CN208554084U - Spray-cooling granulating tower - Google Patents
Spray-cooling granulating tower Download PDFInfo
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- CN208554084U CN208554084U CN201821036314.7U CN201821036314U CN208554084U CN 208554084 U CN208554084 U CN 208554084U CN 201821036314 U CN201821036314 U CN 201821036314U CN 208554084 U CN208554084 U CN 208554084U
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- blanking
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- tower body
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Abstract
The utility model provides a kind of spray-cooling granulating tower.The spray-cooling granulating tower includes tower body, blanking structure at the top of the tower body and the suspension beam structure being located in the tower body, vertebral body structure and multiple Blowing stoppers, the bottom of the tower body offers the air inlet being connected to outside air, the blanking structure includes blanking shell and the feeding plate in the blanking shell, the air-out chamber that the inner cavity of the blanking shell is divided into feed cavity and be connected to the air inlet by the feeding plate, the suspension beam structure includes the first overarm plate positioned at the blanking housing bottom, second overarm plate and multiple blanking spray heads corresponding with the feed cavity between the first overarm plate and the second overarm plate, the inner cavity of the multiple blanking spray head is connected to the feed cavity, the vertebral body structure is located at the bottom of the tower body.The spray-cooling granulating tower of the utility model is easy to operate and coagulation efficacy is higher.
Description
Technical field
The utility model relates to mechanical equipment technical fields, and in particular to a kind of spray-cooling granulating tower.
Background technique
Existing spray-cooling granulating tower, since feeding structure is more single, material often passes through feed cavity and enters in tower body,
If material does not liquefy completely, the material for having certain viscosity easily blocks air inlet hole when falling, inconvenient;Also, when outer
After boundary's air enters tower body by air inlet, if air is unevenly contacted with material, hot and cold alternation, after liquefaction can not be made
Material is solidified as particle completely, influences coagulation efficacy.
Utility model content
Based on this, it is necessary to be made in view of the above-mentioned problems, providing one kind higher misting cooling of easy to operate and coagulation efficacy
Grain tower.
A kind of spray-cooling granulating tower comprising tower body, the blanking structure at the top of the tower body and be located at
Suspension beam structure, vertebral body structure and multiple Blowing stoppers in the tower body, the bottom of the tower body is offered to be connected to outside air
Air inlet, the blanking structure includes blanking shell and the feeding plate in the blanking shell, and the feeding plate will
The air-out chamber that the inner cavity of the blanking shell is divided into feed cavity and is connected to the air inlet, the suspension beam structure include being located at
The blanking housing bottom first overarm plate, second overarm plate and be located at it is described first overarm plate and it is described second overarm plate
Between multiple blanking spray heads corresponding with the feed cavity, the inner cavity of the multiple blanking spray head is connected to the feed cavity,
The vertebral body structure is located at the bottom of the tower body, and the vertebral body structure includes upper centrum, on the upper centrum inner wall
Multiple equal blast caps and hypocentrum positioned at the upper centrum bottom, the upper centrum is tapered, and the multiple equal blast cap wraps
The cylinder cap for including cylinder and being connect by the cylinder with the upper centrum, the cylinder cap are opened up on the cylinder cap in coniform
There are multiple material-dropping holes, and the tip of the cylinder cap, towards the blanking structure, the hypocentrum is in the form of annular discs, the hypocentrum
Periphery offers multiple tangent line air inlet holes being connected to the air inlet, and the upper surface of the hypocentrum is towards the upper centrum
Direction extends and is in arc transition, and the upper surface of the hypocentrum and the tip of the upper centrum support, the multiple Blowing stopper
Positioned at the bottom of the upper centrum.
Further, the surface of the multiple cylinder cap is provided with blanking layer, offers multiple blankings on the blanking layer
Hole.
Further, the discharge pipe being connected to the air-out chamber is additionally provided at the top of the tower body.
It further, further include collection structure and air guide structure, the collection structure includes shell and is located at described
Collector in shell, the inner cavity of the shell form dust chamber, the separate tower body on the dust chamber and the discharge pipe
One end connection, the air guide structure is adjacent to the collection structure.
Further, the air guide structure includes connecting tube, guide duct and induced draft fan, one end of the connecting tube with it is described
Discharge pipe connection, the guide duct are connected to one end in the connecting tube far from the discharge pipe, and the induced draft fan is located at institute
It states on guide duct.
Further, further include control cabinet, the Blowing stopper, the collector, the induced draft fan with the control cabinet
Connection.
Further, the tower body is made of aluminum alloy material.
Further, the surface of the multiple equal blast cap is provided with stainless steel coating, the stainless steel coating with a thickness of
0.3-0.8 millimeters.
The spray-cooling granulating tower of the utility model, suspension beam structure are provided with multiple the first overarm plates and second that are located at and hang oneself from a beam
Between plate, and blanking spray head corresponding with feed cavity, since the inner cavity of multiple blanking spray heads is connected to feed cavity, it uses
Family can be controlled material by the inner cavity size of multiple blanking spray heads and enter the intracorporal shape of tower and size;Multiple equal blast caps are located at
On the inner wall of upper centrum, multiple equal blast caps include cylinder and the cylinder cap that is connect by cylinder with upper centrum, since cylinder cap is in
It is coniform, offer multiple material-dropping holes on cylinder cap, and the tip of cylinder cap is towards blanking structure, therefore, on the one hand, enter in tower body
Material contacted with cylinder cap after fall to hypocentrum bottom again, cylinder cap can block the material for having certain viscosity, prevent from having
The material of standby certain viscosity blocks tangent line air inlet hole when falling, easy to operate;On the other hand, the air inlet being connected to outside air
After mouthful entering tower body, air by multiple tangent line air inlet holes with flow through the material after material-dropping hole contact or air pass through it is multiple
Tangent line air inlet hole enters in multiple material-dropping holes, air can be broken up, so that air is more uniformly contacted with material, it is cold and hot
Alternately, so that the material after liquefaction is solidified as particle completely, coagulation efficacy is improved.
Detailed description of the invention
The utility model is described in further detail with reference to the accompanying drawings and examples.
Fig. 1 is the planar structure schematic diagram of the spray-cooling granulating tower of the utility model;
Fig. 2 is the partial enlarged view in spray-cooling granulating tower shown in Fig. 1 at A;And
Fig. 3 is the partial enlarged view in spray-cooling granulating tower shown in Fig. 1 at B.
Numbering in the drawing are as follows:
Specific embodiment
To keep the above objects, features, and advantages of the utility model more obvious and easy to understand, with reference to the accompanying drawing to this
The specific embodiment of utility model is described in detail.Many details are explained in the following description in order to abundant
Understand the utility model.But the utility model can be implemented with being much different from other way described herein, this field
Technical staff can do similar improvement without prejudice to the utility model connotation, therefore the utility model is not by following public affairs
The limitation for the specific embodiment opened.
It should be noted that it can directly on the other element when element is referred to as " being fixed on " another element
Or there may also be elements placed in the middle.When an element is considered as " connection " another element, it, which can be, is directly connected to
To another element or it may be simultaneously present centering elements.
Unless otherwise defined, all technical and scientific terms used herein are led with the technology for belonging to the utility model
The normally understood meaning of the technical staff in domain is identical.Terminology used in the description of the utility model herein only be
The purpose of description specific embodiment, it is not intended that in limitation the utility model.Term " and or " used herein includes
Any and all combinations of one or more related listed items.
The utility model provides a kind of spray-cooling granulating tower 100 referring to FIG. 1-2, comprising tower body 10 is located at tower
The blanking structure 20 at the top of body 10 and the suspension beam structure 30 being located in tower body 10, vertebral body structure 40, multiple Blowing stoppers 50,
Collection structure 60 adjacent to tower body 10, the air guide structure 70 adjacent to collection structure 60 and the control adjacent to air guide structure 70
Cabinet processed (not shown go out).
Tower body 10 is made of aluminum alloy material.The bottom of tower body 10 offers the air inlet 11 being connected to outside air, tower
The top of body 10 is provided with discharge pipe 12.
Blanking structure 20 includes blanking shell 21 and the feeding plate 22 in blanking shell 21, and feeding plate 22 is by blanking
The inner cavity of shell 21 is divided into feed cavity 211 and the air-out chamber being connected to air inlet 11 212, air-out chamber 212 also with discharge pipe 12
Inner cavity connection.
Suspension beam structure 30 includes that the first overarm plate 31, second positioned at 21 bottom of blanking shell hangs oneself from a beam and plate 32 and is located at the
Multiple blanking spray heads 33 corresponding with feed cavity 211 between one overarm plate 31 and the second overarm plate 32.Multiple blanking spray heads 33
Inner cavity is connected to feed cavity 211.
Vertebral body structure 40 is located at the bottom of tower body 10, and vertebral body structure 40 includes upper centrum 41, is located on upper 41 inner wall of centrum
Multiple equal blast caps 42 and hypocentrum 43 positioned at upper 41 bottom of centrum.Upper centrum 41 is tapered, the table of multiple equal blast caps 42
Face is provided with stainless steel coating, stainless steel coating with a thickness of 0.3-0.8 millimeters, multiple equal blast caps 42 include cylinder 421 with
And the cylinder cap 422 being connect by cylinder 421 with upper centrum 41, in coniform, the surface of cylinder cap 422 is provided with to be fallen cylinder cap 422
The bed of material (not shown go out) offers on the blanking layer multiple material-dropping holes (not shown go out), and the tip of cylinder cap 422 is towards blanking
Structure 20, hypocentrum 43 is in the form of annular discs, and the periphery of hypocentrum 43 offers multiple tangent line air inlet holes being connected to air inlet 11
431, the direction of upper surface towards the upper centrum 41 of hypocentrum 43 extends and is in arc transition, the upper surface of hypocentrum 43 and upper vertebra
The tip of body 41 supports.
Multiple Blowing stoppers 50 are located at the bottom of upper centrum 41.
Collection structure 60 includes shell 61 and the collector 62 in shell 61, and the inner cavity of shell 61 forms dust chamber
611, dust chamber 611 is connected to one end on discharge pipe 12 far from tower body 10.
Air guide structure 70 includes connecting tube 71, guide duct 72 and induced draft fan 73, and one end of connecting tube 71 and discharge pipe 12 connect
Logical, guide duct 72 is connected to one end in connecting tube 71 far from discharge pipe 12, and induced draft fan 73 is located on guide duct 72.
Control cabinet and Blowing stopper 50, collector 62, induced draft fan 73 are electrically connected.
The spray-cooling granulating tower 100 of the utility model, suspension beam structure 30 be provided with it is multiple be located at the first overarm plate 31 with
Between second overarm plate 32, and blanking spray head 33 corresponding with feed cavity 211, due to multiple blanking spray heads 33 inner cavity with into
Expect that chamber 211 is connected to, therefore, user can control the shape that material enters in tower body 10 by the inner cavity size of multiple blanking spray heads 33
Shape and size;Multiple equal blast caps 42 are located on the inner wall of upper centrum 41, and multiple equal blast caps 42 including cylinder 421 and pass through cylinder
The cylinder cap 422 that body 421 is connect with upper centrum 41, since cylinder cap 422 is in coniform, the surface of cylinder cap 422 is provided with blanking layer,
Multiple material-dropping holes are offered on the blanking layer, the tip of cylinder cap 422 is towards blanking structure 20, therefore, on the one hand, enter tower body
Material in 10 falls to 43 bottom of hypocentrum again after contacting with cylinder cap 422, cylinder cap 422, which can block, has certain viscosity
Material prevents the material for having certain viscosity from blocking tangent line air inlet hole 431 when falling, easy to operate;On the other hand, with the external world
After the air inlet 11 of air communication enters tower body 10, air is by multiple tangent line air inlet holes 431 and flows through the material after material-dropping hole
Contact or air are entered in multiple material-dropping holes by multiple tangent line air inlet holes 431, air can be broken up, so that air
It is more uniformly contacted with material, hot and cold alternation, so that the material after liquefaction is solidified as particle completely, improves coagulation efficacy.
Above-described embodiment only expresses the embodiments of the present invention, and the description thereof is more specific and detailed, but can not
Therefore it is interpreted as that a limitation on the scope of the patent of the present invention.It should be pointed out that for those of ordinary skill in the art
For, without departing from the concept of the premise utility, various modifications and improvements can be made, these belong to practical
Novel protection scope.Therefore, the scope of protection shall be subject to the appended claims for the utility model patent.
Claims (8)
1. a kind of spray-cooling granulating tower, it is characterised in that: blanking structure including tower body, at the top of the tower body and point
Not Wei Yu suspension beam structure, vertebral body structure and multiple Blowing stoppers in the tower body, the bottom of the tower body offers and the external world is empty
The air inlet of gas connection, the blanking structure includes blanking shell and the feeding plate in the blanking shell, described to fall
The air-out chamber that the inner cavity of the blanking shell is divided into feed cavity and be connected to the air inlet by flitch, the suspension beam structure packet
It includes the first overarm plate positioned at the blanking housing bottom, the second overarm plate and is located at the first overarm plate and described second
Hang oneself from a beam plate between multiple blanking spray heads corresponding with the feed cavity, the inner cavity of the multiple blanking spray head with the feed cavity
Connection, the vertebral body structure are located at the bottom of the tower body, and the vertebral body structure includes upper centrum, is located at the upper centrum inner wall
On multiple equal blast caps and hypocentrum positioned at the upper centrum bottom, the upper centrum is tapered, the multiple equal blast cap
Include cylinder and the cylinder cap that is connect by the cylinder with the upper centrum, the cylinder cap be in it is coniform, on the cylinder cap
Multiple material-dropping holes are offered, and the tip of the cylinder cap, towards the blanking structure, the hypocentrum is in the form of annular discs, the lower vertebra
The periphery of body offers multiple tangent line air inlet holes being connected to the air inlet, and the upper surface of the hypocentrum is towards the upper vertebra
The direction of body extends and is in arc transition, and the upper surface of the hypocentrum and the tip of the upper centrum support, the multiple pass
Blower is located at the bottom of the upper centrum.
2. spray-cooling granulating tower as described in claim 1, it is characterised in that: the surface of the multiple cylinder cap, which is provided with, to be fallen
The bed of material offers multiple material-dropping holes on the blanking layer.
3. spray-cooling granulating tower as claimed in claim 2, it is characterised in that: be additionally provided at the top of the tower body with it is described
The discharge pipe of air-out chamber connection.
4. spray-cooling granulating tower as claimed in claim 3, it is characterised in that: it further include collection structure and air guide structure,
The collection structure includes shell and the collector in the shell, and the inner cavity of the shell forms dust chamber, described
Dust chamber is connected to one end on the discharge pipe far from the tower body, and the air guide structure is adjacent to the collection structure.
5. spray-cooling granulating tower as claimed in claim 4, it is characterised in that: the air guide structure includes connecting tube, wind-guiding
Pipe and induced draft fan, one end of the connecting tube are connected to the discharge pipe, far from described on the guide duct and the connecting tube
One end of discharge pipe is connected to, and the induced draft fan is located on the guide duct.
6. spray-cooling granulating tower as claimed in claim 5, it is characterised in that: it further include control cabinet, it is the Blowing stopper, described
Collector, the induced draft fan are connect with the control cabinet.
7. spray-cooling granulating tower as claimed in claim 6, it is characterised in that: the tower body is made of aluminum alloy material.
8. spray-cooling granulating tower as claimed in claim 7, it is characterised in that: the surface of the multiple equal blast cap is provided with not
Become rusty steel coating, the stainless steel coating with a thickness of 0.3-0.8 millimeters.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821036314.7U CN208554084U (en) | 2018-07-02 | 2018-07-02 | Spray-cooling granulating tower |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821036314.7U CN208554084U (en) | 2018-07-02 | 2018-07-02 | Spray-cooling granulating tower |
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CN208554084U true CN208554084U (en) | 2019-03-01 |
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CN201821036314.7U Active CN208554084U (en) | 2018-07-02 | 2018-07-02 | Spray-cooling granulating tower |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115492398A (en) * | 2022-09-14 | 2022-12-20 | 中国化学工程第六建设有限公司 | On-site assembling construction method for cooling granulation tower |
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2018
- 2018-07-02 CN CN201821036314.7U patent/CN208554084U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115492398A (en) * | 2022-09-14 | 2022-12-20 | 中国化学工程第六建设有限公司 | On-site assembling construction method for cooling granulation tower |
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