An energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine

Through the improved sampling structure, fixed structure and temperature control structure, the inaccurate sampling of the filter washing dryer, inconvenient replacement of the stirring leaf and low chassis installation efficiency are solved, and the effects of multi-point sampling, rapid replacement and energy-saving temperature control are achieved.

CN120346578BActive Publication Date: 2025-08-29JIANGSU JUDING ENVIRONMENTAL PROTECTION & ENERGY-SAVING EQUIP MFG CO LTD
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Patent Information

Application Number
CN202510852861.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2025-08-29
Estimated Expiration
2045-06-24

AI Technical Summary

Technical Problem

The existing filter washing dryers have problems such as poor detection effect, inflexible operation and low installation efficiency when sampling and replacing the stirring blades. Especially because the sampling valve is arranged at the cylinder wall, the detection is inaccurate, the bottom space is small, resulting in low efficiency in replacing the stirring blades, and the installation and fixing efficiency of the filter chassis are slow.

Method used

An energy-saving and environmentally friendly temperature control system including sampling structure, fixed structure, drive structure, installation structure and temperature control structure is designed. Multi-point sampling is achieved through improved sampling tubes and sealing plates, and the sampling efficiency is improved by using screws and drive parts; the combination of fixed blocks and mounting sleeves is achieved to achieve rapid replacement of stirring blades; the installation efficiency of filter chassis is improved through the coordination of positioning structures and lifting blocks; and precise temperature control and energy saving are achieved through the temperature control structure.

Benefits of technology

Multi-point sampling and detection of the filter washing dryer is realized, which improves detection accuracy; simplifies the replacement process of the stirring blade, which improves operating flexibility and efficiency; speeds up the installation process of the filter chassis, which improves overall operating efficiency; and achieves energy-saving and environmentally friendly temperature control effect.

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Abstract

The present invention relates to the technical field of filter washing and drying machines, and specifically to an energy-saving and environmentally friendly temperature control system for a filter washing and drying machine, comprising a filter washing and drying machine body, a sampling structure, a fixing structure, a driving structure, a positioning structure, a mounting structure, a temperature control structure, a stirring shaft, a mounting sleeve and a filter chassis; the arrangement of the temperature control structure facilitates the control of an external delivery pump to accurately adjust the flow rate and flow velocity of a heat medium in a spiral tube, thereby achieving energy-saving and environmentally friendly temperature control; the arrangement of the sampling structure facilitates the sampling of materials at different positions in the filter washing and drying machine body to perform moisture detection and improve the detection effect; the arrangement of the mounting structure facilitates the rapid fixing of the filter chassis and a lifting block, thereby improving the installation efficiency between the filter chassis and the filter washing and drying machine body; the arrangement of the fixing structure and the driving structure facilitates the automatic disassembly and assembly of the mounting sleeve, thereby facilitating the rapid replacement of stirring blades on the mounting sleeve, thereby improving replacement efficiency and improving operational flexibility.
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Description

Technical Field

[0001] The present invention relates to the technical field of filter washing and drying machines, in particular to an energy-saving and environment-friendly temperature control system for filter washing and drying machines. Background Art

[0002] The filter-washer-dryer is a chemical machinery that integrates filtering, washing, and drying functions and is widely used in the chemical, pharmaceutical, food, and metallurgical industries. Its core advantage lies in its ability to efficiently process solid-liquid mixtures. Through an integrated process, it achieves solid-liquid separation, cleaning and purification, and drying and forming. This effectively reduces material transfer losses and process complexity, making it particularly suitable for fine chemical production scenarios requiring high purity and dryness.

[0003] However, when the moisture content of the material is detected after it is dried, since the sampling valve is set at the wall of the cylinder, samples can only be taken from near the wall of the cylinder, which makes it inconvenient to obtain samples of materials at different positions, resulting in the test results not being able to reflect the actual moisture content of the entire material, and the test effect is poor; and when replacing the stirring blades, the filter washing and drying machine is disassembled through the bottom filter chassis, and then the stirring blades are disassembled and replaced. Due to the small bottom space, the operational flexibility during replacement is low, resulting in low replacement efficiency; when the filter chassis is installed, the lifting block is driven by two hydraulic rods to drive the filter chassis to move upward. Before lifting the filter chassis, the slider and the guide rail on the filter chassis need to be fixed with bolts to improve stability during lifting. The two are fixed with bolts, and the fixing efficiency is slow, which leads to reduced installation efficiency between the filter chassis and the filter washing and drying machine. Summary of the Invention

[0004] In view of the problems in the prior art, the present invention provides an energy-saving and environment-friendly temperature control system for a filter, washing and drying machine.

[0005] The technical solution adopted by the present invention to solve the technical problem is: an energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine, comprising a filter, washing and drying machine body, a sampling structure mounted on the filter, washing and drying machine body, a filter base mounted on the filter, washing and drying machine body, a stirring shaft mounted on the filter, washing and drying machine body, a mounting sleeve detachably connected to the stirring shaft, a fixing structure provided between the stirring shaft and the mounting sleeve, a driving structure mounted on the filter base, a mounting structure mounted on the filter, washing and drying machine body, and a temperature control structure mounted on the filter, washing and drying machine body;

[0006] The sampling structure includes a sampling tube slidably connected to the filter, washing and drying machine body and a sealing plate slidably connected to the sampling tube, the sealing plate is provided with a through hole, a connecting cone is fixedly connected to the sampling tube, a mounting plate is fixedly connected to the filter, washing and drying machine body, and three material guide tubes are fixedly connected to the mounting plate.

[0007] Specifically, the sampling tube is fixedly connected to a connecting cone, the connecting cone is fixedly connected to a sealing ring, the sealing ring is in conflict with the filter washing and drying machine body, the filter washing and drying machine body is fixedly connected to a fixing frame, the sampling tube is fixedly connected to a guide block, and the guide block is slidably connected to the fixed frame.

[0008] Specifically, a first screw rod is rotatably connected to the fixed frame, the guide block is threadedly connected to the first screw rod, a second driving member is installed on the fixed frame, the first screw rod is driven by the second driving member, a first driving member is installed on the sampling tube, and the sealing plate is driven by the first driving member.

[0009] Specifically, the fixed structure includes two fixed blocks slidably connected to the stirring shaft and two mounting rods fixedly connected to the fixed blocks. The fixed blocks are engaged with the mounting sleeves. A mounting shaft is rotatably connected between the two mounting rods. A driving block is slidably connected to the stirring shaft. Two driving grooves are provided on the driving block. The two mounting shafts are respectively rollingly engaged with the two driving grooves.

[0010] Specifically, a second screw is rotatably connected in the stirring shaft, the driving block is threadedly connected to the second screw, a spline groove is provided on the second screw, a protective block is slidably connected to the second screw, a connecting column is fixedly connected to the protective block, the connecting column is slidably connected to the second screw, a connecting plate is fixedly connected to the connecting column, the connecting plate is slidably connected to the second screw, and a first spring is fixedly connected between the connecting plate and the second screw.

[0011] Specifically, the driving structure includes a driving shaft rotatably connected to the filter chassis and a spline rod slidably connected to the driving shaft, a first pulley is fixedly connected to the driving shaft, a transmission shaft rotatably connected to the filter chassis, a second pulley is fixedly connected to the transmission shaft, and the first pulley and the second pulley are driven by a belt.

[0012] Specifically, a swivel is fixedly connected to the spline rod, a third driving member is installed on the filter chassis, the swivel is rotatably connected to the driving end of the third driving member, a fourth driving member is installed on the filter chassis, and the transmission shaft is driven by the fourth driving member.

[0013] Specifically, the filter chassis is provided with a positioning structure, which includes a slip ring slidably connected to the filter chassis and a positioning frame fixedly connected to the slip ring, the positioning frame is slidably connected to the filter chassis, the mounting sleeve is fixedly connected with a positioning rod, the slip ring is fixedly connected with a slide, the slide is slidably connected to the filter chassis, the slide is fixedly connected with a push rod, the push rod is in contact with the filter washing and drying machine body, a guide rod is fixedly connected in the filter chassis, the slide is slidably connected to the guide rod, and a tension spring is fixedly connected between the slide and the filter chassis.

[0014] Specifically, the mounting structure includes two fifth driving members installed on the filter washing and drying machine body and a lifting block installed on the driving end of the fifth driving member, the lifting block is fixedly connected to a guide frame, the filter chassis is fixedly connected to a slider, the slider is slidably connected to the guide frame, the guide frame is fixedly connected to a guide sleeve, the guide sleeve is fixedly connected to a block, the block is fixedly connected to a pressing plate, the guide sleeve is fixedly connected to an anti-slip rod, the pressing plate is slidably connected to the anti-slip rod, and a second spring is fixedly connected between the pressing plate and the anti-slip rod.

[0015] Specifically, the temperature control structure includes a temperature detector installed on the filter washing and drying machine body and a control module installed on the filter washing and drying machine body. A transmission module is installed on the filter washing and drying machine body, and a spiral tube is installed in the filter washing and drying machine body.

[0016] The beneficial effects of the present invention are:

[0017] (1) The energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine described in the present invention has a temperature control structure provided on the filter, washing and drying machine body. The setting of the temperature control structure facilitates the control of an external delivery pump to accurately adjust the flow rate and flow velocity of the heat medium in the spiral tube, thereby achieving energy-saving and environmentally friendly temperature control.

[0018] (2) The energy-saving and environmentally friendly temperature control system for a filter-washing and drying machine described in the present invention has a sampling structure provided on the filter-washing and drying machine body. The arrangement of the sampling structure facilitates sampling of materials at different positions in the filter-washing and drying machine body to perform moisture detection and improve the detection effect.

[0019] (3) The energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine described in the present invention is provided with a mounting structure on the filter, washing and drying machine body. The arrangement of the mounting structure facilitates the rapid fixation of the filter chassis and the lifting block, thereby improving the installation efficiency between the filter chassis and the filter, washing and drying machine body.

[0020] (4) The energy-saving and environmentally friendly temperature control system for a filter washing and drying machine described in the present invention has a fixed structure between the stirring shaft and the mounting sleeve, a driving structure on the filter chassis, and a positioning structure on the filter chassis. The setting of the fixed structure and the driving structure facilitates automatic disassembly and assembly of the mounting sleeve, thereby facilitating rapid replacement of the stirring blades on the mounting sleeve, improving replacement efficiency and increasing operational flexibility. The setting of the positioning structure can position the mounting sleeve, ensuring that the mounting sleeve is plugged into the stirring shaft during installation. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] The present invention will be further described below with reference to the accompanying drawings and examples.

[0022] Figure 1 A schematic diagram of the overall structure of a preferred embodiment of an energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine provided by the present invention;

[0023] Figure 2 This is a schematic diagram of the connection structure between the sampling tube and the filter washing and drying machine body of the present invention;

[0024] Figure 3 for Figure 2 An enlarged schematic diagram of the structure of section A is shown;

[0025] Figure 4 It is a structural schematic diagram of the sealing plate of the present invention;

[0026] Figure 5 This is a schematic diagram of the connection structure between the stirring shaft and the filter washing and drying machine body of the present invention;

[0027] Figure 6 for Figure 5 An enlarged schematic diagram of the structure of part B is shown;

[0028] Figure 7 for Figure 6 The enlarged schematic diagram of the C-section structure is shown;

[0029] Figure 8 This is a schematic diagram of the connection structure between the fixing block and the mounting rod of the present invention;

[0030] Figure 9 A schematic diagram of the connection structure between the protection block and the connection column of the present invention;

[0031] Figure 10 This is a schematic diagram of the connection structure between the spiral tube and the filter washing and drying machine body of the present invention;

[0032] Figure 11 for Figure 10 An enlarged schematic diagram of the D portion structure is shown;

[0033] Figure 12 for Figure 10An enlarged schematic diagram of the E-section structure is shown;

[0034] Figure 13 Schematic diagram of the connection structure between the slip ring and the positioning frame of the present invention;

[0035] Figure 14 This is a schematic diagram of the connection structure between the temperature detector and the filter-washer-dryer body of the present invention;

[0036] Figure 15 for Figure 14 The enlarged schematic diagram of the F part structure is shown;

[0037] Figure 16 It is a schematic diagram of the connection structure between the guide frame and the lifting block of the present invention.

[0038] In the figure: 1. Filter washing and drying machine body; 2. Sampling structure; 201. Sampling tube; 202. Sealing plate; 203. Through hole; 204. First driving member; 205. Mounting plate; 206. Material guide tube; 207. Connecting cone; 208. Sealing ring; 209. Fixed frame; 210. Guide block; 211. First screw rod; 212. Second driving member; 3. Fixed structure; 301. Fixed block; 302. Mounting rod; 303. Mounting shaft; 304. Driving block; 305. Driving groove; 306. Second screw rod; 307. Protective block; 308. Connecting column; 309. Connecting plate; 310. First spring; 311. Spline groove; 4. Driving structure; 401. Driving shaft; 402. Spline rod; 403. First leather Pulley; 404, swivel; 405, third driving member; 406, transmission shaft; 407, second pulley; 408, fourth driving member; 5, positioning structure; 501, slip ring; 502, positioning frame; 503, positioning rod; 504, slide plate; 505, guide rod; 506, tension spring; 507, push rod; 6, mounting structure; 601, fifth driving member; 602, lifting block; 603, guide frame; 604, slide block; 605, guide sleeve; 606, stop block; 607, pressing plate; 608, anti-slip rod; 609, second spring; 7, temperature control structure; 701, temperature detector; 702, control module; 703, transmission module; 704, spiral tube; 8, stirring shaft; 9, mounting sleeve; 10, filter chassis. DETAILED DESCRIPTION

[0039] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0040] like Figure 1 — Figure 8 and Figure 13As shown, the energy-saving and environmentally friendly temperature control system for a filter washing and drying machine according to the present invention includes a filter washing and drying machine body 1, a sampling structure 2 installed on the filter washing and drying machine body 1, a filter chassis 10 installed on the filter washing and drying machine body 1, a stirring shaft 8 installed on the filter washing and drying machine body 1, a mounting sleeve 9 detachably connected to the stirring shaft 8, a fixing structure 3 provided between the stirring shaft 8 and the mounting sleeve 9, a driving structure 4 installed on the filter chassis 10, a mounting structure 6 installed on the filter washing and drying machine body 1, and a temperature control structure 7 installed on the filter washing and drying machine body 1; the sampling structure 2 includes a sampling tube 201 slidably connected to the filter washing and drying machine body 1 and a sealing plate 202 slidably connected to the sampling tube 201. The sealing plate 202 is provided with a through hole 203 , the sampling tube 201 is fixedly connected with a connecting cone 207 , the filter washing and drying machine body 1 is fixedly connected with a mounting plate 205 , and the mounting plate 205 is fixedly connected with three material guide pipes 206 .

[0041] Specifically, such as Figure 1 — Figure 4 As shown, the sampling tube 201 is fixedly connected to a connecting cone 207, which can reduce resistance during the movement of the sampling tube 201. The connecting cone 207 is fixedly connected to a sealing ring 208, which conflicts with the filter washing and drying machine body 1. The filter washing and drying machine body 1 is fixedly connected to a fixing frame 209. The sampling tube 201 is fixedly connected to a guide block 210, which is slidably connected to the fixing frame 209. The fixing frame 209 is rotatably connected to a first screw rod 211. The guide block 210 is slidably connected to the fixing frame 209. The block 210 is threadedly connected to the first screw rod 211, and the second driving member 212 is installed on the fixed frame 209. The first screw rod 211 is driven by the second driving member 212. The first driving member 204 is installed on the sampling tube 201, and the sealing plate 202 is driven by the first driving member 204. The three through grooves on the sampling tube 201 cooperate with the opening and closing of the sealing plate 202 to facilitate sampling of materials at different positions in the filter washing and drying machine body 1 for moisture detection and improve the detection effect. After the detection is completed and the material is dried, it can be unloaded.

[0042] Specifically, such as Figure 6 — Figure 9 and Figure 11 — Figure 13As shown, the fixed structure 3 includes two fixed blocks 301 slidably connected to the stirring shaft 8 and two mounting rods 302 fixedly connected to the fixed block 301, the fixed block 301 is engaged with the mounting sleeve 9, and a mounting shaft 303 is rotatably connected between the two mounting rods 302, and a driving block 304 is slidably connected to the stirring shaft 8, and two driving grooves 305 are provided on the driving block 304. The two mounting shafts 303 are respectively rolling-matched with the two driving grooves 305. When the driving block 304 slides, the two mounting shafts 303 are rolling-matched in the two inclined driving grooves 305, so that the two fixed blocks 301 move toward each other and no longer engage and press against the mounting sleeve 9. A second screw rod 306 is rotatably connected to the stirring shaft 8. The driving block 304 is threadedly connected to the second screw rod 306, and the second screw rod 306 is provided with a spline groove 311. The second screw rod 306 is slidably connected to a protective block 307, and the protective block 307 is fixedly connected to a connecting column 308. The connecting column 308 is slidably connected to the second screw rod 306, and a connecting plate 309 is fixedly connected to the connecting column 308. The connecting plate 309 is slidably connected to the second screw rod 306, and a first spring 310 is fixedly connected between the connecting plate 309 and the second screw rod 306. The driving structure 4 includes a driving shaft 401 rotatably connected to the filter chassis 10 and a spline rod 402 slidably connected to the driving shaft 401. The driving shaft 401 drives the spline rod 402 to rotate, and the spline rod 4 02 drives the second screw rod 306 to rotate, and the second screw rod 306 drives the driving block 304 to slide through the thread, and the driving shaft 401 is fixedly connected to the first pulley 403, and the filter chassis 10 is rotatably connected to the transmission shaft 406, and the second pulley 407 is fixedly connected to the transmission shaft 406. The first pulley 403 and the second pulley 407 are driven by a belt, and the spline rod 402 is fixedly connected to the swivel 404, and the third driving member 405 is installed on the filter chassis 10. The swivel 404 is rotatably connected to the driving end of the third driving member 405, and the fourth driving member 408 is installed on the filter chassis 10. The transmission shaft 406 is driven by the fourth driving member 408, and the filter chassis 10 is provided with a There is a positioning structure 5, which includes a slip ring 501 slidably connected to the filter chassis 10 and a positioning frame 502 fixedly connected to the slip ring 501, the positioning frame 502 is slidably connected to the filter chassis 10, and a positioning rod 503 is fixedly connected to the mounting sleeve 9. The positioning frame 502 plays the role of positioning the mounting sleeve 9 to ensure that the mounting sleeve 9 is plugged into the stirring shaft 8 during installation and to limit the shaking amplitude of the mounting sleeve 9 during transportation. A slide plate 504 is fixedly connected to the slip ring 501, and the slide plate 504 is slidably connected to the filter chassis 10. A push rod 507 is fixedly connected to the slide plate 504, and the push rod 507 conflicts with the filter washing and drying machine body 1. A guide rod 505 is fixedly connected to the filter chassis 10.The slide plate 504 is slidably connected to the guide rod 505, and a tension spring 506 is fixedly connected between the slide plate 504 and the filter chassis 10.

[0043] Specifically, such as Figure 1 and Figure 14 — Figure 16 As shown, the mounting structure 6 includes two fifth driving members 601 mounted on the filter washing and drying machine body 1 and a lifting block 602 mounted on the driving end of the fifth driving member 601, the lifting block 602 is fixedly connected to a guide frame 603, the filter chassis 10 is fixedly connected to a slider 604, the slider 604 is slidably connected to the guide frame 603, the guide frame 603 is fixedly connected to a guide sleeve 605, the guide sleeve 605 is fixedly connected to a stopper 606, and the filter chassis 10 is fixedly connected to the guide frame 603. The slider 604 moves to a certain position, and the stop block 606 slides upward under the action of the second spring 609 to resist and limit the slider 604, quickly fixing the filter chassis 10 and the lifting block 602, and improving the installation efficiency. A pressing plate 607 is fixedly connected to the stop block 606, and an anti-slip rod 608 is fixedly connected to the guide sleeve 605. The pressing plate 607 is slidably connected to the anti-slip rod 608, and a second spring 609 is fixedly connected between the pressing plate 607 and the anti-slip rod 608.

[0044] Specifically, such as Figure 1 、 Figure 2 and Figure 10 As shown, the temperature control structure 7 includes a temperature detector 701 installed on the filter washing and drying machine body 1 and a control module 702 installed on the filter washing and drying machine body 1. A transmission module 703 is installed on the filter washing and drying machine body 1. During the drying process, the temperature detector 701 detects the temperature in real time and transmits the temperature data to the transmission module 703. After receiving the signal, the transmission module 703 sends an instruction through the control module 702 to control the external delivery pump to accurately adjust the flow rate and flow rate of the heat medium in the spiral tube 704. The entire temperature control process is flexibly adjusted according to the instructions of the control module 702, which can not only meet the process temperature control requirements, but also reduce energy consumption, and achieve energy-saving and environmentally friendly temperature control. A spiral tube 704 is installed in the filter washing and drying machine body 1, and the heat medium flows into the spiral tube 704 and the jacket to heat and dry the filter cake.

[0045] When the present invention is in use, when the filter washing and drying machine body 1 is working, the solid-liquid mixture enters the interior through the feed port, and a positive pressure is formed in the tank by filling with compressed air or nitrogen. At the same time, the drain valve at the bottom of the filter chassis 10 is opened. Under the action of air pressure, the liquid passes through the filter assembly on the filter chassis 10 and is discharged from the drain port, while the solid is trapped on the filter chassis 10 to form a filter cake layer. Subsequently, the cleaning device in the filter washing and drying machine body 1 washes the filter cake. During the washing process, the stirring shaft 8, by virtue of its liftable and rotatable characteristics, drives the filter cake and the washing liquid to be fully mixed, so that the impurities are completely dissolved in the washing liquid. After the cleaning is completed, the washing liquid is discharged through the drain port. In the deliquescence stage, the stirring blades are lifted and reversed to apply pressure to the surface of the filter cake. , complete the dehydration operation. After the dehydration is completed, the heat medium flows into the spiral tube 704 and the jacket to heat and dry the filter cake. At this time, the stirring blade gradually descends, scraping the filter cake layer by layer to speed up the drying speed. After a suitable drying time, the entire drying process is finally completed. During the drying process, the temperature detector 701 detects the temperature in real time and transmits the temperature data to the transmission module 703. After receiving the signal, the transmission module 703 sends an instruction through the control module 702 to control the external delivery pump to accurately adjust the flow rate and flow rate of the heat medium in the spiral tube 704. The entire temperature control process can be flexibly adjusted according to the instruction of the control module 702, which can not only meet the process temperature control requirements, but also reduce energy consumption and achieve energy-saving and environmentally friendly temperature control.

[0046] When sampling is required, the second driving member 212 (preferably a motor) is started, and the motor output shaft rotates to drive the first screw rod 211 to rotate. The first screw rod 211 drives the guide block 210 to slide in the fixed frame 209 through the thread, thereby driving the sampling tube 201 to move into the filter washing and drying machine body 1. During the movement, the connecting cone 207 can reduce the resistance. When the sampling tube 201 moves to the specified position, the first driving member 204 (preferably a hydraulic rod) is started, and the telescopic end of the hydraulic rod contracts to drive the sealing plate 202 to slide. At this time, the end of the sealing plate 202 no longer blocks a through slot on the sampling tube 201, and the two through holes 203 on the sealing plate 202 correspond to the other two through slots. The dried material Then, the hydraulic rod extends and drives the sealing plate 202 to seal the three through grooves. Then, the motor drives the first screw rod 211 to move, so that the sampling tube 201 moves to the outside of the filter washing and drying machine body 1. After it moves to a certain position, the hydraulic rod is started again, so that the sealing plate 202 no longer seals the through grooves. The material in the through grooves falls into the guide tube 206 and finally slides into the sampling bottle threadedly connected to the guide tube 206, completing the sampling work. The three through grooves on the sampling tube 201 cooperate with the opening and closing of the sealing plate 202 to facilitate sampling of materials at different positions in the filter washing and drying machine body 1 for moisture detection and improve the detection effect. After the detection is completed and the material is dry, it can be unloaded;

[0047] When the filter chassis 10 needs to be disassembled and assembled, the fifth driving member 601 (preferably a hydraulic rod) is started, and the telescopic end of the hydraulic rod is extended to drive the lifting block 602 to move downward, and the filter chassis 10 moves downward accordingly under the action of gravity. When the universal wheels of the four supporting legs of the filter chassis 10 come into contact with the ground, the pressing plate 607 is pressed downward, and the pressing plate 607 slides along the anti-slip rod 608. At the same time, the second spring 609 contracts, and the anti-slip rod 608 ensures that the pressing plate 607 slides smoothly, and the pressing plate 607 drives the stopper 606 along the guide sleeve 605 to When the filter chassis 10 is installed, the slider 604 is allowed to slide along the guide frame 603. When the slider 604 hits the inclined surface of the block 606, the block 606 automatically moves downward. When the slider 604 moves to a certain position, the block 606 slides upward under the action of the second spring 609 to block and limit the slider 604, thereby quickly fixing the filter chassis 10 and the lifting block 602 and improving the installation efficiency.

[0048] When the stirring blade on the mounting sleeve 9 needs to be replaced, the third driving member 405 (preferably a hydraulic rod) is started, and the telescopic end of the hydraulic rod extends to drive the rotating ring 404 to move upward, and the rotating ring 404 drives the spline rod 402 to move upward, and the spline rod 402 slides against the protective block 307, and the protective block 307 drives the connecting column 308 and the connecting plate 309 to slide, and the connecting plate 309 causes the first spring 310 to contract, and the protective block 307 plays a protective role on the spline groove 311, and the spline rod 402 continues to move and plugs into the spline groove 311. After the plugging is completed, the fourth driving member 408 (preferably a motor) is started, and the motor output shaft rotates to drive the transmission shaft 406 to rotate, and the transmission shaft 406 drives the second pulley 407 to rotate, and the second pulley 407 drives the first pulley 403 to rotate through the belt, thereby driving the drive shaft 401 to rotate, and the drive shaft 401 drives the spline rod 402 to rotate, and the spline rod 402 drives the second screw rod 306 to rotate, and the second screw rod 306 drives the driving block through the thread. When the filter chassis 10 is removed, the support rod 507 no longer conflicts with the filter washing and drying machine body 1, and the slide plate 504 slides upward under the action of the tension spring 506 and slides smoothly through the guide rod 505, while driving the slip ring 501 and the positioning frame 502 to slide. After the positioning frame 502 slides out of the filter chassis 10, the positioning rod 503 on the installation sleeve 9 is located in the positioning frame 502. The positioning frame 502 plays the role of positioning the installation sleeve 9, ensuring that the installation sleeve 9 is plugged into the agitator shaft 8 during installation and limiting the shaking of the installation sleeve 9 during transportation. By automatically disassembling and assembling the installation sleeve 9, it is convenient to quickly replace the agitator blades on the installation sleeve 9, thereby improving replacement efficiency and operating flexibility.

[0049] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0050] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. An energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine, characterized in that: The invention comprises a filter, washing and drying machine body (1), a sampling structure (2) mounted on the filter, washing and drying machine body (1), a filter base (10) mounted on the filter, washing and drying machine body (1), a stirring shaft (8) mounted on the filter, washing and drying machine body (1), a mounting sleeve (9) detachably connected to the stirring shaft (8), a fixing structure (3) provided between the stirring shaft (8) and the mounting sleeve (9), a driving structure (4) mounted on the filter base (10), a mounting structure (6) mounted on the filter, washing and drying machine body (1), and a temperature control structure (7) mounted on the filter, washing and drying machine body (1); The sampling structure (2) comprises a sampling tube (201) slidably connected to the filter, washing and drying machine body (1) and a sealing plate (202) slidably connected to the sampling tube (201); the sealing plate (202) is provided with a through hole (203); a connecting cone (207) is fixedly connected to the sampling tube (201); a mounting plate (205) is fixedly connected to the filter, washing and drying machine body (1); and three material guide tubes (206) are fixedly connected to the mounting plate (205); The fixing structure (3) comprises two fixing blocks (301) slidably connected to the stirring shaft (8) and two mounting rods (302) fixedly connected to the fixing blocks (301), the fixing blocks (301) being engaged with the mounting sleeve (9), a mounting shaft (303) being rotatably connected between the two mounting rods (302), a driving block (304) being slidably connected to the stirring shaft (8), two driving grooves (305) being provided on the driving block (304), and the two mounting shafts (303) respectively rollingly engaging with the two driving grooves (305); A second screw rod (306) is rotatably connected in the stirring shaft (8), the driving block (304) is threadedly connected to the second screw rod (306), a spline groove (311) is provided on the second screw rod (306), a protective block (307) is slidably connected to the second screw rod (306), a connecting column (308) is fixedly connected to the protective block (307), the connecting column (308) is slidably connected to the second screw rod (306), a connecting plate (309) is fixedly connected to the connecting column (308), the connecting plate (309) is slidably connected to the second screw rod (306), and a first spring (310) is fixedly connected between the connecting plate (309) and the second screw rod (306).

2. The energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine according to claim 1, characterized in that: A connecting cone (207) is fixedly connected to the sampling tube (201), a sealing ring (208) is fixedly connected to the connecting cone (207), the sealing ring (208) contacts the filter, washing and drying machine body (1), a fixing frame (209) is fixedly connected to the filter, washing and drying machine body (1), a guide block (210) is fixedly connected to the sampling tube (201), and the guide block (210) is slidably connected to the fixing frame (209).

3. The energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine according to claim 2, characterized in that: A first screw rod (211) is rotatably connected to the fixed frame (209), the guide block (210) is threadedly connected to the first screw rod (211), a second driving member (212) is installed on the fixed frame (209), the first screw rod (211) is driven by the second driving member (212), a first driving member (204) is installed on the sampling tube (201), and the sealing plate (202) is driven by the first driving member (204).

4. The energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine according to claim 1, characterized in that: The driving structure (4) comprises a driving shaft (401) rotatably connected to the filter chassis (10) and a spline rod (402) slidably connected to the driving shaft (401); a first pulley (403) is fixedly connected to the driving shaft (401); a transmission shaft (406) is rotatably connected to the filter chassis (10); a second pulley (407) is fixedly connected to the transmission shaft (406); and a belt transmission is provided between the first pulley (403) and the second pulley (407).

5. The energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine according to claim 4, characterized in that: A rotating ring (404) is fixedly connected to the spline rod (402), a third driving member (405) is installed on the filter chassis (10), the rotating ring (404) is rotatably connected to the driving end of the third driving member (405), a fourth driving member (408) is installed on the filter chassis (10), and the transmission shaft (406) is driven by the fourth driving member (408).

6. The energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine according to claim 1, characterized in that: The filter chassis (10) is provided with a positioning structure (5), the positioning structure (5) comprising a slip ring (501) slidably connected to the filter chassis (10) and a positioning frame (502) fixedly connected to the slip ring (501), the positioning frame (502) being slidably connected to the filter chassis (10), a positioning rod (503) being fixedly connected to the mounting sleeve (9), a slide plate (504) being fixedly connected to the slip ring (501), the slide plate (504) being slidably connected to the filter chassis (10), a push rod (507) being fixedly connected to the slide plate (504), the push rod (507) being in contact with the filter washing and drying machine body (1), a guide rod (505) being fixedly connected inside the filter chassis (10), the slide plate (504) being slidably connected to the guide rod (505), and a tension spring (506) being fixedly connected between the slide plate (504) and the filter chassis (10).

7. The energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine according to claim 1, characterized in that: The mounting structure (6) comprises two fifth driving members (601) mounted on the filtering, washing and drying machine body (1) and a lifting block (602) mounted on the driving end of the fifth driving member (601); a guide frame (603) is fixedly connected to the lifting block (602); a slider (604) is fixedly connected to the filtering chassis (10); the slider (604) is slidably connected to the guide frame (603); a guide sleeve (605) is fixedly connected to the guide sleeve (605); a stopper (606) is fixedly connected to the stopper (606); a pressing plate (607) is fixedly connected to the guide sleeve (605); an anti-slip rod (608) is fixedly connected to the guide sleeve (605); the pressing plate (607) is slidably connected to the anti-slip rod (608); and a second spring (609) is fixedly connected between the pressing plate (607) and the anti-slip rod (608).

8. The energy-saving and environmentally friendly temperature control system for a filter, washing and drying machine according to claim 1, characterized in that: The temperature control structure (7) comprises a temperature detector (701) mounted on the filter, washing and drying machine body (1) and a control module (702) mounted on the filter, washing and drying machine body (1); a transmission module (703) is mounted on the filter, washing and drying machine body (1); and a spiral tube (704) is mounted in the filter, washing and drying machine body (1).

Citation Information

Patent Citations

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    CN217180052U

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    CN218130193U