CN210873112U - Feeding bottle - Google Patents

Feeding bottle Download PDF

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Publication number
CN210873112U
CN210873112U CN201921358345.9U CN201921358345U CN210873112U CN 210873112 U CN210873112 U CN 210873112U CN 201921358345 U CN201921358345 U CN 201921358345U CN 210873112 U CN210873112 U CN 210873112U
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CN
China
Prior art keywords
silica gel
nipple
bottle
hard
convex ring
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Fee Related
Application number
CN201921358345.9U
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Chinese (zh)
Inventor
罗文光
刘正茂
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Guangdong Tonze Electric Co Ltd
Original Assignee
Guangdong Tonze Electric Co Ltd
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
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Application filed by Guangdong Tonze Electric Co Ltd filed Critical Guangdong Tonze Electric Co Ltd
Priority to CN201921358345.9U priority Critical patent/CN210873112U/en
Application granted granted Critical
Publication of CN210873112U publication Critical patent/CN210873112U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a feeding bottle, which comprises a dustproof cover, a silica gel nipple, a hard gel screw cap, a hard gel bottleneck and a silica gel bottle body, wherein the inner side wall of the hard gel screw cap is provided with an internal thread, and the outer side wall of the hard gel bottleneck is provided with an external thread matched with the internal thread; the lower end of the silica gel nipple is connected with the upper end of the hard gel screw cap; the lower end of the hard rubber bottle opening is connected with the upper end of the silica gel bottle body; the upper end of the hard rubber rotary cover is provided with a first convex ring, the first convex ring is provided with a plurality of strip-shaped holes which are communicated with the inside and the outside, and the strip-shaped holes are distributed along the circumferential direction of the first convex ring; the lower end part of the silica gel nipple is wrapped by the first convex ring and is filled in each strip-shaped hole, and the lower end part of the silica gel nipple is connected with the surface of the first convex ring into a whole; the lower extreme of ebonite bottleneck is equipped with the second bulge loop, and the upper end cladding second bulge loop of silica gel body, and the upper end of silica gel body links into an integrated entity with the surface of second bulge loop. The feeding bottle can strengthen the connection between the silica gel and the hard gel, and avoids the loosening between the silica gel and the hard gel.

Description

Feeding bottle
Technical Field
The utility model relates to an infant article, in particular to a feeding bottle.
Background
The existing milk bottle has many parts (generally comprising four independent parts of a nipple, a hard rubber screw cap, a bottle body and a dust cap), is inconvenient to assemble in use, and liquid can contact all the parts of the milk bottle in use and remain in gaps among the parts (particularly the gap between the nipple and the hard rubber screw cap), so that pollution and bacterial growth are caused.
In order to solve the problem, the grant notice number is CN208193303U discloses a wide bore silica gel baby bottle, including feeding bottle lid, nipple and feeding bottle bodice, the feeding bottle lid include the ebonite lid and detain the bit architecture, the nipple include silica gel nipple, fixed feeding bottle bodice helicitic texture ebonite, the feeding bottle bodice include silica gel feeding bottle bodice main part, fixed nipple ebonite helicitic texture ebonite, silica gel feeding bottle bodice main part top is provided with fixed nipple ebonite helicitic texture ebonite, fixed nipple ebonite helicitic texture ebonite and fixed feeding bottle bodice helicitic texture ebonite threaded connection, fixed feeding bottle bodice helicitic texture ebonite sets up in the silica gel nipple lower part, the ebonite lid has been cup jointed to the nipple outside, and detains bit architecture and nipple lower part lock joint. Although above-mentioned fixed feeding bottle bodice helicitic texture ebonite links together with the silica gel nipple among the wide bore silica gel baby's feeding bottle, the equipment is easy, can reduce the clearance that liquid was deposited and was stopped, pollution abatement and bacterial growing, but above-mentioned silica gel nipple and fixed feeding bottle bodice helicitic texture between the ebonite are connected, silica gel feeding bottle bodice main part and the connection between the fixed nipple scleroid helicitic texture ebonite, all be the simple injection moulding between silica gel and the ebonite, do not set up other connection structure, the connection between silica gel and the ebonite is firm inadequately, the phenomenon that silica gel and ebonite pine take off can probably appear in the use.
Disclosure of Invention
The utility model aims to solve the problem that a feeding bottle is provided, this kind of feeding bottle can strengthen being connected between silica gel and the ebonite, avoids taking place the pine to take off between silica gel and the ebonite.
In order to solve the technical problem, the utility model discloses a technical scheme as follows:
a feeding bottle comprises a dustproof cover, a silica gel nipple, a hard gel screw cover, a hard gel bottle mouth and a silica gel bottle body, wherein an inner thread is arranged on the inner side wall of the hard gel screw cover, and an outer thread matched with the inner thread is arranged on the outer side wall of the hard gel bottle mouth; the lower end of the silica gel nipple is connected with the upper end of the hard gel screw cap; the lower end of the hard rubber bottle opening is connected with the upper end of the silica gel bottle body; the method is characterized in that: the upper end of the hard rubber rotary cover is provided with a first convex ring, the first convex ring is provided with a plurality of strip-shaped holes which are communicated with the inside and the outside, and the strip-shaped holes are distributed along the circumferential direction of the first convex ring; the lower end part of the silica gel nipple is wrapped by the first convex ring and is filled in each strip-shaped hole, and the lower end part of the silica gel nipple is connected with the surface of the first convex ring into a whole; the lower extreme of ebonite bottleneck is equipped with the second bulge loop, the upper end cladding second bulge loop of silica gel body, and the upper end of silica gel body links into an integrated entity with the surface of second bulge loop.
The hard rubber screw cap and the hard rubber bottle mouth are made of PPSU (polyphenylene sulfone).
When the silicone nipple is manufactured, a hard rubber rotary cover can be manufactured through injection molding, and then the hard rubber rotary cover is fixed on a rubber coating mold (before the hard rubber rotary cover is fixed on the rubber coating mold, food-grade high-temperature glue can be coated on a first convex ring and dried), wherein the first convex ring is positioned in a mold cavity of the rubber coating mold; and then injecting liquid silica gel into the cavity of the rubber coating mold, filling the cavity of the rubber coating mold with the liquid silica gel to form a silica gel nipple and bonding the silica gel nipple to the first convex ring, filling the strip-shaped holes with the liquid silica gel simultaneously, and cooling and demolding to obtain the integrally connected hard rubber rotary cover and the silica gel nipple. The silica gel material in each bar hole is linked with the silica gel material of the rest part of the silica gel nipple into a whole, and the silica gel material in each bar hole plays the effect of similar rivet for the ebonite spiral cover upper end is connected closely with silica gel nipple lower extreme, in the use, can make the silica gel nipple closely combine together with the ebonite spiral cover.
When the bottle body is manufactured, a hard glue bottle opening can be manufactured through injection molding, and then the hard glue bottle opening is fixed on a rubber coating mold (before the hard glue bottle opening is fixed on the rubber coating mold, food-grade high-temperature glue can be coated on a second convex ring and dried), and the second convex ring is positioned in a mold cavity of the rubber coating mold; and then injecting liquid silica gel into the mold cavity of the rubber coating mold, filling the mold cavity of the rubber coating mold with the liquid silica gel to form a silica gel bottle body, adhering the silica gel bottle body to the second convex ring, and cooling and demolding to obtain the integrally connected hard rubber bottle mouth and the silica gel bottle body.
As the utility model discloses an optimal scheme, be equipped with a plurality of stoppers on the lateral wall of second bulge loop, each stopper distributes along the circumferencial direction of second bulge loop, each stopper of upper end cladding of silica gel body. Each stopper of silica gel material cladding of silica gel body, the up end of each stopper and terminal surface down all bond and have silica gel material, and each stopper plays the effect of similar fixture block for ebonite bottleneck lower extreme and silica gel body upper end are connected closely, in the use, can improve the stretching resistance between silica gel body and the ebonite bottleneck.
As the preferred proposal of the utility model, the sucking head on the silica gel nipple is arranged at the upper end of the silica gel nipple and is positioned at the eccentric position. Through the arrangement, the liquid in the feeding bottle can flow out only by inclining the feeding bottle by a small angle, so that the feeding bottle can be conveniently and comfortably sucked by infants, and the feeding bottle can be completely sucked cleanly without residue.
As the utility model discloses an optimal scheme, be equipped with at least one bleeder vent on the silica gel nipple, be equipped with at least one silica gel permeability cell on the medial surface of silica gel nipple, the same and the one-to-one of quantity of silica gel permeability cell and bleeder vent, the medial surface an organic whole of silica gel permeability cell upper end and silica gel nipple, the upper end and the bleeder vent of silica gel permeability cell communicate with each other, the lower extreme of silica gel permeability cell is equipped with the air inlet gap of normal close. The air holes are arranged so that air can enter the feeding bottle in time in the process of sucking by infants, and the infants can suck out liquid in the feeding bottle smoothly. The normally closed air inlet gap of the silica gel air permeability pipe is similar to a one-way valve structure, and only air is fed but not discharged. When the infant sucks the silica gel nipple, the air inlet gap is opened, and air enters the interior of the silica gel nipple from the air holes, the silica gel vent pipe and the air inlet gap in sequence, so that the silica gel nipple is prevented from being sucked flatly.
As a further preferable aspect of the present invention, the longitudinal section of the lower portion of the silicone vent pipe is V-shaped (the longitudinal section is perpendicular to the length direction of the air inlet gap).
In one specific scheme, two air holes are formed in the silica gel nipple and are respectively positioned on two sides of a sucking head on the silica gel nipple; two silica gel vent pipes are arranged on the inner side surface of the silica gel nipple, and the upper ends of the two silica gel vent pipes are respectively communicated with corresponding vent holes.
As a further preferred scheme of the utility model, be equipped with annular dull polish layer on the lower extreme lateral surface of silica gel nipple. The annular frosting layer can increase the friction between the inner side surface of the dust cover and the silica gel nipple, so that the dust cover can be covered on the silica gel nipple more firmly.
As the preferred scheme of the utility model, be equipped with the bellying on the lateral wall of ebonite spiral cover. When the user unscrews the hard rubber screw cap, the fingers can abut against the protruding parts, so that the user can unscrew the hard rubber screw cap by means of force.
As the preferred scheme of the utility model, be equipped with the dull polish layer on the whole lateral wall of silica gel body. Above-mentioned frosting can make the silica gel body have anti-skidding effect.
As a further preferred scheme of the utility model, be equipped with bellied scale mark on the lateral wall of silica gel body, scale mark and silica gel body integrated into one piece. Usually, the inner side wall of the mold cavity of the encapsulation mold is provided with concave scale marks, and when liquid silica gel is injected into the mold cavity of the encapsulation mold to form a silica gel bottle body, the outer side wall of the silica gel bottle body is also integrally provided with convex scale marks. Through the arrangement, the scale marks can keep good definition for a long time, and the inaccuracy of the brewed milk powder caused by the fuzzy scale marks is avoided.
As the utility model discloses a preferred scheme, be equipped with the depressed part of two relative settings on the lateral wall of shield, the surface of depressed part is the frosting. The two opposite depressed parts are the shaking parts for unscrewing the dust cover by a user, the surface of the depressed part is a frosted surface, so that friction force can be increased, and the dust cover can be unscrewed by the user conveniently.
As the utility model discloses an optimal scheme, be equipped with ring groove on the lateral wall of ebonite spiral cover, the medial surface lower extreme of shield is equipped with the annular card strip, and the annular card strip cooperates with ring groove joint. Through setting up annular card strip and ring groove, make the shield can firmly cover and close on the silica gel nipple.
Compared with the prior art, the utility model, have following advantage:
this kind of feeding bottle passes through the first bulge loop of lower tip cladding ebonite spiral cover upper end of silica gel nipple and fills each bar hole for the lower tip of silica gel nipple links into an integrated entity with the surface of first bulge loop, and the second bulge loop of upper end cladding ebonite bottleneck lower extreme through the silica gel body in addition makes the upper end of silica gel body and the surface of second bulge loop link into an integrated entity, can strengthen being connected between silica gel and the ebonite, avoids taking place the pine to take off between silica gel and the ebonite.
Drawings
FIG. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is a cross-sectional view A-A of FIG. 1;
FIG. 3 is a schematic view showing a disassembled state of the nursing bottle according to the embodiment of the present invention;
FIG. 4 is a schematic view (sectional view) showing a disassembled state of the nursing bottle according to the embodiment of the present invention.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1-4, the feeding bottle in this embodiment includes a dust cap 1, a silicone nipple 2, a hard rubber screw cap 3, a hard rubber bottle mouth 4 and a silicone bottle body 5, wherein an inner side wall of the hard rubber screw cap 3 is provided with an inner thread 31, and an outer side wall of the hard rubber bottle mouth 4 is provided with an outer thread 41 matched with the inner thread 31; the lower end of the silica gel nipple 2 is connected with the upper end of the hard gel screw cap 3; the lower end of the hard rubber bottle mouth 4 is connected with the upper end of the silica gel bottle body 5; the upper end of the hard rubber rotary cover 3 is provided with a first convex ring 32, the first convex ring 32 is provided with a plurality of strip-shaped holes 321 which are through inside and outside, and the strip-shaped holes 321 are distributed along the circumferential direction of the first convex ring 32; the lower end part of the silica gel nipple 2 is wrapped with the first convex ring 32 and is filled in each strip-shaped hole 321, and the lower end part of the silica gel nipple 2 is connected with the surface of the first convex ring 32 into a whole; the lower extreme of hard rubber bottleneck 4 is equipped with second bulge loop 42, and the upper end cladding second bulge loop 42 of silica gel body 5, and the upper end of silica gel body 5 links into an integrated entity with the surface of second bulge loop 42. A plurality of limit blocks 421 are arranged on the outer side wall of the second convex ring 42, each limit block 421 is distributed along the circumferential direction of the second convex ring 42, and each limit block 421 is coated on the upper end part of the silica gel bottle body 5. Each stopper 421 of silica gel material cladding of silica gel body 5, the up end of each stopper 421 all bonds with terminal surface down and has the silica gel material, and each stopper 421 plays the effect of similar fixture block for 4 lower extremes of ebonite bottleneck are closely connected with 5 upper ends of silica gel body, in the use, can improve the stretching resistance between silica gel body 5 and ebonite bottleneck 4.
The hard rubber screw cap 3 and the hard rubber bottle mouth 4 are both made of PPSU (polyphenylene sulfone).
The sucking head 21 on the silica gel nipple 2 is arranged at the upper end of the silica gel nipple 2 and is in an eccentric position. Through the arrangement, the liquid in the feeding bottle can flow out only by inclining the feeding bottle by a small angle, so that the feeding bottle can be conveniently and comfortably sucked by infants, and the feeding bottle can be completely sucked cleanly without residue.
Two air holes 22 are arranged on the silica gel nipple 2, and the two air holes 22 are respectively positioned on two sides of the sucking head 21 on the silica gel nipple 2; be equipped with two silica gel permeability cells 23 on the medial surface of silica gel nipple 2, silica gel permeability cell 23 is the same and the one-to-one with bleeder vent 22's quantity, and silica gel permeability cell 23 upper end and silica gel nipple 2's medial surface body coupling, the upper end of silica gel permeability cell 23 communicates with each other with bleeder vent 22, and the lower extreme of silica gel permeability cell 23 is equipped with the air inlet gap 231 of normally closed. The air holes 22 are provided to allow air to enter the bottle in time during the sucking process of the infant, so that the infant can smoothly suck out the liquid in the bottle. The normally closed air inlet gap 231 of the silica gel vent pipe 23 is similar to a one-way valve structure, and only air is introduced and not discharged. When the infant sucks the silicone nipple 2, the air inlet gap 231 is opened, and air enters the silicone nipple 2 from the air holes 22, the silicone vent pipe 23 and the air inlet gap 231 in sequence, so that the silicone nipple 2 is prevented from being sucked flatly. The longitudinal cross-section of the lower portion of the silicone vent tube 23 is V-shaped (the longitudinal cross-section is perpendicular to the longitudinal direction of the air inlet slit 231).
An annular frosting layer 24 is arranged on the outer side surface of the lower end of the silica gel nipple 2. The annular frosting layer 24 can increase the friction force between the inner side surface of the dust cover 1 and the silica gel nipple 2, so that the dust cover 1 can be covered on the silica gel nipple 2 more firmly.
The outer side wall of the hard rubber rotary cover 3 is provided with a convex part 33. When the user unscrews the hard rubber screw cap 3, the fingers can abut against the convex part 33, so that the user can unscrew the hard rubber screw cap 3 by means of force.
A frosting layer (not marked in the figure) is arranged on the whole outer side wall of the silica gel bottle body 5. The frosting layer can enable the silica gel bottle body 5 to have an anti-skidding effect.
The outer side wall of the silica gel bottle body 5 is provided with raised scale marks (not marked in the figure), and the scale marks and the silica gel bottle body 5 are integrally formed. Usually, the inner side wall of the mold cavity of the encapsulation mold is provided with concave scale marks, and when the liquid silica gel is injected into the mold cavity of the encapsulation mold to form the silica gel bottle body 5, the outer side wall of the silica gel bottle body 5 is also integrally provided with convex scale marks. Through the arrangement, the scale marks can keep good definition for a long time, and the inaccuracy of the brewed milk powder caused by the fuzzy scale marks is avoided.
Two opposite concave parts 11 are arranged on the outer side wall of the dustproof cover 1, and the surface of each concave part 11 is a frosted surface. The two oppositely arranged concave parts 11 are the handle parts for unscrewing the dust cap 1 by a user, and the concave parts 11 with the frosted surfaces can increase friction force, so that the dust cap 1 can be conveniently unscrewed by the user.
The outer side wall of the hard rubber spiral cover 3 is provided with an annular clamping groove 34, the lower end of the inner side surface of the dustproof cover 1 is provided with an annular clamping strip 12, and the annular clamping strip 12 is in clamping fit with the annular clamping groove 34. Through setting up annular card strip 12 and annular card groove 34, make shield 1 can firmly cover and close on silica gel nipple 2.
When the silicone nipple 2 is manufactured, the hard rubber rotary cover 3 can be manufactured through injection molding, and then the hard rubber rotary cover 3 is fixed on the rubber coating mold (before the hard rubber rotary cover 3 is fixed on the rubber coating mold, food-grade high-temperature glue can be coated on the first convex ring 32 and dried), and the first convex ring 32 is positioned in the mold cavity of the rubber coating mold; and then injecting liquid silica gel into the cavity of the rubber coating mold, wherein the liquid silica gel fills the cavity of the rubber coating mold to form the silica gel nipple 2 and enables the silica gel nipple 2 to be bonded to the first convex ring 32, the liquid silica gel simultaneously fills the strip-shaped holes 321, and the hard rubber rotary cover 3 and the silica gel nipple 2 which are integrally connected are obtained after cooling and demolding. The silica gel material in each bar hole 321 is connected with the silica gel material of the rest of the silica gel nipple 2 into a whole, and the silica gel material in each bar hole 321 plays a role similar to a rivet, so that the upper end of the hard gel screw cap 3 is tightly connected with the lower end of the silica gel nipple 2, and the silica gel nipple 2 and the hard gel screw cap 3 can be tightly combined together in the using process.
When the bottle body is manufactured, the hard glue bottle mouth 4 can be manufactured through injection molding, and then the hard glue bottle mouth 4 is fixed on the encapsulation mold (before the hard glue bottle mouth 4 is fixed on the encapsulation mold, food-grade high-temperature glue can be coated on the second convex ring 42 and dried), and the second convex ring 42 is positioned in the mold cavity of the encapsulation mold; and then injecting liquid silica gel into the mold cavity of the rubber coating mold, filling the mold cavity of the rubber coating mold with the liquid silica gel to form a silica gel bottle body 5, adhering the silica gel bottle body 5 to the second convex ring 42, and cooling and demolding to obtain the integrally connected hard rubber bottle mouth 4 and silica gel bottle body 5.
In addition, it should be noted that the names of the parts and the like of the embodiments described in the present specification may be different, and all the equivalent or simple changes made according to the structure, the features and the principle of the present invention are included in the protection scope of the present invention. Various modifications, additions and substitutions may be made by those skilled in the art without departing from the scope of the invention as defined in the accompanying claims.

Claims (10)

1. A feeding bottle comprises a dustproof cover, a silica gel nipple, a hard gel screw cover, a hard gel bottle mouth and a silica gel bottle body, wherein an inner thread is arranged on the inner side wall of the hard gel screw cover, and an outer thread matched with the inner thread is arranged on the outer side wall of the hard gel bottle mouth; the lower end of the silica gel nipple is connected with the upper end of the hard gel screw cap; the lower end of the hard rubber bottle opening is connected with the upper end of the silica gel bottle body; the method is characterized in that: the upper end of the hard rubber rotary cover is provided with a first convex ring, the first convex ring is provided with a plurality of strip-shaped holes which are communicated with the inside and the outside, and the strip-shaped holes are distributed along the circumferential direction of the first convex ring; the lower end part of the silica gel nipple is wrapped by the first convex ring and is filled in each strip-shaped hole, and the lower end part of the silica gel nipple is connected with the surface of the first convex ring into a whole; the lower extreme of ebonite bottleneck is equipped with the second bulge loop, the upper end cladding second bulge loop of silica gel body, and the upper end of silica gel body links into an integrated entity with the surface of second bulge loop.
2. The baby bottle of claim 1, wherein: the lateral wall of the second convex ring is provided with a plurality of limiting blocks, each limiting block is distributed along the circumferential direction of the second convex ring, and the upper end part of the silica gel bottle body is coated with each limiting block.
3. The baby bottle of claim 1, wherein: the sucking head on the silica gel nipple is arranged at the upper end of the silica gel nipple and is in an eccentric position.
4. The baby bottle of claim 1, wherein: the novel nipple is characterized in that at least one air hole is formed in the silica gel nipple, at least one silica gel vent pipe is arranged on the inner side face of the silica gel nipple, the silica gel vent pipes correspond to the air holes in the same number and in a one-to-one correspondence mode, the upper end of each silica gel vent pipe is integrally connected with the inner side face of the silica gel nipple, the upper end of each silica gel vent pipe is communicated with the air hole, and the lower end of each silica gel vent pipe is.
5. The baby bottle of claim 4, wherein: the longitudinal section of the lower part of the silica gel vent pipe is V-shaped.
6. The baby bottle of claim 4, wherein: and an annular frosting layer is arranged on the outer side surface of the lower end of the silica gel nipple.
7. The baby bottle of claim 1, wherein: and the outer side wall of the hard rubber spiral cover is provided with a convex part.
8. The baby bottle of claim 1, wherein: a frosted layer is arranged on the whole outer side wall of the silica gel bottle body; the outer side wall of the silica gel bottle body is provided with raised scale marks, and the scale marks and the silica gel bottle body are integrally formed.
9. The baby bottle of claim 1, wherein: the outer side wall of the dustproof cover is provided with two opposite concave parts, and the surfaces of the concave parts are frosted surfaces.
10. The baby bottle of claim 1, wherein: be equipped with ring groove on the lateral wall of ebonite spiral cover, the medial surface lower extreme of shield is equipped with annular card strip, and annular card strip and ring groove joint cooperation.
CN201921358345.9U 2019-08-21 2019-08-21 Feeding bottle Expired - Fee Related CN210873112U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921358345.9U CN210873112U (en) 2019-08-21 2019-08-21 Feeding bottle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921358345.9U CN210873112U (en) 2019-08-21 2019-08-21 Feeding bottle

Publications (1)

Publication Number Publication Date
CN210873112U true CN210873112U (en) 2020-06-30

Family

ID=71327873

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921358345.9U Expired - Fee Related CN210873112U (en) 2019-08-21 2019-08-21 Feeding bottle

Country Status (1)

Country Link
CN (1) CN210873112U (en)

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Granted publication date: 20200630