Low-heat-dissipation drying device for mineral powder production
The design of adjustable drying cylinder height and angle solves the problem of inconvenient cleaning and maintenance in existing equipment, improves the drying efficiency of mineral powder and the capacity of the equipment, and achieves a highly efficient drying effect for mineral powder.
Patent Information
- Application Number
- CN202422898604.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-11-27
AI Technical Summary
In existing mineral powder drying devices, the height and angle of the drying cylinder are not adjustable, which affects cleaning and maintenance. Furthermore, the telescopic rod occupies internal space, reducing the capacity and weight of the drying cylinder.
A device for adjusting the height and angle of a drying cylinder was designed. The position of the drying cylinder is adjusted by a combination of multi-stage jacks and support bases. A split-type pushing mechanism is adopted to reduce the space occupied. The position of the components is fixed by limit blocks and screws to ensure stability and easy cleaning.
The drying drum can be flexibly adjusted, which improves the discharge speed of mineral powder and the convenience of cleaning and maintenance, and ensures the actual capacity of the drying drum and the quality of each drying cycle.
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Figure CN223741147U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of mineral powder processing equipment, and specifically discloses a low heat dissipation drying device for mineral powder production. BACKGROUND
[0002] Mineral powder is the general term of stone powder and its substitutes meeting engineering requirements, and is the product after mineral ore is crushed and processed, common mineral powder includes limestone mineral powder, iron ore powder and slag powder and the like, mineral powder is widely applied and is used in many industries and fields such as building, cement production, metallurgy, chemical industry and rubber, in the process of mineral powder processing, a drying device is needed to remove the excess moisture in the mineral powder for subsequent processing and use.
[0003] A drying device for mineral powder production convenient for reducing heat dissipation is disclosed in Chinese patent No. CN216770021U, which comprises: a base serving as the supporting basis of the device as a whole; a supporting frame fixedly connected to the base to raise the horizontal height of the device; and a supporting cylinder fixedly connected to the supporting frame, wherein a first bearing is fixedly connected in the supporting cylinder, and a lock catch is fixedly connected to the sealing plate. The drying device for mineral powder production convenient for reducing heat dissipation rapidly increases the heat inside the drying cylinder through twelve heating rods, uniformly dries the mineral powder by rotating the drying cylinder, effectively prevents the internal heat from being transferred to the outside through the action of the first and second heat insulation plates, the internal cavity of the cavity plate is in a vacuum state without heat transfer medium, further blocks the heat loss, pushes out the mineral powder inside the drying cylinder by the push plate driven by the telescopic rod to unload, and effectively scrapes off the mineral powder adhered to the inner wall of the drying cylinder. However, the height and angle of the drying cylinder in the above drying device cannot be adjusted according to actual needs, which is not conducive to the cleaning and maintenance of the inner wall of the drying cylinder. The telescopic rod in the above drying device is arranged inside the drying cylinder. Since the telescopic rod still has a certain length in the fully retracted state, it occupies the north space of the drying cylinder, affects the actual capacity of the drying cylinder, and thus reduces the quality of the mineral powder dried by the drying cylinder at a time. Therefore, in order to solve the above problems, the utility model provides a low heat dissipation drying device for mineral powder production. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a low heat dissipation drying device for mineral powder production, the height and angle of the drying cylinder can be adjusted according to actual needs to ensure the speed of discharging the mineral powder in the drying cylinder, which is helpful for the cleaning and maintenance of the drying cylinder and its connecting parts, can reduce the occupation of the internal space of the drying cylinder, and ensure the actual capacity of the drying cylinder and the quality of the mineral powder dried at a time.
[0005] The utility model is implemented by the following technical solutions:
[0006] The utility model provides a low heat dissipation's ore powder production is with drying device, including base and drying mechanism, the top of base is provided with drying mechanism, drying mechanism includes drying cylinder and driving gear, the outside of drying cylinder is connected with two driven gears, the outside of driven gear is provided with two driving gears, the gear of driving gear and driven gear is engaged, one side of driving gear is connected with motor, the outside middle part of drying cylinder is rotatably connected with first support, both ends of drying cylinder are detachably connected with first sealing plate and second sealing plate respectively, one side of first sealing plate is provided with feeding pipe, one end of drying cylinder is provided with pushing mechanism close to second sealing plate, the base includes bearing plate, one end of bearing plate is provided with limit groove close to pushing mechanism, both ends of bearing plate below are all connected with two support bases, the below of support base all is provided with multistage jack, pushing mechanism includes pushing plate and first telescopic link, one side of pushing plate is provided with first telescopic link, the below of first telescopic link is provided with second telescopic link, the below of second telescopic link is connected with limit block, limit block and limit groove are slidably connected.
[0007] As a further setting of the above scheme, the outside of the motor is provided with a machine base, the lower part of the machine base is connected with the bearing plate, which can provide stable support for the motor, facilitate the installation and maintenance of the motor, the upper part of the bearing plate is provided with a tool box on one side, which is convenient for placing spare parts and tools in the drying device, and is convenient for workers to use, the telescopic end of the multistage jack is connected with the support base through bolts, the outside of the bolts is provided with a gasket, the gasket is provided with a first nut on one side, the first nut is threadedly connected with the bolt, which facilitates the installation and maintenance of the multistage jack, and the first nut can be loosened before the angle adjustment of the drying cylinder to release the fixation of the multistage jack and the support base, so that the support base can rotate at the telescopic end of the multistage jack, laying the foundation for the angle adjustment of the bearing plate, the drying cylinder and other components.
[0008] As a further setting of the above scheme, the end of the feeding pipe away from the first sealing plate is detachably connected with a cover, which can block the feeding pipe during the drying of the ore powder, preventing the ore powder from falling out of the feeding pipe, the side of the cover away from the feeding pipe is connected with an exhaust pipe, which can exhaust the water vapor generated during the drying of the ore powder from the drying cylinder, the middle part of the second sealing plate is provided with a reserved hole to provide space for the telescopic extension of the first telescopic link, the two sides of the reserved hole are provided with limit holes to facilitate the connection with the limit rods, and the inside of the reserved hole is provided with a limit ring, which is detachably connected with the second sealing plate, which can block the reserved hole during the drying of the ore powder, while facilitating the fixation of the pushing plate.
[0009] As a further setting of the above scheme, the pushing plate is in sliding fit with the inner wall of the drying cylinder, can scrape off the mineral powder adhered to the inner wall of the drying cylinder, two limiting rods are connected to the side of the pushing plate close to the second sealing plate, the limiting rods are in sliding fit with the limiting holes, can preliminarily limit the position of the pushing plate, a connecting shaft is arranged in the middle of the side of the pushing plate close to the second sealing plate, the connecting shaft penetrates through the middle of the limiting ring and is in sliding connection with the limiting ring, the outer side of the connecting shaft is threadedly connected with a second nut, can further limit the position of the pushing plate, so that the pushing plate keeps stable during the drying of the mineral powder.
[0010] As a further setting of the above scheme, the connecting shaft is detachably connected with the telescopic end of the first telescopic rod, facilitates connecting the first telescopic rod with the connecting shaft after the drying of the mineral powder is completed, provides power for the movement of the pushing plate in the drying cylinder, the outer side of the first telescopic rod is provided with a second support, the second support is detachably connected with the telescopic end of the second telescopic rod, facilitates the installation and maintenance of the above components, and can provide stable support for the first telescopic rod, so that the first telescopic rod keeps stable.
[0011] As a further setting of the above scheme, the two sides of the limiting groove are provided with sliding grooves, a plurality of first connecting holes are arranged above the sliding grooves, a screw is arranged to penetrate through the inside of the first connecting hole, the two sides of the limiting block are provided with protrusions, the protrusions are in sliding connection with the sliding grooves, the inside of the protrusion is provided with two second connecting holes, the lower end of the screw is threadedly connected with the second connecting hole, facilitates fixing the position of the second telescopic rod and the connecting components thereof by using the screw after the position adjustment of the second telescopic rod and the connecting components thereof is completed, so that the second telescopic rod and the connecting components thereof keep stable.
[0012] As a further setting of the above scheme, one side of the base is provided with a controller, facilitates the control of the operation of the related components in the drying device.
[0013] The utility model has the following beneficial effects in the process of using:
[0014] The combination of the bearing plate, the supporting seat and the four multistage jacks in the base can adjust the height and angle of the drying mechanism and the pushing mechanism according to actual requirements, provides convenience for the smooth discharge of the mineral powder in the drying cylinder and the cleaning and maintenance of the inner wall of the drying cylinder.
[0015] The combination of the first sealing plate, the feeding pipe, the cover and the exhaust pipe in the drying mechanism facilitates the injection of the mineral powder to be dried into the drying cylinder, can reduce the internal space of the drying cylinder and the connecting port outside, and facilitates the exhaust of the water vapor generated in the drying process of the mineral powder, the combination of the reserved hole in the middle of the second sealing plate and the limiting ring can facilitate the removal of the limiting ring after the drying of the mineral powder is completed, and provides convenience for the connection of the telescopic end of the first telescopic rod and the connecting shaft and the pushing of the mineral powder to the end away from the second sealing plate after the first telescopic rod is pushed into the drying cylinder.
[0016] The split design of the pushing mechanism and the drying mechanism can reduce the occupation of the first telescopic rod in the pushing mechanism to the internal space of the drying mechanism, ensure the actual capacity of the drying cylinder and the quality of the mineral powder in single drying, the use of the second telescopic rod can adjust the distance between the first telescopic rod and the bearing plate before and after the use of the pushing mechanism, so as to reduce the space occupied by the pushing mechanism, the combination of the limiting block, the convex block and the screw facilitates the adjustment of the positions of the second telescopic rod, the second support and the first telescopic rod by the sliding of the limiting block and the convex block in the limiting groove and the sliding groove before and after the use of the pushing mechanism, and the use of the screw for fixation, so as to avoid the conflict in position between the pushing mechanism and the rotating drying cylinder in the process of drying the mineral powder. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0018] Figure 1 It is the first perspective view of the present application.
[0019] Figure 2 It is the second perspective view of the present application.
[0020] Figure 3 It is the enlarged view of point A in 1 in the present application.
[0021] Figure 4 It is the combined perspective view of the support seat, the bolt and the multi-stage jack in the present application.
[0022] Figure 5 It is the perspective view of the second sealing plate in the present application.
[0023] Figure 6 It is the perspective view of the limiting ring in the present application.
[0024] Figure 7It is the perspective schematic view of the pushing mechanism in the utility model.
[0025] In the figure: 1, base; 2, drying mechanism; 3, pushing mechanism; 4, controller; 11, bearing plate; 111, limiting groove; 112, sliding groove; 113, first connecting hole; 12, support base; 13, multistage jack; 14, bolt; 141, gasket; 142, first nut; 15, tool box; 21, drying cylinder; 211, driven gear; 22, driving gear; 23, motor; 231, machine base; 24, first support; 25, first sealing plate; 251, feeding pipe; 252, lid; 253, exhaust pipe; 26, second sealing plate; 261, reserved hole; 262, limiting hole; 27, limiting ring; 31, pushing plate; 311, limiting rod; 312, connecting shaft; 32, second nut; 33, first telescopic rod; 34, second support; 35, second telescopic rod; 36, limiting block; 361, protruding block; 362, second connecting hole; 37, screw. DETAILED DESCRIPTION
[0026] In order to enable the personnel in the art to better understand the present application scheme, the technical scheme in the present application embodiment will be clearly and completely described below in combination with the drawings in the present application embodiment. Obviously, the described embodiments are only a part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should belong to the scope of protection of the present application.
[0027] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments. Figures 1-7 The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0028] The working principle and use method of the drying cylinder 21 in the present scheme refer to the working principle of the low-heat-dissipation drying cylinder 21 and its use method disclosed in the comparative document CN216770021U A kind of mineral powder production is used to reduce heat loss drying device.
[0029] The embodiment discloses a low-heat-dissipation drying device for mineral powder production, which comprises a base 1 and a drying mechanism 2, the upper side of the base 1 is provided with the drying mechanism 2, the drying mechanism 2 comprises a drying cylinder 21 and a driving gear 22, the outer side of the drying cylinder 21 is connected with two driven gears 211, the outer side of the driven gear 211 is provided with two driving gears 22, the driving gear 22 is engaged with the gear teeth of the driven gear 211, one side of the driving gear 22 is connected with a motor 23, the outer side of the middle part of the drying cylinder 21 is rotationally connected with a first support 24, the two ends of the drying cylinder 21 are respectively detachably connected with a first sealing plate 25 and a second sealing plate 26, one side of the first sealing plate 25 is provided with a feeding pipe 251, one end of the drying cylinder 21 close to the second sealing plate 26 is provided with a pushing mechanism 3, the base 1 comprises a bearing plate 11, one end of the bearing plate 11 close to the pushing mechanism 3 is provided with a limiting groove 111, the lower side of the bearing plate 11 is symmetrically connected with two support bases 12, the lower side of the support base 12 is provided with a multistage jack 13, the pushing mechanism 3 comprises a pushing plate 31 and a first telescopic rod 33, one side of the pushing plate 31 is provided with the first telescopic rod 33, the lower side of the first telescopic rod 33 is provided with a second telescopic rod 35, the lower side of the second telescopic rod 35 is connected with a limiting block 36, and the limiting block 36 is slidably connected with the limiting groove 111.
[0030] As shown in Figure 1 , Figure 2 and Figure 4 , the outer side of the motor 23 is provided with a machine base 231, the lower side of the machine base 231 is connected with the bearing plate 11, the bearing plate 11 can provide stable support for the motor 23, facilitates the installation and maintenance of the motor 23, one side of the upper side of the bearing plate 11 is provided with a tool box 15, which is convenient for placing spare parts and tools in the drying device and facilitates workers to take, the telescopic end of the multistage jack 13 is connected with the support base 12 through a bolt 14, the outer side of the bolt 14 is provided with a gasket 141, one side of the gasket 141 is provided with a first nut 142, the first nut 142 is threadedly connected with the bolt 14, which facilitates the installation and maintenance of the multistage jack 13, the first nut 142 can be loosened before the angle adjustment of the drying cylinder 21, the fixation of the multistage jack 13 and the support base 12 is released, so that the support base 12 rotates at the telescopic end of the multistage jack 13, and the angle adjustment of components such as the bearing plate 11 and the drying cylinder 21 is laid a foundation.
[0031] As shown in Figure 1 , Figure 2 , Figure 5 and Figure 6As shown in the figure, the feeding pipe 251 is detachably connected with a cover 252 at one end away from the first sealing plate 25, which can block the feeding pipe 251 during the drying process of the ore powder, so as to avoid the ore powder from falling out of the feeding pipe 251. The side of the cover 252 away from the feeding pipe 251 is connected with an exhaust pipe 253, which can exhaust the water vapor generated during the drying process of the ore powder from the drying cylinder 21. The middle part of the second sealing plate 26 is provided with a reserved hole 261, which provides space for the extension of the first extension rod 33. The two sides of the reserved hole 261 are provided with limiting holes 262, which are convenient for connecting with the limiting rods 311. The inside of the reserved hole 261 is provided with a limiting ring 27, which is detachably connected with the second sealing plate 26. During the drying process of the ore powder, the limiting ring 27 can block the reserved hole 261, and facilitate the fixation of the pushing plate 31.
[0032] As shown in the figure, Figure 1 and Figure 7 The pushing plate 31 is in sliding fit with the inner wall of the drying cylinder 21, which can scrape off the ore powder adhered to the inner wall of the drying cylinder 21. The side of the pushing plate 31 close to the second sealing plate 26 is connected with two limiting rods 311, which are in sliding fit with the limiting holes 262, so as to preliminarily limit the position of the pushing plate 31. The middle part of the side of the pushing plate 31 close to the second sealing plate 26 is provided with a connecting shaft 312, which penetrates through the middle part of the limiting ring 27 and is in sliding connection with the limiting ring 27. The outer side of the connecting shaft 312 is threadedly connected with a second nut 32, which can further limit the position of the pushing plate 31, so as to keep the pushing plate 31 stable during the drying process of the ore powder.
[0033] As shown in the figure, Figure 1 and Figure 7 The connecting shaft 312 is detachably connected with the extension end of the first extension rod 33, which is convenient for connecting the first extension rod 33 with the connecting shaft 312 after the drying of the ore powder is completed, so as to provide power for the movement of the pushing plate 31 in the drying cylinder 21. The outer side of the first extension rod 33 is provided with a second bracket 34, which is detachably connected with the extension end of the second extension rod 35, which is convenient for the installation and maintenance of the above-mentioned components, and can provide stable support for the first extension rod 33, so as to keep the first extension rod 33 stable.
[0034] As shown in the figure, Figure 1 and Figure 6As shown, the two sides of the limiting groove 111 are provided with sliding grooves 112, the upper side of the sliding groove 112 is provided with a plurality of first connecting holes 113, the inside of the first connecting hole 113 is provided with a screw 37, the two sides of the limiting block 36 are provided with protruding blocks 361, the protruding block 361 is in sliding connection with the sliding groove 112, the inside of the protruding block 361 is provided with two second connecting holes 362, the lower end of the screw 37 is in threaded connection with the second connecting hole 362, so that after the position adjustment of the second telescopic rod 35 and the connecting components thereof is completed, the screw 37 is used to fix the position of the second telescopic rod 35 and the connecting components thereof, so that the second telescopic rod 35 and the connecting components thereof remain stable.
[0035] As shown in the drawings, the base 1 is provided with a controller 4 on one side, which is convenient for controlling the operation of the related components in the drying device. Figure 1
[0036] The low-heat-dissipation drying device for mineral powder production disclosed in the embodiment is used before the cover 252 is removed from the outside of the feeding pipe 251 together with the exhaust pipe 253 and placed aside, a sufficient amount of mineral powder to be dried is injected into the drying cylinder 21 through the feeding pipe 251, then the connection between the cover 252 and the connecting pipe is restored, the controller 4 is used to start the drying cylinder 21, the heating element in the drying cylinder 21 heats the inner wall of the drying cylinder 21, and the heat is conducted to the mineral powder through the inner wall of the drying cylinder 21, the controller 4 is used to start the four motors 23 at the same time, the motor 23 drives the driven gear 211 outside the heating cylinder to rotate through the driving gear 22, so that the mineral powder in the heating cylinder moves in the heating cylinder and is uniformly heated, the drying speed of the mineral powder is improved, the moisture in the mineral powder is evaporated into steam by heating and is discharged from the drying cylinder 21 through the exhaust pipe 253, so as to reduce the air pressure inside the drying cylinder 21.
[0037] When the drying of the ore powder is completed, the controller 4 is used to turn off the four motors 23 and the heating elements in sequence, so that the drying cylinder 21 stops rotating, the tools are taken out from the tool box 15, the four first nuts 142 are loosened in sequence, the two multi-stage jacks 13 close to one end of the first sealing plate 25 are controlled to extend by the controller 4, the bearing plate 11 and the drying cylinder 21 are lifted upward away from one end of the pushing mechanism 3, and in the process of lifting, the four support seats 12 rotate at a certain angle at the extension end of the corresponding multi-stage jacks 13 respectively. In order to keep stable, the four multi-stage jacks 13 need to be kept in the state of being perpendicular to the ground at all times, and the position of the two multi-stage jacks 13 at one end is fixed, so that the other two multi-stage jacks 13 move towards the fixed two jacks, so as to make the drying cylinder 21 tilt towards the pushing mechanism 3. The height of the first sealing plate 25 from the ground is higher than that of the second sealing plate 26 after tilting, the four nuts are tightened in sequence, and the dried ore powder slides on the inner wall of the drying cylinder 21 from one side of the first sealing plate 25 to the direction of the pushing plate 31 and the second sealing plate 26, and is separated from the first sealing plate 25. At this time, the cover is removed from one end of the feeding pipe 251 and placed aside, the original receiving device is connected with the feeding pipe 251, and the angle of the drying cylinder 21 is adjusted to the state that the height of the second sealing plate 26 from the ground is higher than that of the first sealing plate 25, and the first nut 142 is tightened and fixed. The ore powder in the drying cylinder 21 slides to the direction of the feeding pipe 251 and is discharged into the receiving device from the feeding pipe 251.
[0038] Also, before discharging, the second nut 32 is unscrewed from the outside of the connecting shaft 312, the connecting shaft 312 is pulled out from the inside of the limiting ring 27, the limiting ring 27 is removed from the side of the second sealing plate 26 away from the drying cylinder 21 and placed aside, the tools are taken out from the tool box 15, the four screws 37 are unscrewed from the four first connecting holes 113 and the corresponding second connecting holes 362 away from the drying cylinder 21 and placed aside, the second telescopic rod 35 is pushed, the limiting block 36 and the protruding block 361 are respectively slid in the limiting groove 111 and the sliding groove 112 to the positions where the two second connecting holes 362 in the two protruding blocks 361 correspond to the four first connecting holes 113 close to the drying cylinder 21, the four screws 37 are screwed back into the four groups of corresponding first connecting holes 113 and second connecting holes 362, the positions of the limiting block 36, the second telescopic rod 35, the second support 34 and the first telescopic rod 33 are fixed, the telescopic end of the first telescopic rod 33 is connected with the connecting shaft 312, after the connection is completed, the angle of the drying cylinder 21 is adjusted to the state that the ground clearance of the second sealing plate 26 is higher than that of the first sealing plate 25 by the same operation as above, the controller 4 is used to control the first telescopic rod 33 to extend, the limiting rod 311 is pushed out of the limiting hole 262 and pushes the pushing plate 31 to slide in the drying cylinder 21, the mineral powder adhered to the inner wall of the drying cylinder 21 and the mineral powder inside the drying cylinder 21 are pushed to the position of the feeding pipe 251 together, the mineral powder is discharged into the receiving device through the feeding pipe 251, after the discharge is completed, the connection between the receiving device and the feeding pipe 251 is disconnected, the first telescopic rod 33 is controlled to contract, the pushing plate 31 is reset, the connection between the telescopic end of the first telescopic rod 33 and the connecting shaft 312 is disconnected, the above-mentioned three components are fixed at the end of the limiting groove 111 away from the drying cylinder 21 by the operation opposite to the adjustment of the positions of the second telescopic rod 35, the second support 34 and the first telescopic rod 33, the limiting ring 27 and the second nut 32 are reset, and the above-mentioned operation of adjusting the angle of the drying mechanism 2 is repeated again, after the angle of the drying cylinder 21 is restored to the state of being parallel to the ground, the above-mentioned feeding, angle adjustment and discharging operations are repeated, and the drying operation of the next batch of mineral powder can be performed.
[0039] The controller 4, the supporting seat 12, the multi-stage jack 13, the bolt 14, the gasket 141, the first nut 142, the tool box 15, the drying cylinder 21, the driven gear 211, the driving gear 22, the motor 23, the machine base 231, the first support 24, the feeding pipe 251, the cover 252, the exhaust pipe 253, the pushing plate 31, the connecting shaft 312, the second nut 32, the first telescopic rod 33, the second telescopic rod 35 and the screw 37 in the drying device for mineral powder production with low heat dissipation disclosed by the utility model are all general standard parts or parts known by those skilled in the art, and the structure and principle thereof can be known by those skilled in the art through technical manuals or through conventional experimental methods.
[0040] The above merely describes the preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A low-heat-dissipation drying device for mineral powder production, comprising a base and a drying mechanism, wherein the drying mechanism is disposed above the base, the drying mechanism comprising a drying cylinder and a driving gear, two driven gears are connected to the outer side of the drying cylinder, two driving gears are disposed to the outer side of the driven gears, the driving gears meshing with the teeth of the driven gears, a motor is connected to one side of the driving gears, and a first support is rotatably connected to the middle of the outer side of the drying cylinder, characterized in that: Two ends of the drying cylinder are detachably connected with a first sealing plate and a second sealing plate respectively, one side of the first sealing plate is provided with a feeding pipe, one end of the drying cylinder close to the second sealing plate is provided with a pushing mechanism, the base comprises a bearing plate, one end of the bearing plate close to the pushing mechanism is provided with a limiting groove, two ends below the bearing plate are symmetrically connected with two supporting seats, the supporting seats below are provided with multiple stages of jacks, the pushing mechanism comprises a pushing plate and a first telescopic rod, one side of the pushing plate is provided with the first telescopic rod, the lower side of the first telescopic rod is provided with a second telescopic rod, the lower side of the second telescopic rod is connected with a limiting block, and the limiting block is in sliding connection with the limiting groove.
2. A low heat dissipation drying device for mineral powder production according to claim 1, characterized in that: The outer side of the motor is provided with a base, the lower side of the base is connected with the bearing plate, one side above the bearing plate is provided with a tool box, the telescopic end of the multiple stages of jacks is connected with the supporting seat through bolts, the outer side of the bolts is provided with a gasket, one side of the gasket is provided with a first nut, and the first nut is in threaded connection with the bolt.
3. The low heat dissipation drying device for mineral powder production according to claim 1, characterized in that: The end of the feeding pipe away from the first sealing plate is detachably connected with a cover, one side of the cover away from the feeding pipe is connected with an exhaust pipe, the middle part of the second sealing plate is provided with a reserved hole, both sides of the reserved hole are provided with limiting holes, and the inside of the reserved hole is provided with a limiting ring in detachable connection with the second sealing plate.
4. The low heat dissipation drying device for mineral powder production according to claim 1, characterized in that: The pushing plate is in sliding fit with the inner wall of the drying cylinder, one side of the pushing plate close to the second sealing plate is connected with two limiting rods, the limiting rods are in sliding fit with the limiting holes, one side of the pushing plate close to the second sealing plate is provided with a connecting shaft in the middle part, the connecting shaft penetrates the middle part of the limiting ring and is in sliding connection with the limiting ring, and the outer side of the connecting shaft is in threaded connection with a second nut.
5. A low heat dissipation drying device for mineral powder production according to claim 4, characterized in that: The connecting shaft is detachably connected with the telescopic end of the first telescopic rod, the outer side of the first telescopic rod is provided with a second bracket, and the second bracket is detachably connected with the telescopic end of the second telescopic rod.
6. A low heat dissipation drying device for mineral powder production according to claim 1, characterized in that: Both sides of the limiting groove are provided with sliding grooves, multiple first connecting holes are arranged above the sliding grooves, screws are arranged in the first connecting holes, protruding blocks are arranged on both sides of the limiting block, the protruding blocks are in sliding connection with the sliding grooves, two second connecting holes are arranged in the protruding blocks, and the lower ends of the screws are in threaded connection with the second connecting holes.
7. A low heat dissipation drying device for mineral powder production according to claim 1 characterized in that: One side of the base is provided with a controller.
Citation Information
Patent Citations
Mineral powder production drying device capable of conveniently reducing heat loss
CN216770021U