A horizontal spin dryer

By using a powerful motor to drive the square shaft to rotate the second frame, combined with limiting and sealing components, the problem of horizontal spin dryers being unable to handle multiple frames at the same time and the safety hazards are solved, thus achieving efficient and safe frame spin drying operation.

CN117704769BActive Publication Date: 2026-02-03DONGGUAN SANFENG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202410136703.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-01-31
Publication Date
2026-02-03
Estimated Expiration
2044-01-31

AI Technical Summary

Technical Problem

Existing horizontal spin dryers cannot process multiple plastic frames at once, resulting in low work efficiency. Furthermore, inadequate sealing can cause the plastic frames to detach from the spin dryer, posing a safety hazard.

Method used

A horizontal spin dryer was designed, which uses a powerful motor to drive a square shaft to rotate a second frame. Combined with a first guide rod, a second guide rod, and a limiting rod, it achieves multi-directional limiting. A sealing component and a positioning cylinder are set to ensure that the frame does not detach during the spin drying process and to achieve automatic feeding and discharging.

Benefits of technology

It enables efficient spin drying of multiple rubber frames, improves work efficiency, ensures safety, avoids rubber frame detachment and safety hazards, and simplifies material loading and unloading operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a horizontal spin dryer which comprises a main support frame, a plurality of supporting legs arranged at the bottom of the main support frame, a top cover connected to the top of the main support frame, wall plates arranged at the left and right sides of the main support frame, an inlet channel arranged on the left wall plate, an outlet channel arranged on the right wall plate, reinforcing cross plates arranged at the left and right sides of the main support frame, hinged seats installed on the inner sides of the reinforcing cross plates, square shafts rotationally connected between the hinged seats, four square plates arranged on the square shafts, first frames arranged between the upper and lower sides of the square plates, second frames welded between the front and rear sides of the first frames, four first guide rods connected between the upper and lower sides of the second frames, four limiting rods connected between the left and right sides of the second frames and four second guide rods connected between the upper and lower sides of the first frames. The square shaft is driven to rotate by using a powerful motor, the second frame is driven to rotate horizontally, and the built-in rubber frame in the second frame is rapidly dewatered by centrifugal force.
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Description

Technical Field

[0001] This invention belongs to the field of spin dryer technology, specifically relating to a horizontal spin dryer. Background Technology

[0002] Horizontal centrifuges, also known as dewatering machines, mainly utilize the centrifugal force generated by high-speed rotation to quickly remove moisture from materials, achieving a certain degree of dryness. Horizontal centrifuges also have automatic feeding and discharging functions, and when installed in a production line, they can improve work efficiency.

[0003] In the spin-drying process after cleaning the plastic frames, existing horizontal spin-dryers cannot process multiple plastic frames at once, resulting in low work efficiency. Furthermore, in assembly line operations, the inlet and outlet of the plastic frames need to be sealed to prevent debris from entering. However, if the seal is too tight, it will hinder the discharge of the plastic frames and affect the production schedule. If the seal is not tight enough, it will be even more serious, as it may cause the plastic frames to detach from the spin-dryer, which may even cause personal injury. This is a safety hazard that cannot be ignored. Summary of the Invention

[0004] The purpose of this invention is to provide a horizontal spin dryer to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a horizontal spin dryer, comprising a main support frame, a plurality of legs at the bottom of the main support frame, a top cover connected to the top of the main support frame, wall panels on the left and right sides of the main support frame, a feeding channel on the left wall panel and a discharge channel on the right wall panel, reinforcing horizontal plates on both sides of the main support frame, hinge seats installed on the inner side of each reinforcing horizontal plate, a square shaft rotatably connected between the hinge seats, four square plates extending from the square shaft, a first frame extending between the upper and lower sides of the square plates, a second frame welded between the front and rear sides of the first frame, four first guide rods connected vertically between the second frames, four limiting rods connected horizontally between the second frames, four second guide rods connected vertically between the first frames, a secondary support frame welded to the right side of the main support frame, a receiving seat connected to the bottom of the secondary support frame, and a powerful motor installed inside the receiving seat.

[0006] Preferably, with the square axis as the upper and lower dividing line, every two first guide rods, limiting rods, and second guide rods form a dehydration assembly.

[0007] Preferably, the left side of each dehydration component is provided with a guide bevel.

[0008] Preferably, the hinge seat is an irregularly shaped disc.

[0009] Preferably, a first cylinder is installed above the feeding channel, and a folding baffle is connected to the telescopic rod of the first cylinder.

[0010] Preferably, a rotating plate is hinged at the top of the discharge channel, and a fisheye bearing is rotatably provided on the outer side of the rotating plate. The fisheye bearing is connected to the telescopic rod of the second cylinder.

[0011] Preferably, a positioning plate is provided on the bottom right side of the second frame, and a positioning hole is provided on the positioning plate. A mounting bracket is connected between the bottom of the reinforcing cross plate and the main support frame. A positioning cylinder is provided on the right side of the mounting bracket, and the telescopic rod of the positioning cylinder extends through the mounting bracket and is connected to a sleeve.

[0012] Preferably, a water storage frame is slidably disposed between the lower parts of the main support frame, and a water outlet is opened on the bottom right side of the water storage frame, with a rubber plug placed in the water outlet.

[0013] Preferably, a box is connected between the top of the secondary support frame and the top of the main support frame, and the right side of the box extends downward to cover the top cover and the right side wall panel.

[0014] Preferably, the main support frame has two sets of observation door panels hinged to both the front and rear sides, and the secondary support frame has door frames hinged to both the front and rear sides.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] 1. This invention uses a powerful motor to drive a square shaft to rotate, which in turn drives the second frame to rotate laterally, thereby using centrifugal force to quickly dehydrate the rubber frame inside the second frame;

[0017] 2. Simultaneously, the first guide rod, the second guide rod, and the limiting rod achieve multi-directional limiting of the glue frame, so that two dehydration spaces are formed inside the second frame, each space can accommodate more than 4 glue frames, realizing a large number of high-efficiency spin-drying operations;

[0018] 3. The upper dehydration space is aligned with the feeding and discharging channels, so that the staff or production line only need to move the plastic frame in a straight line to accurately push the plastic frame into the second frame, realizing automatic feeding and discharging and improving work efficiency.

[0019] 4. Appropriate sealing components are provided on the outside of the feeding and discharging channels to ensure that the glue frame does not detach from the second frame during the spin drying process, while also facilitating the feeding and discharging of the glue frame;

[0020] 5. When the second frame is initially aligned with the feeding and discharging channels, a positioning hole is opened along the same horizontal line of the sleeve. After the spin-drying is completed, the positioning cylinder automatically positions the positioning hole. After detecting the shortest distance, it quickly starts and drives the sleeve to move inward and extend into the positioning hole, completing the precise positioning of the second frame. This easily coordinates with the feeding and discharging of the rubber frame and improves efficiency. Attached Figure Description

[0021] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0022] Figure 2 This is a schematic diagram of the first partial three-dimensional structure of the present invention;

[0023] Figure 3 This is a schematic diagram of the second partial three-dimensional structure of the present invention;

[0024] Figure 4 This is a three-dimensional structural diagram of the water storage frame in this invention;

[0025] Figure 5 This is a schematic diagram of the third partial three-dimensional structure of the present invention;

[0026] Figure 6 This is an exploded view of the dehydration component in this invention;

[0027] Figure 7 This is a three-dimensional structural diagram of the transfer plate in this invention;

[0028] Figure 8 This is a three-dimensional structural diagram of the angled guardrail in this invention;

[0029] Figure 9 This is a three-dimensional structural diagram of the positioning component in this invention;

[0030] Figure 10 This is a three-dimensional structural diagram of the positioning cylinder and sleeve in the positioning assembly.

[0031] Numbering in the diagram: 1-Main support frame, 2-Outer leg, 3-Top cover, 4-Wall panel, 5-Feeding channel, 6-Discharge channel, 7-Reinforcing horizontal plate, 8-Hinge seat, 9-Square shaft, 10-Square plate, 11-First frame, 12-Second frame, 13-First guide rod, 14-Limit rod, 15-Second guide rod, 16-Secondary support frame, 17-Support seat, 18-Powerful motor, 19-Dehydration assembly, 20-Guide angle, 21-First cylinder, 22-Angle baffle, 23-Rotating plate, 24-Fisheye bearing, 25-Second cylinder, 26-Water storage frame, 27-Water outlet, 28-Rubber plug, 29-Box body, 30-Positioning plate, 31-Positioning hole, 32-Mounting bracket, 33-Positioning cylinder, 34-Sleeve, 35-Observation door panel, 36-Door frame. Detailed Implementation

[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0033] Example 1

[0034] like Figures 1 to 10 The horizontal spin dryer shown includes a main support frame 1, with multiple legs 2 at the bottom of the main support frame 1, a top cover 3 connected to the top of the main support frame 1, and wall panels 4 on the left and right sides of the main support frame 1. A feeding channel 5 is opened on the left wall panel 4, and a discharge channel 6 is opened on the right wall panel 4. Reinforcing horizontal plates 7 are provided on both sides of the main support frame 1, and hinge seats 8 are installed inside each reinforcing horizontal plate 7. A square shaft 9 is rotatably connected between the hinge seats 8. Four square plates 10 extend from the square shaft 9. A first frame 11 extends between the upper and lower sides of the square plates 10. The first frame 11 is connected to the front and rear sides of the first frame 11. A second frame 12 is welded between the main support frame 1. Four first guide rods 13 are connected vertically between the second frames 12, and four limiting rods 14 are connected horizontally between the second frames 12. Four second guide rods 15 are connected vertically between the first frames 11. A secondary support frame 16 is welded to the right side of the main support frame 1. A receiving seat 17 is connected to the bottom of the secondary support frame 16. A high-power motor 18 is installed in the receiving seat 17. The output shaft of the high-power motor 18 is connected to the square shaft 9. With the square shaft 9 as the upper and lower dividing line, every two first guide rods 13, limiting rods 14, and second guide rods 15 form a dehydration component. 19; The dewatering assembly 19 has guide angles 20 extending inward on the left side; The hinge seat 8 is an irregular disc shape; A first cylinder 21 is installed above the feed channel 5, and a folding baffle 22 is connected to the telescopic rod of the first cylinder 21; A rotating plate 23 is hinged at the top of the discharge channel 6, and a fisheye bearing 24 is rotatably provided on the outside of the rotating plate 23. The fisheye bearing 24 is connected to the telescopic rod of the second cylinder 25; A positioning plate 30 is provided on the bottom right side of the second frame 12, and a positioning hole 31 is provided on the positioning plate 30; The bottom of the reinforcing cross plate 7 is connected to the main support frame 1. There is a mounting frame 32, and a positioning cylinder 33 is provided on the right side of the mounting frame 32. The telescopic rod of the positioning cylinder 33 extends through the mounting frame 32 and is connected to a sleeve 34. A water storage frame 26 is slidably installed between the lower parts of the main support frame 1. A water outlet hole 27 is opened on the bottom right side of the water storage frame 26, and a rubber plug 28 is placed in the water outlet hole 27. A box 29 is connected between the auxiliary support frame 16 and the top of the main support frame 1. The right side of the box 29 extends downward to cover the top cover 3 and the right side wall panel 4. Two sets of observation door panels 35 are hinged on the front and rear sides of the main support frame 1, and door frames 36 are hinged on the front and rear sides of the auxiliary support frame 16.

[0035] This invention utilizes a powerful motor 18 to drive the square shaft 9 to rotate, which in turn drives the second frame 12 to rotate laterally. Centrifugal force is used to rapidly dehydrate the rubber frames inside the second frame 12. Simultaneously, the first guide rod 13, the second guide rod 15, and the limiting rod 14 provide multi-directional positioning of the rubber frames, creating two dehydration spaces within the second frame 12. Each space can accommodate more than four rubber frames, enabling high-efficiency spin-drying of a large number of units. The upper dehydration space aligns with the inlet and outlet channels 6, allowing workers or production lines to precisely push the rubber frames into the second frame 12 simply by moving them linearly, achieving automatic operation. Feeding and discharging improve work efficiency; appropriate sealing components are provided on the outer side of the feeding and discharging channels 6 to ensure that the glue frame does not detach from the second frame 12 during the spin-drying process, while also facilitating the feeding and discharging of the glue frame; when the second frame 12 is initially aligned with the feeding and discharging channels 6, a positioning hole 31 is opened along the same horizontal line of the sleeve 34. After spin-drying, the positioning cylinder 33 automatically positions the positioning hole 31. After detecting the shortest distance, it quickly starts, driving the sleeve 34 to move inward and extend into the positioning hole 31, completing the precise positioning of the second frame 12, easily coordinating the feeding and discharging of the glue frame, and improving efficiency.

[0036] Example 2

[0037] like Figures 1 to 10 The horizontal spin dryer shown, as its name suggests, is a device that achieves rapid dehydration by driving the items to be processed to rotate horizontally, using centrifugal force. Compared to common vertical spin dryers, the center of rotation of the horizontal spin dryer is closer to the ground, making the machine less prone to displacement due to its own weight during rotation. Therefore, it is more suitable for use in cleaning production lines. The main support frame 1 has multiple support legs 2 at its bottom. These legs support the spin-drying action and reduce the force of centrifugal force transmitted directly to the ground through the main support frame 1. Under the influence of high-speed rotation, the ground will also vibrate. The support legs 2 effectively disperse the vibration force, providing cushioning and allowing the horizontal spin dryer to remain more stable in place for operation.

[0038] The main support frame 1 has reinforcing horizontal plates 7 on both the left and right sides. Hinge seats 8 are installed inside each reinforcing horizontal plate 7. A square shaft 9 is rotatably connected between the hinge seats 8, serving as the power shaft of the horizontal spin dryer. A secondary support frame 16 is welded to the right side of the main support frame 1. A support seat 17 is connected to the bottom of the secondary support frame 16. A high-power motor 18 is installed inside the support seat 17. Generally, the higher the motor power, the higher the production capacity of the horizontal spin dryer and the larger the amount of material it can handle. However, the motor power also affects the energy consumption and overall performance of the horizontal spin dryer, i.e., its service life. Considering that this invention is for spin-drying heavy objects such as washed plastic frames, a high-power motor 18 is provided. The output shaft of the high-power motor 18 is connected to the square shaft 9, thereby driving the high-power motor 18 to rotate the square shaft 9.

[0039] Four square plates 10 extend from the square shaft 9. These plates 10 cooperate with the square shaft 9, and the multiple angles prevent overload and failure to rotate caused by excessive force on the bearings, a situation common with ordinary round shafts. A first frame 11 extends between the upper and lower sides of the square plates 10. The frame is roughly shaped such that round rods are welded to both the upper and lower sides of the square plates 10, and these rods are symmetrically connected front and back to maintain the frame's balance. A second frame 12 is welded between the front and back sides of the first frame 11. The second frame 12 is specifically shaped like a square frame, and its inner side is welded to the four endpoints of the first frame 11. In other words, four second frames 12 are connected to the square shaft 9, forming the approximate framework for the spin-drying process.

[0040] Furthermore, four first guide rods 13 are connected between the second frames 12. The first guide rods 13 are welded on both the top and bottom, with two welded on each side, thus providing secondary definition to the top and bottom surfaces of the second frames 12. Four second guide rods 15 are connected between the first frames 11. The second guide rods 15 are welded on both the top and bottom, with two welded on each side, thus providing secondary definition to the top and bottom surfaces of the first frames 11.

[0041] This creates a dehydration space between the first guide rod 13 and the second guide rod 15, located on the upper and lower sides of the second frame 12, respectively. When the operator performs the spin-drying operation, the plastic frames are pushed into the upper dehydration space sequentially. Once full, the square shaft 9 is rotated 180°, causing the second frame 12 to rotate 180°, moving the lower dehydration space to the upper side for easier feeding and thus enabling the spin-drying of multiple quantities of material. Simultaneously, four limiting rods 14 are connected between the second frames 12. These limiting rods 14 are located at the front and rear of the dehydration space, further limiting the plastic frames and preventing them from detaching from the machine during spin-drying.

[0042] Example 3

[0043] like Figures 1 to 10The horizontal spin dryer shown uses a powerful motor 18 to drive a square shaft 9 to rotate at high speed. The square shaft 9 then drives a second frame 12 to rotate, which contains multiple plastic frames, thus achieving spin drying and dehydration. The main support frame 1 has wall panels 4 on both sides to intercept liquid spilled from the plastic frames during dehydration, preventing the liquid from affecting the appearance or internal parts of other objects on the production line. The upper part of each wall panel 4 has a square groove, from left to right: an inlet channel 5 and an outlet channel 6. The plastic frames can be pushed in through the inlet channel 5 on the left side of the wall panel 4 until the upper dehydration space is filled. Then, the second frame 12 is rotated, causing the lower dehydration space to rotate upwards and align with the inlet channel 5, allowing for refilling. Simultaneously, the spun-dry plastic frames can be removed and collected through the outlet channel 6.

[0044] The dehydration space (i.e., the first guide rod 13, the limiting rod 14, and the second guide rod 15) is provided with a guide angle 20 extending inward on one side of the feeding channel 5. Specifically, the tilt state is outward expansion, which can provide a simple guiding effect for the feeding frame. This avoids the frame from getting stuck in the feeding channel 5 and being unable to move due to the frame size being too similar to the feeding channel 5, which would affect the subsequent drying operation of the frame and reduce work efficiency.

[0045] Example 4

[0046] Based on the contents of Embodiments 2 and 3, the second frame 12 has two dehydration spaces, which need to be rotated 180° to fill the materials on both sides. The bottom of the upper dehydration space will be aligned with the feeding channel 5. In order to achieve smooth pushing of the frame, the shape of the hinge seat 8 located inside the feeding channel 5 also needs to be changed accordingly. The position of the hinge seat 8 protruding from the feeding channel 5 is cut off, and finally an irregular disc shape is formed.

[0047] Example 5

[0048] Based on the description in Example 3 that "square grooves are provided on the upper part of the wall panel 4, with a feeding channel 5 and a discharging channel 6 from left to right, that is, the glue frame can be pushed in through the feeding channel 5 on the left side of the wall panel 4 until the upper dehydration space is filled, and then the second frame 12 is rotated to rotate the lower dehydration space to the top, aligning it with the feeding channel 5, so that the glue can be filled again; at the same time, the glue frame after spin-drying can also be removed and collected through the discharging channel 6", it is also necessary to seal the channels on both sides with appropriate force to ensure that the glue frame does not fall off during the spin-drying process, while also facilitating the filling and unloading of materials, thereby improving work efficiency.

[0049] First, a first cylinder 21 is installed on the outside of the left wall panel 4, above the feeding channel 5. A corner baffle 22 is connected to the telescopic rod of the first cylinder 21. The area of ​​the corner baffle 22 is larger than that of the feeding channel 5. When the first cylinder 21 is driven, the corner baffle 22 can be moved downward to close the feeding channel 5 and prevent the plastic frame from being thrown out. When it is necessary to push the plastic frame in for feeding, the first cylinder 21 is driven upward to no longer block the feeding channel 5.

[0050] Secondly, a rotating plate 23 is hinged at the top of the discharge channel 6. According to the conventional assembly line movement procedure, as long as the rubber frame stops spinning, moving to the right will push the rotating plate 23 upward, no longer blocking the discharge channel 6, thus achieving automatic unloading. However, this method cannot withstand the impact force generated by the rubber frame during spinning. Therefore, a second cylinder 25 is installed at the top right side of the main support frame 1. The extension rod of the second cylinder 25 is connected to the fisheye bearing 24 of the rotating plate 23. That is, when the second cylinder 25 extends, it can apply pressure to the rotating plate 23 through the fisheye bearing 24, making it stick tightly to the discharge channel 6 and intercepting the rubber frame. When spinning is finished, the second cylinder 25 retracts and no longer applies pressure to the fisheye bearing 24. At this time, the rotating plate 23 is pushed by the force of the rubber frame moving to the right and rotates on the fisheye bearing 24 to allow the rubber frame to be unloaded.

[0051] Example 6

[0052] like Figures 1 to 10 The horizontal spin dryer shown primarily uses a powerful motor 18 to drive a square shaft 9 to rotate at high speed. The square shaft 9 then drives a second frame 12 to rotate. Multiple plastic frames are placed inside the second frame 12, thus achieving spin drying and dehydration of the plastic frames. However, after operation stops, the powerful motor 18 cannot guarantee accurate alignment of the upper dehydration space with the feeding channel 5. Therefore, it is necessary to continuously drive the powerful motor 18 to slowly rotate the second frame 12 until the dehydration space aligns with the feeding channel 5, in conjunction with discharging the spin-dried plastic frames and feeding the plastic frames to be cleaned.

[0053] During the alignment process, operators cannot constantly monitor the machine's internal structure. Therefore, a positioning component is installed to automatically position the second frame 12, indirectly aligning the dehydration space with the feed channel 5. The positioning component includes a mounting bracket 32, a positioning cylinder 33, a sleeve 34, a positioning plate 30, and a positioning hole 31. The mounting bracket 32 ​​is positioned between the bottom of the right reinforcing cross plate 7 and the main support frame 1. The positioning cylinder 33 is located to the right of the mounting bracket 32, and its extension rod passes through the mounting bracket 32 ​​to connect to the sleeve 34. Operation of the positioning cylinder 33 causes the sleeve 34 to move inward, extending into the main support frame 1. Simultaneously, a positioning hole 31 is located on the bottom right side of the second frame 12, and a positioning hole 31 is also provided on the positioning plate 30. 1. The positioning hole 31 is opened along the same horizontal line of the sleeve 34 when the second frame 12 is initially aligned. After the spin-drying step is completed, the powerful motor 18 stops driving, and drives the square shaft 9, the second frame 12 and the above rubber frames to slowly stop rotating. At this time, the positioning cylinder 33 automatically positions the position of the positioning hole 31. After detecting the shortest distance, it starts quickly and drives the sleeve 34 to move inward and extend into the positioning hole 31, completing the precise positioning of the second frame 12. This improves efficiency and also facilitates the feeding and unloading of the rubber frames.

[0054] Example 7

[0055] like Figures 1 to 10 The horizontal spin dryer shown has a top cover 3 on the top of the main support frame 1. The top cover 3 is inverted triangular in shape, which can intercept the liquid generated during the spin drying process to prevent the liquid from affecting other internal parts of the machine or from staying at the welding position, causing rust and affecting the internal environment of the machine. At the same time, it can also drive the liquid to slide down through the top cover 3, and the liquid will slowly spread outward during the sliding process, and then slide down through the main support frame 1 to prevent the liquid from falling onto the rubber frame and causing ineffective spin drying.

[0056] Furthermore, a water storage frame 26 is slidably installed between the lower parts of the main support frame 1 to catch the splashed liquid. When the accumulated water reaches a certain level, the rubber plug 28 at the bottom of the water storage frame 26 can be pulled out to allow the internal liquid to be discharged out through the water outlet 27, thus achieving regular liquid cleaning.

[0057] Example 8

[0058] like Figures 1 to 10The horizontal spin dryer shown includes a main support frame 1, which supports the rotation of a second frame 12, thereby driving multiple built-in rubber frames to rotate and achieve spin drying and dehydration during high-speed rotation. At the same time, a top cover 3 is welded to the top of the main support frame 1 to intercept the liquid generated during the spin drying process and prevent the liquid from affecting other internal components of the machine. A secondary support frame 16 is welded to the right side of the main support frame 1 to support the installation of a powerful motor 18, which drives the rotation of the second frame 12 and also prevents work accidents caused by improper installation.

[0059] A housing 29 is connected between the top of the auxiliary support frame 16 and the main support frame 1. The right side of the housing 29 extends downward to cover the top cover 3 and the right side wall panel 4. Two sets of observation doors 35 are hinged to both the front and rear sides of the main support frame 1, with two doors in each set, evenly distributed on both sides of the main support frame 1. This allows operators to open the observation doors 35 during operation to check the internal spin-drying process. Closing the doors can also prevent unnecessary safety accidents and reduce safety hazards. Door frames 36 are hinged to both the front and rear sides of the auxiliary support frame 16 for the placement and protection of the high-power motor 18.

[0060] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, 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 list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0061] The above description is only used to illustrate the technical solution of the present invention and is not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of the present invention, as long as they do not depart from the spirit and scope of the technical solution of the present invention, should be covered within the scope of the claims of the present invention.

Claims

1. A horizontal spin dryer, comprising a main support frame (1), wherein the main support frame (1) is provided with a plurality of support legs (2) at its bottom, a top cover (3) is connected to the top of the main support frame (1), and wall panels (4) are provided on the left and right sides of the main support frame (1), wherein a feeding channel (5) is provided on the left wall panel (4) and a discharging channel (6) is provided on the right wall panel (4), characterized in that, The main support frame (1) is provided with reinforcing horizontal plates (7) on both the left and right sides. The inner side of each reinforcing horizontal plate (7) is equipped with a hinge seat (8). A square shaft (9) is rotatably connected between the hinge seats (8). Four square plates (10) extend from the square shaft (9). A first frame (11) extends between the upper and lower sides of the square plates (10). A second frame (12) is welded between the front and rear sides of the first frame (11). Four first guide rods (13) are connected vertically between the second frames (12). Four limiting rods (14) are connected horizontally between the second frames (12). Four second guide rods (15) are connected vertically between the first frames (11). A secondary support frame (16) is welded to the right side of the main support frame (1). A receiving seat (17) is connected to the bottom of the secondary support frame (16). A powerful motor (18) is installed inside the receiving seat (17). Using the square axis (9) as the upper and lower dividing line, every two first guide rods (13), limiting rods (14), and second guide rods (15) form a dehydration assembly (19). A first cylinder (21) is installed above the feed channel (5), and a folding baffle (22) is connected to the telescopic rod of the first cylinder (21). A rotating plate (23) is hinged at the top of the discharge channel (6). A fish-eye bearing (24) is rotatably provided on the outside of the rotating plate (23). The fish-eye bearing (24) is connected to the telescopic rod of the second cylinder (25). The second frame (12) has a positioning plate (30) on the bottom right side, and a positioning hole (31) is provided on the positioning plate (30). The bottom of the reinforcing cross plate (7) is connected to the main support frame (1) by a mounting frame (32). The mounting frame (32) has a positioning cylinder (33) on the right side. The telescopic rod of the positioning cylinder (33) extends through the mounting frame (32) and is connected to a sleeve (34).

2. A horizontal spin dryer according to claim 1, characterized in that, The dehydration component (19) has a guide angle (20) extending inward on the left side.

3. A horizontal spin dryer according to claim 1, characterized in that, The hinge seat (8) is an irregularly shaped disc.

4. A horizontal spin dryer according to claim 1, characterized in that, A water storage frame (26) is slidably arranged between the lower parts of the main support frame (1). A water outlet (27) is opened on the right side of the bottom of the water storage frame (26), and a rubber stopper (28) is placed in the water outlet (27).

5. A horizontal spin dryer according to claim 1, characterized in that, A box (29) is connected between the top of the secondary support frame (16) and the top of the main support frame (1). The right side of the box (29) extends downward to cover the top cover (3) and the right side wall panel (4).

6. A horizontal spin dryer according to claim 5, characterized in that, The main support frame (1) has two sets of observation door panels (35) hinged to both the front and rear sides, and the secondary support frame (16) has door frames (36) hinged to both the front and rear sides.

Citation Information

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