CN208514781U - A kind of plastic cement granulation stirring cooling system - Google Patents
A kind of plastic cement granulation stirring cooling system Download PDFInfo
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- CN208514781U CN208514781U CN201820606018.XU CN201820606018U CN208514781U CN 208514781 U CN208514781 U CN 208514781U CN 201820606018 U CN201820606018 U CN 201820606018U CN 208514781 U CN208514781 U CN 208514781U
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Abstract
The utility model discloses a kind of plastic cement to pelletize with stirring cooling system, belong to plastic cement granulation field, being intended to provide one kind being capable of self-emptying, automatic stirring is cooling, to improve the plastic cement granulation stirring cooling system of masterbatch cooling velocity, to solve to need artificial timing to stir to masterbatch, the slow problem of masterbatch cooling velocity, its drip irrigation device is as follows, it includes rack, agitating device and cooling device, agitating device includes cylinder, the first mixing component is rotatably connected at cylinder body bottom center, the first driving assembly is connected on first mixing component, the upper end of cylinder offers feed inlet, feed inlet is equipped with cover, oil inlet is offered on cover, the first discharge port is equipped on the downside of cylinder;Cooling device includes cooling cylinder, and the second discharge port is offered at cooling cylinder bottom margin, and cooling cylinder bottom center is rotatably connected to the second mixing component, the second driving assembly is connected on the second mixing component.The utility model is pelletized suitable for plastic cement.
Description
Technical field
The utility model relates to a kind of stirring cooling system, in particular to a kind of plastic cement granulation stirring cooling system.
Background technique
In the production process of plastic cement granulation, it usually needs masterbatch is sufficiently mixed using high-speed stirring apparatus, it is female
Expect that a large amount of frictional heat can be generated when mixed at high speed, because needing manually to scoop masterbatch from mixing drum after the completion of masterbatch stirring
Out, operation is comparatively laborious, and therefore, masterbatch is usually the natural cooling in mixing drum, and the masterbatch being stirred is in static shape
State, the heat inside masterbatch are not easy to distribute outward, need artificial timing to stir masterbatch, this type of cooling leads to masterbatch
Cooling velocity it is slow, reduce production efficiency.
Utility model content
The purpose of the utility model is to provide a kind of plastic cement to pelletize with cooling system is stirred, and having can be from mixing drum side wall
Self-emptying is to cooling cylinder, and it is cooling to can be realized masterbatch automatic stirring, thus the advantages of improving masterbatch cooling velocity.
The above-mentioned technical purpose of the utility model has the technical scheme that
A kind of plastic cement granulation stirring cooling system, including rack, agitating device and cooling device, the agitating device packet
Rack-mounted cylinder is included, the upper end of cylinder offers feed inlet, and the feed inlet is equipped with cover, opens on the cover
Equipped with oil inlet, it is rotatably connected to the first mixing component at the cylinder body bottom center, is connected on first mixing component
The first driving assembly for driving the first mixing component to rotate, the cylinder downside are equipped with the first discharge port, first discharge port
Place is equipped with discharge component;
The cooling device includes the cooling cylinder being arranged in below discharge component, is offered at the cooling cylinder bottom margin
Second discharge port, the cooling cylinder bottom center are rotatably connected to the second mixing component, connect on second mixing component
There is the second driving assembly of driving the second mixing component rotation.
By using above-mentioned technical proposal, masterbatch is sufficiently mixed by agitating device, drives the first driving assembly work
Make, the first mixing component is driven to be stirred masterbatch for the rotation of the first driving assembly until masterbatch is uniformly mixed, after mixing
Masterbatch be expelled in cooling cylinder by the first discharge port, a large amount of frictional heat can be generated during stirring, driving second
Driving assembly work, drives the second mixing component to be stirred cooling to masterbatch.The setting of discharge component and cooling device, can
Make masterbatch from mixing drum side wall self-emptying to cooling cylinder, and can be realized the cooling of masterbatch automatic stirring, to improve masterbatch
Cooling velocity, and then improve production efficiency.
Further, the discharge component includes first sleeve and second sleeve, and the first sleeve is connected to cylinder, institute
Second sleeve is stated to be located at below first sleeve and be connected to first sleeve;
The first sleeve is equipped with end plate far from one end of cylinder, is equipped with the first cylinder on the end plate, and described first
The axis of the piston rod of cylinder is overlapped with the axis of first sleeve, is fixedly connected on the piston rod of first cylinder for sealing
Close the sealing plate of the first discharge port.
By using above-mentioned technical proposal, sealing plate closes the first discharge port in the whipping process of masterbatch, wait stir
After mixing, the first cylinder operation is driven, so that the piston rod of the first cylinder is bounced back, cylinder is connected to second sleeve, masterbatch edge
First sleeve, second sleeve drain into cooling cylinder automatically, structure is simple, easy to operate.
Further, the first sleeve is equipped with cleaning hole far from the side of second sleeve.
By using above-mentioned technical proposal, cleaning hole can rotating opening, first sleeve and second sleeve inner wall are carried out
Cleaning reduces masterbatch in the residual of first sleeve and second sleeve inner wall, is not easy different types of masterbatch due to mutually polluting
Influence the quality of masterbatch.
Further, second mixing component includes agitating shaft and installation sleeve, and the agitating shaft and installation sleeve are same
Axis is fixedly connected, and the installation sleeve is circumferentially evenly equipped with the stirring rod of several inverted L shapes.
By using above-mentioned technical proposal, stirring rod can carry out preliminary stirring to masterbatch, make masterbatch accumulated inside
Heat distributes outward as early as possible, improves the cooling velocity of masterbatch.
Further, the stirring rod includes cross bar and brace, and the length of several cross bars gradually increases in turn.
By using above-mentioned technical proposal, the cross bar that length gradually increases in turn can be to cooling cylinder by center to edge
Masterbatch is stirred cooling respectively, distributes the heat of masterbatch accumulated inside outward as early as possible, to improve the cooling speed of masterbatch
Degree.
Further, the brace is fixedly connected with the scraper plate being obliquely installed far from one end of cross bar.
By using above-mentioned technical proposal, scraper plate is capable of increasing the contact area with masterbatch, and is capable of increasing masterbatch transverse direction
With longitudinal disturbance, secondary agitation is carried out to masterbatch, the heat of masterbatch accumulated inside is distributed outward as early as possible, further improves
The cooling velocity of masterbatch.
Further, the scraper plate and the acute rake angle of cooling cylinder bottom are 30 ° to 45 °.
The transverse direction that masterbatch in cooling cylinder is stirred by using above-mentioned technical proposal, the scraper plate that tilt angle is 30 ° to 45 °
It is all larger with longitudinal movement, significantly improve the radiating rate of masterbatch in cooling cylinder.If scraper plate is smaller with cooling cylinder bottom
Tilt angle it is too small, horizontal and vertical disturbance all very little of the scraper plate to masterbatch in cooling cylinder;If scraper plate and cooling cylinder bottom
Lesser tilt angle it is excessive, longitudinal disturbance very little of the scraper plate to masterbatch in cooling cylinder;Both of these case lower scraping plate is to masterbatch
Cooling effect it is poor.
Further, reinforcing rod is equipped between the adjacent brace.
By using above-mentioned technical proposal, reinforcing rod can effectively support adjacent brace, make brace long-term
It is not susceptible to deform during stirring is cooling, extends the service life of stirring rod, reduce the maintenance cost in cooling device later period.
Further, second discharge port is arc-shaped, and is equipped with above second discharge port and is gone out for closing second
The adjusting cover board of material mouth, the center for adjusting cover board are fixedly connected with shaft, and the shaft and cylinder lateral wall are rotatablely connected, institute
Shaft is stated equipped with rotating handles.
By using above-mentioned technical proposal, the discharging speed of the second discharge port can be adjusted by rotating rotating handles, with
Meet different production requirements, enhances the applicability of cooling device.
In conclusion the utility model has the following beneficial effects:
1. using discharge component, achieve the effect that masterbatch can be made from mixing drum side wall self-emptying to cooling cylinder;
2. using cooling device, reach and can be realized the cooling of masterbatch automatic stirring, to improve the cooling speed of masterbatch
The effect of degree;
3. using the stirring rod and scraper plate of L-type, having reached distributes the heat of masterbatch accumulated inside outward as early as possible, into one
Step improves the effect of the cooling velocity of masterbatch.
Detailed description of the invention
Fig. 1 is in the present embodiment for embodying the connection relationship diagram between agitating device and cooling device;
Fig. 2 is in the present embodiment for embodying the connection relationship diagram between the first mixing component and cylinder.
In figure, 1, rack;11, cylinder;111, feed inlet;12, cover;121, oil inlet;13, the first discharge port;2, it stirs
Mix device;3, cooling device;31, cooling cylinder;311, the second discharge port;312, cover board is adjusted;313, shaft;314, handle is rotated
Hand;4, the first mixing component;41, rotation axis;42, agitating paddle;5, the first driving assembly;6, discharge component;61, first sleeve;
611, end plate;6111, the first cylinder;6112, sealing plate;612, cleaning hole;62, second sleeve;7, the second mixing component;71, it stirs
Mix axis;72, installation sleeve;73, stirring rod;731, cross bar;732, brace;7321, scraper plate;733, reinforcing rod;8, the second driving
Component.
Specific embodiment
The utility model is described in further detail below in conjunction with attached drawing.
Wherein identical components are presented with like reference characters.It should be noted that word used in the following description
Language "front", "rear", "left", "right", "up" and "down" refer to the direction in attached drawing, word " bottom surface " and " top surface ", "inner" and
"outside" refers respectively to the direction towards or away from geometric center of specific component.
A kind of plastic cement granulation stirring cooling system, as shown in Figure 1, including rack 1, agitating device 2 and cooling device 3.
Agitating device 2 includes the cylinder 11 being mounted in rack 1, and the upper end of cylinder 11 offers feed inlet 111, sets on feed inlet 111
There is cover 12, oil inlet 121 is offered on cover 12.
As shown in Fig. 2, 11 bottom center of cylinder is rotatably connected to the first mixing component 4, the first mixing component 4 includes turning
Moving axis 41 and the agitating paddle 42 being fixedly and coaxially connected with rotation axis 41.Agitating paddle 42 can be stirred masterbatch, make it sufficiently
Mixing, improves the mixed effect of masterbatch.
As shown in Fig. 2, the first driving assembly 5 of driving the first mixing component 4 rotation is connected on the first mixing component 4,
First driving assembly 5 provides power by motor, and drives rotation axis 41 to rotate in a manner of sprocket wheel transmission, to drive stirring
Paddle 42 is stirred masterbatch.
As shown in Figure 1, being equipped with the first discharge port 13 on the downside of cylinder 11, discharge component 6 is equipped at the first discharge port 13.Discharging
Component 6 includes first sleeve 61 and second sleeve 62, and first sleeve 61 is connected to cylinder 11, and second sleeve 62 is located at first sleeve
61 lower sections are simultaneously connected to first sleeve 61.First sleeve 61 is equipped with end plate 611 far from one end of cylinder 11, installs on end plate 611
There is the first cylinder 6111, the axis of the piston rod of the first cylinder 6111 is overlapped with the axis of first sleeve 61, the first cylinder 6111
Piston rod on be fixedly connected with sealing plate 6112(for closing the first discharge port 13 referring to fig. 2).Sealing plate 6112 is in masterbatch
The first discharge port 13 is closed in whipping process, after masterbatch stirring, driving the first cylinder 6111 work makes first
The piston rod of cylinder 6111 bounces back, and cylinder 11 is connected to second sleeve 62, masterbatch along first sleeve 61, second sleeve 62 oneself
Dynamic to drain into cooling cylinder 31, structure is simple, easy to operate.
As shown in Figure 1, agitating device 2 passes through first sleeve 61 and second set for stirring different types of masterbatch, masterbatch
Cylinder 62 discharges, and can remain in first sleeve 61 and 62 inner wall of second sleeve, and different types of masterbatch can mutually pollute, and lead to masterbatch
Quality decline.Therefore, cleaning hole 612 is equipped with far from the side of second sleeve 62 in first sleeve 61.Cleaning hole 612 can turn
It is dynamic to open, first sleeve 61 and 62 inner wall of second sleeve are cleaned, reduce masterbatch in first sleeve 61 and second sleeve 62
The residual of inner wall, to improve the quality of masterbatch.
As shown in Figure 1, cooling device 3 includes the cooling cylinder 31 being arranged in below discharge component 6,31 bottom centre of cooling cylinder
Place is rotatably connected to the second mixing component 7.Second mixing component 7 includes agitating shaft 71 and installation sleeve 72, agitating shaft 71 and peace
Sleeved 72 are fixedly and coaxially connected, the circumferential stirring rod 73 for being evenly equipped with several inverted L shapes of installation sleeve 72.Stirring rod 73 can be to mother
Material carries out preliminary stirring, distributes the heat of masterbatch accumulated inside outward as early as possible, improves the cooling velocity of masterbatch.
As shown in Figure 1, stirring rod 73 includes cross bar 731 and brace 732, the length of several cross bars 731 is gradually increased in turn.
The unique design of cross bar 731 can be stirred respectively cooling by the masterbatch at center to edge to cooling cylinder 31, make inside masterbatch
The heat of accumulation distributes outward as early as possible, to improve the cooling velocity of masterbatch.
As shown in Figure 1, brace 732 is fixedly connected with the scraper plate 7321 being obliquely installed far from one end of cross bar 731, it is adjacent oblique
Reinforcing rod 733 is equipped between bar 732.Scraper plate 7321 is capable of increasing the contact area with masterbatch, and be capable of increasing masterbatch laterally and
Longitudinal disturbance carries out secondary agitation to masterbatch, distributes the heat of masterbatch accumulated inside outward as early as possible, further improve mother
The cooling velocity of material.
As shown in Figure 1, scraper plate 7321 is to cold if scraper plate 7321 and the lesser tilt angle of 31 bottom of cooling cylinder are too small
But in cylinder 31 masterbatch horizontal and vertical disturbance all very littles;If the lesser tilt angle of scraper plate 7321 and 31 bottom of cooling cylinder
It is excessive, longitudinal disturbance very little of the scraper plate 7321 to masterbatch in cooling cylinder 31;Cooling of the both of these case lower scraping plate 7321 to masterbatch
Effect is poor.Therefore, the lesser tilt angle of scraper plate 7321 and 31 bottom of cooling cylinder is set as 30 ° to 45 °.Tilt angle is
The horizontal and vertical movement that 30 ° to 45 ° of scraper plate 7321 stirs masterbatch in cooling cylinder 31 is all larger, makes masterbatch in cooling cylinder 31
Radiating rate significantly improve.
As shown in Figure 1, being connected with the second driving assembly 8 of driving the second mixing component 7 rotation on the second mixing component 7.
Second driving assembly 8 provides power by motor, and drives agitating shaft 71 to rotate in a manner of sprocket wheel transmission, to drive stirring
Bar 73 and scraper plate 7321 are stirred masterbatch.
As shown in Figure 1, offering the second discharge port 311 at 31 bottom margin of cooling cylinder, the second discharge port 311 is in circular arc
Shape is equipped with the adjusting cover board 312 for close the second discharge port 311, the center of adjusting cover board 312 above the second discharge port 311
It is fixedly connected with shaft 313, shaft 313 and 11 side wall of cylinder are rotatablely connected, and shaft 313 is equipped with rotating handles 314.
Specific implementation process: masterbatch being put into cylinder 11 from feed inlet 111, covers cover 12, when masterbatch is powder,
It drives agitating paddle 42 to rotate by the first driving assembly 5, masterbatch is sufficiently stirred, keeps its mixing more uniform.Work as masterbatch
When mixing for powder and oil plant, oil plant is inputted into cylinder 11 during powder stirring, while through oil inlet 121.
After stirring, driving the first cylinder 6111 work makes the piston rod of the first cylinder 6111 bounce back, masterbatch is through first
Discharge port 13 drains into cooling cylinder 31 along first sleeve 61 and second sleeve 62 automatically.
It drives stirring rod 73 and scraper plate 7321 to rotate by the second driving assembly 8, masterbatch is carried out cooling is sufficiently stirred, be made
The heat of masterbatch accumulated inside distributes outward as early as possible, to improve the cooling velocity of masterbatch.Finally, by masterbatch after cooling
The discharge of two discharge ports 311.
This specific embodiment is only the explanation to the utility model, is not limitations of the present invention, ability
Field technique personnel can according to need the modification that not creative contribution is made to the present embodiment after reading this specification, but
As long as all by the protection of Patent Law in the scope of the claims of the utility model.
Claims (9)
1. a kind of plastic cement granulation stirring cooling system, including rack (1), agitating device (2) and cooling device (3), described to stir
Mixing device (2) includes the cylinder (11) being mounted on rack (1), and the upper end of the cylinder (11) offers feed inlet (111), institute
It states feed inlet (111) and is equipped with cover (12), oil inlet (121) are offered on the cover (12), it is characterized in that: the cylinder
(11) bottom center is rotatably connected to the first mixing component (4), and driving first is connected on first mixing component (4) and is stirred
The first driving assembly (5) of component (4) rotation is mixed, is equipped with the first discharge port (13) on the downside of the cylinder (11), described first goes out
Discharge component (6) are equipped at material mouth (13);
The cooling device (3) includes the cooling cylinder (31) being arranged below discharge component (6), cooling cylinder (31) bottom sides
It being offered at edge the second discharge port (311), cooling cylinder (31) bottom center is rotatably connected to the second mixing component (7),
The second driving assembly (8) of driving the second mixing component (7) rotation is connected on second mixing component (7).
2. a kind of plastic cement granulation stirring cooling system according to claim 1, it is characterized in that: the discharge component (6)
Including first sleeve (61) and second sleeve (62), the first sleeve (61) is connected to cylinder (11), the second sleeve
(62) it is located at below first sleeve (61) and is connected to first sleeve (61);
The first sleeve (61) is equipped with end plate (611) far from the one end of cylinder (11), is equipped with first on the end plate (611)
The axis of cylinder (6111), the piston rod of first cylinder (6111) is overlapped with the axis of first sleeve (61), and described first
The sealing plate (6112) for closing the first discharge port (13) is fixedly connected on the piston rod of cylinder (6111).
3. a kind of plastic cement granulation stirring cooling system according to claim 2, it is characterized in that: the first sleeve (61)
Side far from second sleeve (62) is equipped with cleaning hole (612).
4. a kind of plastic cement granulation stirring cooling system according to claim 1, it is characterized in that: second mixing component
It (7) include agitating shaft (71) and installation sleeve (72), the agitating shaft (71) is fixedly and coaxially connected with installation sleeve (72), described
Installation sleeve (72) is circumferentially evenly equipped with the stirring rod (73) of several inverted L shapes.
5. a kind of plastic cement granulation stirring cooling system according to claim 4, it is characterized in that: the stirring rod (73) wraps
Cross bar (731) and brace (732) are included, the length of several cross bars (731) gradually increases in turn.
6. a kind of plastic cement granulation stirring cooling system according to claim 5, it is characterized in that: the brace (732) is remote
One end from cross bar (731) is fixedly connected with the scraper plate (7321) being obliquely installed.
7. a kind of plastic cement granulation stirring cooling system according to claim 6, it is characterized in that: the scraper plate (7321) with
The acute rake angle of cooling cylinder (31) bottom is 30 ° to 45 °.
8. a kind of plastic cement granulation stirring cooling system according to claim 7, it is characterized in that: the adjacent brace
(732) reinforcing rod (733) are equipped between.
9. a kind of plastic cement granulation stirring cooling system according to claim 1, it is characterized in that: second discharge port
(311) it is arc-shaped, the adjusting cover board for closing the second discharge port (311) is equipped with above second discharge port (311)
(312), the center for adjusting cover board (312) is fixedly connected with shaft (313), the shaft (313) and cylinder (11) side wall
Rotation connection, the shaft (313) are equipped with rotating handles (314).
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CN201820606018.XU CN208514781U (en) | 2018-04-25 | 2018-04-25 | A kind of plastic cement granulation stirring cooling system |
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CN201820606018.XU CN208514781U (en) | 2018-04-25 | 2018-04-25 | A kind of plastic cement granulation stirring cooling system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112956503A (en) * | 2021-03-03 | 2021-06-15 | 郑州马砦精诚机械制造有限公司 | A high-efficient type assembly line for producing noodless |
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2018
- 2018-04-25 CN CN201820606018.XU patent/CN208514781U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112956503A (en) * | 2021-03-03 | 2021-06-15 | 郑州马砦精诚机械制造有限公司 | A high-efficient type assembly line for producing noodless |
CN112956503B (en) * | 2021-03-03 | 2022-08-16 | 郑州马砦精诚机械制造有限公司 | A high-efficient type assembly line for producing noodless |
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