CN210014635U - Roller sheet cross combination conveying type supporting pipe exhaust drying machine - Google Patents
Roller sheet cross combination conveying type supporting pipe exhaust drying machine Download PDFInfo
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- CN210014635U CN210014635U CN201920474047.XU CN201920474047U CN210014635U CN 210014635 U CN210014635 U CN 210014635U CN 201920474047 U CN201920474047 U CN 201920474047U CN 210014635 U CN210014635 U CN 210014635U
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- roller
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- air inlet
- supporting pipe
- exhaust
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Abstract
The utility model discloses a formula stay tube exhaust-gas drying machine is carried in gyro wheel piece cross combination, this desiccator include gyro wheel piece cross combination formula conveying mechanism, stay tube, bearing, and gyro wheel piece and double flute drive wheel and the trunk line that admits air are installed to the stay tube. One end of the main air inlet pipe is connected to a heat exchanger box which is used for generating hot air, and the temperature of the hot air is set according to the temperature required by the drying material. One end of the heat exchanger box is connected with a high pressure fan, and the high pressure fan sends hot air with set temperature into the supporting pipe and then discharges the hot air from the exhaust hole of the supporting pipe. When the desiccator moves, under the transmission of motor and drive belt, all stay tube parts roll towards same direction, and the material is diversified through the exhaust hot-air, and the material passes through the stay tube top, can be closely diversified being heated to material moisture evaporation is fast, raises the efficiency, and the quality is secure.
Description
Technical Field
The utility model belongs to the technical field of it is dry, especially, relate to a formula stay tube exhaust drying machine is carried in gyro wheel piece cross combination.
Background
The belt dryer is currently divided into single-layer type and multi-layer type, but the working principle is basically the same. The drying device is composed of main components such as a stainless steel mesh belt, a mesh belt transmission mechanism, a circulating fan, a distributing device, a heat exchanger and a box body, and the working principle is that materials are uniformly paved on the mesh belt through the distributing device and move forwards along with a conveying mesh belt, hot air is vertically blown to a material layer through the fan, the materials are heated, and moisture is evaporated to achieve a drying effect.
Has the problems that
Under the blockking of mesh belt dryer at the material, the hot-air penetration is poor, and dry material is heated inhomogeneously, especially slice material, because certain thickness has during the distributing device stone material, presss from both sides the material in the middle and can not blown to by hot-air, and the influence is heated, and moisture is difficult to the evaporation, and then influences dry quality, and traditional multilayer belt dryer and individual layer belt dryer all have the size big, comparatively extravagant space resource.
SUMMERY OF THE UTILITY MODEL
In order to overcome the not enough of above prior art, the utility model provides a formula stay tube exhaust drying machine is carried in gyro wheel piece cross combination, diversified dry material that can be quick has drying efficiency height, characteristics such as small.
The technical scheme of the utility model realized like this, a formula stay tube exhaust drying machine is carried in gyro wheel piece cross combination, the desiccator includes gyro wheel piece cross combination conveying mechanism, conveying mechanism is transversely laid by the vertical horizontally of many stay tubes, and the bearing is installed respectively at the stay tube two, and the bearing is fixed on the bearing at two, and the double flute drive wheel is installed to the stay tube one end, connects with the drive belt between double flute drive wheel and the adjacent double flute drive wheel, and every gyro wheel piece cross combination conveying mechanism is furnished with a driving motor, installs the gyro wheel piece of full interval equidistance on the stay tube.
Furthermore, the specification, the number and the gaps of the supporting tubes and the specification, the number and the gaps of the roller sheets are determined according to the shape and the field of materials, the supporting tubes of the roller sheet cross combination conveying mechanism are also provided with exhaust holes which are uniformly distributed, and the roller sheets on the adjacent supporting tubes are arranged in a cross and ordered way.
Furthermore, one end of the supporting pipe is closed, the other end of the supporting pipe is connected with an air inlet branch pipe connector, and one end of the air inlet branch pipe connector is an air inlet main pipe.
Further, one end of the main intake duct is connected to a heat exchanger box for generating hot air, the temperature of which is set according to the temperature required for drying the material.
Furthermore, one end of the heat exchanger box is connected with a high-pressure fan, and the high-pressure fan sends hot air with set temperature into the supporting pipe and then discharges the hot air from the exhaust hole of the supporting pipe.
Further, when the drying machine operates, all the support pipe parts roll towards the same direction under the transmission of the motor and the transmission belt, the hot air exhausted by the material through the exhaust holes is multidirectional, and the material can be heated in a close range and multidirectional mode through the upper portion of the support pipe roller, so that the moisture evaporation of the material is fast, the efficiency is improved, and the quality is guaranteed.
Drawings
Fig. 1 is an isometric view of a dryer according to the present invention.
Fig. 2 is a rear view of the dryer of the present invention.
Figure 3 is the roller support tube assembly of the present invention.
Fig. 4 is a top view of the roller sheet crossing combined conveying mechanism of the present invention.
Fig. 5 is a side plan view of the roller sheet cross-combined conveying mechanism of the present invention.
Fig. 6 is a side plan view of the drying machine of the present invention, the multi-layer roller sheet cross-combination conveying mechanism assembled inside.
In the figure: 1. a main air inlet pipeline; 2. an air inlet branch pipe interface; 3. a bearing; 4. a bearing support; 5. a roller sheet; 6. a roller supporting tube; 7. an exhaust hole; 8. a transmission belt; 9. a double-groove transmission wheel; 10. a main pipeline air inlet; 11 a transfer motor; 12. feeding a hopper; 13. a column; 14. a discharge hopper; 15. the roller pieces are crossed and combined with the conveying mechanism; 16. a heat preservation box body; 17. a high pressure fan; 18. a heat exchanger tank; 19. a moisture discharging port.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description, and it should be noted that the embodiments or technical features described below can be arbitrarily combined to form a new embodiment without conflict.
As shown in fig. 4, which is a top view of the roller blade cross-linked conveyor 15, it can be seen that: the conveying mechanism is formed by longitudinally placing a plurality of roller supporting pipes 6 and horizontally laying, bearings 3 are respectively arranged at two ends of each roller supporting pipe 6, the bearings 3 are fixed on bearing supports 4 at two ends, a double-groove driving wheel 9 is arranged at one end of each roller supporting pipe 6, each double-groove driving wheel 9 is connected with an adjacent double-groove driving wheel through a driving belt 8, roller sheets 5 which are separated by a certain distance are filled on the roller supporting pipes 6, and the roller sheets 5 on the adjacent roller supporting pipes 6 are arranged in a crossed and ordered mode.
Furthermore, the roller supporting tube 6 is provided with exhaust holes 7 which are uniformly distributed, one end of the roller supporting tube 6 is closed, the other end of the roller supporting tube 6 is respectively connected with the corresponding air inlet branch tube interfaces 2, and one end of each air inlet branch tube interface 2 is provided with the air inlet main pipeline 1.
Further, the main air inlet 10 is arranged in the middle of the main air inlet pipe 1, the main air inlet 10 is connected to a heat exchanger box 18, the heat exchanger box 18 is used for generating hot air by using heat-conducting substances, and the temperature of the hot air is set according to the temperature required by the drying materials.
Furthermore, one end of the heat exchanger box 18 is connected with a high pressure fan 17, and the high pressure fan 17 sends hot air with set temperature into the roller supporting tube 6 through the main pipe air inlet 10, then to the main air inlet pipe 1, then to the air inlet branch pipe interface, and then discharges the hot air from the exhaust hole 7 of the roller supporting tube 6.
Further, when the drying machine operates, under the transmission of the motor and the transmission belt, the roller supporting tube 6 and the roller sheet 5 roll towards the same direction, the material moves above the roller sheet 5, and hot air exhausted through the exhaust holes 7 is heated in a multi-direction close range, so that the moisture evaporation of the material is fast, the efficiency is high, and the quality is guaranteed.
Furthermore, the diameter of the roller sheet 5 can be as small as 60mm, so that the dryer of the invention can realize the design of the multi-layer roller sheet cross combined type conveying mechanism 15, the thickness of each layer of roller sheet cross combined type conveying mechanism 15 is 3 to 4 times thinner than that of the conveying mechanism of the traditional belt dryer, and under the same drying area, the design of the multi-layer roller sheet cross combined type conveying mechanism 15 can be utilized, so that the occupied area can be greatly saved.
Further, as shown in fig. 6: the working principle of the multi-layer roller sheet crossing combined conveying mechanism 15 is as follows: the material is evenly spread to top layer roller piece alternately combined type conveying mechanism 15 from feed opening 12, under the transmission of driving motor 11, roll the transport towards the place ahead, every adjacent one deck roller piece alternately combined type conveying mechanism 15's rolling direction is all opposite, the material on top layer is carried to the terminal when down the layer excessively, the material can be when the landing, lay again, the angle of laying of material changes along with every layer conveying mechanism's excess, play the effect of stirring, it is more abundant to be heated, the roller piece alternately combined type conveying mechanism 15 of next floor just receives the material on upper strata, roll to the opposite direction on upper strata, analogize with this, until the material is seen off from the discharge gate, accomplish the drying process of material.
Claims (3)
1. An exhaust dryer of a roller sheet cross combined type conveying supporting pipe is characterized by comprising a roller sheet cross combined type conveying mechanism, wherein the roller sheet cross combined type conveying mechanism is longitudinally arranged by a plurality of roller supporting pipe assemblies and is horizontally laid, bearings (3) are respectively arranged at two ends of each roller supporting pipe assembly, the bearings (3) are fixed on bearing supports (4) at two ends, a double-groove driving wheel (9) is arranged at one end of each roller supporting pipe (6), each double-groove driving wheel (9) is connected with the adjacent double-groove driving wheels (9) through a driving belt (8), the roller supporting pipes (6) are filled with roller sheets (5) which are separated by a certain distance, the roller sheets (5) and the roller sheets (5) on the adjacent roller supporting pipes (6) are arranged in a cross-ordered manner, and exhaust holes (7) which are uniformly distributed are arranged on the roller supporting pipes (6), one end of the roller supporting pipe (6) is closed, the other end of the roller supporting pipe is respectively connected with an air inlet branch pipe interface (2), and one end of the air inlet branch pipe interface (2) is provided with an air inlet main pipe (1).
2. The roller blade cross combination type conveying support pipe exhaust dryer according to claim 1, characterized in that: each roller sheet cross combined type conveying mechanism is provided with a transmission motor (11).
3. The roller blade cross combination type conveying support pipe exhaust dryer according to claim 1, characterized in that: the hot air is sent into the air inlet main pipeline (1) by the high pressure fan (17), is distributed to each air inlet branch pipe joint (2) by the air inlet main pipeline (1), and is finally discharged from the exhaust holes (7) of the roller supporting pipe (6).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920474047.XU CN210014635U (en) | 2019-04-10 | 2019-04-10 | Roller sheet cross combination conveying type supporting pipe exhaust drying machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920474047.XU CN210014635U (en) | 2019-04-10 | 2019-04-10 | Roller sheet cross combination conveying type supporting pipe exhaust drying machine |
Publications (1)
Publication Number | Publication Date |
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CN210014635U true CN210014635U (en) | 2020-02-04 |
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Family Applications (1)
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CN201920474047.XU Active CN210014635U (en) | 2019-04-10 | 2019-04-10 | Roller sheet cross combination conveying type supporting pipe exhaust drying machine |
Country Status (1)
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CN (1) | CN210014635U (en) |
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2019
- 2019-04-10 CN CN201920474047.XU patent/CN210014635U/en active Active
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
TR01 | Transfer of patent right |
Effective date of registration: 20220525 Address after: 515346 No. 12, Nanyuan Road Industrial Zone, Chigang Town, Puning City, Jieyang City, Guangdong Province (self declaration) Patentee after: Puning Zhenwei Machinery Co.,Ltd. Address before: No. 0006, Liulian Dongmen new village, nigou Township, Liaoyuan street, Puning City, Jieyang, Guangdong 515344 Patentee before: Chen Lunhao |
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TR01 | Transfer of patent right |