CN208576076U - Cooling device is used in a kind of production of FEP particle - Google Patents
Cooling device is used in a kind of production of FEP particle Download PDFInfo
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- CN208576076U CN208576076U CN201820818761.1U CN201820818761U CN208576076U CN 208576076 U CN208576076 U CN 208576076U CN 201820818761 U CN201820818761 U CN 201820818761U CN 208576076 U CN208576076 U CN 208576076U
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Abstract
The utility model discloses a kind of FEP particle production cooling devices, including bottom plate, the top of the bottom plate is equipped with horizontally disposed support plate, damping is equipped between bottom plate and support plate, the top of support plate is equipped with cooling body, damping includes rubber block, the top and bottom end of rubber block are separately fixed in support plate and bottom plate, cooling body includes two vertically disposed side plates, two side plates are located remotely from each other, filtering net cylinder is equipped between two side plates, the present apparatus can not only increase the film-cooled heat of particle by way of stirring and rolling, consequently facilitating carrying out wind to particle, prevent particle stacking is thicker from middle and lower part being caused to be difficult to normally be cooled down, it is cooling uniform, good cooling results, cooling efficiency is high, effective bumper and absorbing shock can also be carried out to device in particle vibration blanking process, it prevents from generating when blanking larger Vibration and noise, to bring biggish discomfort, good damping effect to staff.
Description
Technical field
The utility model relates to FEP particle production technical fields more particularly to a kind of production of FEP particle to use cooling device.
Background technique
FEP is a kind of chemical substance, and FEP may be used on soft plastic, and tensile strength, wearability, creep resistance are lower than
Many engineering plastics.It is it is chemically inert, in very wide temperature and frequency range have lower dielectric constant.FEP
Son usually requires to cool down it in process of production, and traditional cooling device is directly by way of wind to FEP particle
It is cooled down, when the laying of FEP particle is thicker, the FEP particle positioned at middle and lower part is difficult to normally be cooled down, and inhomogeneous cooling is even,
FEP particle traditional simultaneously is usually made its blanking by way of vibration, can generate biggish vibration in this way after the completion of cooling
And noise, biggish discomfort is brought to staff, thus it is proposed that cooling device is used in a kind of production of FEP particle.
Utility model content
Purpose of the utility model is to solve disadvantages existing in the prior art, and a kind of FEP particle proposed is raw
Production cooling device.
To achieve the goals above, the utility model adopts the technical scheme that
A kind of production of FEP particle cooling device, including bottom plate, the top of the bottom plate are equipped with horizontally disposed support
Plate is equipped with damping between bottom plate and support plate, the top of support plate is equipped with cooling body, and damping includes rubber block,
The top and bottom end of rubber block are separately fixed in support plate and bottom plate, cooling body include two vertically disposed side plates, two
A side plate is located remotely from each other, and filtering net cylinder is equipped between two side plates, the both ends of filtering net cylinder are each passed through two side plates and extend to
The other side of side plate, filtering net cylinder are rotatably connected on side plate.
Further, the top middle position of the support plate is fixed with double-rotor machine close to the side of filtering net cylinder,
The output end of double-rotor machine is equipped with first gear, and the rack gear of annular, first gear are equipped on the two sides outer wall of filtering net cylinder
It is intermeshed with rack gear.
Specifically, the top side of the filtering net cylinder is equipped with feed inlet, and the bottom end of filtering net cylinder is far from the one of feed inlet
Side is equipped with discharge port, and the bottom end of filtering net cylinder is fixed with vibrating motor on the side outer wall of feed inlet, in filtering net cylinder
Between be located proximate to be fixed with first motor on the side outer wall of feed inlet, the output shaft of first motor is connected with horizontally disposed stir
Mix axis, the outer wall that one end of agitating shaft passes through filtering net cylinder is rotatably connected on the inner wall of filtering net cylinder, the top of agitating shaft and
The stirring rod being uniformly arranged is equipped on the side wall of bottom end.
It is worth noting that the side plate is fixed with vertically disposed fixed plate, fixed plate far from one end of filtering net cylinder
It is equipped with vertically disposed partition by the side of proximal panel, the both ends of partition are separately fixed on the side wall of two side plates, fixed plate
It is fixed with the second motor on side side wall far from partition, the output shaft of the second motor is connected with shaft, and one end of shaft passes through
Fixed plate extends to the other side of fixed plate, and fixed plate is rotatablely connected there are two rotating bar on the side side wall of partition, turns
It is equipped with second gear in axis and rotating bar, second gear is equipped with chain, and one end of shaft and rotating bar is equipped with across partition
Flabellum.
In addition, the outside of the rubber block is socketed with the rubber tube of multiple annulars, rubber tube is interior filled with gas, the top of bottom plate
End and the bottom end two sides of support plate are opened there are two horizontally disposed sliding slot, and two sliding slots are located remotely from each other, in two sliding slots mutually
Close side slidably connects sliding block, and the bottom end of two sliding blocks is hinged with motion bar in support plate, two motion bars
Middle position is rotatablely connected by pin shaft, and the bottom end of two motion bars is respectively hinged on two sliding blocks on bottom plate, two cunnings
Spring is respectively and fixedly provided on the side side wall that block is located remotely from each other, one end of spring is fixed on the side wall of sliding slot.
In addition to this, the side side wall of the side plate is equipped with controller, double-rotor machine, vibrating motor, first motor
It is electrically connected with the controller with the second motor.
The utility model has the beneficial effects that
1, by support plate, double-rotor machine, first gear, first motor, filtering net cylinder, side plate, rack gear, fixed plate,
The setting of agitating shaft, stirring rod, shaft, the second motor, second gear, partition and rotating bar, can be by stirring and rolling
Mode increases the film-cooled heat of particle, consequently facilitating carrying out wind to particle, prevents particle stacking is thicker from middle and lower part being caused to be difficult to
It is normally cooled down, cooling uniform, good cooling results, cooling efficiency is high;
It 2, can be in particle vibration by the setting of bottom plate, rubber block, rubber tube, sliding slot, sliding block, motion bar and spring
Effective bumper and absorbing shock is carried out to device in blanking process, prevents from generating biggish vibration and noise when blanking, to give work people
Member brings biggish discomfort, good damping effect;
In conclusion the present apparatus can not only increase the film-cooled heat of particle by way of stirring and rolling, thus just
In carrying out wind to particle, prevent particle stacking is thicker from middle and lower part being caused to be difficult to normally be cooled down, cooling uniform, cooling effect
Good, cooling efficiency is high, additionally it is possible to carry out effective bumper and absorbing shock to device in particle vibration blanking process, generation when preventing blanking
Biggish vibration and noise, to bring biggish discomfort, good damping effect to staff.
Detailed description of the invention
Fig. 1 be the utility model proposes a kind of FEP particle production cooling device sectional front view;
Fig. 2 be the utility model proposes a kind of FEP particle production cooling device lateral sectional view;
Fig. 3 be the utility model proposes a kind of FEP particle production cooling device top cross-sectional view.
In figure: 1 bottom plate, 2 rubber blocks, 3 rubber tubes, 4 sliding slots, 5 sliding blocks, 6 motion bars, 7 support plates, 8 double-rotor machines, 9
First gear, 10 vibrating motors, 11 first motors, 12 filtering net cylinders, 13 side plates, 14 rack gears, 15 fixed plates, 16 agitating shafts, 17
Stirring rod, 18 springs, 19 shafts, 20 second motors, 21 second gears, 22 partitions, 23 rotating bars, 24 controllers.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.
Referring to Fig.1-3, a kind of production of FEP particle cooling device, including bottom plate 1, the top of bottom plate 1 are equipped with horizontally disposed
Support plate 7, damping is equipped between bottom plate 1 and support plate 7, the top of support plate 7 is equipped with cooling body, damping packet
Rubber block 2 is included, the top and bottom end of rubber block 2 are separately fixed in support plate 7 and bottom plate 1, and cooling body includes two vertical
The side plate 13 of setting, two side plates 13 are located remotely from each other, and filtering net cylinder 12, the both ends of filtering net cylinder 12 are equipped between two side plates 13
It is each passed through the other side that two side plates 13 extend to side plate 13, filtering net cylinder 12 is rotatably connected on side plate 13, support plate 7
Top middle position is fixed with double-rotor machine 8 close to the side of filtering net cylinder 12, and the output end of double-rotor machine 8 is equipped with first
Gear 9 is equipped with the rack gear 14 of annular on the two sides outer wall of filtering net cylinder 12, and first gear 9 and rack gear 14 are intermeshed, filtering
The top side of net cylinder 12 is equipped with feed inlet, and the bottom end of filtering net cylinder 12 is equipped with discharge port, filter screen far from the side of feed inlet
The bottom end of cylinder 12 is fixed with vibrating motor 10 on the side outer wall of feed inlet, and the middle position of filtering net cylinder 12 is close to charging
It is fixed with first motor 11 on the side outer wall of mouth, the output shaft of first motor 11 is connected with horizontally disposed agitating shaft 16, stirs
Mix axis 16 one end pass through filtering net cylinder 12 outer wall be rotatably connected on the inner wall of filtering net cylinder 12, the top of agitating shaft 16 and
The stirring rod 17 being uniformly arranged is equipped on the side wall of bottom end, side plate 13 is fixed with vertically disposed far from one end of filtering net cylinder 12
Fixed plate 15, fixed plate 15 are equipped with vertically disposed partition 22 by the side of proximal panel 13, and the both ends of partition 22 are separately fixed at
On the side wall of two side plates 13, fixed plate 15 is far from being fixed with the second motor 20, the second motor 20 on the side side wall of partition 22
Output shaft be connected with shaft 19, one end of shaft 19 passes through the other side that fixed plate 15 extends to fixed plate 15, fixed plate 15
Second gear is equipped in rotating bar 23 there are two being rotatablely connected on the side side wall of partition 22, shaft 19 and rotating bar 23
21, second gear 21 is equipped with chain, and one end of shaft 19 and rotating bar 23 passes through partition 22 and is equipped with flabellum, rubber block 2 it is outer
Portion is socketed with the rubber tube 3 of multiple annulars, and rubber tube 3 is interior filled with gas, and the top of bottom plate 1 and the bottom end two sides of support plate 7 are equal
It opens there are two horizontally disposed sliding slot 4, two sliding slots 4 are located remotely from each other, and side close to each other is slidably connected in two sliding slots 4
There is sliding block 5, the bottom end of two sliding blocks 5 is hinged with motion bar 6 in support plate 7, and the middle position of two motion bars 6 passes through pin shaft
Rotation connection, the bottom end of two motion bars 6 are respectively hinged on two sliding blocks 5 on bottom plate 1, what two sliding blocks 5 were located remotely from each other
Spring 18 is respectively and fixedly provided on the side wall of side, one end of spring 18 is fixed on the side wall of sliding slot 4, is set on the side side wall of side plate 13
There is controller 24, double-rotor machine 8, vibrating motor 10, first motor 11 and the second motor 20 are electrically connected with controller 24, rubber
Sebific duct 3 is similar to swim ring, and inside can be with inflatable body.
Working principle: when needing to cool down FEP particle, being poured into particle in filtering net cylinder 12 by feed inlet, is closed
Feed inlet is closed, DATA-7311 controller 24 controls double-rotor machine 8, first motor 11 and the work of the second motor 20, birotor electricity
Machine 8 drives first gear 9 to be rotated by output shaft, due to first gear 9 and 14 phase of annular rack on filtering net cylinder 12
Mutually engagement, so that filtering net cylinder 12 starts to rotate, so that particle is rolled in filtering net cylinder 12, the second motor 11 is logical
Crossing agitating shaft 16 drives stirring rod 17 to be rotated, to be stirred to particle so that particle and 12 inner wall of filtering net cylinder it
Between contact area increase, to increase the contact area of particle and wind, the second motor 20 drives second gear by shaft 19
21 rotations, since shaft 19 is sequentially connected by second gear 21 and chain and rotating bar 23, so that shaft 19 and rotating bar 23
Flabellum is driven to be rotated, wind can effectively cool down to particle by flabellum by filtering net cylinder 12, and particle ceaselessly rolls
Dynamic, so that particle is cooling uniformly, after the completion of cooling, controller 24, which controls double-rotor machine 8, to be stopped and discharge port was located at
The bottom end of screen tube 12, controller 24 control vibrating motor 10 and are rotated, so that particle carries out blanking, vibration by discharge port
Motor 10 starts turning device, generates biggish vibration and noise, rubber block 2 and 3 pairs of the rubber tube dresses filled with gas
It sets and carries out level-one damping, when support plate 7 is pressed down against, two motion bars 6 are rotated by pin shaft, so that two sliding blocks 5 are mutual
Separate, to squeeze spring 18, spring 18 carries out second level damping to device, and the present apparatus can not only be by stirring and rolling
Dynamic mode increases the film-cooled heat of particle, consequently facilitating carrying out wind to particle, prevents particle stacking is thicker from causing middle and lower part
It is difficult to normally be cooled down, cooling uniform, good cooling results, cooling efficiency is high, additionally it is possible to right in particle vibration blanking process
Device carries out effective bumper and absorbing shock, prevents from generating biggish vibration and noise when blanking, to bring to staff biggish
Discomfort, good damping effect.
In the description of the present invention, it should be understood that term " center ", " longitudinal direction ", " transverse direction ", " length ", " width
Degree ", " thickness ", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outside",
The orientation or positional relationship of the instructions such as " clockwise ", " counterclockwise " be based on the orientation or positional relationship shown in the drawings, be only for
Convenient for description the utility model and simplify description, rather than the equipment of indication or suggestion meaning or element must have specifically
Orientation is constructed and operated in a specific orientation, therefore should not be understood as limiting the present invention.
In addition, term " first ", " second " are used for descriptive purposes only and cannot be understood as indicating or suggesting relative importance
Or implicitly indicate the quantity of indicated technical characteristic.Define " first " as a result, the feature of " second " can be expressed or
Implicitly include one or more of the features.The meaning of " plurality " is two or two in the description of the present invention,
More than, unless otherwise specifically defined.
The preferable specific embodiment of the above, only the utility model, but the protection scope of the utility model is not
It is confined to this, anyone skilled in the art is within the technical scope disclosed by the utility model, practical according to this
Novel technical solution and its utility model design are subject to equivalent substitution or change, should all cover the protection model in the utility model
Within enclosing.
Claims (6)
1. a kind of production of FEP particle cooling device, including bottom plate (1), which is characterized in that the top of the bottom plate (1) is equipped with
Horizontally disposed support plate (7), is equipped with damping between bottom plate (1) and support plate (7), the top of support plate (7) is equipped with cold
But mechanism, damping include rubber block (2), and the top and bottom end of rubber block (2) are separately fixed at support plate (7) and bottom plate
(1) on, cooling body includes two vertically disposed side plates (13), and two side plates (13) are located remotely from each other, two side plates (13) it
Between be equipped with filtering net cylinder (12), the both ends of filtering net cylinder (12) are each passed through two side plates (13) and extend to the another of side plate (13)
Side, filtering net cylinder (12) are rotatably connected on side plate (13).
2. a kind of FEP particle production cooling device according to claim 1, which is characterized in that the support plate (7)
Top middle position is fixed with double-rotor machine (8) close to the side of filtering net cylinder (12), and the output end of double-rotor machine (8) is set
Have first gear (9), the rack gear (14) of annular, first gear (9) and rack gear are equipped on the two sides outer wall of filtering net cylinder (12)
(14) it is intermeshed.
3. a kind of FEP particle production cooling device according to claim 1, which is characterized in that the filtering net cylinder
(12) top side is equipped with feed inlet, and the bottom end of filtering net cylinder (12) is equipped with discharge port, filter screen far from the side of feed inlet
The bottom end of cylinder (12) is fixed with vibrating motor (10) on the side outer wall of feed inlet, and the middle position of filtering net cylinder (12) is leaned on
It is fixed with first motor (11) on the side outer wall of nearly feed inlet, the output shaft of first motor (11) is connected with horizontally disposed stir
It mixes axis (16), the outer wall that one end of agitating shaft (16) passes through filtering net cylinder (12) is rotatably connected on the inner wall of filtering net cylinder (12)
On, the stirring rod (17) being uniformly arranged is equipped on the top of agitating shaft (16) and bottom end side wall.
4. a kind of FEP particle production cooling device according to claim 1, which is characterized in that the side plate (13) is remote
One end from filtering net cylinder (12) is fixed with vertically disposed fixed plate (15), and fixed plate (15) is set by the side of proximal panel (13)
Have vertically disposed partition (22), the both ends of partition (22) are separately fixed on the side wall of two side plates (13), fixed plate (15)
It is fixed with the second motor (20) on side side wall far from partition (22), the output shaft of the second motor (20) is connected with shaft
(19), one end of shaft (19) passes through the other side that fixed plate (15) extend to fixed plate (15), and fixed plate (15) is close to partition
(22) on side side wall there are two rotation connections rotating bar (23), second gear is equipped on shaft (19) and rotating bar (23)
(21), second gear (21) is equipped with chain, and shaft (19) and the one end of rotating bar (23) are equipped with flabellum across partition (22).
5. a kind of FEP particle production cooling device according to claim 1, which is characterized in that the rubber block (2)
Outside is socketed with the rubber tube (3) of multiple annulars, filled with gas in rubber tube (3), the top of bottom plate (1) and support plate (7)
Bottom end two sides are opened there are two horizontally disposed sliding slot (4), and two sliding slots (4) are located remotely from each other, close to each other in two sliding slots (4)
Side slidably connect sliding block (5), the bottom end of upper two sliding blocks (5) of support plate (7) is hinged with motion bar (6), two
The middle position of motion bar (6) is rotatablely connected by pin shaft, and the bottom end of two motion bars (6) is respectively hinged on bottom plate (1)
On two sliding blocks (5), it is respectively and fixedly provided with spring (18) on the side side wall that two sliding blocks (5) are located remotely from each other, one end of spring (18)
It is fixed on the side wall of sliding slot (4).
6. a kind of FEP particle production cooling device according to claim 1, which is characterized in that the side plate (13)
Side side wall is equipped with controller (24), double-rotor machine (8), vibrating motor (10), first motor (11) and the second motor
(20) it is electrically connected with controller (24).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820818761.1U CN208576076U (en) | 2018-05-30 | 2018-05-30 | Cooling device is used in a kind of production of FEP particle |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820818761.1U CN208576076U (en) | 2018-05-30 | 2018-05-30 | Cooling device is used in a kind of production of FEP particle |
Publications (1)
Publication Number | Publication Date |
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CN208576076U true CN208576076U (en) | 2019-03-05 |
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CN201820818761.1U Active CN208576076U (en) | 2018-05-30 | 2018-05-30 | Cooling device is used in a kind of production of FEP particle |
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CN (1) | CN208576076U (en) |
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2018
- 2018-05-30 CN CN201820818761.1U patent/CN208576076U/en active Active
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Effective date of registration: 20210511 Address after: 313100 No.2 Road, huicheling Industrial Park, Heping Town Industrial Park, Changxing County, Huzhou City, Zhejiang Province Patentee after: Huzhou Zhongsen New Material Co.,Ltd. Address before: 313100 Huaxi Village, Xiaopu Town, Changxing County, Huzhou City, Zhejiang Province Patentee before: HUZHOU HEXUANZHU NEW MATERIAL TECHNOLOGY Co.,Ltd. |