CN211650960U - Dryer for diphenyl silanediol production - Google Patents
Dryer for diphenyl silanediol production Download PDFInfo
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- CN211650960U CN211650960U CN202020173990.XU CN202020173990U CN211650960U CN 211650960 U CN211650960 U CN 211650960U CN 202020173990 U CN202020173990 U CN 202020173990U CN 211650960 U CN211650960 U CN 211650960U
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- shaped baffle
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Abstract
The utility model relates to a desicator is used in production of diphenyl silanediol, including base, bipyramid barrel, evacuation pipeline, filter and power device, its technical essential is: pneumatic knocking hammers are symmetrically fixed at positions, corresponding to two sides of a discharge port, of a lower cone of the double-cone barrel, an air source connector used for being connected with the pneumatic knocking hammers is fixed at the lower part of the base, a balance weight symmetrically arranged with the pneumatic knocking hammers is arranged on an upper cone of the double-cone barrel, an upper lug-shaped baffle plate and a lower lug-shaped baffle plate are symmetrically arranged on the inner wall of the double-cone barrel, the two sets of lug-shaped baffle plates are respectively composed of two pairs of lug-shaped baffle plates symmetrically arranged on the left side and the right side, each pair of lug-shaped baffle plates is composed of two lug-shaped baffle plates continuously connected and arranged, each lug-shaped baffle plate is an arc-shaped thin plate, and the. The utility model discloses greatly reduced unloads the degree of difficulty, and convenient and fast need not artifical mediation blowing, reduces workman intensity of labour, is showing and improves drying efficiency.
Description
Technical Field
The utility model relates to a chemical production technical field, concretely relates to desicator is used in diphenyl silicon glycol production is applicable to the drying operation of production similar diphenyl silicon glycol material.
Background
In the production process of diphenyl silanediol, diphenyl silanediol materials need to be dried at the tail end of a production line, so that the aim of removing solvent water is fulfilled.
At present, a generally adopted dryer is a double-cone rotary vacuum drying device, steam or hot water is introduced into a jacket of a double-cone cylinder in a vacuum state for heating, heat is contacted with wet materials through the inner wall of the double-cone cylinder, and the water vapor evaporated after the wet materials absorb heat enters a vacuum exhaust pipe through a filter under the action of a vacuum pump and is pumped away, so that the drying purpose is achieved. After the drying operation is finished, the problem that the discharging is difficult frequently occurs at the discharging opening, the manual stirring and knocking are needed to be carried out by using tools to dredge the materials, the blanking can be carried out, the labor is consumed, and the production efficiency is reduced; 2. in order to avoid the condition that the materials are hung on the wall and the materials are not discharged completely, a stirring device for accelerating the drying speed is not arranged in the double-cone cylinder liner, so that the production efficiency is also restricted; 3. during the turning process of the double cone, the material is easy to adhere to the surface of the filter to block the filter, which is not beneficial to the vacuum pumping and steam discharging operation of the vacuum pump. Based on this, the dryer used in the diphenyl silanediol production process still needs to be improved.
Disclosure of Invention
The utility model aims at providing a solve the desicator for diphenylsilanediol production of above-mentioned problem, greatly reduced unloads the degree of difficulty, and convenient and fast need not artifical mediation blowing, reduces workman intensity of labour, is showing and improves drying efficiency.
The technical scheme of the utility model is that:
the utility model provides a desicator is used in diphenyl silanediol production, includes the base, supports bipyramid barrel on the base, with the evacuation pipeline of bipyramid barrel intercommunication, locate in the bipyramid barrel with the filter of evacuation pipe connection and the power device of drive bipyramid barrel upset, its technical essential is: pneumatic knocking hammers are symmetrically fixed on the two sides of the discharge opening, corresponding to the lower cone of the double-cone cylinder, an air source connector used for being connected with the pneumatic knocking hammers is fixed on the lower portion of the base, a balance weight symmetrically arranged with the pneumatic knocking hammers is arranged on the upper cone of the double-cone cylinder, an upper lug-shaped baffle plate and a lower lug-shaped baffle plate are symmetrically arranged on the inner wall of the double-cone cylinder, the two sets of lug-shaped baffle plates are respectively composed of two pairs of lug-shaped baffle plates symmetrically arranged on the left side and the right side, each pair of lug-shaped baffle plates is composed of two lug-shaped baffle plates continuously connected and arranged, each lug-shaped baffle plate is an arc-shaped thin plate, and the arc-shaped thin plate.
According to the drier for producing diphenyl silanediol, the length of the cross section of the arc-shaped thin plate is D, the thickness of the arc-shaped thin plate is D, and D is larger than or equal to 6D.
The dryer for producing diphenyl silanediol comprises two filter heads communicated with a vacuum pumping pipeline, wherein the two filter heads are higher than a rotating shaft of a double-cone cylinder in the vertical direction, and each filter head consists of a shell with uniformly arranged filter holes and a filter screen arranged in the shell. The risk that the vacuumizing pipeline is blocked by the materials is reduced by the two filter heads.
The utility model has the advantages that:
1. due to the fact that the two pneumatic knocking hammers are arranged, after drying operation is completed, the discharge opening is opened, the pneumatic knocking hammers are connected with the air source connector, the pneumatic knocking hammers are started, materials in the double-cone cylinder body fall under vibration under the action of the pneumatic knocking hammers, the phenomenon that a wall cannot be hung is avoided, discharging difficulty is greatly reduced, convenience and fastness are achieved, manual dredging and discharging are not needed, labor intensity of workers is reduced, discharging efficiency is remarkably improved, and accordingly production efficiency is improved.
2. Through the arrangement of the balance weight which is symmetrical to the pneumatic knocking hammer, the power consumption of the power device for driving the double-cone cylinder and the pneumatic knocking hammer is reduced.
3. Two groups of lug-shaped baffle plates are adopted to carry out frontal impact with the overturned material, so that the overturned material is dispersed, the drying efficiency is accelerated, and meanwhile, due to the arrangement of the pneumatic knocking hammer, the lug-shaped baffle plates are not worried about hanging the material. In addition, the lifting lug-shaped baffle plate is simple in structure, the arc-shaped thin plate is large in material hanging and sticking difficulty, and the production cost is low.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a top view of the filter of FIG. 1;
FIG. 3 is a schematic structural view of the lug-shaped baffle of FIG. 1;
fig. 4 is a top view of fig. 3.
In the figure: 1. the device comprises a base, 2 parts of a double-cone cylinder body, 3 parts of a balance weight, 4 parts of a lifting lug-shaped baffle plate, 5 parts of a filter, 501 parts of a shell, 502 parts of a filter hole, 6 parts of a vacuum pumping pipeline, 7 parts of an air source connector, 8 parts of a power device, 9 parts of a pneumatic knocking hammer and 10 parts of a discharge opening.
Detailed Description
As shown in fig. 1-4, the dryer for diphenyl silanediol production comprises a base 1, a double-cone cylinder 2 supported on the base 1, a vacuum-pumping pipeline 6 communicated with the double-cone cylinder 2, a filter 5 arranged in the double-cone cylinder 2 and connected with the vacuum-pumping pipeline 6, and a power device 8 for driving the double-cone cylinder 2 to turn over.
An upper group of lug-shaped baffle plates 4 and a lower group of lug-shaped baffle plates 4 are symmetrically arranged on the inner wall of the double-cone cylinder body 2, the two groups of lug-shaped baffle plates 4 are respectively composed of two pairs of lug-shaped baffle plates 4 which are symmetrically arranged on the left and the right, each pair of lug-shaped baffle plates 4 is composed of two lug-shaped baffle plates 4 which are continuously connected and arranged, each lug-shaped baffle plate 4 is an arc-shaped thin plate, and the arc-shaped thin plates, the central line of the rotating shaft of the double-cone. The cross section length of the arc-shaped thin plate is D, the thickness of the arc-shaped thin plate is D, D is larger than or equal to 6D, and in the embodiment, D =5mm and D =40 mm.
The filter 5 comprises two filter heads communicated with a vacuum pumping pipeline, the two filter heads are higher than a rotating shaft of the double-cone cylinder in the vertical direction, and the two filter heads respectively comprise a shell 501 with uniformly arranged filter holes 502 and a filter screen arranged in the shell 501. The risk that the vacuum-pumping pipeline 6 is blocked by the materials is reduced by the two filter heads.
When the drying device is used, after the drying operation of the double-cone cylinder body 2 is finished, the discharge opening 10 is opened, and materials fall down; then, the pneumatic knocking hammer 9 is connected with the air source connector 7, the pneumatic knocking hammer 9 is started, the double-cone cylinder 2 is vibrated, and materials in the double-cone cylinder fall and are gradually discharged due to vibration; and after the unloading is finished, stopping the action of the pneumatic knocking hammer 9, and taking down the air source pipe connecting the pneumatic knocking hammer 9 and the air source connector 7 for the next use.
Claims (3)
1. The utility model provides a desicator is used in diphenyl silanediol production, includes the base, supports bipyramid barrel on the base, with the evacuation pipeline of bipyramid barrel intercommunication, locate the filter of being connected with evacuation pipeline in the bipyramid barrel and drive the power device of bipyramid barrel upset, its characterized in that: pneumatic knocking hammers are symmetrically fixed on the two sides of the discharge opening, corresponding to the lower cone of the double-cone cylinder, an air source connector used for being connected with the pneumatic knocking hammers is fixed on the lower portion of the base, a balance weight symmetrically arranged with the pneumatic knocking hammers is arranged on the upper cone of the double-cone cylinder, an upper lug-shaped baffle plate and a lower lug-shaped baffle plate are symmetrically arranged on the inner wall of the double-cone cylinder, the two sets of lug-shaped baffle plates are respectively composed of two pairs of lug-shaped baffle plates symmetrically arranged on the left side and the right side, each pair of lug-shaped baffle plates is composed of two lug-shaped baffle plates continuously connected and arranged, each lug-shaped baffle plate is an arc-shaped thin plate, and the arc-shaped thin plate.
2. The drier for diphenylsilanediol production according to claim 1, wherein: the length of the cross section of the arc-shaped thin plate is D, the thickness of the arc-shaped thin plate is D, and D is larger than or equal to 6D.
3. The drier for diphenylsilanediol production according to claim 1, wherein: the filter comprises two filter heads communicated with a vacuum pumping pipeline, the two filter heads are higher than a rotating shaft of the double-cone cylinder in the vertical direction, and the two filter heads respectively comprise a shell with uniformly arranged filter holes and a filter screen arranged in the shell.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202020173990.XU CN211650960U (en) | 2020-02-17 | 2020-02-17 | Dryer for diphenyl silanediol production |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202020173990.XU CN211650960U (en) | 2020-02-17 | 2020-02-17 | Dryer for diphenyl silanediol production |
Publications (1)
Publication Number | Publication Date |
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CN211650960U true CN211650960U (en) | 2020-10-09 |
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Family Applications (1)
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CN202020173990.XU Active CN211650960U (en) | 2020-02-17 | 2020-02-17 | Dryer for diphenyl silanediol production |
Country Status (1)
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CN (1) | CN211650960U (en) |
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2020
- 2020-02-17 CN CN202020173990.XU patent/CN211650960U/en active Active
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