Drying device for silica gel production
By designing ventilation adjustment, adjustment auxiliary and drive adjustment mechanisms, the problems of airflow instability and platform movement in the existing silicone drying device are solved, and precise control and efficient drying are achieved.
Patent Information
- Application Number
- CN202422144521.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-09-02
AI Technical Summary
The existing silicone drying device cannot accurately control the airflow, the rotating rod is unstable, and the drying platform is unstable, which affects the drying efficiency and quality.
An ventilation adjustment mechanism, adjustment auxiliary mechanism and drive adjustment mechanism are designed, including rotating rods, spiral tubes, spiral plates, drive motors, etc., to achieve precise control of ventilation volume, rotation rod tightness and drying platform position.
It realizes precise control of airflow, improves the stability of the rotating rod, and flexible movement of the drying platform, which improves drying efficiency and quality.
Smart Images

Figure CN223192017U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of silica gel drying, and more specifically, to a drying device for silica gel production. Background Art
[0002] A drying device for silica gel production is a device specially designed for the production of silica gel. It is used to remove moisture or other solvents from silica gel to ensure the quality and performance of the product. The drying device plays a key role in the production process of silica gel because the presence of moisture may affect the chemical and physical properties of silica gel.
[0003] In the existing technology, firstly, some devices cannot accurately control the airflow during the drying process, which may lead to poor drying effect or over-drying, and the ventilation volume cannot be adjusted manually or mechanically, which reduces the flexibility of operation and may cause unstable airflow during ventilation, affecting the drying quality. Secondly, some devices cannot accurately control the tightness of the rotating rod, which affects the ventilation effect, which may cause the rotating rod to be unstable during operation and affect the drying efficiency. Finally, some devices adjust the position of the drying platform mechanically, which may require more manpower and time during the operation, and may cause the drying platform to be unstable during movement, increasing the operational risk. Utility Model Content
[0004] (1) Technical problems solved
[0005] In response to the problems existing in the prior art, the utility model provides a drying device for silica gel production to solve the technical problems mentioned in the background art, such as the inability to accurately control the airflow during the drying process and the instability of the rotating rod during operation.
[0006] (2) Technical solution
[0007] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a drying device for silica gel production, comprising a drying platform, a ventilation adjustment mechanism, an adjustment auxiliary mechanism and a drive adjustment mechanism, wherein the ventilation adjustment mechanism comprises an adjustment box, a rotating rod, a guide assembly, an adjustment tube, a card slot, a locking block, a tension spring and a pressing block, one end of the rotating rod is rotatably connected to the inside of the adjustment box, and the other end of the rotating rod extends out of the adjustment box, the guide assembly is cooperatively mounted on the rotating rod, multiple groups of card slots are arranged on the side of the rotating rod, the locking block is movably arranged on the side wall of the adjustment tube, and the tension spring is arranged on the locking block. The block and the inner wall of the adjustment tube, the pressing block is arranged at one end of the locking block, and multiple groups of pressing blocks and locking block spiral arrays are arranged on the side of the adjustment tube. The adjustment auxiliary mechanism includes a rotating tube, a spiral tube, a spiral plate and a spiral groove. The inner wall of the spiral tube and the outer wall of the adjustment tube are connected by a threaded setting, multiple groups of spiral plates are arranged at the bottom of the spiral tube, the spiral groove is arranged inside the spiral plate, and the rotating tube connection is arranged on the top end face of the spiral tube. The spiral groove on the spiral plate can squeeze the pressing block in turn so that the locking head extends into the card slot. By controlling the number of squeezed pressing blocks, the tightness of the rotating rod can be controlled.
[0008] The utility model is further configured as follows: the drive adjustment mechanism includes a drive motor, a vertical frame, a rotating shaft, a rotating gear and a gear rail; the drive motor is mounted on the side of the vertical frame, and one end of the vertical frame is cooperatively mounted on the drying platform; the rotating shaft is mounted on the output end of the drive motor, one end of the rotating shaft extends through the vertical plate and is connected to the rotating gear; the gear rail is arranged on the side of the drying platform, and the rotating gear is meshed and connected with the gear rail.
[0009] The utility model is further configured such that a slider is provided on the bottom end face of the vertical frame, a slide rail is provided on the top end face of the drying platform, and the slider can be provided on the slide rail in conjunction with a guide slide. The setting of the slider facilitates the smooth movement of the drying equipment.
[0010] The utility model is further configured such that a frame is provided on the top end face of the vertical frame, a transverse movement component is provided on the top end face of the frame, and a longitudinal movement component is provided on the front end face of the transverse movement component. The setting of the frame facilitates the stable movement of the transverse movement component and the longitudinal movement component.
[0011] The utility model is further configured such that the adjustment box is installed on the front end face of the longitudinal movement platform, and the bottom end face of the adjustment box is connected with a connecting pipe, and one end of the connecting pipe is connected with a drying bucket. The setting of the drying bucket facilitates drying the silica gel on the drying platform.
[0012] The utility model is further configured such that an air inlet pipe is provided on the top end face of the adjustment box, and the air inlet pipe is cooperatively connected with an external drying device. The configuration of the air inlet pipe facilitates the delivery of external drying gas to the device.
[0013] The utility model is further configured such that support seats are symmetrically provided at both ends of the top of the drying platform, and a rotating rod is connected between the symmetrical support seats, and a roller is provided on the rotating rod, and multiple groups of support seats, rotating rods and rollers are respectively provided. The design of the support seats makes the drying platform more stable during movement, thereby improving the safety of the equipment.
[0014] The utility model is further configured such that a connecting plate is provided at the bottom end of the side of the adjustment tube, and the connecting plate is fixedly mounted on the front end face of the adjustment box. The provision of the connecting plate facilitates fixing the adjustment tube on the side of the adjustment box.
[0015] (3) Beneficial effects
[0016] Compared with the prior art, the present invention provides a drying device for silica gel production, which has the following beneficial effects:
[0017] The utility model is provided with a ventilation adjustment mechanism. Through the design of the rotating rod, the slot, the locking block, the tension spring and the pressing block, the ventilation volume can be accurately controlled to ensure the drying effect. The spiral array design of multiple groups of slots and locking blocks makes the ventilation adjustment mechanism more stable during operation and increases the service life of the equipment. The design of the pressing block allows the operator to easily control the ventilation volume manually or mechanically, thereby improving the convenience of operation.
[0018] The utility model is provided with an adjustment auxiliary mechanism. The design of the spiral tube and the spiral plate can realize the precise adjustment of the tightness of the rotating rod, thereby improving the adjustment accuracy of the equipment. The design of the rotating tube and the spiral groove makes the transmission more stable and reduces the vibration and noise during operation.
[0019] The utility model is provided with a drive adjustment mechanism, which can realize precise control of the position of the drying platform through the cooperation of the drive motor, the rotating shaft and the gear rail. The design of the slider and the slide rail makes the movement of the drying platform in the vertical direction more flexible and convenient for operation and maintenance. The design of the transverse movement component and the longitudinal movement component makes the movement of the drying platform in the transverse and longitudinal directions more convenient, thereby improving the adjustment function of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of the overall structure of the device in the present invention when not in use;
[0021] Figure 2 This is a schematic diagram of the structure of the drive adjustment mechanism in the utility model;
[0022] Figure 3 This is a structural diagram of the connection between the adjustment box and the ventilation adjustment mechanism in the present invention;
[0023] Figure 4It is a structural diagram of the ventilation adjustment mechanism and the adjustment auxiliary mechanism in the utility model;
[0024] Figure 5 It is a schematic diagram of the internal structure of the ventilation adjustment mechanism and the adjustment auxiliary mechanism in the utility model.
[0025] In the figure: 1. Drying platform; 2. Adjustment box; 3. Rotating rod; 4. Guide assembly; 5. Adjustment pipe; 6. Slot; 7. Locking block; 8. Tension spring; 9. Pressing block; 10. Rotating pipe; 11. Spiral pipe; 12. Spiral plate; 13. Spiral groove; 14. Driving motor; 15. Vertical frame; 16. Rotating shaft; 17. Rotating gear; 18. Gear rail; 19. Slider; 20. Slide rail; 21. Frame; 22. Transverse movement assembly; 23. Longitudinal movement assembly; 24. Connecting pipe; 25. Drying hopper; 26. Air inlet pipe; 27. Support seat; 28. Rotating rod; 29. Roller; 30. Connecting plate. DETAILED DESCRIPTION
[0026] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0027] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by ordinary technicians in the technical field to which this application belongs.
[0028] In the present invention, unless otherwise specified, directions such as "up" and "down" are usually relative to the directions shown in the drawings, or relative to the vertical, perpendicular or gravity direction; similarly, for ease of understanding and description, "left" and "right" are usually relative to the left and right shown in the drawings; "inside" and "outside" refer to the inside and outside relative to the outline of each component itself, but the above-mentioned direction words are not used to limit the present invention.
[0029] See also Figure 1-5, a drying device for silica gel production, including a drying platform 1, a ventilation adjustment mechanism, an adjustment auxiliary mechanism and a drive adjustment mechanism, the ventilation adjustment mechanism includes an adjustment box 2, a rotating rod 3, a guide assembly 4, an adjustment tube 5, a card slot 6, a locking block 7, a tension spring 8 and a pressing block 9, one end of the rotating rod 3 is rotatably connected to the inside of the adjustment box 2, and the other end of the rotating rod 3 extends out of the adjustment box 2, the guide assembly 4 is mounted on the rotating rod 3, multiple groups of card slots 6 are arranged on the side of the rotating rod 3, the locking block 7 is movably arranged on the side wall of the adjustment tube 5, the tension spring 8 is arranged between the locking block 7 and the inner wall of the adjustment tube 5, and the pressing block 9 is set At one end of the locking block 7, multiple groups of pressing blocks and locking blocks 7 are arranged in a spiral array on the side of the adjustment tube 5. The adjustment auxiliary mechanism includes a rotating tube 10, a spiral tube 11, a spiral plate 12 and a spiral groove 13. The inner wall of the spiral tube 11 and the outer wall of the adjustment tube 5 are connected by a threaded setting. Multiple groups of spiral plates 12 are arranged at the bottom of the spiral tube 11, and the spiral groove 13 is arranged inside the spiral plate 12. The rotating tube 10 is connected to the top end face of the spiral tube 11. The spiral groove 13 on the spiral plate 12 can squeeze the pressing blocks in turn so that the locking head extends into the slot 6. By controlling the number of squeezed pressing blocks, the tightness of the rotating rod 3 is controlled.
[0030] In this embodiment, the air inlet pipe 26 is connected to the external drying equipment to introduce external airflow. The bottom end surface of the adjustment box 2 is connected to a connecting pipe 24, and one end of the connecting pipe 24 is connected to a drying bucket 25 for collecting and drying silica gel. The adjustment auxiliary mechanism composed of the spiral tube 11 and the spiral plate 12 can squeeze the pressing block so that the locking head extends into the card slot 6, thereby controlling the tightness of the rotating rod 3. By controlling the number of squeezing pressing blocks, the tightness of the rotating rod 3 is controlled, and then the ventilation volume is controlled to meet different airflow requirements during the drying process. The inner wall of the spiral tube 11 and the outer wall of the adjustment tube 5 are connected by a threaded arrangement. Multiple groups of spiral plates 12 are arranged at the bottom of the spiral tube 11, and the spiral groove 13 is arranged inside the spiral plate 12. When the rotating tube 10 is rotated, the rotating tube 10 drives the spiral tube 11 to rotate, and then drives the spiral plate 12 to rotate along the pressing block 9. The spiral groove 13 on the spiral plate 12 can squeeze the pressing block in turn, so that the locking head extends into the card slot 6. By controlling the number of squeezing pressing blocks, the tightness of the rotating rod 3 is controlled.
[0031] The drive adjustment mechanism includes a drive motor 14, a vertical frame 15, a rotating shaft 16, a rotating gear 17 and a gear rail 18. The drive motor 14 is installed on the side of the vertical frame 15, and one end of the vertical frame 15 is mounted on the drying platform 1. The rotating shaft 16 is installed at the output end of the drive motor 14, and one end of the rotating shaft 16 extends through the vertical plate and is connected to the rotating gear 17. The gear rail 18 is set on the side of the drying platform 1, and the rotating gear 17 is meshed with the gear rail 18.
[0032] In this embodiment, when the driving motor 14 is started, the rotating shaft 16 rotates, driving the rotating gear 17 to rotate. When the rotating shaft 16 rotates, the rotating gear 17 moves along the gear rail 18, thereby driving the drying platform 1 to move in the horizontal direction. By controlling the start and stop and rotation direction of the driving motor 14, the position of the drying platform 1 can be adjusted to adapt to different drying needs.
[0033] See also Figure 1-5 As a supplementary embodiment of a drying device for silicone production for the ventilation adjustment mechanism, the adjustment auxiliary mechanism and the drive adjustment mechanism: the bottom end surface of the vertical frame 15 is provided with a slider 19, the top end surface of the drying platform 1 is provided with a slide rail 20, and the slider 19 can be arranged on the slide rail 20 in conjunction with a guide slide, the top end surface of the vertical frame 15 is provided with a frame 21, and the top end surface of the frame 21 is provided with a transverse movement component 22, the front end surface of the transverse movement component 22 is provided with a longitudinal movement component 23, the adjustment box 2 is installed on the front end surface of the longitudinal movement platform, and the bottom end surface of the adjustment box 2 is provided with a guide slide. A connecting pipe 24 is provided on the surface, and one end of the connecting pipe 24 is connected to a drying bucket 25. An air intake pipe 26 is provided on the top end face of the adjustment box 2, and the air intake pipe 26 is connected to the external drying equipment. Support seats 27 are symmetrically provided at both ends of the top of the drying platform 1, and a rotating rod 28 is connected between the symmetrical support seats 27, and a roller 29 is provided on the rotating rod 28, and multiple groups of support seats 27, rotating rods 28 and rollers 29 are respectively provided. A connecting plate 30 is provided at the bottom end of the side of the adjustment tube 5, and the connecting plate 30 is fixedly mounted on the front end face of the adjustment box 2.
[0034] More specifically, the ventilation adjustment mechanism, the adjustment auxiliary mechanism and the drive adjustment mechanism are installed on the drying platform 1, the adjustment box 2 is installed on the front end face of the longitudinal movement platform, and a drying bucket 25 is connected to one end of the connecting pipe 24. By controlling the tightness of the rotating rod 3 of the ventilation adjustment mechanism, the ventilation volume during the drying process of the silicone is adjusted. The position of the drying platform 1 is adjusted to adapt to different drying requirements by driving the driving motor 14 and the gear system of the adjustment mechanism. The silicone is dried by connecting with external drying equipment through the air inlet pipe 26. Support seats 27 are symmetrically provided at both ends of the top of the drying platform 1. A rotating rod 28 is connected between the support seats 27, and a roller 29 is provided on the rotating rod 28 to facilitate the movement and positioning of the drying platform 1 during the drying process.
[0035] In summary, when the overall equipment is in use or running: when the ventilation adjustment mechanism needs to be operated, the air inlet pipe 26 is connected to the external drying equipment to introduce external airflow, and the bottom end face of the adjustment box 2 is connected to a connecting pipe 24, and one end of the connecting pipe 24 is connected to a drying bucket 25 for collecting and drying silica gel. Through the adjustment auxiliary mechanism composed of the spiral tube 11 and the spiral plate 12, the pressing block can be squeezed so that the locking head extends into the slot 6, thereby controlling the tightness of the rotating rod 3. By controlling the number of squeezing pressing blocks, the tightness of the rotating rod 3 is controlled, and then the ventilation volume is controlled to meet different airflow requirements during the drying process.
[0036] When it is necessary to adjust the operation of the auxiliary mechanism, the inner wall of the spiral tube 11 and the outer wall of the adjustment tube 5 are connected by a threaded setting, multiple groups of spiral plates 12 are arranged at the bottom of the spiral tube 11, and the spiral groove 13 is arranged inside the spiral plate 12. The rotating tube 10 is rotated, and the rotating tube 10 drives the spiral tube 11 to rotate, and then drives the spiral plate 12 to rotate along the pressing block 9. The spiral groove 13 on the spiral plate 12 can squeeze the pressing block in turn, so that the locking head extends into the card slot 6. By controlling the number of squeezing the pressing blocks, the tightness of the rotating rod 3 is controlled.
[0037] When the drive adjustment mechanism needs to be driven, the drive motor 14 is started, the rotating shaft 16 rotates, driving the rotating gear 17 to rotate. When the rotating shaft 16 rotates, the rotating gear 17 moves along the gear rail 18, thereby driving the drying platform 1 to move in the horizontal direction. By controlling the start and stop and rotation direction of the drive motor 14, the position of the drying platform 1 can be adjusted to meet different drying needs.
[0038] The ventilation adjustment mechanism, the adjustment auxiliary mechanism and the drive adjustment mechanism are installed on the drying platform 1, the adjustment box 2 is installed on the front end face of the longitudinal movement platform, and a drying bucket 25 is connected to one end of the connecting pipe 24. By controlling the tightness of the rotating rod 3 of the ventilation adjustment mechanism, the ventilation volume during the drying process of the silica gel is adjusted. The position of the drying platform 1 is adjusted to meet different drying requirements by driving the driving motor 14 and the gear system of the adjustment mechanism. The silica gel is dried by connecting with external drying equipment through the air inlet pipe 26. Support seats 27 are symmetrically provided at both ends of the top of the drying platform 1. A rotating rod 28 is connected between the support seats 27, and a roller 29 is provided on the rotating rod 28 to facilitate the movement and positioning of the drying platform 1 during the drying process.
[0039] In all the schemes mentioned above, the connection between the two components can be selected according to actual conditions by welding, bolt and nut connection, bolt or screw connection or other well-known connection methods, which will not be listed here one by one. In the above, all fixed connections are preferably welded. Although the embodiments of the present invention have been shown and described, it can be understood by ordinary technicians in this field that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the attached claims and their equivalents.
Claims
1. A drying device for silica gel production, comprising a drying platform (1), a ventilation adjustment mechanism, an adjustment auxiliary mechanism and a drive adjustment mechanism, characterized in that: The ventilation adjustment mechanism comprises an adjustment box (2), a rotating rod (3), a flow guide assembly (4), an adjustment tube (5), a card slot (6), a locking block (7), a tension spring (8) and a pressing block (9); one end of the rotating rod (3) is rotatably connected to the inside of the adjustment box (2); the other end of the rotating rod (3) extends out of the adjustment box (2); the flow guide assembly (4) is cooperatively mounted on the rotating rod (3); a plurality of card slots (6) are arranged on the side of the rotating rod (3); the locking block (7) is movably arranged on the side wall of the adjustment tube (5); the tension spring (8) The adjusting mechanism is arranged between the locking block (7) and the inner wall of the adjusting tube (5), and the pressing block (9) is arranged at one end of the locking block (7). The adjusting auxiliary mechanism comprises a rotating tube (10), a spiral tube (11), a spiral plate (12) and a spiral groove (13). The inner wall of the spiral tube (11) and the outer wall of the adjusting tube (5) are connected by a threaded arrangement. Multiple groups of spiral plates (12) are arranged at the bottom of the spiral tube (11), and the spiral groove (13) is arranged inside the spiral plate (12). The rotating tube (10) is connected to the top end surface of the spiral tube (11).
2. A drying device for silica gel production according to claim 1, characterized in that: The drive adjustment mechanism comprises a drive motor (14), a vertical frame (15), a rotating shaft (16), a rotating gear (17) and a gear rail (18). The drive motor (14) is mounted on the side of the vertical frame (15), and one end of the vertical frame (15) is mounted on the drying platform (1). The rotating shaft (16) is mounted on the output end of the drive motor (14). One end of the rotating shaft (16) extends through the vertical plate and is connected to the rotating gear (17). The gear rail (18) is arranged on the side of the drying platform (1), and the rotating gear (17) is meshed and connected with the gear rail (18).
3. A drying device for silica gel production according to claim 2, characterized in that: The bottom end surface of the vertical frame (15) is provided with a slider (19), and the top end surface of the drying platform (1) is provided with a slide rail (20). The slider (19) can be arranged on the slide rail (20) in cooperation with a guide slide.
4. A drying device for silica gel production according to claim 2, characterized in that: The top end surface of the vertical frame (15) is provided with a frame (21), the top end surface of the frame (21) is provided with a transverse movement component (22), and the front end surface of the transverse movement component (22) is provided with a longitudinal movement component (23).
5. The drying device for silica gel production according to claim 1, characterized in that: The adjustment box (2) is installed on the front end surface of the longitudinal moving platform, and the bottom end surface of the adjustment box (2) is connected with a connecting pipe (24), and one end of the connecting pipe (24) is connected with a drying bucket (25).
6. The drying device for silica gel production according to claim 1, characterized in that: An air inlet pipe (26) is provided on the top end surface of the adjustment box (2), and the air inlet pipe (26) is cooperatively connected to an external drying device.
7. The drying device for silica gel production according to claim 1, characterized in that: Support seats (27) are symmetrically provided at both ends of the top of the drying platform (1), and a rotating rod (28) is connected between the symmetrical support seats (27), and a roller (29) is provided on the rotating rod (28), and multiple groups of support seats (27), rotating rods (28) and rollers (29) are respectively provided.
8. The drying device for silica gel production according to claim 1, characterized in that: A connecting plate (30) is provided at the bottom end of the side surface of the adjustment tube (5), and the connecting plate (30) is fixedly mounted on the front end surface of the adjustment box (2).