Method for preparing dust removal cloth bag resistant to flue gas corrosion and its equipment

Through the combination of binding mechanism and winding mechanism, the continuous forming problem of smoke-resistant dust removal bags is solved, and efficient sewing and shaping are achieved, ensuring that the metal belt is evenly wrapped in the bags, making it easy to follow-up processing.

CN116747612BActive Publication Date: 2025-07-11JIANGSU SUBO ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202310624549.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-30
Publication Date
2025-07-11
Estimated Expiration
2043-05-30

AI Technical Summary

Technical Problem

The existing preparation methods and equipment for smoke-resistant dust removal bags and their equipment are not convenient for continuous molding processing.

Method used

The binding mechanism and the winding mechanism are adopted, including processing components, support components, bundling components, transmission components, limiting components, rolling components, suction components and drainage components. Through the cooperation of components such as sewing machine table, cutting machine, pressing servo motor, and conveying servo motor, sewing and sewing gas corrosion-resistant dust removal bags, fixed-length cutting and continuous molding processing are realized.

Benefits of technology

The continuous forming processing of smoke-resistant dust removal bags is realized, which improves processing efficiency and molding stability, ensuring that the metal belt can be evenly wrapped in the bags, making it convenient for subsequent sewing and closure processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a preparation method and equipment for a dust removal cloth bag resistant to flue gas corrosion, which is applied in the technical field of dust removal cloth bag preparation. By setting up a winding mechanism, the transmission component can support and limit the limiting component, and can drive the limiting component to rotate. The limiting component can limit the dust removal cloth bag resistant to flue gas corrosion, and drive the dust removal cloth bag resistant to flue gas corrosion to wind and rotate. At the same time, it can drive the winding component to rotate. The winding component can limit the position of the dust removal cloth bag resistant to flue gas corrosion wrapped with a metal strip, and drive the position of the dust removal cloth bag resistant to flue gas corrosion wrapped with a metal strip to wind and shape. The air suction component can extract the air in the drainage component and the air at the winding component, so that the drainage component and the winding component have adsorption force. The drainage component can evenly extract the air in the limiting component, so that the limiting component has adsorption force.
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Description

Technical Field

[0001] The present invention belongs to the technical field of the preparation of dust removal cloth bags, and particularly relates to a method and equipment for preparing a dust removal cloth bag resistant to flue gas corrosion. Background Art

[0002] A bag filter, also known as a fabric filter, is a dry high-efficiency dust collector. It is a dust removal device that uses a bag-type filter element made of a fiber woven fabric to capture solid particles in the dust-containing gas. The fabric therein includes but is not limited to a dust removal cloth bag resistant to flue gas corrosion. The dust removal cloth bag resistant to flue gas corrosion will use the equipment for preparing the dust removal cloth bag resistant to flue gas corrosion during production and processing.

[0003] Currently, for the Chinese invention with the publication number: CN111958125A, this invention relates to the field of bag production devices, and particularly to a cutting device for producing a dust removal cloth bag, including a device main body. A conveyor belt is arranged inside the device main body. Fixed side plates are fixedly connected to the upper end surface of the device main body near both side edges. A connecting top plate is fixedly connected between the upper ends of the two fixed side plates. A bent strip extending downward is movably installed at the rear edge of the connecting top plate. A connecting sleeve is rotatably connected to the lower end of the bent strip. Arc-shaped blades are arranged on the outer surface of the connecting sleeve. A pressure roller is rotatably arranged between the two fixed side plates. An elastic mechanism is arranged between both ends of the pressure roller and the fixed side plates. A laser cutting mechanism is arranged on the upper end surface of the device main body behind the pressure roller. This invention is beneficial to the smoothing of the cloth and reduces the occurrence of uneven ports during cutting.

[0004] The existing methods and equipment for preparing a dust removal cloth bag resistant to flue gas corrosion have the following disadvantages when in use:

[0005] It is not convenient to continuously form and process the dust removal cloth bag resistant to flue gas corrosion. Summary of the Invention

[0006] The purpose of the present invention is directed to an existing method and equipment for preparing a dust removal cloth bag resistant to flue gas corrosion, and its advantages are:

[0007] It is convenient to continuously form and process the dust removal cloth bag resistant to flue gas corrosion.

[0008] The above technical object of the present invention is achieved through the following technical solutions: A preparation device for a dust removal cloth bag resistant to flue gas corrosion includes a binding mechanism and a winding mechanism. The winding mechanism is bolted to the rear side of the binding mechanism. The binding mechanism includes a processing component, a support component, and a bundling component. The support component is bolted to the inside of the processing component. The bundling component is movably connected to the left side of the support component. The winding mechanism includes a transmission component, a limiting component, a winding component, an air suction component, and a drainage component. The transmission component is bolted to the rear side of the processing component. The limiting component is bolted to the right side of the transmission component. The winding component is bolted to the right side of the limiting component. The air suction component is bolted to the right side of the transmission component. The left side of the transmission component is rotationally connected to the right side of the winding component. The drainage component is bolted to the left side of the air suction component. The surface of the drainage component is in contact with the inner wall of the winding component.

[0009] With the above technical solutions, there are a binding mechanism and a winding mechanism. The binding mechanism can bind and process the dust removal cloth bag resistant to flue gas corrosion and the metal strip to be processed, and perform fixed-distance cutting on the bound dust removal cloth bag resistant to flue gas corrosion and the metal strip. The winding mechanism can wind and form the cut dust removal cloth bag resistant to flue gas corrosion and the metal strip, and can cooperate with the binding mechanism to continuously form the dust removal cloth bag resistant to flue gas corrosion and the metal strip.

[0010] The present invention is further provided as: The processing component includes a sewing machine table, a processing plate, and a cutting machine. The processing plate is bolted to the top of the sewing machine table. The cutting machine is bolted to the front side of the top of the sewing machine table.

[0011] With the above technical solutions, by setting the processing component, the sewing machine table can sew and process the dust removal cloth bag resistant to flue gas corrosion and the metal strip. The processing plate can support and limit the dust removal cloth bag resistant to flue gas corrosion, and can limit the length of the dust removal cloth bag resistant to flue gas corrosion according to the length of the processing plate. The cutting machine can perform fixed-length cutting on the dust removal cloth bag resistant to flue gas corrosion.

[0012] The present invention is further provided as: The support component includes a support plate, a pressing servo motor, and a conveying servo motor. The support plate is bolted to the left side of the processing plate. The pressing servo motor is bolted to the top of the left side of the support plate. The conveying servo motor is bolted to the bottom of the left side of the support plate.

[0013] With the above technical solutions, by setting the support component, the support plate can support and limit the pressing servo motor and the conveying servo motor. After being powered on and started, the pressing servo motor can convert electrical energy into rotational mechanical energy, and then transfer the rotational mechanical energy to the bundling component. After being powered on and started, the conveying servo motor can convert electrical energy into rotational mechanical energy, and then transfer the rotational mechanical energy to the bundling component.

[0014] The present invention is further configured as follows: The converging assembly includes an inclined conveyor belt, a limiting roller, and a conveying conveyor belt. The inclined conveyor belt is rotatably connected to the top of the left side of the support plate. The limiting roller is rotatably connected to the top of the left side of the support plate. The surface of the limiting roller is in contact with the surface of the inclined conveyor belt. The right side of the inclined conveyor belt is bolted to the output end of the left side of the pressing servo motor. The conveying conveyor belt is rotatably connected to the bottom of the left side of the support plate. The right side of the conveying conveyor belt is bolted to the output end of the left side of the conveying servo motor.

[0015] With the above technical solution, by providing the converging assembly, the inclined conveyor belt can gradually press the flue gas corrosion-resistant dust removal cloth bag downward, so as to wrap the metal belt in the flue gas corrosion-resistant dust removal cloth bag inside the flue gas corrosion-resistant dust removal cloth bag. The limiting roller can limit the inclined conveyor belt, increasing the stability of the cooperation between the inclined conveyor belt and the conveying conveyor belt to press the flue gas corrosion-resistant dust removal cloth bag. The conveying conveyor belt can convey the flue gas corrosion-resistant dust removal cloth bag and cooperate with the inclined conveyor belt to press the flue gas corrosion-resistant dust removal cloth bag.

[0016] The present invention is further configured as follows: The transmission assembly includes a fixing plate, a winding servo motor, and a limiting ring. The fixing plate is bolted to the rear side of the sewing machine table. The winding servo motor is bolted to the left side of the fixing plate. The limiting ring is bolted to the output end of the right side of the winding servo motor.

[0017] With the above technical solution, by providing the transmission assembly, the fixing plate can support and limit the winding servo motor. After the winding servo motor is powered on and started, it can convert electrical energy into rotational mechanical energy, and then transfer the rotational mechanical energy to the limiting ring. The limiting ring can drive the limiting assembly to rotate.

[0018] The present invention is further configured as follows: The limiting assembly includes a winding cylinder, air intake holes, and connection holes. The connection holes are opened on the left side of the winding cylinder. The inner side of the connection holes is bolted to the limiting ring. The air intake holes are opened on the surface of the winding cylinder.

[0019] With the above technical solution, by providing the limiting assembly, the winding cylinder can wind the flue gas corrosion-resistant dust removal cloth bag. The air intake holes can adsorb the flue gas corrosion-resistant dust removal cloth with the flowing air. The connection holes can be connected to the limiting ring, increasing the structural stability of the winding cylinder.

[0020] The present invention is further configured as follows: The rolling assembly includes a winding ring, a limiting groove, and adsorption holes. The winding ring is bolted to the right side of the winding cylinder. The limiting groove is opened on the surface of the winding ring. The adsorption holes are opened on the inner side of the limiting groove.

[0021] With the above technical solution, by setting up a rolling component, the winding ring can wind and limit the flue gas corrosion-resistant dust removal cloth bag wrapped with a metal strip. The limiting groove can limit the flue gas corrosion-resistant dust removal cloth bag wrapped with a metal strip. The adsorption holes can adsorb the flue gas corrosion-resistant dust removal cloth bag wrapped with a metal strip along with the flow of air, so as to facilitate the winding ring to shape the flue gas corrosion-resistant dust removal cloth bag wrapped with a metal strip.

[0022] The present invention is further configured as: the air suction component includes an air extractor, a rotating ring and air guide holes. The air extractor is bolted to the right side of the fixed plate. The rotating ring is rotatably connected to the output end on the left side of the air extractor. The air guide holes are opened on the surface of the rotating ring. The surface of the rotating ring is bolted to the inner side of the winding ring.

[0023] With the above technical solution, by setting up an air suction component, after the air extractor is powered on and started, it can extract the air at the drainage component and the rolling component, so as to generate an adsorption force at the drainage component and the rolling component. The rotating ring can facilitate the rotation of the limiting component, and the air guide holes can guide the air in the winding ring to be pumped to the air extractor.

[0024] The present invention is further configured as: the drainage component includes an air delivery pipe, air equalizing holes and a protective net. The air delivery pipe is bolted to the left side of the rotating ring. The air equalizing holes are opened on the surface of the air delivery pipe. The protective net is bolted to the inner wall of the air equalizing holes.

[0025] With the above technical solution, by setting up a drainage component, the air delivery pipe can facilitate the air equalizing holes to evenly pump the air from the winding drum to the air extractor, and the protective net can block the impurities in the air.

[0026] A method for preparing a flue gas corrosion-resistant dust removal cloth bag includes the following steps:

[0027] S1. Binding processing: First, power on and start the binding mechanism. Put the flue gas corrosion-resistant dust removal cloth bag into the cutting machine, then place the metal sheet on the right side of the flue gas corrosion-resistant dust removal cloth bag, and wrap the flue gas corrosion-resistant dust removal cloth bag around the metal sheet. Then push the flue gas corrosion-resistant dust removal cloth bag and the metal sheet onto the processing plate. When the flue gas corrosion-resistant dust removal cloth bag contacts the support plate, start the pressing servo motor and the conveying servo motor. The inclined conveyor belt and the conveying conveyor belt will push the flue gas corrosion-resistant dust removal cloth bag towards the sewing machine table. The inclined conveyor belt and the conveying conveyor belt will gradually press the flue gas corrosion-resistant dust removal cloth bag. Then the sewing machine table will sew the pressed flue gas corrosion-resistant dust removal cloth bag and sew the metal strip into the flue gas corrosion-resistant dust removal cloth bag. Then start the cutting machine, and the cutting machine will cut the sewn flue gas corrosion-resistant dust removal cloth bag and the metal strip until the cutting is completed.

[0028] S2. Rewinding and shaping: First, power on and start the rewinding mechanism. Then, place the smoke-resistant and corrosion-resistant dust removal cloth bag that has been sewn at the bottom of the rewinding cylinder, and make the metal strip where the smoke-resistant and corrosion-resistant dust removal cloth bag is sewn contact with the limit groove on the rewinding ring. After that, start the air extractor. The air extractor will extract air from the air delivery pipe. The evenly distributed air holes on the surface of the air delivery pipe will evenly extract air from the rewinding cylinder to the air extractor. The air guide holes will extract the air in the adsorption holes on the surface of the rotating ring to the air extractor, so that the rewinding cylinder and the rewinding ring have adsorption force, and adsorb the smoke-resistant and corrosion-resistant dust removal cloth bag on the surfaces of the rewinding cylinder and the rotating ring. Then, start the rewinding servo motor. The rewinding cylinder and the rewinding ring will rotate with the rewinding servo motor, gradually winding the smoke-resistant and corrosion-resistant dust removal cloth bag into a hollow cylindrical shape. The metal strip will form a circular ring and fix the smoke-resistant and corrosion-resistant dust removal cloth bag, thus completing the shaping process of the smoke-resistant and corrosion-resistant dust removal cloth bag, which is convenient for subsequent sewing and closing treatment of the shaped smoke-resistant and corrosion-resistant dust removal cloth bag.

[0029] In summary, the present invention has the following beneficial effects:

[0030] By setting up the binding mechanism, the processing component can sew and process the smoke-resistant and corrosion-resistant dust removal cloth bag, and perform fixed-length cutting processing on the smoke-resistant and corrosion-resistant dust removal cloth bag. The support component can support and limit the bundling component. The bundling component can bundle and press the smoke-resistant and corrosion-resistant dust removal cloth bag, which is convenient for the smoke-resistant and corrosion-resistant dust removal cloth bag to wrap the metal strip, so that the processing component can sew the smoke-resistant and corrosion-resistant dust removal cloth bag wrapped with the metal strip.

[0031] By setting up the rewinding mechanism, the transmission component can support and limit the limit component, and can drive the limit component to rotate. The limit component can limit the smoke-resistant and corrosion-resistant dust removal cloth bag, drive the smoke-resistant and corrosion-resistant dust removal cloth bag to wind and rotate, and at the same time can drive the winding component to rotate. The winding component can limit the part of the smoke-resistant and corrosion-resistant dust removal cloth bag wrapped with the metal strip, and drive the part of the smoke-resistant and corrosion-resistant dust removal cloth bag wrapped with the metal strip to wind and shape. The air suction component can extract the air in the air guiding component and at the winding component, so that the air guiding component and the winding component have adsorption force. The air guiding component can evenly extract the air in the limit component, so that the limit component has adsorption force. Therefore, the smoke-resistant and corrosion-resistant dust removal cloth bag can be limited, which is convenient for shaping the smoke-resistant and corrosion-resistant dust removal cloth bag, and can cooperate with the binding mechanism for continuous processing. Description of the Drawings

[0032] Figure 1 is the overall structural schematic diagram of the present invention;

[0033] Figure 2 is the structural schematic diagram of the binding mechanism of the present invention;

[0034] Figure 3 is a schematic structural diagram of the processing component of the present invention;

[0035] Figure 4 is a schematic structural diagram of the support component of the present invention;

[0036] Figure 5 is a schematic structural diagram of the converging component of the present invention;

[0037] Figure 6 is a schematic structural diagram of the winding mechanism of the present invention;

[0038] Figure 7 is a schematic structural diagram of the transmission component of the present invention;

[0039] Figure 8 is a schematic structural diagram of the limiting component of the present invention;

[0040] Figure 9 is a schematic structural diagram of the rolling component of the present invention;

[0041] Figure 10 is a schematic structural diagram of the air suction component of the present invention;

[0042] Figure 11 is a schematic structural diagram of the drainage component of the present invention;

[0043] Figure 12 is a diagram of the usage method of the present invention.

[0044] Reference signs: 1, binding mechanism; 101, processing component; 1011, sewing machine table; 1012, processing plate; 1013, cutting machine; 102, support component; 1021, support plate; 1022, pressing servo motor; 1023, conveying servo motor; 103, converging component; 1031, inclined conveyor belt; 1032, limiting roller; 1033, conveying conveyor belt; 2, winding mechanism; 201, transmission component; 2011, fixing plate; 2012, winding servo motor; 2013, limiting ring; 202, limiting component; 2021, winding cylinder; 2022, air intake hole; 2023, connection hole; 203, rolling component; 2031, winding ring; 2032, limiting groove; 2033, adsorption hole; 204, air suction component; 2041, air extractor; 2042, rotating ring; 2043, air guiding hole; 205, drainage component; 2051, air delivery pipe; 2052, air equalizing hole; 2053, protective net. Detailed Description of the Invention

[0045] The present invention will be further described in detail below with reference to the accompanying drawings.

[0046] Example 1:

[0047] Refer toFigures 1-5 , a preparation device for a smoke-resistant and corrosion-resistant dust removal cloth bag, comprising a binding mechanism 1. The binding mechanism 1 includes a processing component 101, a support component 102 and a bundling component 103. The support component 102 is bolted to the inside of the processing component 101, and the bundling component 103 is movably connected to the left side of the support component 102. By setting the binding mechanism 1, the processing component 101 can sew and process the smoke-resistant and corrosion-resistant dust removal cloth bag, and perform fixed-length cutting processing on the smoke-resistant and corrosion-resistant dust removal cloth bag. The support component 102 can support and limit the bundling component 103, and the bundling component 103 can bundle and press the smoke-resistant and corrosion-resistant dust removal cloth bag, so as to facilitate the smoke-resistant and corrosion-resistant dust removal cloth bag to wrap the metal strip, so that the processing component 101 can sew the smoke-resistant and corrosion-resistant dust removal cloth bag wrapped with the metal strip.

[0048] As Figure 3 shown, the processing component 101 includes a sewing machine table 1011, a processing plate 1012 and a cutting machine 1013. The processing plate 1012 is bolted to the top of the sewing machine table 1011, and the cutting machine 1013 is bolted to the front side of the top of the sewing machine table 1011. By setting the processing component 101, the sewing machine table 1011 can sew and process the smoke-resistant and corrosion-resistant dust removal cloth bag and the metal strip. The processing plate 1012 can support and limit the smoke-resistant and corrosion-resistant dust removal cloth bag, and can limit the length of the smoke-resistant and corrosion-resistant dust removal cloth bag according to the length of the processing plate 1012. The cutting machine 1013 can perform fixed-length cutting on the smoke-resistant and corrosion-resistant dust removal cloth bag.

[0049] As Figure 4 shown, the processing component 101 includes a sewing machine table 1011, a processing plate 1012 and a cutting machine 1013. The processing plate 1012 is bolted to the top of the sewing machine table 1011, and the cutting machine 1013 is bolted to the front side of the top of the sewing machine table 1011. By setting the support component 102, the support plate 1021 can support and limit the pressing servo motor 1022 and the conveying servo motor 1023. After the pressing servo motor 1022 is powered on and started, it can convert electrical energy into rotational mechanical energy, and then transfer the rotational mechanical energy to the bundling component 103. After the conveying servo motor 1023 is powered on and started, it can convert electrical energy into rotational mechanical energy, and then transfer the rotational mechanical energy to the bundling component 103.

[0050] As Figure 5As shown in the figure, the converging assembly 103 includes an inclined conveyor belt 1031, a limiting roller 1032, and a conveying conveyor belt 1033. The inclined conveyor belt 1031 is rotatably connected to the top of the left side of the support plate 1021. The limiting roller 1032 is rotatably connected to the top of the left side of the support plate 1021. The surface of the limiting roller 1032 is in contact with the surface of the inclined conveyor belt 1031. The right side of the inclined conveyor belt 1031 is bolted to the output end of the left side of the pressing servo motor 1022. The conveying conveyor belt 1033 is rotatably connected to the bottom of the left side of the support plate 1021. The right side of the conveying conveyor belt 1033 is bolted to the output end of the left side of the conveying servo motor 1023. By setting the converging assembly 103, the inclined conveyor belt 1031 can gradually press the flue gas corrosion-resistant dust removal cloth bag downward, so as to wrap the metal strip in the flue gas corrosion-resistant dust removal cloth bag. The limiting roller 1032 can limit the inclined conveyor belt 1031, increasing the stability of the inclined conveyor belt 1031 and the conveying conveyor belt 1033 in cooperating to press the flue gas corrosion-resistant dust removal cloth bag. The conveying conveyor belt 1033 can convey the flue gas corrosion-resistant dust removal cloth bag and cooperate with the inclined conveyor belt 1031 to press the flue gas corrosion-resistant dust removal cloth bag.

[0051] Brief description of the usage process: First, power on and start the binding mechanism 1. Place the flue gas corrosion-resistant dust removal cloth bag into the cutting machine 1013, then place the metal sheet on the right side of the flue gas corrosion-resistant dust removal cloth bag, and wrap the flue gas corrosion-resistant dust removal cloth bag around the metal sheet. Then, push the flue gas corrosion-resistant dust removal cloth bag and the metal sheet onto the processing plate 1012. When the flue gas corrosion-resistant dust removal cloth bag contacts the support plate 1021, start the pressing servo motor 1022 and the conveying servo motor 1023. The inclined conveyor belt 1031 and the conveying conveyor belt 1033 will push the flue gas corrosion-resistant dust removal cloth bag towards the sewing machine table 1011. The inclined conveyor belt 1031 and the conveying conveyor belt 1033 will gradually press the flue gas corrosion-resistant dust removal cloth bag tightly. Then, the sewing machine table 1011 will sew the pressed flue gas corrosion-resistant dust removal cloth bag and sew the metal strip into the flue gas corrosion-resistant dust removal cloth bag. Then, start the cutting machine 1013, and the cutting machine 1013 will cut the sewn flue gas corrosion-resistant dust removal cloth bag and the metal strip until the cutting is completed.

[0052] Embodiment 2:

[0053] Reference Figures 6-11, A preparation device for a dust removal cloth bag resistant to flue gas corrosion, including a winding mechanism 2. The winding mechanism 2 is bolted to the rear side of the binding mechanism 1. The winding mechanism 2 includes a transmission component 201, a limiting component 202, a winding component 203, a suction component 204, and a drainage component 205. The transmission component 201 is bolted to the rear side of the processing component 101. The limiting component 202 is bolted to the right side of the transmission component 201. The winding component 203 is bolted to the right side of the limiting component 202. The suction component 204 is bolted to the right side of the transmission component 201. The left side of the transmission component 201 is rotatably connected to the right side of the winding component 203. The drainage component 205 is bolted to the left side of the suction component 204. The surface of the drainage component 205 is in contact with the inner wall of the winding component 203. By setting the winding mechanism 2, the transmission component 201 can support and limit the limiting component 202, and can drive the limiting component 202 to rotate. The limiting component 202 can limit the dust removal cloth bag resistant to flue gas corrosion, and drive the dust removal cloth bag resistant to flue gas corrosion to wind and rotate. At the same time, it can drive the winding component 203 to rotate. The winding component 203 can limit the part of the dust removal cloth bag resistant to flue gas corrosion wrapped with a metal strip, and drive the part of the dust removal cloth bag resistant to flue gas corrosion wrapped with a metal strip to wind and shape. The suction component 204 can extract the air in the drainage component 205 and the air at the winding component 203, so that the drainage component 205 and the winding component 203 have adsorption force. The drainage component 205 can evenly extract the air in the limiting component 202, so that the limiting component 202 has adsorption force. Therefore, the dust removal cloth bag resistant to flue gas corrosion can be limited, which is convenient for shaping the dust removal cloth bag resistant to flue gas corrosion. At the same time, it can cooperate with the binding mechanism 1 for continuous processing.

[0054] As Figure 7 shown, the transmission component 201 includes a fixing plate 2011, a winding servo motor 2012, and a limiting ring 2013. The fixing plate 2011 is bolted to the rear side of the sewing machine table 1011. The winding servo motor 2012 is bolted to the left side of the fixing plate 2011. The limiting ring 2013 is bolted to the output end on the right side of the winding servo motor 2012. By setting the transmission component 201, the fixing plate 2011 can support and limit the winding servo motor 2012. After the winding servo motor 2012 is powered on and started, it can convert electrical energy into rotational mechanical energy, and then transfer the rotational mechanical energy to the limiting ring 2013. The limiting ring 2013 can drive the limiting component 202 to rotate.

[0055] As Figure 8As shown in the figure, the limiting component 202 includes a winding drum 2021, an air intake hole 2022, and a connection hole 2023. The connection hole 2023 is opened on the left side of the winding drum 2021, and the inner side of the connection hole 2023 is bolted to the limiting ring 2013. The air intake hole 2022 is opened on the surface of the winding drum 2021. By setting the limiting component 202, the winding drum 2021 can wind the smoke-resistant and corrosion-resistant dust removal cloth bag. The air intake hole 2022 can adsorb the smoke-resistant and corrosion-resistant dust removal cloth with the flowing air. The connection hole 2023 can be connected to the limiting ring 2013 to increase the structural stability of the winding drum 2021.

[0056] As Figure 9 shown in the figure, the winding component 203 includes a winding ring 2031, a limiting groove 2032, and an adsorption hole 2033. The winding ring 2031 is bolted to the right side of the winding drum 2021. The limiting groove 2032 is opened on the surface of the winding ring 2031. The adsorption hole 2033 is opened inside the limiting groove 2032. By setting the winding component 203, the winding ring 2031 can wind and limit the smoke-resistant and corrosion-resistant dust removal cloth bag wrapped with a metal strip. The limiting groove 2032 can limit the smoke-resistant and corrosion-resistant dust removal cloth bag wrapped with a metal strip. The adsorption hole 2033 can adsorb the smoke-resistant and corrosion-resistant dust removal cloth bag wrapped with a metal strip with the flowing air, so as to facilitate the winding ring 2031 to shape the smoke-resistant and corrosion-resistant dust removal cloth bag wrapped with a metal strip.

[0057] As Figure 10 shown in the figure, the air suction component 204 includes an air extractor 2041, a rotating ring 2042, and an air guiding hole 2043. The air extractor 2041 is bolted to the right side of the fixed plate 2011. The rotating ring 2042 is rotatably connected to the output end on the left side of the air extractor 2041. The air guiding hole 2043 is opened on the surface of the rotating ring 2042. The surface of the rotating ring 2042 is bolted to the inner side of the winding ring 2031. By setting the air suction component 204, after the air extractor 2041 is powered on and started, it can extract the air at the drainage component 205 and the winding component 203, so as to generate an adsorption force on the drainage component 205 and the winding component 203. The rotating ring 2042 can facilitate the rotation of the limiting component 202. The air guiding hole 2043 can guide the air in the winding ring 2031 to be pumped to the air extractor 2041.

[0058] As Figure 11As shown, the drainage component 205 includes an air delivery pipe 2051, air distribution holes 2052, and a protective net 2053. The air delivery pipe 2051 is bolted to the left side of the rotating ring 2042. The air distribution holes 2052 are formed on the surface of the air delivery pipe 2051. The protective net 2053 is bolted to the inner wall of the air distribution holes 2052. By providing the drainage component 205, the air delivery pipe 2051 can facilitate the air distribution holes 2052 to evenly pump air from the winding drum 2021 to the air extractor 2041. The protective net 2053 can block impurities in the air.

[0059] Brief description of the usage process: First, power on and start the winding mechanism 2. Then, place the smoke-resistant and corrosion-resistant dust removal cloth bag that has been sewn at the bottom of the winding drum 2021, and make the metal strip of the sewn smoke-resistant and corrosion-resistant dust removal cloth bag contact the limit groove 2032 on the winding ring 2031. Then start the air extractor 2041. The air extractor 2041 will extract air from the air delivery pipe 2051. The air distribution holes 2052 on the surface of the air delivery pipe 2051 will evenly pump air from the winding drum 2021 to the air extractor 2041. The air guide holes 2043 will extract the air in the adsorption holes 2033 on the surface of the rotating ring 2042 to the air extractor 2041, so that the winding drum 2021 and the winding ring 2031 have adsorption force, and adsorb the smoke-resistant and corrosion-resistant dust removal cloth bag on the surfaces of the winding drum 2021 and the rotating ring 2042. Then start the winding servo motor 2012. The winding drum 2021 and the winding ring 2031 will rotate with the winding servo motor 2012, gradually winding the smoke-resistant and corrosion-resistant dust removal cloth bag into a hollow cylindrical shape. The metal strip will form a circular ring and fix the smoke-resistant and corrosion-resistant dust removal cloth bag, thus completing the forming process of the smoke-resistant and corrosion-resistant dust removal cloth bag, which is convenient for subsequent sewing and closing treatment of the formed smoke-resistant and corrosion-resistant dust removal cloth bag.

[0060] This specific embodiment is only an explanation of the present invention, and it is not a limitation of the present invention. After reading this specification, those skilled in the art can make modifications to this embodiment without creative contributions as needed, but as long as it is within the scope of the claims of the present invention, it is protected by the patent law.

Claims

1. A preparation device for a dust removal cloth bag resistant to flue gas corrosion, comprising a binding mechanism (1) and a winding mechanism (2), characterized in that: The winding mechanism (2) is bolted to the rear side of the binding mechanism (1). The binding mechanism (1) includes a processing component (101), a support component (102), and a binding component (103). The support component (102) is bolted to the inside of the processing component (101). The binding component (103) is movably connected to the left side of the support component (102). The winding mechanism (2) includes a transmission component (201), a limiting component (202), a winding component (203), a suction component (204), and a drainage component (205). The transmission component (201) is bolted to the rear side of the processing component (101). The limiting component (202) is bolted to the right side of the transmission component (201). The winding component (203) is bolted to the right side of the limiting component (202). The suction component (204) is bolted to the right side of the transmission component (201). The left side of the transmission component (201) is rotatably connected to the right side of the winding component (203). The drainage component (205) is bolted to the left side of the suction component (204). The surface of the drainage component (205) is in contact with the inner wall of the winding component (203). The processing component (101) includes a sewing machine table (1011), a processing plate (1012), and a cutting machine (1013). The processing plate (1012) is bolted to the top of the sewing machine table (1011). The cutting machine (1013) is bolted to the front side of the top of the sewing machine table (1011). The support component (102) includes a support plate (1021), a pressing servo motor (1022), and a conveying servo motor (1023). The support plate (1021) is bolted to the left side of the processing plate (1012). The pressing servo motor (1022) is bolted to the top of the left side of the support plate (1021). The conveying servo motor (1023) is bolted to the bottom of the left side of the support plate (1021). The binding component (103) includes an inclined conveyor belt (1031), a limiting roller (1032), and a conveying conveyor belt (1033). The inclined conveyor belt (1031) is rotatably connected to the top of the left side of the support plate (1021). The limiting roller (1032) is rotatably connected to the top of the left side of the support plate (1021). The surface of the limiting roller (1032) is in contact with the surface of the inclined conveyor belt (1031). The right side of the inclined conveyor belt (1031) is bolted to the output end of the left side of the pressing servo motor (1022). The conveying conveyor belt (1033) is rotatably connected to the bottom of the left side of the support plate (1021). The right side of the conveying conveyor belt (1033) is bolted to the output end of the left side of the conveying servo motor (1023). The transmission assembly (201) includes a fixed plate (2011), a winding servo motor (2012) and a limiting ring (2013). The fixed plate (2011) is bolted to the rear side of the sewing machine table (1011). The winding servo motor (2012) is bolted to the left side of the fixed plate (2011). The limiting ring (2013) is bolted to the output end on the right side of the winding servo motor (2012). The limiting assembly (202) includes a winding cylinder (2021), an air intake hole (2022) and a connection hole (2023). The connection hole (2023) is opened on the left side of the winding cylinder (2021). The inner side of the connection hole (2023) is bolted to the limiting ring (2013). The air intake hole (2022) is opened on the surface of the winding cylinder (2021). The rolling assembly (203) includes a winding ring (2031), a limiting groove (2032) and an adsorption hole (2033). The winding ring (2031) is bolted to the right side of the winding cylinder (2021). The limiting groove (2032) is opened on the surface of the winding ring (2031). The adsorption hole (2033) is opened on the inner side of the limiting groove (2032). The air suction assembly (204) includes an air extractor (2041), a rotating ring (2042) and an air guiding hole (2043). The air extractor (2041) is bolted to the right side of the fixed plate (2011). The rotating ring (2042) is rotatably connected to the output end on the left side of the air extractor (2041). The air guiding hole (2043) is opened on the surface of the rotating ring (2042). The surface of the rotating ring (2042) is bolted to the inner side of the winding ring (2031). The drainage assembly (205) includes an air duct (2051), an air equalizing hole (2052) and a protective net (2053). The air duct (2051) is bolted to the left side of the rotating ring (2042). The air equalizing hole (2052) is opened on the surface of the air duct (2051). The protective net (2053) is bolted to the inner wall of the air equalizing hole (2052).

2. A method for preparing a dust removal cloth bag resistant to flue gas corrosion for the equipment for preparing a dust removal cloth bag resistant to flue gas corrosion as described in claim 1, characterized in that: It includes the following steps: S1. Binding process: First, power on and start the binding mechanism (1). Place the flue gas corrosion-resistant dust removal cloth bag into the cutting machine (1013). Then, place the metal strip on the right side of the flue gas corrosion-resistant dust removal cloth bag, and wrap the metal strip with the flue gas corrosion-resistant dust removal cloth bag. Next, push the flue gas corrosion-resistant dust removal cloth bag and the metal strip onto the processing plate (1012). When the flue gas corrosion-resistant dust removal cloth bag contacts the support plate (1021), start the pressing servo motor (1022) and the conveying servo motor (1023). The inclined conveyor belt (1031) and the conveying conveyor belt (1033) will push the flue gas corrosion-resistant dust removal cloth bag towards the sewing machine table (1011). The inclined conveyor belt (1031) and the conveying conveyor belt (1033) will gradually press the flue gas corrosion-resistant dust removal cloth bag. Then, the sewing machine table (1011) will sew the pressed flue gas corrosion-resistant dust removal cloth bag and sew the metal strip inside the flue gas corrosion-resistant dust removal cloth bag. After that, start the cutting machine (1013), and the cutting machine (1013) will cut the sewn flue gas corrosion-resistant dust removal cloth bag and the metal strip until the cutting is completed. S2. Rewinding and shaping: First, power on and start the rewinding mechanism (2). Then, place the sewn flue gas corrosion-resistant dust removal cloth bag at the bottom of the rewinding cylinder (2021), and make the metal strip of the sewn flue gas corrosion-resistant dust removal cloth bag contact the limiting groove (2032) on the winding ring (2031). Next, start the air extractor (2041). The air extractor (2041) will extract air from the air delivery pipe (2051). The uniform air holes (2052) on the surface of the air delivery pipe (2051) will evenly extract air from the rewinding cylinder (2021) to the air extractor (2041). The air guiding hole (2043) will extract the air from the adsorption holes (2033) on the surface of the rotating ring (2042) to the air extractor (2041), so that the rewinding cylinder (2021) and the winding ring (2031) have adsorption force and adsorb the flue gas corrosion-resistant dust removal cloth bag on the surfaces of the rewinding cylinder (2021) and the rotating ring (2042). Then, start the rewinding servo motor (2012). The rewinding cylinder (2021) and the winding ring (2031) will rotate with the rewinding servo motor (2012), gradually winding the flue gas corrosion-resistant dust removal cloth bag into a hollow cylindrical shape, and the metal strip will form a circular ring and fix the flue gas corrosion-resistant dust removal cloth bag, thus completing the shaping process of the flue gas corrosion-resistant dust removal cloth bag, which is convenient for subsequent sewing and closing treatment of the shaped flue gas corrosion-resistant dust removal cloth bag.

Citation Information

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