CN204549136U - The blanking machine that powder material cools rapidly can be realized - Google Patents
The blanking machine that powder material cools rapidly can be realized Download PDFInfo
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- CN204549136U CN204549136U CN201520147317.8U CN201520147317U CN204549136U CN 204549136 U CN204549136 U CN 204549136U CN 201520147317 U CN201520147317 U CN 201520147317U CN 204549136 U CN204549136 U CN 204549136U
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- cylindrical shell
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Abstract
The utility model discloses a kind of blanking machine realizing powder material and cool rapidly, it includes cylindrical shell, is provided with inlet point and discharging opening in cylindrical shell; Be provided with at least one cold plates in described cylindrical shell, it is extended to cylindrical shell axial direction by the inwall of cylindrical shell; Described cylindrical shell outer setting has at least one cooling blower, and it is communicated to the inside of cylindrical shell by induction tract; The connection location of described induction tract and cylindrical shell is positioned at the top of cold plates, is provided with filter screen in the connection location of induction tract and cylindrical shell; Adopt the blanking machine that the realized powder material of technique scheme cools rapidly, it can make powder material enter in the process of blanking machine cylindrical shell, stopped by cooling disk, and by cooling blower, cooling processing is carried out to it, thus make powder material enter in the process of cylindrical shell, its surface temperature can decline rapidly, and then makes powder material carry out storing in cylindrical shell in the process with logistics, and its top layer all can be controlled in comparatively low degree with inner temperature.
Description
Technical field
The utility model relates to a kind of chemical plant, especially a kind of blanking machine realizing powder material and cool rapidly.
Background technology
Blanking machine is the common equipment in chemical process, especially for the production of powder material, and one of more requisite device of blanking machine.Blanking machine of the prior art often function is comparatively single, and the collection that only can be used as material is used with transport; And for powder material, it is after preorder operation completes processing, often there is higher surface temperature; Powder material enters in blanking machine and then after piling up, if do not carry out cooling processing in time to it, the temperature of charge of its inside is difficult to heat radiation, thus affects the performance of powder.
Utility model content
The technical problems to be solved in the utility model is to provide a kind of blanking machine, and it can enter in the process of blanking machine at powder, realizes rapidly the cooling to powder.
For solving the problems of the technologies described above, the utility model relates to a kind of blanking machine realizing powder material and cool rapidly, and it includes cylindrical shell, is provided with inlet point and discharging opening in cylindrical shell; Be provided with at least one cold plates in described cylindrical shell, it is extended to cylindrical shell axial direction by the inwall of cylindrical shell; Described cylindrical shell outer setting has at least one cooling blower, and it is communicated to the inside of cylindrical shell by induction tract; The connection location of described induction tract and cylindrical shell is positioned at the top of cold plates, is provided with filter screen in the connection location of induction tract and cylindrical shell.
Improve as one of the present utility model, described cold plates includes at least two cooling disks coaxial with cylindrical shell, and its axial location is connected with the motor being arranged on cylindrical shell outside; Each cooling disk has included at least one fan-shaped blanking groove, and the center of circle of blanking groove is positioned on the axis of cooling disk.Adopt above-mentioned design, it makes the powder material of optional position all can trickle down on it by multiple cooling disk, and by the centnifugal force that disc rotary produces, powder is uniformly distributed on disk, thus improve its radiating effect, and the area of contact of powder and cold air can be increased; Fan-shaped blanking groove can guarantee that powder keeps the glidepath of flow process.
Improve as one of the present utility model, include 3 cooling disks in described cylindrical shell, in each cooling disk, the radian of fan-shaped blanking groove is 30 to 90 °; Be provided with at least two induction tracts between adjacent two cooling disks, it is uniformly distributed in cylindrical shell radial direction.Adopt above-mentioned design, it effectively improves the hardening time of powder by multiple cooling disk, and meanwhile, it can guarantee the blanking efficiency of powder at fan-shaped blanking groove place; Arranging multiple induction tract can make the powder between any two cooling disks all can carry out cooling processing.
Improve as one of the present utility model, the upper surface height of multiple cooling disk raises to its opposed end gradually by end, fan-shaped blanking groove place; The projection of fan-shaped blanking groove on the cylindrical shell bottom face distribution interlaced with each other of multiple cooling disk.Adopt above-mentioned design, after it can guarantee that powder passes through to be positioned at the cooling disk of top, it can keep longer hardening time on below cooling disk.
Improve as one of the present utility model, the radius of described cooling disk is at least 5/6 of cylindrical shell radius; Minor increment between adjacent two cooling disks, is at least 1.5 times of cooling disc thickness.Adopt above-mentioned design, it can guarantee to cool the most area that disk can be covered in cylindrical shell radial direction, and meanwhile, the distance between adjacent two cooling disks, can guarantee that it leaves enough spaces and powder is rotated.
Improve as one of the present utility model, the caliber of described induction tract exists, and the connecting end portion of itself and cooling blower increases gradually on inner barrel bearing of trend.Adopt above-mentioned design, its air-flow that induction tract can be made to carry becomes taper to spread, thus improves the area of contact of itself and powder.
Adopt the blanking machine that the realized powder material of technique scheme cools rapidly, it can make powder material enter in the process of blanking machine cylindrical shell, stopped by cooling disk, and by cooling blower, cooling processing is carried out to it, thus make powder material enter in the process of cylindrical shell, its surface temperature can decline rapidly, and then makes powder material carry out storing in cylindrical shell in the process with logistics, and its top layer all can be controlled in comparatively low degree with inner temperature.
Accompanying drawing explanation
Fig. 1 is the utility model schematic diagram;
Fig. 2 cools disk schematic diagram in the utility model;
Fig. 3 is induction tract longitudinal section view in the utility model;
Reference numerals list:
1-cylindrical shell, 2-inlet point, 3-discharging opening, 4-cooling disk, 5-motor, 6-fan-shaped blanking groove, 7-induction tract, 8-cooling blower.
Detailed description of the invention
Below in conjunction with detailed description of the invention, illustrate the utility model further, following detailed description of the invention should be understood and be only not used in restriction scope of the present utility model for illustration of the utility model.It should be noted that, the word "front", "rear" of use is described below, "left", "right", "up" and "down" refer to direction in accompanying drawing, word " interior " and " outward " refer to the direction towards or away from particular elements geometric centre respectively.
Embodiment 1
A kind of blanking machine realizing powder material and cool rapidly as shown in Figure 1, it includes cylindrical shell 1, is provided with inlet point 2 and discharging opening 3 in cylindrical shell 1; Be provided with 3 cooling disks 4 in described cylindrical shell 1, it is all coaxial with cylindrical shell 1, and the axial location of multiple cooling disk 4 is connected with the motor 5 being arranged on cylindrical shell 1 outside; Each cooling disk has included a fan-shaped blanking groove 6, and the center of circle of blanking groove 6 is positioned on the axis of cooling disk 4; In each cooling disk 4, the radian of fan-shaped blanking groove 6 is 60 °
As shown in Figures 1 and 3, be provided with three induction tracts 7 between adjacent two cooling disks 4, it is uniformly distributed in cylindrical shell 1 radial direction, and each induction tract is all communicated to the cooling blower 8 being arranged on cylindrical shell outside; Filter screen is provided with in described induction tract 7 and the connection location of cylindrical shell 1.
Adopt above-mentioned design, it makes the powder material of optional position all can trickle down on it by multiple cooling disk, and effectively can improve the hardening time of powder; Meanwhile, its centnifugal force produced by disc rotary makes powder be uniformly distributed on disk, thus improves its radiating effect, and can increase the area of contact of powder and cold air; In addition, fan-shaped blanking groove and its angle arrange and can guarantee that powder keeps the glidepath of flow process; Arranging multiple induction tract can make the powder between any two cooling disks all can carry out cooling processing.
Improve as one of the present utility model, as shown in Figure 2, the upper surface height of multiple cooling disk 4 raises to its opposed end gradually by end, fan-shaped blanking groove 6 place; The projection interlaced with each other distribution of fan-shaped blanking groove 6 on cylindrical shell 1 bottom face of multiple cooling disk 4.Adopt above-mentioned design, after it can guarantee that powder passes through to be positioned at the cooling disk of top, it can keep longer hardening time on below cooling disk.
Improve as one of the present utility model, the radius of described cooling disk 4 is 9/10 of cylindrical shell 1 radius; Minor increment between adjacent two cooling disks 4, is 1.5 times of cooling disk 4 thickness.Adopt above-mentioned design, it can guarantee to cool the most area that disk can be covered in cylindrical shell radial direction, and meanwhile, the distance between adjacent two cooling disks, can guarantee that it leaves enough spaces and powder is rotated.
Adopt the blanking machine that the realized powder material of technique scheme cools rapidly, it can make powder material enter in the process of blanking machine cylindrical shell, stopped by cooling disk, and by cooling blower, cooling processing is carried out to it, thus make powder material enter in the process of cylindrical shell, its surface temperature can decline rapidly, and then makes powder material carry out storing in cylindrical shell in the process with logistics, and its top layer all can be controlled in comparatively low degree with inner temperature.
Embodiment 2
Improve as one of the present utility model, the caliber of described induction tract 7 exists, and the connecting end portion of itself and cooling blower 8 increases gradually on the inner bearing of trend of cylindrical shell 1.Adopt above-mentioned design, its air-flow that induction tract can be made to carry becomes taper to spread, thus improves the area of contact of itself and powder.
All the other feature & benefits of the present embodiment are all identical with embodiment 1.
Claims (6)
1. can realize the blanking machine that powder material cools rapidly, it includes cylindrical shell, is provided with inlet point and discharging opening in cylindrical shell; It is characterized in that, be provided with at least one cold plates in described cylindrical shell, it is extended to cylindrical shell axial direction by the inwall of cylindrical shell; Described cylindrical shell outer setting has at least one cooling blower, and it is communicated to the inside of cylindrical shell by induction tract; The connection location of described induction tract and cylindrical shell is positioned at the top of cold plates, is provided with filter screen in the connection location of induction tract and cylindrical shell.
2. according to the blanking machine realizing powder material and cool rapidly according to claim 1, it is characterized in that, described cold plates includes at least two cooling disks coaxial with cylindrical shell, and its axial location is connected with the motor being arranged on cylindrical shell outside; Each cooling disk has included at least one fan-shaped blanking groove, and the center of circle of blanking groove is positioned on the axis of cooling disk.
3. according to the blanking machine realizing powder material and cool rapidly according to claim 2, it is characterized in that, include 3 cooling disks in described cylindrical shell, in each cooling disk, the radian of fan-shaped blanking groove is 30 to 90 °; Be provided with at least two induction tracts between adjacent two cooling disks, it is uniformly distributed in cylindrical shell radial direction.
4. according to the blanking machine realizing powder material and cool rapidly according to claim 3, it is characterized in that, the upper surface height of multiple cooling disk raises to its opposed end gradually by end, fan-shaped blanking groove place; The projection of fan-shaped blanking groove on the cylindrical shell bottom face distribution interlaced with each other of multiple cooling disk.
5. according to the blanking machine realizing powder material and cool rapidly according to claim 4, it is characterized in that, the radius of described cooling disk is at least 5/6 of cylindrical shell radius; Minor increment between adjacent two cooling disks, is at least 1.5 times of cooling disc thickness.
6. according to the blanking machine that the realized powder material described in claim 1 or 4 cools rapidly, it is characterized in that, the caliber of described induction tract exists, and the connecting end portion of itself and cooling blower increases gradually on inner barrel bearing of trend.
Priority Applications (1)
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CN201520147317.8U CN204549136U (en) | 2015-03-16 | 2015-03-16 | The blanking machine that powder material cools rapidly can be realized |
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CN201520147317.8U CN204549136U (en) | 2015-03-16 | 2015-03-16 | The blanking machine that powder material cools rapidly can be realized |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106139180A (en) * | 2016-08-29 | 2016-11-23 | 江苏众胜灭菌设备科技有限公司 | Low-temperature cold wind powder cooling discharge system |
-
2015
- 2015-03-16 CN CN201520147317.8U patent/CN204549136U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106139180A (en) * | 2016-08-29 | 2016-11-23 | 江苏众胜灭菌设备科技有限公司 | Low-temperature cold wind powder cooling discharge system |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150812 Termination date: 20200316 |
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CF01 | Termination of patent right due to non-payment of annual fee |