CN221692573U - Head-mounted drug delivery device for promoting hair growth - Google Patents
Head-mounted drug delivery device for promoting hair growth Download PDFInfo
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- CN221692573U CN221692573U CN202323622094.XU CN202323622094U CN221692573U CN 221692573 U CN221692573 U CN 221692573U CN 202323622094 U CN202323622094 U CN 202323622094U CN 221692573 U CN221692573 U CN 221692573U
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- 230000003779 hair growth Effects 0.000 title claims abstract description 12
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- 239000003814 drug Substances 0.000 abstract description 26
- 210000003128 head Anatomy 0.000 abstract description 17
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- 210000004761 scalp Anatomy 0.000 abstract description 11
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- 238000007689 inspection Methods 0.000 description 13
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- 101100233916 Saccharomyces cerevisiae (strain ATCC 204508 / S288c) KAR5 gene Proteins 0.000 description 3
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- 238000001647 drug administration Methods 0.000 description 3
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Abstract
本实用新型涉及头发护理设备领域,公开了用于促进生发头戴式给药装置,包括可戴在头部的头盔体,头盔体包括外壳和设于外壳内并与外壳固定连接的内壳,外壳与内壳之间具有间隙而形成空腔,内壳上设有多个与空腔连通的通孔,通孔中均设有超声波晶片,空腔内设有控制单元,超声波晶片通过导线电连接在控制单元上,且控制单元用于控制超声波晶片振动并发出超声波。通过本实用新型能够解决现有脱发和头发再生治疗的过程中需要手动或使用按摩梳反复按摩头皮所存在的操作繁琐和使用不便的问题。
The utility model relates to the field of hair care equipment, and discloses a head-mounted medication device for promoting hair growth, including a helmet body that can be worn on the head, the helmet body including an outer shell and an inner shell arranged in the outer shell and fixedly connected to the outer shell, a gap between the outer shell and the inner shell to form a cavity, a plurality of through holes connected to the cavity are arranged on the inner shell, ultrasonic chips are arranged in the through holes, a control unit is arranged in the cavity, the ultrasonic chip is electrically connected to the control unit through a wire, and the control unit is used to control the ultrasonic chip to vibrate and emit ultrasonic waves. The utility model can solve the problems of cumbersome operation and inconvenience in use in the existing hair loss and hair regeneration treatment process, which requires manual or repeated massage of the scalp using a massage comb.
Description
技术领域Technical Field
本实用新型涉及头发护理设备技术领域,具体涉及用于促进生发头戴式给药装置。The utility model relates to the technical field of hair care equipment, in particular to a head-mounted medication device for promoting hair growth.
背景技术Background Art
当前,对于脱发的人群而言,广泛采用通过对头部给药的方式来进行脱发及头发再生的治疗,在这过程中,一般是需要先将药物涂抹在头皮上,再反复按摩并刺激头皮,以加快头皮对药物的吸收,并尽可能地使药物被吸收得更充分,进而达到防止脱发和使头发再生的效果。Currently, for people suffering from hair loss, the method of administering medicine to the head is widely used to treat hair loss and hair regrowth. In this process, it is generally necessary to apply the medicine to the scalp first, and then repeatedly massage and stimulate the scalp to speed up the scalp's absorption of the medicine and make the medicine absorbed as fully as possible, thereby achieving the effect of preventing hair loss and regenerating hair.
然而,采用这种操作方式进行脱发和头发再生的治疗时,常常需要通过操作者使用手或按摩梳来进行头皮的反复按摩和刺激,这种操作方式的弊端在于,操作时十分的繁琐,使用非常不便。However, when this operation method is used to treat hair loss and hair regeneration, the operator often needs to use hands or a massage comb to repeatedly massage and stimulate the scalp. The disadvantage of this operation method is that the operation is very cumbersome and inconvenient to use.
实用新型内容Utility Model Content
本实用新型意在提供用于促进生发头戴式给药装置,以解决现有脱发和头发再生治疗的过程中需要手动或使用按摩梳反复按摩头皮所存在的操作繁琐和使用不便的问题。The utility model is intended to provide a head-mounted drug delivery device for promoting hair growth, so as to solve the problems of cumbersome operation and inconvenience in use caused by the need to massage the scalp manually or repeatedly using a massage comb during the existing hair loss and hair regeneration treatment process.
为达到上述目的,本实用新型采用如下技术方案:用于促进生发头戴式给药装置,包括可戴在头部的头盔体,头盔体包括外壳和设于外壳内并与外壳固定连接的内壳,外壳与内壳之间具有间隙而形成空腔,内壳上设有多个与空腔连通的通孔,通孔中均设有超声波晶片,空腔内设有控制单元,超声波晶片通过导线电连接在控制单元上,且控制单元用于控制超声波晶片振动并发出超声波。To achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a head-mounted drug delivery device for promoting hair growth, comprising a helmet body that can be worn on the head, the helmet body comprising an outer shell and an inner shell arranged in the outer shell and fixedly connected to the outer shell, a gap is provided between the outer shell and the inner shell to form a cavity, a plurality of through holes connected to the cavity are provided on the inner shell, ultrasonic chips are provided in the through holes, a control unit is provided in the cavity, the ultrasonic chip is electrically connected to the control unit through a wire, and the control unit is used to control the ultrasonic chip to vibrate and emit ultrasonic waves.
本方案的原理及优点是:本方案在使用时,当在头皮上涂抹上药物后,将本装置佩戴在头部,通过超声波晶片的振动工作,能够对头部进行反复的按摩和刺激,同时,在超声波晶片所产生的超声波诱导作用下,使得药物更有效地渗透进毛囊中,从而促进毛囊对药物的吸收。如此,在涂抹药物后,无需进行手动或使用按摩梳反复按摩和刺激头皮,即可实现对药物的深入给药,使得药物能够被更快吸收,且操作更加简便,使用也更加方便,同时通过超声波晶片对药物的诱导,实现了对药物的更深入更充分更高效的吸收,提高了药物的利用率。空腔用于控制单元的安装,将控制单元隐藏在空腔中,既利于对控制单元上电路结构的防护,又使得装置的外观更加美观。The principle and advantage of this scheme are: when this scheme is used, after applying the medicine on the scalp, the device is worn on the head, and the head can be repeatedly massaged and stimulated through the vibration of the ultrasonic chip. At the same time, under the ultrasonic induction generated by the ultrasonic chip, the medicine can penetrate into the hair follicles more effectively, thereby promoting the hair follicles to absorb the medicine. In this way, after applying the medicine, there is no need to massage and stimulate the scalp repeatedly manually or with a massage comb, so that the medicine can be deeply administered, so that the medicine can be absorbed faster, and the operation is simpler and more convenient to use. At the same time, through the induction of the ultrasonic chip on the medicine, the medicine is absorbed more deeply, fully and efficiently, and the utilization rate of the medicine is improved. The cavity is used for the installation of the control unit, and the control unit is hidden in the cavity, which is beneficial to the protection of the circuit structure on the control unit and makes the appearance of the device more beautiful.
优选的,作为一种改进,超声波晶片滑动设于通孔中,超声波晶片连接有用于驱动超声波晶片向内壳的内侧滑出通孔的调节机构。Preferably, as an improvement, the ultrasonic chip is slidably disposed in the through hole, and the ultrasonic chip is connected to an adjustment mechanism for driving the ultrasonic chip to slide out of the through hole toward the inner side of the inner shell.
通过上述方案,调节机构控制超声波晶片在通孔中滑动,使得在使用设备时,超声波晶片能够从通孔中滑出并与使用者头部表面接触而进行深层次的给药操作,保证对药物的诱导效果,同时在不需要使用设备时,超声波晶片能够滑回通孔中并被收纳起来,从而利于对超声波晶片的防护。Through the above scheme, the adjustment mechanism controls the ultrasonic chip to slide in the through hole, so that when the device is used, the ultrasonic chip can slide out of the through hole and contact the surface of the user's head to perform a deep drug administration operation, thereby ensuring the induction effect of the drug. At the same time, when the device is not needed, the ultrasonic chip can slide back into the through hole and be stored, which is beneficial to the protection of the ultrasonic chip.
优选的,作为一种改进,调节机构包括设于各通孔端部处的可形变层,可形变层为弹性可形变材料制成,可形变层将通孔靠近空腔的端部封闭,调节机构还包括用于调节空腔内气压的压力调节装置。Preferably, as an improvement, the adjustment mechanism includes a deformable layer arranged at the end of each through hole, the deformable layer is made of an elastic deformable material, the deformable layer closes the end of the through hole close to the cavity, and the adjustment mechanism also includes a pressure adjustment device for adjusting the air pressure in the cavity.
通过上述方案,利用压力调节装置对空腔内的气压进行调节,当空腔内的气压增大时,可形变层受到气压作用向通孔内凹陷并延展伸长,从而挤压并推动超声波晶片滑出通孔而进行给药操作;当空腔内的气压减小时,可形变层恢复形变,从而使得超声波晶片在使用者头部的挤压作用下回到通孔中。此外,可形变层将通孔靠近空腔的端部封闭,从而将通孔端部封堵,以避免药物由通孔进入到空腔中而对控制单元造成损坏,起到隔离药液的作用。Through the above scheme, the pressure regulating device is used to regulate the air pressure in the cavity. When the air pressure in the cavity increases, the deformable layer is depressed into the through hole and extends and stretches due to the air pressure, thereby squeezing and pushing the ultrasonic chip out of the through hole to perform the drug administration operation; when the air pressure in the cavity decreases, the deformable layer recovers its deformation, thereby causing the ultrasonic chip to return to the through hole under the squeezing effect of the user's head. In addition, the deformable layer closes the end of the through hole close to the cavity, thereby blocking the end of the through hole to prevent the drug from entering the cavity through the through hole and causing damage to the control unit, thereby isolating the drug solution.
优选的,作为一种改进,内壳的内部设有多个导线孔,导线孔的一端与空腔连通,另一端与通孔的侧壁连通,超声波晶片和控制单元之间连接的导线容置于导线孔中。Preferably, as an improvement, a plurality of wire holes are provided inside the inner shell, one end of the wire hole is connected to the cavity, and the other end is connected to the side wall of the through hole, and the wires connecting between the ultrasonic chip and the control unit are accommodated in the wire holes.
通过上述方案,导线孔用于安装控制单元与超声波晶片之间的导线,使得导线与可形变层得以分别安装,从而避免导线和可形变层之间产生阻碍。Through the above solution, the wire hole is used to install the wire between the control unit and the ultrasonic chip, so that the wire and the deformable layer can be installed separately, thereby avoiding obstruction between the wire and the deformable layer.
优选的,作为一种改进,可形变层的中部与超声波晶片之间固定连接。Preferably, as an improvement, the middle portion of the deformable layer is fixedly connected to the ultrasonic chip.
通过上述方案,如此当可形变层在气压作用下向通孔内凹陷时,可推动超声波晶片滑出通孔而进行给药操作,当可形变层恢复形变时,可同步拉动超声波晶片回到通孔中,从而将超声波晶片收纳起来,以更好地控制超声波晶片运动和给药。Through the above scheme, when the deformable layer is recessed into the through hole under the action of air pressure, the ultrasonic chip can be pushed to slide out of the through hole to perform the drug delivery operation. When the deformable layer restores its deformation, the ultrasonic chip can be synchronously pulled back into the through hole, thereby storing the ultrasonic chip to better control the movement of the ultrasonic chip and drug delivery.
优选的,作为一种改进,导线孔两端均设有密封圈。Preferably, as an improvement, sealing rings are provided at both ends of the wire hole.
通过上述方案,密封圈能够对导向孔进行密封,防止药液进入到导线孔和经由导线孔进入到空腔中,同时密封圈能够保证空腔的封闭环境,更利于压力调节装置对空腔内气压的调节。Through the above scheme, the sealing ring can seal the guide hole to prevent the drug solution from entering the wire hole and entering the cavity through the wire hole. At the same time, the sealing ring can ensure the closed environment of the cavity, which is more conducive to the pressure regulating device to adjust the air pressure in the cavity.
优选的,作为一种改进,通孔靠近使用者头部的一端呈扩口状。Preferably, as an improvement, the end of the through hole close to the user's head is flared.
通过上述方案,使得超声波晶片在回到通孔内时,扩口状的端部能够对超声波晶片的移动进行导向,从而更利于超声波晶片回到通孔中。Through the above solution, when the ultrasonic chip returns to the through hole, the flared end portion can guide the movement of the ultrasonic chip, thereby making it easier for the ultrasonic chip to return to the through hole.
优选的,作为一种改进,外壳上设有检修口,检修口与空腔连通,且检修口上可拆卸设有可将检修口封闭的盖板。Preferably, as an improvement, an inspection port is provided on the shell, the inspection port is communicated with the cavity, and a cover plate that can detachably close the inspection port is provided on the inspection port.
通过上述方案,检修口能够便于对控制单元的检修,盖板将检修口封闭,从而将控制单元隔离保护起来。Through the above solution, the inspection port can facilitate the inspection of the control unit, and the cover plate closes the inspection port, thereby isolating and protecting the control unit.
优选的,作为一种改进,外壳为碳纤维材质。Preferably, as an improvement, the shell is made of carbon fiber material.
通过上述方案,使得给药装置的重量更轻,更便于佩戴使用。Through the above solution, the drug delivery device is lighter and more convenient to wear and use.
附图说明BRIEF DESCRIPTION OF THE DRAWINGS
图1为本实用新型实施例1中给药装置的结构图。FIG1 is a structural diagram of a drug delivery device in Example 1 of the present invention.
图2为本实用新型实施例1中给药装置的剖视图。FIG2 is a cross-sectional view of the drug delivery device in Example 1 of the present invention.
图3为本实用新型实施例1中通孔处的局部放大图。FIG3 is a partial enlarged view of the through hole in Example 1 of the utility model.
图4为本实用新型实施例2中通孔处的局部放大图。FIG. 4 is a partial enlarged view of the through hole in Example 2 of the utility model.
图5为本实用新型实施例2中给药装置的结构图。FIG5 is a structural diagram of the drug delivery device in Example 2 of the present utility model.
具体实施方式DETAILED DESCRIPTION
下面通过具体实施方式进一步详细说明,但本实用新型的实施方式不限于此。若未特别指明,下述实施方式所用的技术手段为本领域技术人员所熟知的常规手段;所用的实验方法均为常规方法;所用的材料、试剂等,均可从商业途径得到。The following is further described in detail through specific implementations, but the implementation of the utility model is not limited thereto. Unless otherwise specified, the technical means used in the following implementations are conventional means well known to those skilled in the art; the experimental methods used are all conventional methods; the materials, reagents, etc. used can all be obtained from commercial channels.
说明书附图中的附图标记包括:头盔体1、外壳11、内壳12、空腔13、控制单元2、通孔3、超声波晶片4、可形变层5、压力调节装置6、密封圈7、盖板8、束缚带9、导线孔10。The reference numerals in the drawings of the specification include: helmet body 1, outer shell 11, inner shell 12, cavity 13, control unit 2, through hole 3, ultrasonic chip 4, deformable layer 5, pressure regulating device 6, sealing ring 7, cover plate 8, restraint belt 9, wire hole 10.
实施例1Example 1
用于促进生发头戴式给药装置,如图1所示,包括可戴在头部的头盔体1和连接在头盔体1上的束缚带9,束缚带9用于将头盔体1固定在使用者头部,从而实现头盔体1的稳定佩戴。The head-mounted drug delivery device for promoting hair growth, as shown in FIG1 , comprises a helmet body 1 that can be worn on the head and a strap 9 connected to the helmet body 1 , wherein the strap 9 is used to fix the helmet body 1 on the user's head, thereby achieving stable wearing of the helmet body 1 .
其中,如图2所示,头盔体1包括外壳11和内壳12,内壳12设于外壳11内,且内壳12的边缘与外壳11的边缘粘接固定在一起,外壳11与内壳12的中部之间具有间隙而形成空腔13,空腔13内设有控制单元2,内壳12上设有多个与空腔13连通的通孔3,结合图3所示,图3中通孔3上方为空腔13、下方为佩戴本装置时使用者的头部,通孔3中均滑动设有超声波晶片4,本实施例中,超声波晶片的直径略小于通孔的孔径,从而使得超声波晶片能够在通孔中运动。超声波晶片4通过导线电连接在控制单元2上,且控制单元2用于控制超声波晶片4振动并发出超声波,控制单元2为现有的控制芯片,具体可采用如PLC控制器或单片机等,同时超声波晶片4可采用压电陶瓷,对于超声波晶片4的工作原理及超声波晶片4与控制单元2之间的具体电路连接关系和连接方式等,均为本领域公知的内容,在此不赘述。As shown in FIG2 , the helmet body 1 includes an outer shell 11 and an inner shell 12. The inner shell 12 is arranged in the outer shell 11, and the edge of the inner shell 12 is bonded and fixed together with the edge of the outer shell 11. There is a gap between the middle parts of the outer shell 11 and the inner shell 12 to form a cavity 13. A control unit 2 is arranged in the cavity 13. The inner shell 12 is provided with a plurality of through holes 3 connected with the cavity 13. As shown in FIG3 , the cavity 13 is located above the through hole 3 and the head of the user when wearing the device is located below the through hole 3. Ultrasonic chips 4 are slidably arranged in the through holes 3. In this embodiment, the diameter of the ultrasonic chip is slightly smaller than the aperture of the through hole, so that the ultrasonic chip can move in the through hole. The ultrasonic chip 4 is electrically connected to the control unit 2 through a wire, and the control unit 2 is used to control the ultrasonic chip 4 to vibrate and emit ultrasonic waves. The control unit 2 is an existing control chip, which can specifically be a PLC controller or a single-chip microcomputer, and the ultrasonic chip 4 can be made of piezoelectric ceramics. The working principle of the ultrasonic chip 4 and the specific circuit connection relationship and connection method between the ultrasonic chip 4 and the control unit 2 are all well known in the art and will not be repeated here.
超声波晶片4还连接有用于驱动超声波晶片4向内壳12的内侧滑出通孔3的调节机构。如图3,调节机构包括设于各通孔3端部处的可形变层5,可形变层5将通孔3靠近空腔13的端部封闭,可形变层5为弹性可形变材料制成,本实施例中采用橡胶制成,具体实施时也可以采用硅胶等可形变材料制作,只要能够保证可形变层5在气压作用下可以发生形变并向通孔中延展伸长即可。结合图2所示,调节机构还包括用于调节空腔13内气压的压力调节装置6,本实施例中的压力调节装置6采用小型充气泵和抽气泵,具体实施时,也可以采用充气抽气一体泵,对于泵的结构和与其他设备间的连接关系及其工作原理等,均为领域内公知的内容,在此不赘述。内壳12的内部还设有多个导线孔10,导线孔10的一端与空腔13连通,另一端与通孔3的侧壁连通,超声波晶片4和控制单元2之间连接的导线容置于导线孔10中,在具体实施时,导线孔10的直径略大于导线直径即可,从而使得导线孔10在容纳导线后,没有多余的或仅仅具有很小的缝隙,以保证压力调节装置6对空腔13内压力的调节效果。同时,容易想到,导线从导线孔10中伸出并容纳于通孔3中的部分有足够的长度来适应超声波晶片4位置的变化,进而保证导线不会阻碍和干扰超声波晶片4的运动,使超声波晶片4能够正常通电工作。The ultrasonic chip 4 is also connected to an adjustment mechanism for driving the ultrasonic chip 4 to slide out of the through hole 3 toward the inner side of the inner shell 12. As shown in FIG3, the adjustment mechanism includes a deformable layer 5 provided at the end of each through hole 3. The deformable layer 5 closes the end of the through hole 3 close to the cavity 13. The deformable layer 5 is made of an elastic deformable material. In this embodiment, it is made of rubber. In specific implementation, it can also be made of deformable materials such as silicone, as long as it can ensure that the deformable layer 5 can be deformed and extended into the through hole under the action of air pressure. As shown in FIG2, the adjustment mechanism also includes a pressure regulating device 6 for regulating the air pressure in the cavity 13. The pressure regulating device 6 in this embodiment adopts a small air pump and an air pump. In specific implementation, an air pump and an air pump can also be used. The structure of the pump, the connection relationship between the pump and other equipment, and its working principle are all well-known in the field and will not be repeated here. The inner shell 12 is also provided with a plurality of wire holes 10, one end of which is in communication with the cavity 13, and the other end is in communication with the side wall of the through hole 3. The wires connecting the ultrasonic chip 4 and the control unit 2 are accommodated in the wire holes 10. In specific implementation, the diameter of the wire holes 10 is slightly larger than the diameter of the wires, so that after accommodating the wires, the wire holes 10 have no excess or only a very small gap, so as to ensure the pressure regulating effect of the pressure regulating device 6 on the pressure in the cavity 13. At the same time, it is easy to imagine that the part of the wire extending from the wire hole 10 and accommodated in the through hole 3 has enough length to adapt to the change of the position of the ultrasonic chip 4, thereby ensuring that the wires will not hinder and interfere with the movement of the ultrasonic chip 4, so that the ultrasonic chip 4 can be powered on and work normally.
本实施例在具体实施时,当使用者头部涂抹好药液后,将本给药装置佩戴在头部上,通过束缚带9将给药装置稳定地固定在头部上,启动压力调节装置6,由于空腔13为封闭环境,压力调节装置6工作将使空腔13内的气压增大,可形变层5在压力挤压作用下向通孔3中凹陷和延展形变而鼓起,并推动超声波晶片4滑出通孔3后与使用者头部接触,同时,控制单元2给超声波晶片4供电并使超声波晶片4工作,超声波晶片4振动并刺激和按摩头皮,同时在超声波晶片4产生的超声波的诱导作用下,药物更深入地进入到头皮毛囊中,使得使用者对药物的吸收更加充分,从而达到更深层次给药的目的,提高药物的利用率。通过直接佩戴本装置即可实现对药物的更高效更充分吸收,操作十分简便。In the specific implementation of this embodiment, after the user has applied the liquid medicine on his head, he wears the drug delivery device on his head, fixes the drug delivery device stably on the head by the binding belt 9, and starts the pressure regulating device 6. Since the cavity 13 is a closed environment, the operation of the pressure regulating device 6 will increase the air pressure in the cavity 13, and the deformable layer 5 will be sunken and extended and deformed into the through hole 3 under the pressure squeezing action, and push the ultrasonic chip 4 to slide out of the through hole 3 and contact the user's head. At the same time, the control unit 2 supplies power to the ultrasonic chip 4 and makes the ultrasonic chip 4 work. The ultrasonic chip 4 vibrates and stimulates and massages the scalp. At the same time, under the induction of the ultrasonic wave generated by the ultrasonic chip 4, the drug enters deeper into the scalp hair follicles, so that the user can absorb the drug more fully, thereby achieving the purpose of deeper drug delivery and improving the utilization rate of the drug. By directly wearing this device, more efficient and sufficient absorption of the drug can be achieved, and the operation is very simple.
可形变层5将通孔3和空腔13分隔,从而避免药物直接由通孔3进入到空腔13中而对控制单元2和其他用电结构造成损坏。The deformable layer 5 separates the through hole 3 and the cavity 13 , thereby preventing the drug from directly entering the cavity 13 through the through hole 3 and causing damage to the control unit 2 and other electrical structures.
完成给药后,压力调节装置6调节空腔13气压减小,可形变层5恢复形变,超声波晶片4在使用者头部的挤压作用下回到通孔3中。After the drug administration is completed, the pressure regulating device 6 adjusts the air pressure in the cavity 13 to decrease, the deformable layer 5 recovers its deformation, and the ultrasonic chip 4 returns to the through hole 3 under the squeezing effect of the user's head.
实际应用时,超声波晶片4可以不用完全从通孔3中滑出,只需要部分滑出即可,只要保证超声波晶片4能够与使用者头皮接触即可,以便于超声波晶片4使用后的复位。In actual application, the ultrasonic chip 4 does not need to be completely slid out of the through hole 3, but only needs to be partially slid out, as long as it is ensured that the ultrasonic chip 4 can contact the user's scalp to facilitate the resetting of the ultrasonic chip 4 after use.
实施例2Example 2
本实施例与实施例1的区别在于,如图4所示,可形变层5的中部与超声波晶片4之间粘接固定,同时,导线孔10两端均设有密封圈7,且通孔3靠近使用者头部的一端呈扩口状。此外,如图5所示,外壳11上设有检修口,检修口与空腔13连通,且检修口上可拆卸设有可将检修口封闭的盖板8。外壳11为碳纤维材质。The difference between this embodiment and the embodiment 1 is that, as shown in FIG4 , the middle of the deformable layer 5 is bonded and fixed to the ultrasonic chip 4, and at the same time, sealing rings 7 are provided at both ends of the wire hole 10, and the end of the through hole 3 close to the user's head is expanded. In addition, as shown in FIG5 , an inspection port is provided on the housing 11, the inspection port is connected to the cavity 13, and a cover plate 8 that can close the inspection port is detachably provided on the inspection port. The housing 11 is made of carbon fiber.
本实施例在具体实施时,由于可形变层5与超声波晶片4之间连接在一起,可形变层5恢复形变时,可直接拉动超声波晶片4滑回至通孔3中,从而使得超声波晶片4更好地复位。密封圈7可防止药液进入到导线孔10中,同时能够保证对空腔13的密封效果,进而保证对空腔13压力调节的效果。通孔3的一端呈扩口状,更有利于超声波晶片4回到通孔3内。通过检修口可对空腔13内的结构进行检修,盖板8可对检修口进行封闭,使得对给药装置的维护更加方便。外壳11采用碳纤维材质,则可以实现给药装置的轻量化,使得设备更加实用。During the specific implementation of this embodiment, since the deformable layer 5 is connected to the ultrasonic chip 4, when the deformable layer 5 recovers its deformation, the ultrasonic chip 4 can be directly pulled back into the through hole 3, so that the ultrasonic chip 4 can be better reset. The sealing ring 7 can prevent the liquid medicine from entering the wire hole 10, and at the same time can ensure the sealing effect of the cavity 13, and then ensure the effect of pressure regulation of the cavity 13. One end of the through hole 3 is flared, which is more conducive to the ultrasonic chip 4 returning to the through hole 3. The structure in the cavity 13 can be inspected through the inspection port, and the cover plate 8 can close the inspection port, making the maintenance of the drug delivery device more convenient. The outer shell 11 is made of carbon fiber material, which can achieve lightweight drug delivery device and make the device more practical.
以上所述的仅是本实用新型的实施例,方案中公知的具体技术方案和/或特性等常识在此未作过多描述。应当指出,对于本领域的技术人员来说,在不脱离本实用新型技术方案的前提下,还可以作出若干变形和改进,这些也应该视为本实用新型的保护范围,这些都不会影响本实用新型实施的效果和专利的实用性。本申请要求的保护范围应当以其权利要求的内容为准,说明书中的具体实施方式等记载可以用于解释权利要求的内容。The above is only an embodiment of the utility model, and the common knowledge such as the known specific technical solutions and/or characteristics in the solution is not described in detail here. It should be pointed out that for those skilled in the art, several deformations and improvements can be made without departing from the technical solution of the utility model, which should also be regarded as the protection scope of the utility model, and these will not affect the effect of the implementation of the utility model and the practicality of the patent. The scope of protection required by this application shall be based on the content of its claims, and the specific implementation methods and other records in the specification can be used to interpret the content of the claims.
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