CN208846805U - A kind of cooling sub-sieve all-in-one machine of particle - Google Patents
A kind of cooling sub-sieve all-in-one machine of particle Download PDFInfo
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- CN208846805U CN208846805U CN201821494298.6U CN201821494298U CN208846805U CN 208846805 U CN208846805 U CN 208846805U CN 201821494298 U CN201821494298 U CN 201821494298U CN 208846805 U CN208846805 U CN 208846805U
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- sieve
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- cooling
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Abstract
The utility model relates to the cooling sub-sieve technical fields of particle, the cooling sub-sieve all-in-one machine of specifically a kind of particle, including host, host includes upper housing group, middle shell group, chassis assembly, escape pipe group is provided on the left of upper housing group, escape pipe group is connected with outlet pipe bend, outlet pipe bend is connected with escape pipe, escape pipe is connected with blower air inlet elbow, air-introduced machine is connected on blower air inlet elbow, the upper housing group includes material scattering device and aspirating hole, the material scattering device is rotary harrow material scattering device, material scattering device includes plectrum and rotation raking arm, the chassis assembly includes discharging structure and blanking sub-sieve structure, the discharging structure uses fence type countercurrent blowdown mechanism.Realize that the cooling sub-sieve of particle is integrally handled, directly particle screening is handled on the basis of not by individually sieving workshop section, structure is simple, easy to operate, it is easy to that automation control, safe and reliable, occupied area is small, cooling velocity is fast, effect is good, to ensure that the high-quality of cooling product.
Description
Technical field
The utility model relates to the cooling sub-sieve technical field of particle, the cooling sub-sieve all-in-one machines of specifically a kind of particle.
Background technique
It is the countercurrent action contrary with Flow of Goods and Materials using cooling airflow direction that it is standby, which to set technique, for tradition.Material is by top
Into, cold wind is entered by bottom orientation passes perpendicularly through material in cooling storehouse, cold wind first contacted with cold particle and after being gradually warmed up with
Hot particle contact, temperature gradually decreases formation material from top to bottom in storehouse, and temperature is gradually increasing air from top to bottom, cooling to be situated between
Matter is small with material temperature difference, takes away particle temperature by continuous air-flow, reaches cooling effect.
For traditional process equipment using diamond shape or rotation material scattering device sub-material, it is uneven that particle easily accumulates sub-material, easily causes cooling
Not in time, granular powder rate is higher;Discharge port causes particle to enter finished bin packing or independent together with powder without screening structure
Increase screening workshop section, process is cumbersome, takes up a large area, and artificial demand is more, large labor intensity, is not easy to automation control
System.
With national big development of the situation trend, automated production has become trend, and segmented production equipment realizes automation
Limitation is big, almost without possible.It is exactly above existing deficiencies in the technology.
Utility model content
The purpose of this utility model is to provide a kind of cooling sub-sieve all-in-one machines of particle, to solve to mention in above-mentioned background technique
Out the problem of.
To achieve the above object, the utility model provides the following technical solutions:
A kind of cooling sub-sieve all-in-one machine of particle, including host, the upper end of the host are installed by wind stopping device connection flange
There is feeder, feed inlet group is provided on the upside of the feeder, cutting plate is provided with below feeder, host includes upper casing
Body group, middle shell group, chassis assembly are provided with escape pipe group on the left of the upper housing group, and the escape pipe group is connected with out
Gas-pipe bend, the outlet pipe bend are connected with escape pipe, and the escape pipe is connected with blower air inlet elbow, the blower air inlet
Air-introduced machine is connected on elbow, the upper housing group includes material scattering device and aspirating hole, and the material scattering device is rotary harrow material scattering device, is dissipated
Glassware includes plectrum and rotation raking arm, and the chassis assembly includes that discharging structure and blanking sub-sieve structure, the discharging structure are adopted
With fence type countercurrent blowdown mechanism.
As a further solution of the present invention: being provided with blower transition connecting pipe group, the blower on the air-introduced machine
The upper end of transition connecting pipe group is connected with blower outlet straight tube group.
As a further solution of the present invention: the upper end of the blower outlet straight tube group is connected with blower outlet bend pipe
Group.
As a further solution of the present invention: the blower outlet bend pipe group is connected with cyclone dust collectors.
As a further solution of the present invention: the middle shell group is mounted on the upper end of chassis assembly, the upper casing
Body group is mounted on the upper end of middle shell group.
As a further solution of the present invention: the plectrum and rotation raking arm are driven by same motor.
As a further solution of the present invention: the middle shell group is particle cooling chamber.
As a further solution of the present invention: the discharging structure adjusts fence, discharge grid by pressure reductor, flow
Column, eccentric shaft transmission composition.
The blanking sub-sieve structure includes reciprocating sieve and tilting discharging knot as a further solution of the present invention,
Structure.
Compared with prior art, the utility model has the beneficial effects that this equipment is to use adverse current but principle, it is by feeding
Device, material scattering device, particle cooling chamber, discharging structure, blanking sub-sieve structure division composition.Type is rationally distributed, and structure is simple, assembles and disassembles
Conveniently, low energy consumption, high degree of automation, high production efficiency, is the current cooling equipment of ideal particle.
New equipment in working principle, integral layout, material scattering device structure, blanking screening structure and equipment use operation on
Many designs and optimization are carried out.Unique working principle makes it have that wind speed is uniform, air quantity is big, cooling medium and material temperature difference
Small spy;Material temperature is no more than 3-5 DEG C of room temperature after cooling, and precipitation rate is not less than 3.8%;Finished particle material is cooling uniformly, crackle is few,
Pulverization rate is low, high-efficient;Sub-sieve is reasonable in design, screening efficiency is high.It has that structure is simple, is easy to automation control, peace
The features such as complete reliable, occupied area is small, low energy consumption.Similar functions equipment before the cooling sub-sieve all-in-one machine of particle compares is main
Design, which improves, the following:
Equipment working principle: the wind direction countercurrent action contrary with Flow of Goods and Materials.Particle by top feeding device into
Enter, by passing perpendicularly through material in the comprehensive entrance particle cooling chamber in bottom, cold wind is first contacted and be gradually warmed up with cold particle cold wind
Contacted afterwards with hot particle, in particle cooling chamber formed material from top to bottom temperature gradually decrease, air from top to bottom temperature by
Gradually rise, cooling medium is small with material temperature difference, and Particle attrition rate is low, and bottom is blanking sub-sieve mechanism, effectively distinguishes particle and powder
Dirt.Material temperature is no more than 3-5 DEG C of room temperature after cooling, and precipitation rate is not less than 3.8%.
Equipment integral layout: exhausting guarantees that wind speed is uniform, air quantity is big using positive pressure pumping dust pelletizing system, and air-introduced machine outlet is adopted
With cyclone dust collectors, guarantee good production environment, host bottom is blanking sub-sieve structure, effectively distinguishes particle and dust, protects
It demonstrate,proves particle and is packaged quality stability.
Material scattering device structure uses rotary harrow material scattering device, increases rotation raking arm while rotating bulk cargo, material is through rotating
Material scattering device is fallen into particle cooling chamber, and particle carries out forcing arrangement of raking again.Bulk cargo effect is good, and cooling is uniform, crackle is few, powder
Rate is low, high-efficient.
Using fence type countercurrent blowdown mechanism, cold wind is from the comprehensive entrance of fence type countercurrent blowdown actuator base, from decompression
Plate and the gap adjusted between fence enter in particle cooling chamber, pass through the bed of material and carry out heat exchange.Pressure reductor has shared discharge grid
The normal pressure on column, fence problem on deformation, overcomes material leakage phenomenon caused by solving thus.Reduce power consumption, air intake surface
Product is bigger, also smaller to the extruding force of particle;Therefore pulverization rate is lower, and emptying residual is less, has better cooling effect.
Blanking sieves structure and uses reciprocating sieve and tilting discharging structure, and discharging fluency is good, and numerical density mitigates, damaged
Rate is low, and screening efficiency is high.
Equipment is simple to operation, saves artificial, it can be achieved that automatic operation.
Technical problem to be solved in the utility model aiming at deficiency of the prior art, and provides particle
The technical solution of cooling sub-sieve all-in-one machine realizes that the cooling sub-sieve of particle is integrally handled, on the basis of not by individually sieving workshop section
Directly particle screening is handled, structure is simple, easy to operate, is easy to that automation control, safe and reliable, occupied area is small, cooling
Speed is fast, effect is good, to ensure that the high-quality of cooling product.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model.
Fig. 2 is the left view of the utility model.
Fig. 3 is the top view of the utility model.
Fig. 4 is the schematic perspective view of the utility model.
Fig. 5 is the structural schematic diagram of host.
Fig. 6 is the right view of Fig. 5.
Fig. 7 is the M-M sectional view of Fig. 6.
Fig. 8 is the structural schematic diagram of material scattering device.
Fig. 9 be discharging structure not discharge when structural schematic diagram.
Structural schematic diagram when Figure 10 is discharging structure discharge.
1. host, 2. feeders, 3. feed inlet groups, 4. escape pipe groups, 5. outlet pipe bends, 6. escape pipes, 7. blowers into
Gas elbow, 8. air-introduced machines, 9. blower transition connecting pipe groups, 10. blower outlet straight tube groups, 11. blower outlet bend pipe groups, 12. whirlwind
Deduster, 13. upper housing groups, shell group in 14., 15. chassis assemblies, 16. wind stopping device connection flanges, 17. cutting plates, 18. groups
Piece, 19. rotation raking arms, 20. pressure reductors, 21. flows adjust fence, 22. discharge fence, 23. eccentric shaft transmissions.
Specific embodiment
It should be noted that in the absence of conflict, the feature in the embodiments of the present invention and embodiment can
To be combined with each other.
In the description of the present invention, it should be understood that term " center ", " longitudinal direction ", " transverse direction ", "upper", "lower",
The orientation or positional relationship of the instructions such as "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outside" is
It is based on the orientation or positional relationship shown in the drawings, is merely for convenience of describing the present invention and simplifying the description, rather than indicate
Or imply that signified device or element must have a particular orientation, be constructed and operated in a specific orientation, therefore cannot understand
For limitations of the present invention.In addition, term " first ", " second " etc. are used for description purposes only, and should not be understood as indicating
Or it implies relative importance or implicitly indicates the quantity of indicated technical characteristic." first ", " second " etc. are defined as a result,
Feature can explicitly or implicitly include one or more of the features.It is in the description of the present invention, unless another
It is described, the meaning of " plurality " is two or more.
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, be also possible to be electrically connected;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, on being understood by concrete condition
State the concrete meaning of term in the present invention.
The utility model will be described in detail below with reference to the accompanying drawings and embodiments.
Embodiment one
Refering to fig. 1~10, in the utility model embodiment, a kind of cooling sub-sieve all-in-one machine of particle, including host 1, it is described
The upper end of host 1 is equipped with feeder 2 by wind stopping device connection flange 16, and the upside of the feeder 2 is provided with feed inlet group
3, the lower section of feeder 2 is provided with cutting plate 17, and host 1 includes upper housing group 13, middle shell group 14, chassis assembly 15, described
The left side of upper housing group 13 is provided with escape pipe group 4, and the escape pipe group 4 is connected with outlet pipe bend 5, the outlet pipe bend
5 are connected with escape pipe 6, and the escape pipe 6 is connected with blower air inlet elbow 7, is connected with air-introduced machine on the blower air inlet elbow 7
8, blower transition connecting pipe group 9 is provided on the air-introduced machine 8, and the upper end of the blower transition connecting pipe group 9 is connected with blower outlet
Straight tube group 10, the upper end of the blower outlet straight tube group 10 are connected with blower outlet bend pipe group 11, the blower outlet bend pipe group
11 are connected with cyclone dust collectors 12.The wind direction countercurrent action contrary with Flow of Goods and Materials.Particle by top feeding device into
Enter, by passing perpendicularly through material in the comprehensive entrance particle cooling chamber in bottom, cold wind is first contacted and be gradually warmed up with cold particle cold wind
Contacted afterwards with hot particle, in particle cooling chamber formed material from top to bottom temperature gradually decrease, air from top to bottom temperature by
Gradually rise, cooling medium is small with material temperature difference, and Particle attrition rate is low, and bottom is blanking sub-sieve mechanism, effectively distinguishes particle and powder
Dirt.Material temperature is no more than 3-5 DEG C of room temperature after cooling, and precipitation rate is not less than 3.8%.Equipment integral layout: exhausting is removed using positive pressure pumping
Dirt system guarantees that wind speed is uniform, air quantity is big, and air-introduced machine outlet uses cyclone dust collectors, guarantees good production environment, host bottom
Portion is blanking sub-sieve structure, effectively distinguishes particle and dust, guarantees that particle is packaged quality stability.
The upper housing group 13 includes material scattering device and aspirating hole, and the material scattering device is rotary harrow material scattering device, and material scattering device includes
Plectrum 18 and rotation raking arm 19, the plectrum 18 and rotation raking arm 19 are driven by same motor.Material scattering device structure uses
Rotary harrow material scattering device, increases rotation raking arm 19 while rotating bulk cargo, and material falls into particle cooling chamber through rotating material scattering device
Interior, particle carries out forcing arrangement of raking again.Bulk cargo effect is good, and cooling is uniformly, crackle is few, pulverization rate is low, high-efficient.
The chassis assembly 15 includes discharging structure and blanking sub-sieve structure, and the discharging structure is arranged using fence type adverse current
Expect mechanism.The discharging structure adjusts fence 21, discharge fence 22, eccentric shaft transmission 23 by pressure reductor 20, flow and forms.
Using fence type countercurrent blowdown mechanism, cold wind is from the comprehensive entrance of fence type countercurrent blowdown actuator base, from pressure reductor and adjusting
Gap between fence enters in particle cooling chamber, passes through the bed of material and carries out heat exchange.Discharge fence 22 is by slowing down when discharge state
Machine passes through eccentric shaft transmission 23 and drives, and keeps discharge fence 22 reciprocating, and discharge fence 22 and flow adjust fence 21
Between relative position constantly change, particle is discharged from the gap of the two fence.When the state of cooling, discharge fence 22 is not transported
It is dynamic, cold wind from the comprehensive entrance of fence type countercurrent blowdown actuator base, from pressure reductor 20 and adjust gap between fence 22 into
Enter in particle cooling chamber, passes through the bed of material and carry out heat exchange.Adjust the opposite position between flow adjusting fence 21 and discharge fence 22
Setting can empty, withdrawal rate is reduced or increased.Pressure reductor has shared the normal pressure of discharge fence 21, fence caused by solving thus
Problem on deformation overcomes material leakage phenomenon.Power consumption is reduced, incoming air area is bigger, also smaller to the extruding force of particle;Therefore
Pulverization rate is lower, and emptying residual is less, has better cooling effect.
The middle shell group 14 is mounted on the upper end of chassis assembly 15, and the upper housing group 13 is mounted on middle shell group 14
Upper end.The middle shell group 14 is particle cooling chamber.
This equipment is to use adverse current but principle, it is by feeder, material scattering device, particle cooling chamber, discharging structure, blanking sub-sieve
Structure division composition.Type is rationally distributed, and structure is simple, be convenient to mount and dismount, low energy consumption, high degree of automation, high production efficiency, is
The cooling equipment of ideal particle at present.
New equipment in working principle, integral layout, material scattering device structure, blanking screening structure and equipment use operation on
Many designs and optimization are carried out.Unique working principle makes it have that wind speed is uniform, air quantity is big, cooling medium and material temperature difference
Small spy;Material temperature is no more than 3-5 DEG C of room temperature after cooling, and precipitation rate is not less than 3.8%;Finished particle material is cooling uniformly, crackle is few,
Pulverization rate is low, high-efficient;Sub-sieve is reasonable in design, screening efficiency is high.It has that structure is simple, is easy to automation control, peace
The features such as complete reliable, occupied area is small, low energy consumption.
Equipment is simple to operation, saves artificial, it can be achieved that automatic operation.
Technical problem to be solved in the utility model aiming at deficiency of the prior art, and provides particle
The technical solution of cooling sub-sieve all-in-one machine realizes that the cooling sub-sieve of particle is integrally handled, on the basis of not by individually sieving workshop section
Directly particle screening is handled, structure is simple, easy to operate, is easy to that automation control, safe and reliable, occupied area is small, cooling
Speed is fast, effect is good, to ensure that the high-quality of cooling product.
Embodiment two
On the basis of example 1, the blanking sub-sieve structure includes reciprocating sieve and tilting discharging structure.Lower material screen
Separation structure uses reciprocating sieve and tilting discharging structure, and discharging fluency is good, and numerical density mitigates, and breakage rate is low, screening efficiency
It is high.
The above is only the preferred embodiment of the utility model only, is not intended to limit the utility model, all at this
Within the spirit and principle of utility model, any modification, equivalent replacement, improvement and so on should be included in the utility model
Protection scope within.
Claims (9)
1. a kind of cooling sub-sieve all-in-one machine of particle, including host (1), the upper end of the host (1) pass through wind stopping device connection flange
(16) it is equipped with feeder (2), is provided with feed inlet group (3) on the upside of the feeder (2), the lower section setting of feeder (2)
Have cutting plate (17), host (1) includes upper housing group (13), middle shell group (14), chassis assembly (15), which is characterized in that institute
It states and is provided on the left of upper housing group (13) escape pipe group (4), the escape pipe group (4) is connected with outlet pipe bend (5), described
Outlet pipe bend (5) is connected with escape pipe (6), and the escape pipe (6) is connected with blower air inlet elbow (7), the blower air inlet
It is connected on elbow (7) air-introduced machine (8), the upper housing group (13) includes material scattering device and aspirating hole, and the material scattering device is rotation
Material scattering device is harrowed, material scattering device includes plectrum (18) and rotation raking arm (19), and the chassis assembly (15) includes discharging structure and blanking
Sub-sieve structure, the discharging structure use fence type countercurrent blowdown mechanism.
2. the cooling sub-sieve all-in-one machine of a kind of particle according to claim 1, which is characterized in that set on the air-introduced machine (8)
It is equipped with blower transition connecting pipe group (9), the upper end of the blower transition connecting pipe group (9) is connected with blower outlet straight tube group (10).
3. the cooling sub-sieve all-in-one machine of a kind of particle according to claim 2, which is characterized in that the blower outlet straight tube group
(10) upper end is connected with blower outlet bend pipe group (11).
4. the cooling sub-sieve all-in-one machine of a kind of particle according to claim 3, which is characterized in that the blower outlet bend pipe group
(11) cyclone dust collectors (12) are connected with.
5. the cooling sub-sieve all-in-one machine of a kind of particle according to claim 1, which is characterized in that middle shell group (14) peace
Mounted in the upper end of chassis assembly (15), the upper housing group (13) is mounted on the upper end of middle shell group (14).
6. the cooling sub-sieve all-in-one machine of a kind of particle according to claim 1, which is characterized in that the plectrum (18) and rotation
Raking arm (19) is driven by same motor.
7. the cooling sub-sieve all-in-one machine of a kind of particle according to claim 1 or 5, which is characterized in that the middle shell group
It (14) is particle cooling chamber.
8. the cooling sub-sieve all-in-one machine of a kind of particle according to claim 1, which is characterized in that the discharging structure is by depressurizing
Plate (20), flow adjust fence (21), discharge fence (22), eccentric shaft transmission (23) composition.
9. the cooling sub-sieve all-in-one machine of a kind of particle according to claim 1, which is characterized in that the blanking sub-sieve structure packet
Include reciprocating sieve and tilting discharging structure.
Priority Applications (1)
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CN201821494298.6U CN208846805U (en) | 2018-09-13 | 2018-09-13 | A kind of cooling sub-sieve all-in-one machine of particle |
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CN201821494298.6U CN208846805U (en) | 2018-09-13 | 2018-09-13 | A kind of cooling sub-sieve all-in-one machine of particle |
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CN201821494298.6U Expired - Fee Related CN208846805U (en) | 2018-09-13 | 2018-09-13 | A kind of cooling sub-sieve all-in-one machine of particle |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109059378A (en) * | 2018-09-13 | 2018-12-21 | 山东金格瑞机械有限公司 | A kind of cooling sub-sieve all-in-one machine of particle |
-
2018
- 2018-09-13 CN CN201821494298.6U patent/CN208846805U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109059378A (en) * | 2018-09-13 | 2018-12-21 | 山东金格瑞机械有限公司 | A kind of cooling sub-sieve all-in-one machine of particle |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20190510 Termination date: 20210913 |