WO2015035647A1 - 一种奶粉盒及快速冲奶组件 - Google Patents

一种奶粉盒及快速冲奶组件 Download PDF

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Publication number
WO2015035647A1
WO2015035647A1 PCT/CN2013/083563 CN2013083563W WO2015035647A1 WO 2015035647 A1 WO2015035647 A1 WO 2015035647A1 CN 2013083563 W CN2013083563 W CN 2013083563W WO 2015035647 A1 WO2015035647 A1 WO 2015035647A1
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WO
WIPO (PCT)
Prior art keywords
milk powder
bottle
milk
box
powder box
Prior art date
Application number
PCT/CN2013/083563
Other languages
English (en)
French (fr)
Inventor
林强
Original Assignee
Lin Qiang
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Lin Qiang filed Critical Lin Qiang
Priority to PCT/CN2013/083563 priority Critical patent/WO2015035647A1/zh
Priority to CN201420141097.3U priority patent/CN203954219U/zh
Priority to DE112014001624.1T priority patent/DE112014001624T8/de
Priority to PCT/CN2014/074063 priority patent/WO2014154136A1/zh
Publication of WO2015035647A1 publication Critical patent/WO2015035647A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J9/00Feeding-bottles in general
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J1/00Containers specially adapted for medical or pharmaceutical purposes
    • A61J1/14Details; Accessories therefor
    • A61J1/20Arrangements for transferring or mixing fluids, e.g. from vial to syringe
    • A61J1/2093Containers having several compartments for products to be mixed
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J1/00Containers specially adapted for medical or pharmaceutical purposes
    • A61J1/14Details; Accessories therefor
    • A61J1/20Arrangements for transferring or mixing fluids, e.g. from vial to syringe
    • A61J1/2003Accessories used in combination with means for transfer or mixing of fluids, e.g. for activating fluid flow, separating fluids, filtering fluid or venting
    • A61J1/202Separating means
    • A61J1/2031Separating means having openings brought into alignment

Definitions

  • This invention relates to an infant feeding product, and more particularly to a milk powder container for use in connecting a baby bottle, and an easy-to-recovery flushing milk assembly using the same. Background technique
  • Parents can quantify the amount of milk powder that the child eats once before feeding the child, and put it into the milk powder box.
  • General parents give the child a milk powder ⁇ % First open the bottle lid, then take out the milk powder box, open the milk powder box lid, pour the milk powder into the warm water bottle, then cover the bottle lid, shake it before you can Give it to your child.
  • the parents are not fully awake at this time, so the cumbersome brewing of milk powder is not only a mess for parents, but also prone to errors.
  • Chinese Patent No. ZL200520016908, 8 proposes a milk powder box for brewing milk powder in a bottle, which is composed of a box body and a ring cover, and the upper and lower sides of the milk powder box are respectively provided with threads and The nipple is connected with the bottle, and the box body and the ring cover are respectively provided with fan-shaped blades, which control whether the milk powder in the milk powder box is poured out and controlled by the rotation angle of the box body and the ring cover, and the gap between the two is misplaced, and the milk powder can be loaded. Rotate to align the openings even if the milk powder falls into the bottle.
  • the object of the present invention is to provide a new milk powder box and a quick milking assembly, which not only simplifies the steps of brewing milk powder, but also makes the milk powder completely isolated from the water in the bottle during the process of being brewed, and is not easy to be used. Residual milk powder.
  • the present invention adopts the following technical solution - the invention discloses a god milk powder box, which is connected between a bottle and a throwing mouth, and has an integral box bottom, wherein the milk powder box is provided with a milk powder placing cavity, In the milk powder holding chamber, a milk powder outlet for the powder in the cavity and the water in the bottle is arranged at the bottom of the milk powder placing chamber, and the integral box bottom and the milk powder placing chamber are relatively rotatable to form a milk powder box.
  • the integral box bottom completely blocks the milk powder outlet at the bottom of the milk powder placing chamber, so that the milk powder is exported In the closed state, the milk powder placement chamber and the integral box bottom together form a space isolated from the 3 ⁇ 4 bottle; when the milk powder box is in the second working position, the powder outlet at the bottom of the milk powder placement chamber is An open state, forming a milk powder passage in which the milk powder placing chamber communicates with the feeding bottle, and forming a milk milk bottle between the milk bottle and the teat when the milk powder box is in the first working position or the second working position Communicates hermetically sealed milk passage.
  • the milk powder box comprises a milk powder box body and a powder box connector
  • the milk powder box connector is connected between the milk powder box body and the bottle, wherein the milk powder box body and the milk powder box connector are Connected by thread or card position.
  • the integral box bottom is integrally formed with the milk powder box connector.
  • the milk powder placement chamber is formed by a partition surrounding a portion of the wall of the milk powder container body.
  • the milk powder placement chamber has a funnel shape.
  • the space formed by the milk powder placing chamber and the integral box bottom is a closed space.
  • a sealing ring is further disposed on the outside of the body of the milk powder container to insulate and seal the body of the powder container from the outside of the powder container.
  • a sealing strip disposed on the partition such that the partition is sealed from the integral bottom contact position when the milk powder container is in the first I: position.
  • the present invention also discloses a rapid milking assembly, including a baby bottle, and a milk powder container as described above.
  • the bottle opening is provided with a bracket and a sealing ring, and the sealing ring is disposed at a joint of the bracket and the bottle opening.
  • the milk powder box provided by the invention has an integral box bottom and is connected between the bottle and the teat.
  • the throwing powder box is provided with a milk powder placement cavity, which can form a space separate from the bottle with the integral box bottom for holding the milk powder. The user does not need to put the milk powder in the isolation space when brewing the milk powder, and then put the appropriate amount of warm water in the bottle, connect the milk powder box and the bottle, and put it into the warm milk device for use.
  • the integral box bottom or the milk powder placing cavity that is, the milk powder passage for forming the powder placing cavity of the milk powder and the milk bottle
  • the milk powder can fall into the bottle; and the bottle can be formed
  • the milk water passage that is connected to the nipple and is sealed from the outside is sealed, so that it can be fed after being shaken, and the operation is extremely simple.
  • the milk powder box comprises a milk powder box body and a milk powder box connector, the two of which are connected by a thread or a card position, wherein the milk powder box body is provided with a milk powder placement chamber, and the integral box bottom and the powder
  • the box connecting body is integrally formed, and the milk powder placing body and the integral box bottom form a space separating from the bottle through the sufficient contact between the milk powder box main body and the milk powder box connecting body, and then the relative rotation can be performed to form the milk powder placing chamber and the bottle communicating with the bottle. Milk powder channel.
  • the sealing members are also added to the joint portions of the respective members, so that the sealing effect of the joint portions of the respective members is better.
  • the present invention implements a feeding milk powder to be brewed, and the milk powder placing chamber is a space isolated from the bottle, and no powder compaction phenomenon occurs;
  • the milk powder box The bottom is a monolithic type, and the water in the bottle can also enter the milk powder placement cavity when the ⁇ bubble is used, so that the milk powder residue does not appear;
  • the milk powder box of the embodiment of the invention is connected with the bottle and the nipple, and is brewed ⁇
  • Simply turning the milk powder placement chamber or the integral box bottom eliminates the need to remove the milk powder box, greatly simplifying the step of brewing the powder.
  • Figure is a perspective exploded view showing the structure of the rapid milking component of the first embodiment of the present invention.
  • Figure 2 is an exploded view of the bottle in the fast ⁇ milk assembly of Figure i.
  • Figure 3 is an exploded view of the milk powder box in the fast milking assembly of Figure 1.
  • Figure 4 is a cross-sectional view showing the main body of the milk powder container of the milk powder container of Figure 3.
  • Figure 5 is a first state diagram of the rapid milking assembly of the first embodiment of the present invention.
  • Figure 6 is a cross-sectional view showing the first state of the rapid milking assembly of the first embodiment of the present invention.
  • Figure ⁇ is a second state of the flash module of the first embodiment of the present invention.
  • FIG. 8 is a cutaway view showing the second state of the rapid milking assembly according to the first embodiment of the present invention.
  • FIG. 9 is a perspective exploded view showing the structure of the second rapid brewing assembly according to the second embodiment of the present invention.
  • Figure 10 is an exploded view of the milk powder box in the ⁇ 9 rapid flushing assembly.
  • Figure i is a cutaway view of the main body of the milk powder container in the milk powder container of Figure 10.
  • FIG. 2 is a first state diagram of the rapid throwing and dispensing assembly of the second embodiment of the present invention.
  • Figure 13 is a cross-sectional view showing the first state of the rapid milking assembly of the second embodiment of the present invention.
  • Figure 14 is a second state diagram of the quick punch assembly of the second embodiment of the present invention.
  • Figure 15 is a cross-sectional view showing the second state of the rapid milking assembly of the second embodiment of the present invention.
  • Embodiment 1 - Embodiment 1 of the present invention discloses a speed-reducing milk-blown component.
  • the fast-washing component includes a 3 ⁇ 4 bottle 1 and a milk powder box 2; as shown in FIG. 2, the bottle i includes a bottle bottle Body 1 bracket 12 and sealing ring 13; as shown in Fig.
  • the milk powder box 2 includes a milk powder box body 21, a milk powder box connecting body 22, a sealing strip 23 and a sealing ring 24, wherein the upper portion of the milk powder box main body 21 is provided with a first connecting portion 211 is coupled with the nipple, and a fourth connecting portion 213 is disposed at a lower portion of the main body of the milk powder container to be coupled with the fifth connecting portion 221 of the milk powder box connecting body 22.
  • the lower portion of the milk powder box connecting body 22 is provided with a second connecting portion 223 and an upper portion of the bottle.
  • the first connecting portion 111 is provided with a joint connection portion. As shown in FIG.
  • the inside of the milk powder container main body 21 forms a milk powder placing chamber A through a partition plate 214 and a part of the wall of the powder box main body 21, and a milk powder placing chamber A is provided at the bottom of the chamber A.
  • the milk powder box connecting body 22 is provided with a unitary bottom 222 which is shaped to match the milk powder outlet 215 of the milk powder placing chamber A.
  • the integral box bottom 222 just completely blocks the milk powder placing chamber A.
  • the powder outlet 215, the milk powder placement chamber A and the integral box bottom 222 form a space isolated from the baby bottle 1, as shown in Fig. 6; the milk powder box body 2 or the milk powder box connector 22 is rotated to form a j3 ⁇ 4 powder placement chamber A
  • the powder passage that communicates with the bottle 1 is as shown in FIG.
  • This embodiment preferably adds three sealing members, namely a sealing ring 13, a sealing strip 23 and a sealing ring. twenty four.
  • the sealing ring 13 is sleeved on the bracket 12, and then placed on the bottle I bottle mouth, and is sealed at the connection between the bottle 1 and the milk powder box 2.
  • the bottle mouth of the bottle 1 and the step 224 of the powder box connector 22 are inverted.
  • the inner wall is in contact with the sealing ring 13 to be sealed.
  • the sealing strip 23 is sleeved on the bottom of the partition 214 in the main body 21 of the milk powder container, and the sealing portion of the partition 2i4 and the integral bottom 222 of the milk powder box connecting body 22 is sealed.
  • the sealing ring 24 is sleeved on the card 212 of the outer ring of the milk powder box main body 21, and is sealed at the contact of the milk powder container main body 21 with the milk powder box connecting body 22.
  • the material of the sealing member in the present embodiment is preferably made of a silicone material.
  • the powder box connecting body 22 is connected to the milk powder box main body 21 until the bottom of the partition 214 on the milk powder box main body 21 (the bottom of the sealing strip 23 when the sealing strip 23 is sheathed) and the integral bottom of the box 222 Upper surface contact;
  • the first state of the milk powder box is shown in Figure 5 and Figure 6. At this time, the milk powder is sealed in the milk powder placement chamber A, and the j3 ⁇ 4 bottle and the 3 ⁇ 4 nozzle form a communication passage which is sealed from the outside and can directly consume the water in the bottle.
  • the milk powder box body 2 After making the above preparations, when it is necessary to brew the milk powder, simply rotate the milk powder box body 2] 180 degrees until the milk powder outlet 215 is fully opened. At this time, the milk powder in the chamber A can be dropped into the 3 ⁇ 4 bottle.
  • the second state of the milk powder box is as shown in FIG. 7 and FIG. 8. After shaking, the milk powder box main body 21 is rotated 180 degrees to the state before brewing the milk powder, that is, the first state of the milk powder box shown in FIGS. 5 and 6. You can feed.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • FIG. 9 is a perspective exploded view of a rapid milking component according to a second embodiment of the present invention.
  • FIG. 10 is an exploded view of a milk powder container according to Embodiment 2 of the present invention
  • FIG. 11 is a second embodiment of the present invention.
  • the main body of the milk powder box is cut away.
  • the difference between the second embodiment and the first embodiment is that the shape of the 3 ⁇ 4 powder placement chamber A of the rapid punching assembly is funnel-shaped, the partition plate 214 is a curved panel, and the upper end of the milk powder placing chamber A and the top of the milk powder box.
  • the port is figured out.
  • the other structure of the flushing module is the same as that of the milking component of the first embodiment, and will not be described herein.
  • the second embodiment there are two differences between the second embodiment and the operation procedure of the milking component of the first embodiment.
  • the powder is placed in the cavity A, and then the milk powder container body 21 and the milk powder box are connected.
  • the milk powder container main body 21 and the milk powder container connecting body 22 are connected first, and then the milk powder is loaded into the milk powder placing chamber A from the upper port of the milk powder container main body 21.
  • the milk powder outlet 215 is completely opened, the milk powder falls into the bottle and shaken, and then rotated 180 degrees to be fed; After the milk powder box body is rotated 180 degrees when the milk powder is brewed, the milk powder outlet 215 is completely opened, and the powder is dropped into the bottle and shaken to be fed, and no need to be rotated.
  • the advantage of the first embodiment is that when the milking component is in the first state, the water in the bottle can still be eaten, and can be used as a throwing tool. When the baby is crying, the warm water can be fed first. , to determine if the baby really needs to drink milk, and then decide if you need to brew 3 ⁇ 4 powder.
  • the advantage of the second embodiment is that the milk powder placing chamber A fully utilizes the space of the milk powder box body 2], so that the space for placing the milk powder in the cavity A is larger, and only need to be screwed once when brewing the milk powder, no need to be screwed back. .
  • the rapid milking component of the present invention can form a 3 ⁇ 4 water passage through which the milk bottle is sealed from the milk powder box to the nipple, and can be directly fed when the milk powder box is connected between the milk bottle and the teat, and the disassembly is omitted. trouble. Therefore, the rapid milking component of the feeding method of the present invention has the advantages of simple structure, simple operation, and difficulty in residual milk powder.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
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Abstract

一种奶粉盒,连接于奶瓶和奶嘴之间使用,设有一奶粉放置腔(A)和整体式盒底(222),奶粉放置腔设置有奶粉出口(215),整体式盒底可挡住奶粉出口以使奶粉放置腔与奶瓶(1)隔离,整体式盒底与奶粉放置腔可相对转动,形成奶粉放置腔与奶瓶连通的奶粉通道,并可形成奶瓶至奶嘴的奶水通道。一种快速冲奶组件,包括奶瓶和所述奶粉盒。该冲奶组件的结构简单,不易残留奶粉,并可以满足喝水和喝奶两种需求。

Description

一种 粉盒及快速冲 i组件 技术领域
本发明涉及一种婴儿喂养 品,尤其涉及一种连接奶瓶使用的奶粉盒, 以及 使用该奶粉盒的操 简便的恢速冲奶组件。 背景技术
目前市场上销售的有筒状格子奶粉盒,父母在喂养孩子之前可以先定量孩子 一次食 ^的奶粉量, 装入奶粉盒。 一般父母给孩子冲泡奶粉^ % 都要先打开奶瓶 盖子, 然后拿出奶粉盒, 打开奶粉盒盖子后将奶粉倒入加好温水的奶瓶, 再将奶 瓶的盖子盖好, 摇匀后才可给孩子食用。 但是当在深夜, 孩子需要喂食时, 此时 父母都处于不完全清醒状态, 这样繁琐的冲泡奶粉歩骤不仅让父母手忙脚乱, 而 且很容易出现差错。
为简化以上繁琐的^泡奶粉步骤, 中国专利文献 ZL200520016908,8提出了 种用于在奶瓶中冲泡奶粉的奶粉盒, 由盒体和环盖组成,奶粉盒的上下 iii均设 有螺纹分别与奶嘴和奶瓶连接,盒体和环盖上分别设有扇形叶片, 其控制奶粉盒 中奶粉是否倒出采用盒体和环盖的旋转角度来控制,两者的关口错位, 即可装入 奶粉, 转动使开口对齐, 即使奶粉落入奶瓶。
但是, 根据以上方案, 有以下两个弊端: 其 ·, 奶粉在奶粉盒中待冲泡时, 由于是四片扇形叶片相互错位使得奶粉在 ^粉盒中,此时奶瓶中的温水的水汽容 易通过上 T扇形叶片的缝隙进入奶粉盒, 从而使得¾粉盒中的奶粉板结; 其二 在实施过程中,由于釆用的是四片扇形叶片由相互错位滑动到相互对齐使得奶粉 落入^瓶, 容易造成^粉残留在上下扇形叶片之间; 其三, 在冲泡奶粉后还需将 该奶粉盒 奶瓶上拆下来, 再重新装上奶嘴配合使用, 增加使用步骤。 发明内容
本发明的目的是为了提供一种新的奶粉盒和快速冲奶组件,不仅简化了冲泡 奶粉的步骤, 而旦使得奶粉在待冲泡过程中与奶瓶中的水处于完全隔离状态, 并 且不易残留奶粉。 为了达到上述目的, 本发明采 以下技术方案- 本发明公开了一神奶粉盒,连接于一奶瓶和一扔嘴之间使用, 具有整体式盒 底, 所述奶粉盒设有一奶粉放置腔, 用于盛放奶粉, 所述奶粉放置腔底部设有一 供¾粉放置腔中的奶粉和奶瓶中的水结合的奶粉出口,所述整体式盒底与所述奶 粉放置腔可相对转动, 形成奶粉盒的第一工作位和第二工作位; 当扔粉盒在所述 第一工作位日 , 所述整体式盒底完全堵住所述奶粉放置腔底部的所述奶粉出口, 使所述奶粉出口为关闭状态,所述奶粉放置腔与所述整体式盒底共同形成与 ¾瓶 隔绝的空间; 当奶粉盒在所述第二工作位时,所述奶粉放置腔底部的所述 ^粉出 口为打开状态, 形成所述奶粉放置腔与所述奶瓶连通的奶粉通道, 并且当所述奶 粉盒处于所述第一工作位或者第二工诈位时,所述奶瓶与所述奶嘴之间形成相连 通与外界隔绝密封的奶水通道。
优选地,所述奶粉盒包括奶粉盒主体和^粉盒连接体,所述奶粉盒连接体连 接于所述奶粉盒主体与所述奶瓶之间,其中所述奶粉盒主体与奶粉盒连接体之间 通过螺纹或者卡位配合连接。
优选地, 所述整体式盒底与所述奶粉盒连接体一体成型。
优选地, 所述奶粉放置腔是由一隔板与奶粉盒主体的部分壁体围绕形成。 优选地, 所述奶粉放置腔的形状为漏斗状。
优选地, 当奶粉盒处于所述第一工作位时,所述奶粉放置腔和所述整体式盒 底形成的空间为密闭空间。
优选地, 还包括一密封环, 设在所述奶粉盒主体的外部, 使^粉盒主体与奶 粉盒连接体接触处与外界隔绝密封。
优选地, 还包括 ·密封条, 设在所述隔板上, 使奶粉盒处于所述第一 I:作位 时所述隔板与所述整体式盒底接触位置密封。
本发明还公开了一种快速冲奶组件,包括奶瓶,还包括如以上所述的奶粉盒。 优选地,所述奶瓶瓶口设有一支架和一密封圈, 所述密封圈设于所述支架与 所述奶瓶瓶口的连接处。
本发明具有以 T有益效果:
本发明提供的奶粉盒, 具有整体式盒底并连接于奶瓶和奶嘴之间使用。扔粉 盒设有一奶粉放置腔,—可与整体式盒底形成与奶瓶隔离的空间用来盛放奶粉,在 用户还不需要冲泡奶粉时先将奶粉放于该隔离空间, 再在奶瓶装入适量的温水, 连接好奶粉盒和奶瓶后放入暖奶器待用。当需要冲泡^粉时, 只需转动整体式盒 底或者奶粉放置腔, 即形成盛放奶粉的^粉放置腔与奶瓶连通的奶粉通道, 奶粉 即可落入奶瓶;并且可形成所述奶瓶与所述奶嘴之间相连通的与外界隔绝密封的 奶水通道, 故摇匀后即可喂食, 操作极其简便。
本发明的优选实施倒中, 奶粉盒包括奶粉盒主体和奶粉盒连接体,其二者通 过螺纹或者卡位配合连接,其中奶粉盒主体设有一个奶粉放置腔, 而整体式盒底 与^粉盒连接体一体成型,通过奶粉盒主体与奶粉盒连接体的充分接触即可使该 奶粉放置腔与整体式盒底形成与奶瓶隔离空间,再进行相对转动即可形成奶粉放 置腔与奶瓶连通的奶粉通道。
本发明优选实施例中,还在各个部件的连接部位均增加了密封部件,使得各 个部件的连接部位的密封效果更佳。
综上所述, 第一, 本发明实施飼中奶粉待冲泡 ', 奶粉放置腔是与奶瓶隔绝 的空间, 不会出现^粉板结现象; 第二, 本发明实施例中, 奶粉盒的盒底为整体 式, 同 奶瓶中的水在) Φ泡时也可进入奶粉放置腔, 故不会出现奶粉残留现象; 第≡, 本发明实施例的奶粉盒与奶瓶和奶嘴连接后, 冲泡^只需转动奶粉放置腔 或者整体式盒底, 无需将奶粉盒取下, 大大简化了冲泡^粉的步骤。 附图说明
图〗是本发明实施例一的快速冲奶组件的结构立体分解示意图。
图 2是图 i中快速) Φ奶组件中的奶瓶爆炸图。
图 3是图 1中快速冲奶组件中的奶粉盒爆炸图。
图 4是图 3中奶粉盒的奶粉盒主体的剖开示意圏。
图 5是本发明实施例一的快速冲奶组件的第一状态图。
图 6是本发明实施例一的快速冲奶组件第一状态时的剖开示意图。
图 Ί是本发明实施例一的快速冲^组件的第二状态圏。
图 8是本发明实施例一的快速冲奶组件第二状态时的割开示意图。
图 9是本发明实施倒二的快速冲奶组件的结构立体分解示意图。
图 10是圏 9快速冲奶组件中的奶粉盒爆炸图。 图 i 是图 10奶粉盒中的奶粉盒主体的剖开示意图。
图】2是本发明实施例二的快速冲扔组件的第一状态图。
图 13是本发明实施例二的快速冲奶组件第一状态^ [的剖开示意图。
图 14是本发明实施例二的快速冲¾组件的第二状态图。
图 15是本发明实施 ^二的快速冲奶组件第二状态时的剖开示意图。
图标号说明; i奶瓶、 2奶粉盒、 i i奶瓶瓶体、 12支架、 13密封圈、 21 奶粉盒主体、 22奶粉盒连接体、 23密封条、 24密封环、 111 第三连接部、 211 第一连接部、 212卡位、 213第四连接部、 214隔板、 215 粉出口、 221第五连 接部、 222整体式盒底、 223第二连接部、 224台阶、 A奶粉放置腔。 具体实施方式
下面对照附圏并结合优选的实施方式对本发明作进一步说明。
实施例一 - 本发明实施例一公开了一种決速冲奶组件,如图 1所示,该快速冲扔组件包 括 ¾瓶 1和奶粉盒 2; 如图 2所示, 奶瓶 i包括奶瓶瓶体 1 支架 12和密封圈 13; 如图 3所示, 奶粉盒 2包括奶粉盒主体 21、 奶粉盒连接体 22、 密封条 23 和密封环 24, 其中奶粉盒主体 21上部设有第一连接部 211与奶嘴配合连接, 奶 粉盒主体下部设有第四连接部 213与奶粉盒连接体 22设有的第五连接部 221配 合连接, 奶粉盒连接体 22下部设有第二连接部 223与奶瓶上部设有的第 连接 部 111配合连接; 如图 4所示, 奶粉盒主体 21内部通过一隔板 214与扔粉盒主 体 21的部分壁体形成一奶粉放置腔 A, 奶粉放置腔 A底部设有一供奶粉放置腔 中的奶粉和奶瓶中的水结合的奶粉出口 215。 如图 3所示, 奶粉盒连接体 22上 设有整体式盒底 222 , 其形状与奶粉放置腔 A的奶粉出口 215配合。
当奶粉盒主体 21与奶粉盒连接体 22连接,直至奶粉盒主体 21上的隔板 214 的底部与整体式盒底 222上表面接触,此时整体式盒底 222正好完全堵住奶粉放 置腔 A的^粉出口 215, 奶粉放置腔 A和整体式盒底 222形成与奶瓶 1隔离的 空间, 如图 6所示; 将奶粉盒主体 2 或者奶粉盒连接体 22转动, 即形成 j¾粉放 置腔 A与奶瓶 1连通的 ^粉通道, 如图 8所示。
本实施例优选增添了三个密封部件, 分别是密封圈 13、 密封条 23和密封环 24。 其中密封圈 13套在支架 12上, 然后置于奶瓶 I瓶口, 在奶瓶 1和奶粉盒 2 连接处起密封 用, 本实施倒中奶瓶 1的瓶口与^粉盒连接体 22的台阶 224内 壁接触, 密封圈 13起密封作 ]¾ ; 密封条 23套于奶粉盒主体 21内的隔板 214底 部, 在隔板 2i4与奶粉盒连接体 22上的整体式盒底 222接触部位起密封作用; 密封环 24套于奶粉盒主体 21外圈的卡位 212处, 在奶粉盒主体 21与奶粉盒连 接体 22的接触处起密封伤用。 需要说明的是, 本实施倒中的密封部件的材质优 选用硅胶材质。
当夜间或者 出需要冲泡奶粉时, 可在闲睱时先做好以下准备: 第一, 先将 奶瓶瓶体 11中装入适量温水, 将密封圈 13套在支架 12上, 然后置于奶瓶 1的 瓶口, 待用; 第二, 将密封条 23和密封环 24分别安装在奶粉盒主体 21的外圈 卡位 212处和隔板 2】4底部, 然后将适量奶粉装入奶粉放置腔 A中, 再将扔粉 盒连接体 22与奶粉盒主体 21连接,直至奶粉盒主体 21上的隔板 214的底部(套 有密封条 23时即为密封条 23的底部)与整体式盒底 222上表面接触; 第≡, 将 扔粉盒 2与奶瓶〗和奶嘴都连接好, 放入恒温暖奶器即可,此时为奶粉盒的第一 状态如图 5和图 6所示。 此时奶粉是密闭在奶粉放置腔 A中, j¾瓶与 ¾嘴之间 形成相连通的与外界隔绝密封的通道, 可直接食用奶瓶中的水。
做好以上准备后, 当需要冲泡奶粉时, 只需将奶粉盒主体 2】旋转 180度至 奶粉出口 215被完全打开, 此时¾粉放置腔 A中的奶粉即可落入¾瓶, 此时为 奶粉盒的第二状态如图 7和图 8所示, 摇匀后再将奶粉盒主体 21回转 180度至 冲泡奶粉前状态即如图 5和 6所示奶粉盒的第一状态, 即可喂食。
实施例二:
如图 9所示, 为本发明实施例二的快速冲奶组件立体分解示意图, 如图 10 所示为本发明实施例二的奶粉盒爆炸图, 如图 11所示为本发明实施例二的奶粉 盒主体剖开示意图。其中实施例二和实施例一的区别在于, 该快速冲¾组件的 ¾ 粉放置腔 A的形状为漏斗状, 其隔板 214为一曲面板, 并且奶粉放置腔 A的上 端与奶粉盒的上端口想通。该冲^组件的其他结构与实施例一的冲奶组件结构相 同, 在此不再赘述。
当夜间或者外出需要冲泡^粉时, 可在闲暇时先做好以下准备: 第一, 先将 奶瓶瓶体 11中装入适量温水, 将密封圈 13套在支架 12上, 然后置于奶瓶瓶口, 待用;第二.,将密封条 23和密封环 24分别安装在奶粉盒主体 2 的外圈卡位 212 处和隔板 214底部,然后将奶粉盒连接体 22与奶粉盒主体 21连接,直至^粉盒 主体 21上的隔板 214的底部 (套有密封条 23时即为密封条 23的底部) 与整体 式盒底 222上表面接触, 再将适量奶粉 奶粉盒主体 21上端口装入奶粉放置腔 A中; 第三, 将奶粉盒 2与扔瓶 1和扔嘴都连接好, 放入恒温暖奶器即可, 此时 为奶粉盒的第一状态如图 12和圏 13所示。
傲好以上准备后, 当需要冲泡奶粉时, 只需将奶粉盒主体 21旋转 i80度至 扔粉出口 2】5被完全打开, 此时奶粉放置腔 A中的扔粉即可落入奶瓶, 同时奶 瓶与奶嘴之间形成与外界隔绝密封的^水通道, 故摇匀后即可喂食,此时为奶粉 盒的第二状态如图 14和图 15所示。
其中, 实施例二与实施^一的冲奶组件操作步骤有两处差别在于; 第—、 实 施例一中先将 ^粉装入^粉放置腔 A中, 然后连接奶粉盒主体 21和奶粉盒连接 体 22; 而实施例二中是先连接好奶粉盒主体 21和奶粉盒连接体 22,然后再将奶 粉从奶粉盒主体 21的上端口装入奶粉放置腔 A中。 第二, 实施例一在冲泡奶粉 时先将奶粉盒主体 21旋转 80度之后, 奶粉出口 215被完全抒开, 奶粉落入奶 瓶中摇匀后, 再回转 180度后进行喂食; 实施例二中在冲泡奶粉时将奶粉盒主体 旋转 180度之后, 奶粉出口 215被完全打开, ^粉落入^瓶中摇匀后即可喂食, 无需再回转。
综上所述, 实施例一的优点在于, 其冲奶组件处于第一状态时, 仍可食用到 扔瓶中的水, 可以当作戒扔工具使用, 在婴儿哭闹时, 可先喂食温水, 判断婴儿 是否真的需要喝奶, 然后再决定是否需要冲泡 ¾粉。 而实施例二的优点在于, 其 奶粉放置腔 A充分利用奶粉盒主体 2】的空间,可以使奶粉放置腔 A的空间更大, 同时冲泡奶粉时只需拧一次即可, 不需回拧。共同地, 本发明实施倒的快速冲奶 组件均可形成奶瓶经过奶粉盒至奶嘴与外界隔绝密封的 ¾水通道,可以在奶粉盒 连接于奶瓶和奶嘴之间时直接喂奶, 而省去拆卸的麻烦。故本发明实施飼的快速 冲奶组件的优点在于结构简单, 操伤简便, 不易残留奶粉。
以上内容是结合具体的优选实施方式对本发明所作的进一步详细说明,不能 认定本发明的具体实施只局限于这些说明。对于本发明所属技术领域的技术人员 来说, 在不脱离本发明构思的前提下, 还可以做出若千等同替代或明显变型, 而 且性能或用途相同, 都应当视为属于本发明的保护范围。

Claims

L 一种奶粉盒, 连接于一奶瓶和一奶嘴之间使用, 具有整体式盒底 (222), 其特征在于,
所述 ¾粉盒 (r) 设有一奶粉放置腔 (A), 所述奶粉放置腔 (A) 底部设有 供奶粉放置腔 (A) 中的奶粉和奶瓶 (1) 中的水结合的奶粉出口 (215), 所 述整体式盒底 (222) 与所述奶粉放置腔 (A) 可相对转动, 形成奶粉盒 (2) 的 第一工作位和第二工作位;
当所述奶粉盒(2)在所述第一工作位时, 所述整体式盒底(222)完全堵住 所述奶粉放置腔 (A) 底部的所述奶粉出口 (215), 使所述奶粉出口 (215) 为 关闭状态, 所述奶粉放置腔(A)与所述整体式盒底(222)共同形成与奶瓶(1) 隔绝的空间:
当所述 ^粉盒 (2) 在所述第二工作位时, 所述奶粉放置腔 (A) 底部的所 述奶粉出口 (215) 为 开状态, 形成所述奶粉放置腔 (A) 与所述奶瓶 (1) 连 通的奶粉通道;
并且当所述奶粉盒 (2) 处于所述第一工作位或者第二工作位时, 所述奶瓶 (1) 与所述奶嘴之间形成相连通与外界隔绝密封的奶水通道。
2. 如权利要求 1所述的奶粉盒, 其特征在于, 所述奶粉盒 (2)包括奶粉盒 主体 (21) 和¾粉盒连接体 (22), 所述 ¾粉盒连接体 (22) 连接于所述奶粉盒 主体 (21) 与所述奶瓶 (1) 之间, 其中所述奶粉盒主体 1) 与奶粉盒连接体
(22) 之间通过螺紋或者卡位配合连接。
3. 如权利要求 2所述的奶粉盒, 其特征在于, 所述整体式盒底 (222) 与所 述奶粉盒连接体 (22) 一体成型。
4. 如权利要求 2或 3所述的奶粉盒, 其特征在于, 所述奶粉放置腔(A)是 由一隔板 (214) 与奶粉盒主体 (21) 的部分壁体围绕形成。
5. 如权利要求 4所述的奶粉盒, 其特征在于, 所述奶粉放置腔(A) 的形状 为漏斗状。
6. 如权利要求 4所述的奶粉盒, 其特征在于, 当奶粉盒 (2) 处于所述第一 工作位时, 所述奶粉放置腔 (A) 和所述整体式盒底 (222) 形成的空间为密闭 空间。
7. 如权利要求 2所述的奶粉盒, 其特征在于, 还包括一密封环 (24), 设在 所述奶粉盒主体 (21) 的外部, 使奶粉盒主体 (21) 与扔粉盒连接体 (22) 接触 处与外界隔绝密封。
8. 如权利要求 4所述的奶粉盒, 其特征在于, 还包括一密封条 (23), 设在 所述隔板 (214) 上, 使^粉盒 (2) 处于所述第一工作位时所述隔板 (214) 与 所述整体式盒底 (222) 接触位置密封。
9. 一种快速冲 ¾组件, 包括奶瓶 (1), 其特征在于, 还包括如权 1 至权 8 任一项所述的奶粉盒 (2)。
10. 如权利要求 9所述的快速冲奶组件, 其特征在于, 所述奶瓶 (1) 瓶口 设有一支架 (12) 和一密封圈 U3), 所述密封圈 (B) 设于所述支架 (12) 与 所述奶瓶 (1) 瓶口的连接处。
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