CN207890077U - A kind of discharge port fracture structure - Google Patents
A kind of discharge port fracture structure Download PDFInfo
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- CN207890077U CN207890077U CN201721898599.0U CN201721898599U CN207890077U CN 207890077 U CN207890077 U CN 207890077U CN 201721898599 U CN201721898599 U CN 201721898599U CN 207890077 U CN207890077 U CN 207890077U
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- discharge port
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- pressure fluid
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Abstract
The utility model is related to feed liquid Canning Technique fields, and in particular to a kind of discharge port fracture structure, including:There is ontology the high pressure fluid channel for being suitable for being set to discharge outlet, the high-pressure fluid that the high pressure fluid channel sprays to form high forming dough into noodles, and the high forming dough into noodles blocks the feed liquid column flowed through.Discharge port fracture structure provided by the utility model, viscous feed liquid fracture is thorough, is conducive to improve product-filled quality and production cleannes, maintains easily cleaning.
Description
Technical field
The utility model is related to feed liquid Canning Technique fields, and in particular to a kind of discharge port fracture structure.
Background technology
In numerous industries such as food processing, product manufacturing, feed liquid drawing mechanism can be all applied to when feed liquid is filling, for filling
The difference for the liquid characteristic that feeds, used drawing mechanism are often also different.Such as in ice cream, baking production process, to production
The control of product grammes per square metre, the shape of product control, be required for fracture thorough, for the filling of this high viscosity feed liquid, discharging
Device generally requires that feed liquid is made to spray discharge port under high pressure effect, but since viscosity of sludge is very big, material after single is filling
Liquid wire drawing, adhesion, fracture is very difficult, and the feed liquid for sticking in discharge outlet is easily hung at outside container filling and filling platform
On, the continuity of filling production is influenced, it is filling in order to not influence next time, need artificial fracture or the individual material cutting-off mechanism of setting
The adhesion feed liquid of discharge outlet is disconnected.
For this purpose, Chinese patent literature CN205917011U discloses a kind of filling liquid open and close valve, including material passing tube, lead to material
Pipe is communicated with the feeding pipe that liquid material is sent into material passing tube, is equipped with fixed seat in the upper end of material passing tube, fixed seat is equipped with gas
Cylinder, the piston rod of cylinder are fixedly connected with through the connecting rod being arranged in material passing tube, and the lower end of material passing tube is equipped with filling head, fills
Dress head bottom is provided with discharge port, and reclaiming plate is provided on discharge port:It is provided with inner conical surface, the lower end of connecting rod on the inside of discharge port
It is fixed with spool, spool is located in filling head, and spool lower end is equipped with is equipped with male cone (strobilus masculinus) with the inner conical surface of filling head;Reclaiming plate
It is equipped with discharge hole.Although the prior art controls the switch of discharge port by spool, in actual use, for viscosity
Greatly, for the feed liquid of wire drawing length, even if spool closes discharge port, the feed liquid of discharge outlet is still sticked to discharge outlet, no decision
It opens, the effect is unsatisfactory for fracture;And spool is used for a long time, and valve chamber is easy to be blocked by high viscosity feed liquid, and cleaning and maintenance is of high cost.
Utility model content
Therefore, the technical problem to be solved by the present invention is to overcome in the prior art viscous feed liquid discharging fracture it is tired
Defect that is difficult, influencing filling production, to provide, a kind of viscous feed liquid fracture is thorough, is conducive to improve product-filled quality and life
Cleannes are produced, the discharge port fracture structure of cleaning is maintained easily.
The technical solution adopted in the utility model is as follows:
A kind of discharge port fracture structure, including:Ontology has the high pressure fluid channel for being suitable for being set to discharge outlet, institute
The high-pressure fluid for stating high pressure fluid channel ejection forms high forming dough into noodles, and the high forming dough into noodles blocks the feed liquid column flowed through.
Also there is the ontology pressure storing cavity being set to below the discharge port, the pressure storing cavity to have and the discharge port pair
The fracture mouth that should be arranged, and the de- material mouth that is correspondingly arranged with the fracture mouth, the feed liquid column are adapted to extend into the fracture mouth,
The outlet of the high pressure fluid channel is connected to the pressure storing cavity, along perpendicular to feed solution flow direction, the section of the pressure storing cavity
More than the section of the discharge port, the feed liquid column being truncated is deviate from from the de- material mouth.
The discharge port is connected to fracture mouth sealing.
It is connected with stripping pipe at the de- material mouth.
The high pressure fluid channel includes the main fluid passageway for being suitable for being connected to high-pressure fluid source, and is set to the mainstream
The outlet of several branch flow paths of body channel end, each branch flow paths is connected to the pressure storing cavity, several
The outlet of the branch flow paths is arranged around the fracture mouth.
The c-type chamber for being arranged around discharge port and being connected to the main fluid passageway, the c-type chamber structure are equipped in the ontology
At the branch flow paths, the outlet of two branch flow paths is located at two ends of the c-type chamber.
The fracture mouth is located at the center of the pressure storing cavity, two ends of the c-type chamber respectively with the pressure storing cavity
Both ends are connected to.
The pressure storing cavity is elongated, is set to below c-type chamber.
The ontology, which has, is suitable for several branch's tapping channels for be connected to the discharge port, the high pressure fluid channel and
The outlet of branch's tapping channel is arranged in a one-to-one correspondence.
The high-pressure fluid is high pressure gas or the high-pressure fluid is low viscosity highly pressurised liquid.
Technical solutions of the utility model have the following advantages that:
1. discharge port fracture structure provided by the utility model, including ontology have the height for being suitable for being set to discharge outlet
Fluid channel is pressed, when discharge port stops discharging, after having high-pressure fluid to be passed through high pressure fluid channel and being gone out from its outlet, is formed
The feed liquid column of discharge port adhesion can be blocked quickly, keep its fracture thorough by strong high forming dough into noodles, avoid bonding wire drawing,
In the production process of product, the filling grammes per square metre of product, control shape of product, moreover it is possible to improve outside product can not only be precisely controlled
The cleaning of side and filling production lines improves the hygienic quality of product, saves emission reduction;And by the cut-off of injection material of high-pressure fluid
Fluid column, feed liquid column directly fall off, and do not pollute fracture structure, and the easy holding cleaning under the washing away of high-pressure fluid of fracture structure is logical
Freely, cleaning and maintenance is convenient, is hardly damaged.
2. discharge port fracture structure provided by the utility model, ontology also has the pressure storing cavity being set to below discharge port, storage
Pressing chamber has the fracture mouth of corresponding discharge port setting, and a de- material mouth of corresponding fracture mouth setting, the outlet of high pressure fluid channel with
Pressure storing cavity is connected to, and along perpendicular to feed solution flow direction, the section of pressure storing cavity is more than the section of discharge port, the feed liquid column being truncated from
The de- material mouth abjection, after high-pressure fluid pours pressure storing cavity, accumulation supercharging rapidly, is collected to rapidly fracture mouth in pressure storing cavity
Place forms the high forming dough into noodles circumferentially gone out from feed liquid column, the feed liquid column stretched into fracture mouth is blocked, and feed liquid column is i.e. from de- material mouth
Abjection;The setting of pressure storing cavity can carry out secondary booster to the high-pressure fluid that high pressure fluid channel flows out, and block dynamics bigger, cut
It is disconnected rapider.
3. discharge port fracture structure provided by the utility model, discharge port is tightly connected with fracture mouth, makes the material of discharge port
Fluid column is located in fracture mouth, and can reduce the high-pressure fluid at fracture mouth and overflow loss, makes high-pressure fluid all from de- material mouth
Outflow.
4. discharge port fracture structure provided by the utility model, it is connected with stripping pipe at de- material mouth, is conducive to prevent high pressure
Fluid large area is sprayed.
5. discharge port fracture structure provided by the utility model, the outlet of several branch flow paths is around fracture mouth and storage
Press chamber connection so that high-pressure fluid can spray into fracture mouth from multiple directions, avoid blocking that direction is single, biasing leads to feed liquid column
It blocks and is not thorough;The c-type chamber being arranged in ontology constitutes the branch flow paths of high pressure fluid channel, two branch flow paths
Outlet is located at two ends of c-type chamber, and two branch flow paths are located at the side of discharge port so that high-pressure fluid
It is blocked from the both sides of feed liquid column, high-pressure fluid unilateral side is avoided to be arranged, caused feed liquid column to only have part and be truncated, still hang over
The high-pressure fluid of the outlet outflow of several branch flow paths is collected in fracture mouth by the case where discharge outlet using pressure storing cavity
Place, further increases the dynamics of blocking, high-pressure fluid is made to overcome viscosity of sludge, rapid fracture.
6. discharge port fracture structure provided by the utility model, pressure storing cavity is elongated, and high-pressure fluid is flowed into from its both ends,
It is flowed to fracture mouth, is more advantageous to form vortex, Quick-pressurizing.
7. discharge port fracture structure provided by the utility model, high-pressure fluid are high pressure gas, cleanliness without any pollution does not influence
It is product-filled;Or high-pressure fluid is that low viscosity highly pressurised liquid, using liquid, is blocked in the case where not influencing product-filled
Dynamics is stronger.
Description of the drawings
It, below will be right in order to illustrate more clearly of specific embodiment of the present invention or technical solution in the prior art
Specific implementation mode or attached drawing needed to be used in the description of the prior art are briefly described, it should be apparent that, it is described below
In attached drawing be that some embodiments of the utility model are not paying creativeness for those of ordinary skill in the art
Under the premise of labour, other drawings may also be obtained based on these drawings.
Fig. 1 is the three-dimensional view of the discharge port fracture structure provided in the embodiments of the present invention one;
Fig. 2 is the sectional view of A-A sections shown in Fig. 1;
Fig. 3 is another view stereo view of discharge port fracture structure shown in FIG. 1;
Fig. 4 is the sectional view of B-B sections shown in Fig. 3;
Fig. 5 is structural schematic diagram of the lower body shown in FIG. 1 towards upper body side;
Fig. 6 is the other side structural schematic diagram of lower body shown in fig. 5;
Fig. 7 is structural schematic diagram of the upper body shown in FIG. 1 towards lower body side.
Reference sign:
1- discharge ports;2- branches tapping channel;3- main fluid passageways;4-C cavities;5- pressure storing cavities;6- stripping pipes;7- is upper originally
Body;8- lower bodies;9- de- material mouths.
Specific implementation mode
The technical solution of the utility model is clearly and completely described below in conjunction with attached drawing, it is clear that described
Embodiment is the utility model a part of the embodiment, instead of all the embodiments.Based on the embodiments of the present invention, originally
The every other embodiment that field those of ordinary skill is obtained without making creative work, belongs to this practicality
Novel protected range.
In the description of the present invention, it should be noted that term "center", "upper", "lower", "vertical", "horizontal",
The orientation or positional relationship of the instructions such as "inner", "outside" is to be based on the orientation or positional relationship shown in the drawings, and is merely for convenience of retouching
State the utility model and simplify and describe, do not indicate or imply the indicated device or element must have a particular orientation, with
Specific azimuth configuration and operation, therefore should not be understood as limiting the present invention.
In the description of the present invention, it should be noted that unless otherwise clearly defined and limited, term " is pacified
Dress ", " connected ", " connection " shall be understood in a broad sense, for example, it may be being fixedly connected, may be a detachable connection, or integrally
Connection;It can be mechanical connection, can also be electrical connection;Can be directly connected, can also indirectly connected through an intermediary,
It can be the connection inside two elements.For the ordinary skill in the art, it can understand above-mentioned art with concrete condition
The concrete meaning of language in the present invention.
In addition, as long as technical characteristic involved in the utility model different embodiments disclosed below is each other
Not constituting conflict can be combined with each other.
Embodiment one
As shown in figs. 1-7, discharge port fracture structure provided in this embodiment, including ontology have and are suitable for being set to discharging
High pressure fluid channel at mouth 1 is formed strong after having high-pressure fluid to be passed through high pressure fluid channel and being gone out from its outlet
The feed liquid column wire drawing of 1 adhesion of discharge port or material block can be blocked quickly, keep its fracture thorough, bonding is avoided to draw by high forming dough into noodles
Silk, in the production process of product, can not only be precisely controlled the filling grammes per square metre of product, control shape of product, moreover it is possible to improve production
The cleaning of product outside and filling production lines, improves the hygienic quality of product, saves emission reduction;And it is cut by the injection of high-pressure fluid
Fracture fluid column, feed liquid column directly fall off, and do not pollute fracture structure, the easy holding cleaning under the washing away of high-pressure fluid of fracture structure
Unobstructed, cleaning and maintenance is convenient, is hardly damaged.
There are ontology four branch's tapping channels 2 being connected to discharge port 1, each branch's tapping channel 2 to be correspondingly arranged on
One high pressure fluid channel, each high pressure fluid channel include the main fluid passageway 3 being connected to high-pressure fluid source, and set on master
Two branch flow paths of 3 end of fluid channel, two branch flow paths are set around the outlet of branch's tapping channel 2
It sets.
Ontology includes upper body 7 and lower body 8, upper body 7 be it is cylindric, the branch flow paths of high pressure fluid channel by
Take shape in groove on 7 bottom surface of upper body to constitute, form C-shaped grooves on 7 bottom surface of upper body, the middle of C-shaped grooves at
Type is in the outlet of the main fluid passageway 3 of intrinsic high pressure fluid channel;Lower body 8 is disk-shaped, and palette is in circle
On the bottom surface of columnar upper body 7, C-shaped grooves are closed as c-type chamber 4, meanwhile, lower body 8 and C-shaped channel relative to top surface at
Type has strip-shaped groove, and two parts are tightly connected ontology up and down, and two ends of C-shaped channel are correspondingly arranged in the two of strip-shaped groove
End top, closing strip-shaped groove constitute pressure storing cavity 5, and the center of strip-shaped groove is additionally provided with to be led to through what lower body 8 was arranged
Hole, the through-hole constitute de- material mouth 9;Stripping pipe 6 is also associated at de- material mouth 9.
Branch's tapping channel 2 takes shape in upper body 7 along the axial direction of ontology, and each c-type chamber 4 discharges around a branch
Channel 2 is arranged, and the outlet of each branch's tapping channel 2 corresponds to strip-shaped groove setting, makes branch's tapping channel 2 and pressure storing cavity 5
Connection, the connectivity part formation fracture mouth corresponding with 2 outlet of branch tapping channel of pressure storing cavity 5.After high-pressure fluid pours pressure storing cavity 5,
Accumulation supercharging rapidly, is collected to rapidly at fracture mouth, the feed liquid column stretched into fracture mouth is blocked, feed liquid column is in pressure storing cavity 5
Deviate from from de- material mouth 9;The setting of pressure storing cavity 5 carries out secondary booster to the high-pressure fluid that high pressure fluid channel flows out, and blocks dynamics
Bigger, block it is rapider, and pressure storing cavity 5 high-pressure fluid of the outlet outflow of several high pressure fluid channels can be collected in it is disconnected
At material mouth, the dynamics of blocking is further increased, high-pressure fluid is made to overcome viscosity of sludge, rapid fracture.
Ontology is divided into the molding seperated with lower body 8 of upper body 7, easy to process.
1 top of discharge port is suitable for being connected to feeding-passage.
High pressure fluid channel is suitable for being passed through high pressure oxygen.
As the alternative embodiments of embodiment one, upper body is integrally formed with lower body, and c-type chamber and pressure storing cavity are direct
Body interior is taken shape in, two ends of c-type chamber are connected to the sealing of the both ends of pressure storing cavity.
As the alternative embodiments of embodiment one, high pressure fluid channel is suitable for being passed through high pressure nitrogen.
As the alternative embodiments of embodiment one, high pressure fluid channel is suitable for being passed through low viscosity highly pressurised liquid, such as water.
As the alternative embodiments of embodiment one, it is not provided with pressure storing cavity in ontology, four points of high pressure fluid channel
The outlet of branch fluid channel be disposed as it is flat, this it is flat outlet towards branch discharge channel exit feed liquid column set
It sets, also, four flat outlets form fracture mouth around branch's tapping channel setting, when high-pressure fluid is logical from branch fluid
The flat outlet in road is flowed out, and feed liquid column is blocked.
As the alternative embodiments of embodiment one, ontology is in cuboid or other shapes convenient for manufacture.
As the alternative embodiments of embodiment one, the cylinder cavity of pressure storing cavity.
Obviously, the above embodiments are merely examples for clarifying the description, and does not limit the embodiments.It is right
For those of ordinary skill in the art, can also make on the basis of the above description it is other it is various forms of variation or
It changes.There is no necessity and possibility to exhaust all the enbodiments.And it is extended from this it is obvious variation or
Among the protection domain that variation is created still in the utility model.
Claims (10)
1. a kind of discharge port fracture structure, which is characterized in that including:
Ontology has and is suitable for being set to the high pressure fluid channel at discharge port (1), the high-pressure spray that the high pressure fluid channel sprays
Body forms high forming dough into noodles, and the high forming dough into noodles blocks the feed liquid column flowed through.
2. discharge port fracture structure according to claim 1, which is characterized in that the ontology, which also has, is set to the discharging
Pressure storing cavity (5) below mouthful (1), the pressure storing cavity (5) have a fracture mouth being correspondingly arranged with the discharge port (1), and with institute
The de- material mouth (9) that fracture mouth is correspondingly arranged is stated, the feed liquid column is adapted to extend into the fracture mouth, the high pressure fluid channel
Outlet is connected to the pressure storing cavity (5), is more than the discharging along perpendicular to the section in feed solution flow direction, the pressure storing cavity (5)
The section of mouth (1), the feed liquid column being truncated are deviate from from the de- material mouth (9).
3. discharge port fracture structure according to claim 2, which is characterized in that the discharge port (1) and the fracture mouth
It is tightly connected.
4. discharge port fracture structure according to claim 2, which is characterized in that be connected with de- material at the de- material mouth (9)
It manages (6).
5. discharge port fracture structure according to claim 2, which is characterized in that the high pressure fluid channel include be suitable for
The main fluid passageway (3) of high-pressure fluid source connection, and several branch fluids set on the main fluid passageway (3) end are logical
The outlet in road, each branch flow paths is connected to the pressure storing cavity (5), and the outlet of several branch flow paths is enclosed
It is arranged around the fracture mouth.
6. discharge port fracture structure according to claim 5, which is characterized in that be equipped in the ontology and surround the discharging
The c-type chamber (4) mouth (1) setting and be connected to the main fluid passageway (3), it is logical that the c-type chamber (4) constitutes the branch fluid
Road, the outlet of two branch flow paths are located at two ends of the c-type chamber (4).
7. discharge port fracture structure according to claim 6, which is characterized in that the fracture mouth is located at the pressure storing cavity
(5) two ends at center, the c-type chamber (4) are connected to the both ends of the pressure storing cavity (5) respectively.
8. discharge port fracture structure according to claim 7, which is characterized in that the pressure storing cavity (5) is elongated, setting
Below the c-type chamber (4).
9. according to claim 1-8 any one of them discharge port fracture structures, which is characterized in that the ontology have be suitable for
Several branch's tapping channels (2) of discharge port (1) connection, the high pressure fluid channel and branch's tapping channel (2)
Outlet be arranged in a one-to-one correspondence.
10. according to claim 1-8 any one of them discharge port fracture structures, which is characterized in that the high-pressure fluid is height
Calm the anger body or the high-pressure fluid is low viscosity highly pressurised liquid.
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CN201721898599.0U CN207890077U (en) | 2017-12-29 | 2017-12-29 | A kind of discharge port fracture structure |
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CN201721898599.0U CN207890077U (en) | 2017-12-29 | 2017-12-29 | A kind of discharge port fracture structure |
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CN207890077U true CN207890077U (en) | 2018-09-21 |
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