Drying device for processing insulating material
The modularly designed drying device, using positioning crossbars and series plates to form a stable frame structure, solves the stability and safety issues in the drying process of insulating materials, and achieves long service life and efficient drying in complex environments.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU HENGAN POWER TOOLS CO LTD
- Filing Date
- 2025-06-20
- Publication Date
- 2026-05-29
AI Technical Summary
Existing drying equipment cannot ensure stability and safety during the processing of insulating materials and is easily affected by external environmental interference, which affects the drying effect.
The unit adopts a modular design for the drying unit and auxiliary units. A stable frame structure is formed by connecting positioning crossbars and series plates, providing a sealed drying space. Materials are suspended by a static mechanism, which enhances the impact resistance and fatigue resistance of the device.
It improves the service life and operational safety of the equipment in complex environments, ensures the stability of the drying process, avoids interference from external factors, and enhances the practicality and ease of operation of the device.
Smart Images

Figure CN224302520U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of insulating material processing equipment, and in particular to a drying device for insulating material processing. Background Technology
[0002] Insulating materials are materials that prevent the flow of electric current. Their main function is to isolate current, prevent leakage or short circuits, ensure the normal operation of power systems and equipment, and ensure operational safety. Insulating materials typically have high resistivity, which effectively inhibits the flow of current and maintains their insulating properties under various environmental conditions such as high temperature, humidity, and pressure.
[0003] In the process of processing insulating materials, drying equipment is an indispensable part of the process. However, most drying equipment on the market cannot ensure the stability of insulating materials during the drying process. Therefore, a drying device for processing insulating materials is proposed. Utility Model Content
[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing a drying device for processing insulating materials.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A drying apparatus for processing insulating materials includes a drying unit and an auxiliary unit. Two sets of drying units are connected in series through the auxiliary unit. The auxiliary unit includes an insertion column and a stationary mechanism installed between the two sets of insertion columns.
[0007] Preferably, the stationary mechanism includes a mounting component and protruding rods mounted on both ends of the mounting component. The space between each set of mounting components is connected by a series plate, and fitting grooves are opened on both sides of the outer end face of the mounting component at both ends of the edge.
[0008] Preferably, the mounting components at both ends of the edge are attached to the outer end face of the insertion column through the inner end face of the fitting groove. The dried insulating material is suspended on the outer end face of the mounting component and the protruding rod, and a frame structure support is provided for the device. Other components are installed through the built-in holes to enhance the stability of the overall device. The mounting components are connected in series by a series plate. Through the series design between components, the number of mounting components can be flexibly increased or decreased according to the needs to adapt to different processing requirements. The equipment as a whole adopts an impact-resistant and fatigue-resistant structural design. In particular, the materials and connection methods of the drying unit and auxiliary unit improve the service life of the equipment in complex industrial environments.
[0009] Preferably, the drying unit includes an assembly tray and a drying cylinder mounted on the side end face of the assembly tray, and one end of the two sets of drying cylinders are connected in series by a fixing mechanism.
[0010] Preferably, the assembly tray includes a tray body and built-in holes formed on both sides of the side end face of the tray body.
[0011] Preferably, the fixing mechanism includes a mounting crossbar and fixing plates installed at both ends of the mounting crossbar, wherein a positioning crossbar is vertically arranged on the side end face of the fixing plate.
[0012] Preferably, the positioning crossbar is vertically inserted into one end of the drying cylinder, making the drying cylinder and the fixing mechanism a whole. The drying unit is the main supporting structure of the device, bearing the overall frame of the drying device. The auxiliary unit is connected in series through one end of the two sets of drying cylinders by the fixing mechanism, realizing the connection between modules, enhancing the stability and continuity of the device, providing stable and reliable support, and the modular design facilitates the disassembly and maintenance of the equipment, improving the practicality and ease of operation of the equipment.
[0013] The drying unit connects the two drying cylinders, making the drying device a whole. The auxiliary unit is inserted vertically into one end of the drying cylinder by a positioning crossbar to ensure the tightness and stability of the connection, providing a robust connection method, ensuring the device's shock resistance and impact resistance during operation, and improving the service life of the equipment in complex environments.
[0014] The material to be dried is placed into the inner cavity of the drying cylinder. By placing the material into the inner cavity of the drying cylinder, the device provides a sealed and optimized drying space, ensuring the stability of the drying process and effectively avoiding interference from external environmental factors on the drying effect. During the drying process, the positioning crossbar is inserted into the inner cavity of the drying cylinder to fix the material, preventing the material from moving or shaking during the drying process and affecting the drying effect, while also improving the operational safety of the device.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0016] 1. The drying unit connects the two sets of drying cylinders, making the drying device a whole. The auxiliary unit is inserted vertically into one end of the drying cylinder through the positioning crossbar to ensure the tightness and stability of the connection, providing a robust connection method, ensuring the shock resistance and impact resistance of the device during operation, and improving the service life of the equipment in complex environments.
[0017] 2. The dried insulating material is suspended on the outer end face of the mounting parts and protruding rods, providing frame structural support for the device. Other components are installed through built-in holes to enhance the overall stability of the device. The mounting parts are connected in series by connecting plates. Through the series design between components, the number of mounting parts can be flexibly increased or decreased according to needs to adapt to different processing requirements. The equipment as a whole adopts an impact-resistant and fatigue-resistant structural design. In particular, the materials and connection methods of the drying unit and auxiliary unit improve the service life of the equipment in complex industrial environments.
[0018] 3. Place the material to be dried into the inner cavity of the drying cylinder. By placing the material into the inner cavity of the drying cylinder, the device provides a sealed and optimized drying space, ensuring the stability of the drying process and effectively avoiding interference from external environmental factors on the drying effect. During the drying process, the positioning crossbar is inserted into the inner cavity of the drying cylinder to fix the material, preventing the material from moving or shaking during the drying process and affecting the drying effect, while also improving the operational safety of the device. Attached Figure Description
[0019] Figure 1 This is a three-dimensional structural diagram of a drying device for processing insulating materials proposed in this utility model;
[0020] Figure 2 This is a schematic diagram of the assembly tray structure of a drying device for processing insulating materials proposed in this utility model;
[0021] Figure 3 This is a schematic diagram of the fixing mechanism of a drying device for processing insulating materials proposed in this utility model;
[0022] Figure 4 This is a schematic diagram of the stationary mechanism of a drying device for processing insulating materials proposed in this utility model.
[0023] In the diagram: 1. Drying unit; 11. Assembly tray; 111. Tray body; 112. Internal hole; 12. Drying cylinder; 13. Fixing mechanism; 131. Mounting crossbar; 132. Fixing tray; 133. Positioning crossbar; 2. Auxiliary unit; 21. Through column; 22. Stationary mechanism; 221. Mounting component; 222. Protruding rod; 223. Fitting groove; 224. Connecting plate. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0025] Reference Figures 1-4A drying device for processing insulating materials includes a drying unit 1 and an auxiliary unit 2. The two sets of drying units 1 are connected in series through the auxiliary unit 2. The auxiliary unit 2 includes an insertion post 21 and a stationary mechanism 22 installed between the two sets of insertion posts 21.
[0026] The stationary mechanism 22 includes a mounting component 221 and protruding rods 222 installed at both ends of the mounting component 221. The intervals of each set of mounting components 221 are connected by a series plate 224. Fitting grooves 223 are opened on both sides of the outer end face of the mounting component 221 at both ends of the edge.
[0027] The mounting pieces 221 at both ends of the edge are attached to the outer end face of the insertion post 21 through the inner end face of the fitting groove 223. The dried insulating material is suspended on the outer end face of the mounting piece 221 and the protruding rod 222, and a frame structure support is provided for the device. Other components are installed through the built-in hole 112 to enhance the stability of the overall device. The mounting pieces 221 are connected in series by the connecting piece 224. Through the series design between the components, the number of mounting pieces 221 can be flexibly increased or decreased according to the needs to adapt to different processing requirements. The equipment as a whole adopts an impact-resistant and fatigue-resistant structural design. In particular, the materials and connection methods of the drying unit 1 and the auxiliary unit 2 improve the service life of the equipment in complex industrial environments.
[0028] The drying unit 1 includes an assembly tray 11 and a drying cylinder 12 installed on the side end face of the assembly tray 11. One end of the two sets of drying cylinders 12 are connected in series through a fixing mechanism 13. The assembly tray 11 includes a tray body 111 and built-in holes 112 opened on both sides of the side end face of the tray body 111. The fixing mechanism 13 includes a mounting crossbar 131 and a fixing plate 132 installed at both ends of the mounting crossbar 131. A positioning crossbar 133 is vertically arranged on the side end face of the fixing plate 132.
[0029] The positioning crossbar 133 is vertically inserted into one end of the drying cylinder 12, making the drying cylinder 12 and the fixing mechanism 13 a whole. The drying unit 1 is the main support structure of the device, bearing the overall frame of the drying device. The auxiliary unit 2 is connected in series through the fixing mechanism 13 at one end of two sets of drying cylinders 12, realizing the connection between modules, enhancing the stability and continuity of the device, providing stable and reliable support, and the modular design facilitates the disassembly and maintenance of the equipment, improving the practicality and ease of operation of the equipment.
[0030] Drying unit 1 connects the two sets of drying cylinders 12, making the drying device a whole. Auxiliary unit 2 is inserted vertically into one end of drying cylinder 12 through positioning crossbar 133 to ensure the tightness and stability of the connection, provide a strong connection method, ensure the shock resistance and impact resistance of the device during operation, and improve the service life of the equipment in complex environments.
[0031] The material to be dried is placed into the inner cavity of the drying cylinder 12. By placing the material to be dried into the inner cavity of the drying cylinder 12, the device provides a sealed and optimized drying space, ensuring the stability of the drying process and effectively avoiding interference from external environmental factors on the drying effect. During the drying process, the positioning crossbar 133 is inserted into the inner cavity of the drying cylinder 12 to fix the material, preventing the material from moving or shaking during the drying process and affecting the drying effect, while also improving the operational safety of the device.
[0032] In summary, a drying device for processing insulating materials includes a drying unit 1 and an auxiliary unit 2. The two sets of drying units 1 are connected in series via the auxiliary unit 2. The auxiliary unit 2 includes an insertion post 21 and a stationary mechanism 22 installed between the two sets of insertion posts 21. The drying unit 1 is the main supporting structure of the device, bearing the overall frame of the drying device. The auxiliary unit 2 is connected in series at one end of the two sets of drying cylinders 12 by a fixing mechanism 13, realizing the connection between modules, enhancing the stability and continuity of the device, providing stable and reliable support, and the modular design facilitates the disassembly and maintenance of the equipment, improving the practicality and ease of operation of the equipment.
[0033] Drying unit 1 connects the two sets of drying cylinders 12, making the drying device a whole. Auxiliary unit 2 is inserted vertically into one end of drying cylinder 12 through positioning crossbar 133 to ensure the tightness and stability of the connection, provide a strong connection method, ensure the shock resistance and impact resistance of the device during operation, and improve the service life of the equipment in complex environments.
[0034] The dried insulating material is suspended on the outer end face of the mounting part 221 and the protruding rod 222, providing frame structural support for the device. Other components are installed through the built-in hole 112 to enhance the overall stability of the device. The mounting parts 221 are connected in series by the connecting piece 224. Through the series design between components, the number of mounting parts 221 can be flexibly increased or decreased according to the needs to adapt to different processing requirements. The equipment as a whole adopts an impact-resistant and fatigue-resistant structural design. In particular, the materials and connection methods of the drying unit 1 and the auxiliary unit 2 improve the service life of the equipment in complex industrial environments.
[0035] The material to be dried is placed into the inner cavity of the drying cylinder 12. By placing the material to be dried into the inner cavity of the drying cylinder 12, the device provides a sealed and optimized drying space, ensuring the stability of the drying process and effectively avoiding interference from external environmental factors on the drying effect. During the drying process, the positioning crossbar 133 is inserted into the inner cavity of the drying cylinder 12 to fix the material, preventing the material from moving or shaking during the drying process and affecting the drying effect, while also improving the operational safety of the device.
[0036] The above is the complete working principle of this utility model.
[0037] In this utility model, the installation, connection or setting methods of all the components mentioned above are common mechanical methods, and the specific structure, model and coefficient index of all the components are their own technologies. As long as they can achieve their beneficial effects, they can be implemented, so they will not be described in detail.
[0038] The above embodiments are preferred embodiments of the present utility model, but the embodiments of the present utility model are not limited to the above embodiments. Any changes, modifications, substitutions, combinations, or simplifications made without departing from the spirit and principle of the present utility model shall be considered equivalent substitutions and shall be included within the protection scope of the present utility model.
[0039] In this utility model, unless otherwise stated, directional terms such as "up, down, left, right, front, back, inside, outside, and vertical and horizontal" in the terminology only represent the orientation of the term in its conventional use or are common names understood by those skilled in the art, and should not be regarded as limitations on the term. At the same time, numerals such as "first," "second," and "third" do not represent specific quantities or orders, but are only used to distinguish names. Moreover, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a series of elements includes not only those elements, but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
Claims
1. A drying apparatus for processing insulating materials, comprising a drying unit (1) and an auxiliary unit (2), wherein two sets of the drying units (1) are connected in series via the auxiliary unit (2), characterized in that, The auxiliary unit (2) includes an insertion column (21) and a stationary mechanism (22) installed between two sets of insertion columns (21).
2. The drying apparatus for processing insulating materials according to claim 1, characterized in that, The stationary mechanism (22) includes a mounting component (221) and protruding rods (222) installed at both ends of the mounting component (221). The intervals of each set of mounting components (221) are connected by a series plate (224). Fitting grooves (223) are opened on both sides of the outer end face of the mounting component (221) at both ends of the edge.
3. The drying apparatus for processing insulating materials according to claim 2, characterized in that, The mounting parts (221) at both ends of the edge are attached to the outer end face of the insertion post (21) through the inner end face of the fitting groove (223).
4. The drying apparatus for processing insulating materials according to claim 1, characterized in that, The drying unit (1) includes an assembly tray (11) and a drying cylinder (12) installed on the side end face of the assembly tray (11). One end of the two sets of drying cylinders (12) are connected in series through a fixing mechanism (13).
5. A drying apparatus for processing insulating materials according to claim 4, characterized in that, The assembly tray (11) includes a tray body (111) and built-in holes (112) on both sides of the side end face of the tray body (111).
6. A drying apparatus for processing insulating materials according to claim 4, characterized in that, The fixing mechanism (13) includes a mounting crossbar (131) and a fixing plate (132) installed at both ends of the mounting crossbar (131). The side end face of the fixing plate (132) is vertically provided with a positioning crossbar (133).
7. A drying apparatus for processing insulating materials according to claim 6, characterized in that, The positioning crossbar (133) is inserted vertically into one end of the drying cylinder (12), making the drying cylinder (12) and the fixing mechanism (13) a whole.