Turnover and drying all-in-one machine
By designing the rotary drum, hot air dryer, separation components, and buffer components of the integrated rotary dryer, the problem of viscous materials adhering to the inner wall of the dryer was solved, achieving comprehensive drying and protection of the materials.
Patent Information
- Application Number
- CN202422939104.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-29
AI Technical Summary
When processing highly viscous materials, the material tends to stick to the inner wall of the rotary dryer, resulting in uneven drying and potentially causing localized damage to the material.
A rotary drying integrated machine was designed, comprising a rotary drum, a hot air dryer, a separation component, and a buffer component. Through the cooperation of the drive component and the rotation component, the material is tumbled and dried, and the scraper and buffer plate are used to achieve timely separation and buffer protection of adhering materials.
It effectively prevents materials from adhering to the inner wall of the dryer, ensuring the overall drying effect of the materials, while avoiding localized damage to the adhered materials and damage to the separated materials, providing comprehensive protection.
Smart Images

Figure CN223525470U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of turnover drying, specifically to a turnover drying all-in-one machine. BACKGROUND
[0002] The turnover drying all-in-one machine is based on the physical properties of the material, and realizes drying through heating and evaporation. In the drying process, the dryer makes the moisture in the material vaporize and escape through heating. When dealing with materials with high humidity or requiring specific drying conditions, the turnover dryer and similar equipment play an important role in industrial production.
[0003] During the turnover drying process of the turnover drying all-in-one machine, when dealing with materials with high viscosity, the material will adhere to the inner wall of the dryer due to its high viscosity. If not separated in time, it will first affect the overall drying effect of the material, and secondly, the location of the material adhesion may cause local damage to the material due to continuous drying.
[0004] Therefore, there is an urgent need for a turnover drying all-in-one machine to solve the above problems. INVENTION CONTENTS
[0005] The utility model aims to provide a turnover drying all-in-one machine to solve the problems raised in the background art.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a turnover drying all-in-one machine, comprising a rack, two groups of rotating frames are symmetrically fixed to the upper end of the rack, and a turnover drying assembly for turnover drying of the material is arranged between the two groups of rotating frames;
[0007] The turnover drying assembly comprises a turnover drum rotatably connected between the two groups of rotating frames, the turnover drum is inclined, and a plurality of air holes are formed in the turnover drum, a hot air dryer for drying the material is arranged directly below the turnover drum, the hot air dryer is fixed to the rack, a separation assembly for separating foreign matter adhering to the inner wall of the turnover drum is arranged inside the turnover drum, and a driving assembly for driving the turnover drum is arranged on the rotating frame;
[0008] The separation assembly comprises a mounting plate arranged inside the turnover drum and a scraper for scraping the material, a telescopic guide assembly for telescopic guiding the scraper is arranged between the mounting plate and the scraper, an L-shaped rod for auxiliary mounting and connecting the mounting plate is arranged between the mounting plate and the rack, and a buffer assembly for buffering the scraped material is symmetrically arranged on both sides of the scraper.
[0009] The telescopic guide assembly comprises a sleeve fixedly connected to the lower end of the scraper, a sliding rod slidingly connected to the sleeve, one end of the sliding rod fixedly connected to the mounting plate, a spring arranged outside the sleeve, and the two ends of the spring connected to the scraper and the mounting plate respectively.
[0010] The buffer assembly comprises two groups of sliding plates symmetrically fixed to the two sides of the scraper, a connecting block fixed to each sliding plate, and a buffer plate rotatably connected to the connecting block by a reset assembly and used for buffering the falling materials on the sliding plate.
[0011] The reset assembly comprises a T-shaped rotating shaft rotatably connected to the connecting block, the sliding plate fixed to the T-shaped rotating shaft, and a torsional spring arranged outside the T-shaped rotating shaft and connected to one end of the T-shaped rotating shaft and one side of the connecting block.
[0012] The driving assembly comprises a gear, a gear ring fixed to the outer side of the turnover drum, the gear and the gear ring arranged in meshing relationship with each other, and a rotating assembly arranged on the rotating frame and used for rotating the gear.
[0013] The rotating assembly comprises a bracket fixedly installed on the rotating frame, a rotating shaft rotatably connected to the bracket, a motor installed on one side of the bracket and used for driving the rotating shaft, and the gear fixed to the rotating shaft in the middle.
[0014] Compared with the prior art, the turnover drying all-in-one machine has the following beneficial effects:
[0015] The turnover drying all-in-one machine comprises a driving assembly, a rotating assembly and a turnover drying assembly, which are cooperated with each other, so that the materials can be effectively turned over and dried. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a whole appearance structure schematic view of the turnover drying all-in-one machine;
[0017] Figure 2 It is a turnover drying assembly structure schematic view of the turnover drying all-in-one machine;
[0018] Figure 3 It is a rotating assembly structure schematic view of the turnover drying all-in-one machine;
[0019] Figure 4 It is a telescopic guide assembly structure schematic view of the turnover drying all-in-one machine;
[0020] Figure 5 The buffer assembly and the reset assembly structure schematic diagram of the utility model.
[0021] In the figure: 101, rack; 102, rotating frame; 201, turnover cylinder; 202, air hole; 203, hot air dryer; 301, support; 302, motor; 303, rotating shaft; 401, gear; 402, gear ring; 501, mounting plate; 502, L-shaped rod; 503, scraper; 601, sleeve; 602, sliding rod; 603, spring; 701, sliding plate; 702, connecting block; 703, buffer plate; 801, rotating shaft; 802, torsional spring. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0023] Please refer to Figures 1-5 The utility model provides a turnover drying integrated machine, including rack 101, the upper end of rack 101 is fixed with two groups of rotating frame 102, still including setting in two groups of rotating frame 102 between the turnover drying assembly for the material is turned over and dried,
[0024] The turnover drying assembly includes the turnover cylinder 201 that is rotatably connected between the two groups of rotating frame 102, and the turnover cylinder 201 is inclinedly arranged, and a plurality of air holes 202 are formed in the turnover cylinder 201, and a hot air dryer 203 for drying the material is arranged below the turnover cylinder 201, and the hot air dryer 203 is fixed on the rack 101, and a separation assembly for separating foreign matters adhered to the inner wall of the turnover cylinder 201 is arranged in the turnover cylinder 201, and a driving assembly for driving the turnover cylinder 201 is arranged on the rotating frame 102;
[0025] The separation assembly includes a mounting plate 501 arranged in the turnover cylinder 201 and a scraper 503 for scraping the material, and a telescopic guide assembly for telescopic guiding the scraper 503 is arranged between the mounting plate 501 and the scraper 503, and an L-shaped rod 502 for assisting the mounting of the mounting plate 501 is arranged between the mounting plate 501 and the rack 101, and a buffer assembly for buffering the material scraped off is symmetrically arranged on both sides of the scraper 503;
[0026] It should be noted that: through the mutual cooperation of the driving assembly, the rotating assembly and the overturning drying assembly, the material is effectively overturned and dried. In the process of overturning and drying, through the mutual cooperation of the separating assembly and the buffer assembly, the material adhering to the inner wall of the drying machine can be separated in time, the effect of drying the material comprehensively is ensured, and the material adhered after drying is prevented from being damaged due to continuous drying in a local part. The separated material can also be buffered and protected to prevent the separated material from being damaged due to falling directly due to a large difference.
[0027] The telescopic guide assembly comprises a sleeve 601 fixedly connected to the lower end of the scraper 503, a sliding rod 602 slidingly connected to the sleeve 601, one end of the sliding rod 602 being fixed to the mounting plate 501, a spring 603 being sleeved outside the sleeve 601, and both ends of the spring 603 being connected to the scraper 503 and the mounting plate 501 respectively.
[0028] It should be noted that: through the sleeve 601 and the sliding rod 602, the scraper 503 can be assisted to perform telescopic movement. Through the elastic force of the spring 603, the scraper 503 can be pushed to abut against the inner wall of the overturning cylinder 201, so as to ensure the scraping effect.
[0029] The buffer assembly comprises two groups of sliding plates 701 symmetrically fixed to the two sides of the scraper 503, a connecting block 702 fixed to the sliding plate 701, and a buffer plate 703 rotatably connected to the connecting block 702 through a reset assembly and used for buffering the separated material falling on the sliding plate 701.
[0030] It should be noted that: the separated material scraped from the inside of the overturning cylinder 201 slides on the surface of the sliding plate 701 under the sliding guide action of the two groups of sliding plates 701. In the process of sliding, the material abuts against the buffer plate 703 and pushes the buffer plate 703 to be flipped under stress, and finally falls into the bottom inside the overturning cylinder 201 again. In the process of sliding, the material is buffered by abutting against the buffer plate 703.
[0031] The reset assembly comprises a T-shaped rotating shaft 801 rotatably connected to the connecting block 702, the sliding plate 701 being fixed to the T-shaped rotating shaft 801, and a torsional spring 802 being sleeved and connected to the outside of the T-shaped rotating shaft 801, both ends of the torsional spring 802 being connected to one end of the T-shaped rotating shaft 801 and one side of the connecting block 702 respectively.
[0032] It should be noted that: in the process of the buffer plate 703 being flipped under stress, the T-shaped rotating shaft 801 is rotated on the connecting block 702. In the process of rotation, the torsional spring 802 is deformed under stress to generate elastic force. Through the elastic force of the torsional spring 802, the T-shaped rotating shaft 801 and the buffer plate 703 can be reset after the flipping movement.
[0033] The driving assembly comprises a gear 401, a gear ring 402 fixed to the outer side of the turnover drum 201, the gear 401 and the gear ring 402 are arranged in meshing with each other, and the rotating frame 102 is provided with a rotating assembly for rotating the gear 401;
[0034] It should be noted that the gear 401 is driven to rotate by the rotating assembly, and in the process of rotating the gear 401, the turnover drum 201 is driven to overturn by the meshing action of the gear 401 and the gear ring 402.
[0035] The rotating assembly comprises a bracket 301 fixedly installed on the rotating frame 102, a rotating shaft 303 rotatably connected to the bracket 301, a motor 302 installed on one side of the bracket 301 for driving the rotating shaft 303, and the gear 401 is fixedly installed on the rotating shaft 303;
[0036] It should be noted that the motor 302 on one side of the bracket 301 is driven to rotate the rotating shaft 303, thereby driving the gear 401 to rotate.
[0037] Working principle: in the process of drying and overturning the material by the overturning and drying all-in-one machine, the material is first put into the inside of the turnover drum 201 from one end of the turnover drum 201, after the material is put in, the driving assembly and the rotating assembly are driven to rotate the turnover drum 201, because the turnover drum 201 is inclined, the material put in is transported from one end to the other end in the inside of the turnover drum 201 in the process of overturning the turnover drum 201, in the process of transporting, the hot air is transported to the inside of the turnover drum 201 through the cooperation of the hot air dryer 203 and the plurality of air holes 202, and the material transported in the inside of the turnover drum 201 is dried, so as to realize the drying and overturning treatment of the material;
[0038] In the process of drying and overturning, when the material adheres to the inner wall of the turnover drum 201 due to viscosity, the material moves synchronously with the turnover drum 201, and in the process of rotating the turnover drum 201, the scraper 503 is abutted with the turnover drum 201 under the elastic force of the spring 603 on the telescopic guide assembly, when the adhered material abuts with the scraper 503, the adhered material is separated from the turnover drum 201 by abutting and extruding, so as to ensure the overall drying effect of the material and avoid damage of the adhered material caused by local continuous drying;
[0039] The separated material is scraped from the inside of the turnover cylinder 201 and slides on the surface of the sliding guide plate 701 under the sliding guide of the two sets of sliding guide plates 701, and in the sliding process, the material abuts against the buffer plate 703 and pushes the buffer plate 703 to be forced to turn over and finally falls into the bottom of the inside of the turnover cylinder 201 again, and in the sliding process, the material is abutted against the buffer plate 703 to abut against and buffer the sliding material, so that the separated material is prevented from falling directly and being damaged due to too large falling difference.
[0040] It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and the present application can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the involved claims.
Claims
1. A turnover drying all-in-one machine, comprising: a rack (101), the upper end of the rack (101) is symmetrically fixed with two groups of rotating frames (102), characterized in that it further comprises: a turnover drying assembly arranged between the two groups of rotating frames (102) for turnover drying of materials; the turnover drying assembly comprises a turnover drum (201) rotatably connected between the two groups of rotating frames (102), the turnover drum (201) is arranged obliquely, and a plurality of air permeable holes (202) are formed in the turnover drum (201), a hot air dryer (203) for drying materials is arranged directly below the turnover drum (201), the hot air dryer (203) is fixed on the rack (101), an inside of the turnover drum (201) is provided with a separation assembly for separating foreign matters adhered to an inner wall of the turnover drum (201), and the rotating frame (102) is provided with a driving assembly for driving the turnover drum (201). the separation assembly comprises a mounting plate (501) arranged in the inside of the turnover drum (201) and a scraper (503) for scraping materials, a telescopic guide assembly for telescopic guiding of the scraper (503) is arranged between the mounting plate (501) and the scraper (503), an L-shaped rod (502) for auxiliary mounting connection of the mounting plate (501) is arranged between the mounting plate (501) and the rack (101), and a buffer assembly for buffering scraped materials is symmetrically arranged on both sides of the scraper (503).
2. The turnover drying all-in-one machine according to claim 1, characterized in that: the telescopic guide assembly comprises a sleeve (601) fixedly connected to a lower end of the scraper (503), the sleeve (601) is slidably connected with a slide rod (602), one end of the slide rod (602) is fixed with the mounting plate (501), and a spring (603) is sleeved outside the sleeve (601), both ends of the spring (603) are connected with the scraper (503) and the mounting plate (501) respectively.
3. The flip-drying all-in-one machine of claim 2, wherein: the buffer assembly comprises two groups of slide plates (701) symmetrically fixed on both sides of the scraper (503), the slide plates (701) are fixed with connecting blocks (702), and the connecting blocks (702) are rotatably connected with buffer plates (703) for buffering of materials falling on the slide plates (701) through a reset assembly.
4. The flip-drying all-in-one machine of claim 3, wherein: the reset assembly comprises a T-shaped rotating shaft (801) rotatably connected with the connecting blocks (702), the slide plates (701) are fixed on the T-shaped rotating shaft (801), a torsional spring (802) is sleeved and connected outside the T-shaped rotating shaft (801), and both ends of the torsional spring (802) are connected with one end of the T-shaped rotating shaft (801) and one side of the connecting block (702) respectively.
5. The flip-drying all-in-one machine of claim 1, wherein: the driving assembly comprises a gear (401), a gear ring (402) is fixed outside the turnover drum (201), the gear (401) and the gear ring (402) are arranged in meshing relationship, and the rotating frame (102) is provided with a rotating assembly for rotating the gear (401).
6. The flip-drying all-in-one machine of claim 5, wherein: The rotating assembly comprises a support (301) fixedly installed on the rotating frame (102), a rotating shaft (303) is rotatably connected to the support (301), a motor (302) for driving the rotating shaft (303) is installed on one side of the support (301), and the gear (401) is fixedly arranged on the rotating shaft (303).