Square rotary lifting type vacuum bottle device
By designing a square rotating lifting vacuum bottle device, the pressing head is raised and lowered by rotating the upper cover, which solves the problem of loose and lost traditional vacuum bottle caps and improves the convenience and reliability of use.
Patent Information
- Application Number
- CN202423153550.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-20
AI Technical Summary
The caps of existing vacuum bottles are prone to loosening and loss, affecting the normal use of the press-type pump head.
Design a square rotating lifting vacuum bottle device. The pressing head is raised and lowered by rotating the upper cover. The traditional bottle cap is eliminated. The device uses a shoulder sleeve and a spiral groove structure for movable connection, ensuring that the pressing head is lowered for protection when not in use and extended for use when needed.
The press head can be easily raised and lowered, avoiding the problem of bottle caps becoming loose or lost, thus improving the convenience and reliability of use.
Smart Images

Figure CN223733004U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to metal processing equipment technical field more specifically, and it is a square rotary lifting type vacuum bottle device. BACKGROUND
[0002] The existing cosmetic liquid or some skin care liquid is generally placed in a vacuum bottle, and the discharge is realized by pressing the press type pump head on the top of the vacuum bottle. Then, a bottle cap is generally arranged outside the press type pump head to realize protection. For example, the rotary mechanical automatic press vacuum foundation bottle with patent application number 201921864293.2 is protected by an outer cover. However, since the outer cover is clamped and fixed, it will loosen after being disassembled and assembled for many times. If not careful, it will be lost and cannot be found, so that the vacuum pump core cannot be protected, affecting normal use. SUMMARY
[0003] The utility model aims at overcoming the shortage of prior art, provides a square rotary lifting type vacuum bottle device, it does not have the bottle cap, only needs to realize the lifting of the press head through the rotation upper cover body, to meet the use needs, its upper cover body is movably connected on the shoulder sleeve, it is not easy to fall, can lower the press head and be in the shoulder sleeve when not using, realizes the protection, when using, can use the press head to stretch out, it is very convenient.
[0004] The utility model solves the technical problem by the following scheme:
[0005] A square rotary lifting type vacuum bottle device, comprising a bottle body, an inner container and a press type pump head, the bottom of the shoulder sleeve is clamped on the top of the bottle body, the inner container is inserted into the bottle body, the bottom surface of the inner container is pressed against the top surface of the bottom plate of the bottle body, the upper part of the shoulder sleeve is a cylindrical sleeve, and helical grooves are formed on the left and right wall plates and extend upward in a spiral manner;
[0006] The bottom of the press type pump head is inserted into the middle through hole of the screw connection head formed on the top of the inner container and communicates with the inner container, the bottom surface of the radially extending edge part formed on the middle outer side wall of the press type pump head is pressed against the top end surface of the screw connection head, the outer thread of the screw connection head is screwed with a connecting seat, a through hole is formed in the middle part of the top plate of the connecting seat, the upper part of the press type pump head protrudes out of the through hole, the bottom surface of the top plate of the connecting seat is pressed against the top surface of the radially extending edge part, and a transversely protruding cylindrical part is formed on the left and right side walls of the connecting seat;
[0007] The upper part of the shoulder sleeve is inserted with an upper cover body, the upper cover body is movably connected on the shoulder sleeve, and the outer end of the transversely protruding cylindrical part protrudes out of the corresponding helical groove and is inserted into the vertical guide groove formed on the corresponding inner side wall of the upper cover body;
[0008] The pressing head is installed at the top of the top of the pressing pump head, and the upper part of the pressing head is inserted into the middle through hole of the upper cover body.
[0009] The top surface of the top plate of the connecting seat is formed with a center sleeve body, and the upper end of the center sleeve body is inserted into the recess hole formed in the middle part of the bottom surface of the pressing head.
[0010] An annular extension part is formed on the middle outer side wall of the pressing pump head above the radially extending side part, and the annular extension part is inserted into the annular groove formed on the upper inner side wall of the through hole of the connecting seat.
[0011] The pressing head is inserted into the upper part of the shoulder sleeve, the lower outer side wall of the shoulder sleeve is formed with an annular limiting part, the outer side wall of the annular limiting part is a tapered wall surface with a smaller upper outer diameter and a larger lower outer diameter, the lower part of the inner side wall of the upper cover body is formed with a lower annular groove, the top surface of the lower annular groove is a tapered wall surface, the annular limiting part is inserted into the lower annular groove, and the outer wall surface of the annular limiting part is matched with the top surface of the lower annular groove.
[0012] A transversely limiting recess is formed at the outer side of the bottom end of the spiral through groove, and a transversely limiting recess is also formed at the outer side of the top end of the spiral through groove, the bottom surface of the communication part between the lower transversely limiting recess and the bottom part of the spiral through groove is formed with a convex part with an upward extending top surface in an arc shape;
[0013] The bottom surface of the upper transversely limiting recess is a slanting wall surface, the high end of the slanting wall surface is connected with the outer side of the top end of the spiral through groove, and the other end is a bottom end;
[0014] The top surface of the top end of the spiral through groove is formed with a slot extending upward and protruding from the top end surface of the shoulder sleeve.
[0015] The bottom plate of the inner container is provided with a sealing piston above, the sealing piston is in the inner container, and the outer side wall of the sealing piston is pressed against the inner side wall of the inner container.
[0016] The bottle body is a cylindrical sleeve body with a rectangular cross section, the inner side of the top end surface of the bottle body is a clamping part with a rectangular frame cross section, the bottom of the shoulder sleeve is a rectangular sleeve part, the top surface of the middle part of the sleeve part is formed with a cylindrical sleeve body extending upward, the clamping part is inserted into the rectangular sleeve part of the shoulder sleeve, the top surface of the clamping part is pressed against the top surface of the rectangular sleeve part, and the convex part formed on the outer side wall of the clamping part is clamped in the clamping groove formed on the corresponding inner side wall of the rectangular sleeve part of the shoulder sleeve.
[0017] The middle through hole of the upper cover body is a rectangular through hole, the sleeve part is a rectangular sleeve part, the pressing head is inserted into the sleeve part, and the outer side wall of the pressing head is matched with the inner side wall of the sleeve part.
[0018] The prominent effect of the utility model is:
[0019] It does not have a bottle cap, and only needs to rotate the upper cover body to realize the lifting of the pressing head, so as to meet the use needs, the upper cover body is movably connected on the shoulder sleeve, and it is not easy to fall off, and the pressing head can be lowered and placed in the shoulder sleeve when not in use, so as to realize protection, and when in use, the pressing head can be stretched out for use, which is very convenient. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a partial structure schematic view of the utility model;
[0021] Figure 2 It is a partial sectional view of the utility model;
[0022] Figure 3 It is Figure 2 a partial enlarged view;
[0023] Figure 4 It is an exploded schematic view of the utility model;
[0024] Figure 5 It is a partial structure schematic view of the shoulder sleeve;
[0025] Figure 6 It is a partial structure schematic view of the connecting seat;
[0026] Figure 7 It is a partial structure schematic view of the upper cover body;
[0027] Figure 8 It is a partial structure schematic view of the upper cover body. DETAILED DESCRIPTION
[0028] Embodiment, see as Figures 1 to 8 shown, a square rotary lifting type vacuum bottle device, including bottle body 10, inner container 20 and pressing type pump head 30 (it is conventional accessory, can be bought directly on the market, here will not be detailed), the bottom of shoulder sleeve 40 is clamped on the top of bottle body 10, inner container 20 is inserted in bottle body 10, the bottom surface of inner container 20 is pressed on the top surface of the bottom plate of bottle body 10;
[0029] The upper part of shoulder sleeve 40 is cylindrical sleeve body, and spiral through slot 41 extending spirally and upward is formed on the wall plate of left side and right side;
[0030] The bottom of pressing type pump head 30 is inserted into the middle through hole of screw connection head 21 formed on the top of inner container 20 and communicated with inner container 20, and the bottom surface of radial extension edge 31 formed on the middle outer side wall of pressing type pump head 30 is pressed on the top end surface of screw connection head 21, wherein the pressing type pump head 30 below radial extension edge 31 is clamped with sealing pad, and the sealing pad is clamped between the bottom surface of radial extension edge 31 and the top end surface of screw connection head 21;
[0031] The outer thread of the threaded connection head 21 is screwed with a connecting seat 50, the top plate of the connecting seat 50 is formed with a through hole, the upper part of the press type pump head 30 extends through the through hole, the outer side wall of the part of the press type pump head 30 in the through hole is close to or abuts against the inner side wall of the through hole, the bottom surface of the top plate of the connecting seat 50 is pressed against the top surface of the radially extending edge portion 31, the left and right side walls of the connecting seat 50 are each formed with a transversely protruding cylindrical portion 51, and the transversely protruding cylindrical portion 51 is inserted into the corresponding spiral through groove 41.
[0032] The upper outer side of the shoulder sleeve 40 is inserted with an upper cover body 60, the upper cover body 60 is movably connected to the shoulder sleeve 40, the outer end of the transversely protruding cylindrical portion 51 extends out of the corresponding spiral through groove 41 and is inserted into the vertical guide groove 61 formed in the corresponding inner side wall of the upper cover body 60.
[0033] The top of the press type pump head 30 is provided with a pressing head 70 at the discharge port, the upper part of the pressing head 70 is inserted into the middle through hole 62 of the upper cover body 60.
[0034] Further, the middle of the top plate of the upper cover body 60 is formed with a middle through hole 62, the inner side wall of the middle through hole 62 is formed with a sleeve body portion 63 extending vertically downward, the outer side wall of the pressing head 70 is close to the inner side wall of the sleeve body portion 63, the upper part of one side wall of the pressing head 70 is formed with a liquid spraying head 71 extending horizontally outward, the liquid spraying head 71 is inserted into the corresponding inner recess formed in one side of the sleeve body portion 63, and the top end of the inner recess extends out of the top surface of the upper cover body 60.
[0035] The bottom surface of the pressing head 70 is formed with a recess hole extending upward in the middle, the middle of the top surface of the recess hole is formed with a downward extending plug-in portion 72, the lower part of the plug-in portion 72 is clamped in the discharge port of the top of the press type pump head 30, the middle of the plug-in portion 72 is formed with a vertical hole communicating with the discharge port, the top end of the vertical hole formed in the middle of the plug-in portion 72 extends upward, and the inner end of the middle of the center discharge hole of the liquid spraying head 71 extends inward and communicates with the top end of the vertical hole of the plug-in portion 72.
[0036] Further, the top surface of the top plate of the connecting seat 50 is formed with a center sleeve body 52 in the middle, and the upper end of the center sleeve body 52 is inserted into the recess hole formed in the middle of the bottom surface of the pressing head 70.
[0037] Further, the middle outer side wall of the press type pump head 30 above the radially extending edge portion 31 is formed with an annular extension 32, and the annular extension 32 is inserted into the annular groove formed in the upper inner side wall of the through hole of the connecting seat 50.
[0038] Further, the pressing head 70 is inserted into the upper part of the shoulder sleeve 40, an annular limiting part is formed on the outer side wall of the lower part of the shoulder sleeve 40, the outer side wall of the annular limiting part is a tapered wall surface with a smaller upper diameter and a larger lower diameter, the inner side wall of the upper cover body 60 is formed with a lower annular groove, the top surface of the lower annular groove is a tapered wall surface, the annular limiting part is inserted into the lower annular groove, and the outer wall surface of the annular limiting part is matched with the top surface of the lower annular groove.
[0039] An outer side of the bottom end of the spiral through groove 41 is formed with a transverse limiting groove 411, and an outer side of the top end of the spiral through groove 41 is also formed with a transverse limiting groove 411, the bottom surface of the lower transverse limiting groove 411 is formed with a convex part 412 with an upward extending arc-shaped top surface at the position where the lower transverse limiting groove 411 is communicated with the bottom part of the spiral through groove 41.
[0040] The bottom surface of the upper transverse limiting groove 411 is a slanted wall surface, the high end of the slanted wall surface is connected with the outer side of the top end of the spiral through groove 41, and the other end is the bottom end; the effect is the same as that of the convex part 412, and is also to prevent the upper cover body 60 from being shaken and automatically rotated due to the vibration of the bag, thereby preventing the misoperation problem.
[0041] The top surface of the top end of the spiral through groove 41 is formed with a slot 42 extending upward and protruding from the top surface of the shoulder sleeve 40.
[0042] Further, the bottom plate of the inner container 20 is provided with a sealing piston 1 above, the sealing piston 1 is in the inner container 20, the outer side wall of the sealing piston 1 is pressed against the inner side wall of the inner container 20, the emulsion liquid or the like is filled into the inner container 20 and is above the sealing piston 1, and the emulsion liquid or the like can be prevented from flowing out from below the sealing piston 1 through the sealing piston 1; meanwhile, the bottom of the inner container 20 is a bottom support which is clamped on the inner side wall of the bottom of the inner container 20 and is tightly pressed, and can clamp a sealing rubber layer therebetween to further improve the density effect (generally without using).
[0043] The bottle body 10 is a cylindrical sleeve body with a rectangular cross section, the inner side of the top surface thereof is provided with a clamping part in the form of a rectangular frame, the bottom of the shoulder sleeve 40 is a rectangular sleeve part, the top surface of the middle part of the rectangular sleeve part is formed with a cylindrical sleeve body extending upward, the clamping part is inserted into the rectangular sleeve part of the shoulder sleeve 40, the top surface of the clamping part is pressed against the top surface of the rectangular sleeve part, and the convex part formed on the outer side wall of the clamping part is clamped in the clamping groove formed on the corresponding inner side wall of the rectangular sleeve part of the shoulder sleeve 40.
[0044] The middle through hole 62 of the upper cover body 60 is a rectangular through hole, the sleeve body part 63 is a rectangular sleeve body part, and the pressing head 70 is sleeved in the sleeve body part 63, and the outer side wall thereof is matched with the inner side wall of the sleeve body part 63.
[0045] The bottle body 10, the inner container 20, the shoulder sleeve 40, the connecting seat 50, the upper cover body 60 and the pressing head 70 in the embodiment are all made of plastic, which is low in manufacturing cost and convenient to manufacture, and has a certain elastic deformation effect due to the plastic material, so that the installation, clamping and fixing are very convenient.
[0046] In use, the upper cover body 60 is rotated to drive the two transverse protruding cylindrical parts 51 to move along the corresponding spiral through grooves 41, so that the inner container 20, the connecting seat 50, the pressing type pump head 30 and the pressing head 70 are lifted together, and the pressing head 70 is extended out of the upper cover body 60.
[0047] The embodiment only needs to rotate the upper cover body 60 to realize the lifting of the pressing type pump head 30 and the pressing head 70, so as to meet the use requirement.
[0048] The above only describes the preferred embodiments of the present application, and it should be pointed out that for ordinary skilled in the art, without departing from the technical principles of the present application, a number of improvements and refinements can be made, and these improvements and refinements should also be considered as the protection range of the present application.
Claims
1. A square rotary lift vacuum flask device comprising a flask body (10), an inner container (20) and a press pump head (30), characterized in that: The bottom of the shoulder sleeve (40) is clamped on the top of the bottle body (10), the inner container (20) is inserted into the bottle body (10), the bottom surface of the inner container (20) is pressed against the top surface of the bottom plate of the bottle body (10), the upper part of the shoulder sleeve (40) is a cylindrical sleeve body, and helical through grooves (41) extending helically and upward are formed in the wall plates on the left side and the right side of the upper part of the shoulder sleeve (40). The bottom of the press pump head (30) is inserted into the middle through hole of the screw joint (21) formed in the top of the inner container (20) and communicates with the inner container (20), the bottom surface of the radially extending edge (31) formed in the middle outer side wall of the press pump head (30) is pressed against the top end surface of the screw joint (21), the outer thread of the screw joint (21) is screwed with the connecting seat (50), the middle part of the top plate of the connecting seat (50) is formed with a through hole, the upper part of the press pump head (30) extends out of the through hole, the bottom surface of the top plate of the connecting seat (50) is pressed against the top surface of the radially extending edge (31), and the left and right side walls of the connecting seat (50) are each formed with a transversely protruding cylindrical part (51), which is inserted into the corresponding helical through groove (41). The upper part of the shoulder sleeve (40) is inserted into the upper cover body (60), the upper cover body (60) is movably connected to the shoulder sleeve (40), the outer end of the transversely protruding cylindrical part (51) extends out of the corresponding helical through groove (41) and is inserted into the vertical guide groove (61) formed in the corresponding inner side wall of the upper cover body (60). A pressing head (70) is mounted at the discharge port of the top of the press pump head (30), and the upper part of the pressing head (70) is inserted into the middle through hole (62) of the upper cover body (60).
2. A square rotary lift vacuum flask device according to claim 1, characterised in that: The middle part of the top plate of the upper cover body (60) is formed with a middle through hole (62), the inner side wall of the middle through hole (62) is formed with a sleeve part (63) extending vertically downward, the outer side wall of the pressing head (70) is close to the inner side wall of the sleeve part (63), the upper part of one side wall of the pressing head (70) is formed with a liquid spraying head (71) extending horizontally outward, the liquid spraying head (71) is inserted into the inner recess formed in the corresponding side of the sleeve part (63), and the top end of the inner recess extends out of the top surface of the upper cover body (60). The middle part of the bottom surface of the pressing head (70) is formed with a recess hole extending upward, the middle part of the top surface of the recess hole is formed with a downward extending plug-in part (72), the lower part of the plug-in part (72) is clamped in the discharge port of the top of the press pump head (30), the middle part of the plug-in part (72) is formed with a vertical hole communicating with the discharge port, the top end of the vertical hole of the middle part of the plug-in part (72) extends upward, and the inner end of the central discharge hole of the middle part of the liquid spraying head (71) extends inward and communicates with the top end of the vertical hole of the plug-in part (72).
3. A square rotary lift vacuum flask device according to claim 2, wherein: The middle part of the top surface of the top plate of the connecting seat (50) is formed with a central sleeve body (52), and the upper end of the central sleeve body (52) is inserted into the recess hole formed in the middle part of the bottom surface of the pressing head (70).
4. A square rotary lift vacuum flask device as claimed in claim 1, wherein: The middle part outer wall of the press pump head (30) above the radial extension edge (31) is formed with an annular extension (32), which is inserted into the annular groove formed on the upper inner wall of the through hole of the connecting seat (50).
5. A square rotary lift vacuum flask apparatus as claimed in claim 2, wherein: The press head (70) is inserted into the upper part of the shoulder sleeve (40), the lower outer wall of the shoulder sleeve (40) is formed with an annular limiting part, the outer wall of the annular limiting part is a tapered wall surface with a smaller upper diameter and a larger lower diameter, the inner wall of the upper cover body (60) is formed with a lower annular groove, the top surface of the lower annular groove is a tapered wall surface, the annular limiting part is inserted into the lower annular groove, and the outer wall surface of the annular limiting part cooperates with the top surface of the lower annular groove.
6. A square rotary lift vacuum flask device as claimed in claim 1, wherein: The outer side of the bottom end of the spiral through groove (41) is formed with a transverse limiting groove (411), and the outer side of the top end of the spiral through groove (41) is also formed with a transverse limiting groove (411); the bottom surface of the lower transverse limiting groove (411) is formed with an upward extending convex part (412) with an arc-shaped top surface, which is in communication with the bottom of the spiral through groove (41); The bottom surface of the upper transverse limiting groove (411) is a slanted wall surface, the high end of which is in communication with the outer side of the top end of the spiral through groove (41), and the other end is the bottom end; The top surface of the top end of the spiral through groove (41) is formed with a slot (42) extending upward and protruding from the top surface of the shoulder sleeve (40).
7. A square rotary lift vacuum flask device as claimed in claim 1, wherein: The bottom plate of the inner container (20) is provided with a sealing piston (1) above, the sealing piston (1) is in the inner container (20), and the outer wall of the sealing piston (1) is pressed against the inner wall of the inner container (20).
Citation Information
Patent Citations
The rotating machine automatically presses vacuum foundation bottle
CN211154252U