Efficient intelligent cheese dewatering and drying all-in-one machine

By using high-temperature pressure-resistant fans, mechanical seals and other technical means in the barrel yarn dehydration and drying machine, the problem of inefficiency in the traditional method is solved, and an efficient and energy-saving dehydration and drying process is achieved, reducing costs and improving yarn quality.

CN222824767UActive Publication Date: 2025-05-02WUXI DONGBAO TECH DEV CO LTD
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Patent Information

Application Number
CN202420787787.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-16
Publication Date
2025-05-02
Estimated Expiration
2034-04-16

AI Technical Summary

Technical Problem

The traditional dehydration and drying methods of cylindrical yarn are inefficient, the process flow is long, it occupies a large amount of workshop sites, and is easily affected by the external environment.

Method used

It provides an efficient intelligent cylindrical dehydration and drying integrated machine, which adopts high-temperature and pressure-resistant fan, mechanical seal, cooler, soda separator and heater device to realize dehydration and drying in a high-pressure sealed environment, reducing noise and improving sealing.

Benefits of technology

It realizes efficient and energy-saving dehydration and drying of cylindrical yarn, which takes up little space and low energy consumption, reduces work costs and ensures high-quality output of yarn.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

An air outlet in the side end of a high-temperature pressure-resistant fan is connected with a heater device, the heater device and a cooler are connected to the inlet end and the outlet end of a cheese cylinder body respectively, the cooler is connected with a steam-water separator, a noise reduction cover is installed outside a motor and the high-temperature pressure-resistant fan, and the noise reduction cover is connected with the motor. A detection pipe is led out of one end of the cheese cylinder body, and a manual adjusting valve, a pneumatic switch valve and a humidity detector are installed on the detection pipe. By means of the mode, the silencing cover can be installed outside the high-temperature pressure-resistant draught fan and the motor, the silencing cover has the characteristics of sound insulation, sound dredging and sound absorption, the cooler and the steam-water separator can enable moist hot air generated by the cheese cylinder to be condensed and subjected to steam-water separation to obtain dry air for circulating air supply, energy is saved, consumption is reduced, and the environment is protected. The mechanical sealing piece is of a Haff multi-piece ring type sealing design structure and is high in sealing performance, the humidity detector can automatically detect the humidity of air in the cylinder and the temperature difference of inlet air and outlet air of yarn, double detection is achieved, and the moisture content of the cheese is ensured.
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Description

Technical Field

[0001] The invention relates to the field of yarn dyeing, and in particular to a high-efficiency intelligent cheese yarn dehydration and drying integrated machine. Background Art

[0002] Traditionally, cheese yarn dehydration and drying are two separate processes. The traditional cheese yarn drying method is that after the cheese yarn is dyed, the sarong is lifted out of the dye vat, and the workers take out the cheese yarn on the sarong and put it into a turnover cart. The workers push the turnover cart to the centrifugal dehydrator for centrifugal dehydration, and then put the dehydrated cheese yarn back into the turnover cart. Then the workers push the dehydrated cheese yarn turnover cart to the dryer, which is generally hot air drying or radio frequency drying. The cheese yarn is loaded into the dryer for drying. After drying is completed, the cheese yarn is loaded into the turnover cart for the next process. The traditional cheese yarn dehydration and drying method is inefficient, the process flow is long, and it occupies a large amount of workshop space.

[0003] The traditional method of dehydrating and drying cheese yarn takes more than 5 hours per ton of yarn, and requires 500 degrees of electricity and a large amount of steam. Since the dehydration and drying processes are not performed in the same machine, they are easily affected by external dust, temperature and humidity during operation.

[0004] Therefore, in order to solve the above problems, the utility model provides a high-efficiency intelligent cheese yarn dehydration and drying all-in-one machine, which occupies a small working space, has high efficiency, low energy consumption, high quality, saves a lot of labor, and can complete drying in a high-pressure closed internal air circulation. The cooler and the steam-water separator can condense the humid hot air generated by the cheese yarn cylinder and separate the steam and water to obtain dry air for circulation and air supply, which saves energy and reduces consumption and greatly reduces working costs. The mechanical seal has a Half multi-piece ring seal design structure with strong sealing and enables the motor to have self-disassembly capability. The humidity detector can automatically detect the humidity of the air in the cylinder and the temperature difference between the inlet and outlet air of the yarn. Double detection ensures the moisture content of the cheese yarn, and the high-temperature and pressure-resistant fan and motor are also noise-reduced. Summary of the invention

[0005] The main technical problem solved by the present invention is to provide a high-efficiency intelligent cheese yarn dehydration and drying integrated machine, which can be installed with a high-temperature and pressure-resistant fan, used in a high-pressure state, and can work under pressure. A silencer is installed on the outside of the high-temperature and pressure-resistant fan and the motor to reduce noise and eliminate sound. A mechanical seal is installed at the connection end between the motor sleeve and the high-temperature and pressure-resistant fan. The mechanical seal has a super-strong sealing design structure and has the ability to be easily disassembled. When replacing the sealing ring, there is no need to disassemble the impeller. The mechanical seal can be directly disassembled and replaced from the outside by directly disassembling it.

[0006] In order to solve the above technical problems, a technical solution adopted by the present invention is: to provide a high-efficiency intelligent cheese yarn dehydration and drying integrated machine, including a cheese yarn cylinder, a motor, a high-temperature and pressure-resistant fan, a cooler, a steam-water separator and a heater device, the front end of the motor is installed with a motor sleeve, the motor is connected to the high-temperature and pressure-resistant fan through the motor sleeve and a mechanical seal is installed at the connecting end, the mechanical seal includes a machine seal seat and a machine seal sheet, a plurality of the machine seal sheets are arranged in the machine seal seat, the plurality of the machine seal sheets are all installed in the machine seal seat and fixed, and the inner side of the machine seal sheet is fixedly clamped to the motor sleeve An air outlet is arranged on the side end of the high temperature and pressure resistant fan and the air outlet is connected to the heater device, the heater device is connected to the air inlet end of the cheese cylinder, the air outlet end of the cheese cylinder is connected to the cooler, the cooler is connected and installed with the front end of the steam-water separator, the rear end of the steam-water separator is connected to the high temperature and pressure resistant fan, a silencer is installed outside the motor and the high temperature and pressure resistant fan, the inner layer of the silencer is provided with a sound insulation board and a sound absorbing board, a detection tube is led out from one end of the cheese cylinder and a manual regulating valve, a pneumatic switch valve and a humidity detector are connected and installed on the detection tube.

[0007] In a preferred embodiment of the present invention, the sound insulation board is installed on the inner wall of the soundproof cover, the sound absorbing board is installed on the outer layer of the sound insulation board, and a sound absorbing porous structure is provided on the sound absorbing board.

[0008] In a preferred embodiment of the present invention, one end of the detection tube is connected to the cheese cylinder, and the other end of the detection tube is connected to the outside, and the humidity detector is arranged at the lower part of the manual regulating valve and the pneumatic switch valve.

[0009] In a preferred embodiment of the present invention, the machine seal seat is composed of two symmetrical semi-circular machine seal blocks, a semi-circular hole is opened in the center of the semi-circular machine seal block, and a plurality of arc grooves are opened on the inner side surface of the semi-circular machine seal block inside the semi-circular hole, and the machine seal piece is connected with the arc groove.

[0010] In a preferred embodiment of the present invention, the machine sealing piece is composed of a plurality of arc pieces assembled into a circular ring shape, and a spring groove is provided on the outer side end surface of the machine sealing piece. After the machine sealing piece is assembled, a spring is installed in the outer spring groove to surround and fix it.

[0011] In a preferred embodiment of the present invention, the machine sealing sheet is composed of three equally divided arc sheets assembled into a circular ring sheet.

[0012] In a preferred embodiment of the present invention, a steam-water separation hook plate is provided in the steam-water separator, a plurality of drip hooks are provided on the steam-water separation hook plate, and a drainage port is provided at the bottom of the steam-water separator.

[0013] In a preferred embodiment of the present invention, a cooling water inlet and a cooling water outlet are respectively provided on both sides of the cooler.

[0014] In a preferred embodiment of the present invention, a reversing device is installed at the bottom of the cheese cylinder, and the heater device and the cooler are respectively connected to two ends of the reversing device.

[0015] The beneficial effects of the present invention are as follows: the present invention is applicable to cheese yarn, warp yarn, and loose fiber, and the fiber varieties can be used for pure cotton, polyester-cotton, acrylic, wool, polyester, artificial fiber and blended. The present invention is equipped with a high-temperature pressure-resistant fan, which can be used in a high-pressure state, can work under pressure, and is also applicable to an ultra-high pressure environment. The high-temperature pressure-resistant fan can change its speed through a frequency converter.

[0016] The shaft sleeve setting at the front end of the motor and the mechanical seal set on the shaft sleeve enable it to have quick disassembly capabilities. When replacing the sealing ring, there is no need to remove the impeller. The mechanical seal can be directly disassembled and replaced externally.

[0017] The present invention is also equipped with a mechanical seal with ultra-high sealing performance. The mechanical seal has a Half multi-piece ring seal design structure with strong sealing performance. It adopts a multi-piece machine seal and a machine seal seat matching structure to improve the sealing performance. The machine seal is also surrounded and fixed with a spring, which has strong stability and is also stable under high pressure.

[0018] The cooler and steam-water separator can condense the moist hot air generated by the cheese cylinder and separate the steam and water to obtain dry air for circulation, which saves energy and reduces consumption, greatly reducing working costs. The interior is sealed and circulated for drying, and the temperature decreases with the development of the drying process. The high-temperature air only contacts the yarn when the yarn is very moist, and the water contained in the yarn evaporates to cool the yarn, thereby protecting and maintaining the original physical properties of the yarn.

[0019] The high temperature and pressure resistant fan and motor are installed in the silencer, which has the characteristics of sound insulation, sound dispersion and sound absorption, greatly reducing the fan noise. The sound insulation board can isolate the noise energy, thereby reducing the spread of noise. The sound absorption board can absorb the sound wave energy generated by the noise through its porous structure and special surface morphology, and convert the noise energy into weak heat energy, thereby reducing the spread of noise. The shell structure of the silencer itself also plays a role in sound dispersion. It adopts the principle of acoustic closure and isolation to block, disperse and eliminate noise. The shell of the silencer allows the noise to propagate along a specific propagation path and minimizes the transmission of noise.

[0020] The unique detection tube can perform data detection. The detection tube can automatically detect the humidity of the air in the cylinder and the temperature difference between the inlet and outlet air of the yarn. The double detection ensures the moisture content of the package yarn. The detection tube provides manual and pneumatic adjustment methods with good accuracy and safety. The manual regulating valve can prevent the pneumatic switch valve from opening directly and being damaged under high pressure.

[0021] The drying process of the present invention is:

[0022] 1. Pressure dehydration

[0023] 1) Take the dyed creel containing moisture out of the dyeing tank and directly put it into the dryer for pressure dehydration;

[0024] 2) Compressed air injected into the cylinder at the beginning of dehydration;

[0025] 3) During pressure dehydration, the heating and cooling devices do not need to work;

[0026] 4) The fan runs at high speed and pushes high-pressure moist air through the cheese from the outside to the inside;

[0027] 5) After the humid air passes through the air-water separator, the moisture will be automatically discharged from the cylinder, and the air continues to circulate in the closed cylinder.

[0028] 2. Drying

[0029] 1) After the pressure dehydration is completed, it will automatically enter the drying stage;

[0030] 2) During drying, the heating and cooling devices automatically start to operate according to the temperature set for different yarns and fibers;

[0031] 3) The fan runs at high speed and pushes high-pressure moist air through the yarn from the inside to the outside;

[0032] 4) After the humid air passes through the air-water separator, the moisture will be automatically discharged out of the cylinder, and the air continues to circulate in the closed cylinder;

[0033] 5) The heat and electricity consumed in drying are converted by the condenser into clean hot water with a temperature between 55℃ and 75℃, which can be used for dyeing;

[0034] 6) When the air temperature of the incoming yarn and the outgoing yarn reaches the set difference, the drying process ends.

[0035] 3. Air circulation and humidity control

[0036] After the drying process is completed, the heating device stops running, and the air flow penetrates from the outside to the inside of the yarn, thereby balancing the moisture content of the yarn and reducing the temperature of the yarn.

[0037] After the set process time is over, the pressure vessel discharges the compressed air out of the cylinder through the muffler and returns to normal pressure, after which the creel can be taken out. BRIEF DESCRIPTION OF THE DRAWINGS

[0038] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative work, among which:

[0039] Figure 1 It is a structural schematic diagram of a preferred embodiment of a high-efficiency intelligent cheese yarn dehydration and drying integrated machine of the present invention;

[0040] Figure 2 It is a top view of a preferred embodiment of a high-efficiency intelligent cheese yarn dehydration and drying integrated machine of the present invention;

[0041] Figure 3 1 is a schematic structural diagram of a preferred embodiment of the mechanical seal shown;

[0042] Figure 4 It is a structural schematic diagram of a preferred embodiment of the machine seal seat shown;

[0043] Figure 5 It is a structural schematic diagram of a preferred embodiment of the fan silencer cover shown;

[0044] Figure 6 It is a structural schematic diagram of a preferred embodiment of the machine sealing piece shown;

[0045] Figure 7 is a side view of a preferred embodiment of the machine sealing piece shown;

[0046] Figure 8 is a side view of a preferred embodiment of the steam-water separator assembly shown;

[0047] Fig. 9 is a side view of a preferred embodiment of the detection tube shown;

[0048] The markings of the components in the attached drawings are as follows: 1. cheese cylinder; 2. motor; 3. high temperature and pressure resistant fan; 4. cooler; 5. steam-water separator; 6. heater device; 7. mechanical seal; 8. machine seal seat; 9. machine seal plate; 10. silencer; 11. sound insulation board; 12. sound absorbing board; 13. detection tube; 14. manual regulating valve; 15. pneumatic switch valve; 16. humidity detector; 17. semicircular ring machine seal block; 18. semicircular hole; 19. arc slot; 20. spring groove; 21. steam-water separation hook plate; 22. drip hook; 23. drain outlet; 24. cooling water inlet; 25. cooling water outlet. DETAILED DESCRIPTION

[0049] The technical solutions in the embodiments of the present invention are described clearly and completely below. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0050] See also Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Fig. 9 , the embodiment of the present invention includes:

[0051] A high-efficiency intelligent cheese dehydration and drying integrated machine, comprising a cheese cylinder 1, a motor 2, a high-temperature and pressure-resistant fan 3, a cooler 4, a steam-water separator 5 and a heater device 6, wherein a motor sleeve is installed at the front end of the motor 2, the motor 2 is connected to the high-temperature and pressure-resistant fan 3 through the motor sleeve, and a mechanical seal 7 is installed at the connection end, the mechanical seal 7 comprises a machine seal seat 8 and a machine seal sheet 9, a plurality of machine seal sheets 9 are arranged in the machine seal seat 8, and the plurality of machine seal sheets 9 are all installed in the inner side of the machine seal seat 8 and fixed, and the inner side of the machine seal sheet 9 is fixedly clamped to the motor sleeve, and an air outlet is arranged at the side end of the high-temperature and pressure-resistant fan 3 and The air outlet is connected to the heater device 6, the heater device 6 is connected to the air inlet end of the cheese cylinder 1, the air outlet end of the cheese cylinder 1 is connected to the cooler 4, the cooler 4 is connected and installed with the front end of the steam-water separator 5, the rear end of the steam-water separator 5 is connected to the high-temperature and pressure-resistant fan 3, and a silencer 10 is installed outside the motor 2 and the high-temperature and pressure-resistant fan 3. The inner layer of the silencer 10 is provided with a sound insulation board 11 and a sound absorbing board 12. A detection tube 13 is led out from one end of the cheese cylinder 1, and a manual regulating valve 14, a pneumatic switch valve 15 and a humidity detector 16 are connected and installed on the detection tube 13.

[0052] In addition, the sound insulation board 11 is installed on the inner wall of the soundproof cover 10, and the sound absorbing board 12 is installed on the outer layer of the sound insulation board 11. The sound absorbing board 12 is provided with a sound absorbing porous structure.

[0053] In addition, one end of the detection tube 13 is connected to the cheese cylinder 1 , and the other end of the detection tube 13 is connected to the outside. The humidity detector 16 is arranged below the manual regulating valve 14 and the pneumatic switch valve 15 .

[0054] In addition, the machine seal seat 8 is composed of two symmetrical semi-circular machine seal blocks 17, a semi-circular hole 18 is opened in the center of the semi-circular machine seal block 17, and a plurality of arc grooves 19 are opened on the inner side surface of the semi-circular machine seal block 17 inside the semi-circular hole 18, and the machine seal piece 9 is connected with the arc groove 19.

[0055] In addition, the machine sealing piece 9 is composed of a plurality of arc pieces assembled into a circular ring shape, and a spring groove portion 20 is opened on the outer side end surface of the machine sealing piece 9. After the machine sealing piece 9 is assembled, a spring is installed in the outer spring groove portion 20 to surround and fix it.

[0056] In addition, the machine sealing sheet 9 is composed of three equally divided arc sheets assembled into a circular ring sheet.

[0057] In addition, a steam-water separation hook plate 21 is provided in the steam-water separator 5 , and a plurality of drip hooks 22 are provided on the steam-water separation hook plate 21 . A drainage port 23 is provided at the bottom of the steam-water separator 5 .

[0058] In addition, a cooling water inlet 24 and a cooling water outlet 25 are respectively provided on both sides of the cooler 4 .

[0059] In addition, a reversing device is installed at the bottom of the cheese cylinder 1, and the heater device 6 and the cooler 4 are respectively connected to the two ends of the reversing device.

[0060] The working principle of the present invention is to install a motor sleeve at the front end of the motor 2, the motor 2 is connected to the high-temperature and pressure-resistant fan 3 through the motor sleeve, and a mechanical seal 7 is installed at the connecting end. The mechanical seal 7 includes a mechanical seal seat 8 and a mechanical seal sheet 9. A plurality of machine seal sheets 9 are arranged in the machine seal seat 8. The plurality of machine seal sheets 9 are all installed and fixed inside the machine seal seat 8. The inner side of the machine seal sheet 9 is fixedly clamped on the motor sleeve. The machine seal seat 8 is composed of two symmetrical semicircular machine seal blocks 17. A semicircular hole 18 is opened in the center of the semicircular machine seal block 17. A semicircular hole 18 is opened on the inner side of the semicircular machine seal block 17 inside the semicircular hole 18. There are multiple arc grooves 19, and the machine sealing piece 9 is connected with the arc grooves 19. The machine sealing piece 9 is composed of three equally divided arc pieces assembled into a circular ring shape. A spring groove portion 20 is opened on the outer side end face of the machine sealing piece 9. After the machine sealing piece 9 is assembled, the spring groove portion 20 on the outer side is installed to surround and fix it. The mechanical seal 7 has a Half multi-piece ring sealing design structure with strong sealing performance. The multi-piece machine sealing piece 9 and the machine sealing seat 8 matching structure are adopted to improve the sealing performance. The machine sealing piece 9 is also surrounded and fixed by a spring, which has strong stability and is also stable under high pressure.

[0061] The shaft sleeve arrangement at the front end of the motor 2 and the mechanical seal 7 arranged on the shaft sleeve enable it to have quick disassembly capability. When replacing the sealing ring, there is no need to disassemble the impeller. The mechanical seal 7 can be directly disassembled and replaced externally.

[0062] The high-temperature and pressure-resistant fan 3 can be used in a high-pressure state, can work under pressure, and is also suitable for ultra-high pressure environments. The high-temperature and pressure-resistant fan 3 can change its speed through a frequency converter. An air outlet is arranged at the side end of the high-temperature and pressure-resistant fan 3 and the air outlet is connected to a heater device 6. The heater device 6 is connected to the air inlet end of the cheese cylinder 1, and the air outlet end of the cheese cylinder 1 is connected to a cooler 4. A reversing device is installed at the bottom of the cheese cylinder 1, and the heater device 6 and the cooler 4 are respectively connected to both ends of the reversing device.

[0063] A cooling water inlet 24 and a cooling water outlet 25 are respectively provided on both sides of the cooler 4. The cooler 4 is connected and installed with the front end of the steam-water separator 5. A steam-water separation hook plate 21 is provided in the steam-water separator 5. A plurality of drip hooks 22 are provided on the steam-water separation hook plate 21. A drain port 23 is provided at the bottom of the steam-water separator 5. The rear end of the steam-water separator 5 is connected to the high-temperature and pressure-resistant fan 3. The cooler 4 and the steam-water separator 5 can condense the humid hot air generated by the cheese cylinder 1 and separate the steam and water to obtain dry air for circulation and air supply, which saves energy and reduces consumption, and greatly reduces working costs.

[0064] The motor 2 and the high temperature and pressure resistant fan 3 are externally installed with a muffler cover 10, and the inner layer of the muffler cover 10 is provided with a sound insulation board 11 and a sound absorbing board 12, the sound insulation board 11 is installed on the inner wall of the muffler cover 10, and the sound absorbing board 12 is installed on the outer layer of the sound insulation board 11, and the sound absorbing board 12 is provided with a sound absorbing porous structure, and the high temperature and pressure resistant fan 3 and the motor 2 are both installed in the muffler cover 10, and the muffler cover 10 has the characteristics of sound insulation, sound dispersion and sound absorption, which greatly reduces the fan noise. The sound insulation board 11 can isolate the noise energy, thereby reducing the propagation of noise, and the sound absorbing board 12 can absorb the sound wave energy generated by the noise through its porous structure and special surface morphology, and convert the noise energy into weak heat energy, thereby reducing the propagation of noise. The outer shell structure of the muffler cover 10 itself also plays a role in sound dispersion, adopting the principle of acoustic closure and isolation to block, disperse and eliminate noise. The outer shell of the muffler cover 10 allows the noise to propagate along a specific propagation path and minimizes the transmission of noise.

[0065] A detection tube 13 is led out from one end of the cheese yarn cylinder 1 and a manual regulating valve 14, a pneumatic switch valve 15 and a humidity detector 16 are connected and installed on the detection tube 13. One end of the detection tube 13 is connected to the cheese yarn cylinder 1, and the other end of the detection tube 13 is connected to the outside. The humidity detector 16 is arranged at the lower part of the manual regulating valve 14 and the pneumatic switch valve 15. The detection tube 13 can perform data detection. The detection tube 13 can automatically detect the humidity of the air in the cylinder and the temperature difference between the inlet and outlet air of the yarn, and the double detection ensures the moisture content of the cheese yarn. The detection tube provides two adjustment methods, manual and pneumatic, with good accuracy and safety. The manual regulating valve 14 can prevent the pneumatic switch valve 15 from being damaged by direct opening under high pressure.

[0066] The above descriptions are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. An efficient and intelligent cheese dehydration and drying integrated machine, comprising a cheese cylinder, a motor, a high temperature and pressure resistant fan, a cooler, a steam-water separator and a heater device, characterized in that: A motor sleeve is installed at the front end of the motor, and the motor is connected to the high-temperature and pressure-resistant fan through the motor sleeve, and a mechanical seal is installed at the connection end, the mechanical seal includes a machine seal seat and a machine seal sheet, a plurality of machine seal sheets are arranged in the machine seal seat, and the plurality of machine seal sheets are all installed and fixed in the machine seal seat, and the inner side of the machine seal sheet is fixedly clamped on the motor sleeve, an air outlet is arranged at the side end of the high-temperature and pressure-resistant fan, and the air outlet is connected to the heater device, the heater device is connected to the air inlet end of the cheese cylinder, the air outlet end of the cheese cylinder is connected to the cooler, the cooler is connected and installed with the front end of the steam-water separator, and the rear end of the steam-water separator is connected to the high-temperature and pressure-resistant fan, a silencer is installed outside the motor and the high-temperature and pressure-resistant fan, and the inner layer of the silencer is provided with a sound insulation board and a sound absorbing board, a detection tube is led out at one end of the cheese cylinder, and a manual regulating valve, a pneumatic switch valve and a humidity detector are connected and installed on the detection tube.

2. The high-efficiency intelligent cheese yarn dehydration and drying integrated machine according to claim 1, characterized in that: The sound insulation board is installed on the inner wall of the soundproof cover, the sound absorbing board is installed on the outer layer of the sound insulation board, and a sound absorbing porous structure is provided on the sound absorbing board.

3. The high-efficiency intelligent cheese yarn dehydration and drying integrated machine according to claim 1, characterized in that: One end of the detection tube is connected to the cheese cylinder, and the other end of the detection tube is connected to the outside. The humidity detector is arranged at the lower part of the manual regulating valve and the pneumatic switch valve.

4. The high-efficiency intelligent cheese yarn dehydration and drying integrated machine according to claim 1, characterized in that: The machine seal seat is composed of two symmetrical semi-circular machine seal blocks, a semi-circular hole is opened in the center of the semi-circular machine seal block, and multiple arc grooves are opened on the inner side surface of the semi-circular machine seal block inside the semi-circular hole, and the machine seal piece is connected with the arc groove.

5. The high-efficiency intelligent cheese yarn dehydration and drying integrated machine according to claim 1, characterized in that: The machine sealing piece is composed of a plurality of arc pieces assembled into a circular ring shape, and a spring groove is provided on the outer side end surface of the machine sealing piece. After the machine sealing piece is assembled, a spring is installed in the outer spring groove to surround and fix it.

6. The high-efficiency intelligent cheese yarn dehydration and drying integrated machine according to claim 5, characterized in that: The machine sealing sheet is composed of three equally divided arc sheets assembled into a circular ring sheet.

7. The high-efficiency intelligent cheese yarn dehydration and drying integrated machine according to claim 1, characterized in that: A steam-water separation hook plate is arranged in the steam-water separator, a plurality of drip hooks are arranged on the steam-water separation hook plate, and a drainage port is arranged at the bottom of the steam-water separator.

8. The high-efficiency intelligent cheese yarn dehydration and drying integrated machine according to claim 1, characterized in that: A cooling water inlet and a cooling water outlet are respectively arranged on both sides of the cooler.

9. The high-efficiency intelligent cheese yarn dehydration and drying integrated machine according to claim 1, characterized in that: A reversing device is installed at the bottom of the cheese cylinder, and the heater device and the cooler are respectively connected to two ends of the reversing device.