CN212490790U - Self-rotating feeding bottle - Google Patents
Self-rotating feeding bottle Download PDFInfo
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- CN212490790U CN212490790U CN202021946572.6U CN202021946572U CN212490790U CN 212490790 U CN212490790 U CN 212490790U CN 202021946572 U CN202021946572 U CN 202021946572U CN 212490790 U CN212490790 U CN 212490790U
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- bottle
- bottle body
- handle
- fixing ring
- pull
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Abstract
A self-rotating nursing bottle, comprising: a bottle body; the nipple is fixedly connected to the upper part of the bottle body; the fixing ring is coaxial with the bottle body and limited between the bottle body and the nipple, one side of the fixing ring is connected with the handle, a through hole is formed in the fixing ring, and the fixing ring can rotate relative to the bottle body; the pull-back piece is arranged in a containing cavity formed between the bottle body and the fixing ring, one end of the pull-back piece is connected to the bottle body, and the other end of the pull-back piece penetrates through the through hole to extend out of the bottle body after being wound on the bottle body for at least one circle. Rotation feeding bottle, through the rotation of body towards the nursing bottle of transferring, change and dash in the past and need the hand shake even mode, through the device of pulling the handle, let the interior material of bottle obtain rapidly disperse and dissolve, and produce the bubble very seldom.
Description
Technical Field
The utility model relates to a feeding bottle field of suckleing, concretely relates to rotation feeding bottle.
Background
The feeding bottle is a basic feeding tool for infants, and the performance of the feeding bottle is directly related to the health of the infants.
Investigation finds that the conventional milk brewing method is inconvenient to operate, the milk brewing method can directly influence the brewing effect, and the conventional milk brewing methods are shaking milk brewing and have the following problems: firstly, the air pressure in the feeding bottle is unbalanced by excessively shaking the milk powder and the water to form a large amount of bubbles, the baby can easily choke the trachea due to the suction of too much air, and the excessive bubbles can cause the flatulence and the abdominal pain of the baby to influence the health of the baby; secondly, the milk powder is not uniformly shaken and is not easy to dissolve and digest, and the powdered particles of the milk powder are not fully contacted with water and become a plurality of milk blocks which are 'wet outside and dry inside' and are difficult to drink and digest due to the influence on the solubility of the milk powder when the shaking turns and time are insufficient; thirdly, the feeding bottle is shaken after long-term milk soaking, the hand burden is easy to cause, and the bottle body is easily rubbed, loosened and dropped in the rotating process.
Disclosure of Invention
According to the problem that the background art provided, the utility model provides a rotation feeding bottle solves, it is next right the utility model discloses do further explanation.
A self-rotating nursing bottle, comprising:
a bottle body;
the nipple is fixedly connected to the upper part of the bottle body;
the fixing ring is coaxial with the bottle body and limited between the bottle body and the nipple, one side of the fixing ring is connected with the handle, a through hole is formed in the fixing ring, and the fixing ring can rotate relative to the bottle body;
the pull-back piece is arranged in a containing cavity formed between the bottle body and the fixing ring, one end of the pull-back piece is connected to the bottle body, and the other end of the pull-back piece penetrates through the through hole to extend out of the bottle body after being wound on the bottle body for at least one circle.
Optionally, the pull-back member is a pull strap or cord that rotates the body after the cord is pulled.
Preferably, the pull-back piece includes torsional spring and stay cord, the one end of torsional spring is connected on solid fixed ring, and the other end is connected on the body, the one end of stay cord is connected on the body, and the other end extends to outside the body, behind the pulling stay cord, and stay cord pulling body rotates and forces the torsional spring energy storage of deformation, and the torsional spring resumes drive body antiport when deforming to withdraw the stay cord to accomodating the intracavity, and then carry out the pull next time for the rotation that the body lasts.
Preferably, the pull cord is pulled to an extreme position, at which time the torsion spring has not reached its energy storage limit; on one hand, the torsion spring is prevented from reaching the limit and being fastened on the bottle body within the travel range of manually pulling the pull rope, so that the emergency braking effect on the bottle body is generated, and the mechanical force of large stress is generated, so that the scratch is generated on the surface of the bottle body and even the bottle body is broken; on the other hand, after crossing the limit of stay cord, make the body slowly brake when progressively changing the kinetic energy of body into potential energy, until the body is static or the body braking that will have less kinetic energy is static when the torsional spring reaches the limit, finally by torsional spring antiport body.
Preferably, the fixing ring is further connected with a handle at the through opening, and the drawing and restoring piece extends out of the bottle body and then is connected to the handle; through acting on the handle with indirect effect on the pull recovery piece, the existence of handle makes the pulling pull recovery piece more laborsaving, preferably, the handle is unanimous with the handle profile, can supply its both hands to hold when the infant feeds, moreover, the pull recovery piece is connected on the handle for the pull recovery piece can't be all taken back to accomodating the intracavity.
Preferably, the fixed ring is provided with a clamping groove position at the through hole, a sliding fixed block is arranged on the clamping groove position, the end part of the handle is clamped at the clamping groove position, the end part of the handle is provided with a clamping groove, a clamping bulge is arranged on one side of the fixed block, and after the handle is retracted to the clamping groove position, the fixed block is pushed to slide, so that the clamping bulge is clamped with the clamping groove, and the handle is fixed at the clamping groove position.
Preferably, the bottle also comprises a liquid pumping part which comprises a chuck, a hose and a gravity ball, wherein the chuck is upwards connected with the silica gel suction port of the nipple and downwards connected with the hose, lugs are uniformly distributed on the edge of the chuck, a step surface is arranged on the inner wall of the bottle mouth of the bottle body, and the lugs are borne on the step surface; the hose is downwards connected with a gravity ball, and liquid inlets are densely distributed on the gravity ball; the gravity ball is positioned at the bottom of the bottle body under the self-weight, and when the bottle is sucked, liquid in the bottle body enters the hose from the liquid inlet of the gravity ball and enters the nipple through the chuck, and finally the liquid is fed by the infant.
Has the advantages that: compared with the prior art, rotation feeding bottle dashes through the rotation of body and transfers the feeding bottle, change and dash in the past and need the hand shake even mode, through the device of pulling the handle, let the interior material of bottle obtain disperse rapidly and dissolve, and produce the bubble fewest.
Drawings
FIG. 1: the structure of the utility model is shown schematically;
FIG. 2: the structure of the utility model is shown in an explosion diagram;
FIG. 3: FIG. 1 is a schematic structural view of a liquid pumping part, a nipple and a bottle cap in the middle of the bottle;
in the figure: the bottle comprises a bottle body 1, a step surface 11, a handle 2, a fixing ring 3, a through hole 31, a clamping groove 32, a fixing block 33, a clamping protrusion 331, a drawing return piece 4, a torsion spring 41, a pull rope 42, a handle 5, a clamping groove 51, a liquid pumping part 6, a chuck 61, a lug 611, a hose 62, a gravity ball 63, a nipple 7 and a bottle cap 8.
Detailed Description
A specific embodiment of the present invention will be described in detail with reference to fig. 1-3.
A self-rotating feeding bottle comprises a bottle body 1, wherein a bottle mouth at the upper part of the bottle body 1 is provided with threads, the bottle body 1 is upwards connected with a nipple 7 through the threads, a fixing ring 3 is coaxial with the bottle body 1 and limited between the bottle body 1 and the nipple 7, one side of the fixing ring 3 is connected with a handle 2, and the fixing ring 3 can rotate relative to the bottle body 1; the fixing ring 3 is provided with a through hole 31, a pulling and restoring piece 4 is arranged in a containing cavity formed between the bottle body 1 and the fixing ring 3, one end of the pulling and restoring piece 4 is connected to the bottle body 1, and the other end of the pulling and restoring piece passes through the through hole 31 after being wound around the bottle body 1 for at least one circle and extends out of the bottle body 1.
Solid such as milk powder to be dissolved is added in advance in the bottle body 1, then, solvents such as drinkable water are added, pulling force acting on the pulling and returning piece 4 to pull outwards is applied, the pulling and returning piece 4 wound on the bottle body 1 is gradually pulled out of the bottle body 1, the bottle body 1 connected with the pulling and returning piece is driven to rotate, force between the rotating bottle body 1 and liquid drives the liquid to rotate to form fluid and form vortex, milk powder deposited at the bottom of the bottle is washed into the fluid and dissolved, the generation of bubbles is avoided while the solvent speed is accelerated, bubbles are prevented from being choked to infants, and the feeding safety of the infants is guaranteed.
In one embodiment, the withdrawal and recovery member 4 is a pull strap or cord, which is pulled to rotate the body 1. It is worth explaining that, after stretching to the limit, the body 1 continues to rotate under the effect of inertia and then pulls the rope to the storage cavity, and twines again on the body 1, but because of the resistance effect of the body 1 and the liquid therein, the rope can not be all twined back on the body 1, need artificially rotate the body 1 at this moment and pull the rope into the storage cavity, can not accomplish continuous pull and return piece 4, and then make the rotation of body 1 discontinuous, the operation sense has been reduced.
Based on the defects of the above embodiment, a further embodiment is provided, the pull-back member 4 includes a torsion spring 41 and a pull rope 42, one end of the torsion spring 41 is connected to the fixing ring 3, the other end of the torsion spring is connected to the bottle body 1, one end of the pull rope 42 is connected to the bottle body 1, the other end of the pull rope extends out of the bottle body 1, after the pull rope 42 is pulled, the bottle body 1 is pulled to rotate, the torsion spring 41 is forced to deform and store energy in the rotation process of the bottle body 1, the bottle body 1 is driven to rotate reversely when the torsion spring 41 recovers deformation, the pull rope 42 is retracted into the storage cavity, and then the next pull is performed, so that the bottle body 1 continuously rotates;
it should be noted that, in this embodiment, when the pulling rope 42 is pulled to the extreme position, i.e. the bottle body 1 is manually pulled to the extreme position, the torsion spring 41 does not reach its energy storage limit, i.e. the torsion spring 41 can continue to deform and store energy, so as to prevent the torsion spring 41 from reaching its limit and being fastened on the bottle body 1 within the range of the stroke of manually pulling the pulling rope, thereby generating an emergency braking effect on the bottle body 1, generating a mechanical force with a large stress, and causing scratches on the surface of the bottle body and even breaking the bottle body 1; on the other hand, after the limit of the pulling rope 42 is passed, the kinetic energy of the bottle body 1 is gradually converted into potential energy, and meanwhile, the bottle body 1 is slowly braked until the bottle body 1 is static or the bottle body with smaller kinetic energy is braked and is static when the torsion spring 41 reaches the limit, and finally, the torsion spring 41 reversely rotates the bottle body 1.
The bottle body 1 is made of transparent materials, such as acrylic materials.
The handle 2 and the fixing ring 3 can be integrated into a whole, and can be held by a user when the pull-back piece 4 is pulled or the user eats food.
The nipple 7 is also connected with a bottle cap 8 radially outwards, and the nipple 7 is sealed and protected when the nipple is not used.
The fixing ring 3 is further connected with a handle 5 at the through hole 31, the pull recovery piece 4 extends out of the bottle body 1 and then is connected to the handle 5, the pull recovery piece 4 indirectly acts on the pull recovery piece 4 through acting on the handle 5, the pull recovery piece 4 is more labor-saving to pull due to the existence of the handle, preferably, the handle 5 is consistent with the handle 2 in contour and can be held by both hands of an infant when the infant feeds, and the pull recovery piece 4 is connected to the handle 5, so that the pull recovery piece 4 cannot be completely pulled back into the accommodating cavity.
The fixing ring 3 is provided with a clamping groove position 32 at the through hole 31, a sliding fixing block 33 is arranged on the clamping groove position 32, the end part of the handle 5 is clamped at the clamping groove position 32, a clamping groove 51 is arranged at the end part of the handle, a clamping protrusion 331 is arranged on one side of the fixing block 33, and after the handle 5 is retracted to the clamping groove position 32, the fixing block 33 is pushed to slide, so that the clamping protrusion 331 is clamped with the clamping groove 51, and the handle 5 is fixed at the clamping groove position 32.
The bottle body is characterized by further comprising a liquid pumping part 6 which comprises a chuck 61, a hose 62 and a gravity ball 63, wherein the chuck 61 is upwards connected with a silica gel suction port of the nipple 7 and downwards connected with the hose 62, lugs 611 are uniformly distributed on the edge of the chuck 61, a step surface 11 is arranged on the inner wall of the bottle opening of the bottle body 1, and the lugs 611 are loaded on the step surface 11; the hose 62 is connected with a gravity ball 63 downwards, a liquid inlet is densely distributed on the gravity ball 63, the gravity ball 63 is positioned at the bottom of the bottle body 1 under the self weight, when the bottle is sucked, liquid in the bottle body 1 enters the hose 62 from the liquid inlet of the gravity ball 6, enters the nipple 7 through the chuck 61, and is finally taken by the infant.
Rotation feeding bottle, through the rotation of body towards the nursing bottle of transferring, change and dash in the past and need the hand shake even mode, through the device of pulling the handle, let the interior material of bottle obtain rapidly disperse and dissolve, and produce the bubble very seldom.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (10)
1. A self-rotating nursing bottle is characterized by comprising:
a bottle body (1);
the nipple (7), the nipple (7) is connected on the upper part of the bottle body (1) in a fastening way;
the fixing ring (3) is coaxial with the bottle body (1) and limited between the bottle body (1) and the nipple (7), one side of the fixing ring (3) is connected with the handle (2), a through hole (31) is formed in the fixing ring (3), and the fixing ring (3) can rotate relative to the bottle body (1);
the drawing and returning piece (4) is arranged in a containing cavity formed between the bottle body (1) and the fixing ring (3), one end of the drawing and returning piece (4) is connected to the bottle body (1), and the other end of the drawing and returning piece penetrates through the through hole (31) and extends out of the bottle body (1) after being wound on the bottle body (1) for at least one circle.
2. The spinning feeding bottle of claim 1, wherein: the pulling and recovering piece (4) is a pulling belt or a rope, and after the rope is pulled, the rope pulling belt bottle body (1) rotates.
3. The spinning feeding bottle of claim 1, wherein: withdrawing and returning the piece (4) and including torsional spring (41) and stay cord (42), the one end of torsional spring (41) is connected on solid fixed ring (3), and the other end is connected on body (1), the one end of stay cord (42) is connected on body (1), and the other end extends to outside body (1), pulling stay cord (42) back, and stay cord (42) pulling body (1) rotate and force torsional spring (41) deformation energy storage, and torsional spring (41) resume driving body (1) antiport when deformation to withdraw stay cord (42) to accomodating the intracavity, and then carry out next pull, make the rotation that body (1) lasts.
4. A spinning baby bottle as claimed in claim 3, wherein: the pull rope (42) is pulled to the extreme position, and at the moment, the torsion spring (41) does not reach the energy storage limit.
5. An autorotation baby bottle according to any of claims 1 to 4 wherein: the fixing ring (3) is also connected with a handle (5) at the through hole (31), and the pulling and recovering piece (4) extends out of the bottle body (1) and then is connected to the handle (5); by acting on the pull handle (5) to act indirectly on the pull-back element (4).
6. The spinning baby bottle of claim 5, wherein: fixed ring (3) are provided with draw-in groove position (32) in through hole (31), are provided with gliding fixed block (33) on draw-in groove position (32), the tip joint of handle (5) is in this draw-in groove position (32) department, and its tip is provided with draw-in groove (51), one side of fixed block (33) be provided with card protruding (331), the card is protruding (331) and draw-in groove (51) joint will be fixed handle (5) in draw-in groove position (32) department.
7. The spinning baby bottle of claim 6, wherein: the bottle is characterized by further comprising a liquid pumping part (6) which comprises a chuck (61), a hose (62) and a gravity ball (63), wherein the chuck (61) is upwards connected with a silica gel suction port of the nipple (7) and downwards connected with the hose (62), lugs (611) are uniformly distributed on the edge of the chuck (61), a step surface (11) is arranged on the inner wall of the bottle opening of the bottle body (1), and the lugs (611) are borne on the step surface (11); the hose (62) is connected with a gravity ball (63) downwards, and liquid inlets are densely distributed on the gravity ball (63).
8. The spinning baby bottle of claim 7, wherein: the nipple (7) is also connected with a bottle cap (8) radially outwards.
9. The spinning baby bottle of claim 8, wherein: the bottle body (1) is made of transparent materials.
10. The spinning feeding bottle of claim 1, wherein: the handle (2) and the fixing ring (3) are arranged into an integral structure.
Priority Applications (1)
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CN202021946572.6U CN212490790U (en) | 2020-09-08 | 2020-09-08 | Self-rotating feeding bottle |
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CN202021946572.6U CN212490790U (en) | 2020-09-08 | 2020-09-08 | Self-rotating feeding bottle |
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CN212490790U true CN212490790U (en) | 2021-02-09 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112057346A (en) * | 2020-09-08 | 2020-12-11 | 可优比母婴用品有限公司 | Self-rotating feeding bottle |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112057346A (en) * | 2020-09-08 | 2020-12-11 | 可优比母婴用品有限公司 | Self-rotating feeding bottle |
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