Drying equipment and drying system

By designing a drying equipment including a cylinder mechanism and a heating mechanism, the rotating cylinder and a hot gas source can achieve efficient and uniform drying of graphite, and the problems of low efficiency and poor uniformity of existing equipment are solved.

CN222865440UActive Publication Date: 2025-05-13BEIJING MINING & METALLURGICAL TECH GRP CO LTD
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Patent Information

Application Number
CN202421871801.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-05-13
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

The existing drying equipment has low efficiency and poor uniformity when drying graphite materials, and the stirring method is prone to damage the materials.

Method used

A drying equipment including a cylinder mechanism, a feeding mechanism, a discharge mechanism and a heating mechanism is designed. By driving the cylinder mechanism to rotate and dry with a hot gas source, uniform drying of materials is achieved.

Benefits of technology

It improves drying efficiency and uniformity, reduces the space occupied by the equipment, and enhances the drying effect.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides drying equipment and a drying system, relates to the technical field of graphite drying, and aims to optimize the structure of the drying equipment to a certain extent and improve the drying efficiency. The utility model provides drying equipment which comprises a barrel mechanism, a driving mechanism, a feeding mechanism, a discharging mechanism and a heat supply mechanism. The feeding mechanism is provided with an air inlet and a feeding port, the air inlet and the feeding port are both communicated with an inlet of the barrel mechanism, the discharging mechanism is communicated with an outlet of the barrel mechanism, and the discharging mechanism is provided with a discharging port and an exhaust port; the heat supply mechanism comprises a hot air source and a first driving component, the first driving component corresponds to the exhaust port, the hot air source is sucked into the barrel mechanism through the air inlet, the driving mechanism can drive the barrel mechanism to rotate, materials enter the barrel mechanism through the feeding port, and the materials are dried through the hot air source and output through the discharging port.
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Description

Technical Field

[0001] The utility model relates to the technical field of graphite drying, in particular to a drying device and a drying system. Background Art

[0002] The consumption of graphite materials in the field of new energy vehicle power batteries is increasing day by day. Graphite, known as "black gold", is also widely used in many fields such as machinery, chemical industry, aviation, aerospace, national defense, and electricity. In the graphite selection plant, the drying process and equipment of large flake graphite concentrate at the back end are particularly critical. The maturity and reliability of the process and the operating effect of the drying equipment directly affect the quality and benefits of the final graphite products.

[0003] At present, most drying equipment adopts stirring in the drying process, but stirring will damage the graphite material itself, and achieving complete drying by stirring is not only inefficient but also has poor uniformity.

[0004] Therefore, there is an urgent need to provide a drying device and a drying system to solve the problems existing in the prior art to a certain extent. Utility Model Content

[0005] The utility model aims to provide a drying device and a drying system, so as to optimize the structure of the drying device to a certain extent and improve the drying efficiency.

[0006] The utility model provides a drying device, comprising a cylinder mechanism, a feeding mechanism, a discharging mechanism and a heating mechanism; the feeding mechanism is formed with an air inlet and a feeding port, the air inlet and the feeding port are both connected with the inlet of the cylinder mechanism, the discharging mechanism is connected with the outlet of the cylinder mechanism, and the discharging mechanism is formed with a discharging port and an exhaust port; the heating mechanism comprises a hot air source and a first driving component, the first driving component is arranged corresponding to the exhaust port, the hot air source is drawn into the cylinder mechanism from the air inlet, the material enters the cylinder mechanism from the feeding port, is dried by the hot air source, and is output from the discharge port.

[0007] Wherein, the cylinder mechanism includes a first cylinder, a second cylinder, a third cylinder, a fourth cylinder and a fifth cylinder which are stacked and sleeved; the first cylinder forms a first pairing interface, which is opposite to the feed port and the air inlet, the first cylinder, the second cylinder, the third cylinder and the fourth cylinder are all formed with a connecting port, and the fifth cylinder forms a second pairing interface, which is opposite to the discharge port and the exhaust port; the first cylinder is connected to the second cylinder through the connecting port, the second cylinder is connected to the third cylinder through the connecting port, the third cylinder is connected to the fourth cylinder through the connecting port, and the fourth cylinder is connected to the fifth cylinder through the connecting port.

[0008] Specifically, the driving mechanism includes a second driving member corresponding to the first cylinder, the second cylinder, the third cylinder and the fourth cylinder, and the second driving member can drive the first cylinder, the second cylinder, the third cylinder, the fourth cylinder and the fifth cylinder to rotate.

[0009] Furthermore, the first cylinder, the second cylinder, the third cylinder, the fourth cylinder and the fifth cylinder are all provided with a material lifting plate, and the material lifting plate can lift the material.

[0010] Furthermore, the first cylinder, the second cylinder, the third cylinder, the fourth cylinder and the fifth cylinder all include a core and an outer cladding, the core is made of a high-temperature resistant stainless steel plate, and the outer cladding is coated outside the core and is made of high-temperature resistant ceramics.

[0011] Among them, the heating mechanism includes a hot air stove, a burner and an air blower; the burner is connected to the hot air stove and heats the hot air stove, the outlet of the air blower is connected to the hot air stove and provides an air source for the hot air stove, and the hot air stove is formed with an air outlet, and the air outlet is connected to the air inlet.

[0012] Specifically, the heating mechanism also includes an air intake pipe, an air discharge pipe and a control valve group. The air intake pipe is connected to the hot blast furnace for providing gas to the hot blast furnace. One end of the air discharge pipe is connected to the air intake pipe, and the other end is connected to the outside. The control valve group includes a first valve body and a second valve body. The first valve body is located in the air intake pipe to control the on-off of the air intake pipe. The second valve body is located in the air discharge pipe to control the on-off of the air discharge pipe.

[0013] Compared with the prior art, the drying equipment provided by the utility model has the following advantages:

[0014] The drying equipment provided by the utility model comprises a cylinder mechanism, a driving mechanism, a feeding mechanism, a discharging mechanism and a heating mechanism; the feeding mechanism is formed with an air inlet and a feeding port, both of which are connected with the inlet of the cylinder mechanism, the discharging mechanism is connected with the outlet of the cylinder mechanism, and the discharging mechanism is formed with a discharging port and an exhaust port; the heating mechanism comprises a hot air source and a first driving component, the first driving component is arranged corresponding to the exhaust port, the hot air source is drawn into the cylinder mechanism from the air inlet, the driving mechanism can drive the cylinder mechanism to rotate, the material enters the cylinder mechanism from the feeding port, is dried by the hot air source, and is output from the discharge port.

[0015] From this analysis, it can be known that by setting a feeding mechanism at the inlet position of the cylinder mechanism, and the feeding mechanism in the present application is formed with an air inlet and a feeding port, the hot air source can be introduced into the cylinder mechanism from the air inlet, and the material can enter through the feeding port. Since the discharge mechanism is provided at the outlet position of the cylinder mechanism in the present application, and the discharge mechanism is formed with an exhaust port and a discharge port, the first driving member is arranged corresponding to the exhaust port, so that in actual operation, the hot air source can be drawn into the cylinder mechanism from the air inlet through the first driving member, and the material can be dried in the cylinder mechanism, and during the drying process, since the driving mechanism in the present application can drive the cylinder mechanism to rotate continuously, the material follows the cylinder mechanism to rotate continuously, and is dried in the process of the hot air source flowing, until it is discharged from the outlet of the cylinder mechanism into the discharge mechanism, and output from the discharge port, completing the drying action.

[0016] Since the present application realizes material drying by driving the drum mechanism to rotate through the driving mechanism, not only can the structure of the overall drying equipment be more concise, but also the space occupancy is small. Moreover, since the drum mechanism is constantly rotating, all materials in the drum mechanism are always in motion, so the drying effect and uniformity are better.

[0017] In addition, the utility model also provides a drying system, including a stirring mechanism, a filter press mechanism, a feeding mechanism, a filtrate pool, a dust removal mechanism, a feeding mechanism, a shaking mechanism, a ton bag machine, a waste residue recovery mechanism and the above-mentioned drying equipment; the stirring mechanism is connected to the filter press mechanism, and the material enters the stirring mechanism and enters the filter press mechanism after stirring, and the water outlet of the filter press mechanism is connected to the filtrate pool; the discharge port of the filter press mechanism corresponds to the feeding mechanism, the outlet of the feeding mechanism is connected to the feed port of the drying equipment, the discharge port of the drying equipment is connected to the dust removal mechanism, the material output by the dust removal mechanism enters the feeding mechanism, and the outlet of the feeding mechanism is connected to the shaking mechanism, and the outlet of the shaking mechanism corresponds to the ton bag machine and the waste residue recovery mechanism.

[0018] Among them, the stirring mechanism includes a stirring paddle and a stirring tank, and the material enters the stirring tank and is stirred by the stirring paddle; the dust removal mechanism includes a dust collector and a feeding bin, and the dust collector removes dust from the material and drops it into the feeding bin; the feeding mechanism includes a vacuum feeder and a Roots blower, and the Roots blower is connected to the vacuum feeder, and the feeding bin is connected to the vacuum feeder through a feeding pipeline, and the material is input into the vacuum feeder.

[0019] Specifically, the shaking mechanism is a square swing screen, and the square swing screen is formed with multiple material dropping ports, there are multiple ton bagging machines, which correspond one-to-one to the material dropping ports, and one of the material dropping ports corresponds to the waste residue recovery mechanism.

[0020] The drying system using the drying equipment provided in the present application can provide higher quality and more uniform dried materials with higher efficiency during the drying stage, thereby being able to improve the operating efficiency of the overall drying system to a certain extent. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0022] Figure 1 A schematic diagram of the overall structure of the drying equipment provided by the embodiment of the utility model;

[0023] Figure 2 A schematic diagram of the internal structure of the drying device provided by the embodiment of the utility model;

[0024] Figure 3 The present invention is a schematic diagram of the overall structure of a drying system provided in an embodiment of the present invention.

[0025] In the figure: 1-cylinder mechanism; 101-first cylinder; 102-second cylinder; 103-third cylinder; 104-fourth cylinder; 105-fifth cylinder; 2-feeding mechanism; 201-air inlet; 202-feeding port; 3-discharging mechanism; 301-discharging port; 302-exhaust port; 4-hot blast furnace; 5-burner; 6-air blower; 7-heating mechanism; 701-inlet pipe; 7011-first valve body; 702-vent pipe; 7021-second valve body; 8-stirring mechanism; 9-filter press mechanism; 10-filtrate tank; 11-feeding mechanism; 12-dust collector; 13-loading bin; 14-vacuum loader; 15-Roots blower; 16-shaking mechanism; 17-ton charter machine; 18-waste residue recovery mechanism. DETAILED DESCRIPTION

[0026] To make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all of the embodiments. The components of the embodiments of the present application generally described and shown in the drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the application claimed for protection, but merely represents the selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without making creative work belong to the scope of protection of the present application.

[0027] In the description of the embodiments of the present application, it should be noted that the terms "upper", "lower", "left", "right", "vertical", "horizontal", "inside", "outside", etc. indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, or are the positions or positional relationships in which the utility model product is usually placed when in use. They are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the utility model. In addition, the terms "first", "second", "third", etc. are only used to distinguish the description, and cannot be understood as indicating or implying relative importance.

[0028] In addition, the terms "horizontal", "vertical" and the like do not mean that the components are required to be absolutely horizontal or suspended, but can be slightly tilted. For example, "horizontal" only means that its direction is more horizontal than "vertical", and does not mean that the structure must be completely horizontal, but can be slightly tilted.

[0029] In the description of the embodiments of the present application, it is also necessary to explain that, unless otherwise clearly specified and limited, the terms "setting", "installation", "connection", and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal connection of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0030] As used herein, the term "and / or" includes any one of the associated listed items and any combination of any two or more items.

[0031] For ease of description, spatial relative terms such as "above", "upper", "below", and "lower" may be used herein to describe the relationship of one element to another element as shown in the drawings. Such spatial relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the drawings.

[0032] The terms used herein are only used to describe various examples and are not used to limit the present disclosure. Unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. The terms "include", "comprise" and "have" list the stated features, quantities, operations, components, elements and / or their combinations that exist, but do not exclude the existence or addition of one or more other features, quantities, operations, components, elements and / or their combinations.

[0033] Variations in the shapes shown in the drawings may occur due to manufacturing techniques and / or tolerances. Therefore, the examples described herein are not limited to the specific shapes shown in the drawings but include variations in shapes that occur during manufacturing.

[0034] The features of the examples described herein may be combined in various ways that will be apparent after understanding the disclosure of the present application. In addition, although the examples described herein have various configurations, other configurations are possible as will be apparent after understanding the disclosure of the present application. In addition, the technical solutions between the various embodiments may be combined with each other, but must be based on the ability of ordinary technicians in the field to implement. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be considered that the combination of such technical solutions does not exist and is not within the scope of protection required by the present application.

[0035] like Figure 1 Combination Figure 2 As shown, the utility model provides a drying device, including a cylinder mechanism 1, a feeding mechanism 2, a discharging mechanism 3 and a heating mechanism 7; the feeding mechanism 2 is formed with an air inlet 201 and a feeding port 202, the air inlet 201 and the feeding port 202 are both connected with the inlet of the cylinder mechanism 1, the discharging mechanism 3 is connected with the outlet of the cylinder mechanism 1, and the discharging mechanism 3 is formed with a discharging port 301 and an exhaust port 302; the heating mechanism 7 includes a hot air source and a first driving member, the first driving member is arranged corresponding to the exhaust port 302, the hot air source is drawn into the cylinder mechanism 1 from the air inlet 201, the material enters the cylinder mechanism 1 from the feeding port 202, is dried by the hot air source, and is output from the exhaust port 301.

[0036] Compared with the prior art, the drying equipment provided by the utility model has the following advantages:

[0037] The drying equipment provided by the utility model is provided with a feed mechanism 2 at the inlet position of the cylinder mechanism 1, and the feed mechanism 2 in the present application is formed with an air inlet 201 and a feed port 202, so that the hot air source can be introduced into the cylinder mechanism 1 from the air inlet 201, and the material can enter through the feed port 202. Since the discharge mechanism 3 is provided at the outlet position of the cylinder mechanism 1 in the present application, and the discharge mechanism 3 is formed with an exhaust port 302 and a discharge port 301, the first driving member is provided corresponding to the exhaust port 302, so that in actual operation, the hot air source can be drawn into the cylinder mechanism 1 from the air inlet 201 through the first driving member, and the material is dried in the cylinder mechanism 1, and during the drying process, since the driving mechanism in the present application can drive the cylinder mechanism 1 to rotate continuously, the material rotates continuously with the cylinder mechanism 1, and is dried in the process of the hot air source flowing, until it is discharged into the discharge mechanism 3 from the outlet of the cylinder mechanism 1, and output from the discharge port 301, completing the drying action.

[0038] Since the present application realizes the drying of materials by driving the drum mechanism 1 to rotate through the driving mechanism, not only can the structure of the overall drying equipment be more concise, but also the space occupancy is small. Moreover, since the drum mechanism 1 is constantly rotating, all the materials in the drum mechanism 1 are always in motion, so the drying effect and uniformity are better.

[0039] Preferably, if Figure 1 Combination Figure 2 As shown, the cylinder mechanism 1 in the present application includes a first cylinder 101, a second cylinder 102, a third cylinder 103, a fourth cylinder 104 and a fifth cylinder 105 which are stacked and sleeved; the first cylinder 101 forms a first docking interface, which is connected to the feed port 202 and the air inlet 201, the first cylinder 101, the second cylinder 102, the third cylinder 103 and the fourth cylinder 104 are all formed with a connecting port, and the fifth cylinder 105 is formed with a second docking interface, which is connected to the discharge port 301 and the exhaust port 302; the first cylinder 101 is connected to the second cylinder 102 through the connecting port, the second cylinder 102 is connected to the third cylinder 103 through the connecting port, the third cylinder 103 is connected to the fourth cylinder 104 through the connecting port, and the fourth cylinder 104 is connected to the fifth cylinder 105 through the connecting port.

[0040] The present application uses the stacked first cylinder 101, the second cylinder 102, the third cylinder 103, the fourth cylinder 104 and the fifth cylinder 105 to enable the material and the hot air source to flow from the first cylinder 101 to the fifth cylinder 105 in sequence, and to bend back and forth in a Z shape. During the flow process, the material can be dried.

[0041] The first cylinder 101, the second cylinder 102, the third cylinder 103, the fourth cylinder 104 and the fifth cylinder 105 in the present application are coaxially arranged, and can make full use of the space inside the cylinder, thereby reducing the space occupancy of the overall structure, and the outer fifth cylinder 105 and the fourth cylinder 104 can keep the inner third cylinder 103, the second cylinder 102 and the first cylinder 101 warm, thereby improving the drying effect to a certain extent and reducing the waste and loss of resources.

[0042] It can be understood that the driving mechanism in the present application includes a second driving member corresponding to the first cylinder 101, the second cylinder 102, the third cylinder 103 and the fourth cylinder 104, and the second driving member can drive the first cylinder 101, the second cylinder 102, the third cylinder 103, the fourth cylinder 104 and the fifth cylinder 105 to rotate.

[0043] The second driving component in the present application includes a motor, a belt and a supporting roller. The motor drives the supporting roller to rotate. The belt is arranged around the supporting roller and the outer wall of the fifth cylinder 105. Therefore, when the motor drives the supporting roller to rotate, the supporting roller drives the belt to move through friction, thereby driving the cylinder mechanism 1 to rotate.

[0044] Accordingly, in the present application, the first barrel 101, the second barrel 102, the third barrel 103, the fourth barrel 104 and the fifth barrel 105 are connected, so that when the fifth barrel 105 rotates, the rotation of all the internal barrels can be achieved.

[0045] Optionally, the first cylinder 101, the second cylinder 102, the third cylinder 103, the fourth cylinder 104 and the fifth cylinder 105 in the present application are all provided with lifting plates, through which the materials can be lifted up and with the flow of the hot air source, the materials can be evenly scattered again, thereby accelerating the drying effect and improving the drying rate and uniformity.

[0046] Preferably, the first cylinder 101, the second cylinder 102, the third cylinder 103, the fourth cylinder 104 and the fifth cylinder 105 in the present application all include a core and an outer cladding, the core is made of a high-temperature resistant stainless steel plate, the outer cladding is coated on the outside of the core and is made of a high-temperature resistant ceramic.

[0047] Further preferably, the cylinder mechanism 1 of the present application is also provided with a movable chain inside, which can prevent material accumulation to a certain extent and improve the drying effect. The core of the movable chain in the present application is a high temperature resistant stainless steel plate, and the outer layer is polytetrafluoroethylene, so that the collision with the material can be reduced to a certain extent, and the flexible collision can easily separate impurities in the material, thereby improving the quality of the finished product.

[0048] Alternatively, if Figure 1As shown, the heating mechanism 7 in the present application includes a hot air furnace 4, a burner 5 and an air blower 6; the burner 5 is connected to the hot air furnace 4 and heats the hot air furnace 4, the outlet of the air blower 6 is connected to the hot air furnace 4, and provides an air source for the hot air furnace 4, and the hot air furnace 4 is formed with an air outlet, which is connected to the air inlet 201.

[0049] The burner 5 can provide heat for the hot blast furnace 4, thereby heating the hot blast furnace 4, and the outside air can be supplemented into the hot blast furnace 4 through the blower 6. In practical applications, the main gas source of the hot blast furnace 4 in the present application is the waste heat flue gas generated in the production process. By introducing the waste heat flue gas into the hot blast furnace 4, the energy lost in the process of heating the gas by the burner 5 can be reduced to a certain extent. When the amount of waste heat flue gas is insufficient, introducing outside air into the hot blast furnace 4 through the blower 6 can achieve stable transportation of the gas source, thereby ensuring stable operation of the overall equipment.

[0050] Accordingly, if Figure 2 As shown, the heating mechanism 7 in the present application also includes an air inlet pipe 701, an air discharge pipe 702 and a control valve group. The air inlet pipe 701 is connected to the hot blast furnace 4 and is used to provide gas to the hot blast furnace 4. One end of the air discharge pipe 702 is connected to the air inlet pipe 701, and the other end is connected to the outside; the control valve group includes a first valve body 7011 and a second valve body 7021. The first valve body 7011 is located in the air inlet pipe 701 to control the on-off of the air inlet pipe 701. The second valve body 7021 is located in the air discharge pipe 702 to control the on-off of the air discharge pipe 702.

[0051] The above-mentioned waste heat flue gas can be introduced into the hot blast furnace 4 through the air inlet pipe 701, and through the exhaust pipe 702 connected to the air inlet pipe 701, when the amount of waste heat flue gas is too much or no air supply is required, the flue gas can be discharged through the exhaust pipe 702, thereby ensuring the stable operation of the overall equipment.

[0052] It can be understood that, since a first valve body 7011 is provided in the air intake pipe 701 and a second valve body 7021 is provided in the air exhaust pipe 702 in the present application, switching between air supply and air exhaust can be achieved by opening and closing the first valve body 7011 and the second valve body 7021 .

[0053] In addition, the utility model also provides a drying system, including a stirring mechanism 8, a filter press mechanism 9, a feeding mechanism 11, a filtrate pool 10, a dust removal mechanism, a feeding mechanism, a shaking mechanism 16, a ton-charging machine 17, a waste residue recovery mechanism 18 and the above-mentioned drying equipment; the stirring mechanism 8 is connected to the filter press mechanism 9, and the material enters the stirring mechanism 8 and enters the filter press mechanism 9 after stirring, and the water outlet of the filter press mechanism 9 is connected to the filtrate pool 10; the discharge port of the filter press mechanism 9 corresponds to the feeding mechanism 11, the outlet of the feeding mechanism 11 is connected to the feed port 202 of the drying equipment, the outlet 301 of the drying equipment is connected to the dust removal mechanism, the material output by the dust removal mechanism enters the feeding mechanism, and the outlet of the feeding mechanism is connected to the shaking mechanism 16, and the outlet of the shaking mechanism 16 corresponds to the ton-charging machine 17 and the waste residue recovery mechanism 18.

[0054] The drying system using the drying equipment provided in the present application can provide higher quality and more uniform dried materials with higher efficiency during the drying stage, thereby being able to improve the operating efficiency of the overall drying system to a certain extent.

[0055] During actual operation, the filter press mechanism 9 in the present application is a rapid diaphragm filter press, which can press out the moisture in the material. Since the water outlet end of the filter press mechanism 9 is connected to the filtrate pool 10, water can be discharged into the filtrate pool 10 from the water outlet end, and the wet material after filtration is discharged from the discharge port of the filter press mechanism 9 and enters the feeding mechanism 11.

[0056] The feeding mechanism 11 in the present application is a shaftless screw conveyor, through which the material can be transported. It can be understood that the outlet of the feeding mechanism 11 in the present application is connected to the feed port 202 of the drying equipment, so that the material can enter the drying equipment from the outlet of the feeding mechanism 11 for drying.

[0057] Since the drying equipment in the present application includes five cylinders, and the first cylinder 101, the second cylinder 102, the third cylinder 103, the fourth cylinder 104 and the fifth cylinder 105 are connected step by step through the connecting port, and the second driving member can drive the corresponding cylinder to rotate, therefore, the material entering the first cylinder 101 can rotate continuously with the first cylinder 101, and since the first cylinder 101, the second cylinder 102, the third cylinder 103, the fourth cylinder 104 and the fifth cylinder 105 are all provided with a lifting plate, therefore, the material can flow from the first cylinder 101 to the second cylinder 102, and then flow to the third cylinder 103, the fourth cylinder 104 and the fifth cylinder 105 in turn under the rotation of the cylinder and the action of the lifting plate, and accordingly, the hot air source also flows in the flow mode of the material, so that the material can be dried.

[0058] After drying, the material enters the dust removal mechanism for dust removal, and after dust removal, it enters the feeding mechanism, through which the material is transported into the shaking mechanism 16, and the shaking mechanism 16 can classify the dried and dust-removed material, and finally separate the waste residue in the material, and the material enters the ton bag machine 17, and the waste residue finally enters the waste residue recovery mechanism 18, completing the drying operation of the material.

[0059] Alternatively, if Figure 3 As shown, the stirring mechanism 8 in the present application includes a stirring paddle and a stirring tank, and the material enters the stirring tank and is stirred by the stirring paddle; the dust removal mechanism includes a dust collector 12 and a loading bin 13, and the dust collector 12 removes dust from the material and drops it into the loading bin 13; the loading mechanism includes a vacuum feeder 14 and a Roots blower 15, and the Roots blower 15 is connected to the vacuum feeder 14, and the loading bin 13 is connected to the vacuum feeder 14 through a feeding pipeline, and the material is input into the vacuum feeder 14.

[0060] Preferably, if Figure 3 As shown, the shaking mechanism 16 in the present application is a square swing screen, and the square swing screen is formed with multiple material dropping ports, there are multiple ton packing machines 17, which correspond one-to-one to the material dropping ports, and one of the material dropping ports corresponds to the waste residue recovery mechanism 18.

[0061] By setting up a plurality of ton-packing machines 17, the materials can be classified and placed into corresponding ton-packing machines 17, thereby achieving accurate classification of the materials.

[0062] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A drying device, characterized in that: It includes a cylinder mechanism, a driving mechanism, a feeding mechanism, a discharging mechanism and a heating mechanism; The feeding mechanism is formed with an air inlet and a feeding port, the air inlet and the feeding port are both connected to the inlet of the barrel mechanism, the discharging mechanism is connected to the outlet of the barrel mechanism, and the discharging mechanism is formed with a discharging port and an exhaust port; The heating mechanism includes a hot air source and a first driving component. The first driving component is arranged corresponding to the exhaust port, and the hot air source is drawn into the barrel mechanism from the air inlet. The driving mechanism can drive the barrel mechanism to rotate. The material enters the barrel mechanism from the feed port, is dried by the hot air source, and is output from the discharge port.

2. The drying device according to claim 1, characterized in that: The cylinder mechanism comprises a first cylinder, a second cylinder, a third cylinder, a fourth cylinder and a fifth cylinder which are stacked and sleeved; The first cylinder forms a first pairing interface, which is connected to the feed port and the air inlet; the first cylinder, the second cylinder, the third cylinder and the fourth cylinder are all formed with a communication port; the fifth cylinder forms a second pairing interface, which is connected to the discharge port and the exhaust port; The first cylinder is connected to the second cylinder through the communication port, the second cylinder is connected to the third cylinder through the communication port, the third cylinder is connected to the fourth cylinder through the communication port, and the fourth cylinder is connected to the fifth cylinder through the communication port.

3. The drying device according to claim 2, characterized in that: The driving mechanism includes a second driving member corresponding to the first cylinder, the second cylinder, the third cylinder and the fourth cylinder, and the second driving member can drive the first cylinder, the second cylinder, the third cylinder, the fourth cylinder and the fifth cylinder to rotate.

4. The drying device according to claim 2, characterized in that: The first cylinder, the second cylinder, the third cylinder, the fourth cylinder and the fifth cylinder are each provided with a material lifting plate, and the material lifting plate can lift the material.

5. The drying device according to claim 2, characterized in that: The first cylinder, the second cylinder, the third cylinder, the fourth cylinder and the fifth cylinder all include a core and an outer cladding, the core is made of a high-temperature resistant stainless steel plate, and the outer cladding is coated outside the core and is made of high-temperature resistant ceramics.

6. The drying device according to claim 1, characterized in that: The heating mechanism includes a hot air furnace, a burner and an air blower; The burner is connected to the hot blast stove and heats the hot blast stove. The outlet of the blower is connected to the hot blast stove and provides an air source for the hot blast stove. The hot blast stove is formed with an air outlet, and the air outlet is connected to the air inlet.

7. The drying device according to claim 6, characterized in that: The heating mechanism also includes an air inlet pipe, an air discharge pipe and a control valve group, wherein the air inlet pipe is connected to the hot blast stove and is used to provide gas to the hot blast stove, and one end of the air discharge pipe is connected to the air inlet pipe and the other end is connected to the outside; The control valve group includes a first valve body and a second valve body. The first valve body is located in the intake pipe to control the on-off of the intake pipe. The second valve body is located in the exhaust pipe to control the on-off of the exhaust pipe.

8. A drying system, characterized in that: It includes a stirring mechanism, a filter pressing mechanism, a feeding mechanism, a filtrate tank, a dust removal mechanism, a feeding mechanism, a shaking mechanism, a ton package machine, a waste residue recovery mechanism and the drying equipment described in any one of claims 1 to 7; The stirring mechanism is connected to the filter press mechanism, and the material enters the stirring mechanism and then enters the filter press mechanism after being stirred, and the water outlet end of the filter press mechanism is connected to the filtrate pool; The discharge port of the filter press mechanism corresponds to the feeding mechanism, the outlet of the feeding mechanism is connected to the feed port of the drying equipment, the discharge port of the drying equipment is connected to the dust removal mechanism, the material output by the dust removal mechanism enters the feeding mechanism, and the outlet of the feeding mechanism is connected to the shaking mechanism, and the outlet of the shaking mechanism corresponds to the ton bag machine and the waste residue recovery mechanism.

9. The drying system according to claim 8, characterized in that: The stirring mechanism includes a stirring paddle and a stirring tank, and the material enters the stirring tank and is stirred by the stirring paddle; The dust removal mechanism includes a dust collector and a loading bin, wherein the dust collector removes dust from the material and the material falls into the loading bin; The feeding mechanism includes a vacuum feeder and a Roots blower. The Roots blower is connected to the vacuum feeder. The feeding bin is connected to the vacuum feeder through a feeding pipeline to input materials into the vacuum feeder.

10. The drying system according to claim 9, characterized in that: The shaking mechanism is a square swing screen, and the square swing screen is formed with a plurality of material dropping openings. There are a plurality of ton-packing machines, which correspond one-to-one to the material dropping openings, and one of the material dropping openings corresponds to the waste residue recovery mechanism.