A dynamic rotary cloth distributing device for a drying cycle system
By designing a dynamic rotating fabric device for the drying circulation system, using the rotating storage structure and temperature control structure, the problems of air flow and uneven temperature in the drying box are solved, and uniform drying of materials and high-quality drying effects are achieved.
Patent Information
- Application Number
- CN202011075944.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-10-10
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2040-10-10
AI Technical Summary
The air in the existing drying box does not flow, resulting in uneven temperature and affecting the drying quality of the material.
A dynamic rotating fabric device for drying circulation system is designed, including a rotating storage structure and a temperature control structure. The rotating storage structure rotates the fabric plate through an arc rotating block and a rotating drying shaft to achieve dynamic drying of materials; the temperature control structure ensures the air flow in the drying box through heating boxes, electric heating pipes, air pumps and circulation components to avoid temperature inconsistencies.
Through the dynamic rotating fabric device, the problem of material drying uniformity is solved, and the circulating air is regulated to ensure uniform temperature in the drying box, improving the quality of material drying.
Smart Images

Figure CN112082354B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of raw material drying, in particular to a dynamic rotary cloth feeding device for a drying circulation system. Background Art
[0002] In the prior art or existing applications, in an air source heat pump dehumidification drying circulation system, a material cart (trolley) is mostly used as the carrier for the drying process of the dried material in the drying chamber. However, due to the structure in the drying chamber, it is likely to cause unevenness in multiple corners, seriously affecting the drying quality of the material. The dynamic rotary cloth feeding device, due to its rotation, changes the thinking boundary of the static material in the traditional drying process, makes the material change from static to dynamic, and completely solves the problem of the drying uniformity of the material in the static layout. In view of this, in-depth research on the above problems has led to the generation of this case. Summary of the Invention
[0003] The purpose of the present invention is to solve the above problems and design a dynamic rotary cloth feeding device for a drying circulation system, which solves the problem that the air in the existing drying box does not flow, resulting in different temperature layers in the drying box.
[0004] The technical solution of the present invention to achieve the above purpose is: a dynamic rotary cloth feeding device for a drying circulation system, including: a drying box, on which a rotating storage structure and a temperature control structure are installed;
[0005] The rotating storage structure includes: a plurality of storage support blocks with the same structure, a plurality of arc rotating blocks with the same structure, a rotating drying drive motor, a rotating drying shaft, a plurality of connection brackets with the same structure, an auxiliary extrusion fixing component, and an auxiliary rotation limiting component;
[0006] Rotating circular grooves are respectively opened at the upper and lower ends of the drying box. A plurality of the arc rotating blocks are respectively horizontally and parallelly installed on the upper and lower ends of a plurality of the storage support blocks, and a plurality of the arc rotating blocks are respectively movably inserted into a pair of the rotating circular grooves. The rotating drying shaft is movably inserted into the drying box through a bearing. The rotating drying drive motor is installed on the drying box, and the driving end of the rotating drying drive motor is connected to the rotating drying shaft. A plurality of the connection brackets are evenly installed on the rotating drying shaft, and the other ends of a plurality of the connection brackets are respectively connected to a plurality of the storage support blocks. The auxiliary extrusion fixing components are respectively installed on a plurality of the storage support blocks, and the auxiliary rotation limiting components are evenly installed on a plurality of the arc rotating blocks;
[0007] The auxiliary extrusion and fixing assembly includes: a number of limit springs with the same structure, a number of concave limit bearing blocks with the same structure, a number of limit shafts with the same structure, a number of limit wheels with the same structure, a number of limit bearing blocks with the same structure, a number of limit locking shafts with the same structure, and a number of L-shaped inserts with the same structure;
[0008] A number of convex grooves with the same structure are respectively formed on a number of the storage support blocks. A number of the limit springs are respectively installed at the upper and lower ends of a number of the convex grooves. A number of the concave limit bearing blocks are respectively movably inserted at the upper and lower ends of a number of the convex grooves. A number of the limit springs are respectively installed at the upper and lower ends of a number of the convex grooves, and a number of the limit springs are respectively connected to a number of the concave limit bearing blocks. A number of the limit shafts are respectively movably inserted into a number of the concave limit bearing blocks. A number of the limit wheels are respectively installed on a number of the limit shafts. A number of the limit bearing blocks are respectively installed on the storage support blocks. A number of the limit locking shafts are respectively movably inserted into a number of the limit bearing blocks. A number of the L-shaped inserts are respectively evenly installed on a number of the limit locking shafts;
[0009] The auxiliary rotation limit assembly includes: a number of transport balls with the same structure, a number of transport shafts with the same structure, and a number of transport wheels with the same structure;
[0010] A number of transport ball grooves with the same structure are evenly formed on a pair of the rotating circular grooves. A number of the transport balls are respectively evenly and movably arranged in a number of the transport ball grooves. A number of transport grooves with the same structure are respectively evenly formed on a number of the storage support blocks. A number of the transport shafts are respectively movably inserted into a number of the transport grooves through bearings. A number of the transport wheels are respectively installed on a number of the transport shafts.
[0011] Preferably, the temperature control structure includes: a heating box, an electric heating pipe, an air extraction pump, a shunt pipe, two pairs of L-shaped air extraction pipes with the same structure, a drainage pipe, and a circulation assembly;
[0012] The heating box is installed on the drying box. The air extraction pump is installed on the heating box. The shunt pipe is installed on the air extraction pump. The electric heating pipe is evenly installed in the heating box. Two pairs of the L-shaped air extraction pipes are respectively inserted into the shunt pipe, and two pairs of the L-shaped air extraction pipes are respectively inserted into the bottom ends of the side walls of the drying box. The drainage pipe is inserted into the bottom end of the drying box, and the other end of the drainage pipe is connected to the heating box. The circulation assembly is evenly installed in the drying box;
[0013] The circulation assembly includes: two pairs of circulation pipes with the same structure and a number of circulation fans with the same structure;
[0014] A plurality of the circulation pipes are evenly installed on the drying box, a plurality of the circulation fans are respectively installed in a plurality of the drying boxes, and a plurality of the same-structured circulation ports are evenly formed at the upper and lower ends of the plurality of the drying boxes.
[0015] Preferably, a pressure valve is provided on the drying box.
[0016] Preferably, a sealed shutter is provided on the heating box.
[0017] Preferably, a temperature and humidity sensor is provided on the drying box.
[0018] Preferably, flexible sealing gaskets are respectively provided on a plurality of the L-shaped inserts.
[0019] Preferably, heat-insulating paint is provided in the drying box.
[0020] The drying circulation system dynamic rotating cloth device manufactured by using the technical solution of the present invention rotates a plurality of cloth plates through a rotating storage structure, changes the material from static to dynamic, and thoroughly solves the problem of the uniformity of material drying in static layout. The high-temperature air layer in the drying box is pumped to the low-temperature layer through the circulation assembly, avoiding the problem of inconsistent temperatures at the upper and lower ends of the drying box. At the same time, the high-temperature air in the drying box and the heating box is circulated through the temperature control structure, avoiding the phenomenon of non-flowing air in the drying box. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a front view structural schematic diagram of a drying circulation system dynamic rotating cloth device according to the present invention.
[0022] Figure 2 It is a side view structural schematic diagram of a drying circulation system dynamic rotating cloth device according to the present invention.
[0023] Figure 3 It is a top view structural schematic diagram of a drying circulation system dynamic rotating cloth device according to the present invention.
[0024] Figure 4 It is a schematic diagram of an auxiliary extrusion fixing assembly of a drying circulation system dynamic rotating cloth device according to the present invention.
[0025] Figure 5 It is a schematic diagram of a rotating storage structure of a drying circulation system dynamic rotating cloth device according to the present invention.
[0026] In the figure: 1 - drying oven; 2 - storage support block; 3 - arc rotating block; 4 - rotating drying drive motor; 5 - rotating drying shaft; 6 - connecting bracket; 7 - rotating circular ring groove; 8 - heating box; 9 - electric heating tube; 10 - air extraction pump; 11 - shunt pipe; 12 - L-shaped air extraction pipe; 13 - drainage pipe; 14 - limiting spring; 15 - concave-shaped limiting bearing block; 16 - limiting shaft; 17 - limiting wheel; 18 - limiting bearing block; 19 - limiting locking shaft; 20 - L-shaped insertion block; 21 - convex groove; 22 - transport ball; 23 - transport shaft; 24 - transport wheel; 25 - circulation pipe; 26 - circulation fan. Detailed implementation mode
[0027] The characteristics of this implementation scheme include: a drying oven, on which a rotating storage structure and a temperature control structure are installed; the rotating storage structure includes: several storage support blocks with the same structure, several arc rotating blocks with the same structure, a rotating drying drive motor, a rotating drying shaft, several connecting brackets with the same structure, an auxiliary extrusion and fixing component, and an auxiliary rotation limiting component; rotating circular ring grooves are respectively opened at the upper and lower ends of the drying oven, several storage support blocks are horizontally and parallelly installed on the upper and lower ends of several arc rotating blocks, and several arc rotating blocks are respectively movably inserted into a pair of rotating circular ring grooves, the rotating drying shaft is movably inserted into the drying oven through a bearing, the rotating drying drive motor is installed on the drying oven, and the driving end of the rotating drying drive motor is connected to the rotating drying shaft, several connecting brackets are evenly installed on the rotating drying shaft, and the other ends of several connecting brackets are respectively connected to several storage support blocks, the auxiliary extrusion and fixing components are respectively installed on several storage support blocks, and the auxiliary rotation limiting components are evenly installed on several arc rotating blocks; by rotating the rotating storage structure to rotate several fabric plates, the material changes from static to dynamic, completely solving the problem of uniform drying of materials in static layout. By the circulation component, the high-temperature air layer in the drying oven is pumped to the low-temperature layer, avoiding the problem of inconsistent temperatures at the upper and lower ends of the drying oven. At the same time, by the temperature control structure, the high-temperature air in the drying oven and the heating box flows, avoiding the phenomenon of non-flowing air in the drying oven.
[0028] Through the personnel in this field, all the electrical components in this case are connected to their adapted power supplies through wires, and a suitable controller should be selected according to the actual situation to meet the control requirements. For the specific connection and control sequence, reference should be made to the sequence of work among the electrical components in the following working principle to complete the electrical connection. The detailed connection means are well-known techniques in this field. The following mainly introduces the working principle and process, and no further description of electrical control will be made.
[0029] Embodiment: By inserting the cloth plate into several storage support blocks 2, the cloth plate is limited and fixed by the auxiliary extrusion and fixing components on the storage support blocks 2. By several limiting springs 14 respectively pushing several concave limiting bearing blocks 15, by several concave limiting bearing blocks 15 respectively pushing several limiting shafts 16 thereon, by several limiting shafts 16 respectively pushing the limiting wheels 17 thereon, and by several limiting wheels 17 squeezing the cloth plate, the cloth plate is limited and squeezed in the vertical direction. At the same time, by rotating the limiting locking shaft 19, the L-shaped insertion blocks 20 thereon are driven, and several L-shaped insertion blocks 20 are inserted into the convex grooves 21 movably, so as to achieve the sealing effect. Close the drying box 1, and drive the rotation of the rotating drying shaft 5 by rotating the drying drive machine 4. The arc-shaped rotating drying shaft 5 drives several connecting brackets 6 thereon. By several connecting brackets 6 respectively driving several storage support blocks 2 thereon to rotate. Through the cooperation of the arc-shaped rotating blocks 3 on several storage support blocks 2 and the rotating ring grooves 7, several storage support blocks 2 rotate horizontally along the rotating ring grooves 7. At the same time, through the cooperation of several transport balls 22 in several transport ball grooves in a pair of rotating ring grooves 7 and the transport wheels 24 on the transport shafts 23 in several transport grooves on the arc-shaped rotating blocks 3, several arc-shaped rotating blocks 3 can rotate quickly in a pair of rotating ring grooves 7, and at the same time, the friction coefficient is reduced. The air in the heating box 8 is heated by the electric heating tube 9. At the same time, the air in the heating box 8 is pumped into the shunt pipe 11 by the air extraction pump 10. The hot air is transferred to two pairs of L-shaped air extraction pipes 12 through the shunt pipe 11. The hot air is pumped to the bottom end of the drying box 1 through two pairs of L-shaped air extraction pipes 12. At the same time, the air at the top end of the circulation pipe 25 is pumped to the bottom end by several circulation fans 26, so as to pump the high-temperature air to the low-temperature layer, so as to ensure that the temperatures at the upper and lower ends of the air in the drying box 1 are relatively consistent as much as possible, so as to ensure the drying effect. At the same time, by rotating several storage support blocks 2, the effect of inconsistent temperature is avoided.
[0030] As a preferred solution, further, the temperature control structure includes: a heating box 8, an electric heating tube 9, an air extraction pump 10, a shunt pipe 11, two pairs of L-shaped air extraction pipes 12 with the same structure, a drainage pipe 13 and a circulation component;
[0031] The heating box 8 is installed on the drying box 1, the air extraction pump 10 is installed on the heating box 8, the shunt pipe 11 is installed on the air extraction pump 10, the electric heating tube 9 is evenly installed in the heating box 8, two pairs of the L-shaped air extraction pipes 12 are respectively inserted on the shunt pipe 11, and two pairs of the L-shaped air extraction pipes 12 are respectively inserted on the bottom ends of the side walls of the drying box 1. The drainage pipe 13 is inserted on the bottom end of the drying box 1, and the other end of the drainage pipe 13 is connected to the heating box 8. The circulation component is evenly installed in the drying box 1.
[0032] As a preferred solution, further, the auxiliary extrusion and fixing assembly includes: a plurality of limiting springs 14 with the same structure, a plurality of concave limiting bearing blocks 15 with the same structure, a plurality of limiting shafts 16 with the same structure, a plurality of limiting wheels 17 with the same structure, a plurality of limiting bearing blocks 18 with the same structure, a plurality of limiting locking shafts 19 with the same structure, and a plurality of L-shaped insertion blocks 20 with the same structure;
[0033] A plurality of convex grooves 21 with the same structure are respectively formed on a plurality of the storage support blocks 2. A plurality of the limiting springs 14 are respectively installed at the upper and lower ends of a plurality of the convex grooves 21. A plurality of the concave limiting bearing blocks 15 are respectively movably inserted into the upper and lower ends of a plurality of the convex grooves 21. A plurality of the limiting springs 14 are respectively installed at the upper and lower ends of a plurality of the convex grooves 21, and a plurality of the limiting springs 14 are respectively connected to a plurality of the concave limiting bearing blocks 15. A plurality of the limiting shafts 16 are respectively movably inserted into a plurality of the concave limiting bearing blocks 15. A plurality of the limiting wheels 17 are respectively installed on a plurality of the limiting shafts 16. A plurality of the limiting bearing blocks 18 are respectively installed on the storage support blocks 2. A plurality of the limiting locking shafts 19 are respectively movably inserted into a plurality of the limiting bearing blocks 18. A plurality of the L-shaped insertion blocks 20 are respectively uniformly installed on a plurality of the limiting locking shafts 19.
[0034] As a preferred solution, further, the auxiliary rotation limiting assembly includes: a plurality of transport balls 22 with the same structure, a plurality of transport shafts 23 with the same structure, and a plurality of transport wheels 24 with the same structure;
[0035] A plurality of transport ball grooves with the same structure are uniformly formed on a pair of the rotation ring grooves 7. A plurality of the transport balls 22 are respectively uniformly and movably arranged in a plurality of the transport ball grooves. A plurality of transport grooves with the same structure are respectively uniformly formed on a plurality of the storage support blocks 2. A plurality of the transport shafts 23 are respectively movably inserted into a plurality of the transport grooves through bearings. A plurality of the transport wheels 24 are respectively installed on a plurality of the transport shafts 23.
[0036] As a preferred solution, further, the circulation assembly includes: two pairs of circulation pipes 25 with the same structure and a plurality of circulation fans 26 with the same structure;
[0037] A plurality of the circulation pipes 25 are uniformly installed on the drying box 1. A plurality of the circulation fans 26 are respectively installed in a plurality of the drying boxes 1. A plurality of circulation ports with the same structure are uniformly formed at the upper and lower ends of a plurality of the drying boxes 1.
[0038] As a preferred solution, further, a pressure valve is provided on the drying box 1.
[0039] As a preferred solution, further, a sealed shutter is provided on the heating box 8.
[0040] As a preferred solution, further, a temperature and humidity sensor is provided on the drying box 1.
[0041] As a preferred solution, further, flexible gaskets are respectively provided on several of the L-shaped inserts 20.
[0042] As a preferred solution, further, heat-insulating paint is provided inside the drying box 1.
[0043] The above technical solutions only reflect the preferred technical solutions of the technical solutions of the present invention. Some changes that those skilled in the art may make to some parts thereof all reflect the principles of the present invention and fall within the protection scope of the present invention.
Claims
1. A dynamic rotating cloth distributing device for a drying cycle system Comprising: A drying box (1), characterized in that a rotating storage structure and a temperature control structure are installed on the drying box (1); The rotating storage structure includes: a number of storage support blocks (2) with the same structure, a number of arc rotating blocks (3) with the same structure, a rotating drying drive motor (4), a rotating drying shaft (5), a number of connection brackets (6) with the same structure, an auxiliary extrusion fixing component, and an auxiliary rotation limiting component; Rotating circular grooves (7) are respectively formed at the upper and lower ends of the drying box (1). A number of the arc rotating blocks (3) are respectively horizontally and parallelly installed at the upper and lower ends of a number of the storage support blocks (2), and a number of the arc rotating blocks (3) are respectively movably inserted into a pair of the rotating circular grooves (7). The rotating drying shaft (5) is movably inserted into the drying box (1) through a bearing. The rotating drying drive motor (4) is installed on the drying box (1), and the driving end of the rotating drying drive motor (4) is connected to the rotating drying shaft (5). A number of the connection brackets (6) are evenly installed on the rotating drying shaft (5), and the other ends of a number of the connection brackets (6) are respectively connected to a number of the storage support blocks (2). The auxiliary extrusion fixing component is respectively installed on a number of the storage support blocks (2), and the auxiliary rotation limiting component is evenly installed on a number of the arc rotating blocks (3); The auxiliary extrusion fixing component includes: a number of limiting springs (14) with the same structure, a number of concave limiting bearing blocks (15) with the same structure, a number of limiting shafts (16) with the same structure, a number of limiting wheels (17) with the same structure, a number of limiting bearing blocks (18) with the same structure, a number of limiting locking shafts (19) with the same structure, and a number of L-shaped insertion blocks (20) with the same structure; A number of convex grooves (21) with the same structure are respectively formed on a number of the storage support blocks (2). A number of the limiting springs (14) are respectively installed at the upper and lower ends of a number of the convex grooves (21). A number of the concave limiting bearing blocks (15) are respectively movably inserted into the upper and lower ends of a number of the convex grooves (21). A number of the limiting springs (14) are respectively installed at the upper and lower ends of a number of the convex grooves (21), and a number of the limiting springs (14) are respectively connected to a number of the concave limiting bearing blocks (15). A number of the limiting shafts (16) are respectively movably inserted into a number of the concave limiting bearing blocks (15). A number of the limiting wheels (17) are respectively installed on a number of the limiting shafts (16). A number of the limiting bearing blocks (18) are respectively installed on the storage support blocks (2). A number of the limiting locking shafts (19) are respectively movably inserted into a number of the limiting bearing blocks (18). A number of the L-shaped insertion blocks (20) are respectively evenly installed on a number of the limiting locking shafts (19); The auxiliary rotation limiting assembly includes: a number of transport balls (22) with the same structure, a number of transport shafts (23) with the same structure, and a number of transport wheels (24) with the same structure; A number of transport ball grooves with the same structure are evenly opened on the pair of rotation ring grooves (7). A number of the transport balls (22) are respectively and evenly movably arranged in a number of the transport ball grooves. A number of storage support blocks (2) are respectively and evenly provided with a number of transport grooves with the same structure. A number of the transport shafts (23) are respectively and movably inserted into a number of the transport grooves through bearings. A number of the transport wheels (24) are respectively installed on a number of the transport shafts (23).
2. A dynamic rotary cloth feeding device for a drying circulation system according to claim 1, characterized in that the temperature control structure includes: a heating box (8), electric heating tubes (9), an air extraction pump (10), a shunt pipe (11), two pairs of L-shaped air extraction pipes (12) with the same structure, a drainage pipe (13), and a circulation assembly; The heating box (8) is installed on the drying box (1). The air extraction pump (10) is installed on the heating box (8). The shunt pipe (11) is installed on the air extraction pump (10). The electric heating tubes (9) are evenly installed in the heating box (8). Two pairs of the L-shaped air extraction pipes (12) are respectively inserted into the shunt pipe (11), and two pairs of the L-shaped air extraction pipes (12) are respectively inserted into the bottom ends of the side walls of the drying box (1). The drainage pipe (13) is inserted into the bottom end of the drying box (1), and the other end of the drainage pipe (13) is connected to the heating box (8). The circulation assembly is evenly installed in the drying box (1); The circulation assembly includes: two pairs of circulation pipes (25) with the same structure and a number of circulation fans (26) with the same structure; A number of the circulation pipes (25) are evenly installed on the drying box (1). A number of the circulation fans (26) are respectively installed in a number of the drying boxes (1). A number of the drying boxes (1) are evenly provided with a number of circulation ports at the upper and lower ends.
3. A dynamic rotary cloth feeding device for a drying circulation system according to claim 1, characterized in that a pressure valve is provided on the drying box (1).
4. A dynamic rotary cloth feeding device for a drying circulation system according to claim 2, characterized in that a sealed shutter is provided on the heating box (8).
5. A dynamic rotary cloth feeding device for a drying circulation system according to claim 1, characterized in that a temperature and humidity sensor is provided on the drying box (1).
6. A dynamic rotary cloth feeding device for a drying circulation system according to claim 1, characterized in that flexible gaskets are respectively provided on a number of the L-shaped inserts (20).
7. A dynamic rotary cloth feeding device for a drying circulation system according to claim 1, characterized in that heat insulation paint is provided in the drying box (1).
Citation Information
Patent Citations
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