CN103417384A - Feeder - Google Patents

Feeder Download PDF

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Publication number
CN103417384A
CN103417384A CN2012101580965A CN201210158096A CN103417384A CN 103417384 A CN103417384 A CN 103417384A CN 2012101580965 A CN2012101580965 A CN 2012101580965A CN 201210158096 A CN201210158096 A CN 201210158096A CN 103417384 A CN103417384 A CN 103417384A
Authority
CN
China
Prior art keywords
connector
feeder
valve block
food
connecting portion
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.)
Pending
Application number
CN2012101580965A
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Chinese (zh)
Inventor
劳富文
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
DONGGUAN KIDSME INDUSTRIAL Co Ltd
Dongguan Kidsme Trading Co Ltd
Original Assignee
DONGGUAN KIDSME INDUSTRIAL 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
Publication date
Application filed by DONGGUAN KIDSME INDUSTRIAL Co Ltd filed Critical DONGGUAN KIDSME INDUSTRIAL Co Ltd
Priority to CN2012101580965A priority Critical patent/CN103417384A/en
Priority to PCT/CN2012/084751 priority patent/WO2013174110A1/en
Publication of CN103417384A publication Critical patent/CN103417384A/en
Pending legal-status Critical Current

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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
    • A61J9/005Non-rigid or collapsible feeding-bottles
    • 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
    • A61J11/00Teats
    • A61J11/001Teats having means for regulating the flow rate
    • A61J11/0015Teats having means for regulating the flow rate by size or shape of the opening
    • 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
    • A61J11/00Teats
    • A61J11/04Teats with means for fastening to bottles

Abstract

The invention discloses a feeder. The feeder comprises a feeding assembly, a second connecting piece and a food leading-in assembly. The feeding assembly comprises a first connecting piece and a suction nozzle; the food leading-in assembly comprises a third connecting piece and a food container; the second connecting piece is located between the first connecting piece and the third connecting piece and is respectively connected with the first connecting piece and the third connecting piece; the second connecting piece is provided with a channel communicating the suction nozzle and the food container; a first side of the first connecting is provided with a first connecting portion, a first side of the second connecting piece is provided with a second connecting portion, and a first side of the third connecting portion is provided with a third connecting portion; the second connecting portion is hinged to the first connecting portion through a first pin shaft; the second connecting portion is hinged to the third connecting portion through a second pin shaft; a second side of the first connecting piece, a second side of the second connecting piece and a second side of the third connecting piece are buckled through buckles. Because the feeding assembly and the food leading-in assembly can be independently rotated and opened relative to the second connecting piece, the feeder can be more easily and more conveniently operated.

Description

A kind of feeder
Technical field
The present invention relates to a kind of feeder, more particularly, relate to the feeder that a kind of baby or inconvenience feed personage use.
Background technology
Baby or the personage of being inconvenient to take food, for example some disabilities, old age or sufferer personage, during the liquid food such as milk, beverage, can complete by feeding bottle on the feed.But, when some fruit that are cut into small pieces of feed, such as pears, Fructus Mali pumilae etc., or when feed vegetable, fruit jelly, Yoghourt and meat paste etc., feeding bottle just can't be suitable for.
Summary of the invention
The object of the present invention is to provide a kind of feeder, can help the baby or the personage feed of being inconvenient to take food as foods such as fruit, fruit jelly, Yoghourt, fish, meat.
The technical solution adopted for the present invention to solve the technical problems is: construct a kind of feeder, comprising:
The feeding assembly, described feeding assembly comprises the first connector and suction nozzle, and the upper end of described suction nozzle is arranged on described the first connector, and the upper end of described suction nozzle is opening, and the surface of lower end is provided with at least one and sucks hole;
The second connector;
Food imports assembly, and described food imports assembly and comprises the 3rd connector and food container, and the lower end of described food container is arranged on described the 3rd connector, and the lower end of described food container is opening;
Described the second connector, between described the first connector and the 3rd connector, and is connected with the 3rd connector with described the first connector respectively, and described the second connector has the passage that is communicated with described suction nozzle and food container;
The first side of described the second connector has the second connecting portion, the first side of described the first connector has the first connecting portion, the first side of described the 3rd connector has the 3rd connecting portion, described the second connecting portion and the first connecting portion are hinged by the first bearing pin, and described the second connecting portion and the 3rd connecting portion are hinged by the second bearing pin; The second side of described the first connector, the second connector and the 3rd connector fastens by buckle.
In feeder of the present invention, described passage is provided with valve block, and described valve block has the valve opening passed through for food.
In feeder of the present invention, described valve block is fixedly connected on described the second connector.
In feeder of the present invention, described valve block is dismountable to be arranged on described the second connector.
In feeder of the present invention, the inwall of described passage is provided with for placing the ring-shaped step of described valve block, and described ring-shaped step is positioned at upper end, lower end or the middle part of described passage.
In feeder of the present invention, have the slot that inserts described passage for described valve block on the conduit wall of described passage, described slot runs through described conduit wall.
In feeder of the present invention, have the draw-in groove snapped in for described valve block on the conduit wall of described passage, described draw-in groove and described slot are oppositely arranged.
In feeder of the present invention, the cross section of described valve opening is strip, and the width of described strip is diminished to centre gradually by two ends.
In feeder of the present invention, the cross section of described valve opening comprises the strip that two or more pieces intersects.
In feeder of the present invention, described valve opening comprises a plurality of through holes that are arranged on described valve block.
In feeder of the present invention, described valve block is made by hard or elastomeric material.
In feeder of the present invention, the first side of described the first connector, the second connector and the 3rd connector is hinged by hinge, and the second side of described the first connector, the second connector and the 3rd connector fastens by buckle.
In feeder of the present invention, the first side of described the second connector has the second connecting portion, the first side of described the first connector has the first connecting portion, the first side of described the 3rd connector has the 3rd connecting portion, described the second connecting portion and the first connecting portion are hinged by the first bearing pin, and described the second connecting portion and the 3rd connecting portion are hinged by the second bearing pin.
Implement feeder of the present invention, have following beneficial effect: the second connector of feeder of the present invention imports the assembly chain connection with feeding assembly and food respectively, the three connects together, the feeding assembly imports with food relative the second connector rotating opening that assembly can be independent, makes the operation of feeder more simple and convenient.
The accompanying drawing explanation
Below in conjunction with drawings and Examples, the invention will be further described, in accompanying drawing:
Fig. 1 is the decomposing schematic representation of the first embodiment of feeder of the present invention;
Fig. 2 installs the schematic diagram of valve block in the first embodiment of feeder of the present invention;
Fig. 3 is the schematic diagram of the first embodiment in open mode of feeder of the present invention;
Fig. 4 is the schematic perspective view of the first embodiment of feeder of the present invention;
Fig. 5 a installs the schematic diagram of valve block in the second embodiment of feeder of the present invention;
Fig. 5 b is the schematic diagram of the second embodiment in open mode of feeder of the present invention;
Fig. 6 a installs the schematic diagram of valve block in the 3rd embodiment of feeder of the present invention;
Fig. 6 b is the schematic diagram of the 3rd embodiment in open mode of feeder of the present invention;
Fig. 7 a installs the schematic diagram of valve block in the 4th embodiment of feeder of the present invention;
Fig. 7 b is the schematic diagram of the 4th embodiment in open mode of feeder of the present invention;
Fig. 8 a installs the schematic diagram of valve block in the 5th embodiment of feeder of the present invention;
Fig. 8 b is the schematic diagram of the 5th embodiment in open mode of feeder of the present invention;
Fig. 9 a installs the schematic diagram of valve block in the 6th embodiment of feeder of the present invention;
Fig. 9 b is the schematic diagram of the 6th embodiment in open mode of feeder of the present invention;
Figure 10 a installs the schematic diagram of valve block in the 7th embodiment of feeder of the present invention;
Figure 10 b is the schematic diagram of the 7th embodiment in open mode of feeder of the present invention;
Figure 11 a installs the schematic diagram of valve block in the 8th embodiment of feeder of the present invention;
Figure 11 b is the schematic diagram of the 8th embodiment in open mode of feeder of the present invention;
Figure 12 a installs the schematic diagram of valve block in the 9th embodiment of feeder of the present invention;
Figure 12 b is the schematic diagram of the 9th embodiment in open mode of feeder of the present invention;
Figure 13 a installs the schematic diagram of valve block in the tenth embodiment of feeder of the present invention;
Figure 13 b is that the tenth embodiment valve block of feeder of the present invention is inserted into the schematic diagram in the second connector process;
Figure 13 c is the schematic diagram after the tenth embodiment middle valve plate of feeder of the present invention is encased in connector;
Figure 14 a installs the schematic diagram of valve block in the 11 embodiment of feeder of the present invention;
Figure 14 b is that the 11 embodiment valve block of feeder of the present invention is inserted into the schematic diagram in the second connector process;
Figure 14 c is the schematic diagram after the 11 embodiment middle valve plate of feeder of the present invention is encased in connector;
Figure 15 a installs the schematic diagram of valve block in the 12 embodiment of feeder of the present invention;
Figure 15 b is that the 12 embodiment valve block of feeder of the present invention is inserted into the schematic diagram in the second connector process;
Figure 15 c is the schematic diagram after the 12 embodiment middle valve plate of feeder of the present invention is encased in connector;
Figure 16 is the schematic diagram of the 13 embodiment in open mode of feeder of the present invention;
Figure 17 is the schematic diagram of the 14 embodiment in open mode of feeder of the present invention;
Figure 18 is the schematic diagram of the 15 embodiment in open mode of feeder of the present invention.
The specific embodiment
Understand for technical characterictic of the present invention, purpose and effect being had more clearly, now contrast accompanying drawing and describe the specific embodiment of the present invention in detail.
As shown in Figures 1 to 4, be the schematic diagram of the first embodiment of feeder of the present invention, the feeder of this embodiment comprises that feeding assembly 1, the second connector 2 and food import assembly 3.
Referring to Fig. 1, Fig. 2 and Fig. 3, wherein, feeding assembly 1 comprises the first connector 11 and suction nozzle 12, and the upper end of suction nozzle 12 is arranged on the first connector 11.Suction nozzle 12 has food-receiving cavity, the upper end of suction nozzle 12 is opening, there is the opening that enters the cavity of suction nozzle 12 for food, the shape of the lower end of suction nozzle 12 and baby or to advance trencherman's the shape of the mouth as one speaks suitable, make the baby or advance the trencherman lower end of suction nozzle 12 to be kept in the mouth, sucked or chew.The surface of the lower end of suction nozzle 12 is provided with at least one and sucks hole 121, sucks hole 121 for through hole, as the baby or advance that the trencherman sucks or while chewing, the food in suction nozzle 12 enters into the baby or advances trencherman's mouth by sucking hole 121.In the present embodiment, the lower end of suction nozzle 12 is provided with a plurality of holes 121 of sucking, these suck hole 121 around the lower end that is distributed in suction nozzle 12 all around.That sucks that the size and shape in hole 121 can design makes can not choke baby or advance the trencherman of food by sucking hole 121.The shape of sucking hole 121 can be the shapes such as circular, square, triangle, and the diameter of sucking hole 121, is sucked size, the quantity in hole 121 and arranged and can change according to different designs and demand between 5mm at 1mm.
Suction nozzle 12 can be soft by food stage elastomeric material make.The soft elastomeric material of food stage can comprise silica gel, latex, or food stage rubber or polrvinyl chloride (PVC).Silica gel material is nontoxic, environmental protection, durable, high temperature resistant, low temperature resistant and ageing-resistant.More environmental protection of silica gel product, safer and more durable.Suction nozzle 12 can preferably be made by transparent or semitransparent soft elastomeric material, and can see through easily suction nozzle 12 like this is full or empty to understand suction nozzle 12.
Under normal condition, when food enters into suction nozzle 12, suction nozzle 12 keeps original shape.Put into in trencherman's mouth and advanced the trencherman and chew, gnaw or while sucking, suction nozzle 12 is extruded under external force when suction nozzle 12, food (such as the crushed food of fritter, puree, marc, fruit juice etc.) is extruded by sucking hole 121.Suction nozzle 12 relies on the elastic return of suction nozzle 12 to become original shape when external force removes.
The size and dimension of suction nozzle 12 can design to hold fritter fruit or other foods such as picture fruit jelly, Yoghourt, vegetable, meat and fish.Suction nozzle 12 can be put in trencherman's mouth, allows and gnaws, sucks or chew into the trencherman.For the fruit of existing fruit juice and marc, fruit juice and fritter marc can be sucked in trencherman's mouth by sucking hole 121, and the bulk marc is stayed in suction nozzle 12.Be less than the esophagus into the trencherman owing to sucking hole 121, advance the trencherman and can not choked by sucking hole 121 food out.Use feeder can guarantee the safety into the trencherman.The fruit that there is no marc for only having puree, puree can enter into the mouth into the trencherman by sucking hole 121.Therefore, can with feeder to baby or feeding baby the food as fruit, in the situation that the danger of not choked by fruit religion baby or child chew and swallow.Feeder is safe for baby or child, and easy to use, and the caregiver extrudes fruit juice not needing before feeding in fruit.Utilize feeder, baby or child can take food easily fresh fruit (such as Fructus Fragariae Ananssae, Fructus Mali pumilae and pears etc.), vegetable, fish and meat etc.
While in suction nozzle 12, solid-state and liquid mixed food being housed, be subject to capillary the impact, liquid can form sealing film sucking on hole 121.Therefore, the food in suction nozzle 12 can not flow out by sucking hole 121 easily.Baby or child need to suck to suck food from suck hole 121.This can temper baby or child's vital capacity, and the muscle around mouth.In addition, while using feeder, sealing film can stop liquid to leak and make dirty into trencherman's clothes in sucking hole 121.If suction nozzle 12 is made by net, because the through hole on net does not have elasticity, be difficult to form sealing film on the through hole of net.And, at a distance of nearer, more difficultly on the through hole of net, form sealing film between the through hole on net.In the present invention, two adjacent distances of sucking between hole 121 can be that 2mm is to 10mm.
In the present embodiment, the upper end of suction nozzle 12 is dismountable be arranged on the first connector 11 on, the upper end of suction nozzle 12 has annular edge part 122, the first connector 11 is annular element, and the inwall of the first connector 11 is provided with the first ring-shaped step 111 of the edge part 122 of the upper end for placing suction nozzle 12.It will be appreciated that, suction nozzle 12 also can be fixedly connected with the first connector, and for example suction nozzle 12 and the first connector 11 also can integrated injection moldings, or bond together.
Referring to Fig. 1, Fig. 2 and Fig. 3, in the present embodiment, the second connector 2 imports assembly 3 for connecting feeding assembly 1 and food.Food imports assembly 3 and comprises the 3rd connector 31 and food container 32, and the lower end of food container 32 is arranged on the 3rd connector 31.In the present embodiment, the lower end of food container 32 is dismountable to be arranged on the 3rd connector 31, concrete, the lower end of food container 32 has annular rim portion 321, the 3rd connector 31 is annular element, the inwall of the 3rd connector 31 is provided with the 3rd ring-shaped step 311, the three ring-shaped steps 311 annular rim portion of the lower end of food container 32 321 is limited between the second connector 2 and the 3rd connector 31.
Food container 32 has the inner chamber for splendid attire food, and the lower end of food container 32 is arranged on the 3rd connector 31, and the lower end of food container 32 is opening, when food container 32 is inverted, can add food in food container 32 by this opening.
Food container 32 is squeeze receptacles, and the food in can be by it when the outer surface of food container 32 is under pressure is squeezed out by the opening of the lower end of food container 32.Food container 32 can be made by the food stage elastomeric material.The food stage elastomeric material can comprise silica gel, latex or food stage rubber etc.
Second connects 2 between the first connector 11 and the 3rd connector 31, and with the first connector 11, with the 3rd connector 31, be connected respectively, the second connector 2 has the passage 21 that is communicated with suction nozzle 12 and food container 32, passage 21 gets up the open communication of the opening of suction nozzle 12 upper ends and food container 32 lower ends, by this passage 21, food in food container 32 can enter into suction nozzle 12, while especially pushing food container 32, the food in food container 32 can be squeezed in suction nozzle 12 by passage 21.
During due to feed, suck or chew suction nozzle 12, can make suction nozzle 12 be squeezed, the food in suction nozzle 12 can be back in food container 32 by passage, and this can have influence on the carrying out of feed, particularly for sucking or the very little baby of the dynamics of chewing, can only extrude a bit and a sup by the hole 121 of sucking of suction nozzle 12 at every turn, in order more to be conducive to the carrying out of feed, be provided with valve block 4 on passage 21, valve block 4 is laminated structure, has the valve opening 41 passed through for food on valve block 4.The existence of valve block 4, can increase food and be back to the resistance of food container 32 by suction nozzle 12, hinders food and refluxed to food container 32 by suction nozzle 12, therefore contributes to the carrying out of feed, makes the baby or advance the trencherman to suck more food.Although the existence of valve block 4 also can increase food and be entered into the resistance of suction nozzle 12 by food container 32, when the action of general extruding food container 32 is completed by the adult, the dynamics that only need increase a little extruding food container 32 gets final product.
Referring to Fig. 2 and Fig. 3, in the present embodiment, valve block 4 is dismountable to be arranged on the second connector 2, concrete, on the inwall of the passage 21 of the second connector 2, be provided with for placing the second ring-shaped step 22 of valve block 4, this second ring-shaped step 22 is positioned at the upper end of passage 21, after valve block 4 is placed on the second ring-shaped step 22, valve block 4 gets lodged on passage 21, to increase food, is back to the resistance of food container 32 by suction nozzle 12.In the present embodiment, the cross sectional shape of the valve opening 41 on valve block 4 is strip, and the width that forms strip is narrowed down to centre step by step by two ends, and the two ends of strip are circular arc.Valve block 4 can hard or soft food level material make.
In the present embodiment, the second connector 2 is connected by following structure with the 3rd connector 31 with the first connector 11, the first side at the second connector 2 has the second connecting portion 23, the first side of the first connector 11 has the first connecting portion 113, the first side of the 3rd connector 31 has the 3rd connecting portion 313, the second connecting portion 23 and the first connecting portion 113 are hinged by the second bearing pin 52 by hinged 51, the second connecting portions 23 of the first bearing pin and the 3rd connecting portion 313.This double-strand chain syndeton links together the first connector 11, the second connector 2 and the 3rd connector 31, make feeder be more prone to operation, feeding assembly 1 imports with food relative the second connector 2 rotating opening that assembly 3 can be independent, other are such as connected modes such as spiral shell connections relatively, this dual hinge structure operates more simple and convenient, in addition, and because the three links together, carry, use and while cleaning, can not forget a certain parts.An other side of the first connector 11, the second connector 2 and the 3rd connector 31 fastens by buckle 53, and buckle 53 1 ends and the 3rd connector 31 are hinged, the other end and the first connector 11 snappings.The feeder that Fig. 3 is open mode, Fig. 4 is the feeder after closure.
As shown in Fig. 5 a and Fig. 5 b, schematic diagram for the second embodiment of feeder of the present invention, the structure of the feeder of the feeder of the second embodiment and the first embodiment is basic identical, difference only is the shape difference of the valve opening 41 of valve block 4, in the second enforcement, the cross sectional shape of the valve opening 41 of valve block 4 is two strips that intersect, and two strips are cross-shaped setting, and the width of every strip reduces gradually by two ends are middle mutually.
As shown in Fig. 6 a and Fig. 6 b, schematic diagram for the 3rd embodiment of feeder of the present invention, the structure of the feeder of the feeder of the 3rd embodiment and the first embodiment is basic identical, difference only is the shape difference of the valve opening 41 of valve block 4, in the 3rd implements, the valve opening 41 of valve block 4 comprises a plurality of through holes that are arranged on valve block 4, and these through holes are intervally arranged on valve block 4.
As shown in Fig. 7 a and Fig. 7 b, schematic diagram for the 4th embodiment of feeder of the present invention, the structure of the feeder of the feeder of the 4th embodiment and the first embodiment is basic identical, difference only is the position difference of valve block 4 in passage 21, in the 4th implements, be positioned at the middle part of passage 21 in passage 21 for the second ring-shaped step 22 of placing valve block 4, valve block 4 is positioned at the middle part of passage 21.In the 4th embodiment, the structure that the structure of valve block 4 and first is implemented middle valve plate 4 is identical.
As shown in Fig. 8 a and Fig. 8 b, schematic diagram for the 5th embodiment of feeder of the present invention, the structure of the feeder of the feeder of the 5th embodiment and the 4th embodiment is basic identical, difference only is the shape difference of the valve opening 41 of valve block 4, in the 5th implements, the cross sectional shape of the valve opening 41 of valve block 4 is two strips that intersect, and two strips are cross-shaped setting, and the width of every strip reduces gradually by two ends are middle mutually.
As shown in Fig. 9 a and Fig. 9 b, schematic diagram for the 6th embodiment of feeder of the present invention, the structure of the feeder of the feeder of the 6th embodiment and the 4th embodiment is basic identical, difference only is the shape difference of the valve opening 41 of valve block 4, in the 6th implements, the valve opening 41 of valve block 4 comprises a plurality of through holes that are arranged on valve block 4, and these through holes are intervally arranged on valve block 4.
As shown in Figure 10 a and Figure 10 b, schematic diagram for the 7th embodiment of feeder of the present invention, the structure of the feeder of the feeder of the 7th embodiment and the first embodiment is basic identical, difference only is the position difference of valve block 4 in passage 21, in the 7th implements, be positioned at the lower end of passage 21 in passage 21 for the second ring-shaped step 22 of placing valve block 4, valve block 4 is positioned at the lower end of passage 21.In the 7th embodiment, the structure that the structure of valve block 4 and first is implemented middle valve plate 4 is identical.
As shown in Figure 11 a and Figure 11 b, schematic diagram for the 8th embodiment of feeder of the present invention, the structure of the feeder of the feeder of the 8th embodiment and the 7th embodiment is basic identical, difference only is the shape difference of the valve opening 41 of valve block 4, in the 8th implements, the cross sectional shape of the valve opening 41 of valve block 4 is two strips that intersect, and two strips are cross-shaped setting, and the width of every strip reduces gradually by two ends are middle mutually.
As shown in Figure 12 a and Figure 12 b, schematic diagram for the 9th embodiment of feeder of the present invention, the structure of the feeder of the feeder of the 9th embodiment and the 7th embodiment is basic identical, difference only is the shape difference of the valve opening 41 of valve block 4, in the 9th implements, the valve opening 41 of valve block 4 comprises a plurality of through holes that are arranged on valve block 4, and these through holes are intervally arranged on valve block 4.
As Figure 13 a, shown in Figure 13 b and Figure 13 c, schematic diagram for the tenth embodiment of feeder of the present invention, the real ten to execute the structure of feeder of routine feeder and the first embodiment basic identical, difference only is that valve block 4 is different from the annexation of the second connector 2, in the present embodiment, have the slot 241 that inserts passage 21 for valve block 4 on the conduit wall of the passage 21 of the second connector 2, slot 241 penetrating via walls, for better fixedly valve block 4, further, can on the conduit wall of passage 21, offer the draw-in groove 242 for blocking valve block 4, draw-in groove 242 and slot 241 are oppositely arranged, valve block 4 is by slot 241 admission passages 21, then snap onto in draw-in groove 242, can prevent that like this valve block 4 breaks away from.In the tenth embodiment, the structure that the structure of valve block 4 and first is implemented middle valve plate 4 is identical.
As shown in Figure 14 a, Figure 14 b and Figure 14 c, schematic diagram for the 11 embodiment of feeder of the present invention, the structure of the feeder of the feeder of the 11 embodiment and the tenth embodiment is basic identical, difference only is the shape difference of the valve opening 41 of valve block 4, in the 11 implements, the cross sectional shape of the valve opening 41 of valve block 4 is two strips that intersect, and two strips are cross-shaped setting, and the width of every strip reduces gradually by two ends are middle mutually.
As shown in Figure 15 a, Figure 15 b and Figure 15 c, schematic diagram for the 12 embodiment of feeder of the present invention, the structure of the feeder of the feeder of the 12 embodiment and the tenth embodiment is basic identical, difference only is the shape difference of the valve opening 41 of valve block 4, in the 12 implements, the valve opening 41 of valve block 4 comprises a plurality of through holes that are arranged on valve block 4, and these through holes are intervally arranged on valve block 4.
As shown in figure 16, schematic diagram for the 13 embodiment of feeder of the present invention, the 13 embodiment feeder and the structure of the feeder of the first embodiment basic identical, difference only is that valve block 4 is different from the syndeton of the second connector 2, in the 13 embodiment, valve block 4 is fixedly connected with the second connector 2, and valve block 4 and the second connector 2 can be one-body molded, or valve block 4 is adhesively fixed on the second connector 2 and the connector 2 formula structure that becomes one.In the 13 embodiment, the structure that the structure of valve block 4 and first is implemented middle valve plate 4 is identical.
As shown in figure 17, schematic diagram for the 14 embodiment of feeder of the present invention, the structure of the feeder of the 14 embodiment and the feeder of the 13 embodiment is basic identical, difference only is the shape difference of the valve opening 41 of valve block 4, in the 14 implements, the cross sectional shape of the valve opening 41 of valve block 4 is two strips that intersect, and two strips are cross-shaped setting, and the width of every strip reduces gradually by two ends are middle mutually.
As shown in figure 18, schematic diagram for the 15 embodiment of feeder of the present invention, the structure of the feeder of the 15 embodiment and the feeder of the 13 embodiment is basic identical, difference only is the shape difference of the valve opening 41 of valve block 4, in the 15 implements, the valve opening 41 of valve block 4 comprises a plurality of through holes that are arranged on valve block 4, and these through holes are intervally arranged on valve block 4.
In feeder of the present invention, the shape of the valve opening 41 of valve block 4 is not limited to the concrete shape in above-described embodiment, it can be also the applicable shape of other any routines, when valve block 4 and the second connector 2 adopt while removably connecting structure, a feeder can be equipped with a plurality of valve blocks 4, the shape difference of the valve opening 41 of each valve block 4, can select suitable valve block 4 according to the kind difference of institute's feeding thing.Certainly, same feeder also can be equipped with a plurality of variform suction nozzles 12.Annexation between the first connector 11, the second connector 2, the 3rd connector 31 also is not limited to the connected mode in above-mentioned specific embodiment, can be also the applicable connected modes of other any routines, and for example buckle-type connects, is threaded etc.
The second connector of feeder of the present invention imports the assembly chain connection with feeding assembly and food respectively, and the three connects together, and the feeding assembly imports with food relative the second connector rotating opening that assembly can be independent, makes the use of feeder more convenient.In addition, the second connector be provided with valve block in passage, the sectional area of the valve opening of valve block is less than the sectional area of passage, after food is squeezed in suction nozzle by food container, can increase food and be back to the resistance of food container by suction nozzle, more be conducive to the carrying out of feed.
The above is described embodiments of the invention by reference to the accompanying drawings; but the present invention is not limited to the above-mentioned specific embodiment; the above-mentioned specific embodiment is only schematic; rather than restrictive; those of ordinary skill in the art is under enlightenment of the present invention; not breaking away from the scope situation that aim of the present invention and claim protects, also can make a lot of forms, within these all belong to protection of the present invention.

Claims (11)

1. a feeder, is characterized in that, comprising:
The feeding assembly, described feeding assembly comprises the first connector and suction nozzle, and the upper end of described suction nozzle is arranged on described the first connector, and the upper end of described suction nozzle is opening, and the surface of lower end is provided with at least one and sucks hole;
The second connector;
Food imports assembly, and described food imports assembly and comprises the 3rd connector and food container, and the lower end of described food container is arranged on described the 3rd connector, and the lower end of described food container is opening;
Described the second connector, between described the first connector and the 3rd connector, and is connected with the 3rd connector with described the first connector respectively, and described the second connector has the passage that is communicated with described suction nozzle and food container;
The first side of described the second connector has the second connecting portion, the first side of described the first connector has the first connecting portion, the first side of described the 3rd connector has the 3rd connecting portion, described the second connecting portion and the first connecting portion are hinged by the first bearing pin, and described the second connecting portion and the 3rd connecting portion are hinged by the second bearing pin; The second side of described the first connector, the second connector and the 3rd connector fastens by buckle.
2. feeder according to claim 1, is characterized in that, described passage is provided with valve block, and described valve block has the valve opening passed through for food.
3. feeder according to claim 2, is characterized in that, described valve block is fixedly connected on described the second connector.
4. feeder according to claim 2, is characterized in that, described valve block is dismountable to be arranged on described the second connector.
5. feeder according to claim 4, is characterized in that, the inwall of described passage is provided with for placing the ring-shaped step of described valve block, and described ring-shaped step is positioned at upper end, lower end or the middle part of described passage.
6. feeder according to claim 4, is characterized in that, has the slot that inserts described passage for described valve block on the conduit wall of described passage, and described slot runs through described conduit wall.
7. feeder according to claim 6, is characterized in that, has the draw-in groove snapped in for described valve block on the conduit wall of described passage, and described draw-in groove and described slot are oppositely arranged.
8. feeder according to claim 2, is characterized in that, the cross section of described valve opening is strip, and the width of described strip is diminished to centre gradually by two ends.
9. feeder according to claim 2, is characterized in that, the cross section of described valve opening comprises the strip that two or more pieces intersects.
10. feeder according to claim 2, is characterized in that, described valve opening comprises a plurality of through holes that are arranged on described valve block.
11. feeder according to claim 2, is characterized in that, described valve block is made by hard or elastomeric material.
CN2012101580965A 2012-05-21 2012-05-21 Feeder Pending CN103417384A (en)

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CN2012101580965A CN103417384A (en) 2012-05-21 2012-05-21 Feeder
PCT/CN2012/084751 WO2013174110A1 (en) 2012-05-21 2012-11-16 Feeding apparatus

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Cited By (1)

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WO2021147532A1 (en) * 2020-01-20 2021-07-29 东莞亲亲我实业有限公司 Feeder

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US20050245861A1 (en) * 2004-04-30 2005-11-03 Dunn Steven B Mesh-type feeder
CN201422777Y (en) * 2009-03-10 2010-03-17 东莞永荣塑胶制品有限公司 Food mastication device for infant
CN101849887A (en) * 2009-07-22 2010-10-06 东莞亲亲我贸易有限公司 Feeder
WO2011009284A1 (en) * 2009-07-22 2011-01-27 Dongguan Kidsme Trading Company Limited Feeding apparatus
CN201734972U (en) * 2010-07-15 2011-02-09 王直元 Baby food feeder
CN202154877U (en) * 2011-06-10 2012-03-07 株式会社利其尔 Sucking device
CN202682375U (en) * 2012-05-21 2013-01-23 东莞亲亲我实业有限公司 Feeder

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US20120097710A1 (en) * 2010-10-26 2012-04-26 Kristin Ahmer Squeeze dispenser

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Publication number Priority date Publication date Assignee Title
US20050245861A1 (en) * 2004-04-30 2005-11-03 Dunn Steven B Mesh-type feeder
CN201422777Y (en) * 2009-03-10 2010-03-17 东莞永荣塑胶制品有限公司 Food mastication device for infant
CN101849887A (en) * 2009-07-22 2010-10-06 东莞亲亲我贸易有限公司 Feeder
WO2011009284A1 (en) * 2009-07-22 2011-01-27 Dongguan Kidsme Trading Company Limited Feeding apparatus
CN201734972U (en) * 2010-07-15 2011-02-09 王直元 Baby food feeder
CN202154877U (en) * 2011-06-10 2012-03-07 株式会社利其尔 Sucking device
CN202682375U (en) * 2012-05-21 2013-01-23 东莞亲亲我实业有限公司 Feeder

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021147532A1 (en) * 2020-01-20 2021-07-29 东莞亲亲我实业有限公司 Feeder

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Application publication date: 20131204