block 1922 on the side near the upper bottle cap injection block 1911, and the third ejector rod 1941 is sleeved on the fourth ejector rod 1942.

[0069] The implementation principle of a molding die for aromatherapy according to an embodiment of this application is as follows: First injection molding component 173 injects material into the upper base injection block 1711, simultaneously molding an aromatherapy base 101 with the base molding component. Finally, the first ejection mechanism 174 ejects the molded aromatherapy base 101. Second injection molding component 183 injects material into the upper bottle body injection block 1811, simultaneously molding an aromatherapy bottle body with the bottle body molding component 27. Finally, the second ejection mechanism 184 ejects the molded aromatherapy bottle body 103. Third injection molding component 193 injects material into the upper cap injection block 1911, simultaneously molding an aromatherapy cap 104 with the cap molding component 28. Finally, the third ejection mechanism 194 ejects the molded aromatherapy cap 104.

[0070] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An aromatherapy product, characterized in that: The aromatherapy diffuser (1) includes an aromatherapy base (101), aromatherapy solid (102), aromatherapy bottle (103), and aromatherapy bottle cap (104). The aromatherapy base (101) includes a support part (111) and an installation part (112). The support part (111) has a first receiving cavity (2), and the aromatherapy bottle (103) has a second receiving cavity (3). The aromatherapy solid (102) is housed in the first receiving cavity (2) and the second receiving cavity (3). The support part (111) is disposed on the installation part (112), and the aromatherapy solid (102) is disposed on the installation part (112). The aromatherapy diffuser (1) has a snap-fit ​​groove (12) and an unlocking groove (13) respectively at both ends. 12) and the unlocking groove (13) are connected. The aromatherapy bottle cap (104) includes a sealing cap (1031) and a snap-fit ​​rod (1032). The snap-fit ​​rod (1032) is engaged with the snap-fit ​​groove (12). An overflow groove (15) is provided at one end of the aromatherapy bottle body (103) away from the aromatherapy base (101). The sealing cap (1031) is engaged with the overflow groove (15). When the sealing cap (1031) is engaged with the overflow groove (15), the sealing cap (1031) covers the overflow groove (15). A fixing component for fixing the support part (111) and the aromatherapy bottle body (103) is provided between the support part (111) and the aromatherapy bottle body (103).

2. The aromatherapy product according to claim 1, characterized in that: The fixing component includes a protrusion (6) disposed on the support (111) and an annular groove (10) disposed on the aromatherapy bottle (103), the annular groove (10) engaging with the protrusion (6).

3. The aromatherapy diffuser according to claim 2, characterized in that: The support part (111) is provided with a first wave pattern (7), and the aromatherapy bottle body (103) is provided with a second wave pattern (11). When the annular groove (10) and the protrusion (6) are engaged, the protrusion of the first wave pattern (7) corresponds to the concave part of the second wave pattern (11), and the concave part of the first wave pattern (7) corresponds to the protrusion of the second wave pattern (11).

4. The aromatherapy diffuser according to claim 1, characterized in that: The support part (111) is provided with an annular plug-in block (1110), and the aromatherapy bottle body (103) is provided with an annular plug-in groove (9). The annular plug-in groove (9) and the annular plug-in block (1110) are plugged in and engaged.

5. The aromatherapy diffuser according to claim 1, characterized in that: The inner wall of the snap-fit ​​groove (12) is provided with several stabilizing ribs (16).

6. The aromatherapy product according to claim 1, characterized in that: A reinforcing rib (4) is provided between the inner wall of the first accommodating cavity (2) and the mounting part (112).

7. A molding die for producing an aromatherapy product according to any one of claims 1-5, characterized in that: The molding die for the aromatherapy (1) includes a base die (17), which includes an upper base die (171), a lower base die (172), a first injection molding component (173) disposed on the upper base die (171), and a first ejection mechanism (174) disposed on the lower base die (172). The upper base die (171) is disposed on one side of the lower base die (172). An upper base injection block (1711) is disposed on the upper base die (171), and a lower base mounting block (1721) and a lower base injection block (1722) are disposed on the lower base die (172). A base molding component for injection molding the aromatherapy base (101) is disposed between the upper base injection block (1711) and the lower base injection block (1722).

8. The molding die for aromatherapy according to claim 7, characterized in that: The first ejection mechanism (174) includes a first base plate (1741), a first top plate (1742), a fourth top plate (1745), a first ejector rod (1746), a second ejector rod (1747), a lifting rod (1749), a lifting cylinder (1748), and a secondary lifting assembly (1750). The first ejector rod (1746) and the second ejector rod (1747) are both disposed on the first top plate (1742). The first top plate (1742) is disposed on one side of the lower base mounting block (1721). The fourth top plate (1745) is disposed on the side of the first top plate (1742) away from the lower base mounting block (1721). The first base plate (1741) is disposed on the side of the fourth top plate (1745) away from the first top plate (1742). The lifting cylinder (1746) The piston rod of 1748 is sequentially passed through the first base plate (1741) and the fourth top plate (1745) and is located on one side of the first top plate (1742). The end of the first push rod (1746) away from the first top plate (1742) and the end of the second push rod (1747) away from the first top plate (1742) are both slidably passed through the lower base injection block (1722) and are used to push out the aromatherapy base (101) and the lower base injection block (1722) respectively. The two ends of the lifting rod (1749) are respectively located on the fourth top plate (1745) and the lower base mounting block (1721). The secondary lifting assembly (1750) is used to drive the first push rod (1746) and the second push rod (1747) to lift the lower base injection block (1722).

9. The molding die for aromatherapy according to claim 8, characterized in that: A sliding cavity (21) is provided on one side of the fourth top plate (1745). The secondary lifting assembly (1750) includes a compression spring (17505) disposed in the sliding cavity (21), a linkage block (17504) slidably disposed in the sliding cavity (21), a sliding shell (17501) fixedly disposed on the first bottom plate (1741), a sliding groove (17502) opened in the sliding shell (17501) facing the fourth top plate (1745), and a sliding groove (17502) slidably disposed in the sliding cavity (21). The driving block (17503) of the moving groove (17502) and the lifting rod (1749) disposed on the first top plate (1742) are provided. One end of the lifting rod (1749) away from the first top plate (1742) is disposed on the lower base mounting block (1721). One end of the compression spring (17505) is disposed on the side of the linkage block (17504) away from the fourth top plate (1745), and the other end is disposed on the inner wall of the sliding cavity (21) facing the fourth top plate (1745).

10. The molding die for aromatherapy according to claim 9, characterized in that: The drive block (17503) has a first inclined surface (25) facing the linkage block (17504), and the linkage block (17504) has a second inclined surface (26) facing the drive block (17503).