Spraying nursing comb
By incorporating a storage slot and a sealing gasket formed by a secondary molding process in the spray care comb, the problem of the sealing gasket easily falling off is solved, enabling convenient disassembly and assembly of the spray assembly and ensuring a good seal, thereby improving assembly efficiency and sealing effect.
Patent Information
- Application Number
- CN202423218672.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-25
AI Technical Summary
When disassembling and maintaining existing spray care combs, the sealing gaskets and atomizing nozzles are prone to falling off, affecting assembly efficiency and making them difficult to reuse.
A storage slot is set in the spray care comb to store the spray components. The mouth of the medicine bottle is formed with a sealing gasket embedded in the groove through a secondary molding process. The atomizing cover is sealed and connected to the medicine bottle. It can be disassembled and assembled by locking groove and snap-back protrusion. The atomizing nozzle is sealed and connected to the mouth of the medicine bottle.
It effectively reduces space occupation, facilitates disassembly and maintenance, has a good sealing effect, avoids damage and falling off of sealing gaskets, and is easy to assemble.
Smart Images

Figure CN223682128U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model embodiment relates to hair care device technical field, especially a kind of spray care comb. BACKGROUND
[0002] At present, to realize hair care and provide various different use requirements for users, a spray care comb is usually provided with a spray assembly, which can spray the spray generated by atomizing care liquid (for example, hair growth liquid or care essential oil) to the hair and / or scalp of the user when the user uses the care comb.
[0003] The existing spray care comb mainly includes a comb body with a containing cavity inside and a plurality of comb teeth on one side, a gas pump assembled in the containing cavity for supplying high-pressure gas, a spray assembly connected with the gas pump for spraying spray under the action of high-pressure gas supplied by the gas pump, and a control assembly assembled in the containing cavity for controlling the gas pump. The spray assembly is mainly composed of an atomizing nozzle and a liquid bottle for containing liquid to be atomized. In specific assembly, in order to realize the sealed connection of the atomizing nozzle and the liquid bottle, a sealing gasket is usually arranged between the liquid bottle and the atomizing nozzle. However, since the sealing gasket and the atomizing nozzle need to be assembled separately, the sealing gasket and the atomizing nozzle are easy to fall off during disassembly, maintenance and replacement of the liquid bottle, which affects the assembly efficiency, and the fallen sealing gasket and atomizing nozzle are usually difficult to use again. SUMMARY
[0004] The technical problem to be solved by the utility model embodiment is to provide a spray care comb, which can avoid the falling of the sealing ring during disassembly and maintenance, and the atomizing structure is simple and easy to implement.
[0005] In order to solve the above technical problems, the utility model embodiment provides the following technical scheme: a spray care comb, comprising a comb body with a containing cavity inside and a plurality of first comb teeth on one side, a micro gas pump assembled in the containing cavity for supplying high-pressure gas, a spray assembly connected with the micro gas pump for spraying spray under the action of high-pressure gas supplied by the micro gas pump, and a control assembly assembled in the containing cavity for controlling the micro gas pump, one side wall of the comb body is recessed into the containing cavity to form a receiving groove for receiving the spray assembly, one side groove wall of the receiving groove is provided with an air inlet connected with the air outlet of the micro gas pump through an air pipe, and the spray assembly comprises:
[0006] The medicine bottle for containing liquid to be atomized, the inner wall of the bottle mouth of the medicine bottle is uniformly provided with a plurality of first embedding grooves, each first embedding groove is embedded with a first sealing washer formed by a secondary plastic process to tightly connect the first embedding groove and the first sealing washer into one body, the side wall of the medicine bottle away from the bottle mouth is provided with an elastic plug, the groove wall of the receiving groove is provided with a capillary needle tube for penetrating the elastic plug to extend into the medicine bottle and a gas pressure balance hole in communication with the capillary needle tube to balance the gas pressure inside and outside the medicine bottle;
[0007] The atomizing cover is detachably sealed on one end of the bottle mouth of the medicine bottle and provided with an airflow hole in the side wall, the airflow hole is sealingly connected with the inner end hole of the air inlet nozzle, and the atomizing cover is detachably assembled in the receiving groove; and
[0008] The atomizing nozzle assembled in the atomizing cover protrudes from one side of the medicine bottle and has an insertion pipe inserted into the first sealing washer and sealingly connected with the bottle mouth of the medicine bottle, the atomizing cover is provided with a micro nozzle hole for exposing the nozzle of the atomizing nozzle, and high-pressure gas entering the inner cavity of the atomizing cover through the airflow hole flows out from the gap between the micro nozzle hole and the nozzle to promote the atomization of the liquid to be atomized in the nozzle.
[0009] Further, the groove opening of the receiving groove is symmetrically provided with first locking grooves in the inner walls of the opposite sides, the first locking grooves include first axial grooves and first circumferential grooves extending along the axial direction and the circumferential direction of the receiving groove and in communication with each other, the end of the first circumferential groove is provided with a first retreat block, and the outer walls of the opposite sides of the atomizing cover are respectively provided with first locking blocks, the side surface of the first locking block is provided with a first locking groove, the first locking block is inserted into the first locking groove from the first axial groove and positioned by being clamped in the first locking groove by the first retreat block after sliding to the end of the first circumferential groove.
[0010] Further, the inner walls of the opposite sides of the atomizing cover are symmetrically provided with second locking grooves, the second locking grooves include second axial grooves and second circumferential grooves extending along the axial direction and the circumferential direction of the receiving groove and in communication with each other, the end of the second circumferential groove is provided with a second retreat block, and the outer walls of the opposite sides of the bottle mouth of the medicine bottle are respectively provided with second locking blocks, the side surface of the second locking block is provided with a second locking groove, the second locking block is inserted into the second locking groove from the second axial groove and positioned by being clamped in the second locking groove by the second retreat block after sliding to the end of the second circumferential groove.
[0011] Further, the micro nozzle hole is a tapered hole with a gradually decreasing aperture.
[0012] Further, the atomizing cover comprises:
[0013] The outer side surface of the outer cover is concave, and a mounting groove is formed in the outer cover, a mounting hole is arranged in the middle of the mounting groove, the atomizing nozzle is assembled in the mounting groove and is sealingly connected with the mounting hole through the outer side edge, a plurality of through holes are uniformly arranged around the nozzle on the atomizing nozzle, and the airflow hole is arranged on the outer cover.
[0014] A clamping cover is assembled in the mounting groove and covers the outer side surface of the atomizing nozzle, the micro nozzle is arranged in the middle of the clamping cover, the clamping cover covers the outer end opening of each through hole of the atomizing nozzle, and the high-pressure gas in the inner cavity of the outer cover enters the clamping cover through the through hole and then flows out of the micro nozzle on the clamping cover.
[0015] An outer cover plate is screwed to the slot of the mounting groove to clamp and fix the clamping cover to the outer side surface of the atomizing nozzle, and an exposed hole is arranged on the outer cover plate to expose the middle part of the clamping cover.
[0016] Further, a plurality of second embedding grooves are uniformly arranged on the hole wall of the mounting hole, a second sealing gasket formed by a secondary blow molding process is embedded in each second embedding groove to tightly connect the second embedding groove and the second sealing gasket into one body, the outer side wall of the atomizing nozzle is radially protruded to form a positioning convex ring, and the clamping cover is pushed by the outer cover plate to tightly press the positioning convex ring against the second sealing gasket.
[0017] Further, a plurality of third embedding grooves are uniformly arranged around the periphery of one end of the outer cover towards the liquid medicine bottle, a third sealing gasket formed by a secondary blow molding process is embedded in each third embedding groove to tightly connect the third embedding groove and the third sealing gasket into one body, and the third sealing gasket is sealingly pressed against the outer wall of one end of the bottle mouth of the liquid medicine bottle; a fourth embedding groove is arranged around the airflow hole on the outer wall of the outer cover, a plurality of embedding holes are uniformly arranged in the fourth embedding groove, a fourth sealing gasket formed by a secondary blow molding process is embedded in each embedding hole to tightly connect each embedding hole and the fourth sealing gasket into one body, and the fourth sealing gasket is sealingly pressed against the inner end opening of the air inlet nozzle to sealingly connect the airflow hole and the air inlet nozzle.
[0018] Further, a through hole is arranged on one side wall of the comb body where the first comb teeth are arranged, a cabin body is assembled in the accommodating cavity and is buckled on the inner end opening of the through hole from the inside, the inner cavity of the cabin body constitutes the receiving groove, and the through hole constitutes the slot of the receiving groove.
[0019] Further, a plurality of second comb teeth are protruded on the outer side surface of the outer cover plate and arranged around the micro nozzle.
[0020] Further, one side wall of the first comb tooth of the comb body is also provided with a light hole, and the spray care comb further comprises a light assembly assembled in the accommodating cavity and connected with the control assembly, and a light emitting side of the light assembly is arranged opposite to the light hole.
[0021] After the technical scheme is applied, the utility model discloses at least the following beneficial effects: the utility model discloses a receiving groove is arranged on the comb body to receive the spray assembly, which can effectively reduce the occupied space, and the spray assembly can be conveniently disassembled and maintained through the slot of the receiving groove, specifically, the spray assembly comprises a liquid medicine bottle, an atomizing cover and an atomizing nozzle, when the liquid medicine bottle of the spray assembly needs to be replaced, the spray assembly is first disassembled from the receiving groove, then, since the bottle opening of the liquid medicine bottle is formed by a secondary blow molding process and has a first sealing gasket embedded in each first embedding groove, when the first sealing gasket is embedded in the first embedding groove, the first sealing gasket and the bottle opening of the liquid medicine bottle can be integrated and are not easy to fall off, so that when the liquid medicine bottle is disassembled from the spray assembly, the first sealing gasket will not fall off, thereby facilitating assembly and avoiding damage to the first sealing gasket, and when the atomizing nozzle assembled on the atomizing cover is inserted into the inner hole of the first sealing gasket through the connecting pipe, the atomizing nozzle and the bottle opening of the liquid medicine bottle can also be effectively sealed and connected, the sealing effect is good, and the disassembly structure is relatively simple. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a split structure schematic view of an optional embodiment of the spray care comb of the utility model.
[0023] Figure 2 It is an assembly structure schematic view of an optional embodiment of the spray care comb of the utility model.
[0024] Figure 3 It is a split structure schematic view of the spray assembly of an optional embodiment of the spray care comb of the utility model.
[0025] Figure 4 It is a split structure schematic view of the spray assembly of an optional embodiment of the spray care comb of the utility model after being inverted.
[0026] Figure 5 It is a split structure schematic view of the spray assembly and the receiving groove of an optional embodiment of the spray care comb of the utility model.
[0027] Figure 6 It is a split structure schematic view of the spray care comb of the utility model. DETAILED DESCRIPTION
[0028] The application will be further described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be understood that the following illustrative embodiments and descriptions are only used to explain the application and are not intended to limit the application, and the embodiments in the application and the features in the embodiments can be combined with each other without conflict.
[0029] As Figures 1-6 shown, the application provides a spray care comb, which comprises a comb body 1 having a containing cavity 10 and a plurality of first comb teeth 12 on one side, a micro air pump 3 assembled in the containing cavity 10 for supplying high-pressure gas, a spray assembly 5 connected with the micro air pump 3 for spraying under the action of the high-pressure gas supplied by the micro air pump 3, and a control assembly 7 assembled in the containing cavity 10 for controlling the micro air pump 3. One side wall of the comb body 1 is recessed into the containing cavity 10 to form a receiving groove 14 for receiving the spray assembly 5. An air inlet nozzle 141 connected with the air outlet nozzle 30 of the micro air pump 3 through an air pipe is arranged on one side groove wall of the receiving groove 14. The spray assembly 5 comprises:
[0030] A medicine bottle 50 for containing liquid to be atomized. A plurality of first embedding grooves 501 are uniformly arranged on the inner wall of the bottle mouth of the medicine bottle 50. A first sealing gasket 503 formed by a secondary blow molding process is embedded in each first embedding groove 501 to tightly connect the first embedding groove 501 and the first sealing gasket 503 into one body. An elastic rubber plug 505 is arranged on the side wall of the medicine bottle 50 away from the bottle mouth. The groove wall of the receiving groove 14 is provided with a capillary needle tube 143 for penetrating the elastic rubber plug 505 to extend into the medicine bottle 50 and an air pressure balance hole 145 in communication with the capillary needle tube 143 to balance the air pressure inside and outside the medicine bottle 50.
[0031] An atomization cover 52 detachably sealed on one end of the bottle mouth of the medicine bottle 50 and provided with an air flow hole 521 on the side wall. The air flow hole 521 is sealingly connected with the inner end hole of the air inlet nozzle 141. The atomization cover 52 is detachably assembled in the receiving groove 14.
[0032] An atomization nozzle 54 assembled in the atomization cover 52. The atomization nozzle 54 protrudes towards one side of the medicine bottle 50 and has an insertion pipe 541 inserted into the first sealing gasket 503 and sealingly connected with the bottle mouth of the medicine bottle 50. The atomization cover 52 is provided with a micro spray hole 523 for exposing the nozzle 543 of the atomization nozzle 54. The high-pressure gas entering the inner cavity of the atomization cover 52 through the air flow hole 521 flows out from the gap between the micro spray hole 523 and the nozzle 543 to atomize and spray the liquid to be atomized in the nozzle 543.
[0033] The utility model discloses an embodiment through setting the storage groove 1 for accommodating the spray assembly 5 in the comb body 1 can effectively reduce the space occupied, and it is convenient to disassemble and maintain the spray assembly 5 through the slot opening of the storage groove 1, specifically, the spray assembly 5 includes liquid medicine bottle 50, atomization cover 52 and atomization nozzle 54, when needing to replace the liquid medicine bottle 50 of spray assembly 5, by first taking out the spray assembly 5 from the storage groove 14 in integrity, then, since the bottle mouth of liquid medicine bottle 50 is formed with the first sealing washer 503 embedded in each first embedding groove 501 by secondary plastic process, when the first sealing washer 503 is embedded in the first embedding groove 501, the first sealing washer 503 and the bottle mouth of liquid medicine bottle 50 can be integrated and not easy to fall off, so when the liquid medicine bottle 50 is taken off from the spray assembly 5, the first sealing washer 503 will not fall off, thereby facilitating assembly, also avoiding the damage of the first sealing washer 503, and when the atomization nozzle 54 assembled on the atomization cover 52 is inserted into the inner hole of the first sealing washer 503 through the butt joint pipe 541, the atomization nozzle 54 and the bottle mouth of liquid medicine bottle 50 can also be effectively sealed and connected, the sealing effect is good, and the dismounting structure is relatively simple.
[0034] In specific implementation, as shown in the figure, Figure 1 The comb body 1 is formed by buckling a bottom shell 101 and an upper cover 103, one side outer wall of the comb body 1 is assembled with a comb tooth disc, the first comb teeth 12 are arranged on the comb tooth disc, and a pulse element for abutting against the comb tooth disc is further assembled in the accommodating cavity.
[0035] The spray principle of the spray assembly 5 is as follows: when a user installs a new liquid medicine bottle 50 into the storage groove 14, the capillary needle tube 143 in the storage groove 14 will be inserted into the elastic rubber plug 505 and extend into the liquid medicine bottle 50, so that the internal and external air pressures of the liquid medicine bottle 50 are balanced through the communication between the capillary needle tube 143 and the air pressure balance hole 145; when the liquid medicine bottle 50 is disassembled and maintained, the capillary needle tube 143 is pulled out of the elastic rubber plug 505, and the elastic force of the elastic rubber plug 505 automatically blocks the puncture hole, thereby avoiding liquid leakage; when a user needs to use the spray function, the micro-pump 3 is started through the control assembly 7, high-pressure gas is supplied to the air inlet 141 of the storage groove 14 through the air outlet 30 and the air pipe, the high-pressure gas enters the inner cavity of the atomization cover 52 through the airflow hole 521 in sealing connection with the air inlet 141, and then flows out from the gap between the micro-nozzle 523 and the nozzle 543, since the liquid medicine bottle 50 realizes the internal and external air pressure balance through the air pressure balance hole 145, when the high-pressure gas flows out from the gap between the micro-nozzle 523 and the nozzle 543, the liquid with atomization in the nozzle 543 is taken out and atomized and sprayed due to the negative pressure of the high-pressure gas.
[0036] In an optional embodiment of the utility model, as shown in Figure 5 The first locking groove 146 is provided with a first retreat protruding block 146c at the end of the first circumferential groove 146b, and the first locking block 524 of the atomizing cover 52 is provided with a first locking groove 524a on the side surface, and the first locking block 524 is inserted into the first locking groove 146 from the first axial groove 146a and positioned by being clamped in the first locking groove 524a by the first retreat protruding block 146c after sliding to the end of the first circumferential groove 146b. In this embodiment, when the spray assembly 5 is assembled, the first locking block 524 is inserted into the first circumferential groove 146b of the first locking groove 146, and the first retreat protruding block 146c is clamped in the first locking groove 524a, so that the spray assembly 5 and the receiving groove 14 can be quickly and simply detachably assembled.
[0037] In an optional embodiment of the utility model, as shown in Figure 4 The second locking groove 525 is provided with a second retreat protruding block 525c at the end of the second circumferential groove 525b, and the second locking block 506 of the bottle opening of the liquid medicine bottle 50 is provided with a second locking groove 506a on the side surface, and the second locking block 506 is inserted into the second locking groove 525 from the second axial groove 525a and positioned by being clamped in the second locking groove 506a by the second retreat protruding block 525c after sliding to the end of the second circumferential groove 525b. In this embodiment, when the atomizing cover 52 and the liquid medicine bottle 50 are assembled, the second locking block 506 is inserted into the second circumferential groove 525b of the second locking groove 525, and the second retreat protruding block 525c is clamped in the second locking groove 506a, so that the liquid medicine bottle 50 and the atomizing cover 52 can be quickly and simply detachably assembled.
[0038] In an optional embodiment of the utility model, as shown in Figure 6As shown, the micro-injection hole 523 is a tapered hole (for example, a conical hole, a pyramidal hole, etc.) with a gradually decreasing aperture. In this embodiment, the micro-injection hole 523 is a tapered hole with a gradually decreasing aperture, and when high-pressure gas is injected, the gas flow rate can gradually increase, which is beneficial for the atomization and injection of liquid.
[0039] In an optional embodiment of the present application, as shown in Figure 3 、 Figure 4 and Figure 6 , the atomization cover 52 comprises:
[0040] The outer cover body 526 has an installation groove 526a formed on the outer side, and the installation groove 526a is provided with an installation hole 526b in the middle. The atomization nozzle 54 is assembled in the installation groove 526a and is sealingly connected to the installation hole 526b at the outer side edge. A plurality of through holes 545 are uniformly arranged around the nozzle 543 on the atomization nozzle 54, and the airflow hole 521 is arranged on the outer cover body 526.
[0041] The clamping cover 527 is assembled in the installation groove and covers the outer side surface of the atomization nozzle 54. The micro-injection hole 523 is arranged in the middle of the clamping cover 527. The clamping cover 527 covers the outer end of each through hole 545 of the atomization nozzle 54. High-pressure gas in the inner cavity of the outer cover body 526 enters the clamping cover 527 through the through hole 545 and then flows out from the micro-injection hole 523 on the clamping cover 527.
[0042] The outer cover plate 528 is clamped and fixed to the outer side surface of the atomization nozzle 54 by being screwed into the slot of the installation groove 526a. The outer cover plate 528 is provided with an exposed hole 528a for exposing the middle part of the clamping cover 527.
[0043] In this embodiment, the atomization cover 52 is assembled by the outer cover body 526, the clamping cover 527, and the outer cover plate 528. By arranging a plurality of through holes 545 on the atomization nozzle 54, the gas flow of high-pressure gas is facilitated, and the disassembly and maintenance of the atomization nozzle 54 are also facilitated. The overall structure is simple, and the assembly and fixation of the atomization nozzle 54 are effectively realized, which is beneficial for reducing the occupied space of the overall atomization cover 52.
[0044] In an optional embodiment of the present application, as shown in Figure 3 and Figure 4As shown, the hole walls of the mounting hole 526b are uniformly provided with a plurality of second embedding grooves 526c, and each second embedding groove 526c is embedded with a second sealing washer 526d formed by a secondary plastic process to tightly connect the second embedding groove 526c and the second sealing washer 526d into an integrated body. The outer sidewall of the atomizing nozzle 54 is radially protruded to form a positioning convex ring 546, and the clamping cover 527 is pushed by the outer cover plate 528 to tightly press the positioning convex ring 546 against the second sealing washer 526d. In the embodiment, the second embedding groove 526c is arranged in the mounting hole 526b, and the second sealing washer 526d embedded in the second embedding groove 526c is formed by a secondary plastic process in the mounting hole 526b. When the second sealing washer 526d is embedded in the second embedding groove 526c, the second sealing washer 526d and the outer cover body 526 are connected into an integrated body and are not easy to fall off. Therefore, when the atomizing nozzle 54 is detached from the atomizing cover 52, the second sealing washer 526d will not fall off, thereby facilitating assembly and avoiding damage to the second sealing washer 526d. Moreover, the positioning convex ring 546 is arranged in the atomizing nozzle 54 to ensure that the atomizing nozzle 54 can be effectively sealed with the second sealing washer 526d by the pressing action of the clamping cover 527.
[0045] In an optional embodiment of the utility model, as shown in Figure 3 and Figure 4 As shown, the outer cover body 526 is uniformly provided with a plurality of third embedding grooves 526e around the periphery of one end of the outer cover body 526, and each third embedding groove 526e is embedded with a second sealing washer 526f formed by a secondary plastic process to tightly connect the second embedding groove 526e and the second sealing ring 526f into an integrated body. The third sealing washer 526f is sealingly pressed against the outer wall of one end of the bottle mouth of the liquid medicine bottle 50.
[0046] The outer wall of the outer cover body 526 is provided with a fourth embedding groove 521a around the air flow hole 521 and is uniformly provided with a plurality of embedded holes 521b in the fourth embedding groove 521a. Each embedded hole 521b is embedded with a fourth sealing washer 521c formed by a secondary plastic process to tightly connect each embedded hole 521b and the fourth sealing ring 521c into an integrated body. The fourth sealing washer 521c is sealingly pressed against the inner end hole of the air inlet nozzle 141 to sealingly butt joint the air flow hole 521 and the air inlet nozzle 141.
[0047] In the embodiment, based on the same structural principle, a third sealing gasket 526f is arranged at one end of the cover body 526 corresponding to the bottle opening of the liquid medicine bottle 50, and a fourth sealing gasket 521c is arranged outside the cover body 526 corresponding to the air flow hole 521, so that effective sealing of the cover body 526 and the outer wall of the one end of the bottle opening of the liquid medicine bottle 50 and the air inlet nozzle 141 is achieved, and air leakage is avoided. In specific implementation, the third sealing gasket 526f and the fourth sealing gasket 521c can be integrally formed by a secondary blow molding process; in addition, the plurality of air flow holes 521 are symmetrically arranged on the side wall of the cover body 526, so that when the cover body 526 is rotatably assembled in the receiving groove 14, one of the air flow holes 521 can be sealingly connected with the air inlet nozzle 141; of course, it can be understood that the remaining air flow holes 521 are sealingly connected with the inner wall of the receiving groove 14 through the fourth sealing gasket 521c.
[0048] In an optional embodiment of the utility model, as shown in the figure, Figure 1 The comb body 1 is provided with a through hole 15 on one side wall provided with the first comb tooth 12, a cabin body 16 is assembled in the accommodating cavity 10 and buckled on the inner end hole of the through hole 15, the inner cavity of the cabin body 16 constitutes the receiving groove 14, and the through hole 15 constitutes the slot of the receiving groove 14. In the embodiment, the cabin body 16 is assembled in the accommodating cavity 10 and buckled on the inner end hole of the through hole 15, so that the receiving groove 14 can be simply formed on the comb body 1, thereby facilitating the production and manufacturing of the comb body 1.
[0049] In an optional embodiment of the utility model, as shown in the figure, Figure 1 、 Figures 3-6 The outer side of the outer cover plate 528 further protrudes a plurality of second comb teeth 528b arranged around the micro nozzle 523. In the embodiment, the outer side of the outer cover plate 528 is further provided with the second comb teeth 528b, and the second comb teeth 528b can also be used to comb the hair of the user when spraying
[0050] In an optional embodiment of the utility model, as shown in the figure, Figure 1 The side wall of the comb body 1 provided with the first comb tooth 12 is further provided with a light hole 17, the spray care comb further comprises a light assembly 8 assembled in the accommodating cavity 10 and connected with the control assembly 7, and the light emitting side of the light assembly 8 is arranged opposite to the light hole 17. In the embodiment, the light assembly 8 is further arranged, and the light assembly 8 can also emit light to stimulate the scalp through the light hole 1 when spraying, so that light care is achieved. Specifically, the control assembly 7 at least comprises a control circuit board, a control button arranged on the control circuit board and a power supply battery connected with the control circuit board.
[0051] The embodiments of the present application are described above with reference to the drawings; however, the present application is not limited to the specific embodiments described above, but the specific embodiments described above are merely illustrative rather than restrictive, and a person of ordinary skill in the art can make many forms under the inspiration of the present application without departing from the purpose of the present application and the scope protected by the claims, and these all belong to the protection scope of the present application.
Claims
1. A spray-on grooming comb, comprising a comb body having an internal receiving cavity and a plurality of first comb teeth on one side, a miniature air pump assembled within the receiving cavity for supplying high-pressure gas, a spray assembly connected to the miniature air pump for spraying a spray under the action of the high-pressure gas supplied by the miniature air pump, and a control assembly assembled within the receiving cavity for controlling the miniature air pump, characterized in that, One side wall of the comb body is recessed to form a receiving groove in the receiving cavity for receiving the spray assembly, a side groove wall of the receiving groove is provided with an air inlet nozzle connected with the air outlet nozzle of the micro air pump through an air pipe, and the spray assembly comprises: A medicine liquid bottle for containing liquid to be atomized, a plurality of first embedding grooves are uniformly arranged on the inner wall of the bottle mouth of the medicine liquid bottle, a first sealing gasket formed by a secondary plastic process is embedded in each first embedding groove to tightly connect the first embedding groove and the first sealing gasket into an integrated body, the side wall of the medicine liquid bottle away from the bottle mouth is provided with an elastic rubber plug, and the groove wall of the receiving groove is provided with a capillary needle tube corresponding to the elastic rubber plug and an air pressure balance hole in communication with the capillary needle tube for balancing the air pressure inside and outside the medicine liquid bottle, the capillary needle tube is used to pierce the elastic rubber plug and extend into the medicine liquid bottle, and the air pressure balance hole is used to balance the air pressure inside and outside the medicine liquid bottle. An atomization cover is detachably sealed on one end of the bottle mouth of the medicine liquid bottle and provided with an air flow hole in the side wall, the air flow hole is in sealed butt joint with the inner end hole of the air inlet nozzle, and the atomization cover is detachably assembled in the receiving groove. An atomization nozzle is assembled in the atomization cover, one side of the atomization nozzle protrudes towards the medicine liquid bottle and is provided with an insertion pipe inserted into the first sealing gasket and in sealed butt joint with the bottle mouth of the medicine liquid bottle, the atomization cover is provided with a micro nozzle hole for exposing the nozzle of the atomization nozzle, and high-pressure gas entering the inner cavity of the atomization cover through the air flow hole flows out from the gap between the micro nozzle hole and the nozzle to atomize and spray the liquid to be atomized in the nozzle.
2. The spray treatment comb of claim 1, wherein, The groove opening of the receiving groove is respectively and symmetrically provided with a first locking groove in the inner walls of the opposite sides, the first locking groove comprises a first axial groove and a first circumferential groove which respectively extend along the axial direction and the circumferential direction of the receiving groove and are in communication with each other, the end of the first circumferential groove is provided with a first retreat block, the outer walls of the opposite sides of the atomization cover are respectively provided with a first locking block, the side surface of the first locking block is provided with a first locking groove, and the first locking block is inserted into the first locking groove from the first axial groove and positioned by being clamped in the first locking groove by the first retreat block after sliding to the end of the first circumferential groove.
3. The spray grooming comb of claim 1, wherein, The inner walls of the opposite sides of the atomization cover are respectively and symmetrically provided with a second locking groove, the second locking groove comprises a second axial groove and a second circumferential groove which respectively extend along the axial direction and the circumferential direction of the receiving groove and are in communication with each other, the end of the second circumferential groove is provided with a second retreat block, the outer walls of the opposite sides of the bottle mouth of the medicine liquid bottle are respectively provided with a second locking block, the side surface of the second locking block is provided with a second locking groove, and the second locking block is inserted into the second locking groove from the second axial groove and positioned by being clamped in the second locking groove by the second retreat block after sliding to the end of the second circumferential groove.
4. The spray grooming comb of claim 1, wherein, The micro nozzle hole is a tapered hole with a gradually decreasing aperture.
5. The spray grooming comb of claim 1, wherein, The atomization cover comprises: An outer cover body recessed on the outer side surface to form a mounting groove, the middle of the mounting groove is provided with a mounting hole, the atomization nozzle is assembled in the mounting groove and in sealed connection with the mounting hole, a plurality of through holes are uniformly arranged on the atomization nozzle around the nozzle, and the air flow hole is arranged on the outer cover body. A cover is assembled in the mounting groove and covers the outer side of the atomizing nozzle, the micro nozzle is arranged in the middle of the cover, the cover covers the outer end of each through hole of the atomizing nozzle, and high-pressure gas in the inner cavity of the outer cover passes through the through hole into the cover and then flows out of the micro nozzle on the cover. An outer cover plate is screwed to the groove of the mounting groove to clamp and fix the cover on the outer side of the atomizing nozzle, and the outer cover plate is provided with an exposure hole for exposing the middle of the cover.
6. The spray grooming comb of claim 5, wherein, The hole wall of the mounting hole is uniformly provided with a plurality of second embedding grooves, and a second sealing gasket formed by a secondary blow molding process is embedded in each second embedding groove to tightly connect the second embedding groove and the second sealing gasket into one body, the outer side wall of the atomizing nozzle is radially protruded to form a positioning convex ring, and the outer cover plate pushes the cover to tightly press the positioning convex ring on the second sealing gasket.
7. The spray grooming comb of claim 5, wherein, The outer cover is uniformly provided with a plurality of third embedding grooves around the periphery of one end of the outer cover, a third sealing gasket formed by a secondary blow molding process is embedded in each third embedding groove to tightly connect the third embedding groove and the third sealing gasket into one body, and the third sealing gasket is tightly pressed on the outer wall of one end of the bottle mouth of the liquid medicine bottle; a fourth embedding groove is arranged around the airflow hole on the outer wall of the outer cover, and a plurality of embedding holes are uniformly arranged in the fourth embedding groove, a fourth sealing gasket formed by a secondary blow molding process is embedded in each embedding hole to tightly connect each embedding hole and the fourth sealing gasket into one body, and the fourth sealing gasket is tightly pressed on the inner end of the air inlet nozzle to tightly connect the airflow hole and the air inlet nozzle.
8. The spray grooming comb of claim 1, wherein, The comb body is provided with a through hole on the side wall provided with the first comb teeth, a cabin body is assembled in the accommodating cavity and tightly covers the inner end of the through hole, the inner cavity of the cabin body constitutes the receiving groove, and the through hole constitutes the groove of the receiving groove.
9. The spray grooming comb of claim 5, wherein, The outer side of the outer cover plate further protrudes a plurality of second comb teeth arranged around the micro nozzle.
10. The spray grooming comb of claim 1, wherein, The side wall of the comb body provided with the first comb teeth is further provided with a light hole, and the spray care comb further comprises a light assembly assembled in the accommodating cavity and connected with the control assembly, and the light emitting side of the light assembly is arranged opposite to the light hole.