CN213385529U - Novel liquid packaging box - Google Patents

Novel liquid packaging box Download PDF

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Publication number
CN213385529U
CN213385529U CN202021165293.6U CN202021165293U CN213385529U CN 213385529 U CN213385529 U CN 213385529U CN 202021165293 U CN202021165293 U CN 202021165293U CN 213385529 U CN213385529 U CN 213385529U
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box body
box
liquid
honeycomb duct
guide pipe
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Expired - Fee Related
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CN202021165293.6U
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Chinese (zh)
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姜迪彬
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Individual
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Individual
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Abstract

The utility model discloses a novel liquid packaging box has the box body, and this box body comprises box body skin and the setting at the external intraformational box body inlayer of box body, and it has out liquid hole and air vent to open at the outer top of box body, is equipped with the honeycomb duct that is used for empting the drainage on the box body skin, and this honeycomb duct can pass out the liquid hole and stretch into the box body inlayer be equipped with on the honeycomb duct and can stab the puncture structure in order to form the atmospheric pressure balance hole with box body inlayer correspondence air vent position department. The utility model can drink the box-packed liquid through the diversion pipe in a drinking way, thereby having convenient and rapid operation, good smoothness in the drinking process and strong comfort for users; meanwhile, the utility model can also pour the liquid into the container for drinking by adopting the guide pipe, and the pouring process does not need to apply extrusion force to the box body, thereby effectively preventing the choking phenomenon; the puncture structure capable of forming the air pressure balance hole is integrated on the flow guide pipe, so that the balance of air pressure in the box can be ensured in the pouring process, and no spilling or leakage exists.

Description

Novel liquid packaging box
Technical Field
The utility model belongs to the technical field of the packing carton, specifically speaking, in particular to novel liquid packaging box.
Background
At present, for liquid beverage and liquid milk packaged by paper with the volume of less than 300 milliliters, a drinking mode is to puncture an aluminum foil hole by a straw to suck and drink. After the suction pipe is used for puncturing the suction pipe insertion hole, no external force is applied, liquid in the box cannot smoothly flow out in a dumping mode, and only can slowly drip outwards, the box body is extruded by extruding, part of liquid in the box is sprayed out, the box body is loosened, air enters the box body, and then the box body is extruded again, and part of liquid in the box can be sprayed out again. The disadvantages of this procedure are: the utility model has the advantages of time-consuming, hard, the liquid that flows out has the interval, and is discontinuous, and liquid easily takes place "chocks", still can appear spilling the hourglass under the condition of extracting the straw, even do not extract the straw, the straw is not inseparable with the cooperation of straw jack, under the extruded condition, straw and jack also have liquid to drip.
In the case of milk, the milk box can be cut by scissors, and the milk is poured into the container from the cut part of the milk box for drinking. When people pour milk out of the milk box, the folding angle adhered to the side surface of the milk box is separated from the box body, then the folding angle is unfolded, and then the scissors cut off one angle along a dotted line, so that the milk can be poured out, and the whole process has the following defects:
1. the force is required to be mastered during shearing, the shearing is not easy to cut when the force is small, and the shearing angle is easy to splash when the force is large.
2. When the cutting angle is dropped on the table top or the floor, the milk attached to the inner surface of the cutting angle splashes on the table top or the floor, and the table top or the floor needs to be cleaned after the cutting angle is thrown away.
3. During the shearing process of the scissors, milk on the inner surface of the milk box can be attached to the blade, and the blade of the scissors needs to be cleaned after the scissors are sheared.
4. The whole process is relatively complicated to operate and takes relatively much time.
Chinese patent ZL201821343094.2 discloses a splendid attire box of milk in 2019 8, 6.8, this box increases the air vent at the box body top, when empting milk through going out the liquid hole, the air vent ensures that the internal and external atmospheric pressure of box is balanced, more smoothly, swift when making milk pour out. However, this prior art has a disadvantage: after stabbing out the liquid hole, the aluminium foil of being stabbed can point to the box in, produces the interference to the liquid that flows out, and the result of interference shows two kinds of phenomena: 1) or the liquid will not flow in the determined direction (the liquid will be left, right, up or down); 2) or spillage of the liquid occurs. In addition, when pouring milk, if the inclination angle of the milk box is too large, the milk is easy to spill and leak along the vent holes, and especially when people use the double-hole box to drink the milk, if the hands are lifted a bit, the neck is tilted a bit more, or the hands or the box are hit by other people upwards while drinking, the liquid flows onto the face of the user from the vent holes, and in the neck and on clothes, the waste is caused, and a lot of cleaning work is increased. The air vent has liquid to flow out, because when puncturing the air vent and going out the liquid hole, all use the pointed end of honeycomb duct, this leads to the air vent and goes out the aluminium foil area that the liquid hole was broken and is the same big with the liquid hole, like this, the liquid that goes out the liquid hole flows out with slow speed, the air of that air hole department just gets into with same slow speed, because the air speed that gets into the air vent is slow, the power that its produced directional box body just is very little, when inclination is too big, liquid in the box overflows the air vent, the gravity of liquid is greater than the power when the air got into, liquid will flow out from the air vent.
In recent years, liquid beverages and liquid milk have been designed with bottle caps and can be drunk in a drinking manner. However, the packing box with the bottle cap is very costly and can only be used for products with high selling price, such as: the bottle cap is provided with 250 ml of milk, and the price is more than five. The supermarket has a straw for preparing 250 milliliters of liquid beverage and liquid milk with the retail price of less than five elements, and the quantity of the liquid beverage and the liquid milk with the price of less than 5 elements in the supermarket is the majority. The bottle cap is used for selling high-price products instead of the straw, and the drinking feeling is much smoother and more comfortable than the sucking feeling. If the bottle cap is used for a product with low selling price, the price of the bottle cap packing box is much higher, so that the cost is increased, and the selling price of the product is greatly increased. At present, no liquid containing box is available on the market, so that people can enjoy the good feeling of drinking, and the price of the liquid containing box is the same as that of the existing straw packing box.
SUMMERY OF THE UTILITY MODEL
In view of the above-mentioned defects in the prior art, the technical problem to be solved by the present invention is to provide a novel liquid packaging box.
The technical scheme for realizing the purpose is as follows: the utility model provides a novel liquid packaging box, has the box body, and this box body comprises box body skin and the box body inlayer that sets up at the box body in situ, and it has out liquid hole and air vent, its characterized in that to open at the outer top of box body: the box body outer layer is provided with a flow guide pipe for dumping and conducting, the flow guide pipe can penetrate through the liquid outlet hole and extend into the box body inner layer, and the flow guide pipe is provided with a puncture structure which can puncture the position of the box body inner layer corresponding to the air vent hole to form an air pressure balance hole.
The utility model discloses a honeycomb duct of empting the drainage replaces traditional straw, passes out the liquid hole and stretches into the box body inlayer during this honeycomb duct uses, and honeycomb duct and the outer or/and the box body inlayer tight fit of box body make slope liquid packing carton after, the liquid in the box body inlayer flows through the honeycomb duct in succession with the mode of empting.
During the use, pass the air vent with the puncture structure that sets up on the honeycomb duct earlier and stab the box body inlayer, form the atmospheric pressure balancing hole, reuse honeycomb duct is punctured the box body inlayer that goes out liquid hole correspondence department afterwards to make the honeycomb duct stretch into in the box body inlayer, when empting the interior liquid of box through the honeycomb duct like this, atmospheric pressure balancing hole ensures that the box internal and external atmospheric pressure is balanced, more smoothly when making liquid pour out, swift.
The utility model breaks the technical prejudice that the boxed liquid, especially the boxed milk, can only be sucked by a straw for drinking or be cut off a folding angle and poured into a container for drinking. The utility model adopts the honeycomb duct, the liquid in the inner layer of the box body can be drunk in a drinking mode by inclining the liquid packaging box, thereby not only being convenient and fast, but also having very smooth drinking process and strong comfort for users; meanwhile, the liquid in the inner layer of the box body is poured into the container through the guide pipe to be drunk conveniently. In addition, the honeycomb duct is not pulled out after being inserted into the liquid outlet hole, and the box body inner layer flying pieces which cannot fall off after being punctured and enter the box body inner layer are kept aside, so that the box body inner layer flying pieces are prevented from interfering the flowing liquid, the leakage condition is avoided, and the liquid flows to the set direction through the honeycomb duct, and the deviation cannot occur.
In order to facilitate the breaking of the inner layer of the box body and make the insertion into the box easier, the lower end of the flow guide pipe is of a pointed structure.
The tube body of the draft tube is provided with a notch which is round, square, oval or strip-shaped, and the notch and the most pointed position of the tip end of the draft tube are on the same vertical surface. After the honeycomb duct inserted in the box body inlayer, the last border of breach and the interior roof of box body inlayer parallel and level basically on the honeycomb duct, during the use, the breach is towards the user to when empting, the breach is in the lowest position, is convenient for pour liquid totally. When the liquid storage box is in a working state, the length of the flow guide pipe is preferably smaller than the height of the box body, the flow guide pipe is tightly matched with the outer layer or/and the inner layer of the box body, the flow guide pipe cannot fall off when toppling over, no gap exists at the joint of the flow guide pipe and the outer layer or the inner layer of the box body, and liquid leakage cannot occur.
And a positioning indicating line is arranged on the tube body of the flow guide tube and is positioned above the notch and close to the upper edge of the notch. The positioning indicating line is used for reminding a user of the length of the guide pipe, and the positioning indicating line is actively stopped when being basically flush with the top surface of the box body.
The pipe body of the flow guide pipe is provided with a limiting bulge which is a convex hull or an annular boss, and the limiting bulge is positioned above the notch and close to the upper edge of the notch. Spacing arch belongs to mandatory design, plays spacing effect, and when the spacing arch of in-process when inserting the honeycomb duct moved to box body top surface position, spacing arch was blockked to make the honeycomb duct can not continue to insert, can effectively prevent to be inserted or insert too much and lead to the unable condition of drinking because of the honeycomb duct is completely.
The honeycomb duct is two segmentation stair structures big-end-up, and the breach sets up the path section at the honeycomb duct. The structure also belongs to a mandatory design, the step surface between the two sections plays a limiting role, and when the step surface moves to the position of the top surface of the box body in the process of inserting the honeycomb duct, the step surface is blocked to prevent the honeycomb duct from being inserted continuously, so that the condition that the honeycomb duct cannot be drunk due to complete insertion or excessive insertion of the honeycomb duct can be effectively prevented.
The tip structure at the lower end of the flow guide pipe extends downwards integrally to form a puncture structure which is a slender column. The puncture structure is formed at the tip of the lower end of the guide pipe, the integral structure is simple in form, easy to process and manufacture and low in production cost; the puncture structure adopts a slender column, the caliber of the air pressure balance hole formed in this way is small, and when the liquid in the box is poured, even if the inclination angle of the box is suddenly too large due to sudden reasons, the liquid cannot be spilled and leaked outwards along the air pressure balance hole.
The axis of the slender column is parallel to the axis of the flow guide pipe, the diameter of the slender column is 1mm-3mm, and the inner diameter of the flow guide pipe is 5mm-12 mm. The atmospheric pressure balancing hole that the slender post of above structure broke open box body inlayer and produced is enough little, has great bore difference between atmospheric pressure balancing hole and the honeycomb duct, is guaranteeing like this that liquid emptys smoothly through the honeycomb duct in the box, and atmospheric pressure balancing hole can guarantee the box internal pressure unanimity all the time, even liquid crosses atmospheric pressure balancing hole in the box occasionally, also can not outwards spill the hourglass.
The puncture structure is a slender column, the slender column is perpendicular to the flow guide pipe, and the root of the slender column is fixedly connected with the limiting bulge into a whole. The structure on the one hand slender post is good with the firm nature of honeycomb duct connection, and on the other hand, when using slender post, the honeycomb duct can regard as the handle, and the operation is more convenient like this.
The puncture structure is a slender column, the root of the slender column is hinged with the limiting bulge, the slender column is perpendicular to the flow guide pipe after being opened, and the slender column is folded and then is close to the flow guide pipe. The slender column of the structure has two states of opening and folding, the guide pipe is used as a handle when the slender column is opened for use, the convenience of operation can be improved, and the slender column additionally occupies small space after being folded, so that the slender column is favorable for packaging and transportation.
Preferably, the diameter of the slender column is 1mm-3mm, and the inner diameter of the draft tube is 5mm-12 mm.
Preferably, the box body is formed by compounding paper and aluminum plastic, and the volume of the box body is 100-300 ml.
Has the advantages that: the utility model breaks the technical prejudice that small-capacity boxed milk or boxed beverage can only be sucked by a straw for drinking or be poured into a container for drinking after cutting off a folding angle, the utility model ensures that boxed liquid is drunk in a drinking mode through the diversion pipe, thereby not only having convenient and rapid operation, but also having good smoothness in the drinking process and strong comfort for users; meanwhile, the utility model can also pour the liquid into the container for drinking by adopting the guide pipe, thereby avoiding various defects of cutting the folding angle in the background technology, and the pouring process does not need to apply extrusion force to the box body, thereby not only having no spilling and leakage, but also having no choking phenomenon; the puncture structure capable of forming the air pressure balance hole is integrated on the flow guide pipe, the structure is simple, the processing and the manufacturing are easy, and the balance of air pressure in the box can be ensured in the pouring process without spilling and leaking. According to the utility model discloses the packing of production, its cost equals with the current packing cost who is equipped with the straw basically, and small capacity box-packed beverage especially box-packed milk can make people enjoy the beautiful sensation of drinking under the prerequisite of guaranteeing not to increase in price like this.
Drawings
Fig. 1 is a schematic structural view of the present invention, and is also a first structural view of the flow guide pipe.
Fig. 2 is a usage state diagram of the present invention.
FIG. 3 is a second structural schematic view of a draft tube
Fig. 4 is a third structural schematic of the draft tube.
Fig. 5 is a schematic view of a fourth configuration of the flow conduit, also in an open state of the elongate column.
Fig. 6 is a view of the elongated pole in a collapsed state.
Detailed Description
The invention will be further explained with reference to the following figures and examples:
as shown in fig. 1 and 2, the novel liquid packaging box is composed of a box body and a guide pipe 3. The box body is formed by compounding paper, aluminum and plastic and comprises a box body outer layer 1 and a box body inner layer 2 arranged in the box body outer layer 1, and the volume of the box body is 100-300 ml. The draft tube 3 is preferably made of plastic, and the draft tube 3 is accommodated in a closed packaging bag before being used, and the packaging bag is adhered to the outer surface of the outer layer 1 of the box body. The top of the outer layer 1 of the box body is provided with a liquid outlet hole 11 and a vent hole 12, and the vent hole 12 and the liquid outlet hole 11 are respectively positioned at the left end and the right end of the top of the outer layer 1 of the box body. The vent hole 12 is kept at a proper distance from the liquid outlet hole 11, and the proper distance is that the liquid in the box does not flow out from the vent hole 12 when pouring. The liquid outlet holes 11 are circular and the size of the liquid outlet holes is matched with the outer diameter of the flow guide pipe 3. The venting holes 12 may be circular or arc-shaped or have any other suitable shape and have a size equal to or smaller than the exit holes 11.
As shown in fig. 1 and 2, the draft tube 3 is preferably a straight tube. The lower end of the honeycomb duct 3 is of a pointed end structure, and the pointed end is favorable for penetrating through the liquid outlet hole 11 to puncture the top of the inner layer 2 of the box body. A notch 31 is arranged on the tube body of the draft tube 3, the notch 31 is round, square, oval, long-strip or other suitable shapes, and the notch 31 and the most pointed position of the tip end of the draft tube 3 are on the same vertical plane. The honeycomb duct 3 is used for passing out liquid hole 11 and stretching into box body inlayer 2, and honeycomb duct 3 and box body skin 1 or/and 2 tight fits in box body inlayer, makes behind the slope liquid packaging box, and the liquid in the box body inlayer 2 flows out in succession through honeycomb duct 3 with the mode of empting.
The honeycomb duct 3 is provided with a puncture structure 34, and the positioning and puncture structure of the honeycomb duct can adopt the following various forms:
the first method comprises the following steps: as shown in fig. 1, a positioning indication line 32 is disposed on the tube body of the flow guide tube 3, the positioning indication line 32 is located above the notch 31 and close to the upper edge of the notch 31, the positioning indication line 32 is used for reminding a user of the length of inserting the flow guide tube 3, and the positioning indication line 32 is actively stopped when being substantially flush with the top surface of the box body. The pointed structure at the lower end of the flow guide pipe 3 extends downwards integrally to form a puncture structure 34, the puncture structure 34 is a slender column, the slender column can be a cylinder, a square column or a prism, the axis of the slender column is parallel to the axis of the flow guide pipe 3, and the diameter of the slender column is 1mm-3 mm.
And the second method comprises the following steps: as shown in fig. 3, a limiting protrusion 33 is integrally formed on the tube body of the flow guide tube 3, the limiting protrusion 33 is an annular boss formed on the circumference, the limiting protrusion 33 is located above the notch 31 and close to the upper edge of the notch 31, the limiting protrusion is of a mandatory design and plays a limiting role, when the limiting protrusion moves to the top surface of the box body in the process of inserting the flow guide tube, the limiting protrusion is blocked to prevent the flow guide tube from being inserted continuously, so that the situation that the flow guide tube cannot be drunk due to complete insertion or excessive insertion of the flow guide tube can be effectively prevented. The pointed structure at the lower end of the draft tube 3 integrally extends downwards to form a puncture structure 34, and the puncture structure 34 is an elongated column.
And the third is that: as shown in fig. 4, a limiting protrusion 33 is integrally formed on the tube body of the flow guide tube 3, and the limiting protrusion 33 is one or more convex hulls arranged on the circumference, and the number of the convex hulls is more than one, and the convex hulls are uniformly distributed on the circumference. The function of the boss is the same as that of the annular boss, and the description is omitted here. The pointed structure at the lower end of the draft tube 3 integrally extends downwards to form a puncture structure 34, and the puncture structure 34 is an elongated column.
And fourthly: a limiting bulge 33 is integrally formed on the tube body of the draft tube 3, the puncture structure 34 is a slender column which can adopt an integral structure vertical to the draft tube 3, and the root of the slender column is fixedly connected with the limiting bulge 33 into a whole; the root of the slender column can also be hinged with the limiting bulge 33, the slender column has two states of opening and folding, the slender column is perpendicular to the flow guide pipe 3 after being opened (see figure 5), and the slender column is close to the flow guide pipe 3 after being folded (see figure 6).
Honeycomb duct 3 except above structure, honeycomb duct 3 can also be toper or two segmentation stair structure big-end-up, when honeycomb duct 3 is stair structure, breach 31 sets up the path section at honeycomb duct 3, stair structure also belongs to mandatory design, step face between two sections plays spacing effect, when the in-process step face that inserts the honeycomb duct moves to box body top surface position, the step face is blockked to make the honeycomb duct can not continue to insert, can effectively prevent to be inserted or insert too much because of the honeycomb duct is led to the condition that can't drink because of the honeycomb duct is inserted completely like this. The pointed structure at the lower end of the draft tube 3 integrally extends downwards to form a puncture structure 34, and the puncture structure 34 is an elongated column.
As shown in fig. 1-6, the inner diameter of the flow guide tube 3 is d, the inner diameter d is determined according to actual needs, preferably, d is greater than or equal to 5mm and less than or equal to 12mm in the embodiment, due to the existence of the air pressure balance hole, the inner diameter of the flow guide tube 3 is moderate, the inner diameter of the flow guide tube 3 is too small, the flow rate of liquid outflow is small, the smooth feeling and comfortable feeling of a user when drinking are poor, the inner diameter of the flow guide tube 3 is too large, on one hand, the material cost is increased, on the other hand, the flow guide tube 3 is stuck to the outer side of the box body when not being used, each package is clung to each other when being. Therefore, d is preferably not less than 5mm and not more than 12mm, and the liquid can flow out continuously and smoothly on the basis of convenient packaging and transportation. The inner diameter d of the draft tube 3 is 8mm, and the best effect is achieved. The length of the draft tube 3 is determined according to actual needs, the preferred length of the draft tube 3 is 40mm-80mm, the length of the draft tube 3 is too short, the draft tube is inconvenient to take when in use, and the exposed part is less after being inserted into the inner layer of the box body, which is not beneficial to the mouth of a user; the length overlength of honeycomb duct 3, not only extravagant material inserts the box body inlayer just deepening during the use moreover, inserts deepening, and it is just more just to remain the liquid in the box, and the user either drinks the limit and outwards draws honeycomb duct 3, or pulls out honeycomb duct 3 and falls outward when liquid still remains a lot in the box, and the in-process of falling has probably appeared spilling hourglass phenomenon. Preferably, the length of the draft tube 3 is 60mm, which is most effective.
When the utility model is used, firstly the honeycomb duct 3 and the packing bag outside the honeycomb duct are taken down from the outer layer 1 of the box body, then the packing bag is torn to take out the honeycomb duct 3, then the puncture structure 34 on the honeycomb duct 3 is used for penetrating the vent hole 12 to poke the top of the inner layer 2 of the box body to form an air pressure balance hole, then the tip of the honeycomb duct 3 or the puncture structure 34 is used for penetrating the liquid outlet hole to poke the top of the inner layer 2 of the box body to form a through hole, and the honeycomb duct 3 is extended into the inner layer 2 of the box body, and is actively reminded by the positioning indication line 32 or passively limited by the limiting bulge or the step surface on the honeycomb duct 3, the honeycomb duct 3 stops being inserted, at the moment, the mouth is used to contain the exposed part of the honeycomb duct 3, the liquid packing box is slowly inclined, the liquid in the inner layer 2 of, the liquid in the box body inner layer completely flows into the flow guide pipe through the gap 31, so that the fluid in the box body inner layer can be ensured to flow out. After the honeycomb duct 3 is inserted into the box body inner layer 2, the box body inner layer flying piece 21 which cannot fall off after being punctured and enters the box body inner layer is kept aside, the box body inner layer flying piece 21 is prevented from interfering the flowing liquid, and the leakage is avoided. There is great bore difference between atmospheric pressure balancing hole and the honeycomb duct, and the in-process of 3 water conservancy diversion of honeycomb duct, the atmospheric pressure balancing hole at box body inlayer 2 tops remains inside and outside atmospheric pressure unanimous throughout, makes the process of water conservancy diversion more smooth and easy, can not produce "chocing" phenomenon to even liquid overflows atmospheric pressure balancing hole in the box occasionally, also can not outwards spill the hourglass. The process of pouring the liquid in the liquid packaging box into the container by adopting the draft tube 3 is the same as that of drinking the liquid contained in the mouth, and the detailed description is omitted.
Tests prove that when the caliber of the air pressure balance hole generated by the puncture structure 34 is 2mm and the inner diameter of the flow guide pipe 3 is 7mm, the liquid in the pouring box can be poured smoothly and the liquid at the air pressure balance hole can be prevented from spilling and leaking with the best effect. Although the caliber of the air pressure balance hole can be changed to 1mm, the air input is too small, and the liquid flows out continuously through the draft tube 3, but the flow speed is slow; when the aperture of the air pressure balance hole is 2mm, the flowing speed and continuity of the liquid through the flow guide pipe 3 cannot be influenced, and after the box body is inclined, under the condition that the liquid flows out from the flow guide pipe 3, even if the box body is completely inverted, no liquid flows out from the air pressure balance hole, although the liquid can be seen from the air pressure balance hole, the air rapidly enters the box body to be sucked.
The foregoing has described in detail preferred embodiments of the present invention. It should be understood that numerous modifications and variations can be devised by those skilled in the art in light of the teachings of the present invention without undue experimentation. Therefore, the technical solutions that can be obtained by logical analysis, reasoning or limited experiments based on the prior art according to the concept of the present invention, such as changing the material of the box body, or changing the size of the flow guide tube, or changing the shape of the notch, or changing the style and position of the puncture structure, should be within the scope of protection defined by the claims.

Claims (12)

1. The utility model provides a novel liquid packaging box, has the box body, and this box body comprises box body skin (1) and box body inlayer (2) of setting in box body skin (1), and it has liquid outlet hole (11) and air vent (12), its characterized in that to open at the top of box body skin (1): be equipped with honeycomb duct (3) that are used for empting the drainage on the box body skin (1), this honeycomb duct (3) can pass out liquid hole (11) and stretch into in box body inlayer (2) be equipped with on honeycomb duct (3) and can puncture in order to form puncture structure (34) in atmospheric pressure balanced hole with box body inlayer (2) corresponding air vent (12) position department.
2. The new liquid package box of claim 1, wherein: the lower end of the draft tube (3) is of a pointed structure.
3. The new liquid package box of claim 2, wherein: a notch (31) is formed in the tube body of the draft tube (3), the notch (31) is circular, square or oval, and the notch (31) and the most pointed position of the tip end of the draft tube (3) are on the same vertical plane.
4. A new liquid package according to claim 3, wherein: and a positioning indicating line (32) is arranged on the tube body of the draft tube (3), and the positioning indicating line (32) is positioned above the notch (31) and close to the upper edge of the notch (31).
5. A new liquid package according to claim 3, wherein: be equipped with spacing arch (33) on the body of honeycomb duct (3), this spacing arch (33) are convex closure or annular boss, and spacing arch (33) are located the top of breach (31) and are close to the last border of breach (31).
6. A new liquid package according to claim 3, wherein: the honeycomb duct (3) is of a two-section step structure with a large upper part and a small lower part, and the notch (31) is arranged on the small-diameter section of the honeycomb duct (3).
7. The new liquid packing box according to claim 3, 4 or 6, wherein: the pointed structure at the lower end of the draft tube (3) extends downwards integrally to form a puncture structure (34), and the puncture structure (34) is a slender column.
8. The new liquid package box of claim 7, wherein: the axis of the slender column is parallel to the axis of the flow guide pipe (3), the diameter of the slender column is 1mm-3mm, and the inner diameter of the flow guide pipe (3) is 5mm-12 mm.
9. The new liquid package box of claim 5, wherein: the puncture structure (34) is a slender column, the slender column is vertical to the flow guide pipe (3), and the root of the slender column is fixedly connected with the limiting bulge (33) into a whole.
10. The new liquid package box of claim 5, wherein: the puncture structure (34) is a slender column, the root of the slender column is hinged with the limiting protrusion (33), the slender column is perpendicular to the flow guide pipe (3) after being opened, and the slender column is folded and then is close to the flow guide pipe (3).
11. The new liquid packing box according to claim 9 or 10, wherein: the diameter of the slender column is 1mm-3mm, and the inner diameter of the flow guide pipe (3) is 5mm-12 mm.
12. The new liquid package box of claim 1, wherein: the box body is formed by compounding paper, aluminum and plastic, and the volume of the box body is 100-300 ml.
CN202021165293.6U 2020-06-22 2020-06-22 Novel liquid packaging box Expired - Fee Related CN213385529U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021165293.6U CN213385529U (en) 2020-06-22 2020-06-22 Novel liquid packaging box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021165293.6U CN213385529U (en) 2020-06-22 2020-06-22 Novel liquid packaging box

Publications (1)

Publication Number Publication Date
CN213385529U true CN213385529U (en) 2021-06-08

Family

ID=76198576

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021165293.6U Expired - Fee Related CN213385529U (en) 2020-06-22 2020-06-22 Novel liquid packaging box

Country Status (1)

Country Link
CN (1) CN213385529U (en)

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