A paper machine full flow cleaning system

By designing a paper machine end-to-end cleaning system that combines cleaning and rinsing components, and utilizing gear transmission and filtration structures, automated cleaning and rinsing during the paper machine production process has been achieved, reducing costs and improving efficiency.

CN116770618BActive Publication Date: 2025-12-05ZHEJIANG JINLI ENVIRONMENTAL PROTECTION PAPER CO LTD
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Patent Information

Application Number
CN202310707641.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-15
Publication Date
2025-12-05
Estimated Expiration
2043-06-15

AI Technical Summary

Technical Problem

Existing paper machine cleaning devices are costly and cannot automatically clean and wash during the paper production process. They require multiple electric components to drive them and the cleaning effect is not good.

Method used

Design a paper machine end-to-end cleaning system that combines cleaning and washing sections. Utilize components such as an electric telescopic rod, suction box, filter box, and impeller to achieve automatic dust collection and cleaning through gear transmission, reducing the number of electric components and improving cleaning efficiency.

Benefits of technology

It enables automatic dust collection and cleaning during paper machine production, reducing costs, improving cleaning and rinsing effects, and enhancing automation capabilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a paper machine full-process cleaning system and relates to the technical field of cleaning devices, and comprises a processing equipment frame body and a cleaning part; the processing equipment frame body is placed on the ground, and the cleaning part is installed on the processing equipment frame body. An auxiliary rod is welded on the placing plate, the auxiliary rod is in a bent rod structure, the left end of the auxiliary rod is in contact with the top end surface of the suction box, when the suction box moves left and right by the extension and retraction of the electric telescopic rod, the placing plate is in an up-and-down reciprocating state under the action of the protrusion, the cleaning effect of the article can be improved, the device is mainly used in emergency after the gear is damaged and disassembled, the dry net and the blanket on the paper machine need to be cleaned after being used for a period of time; at present, although there are cleaning devices that can realize cleaning, most of them are used alone, the cost is high, and the replaced articles cannot be installed on the paper machine during the paper production process, and the disassembled dry net cannot be cleaned.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cleaning device, in particular to a paper machine full-process cleaning system. BACKGROUND

[0002] The paper machine is mainly used for paper processing, and the dry net and blanket on the paper machine need to be cleaned after being used for a period of time. At present, although there are cleaning devices that can realize cleaning, they are mostly used alone and have high cost, and cannot install replacement articles on the paper machine during paper production and then clean the removed dry net. SUMMARY

[0003] Therefore, the present application provides a paper machine full-process cleaning system, which has a cleaning part and a washing part. Through the setting of the cleaning part and the washing part, automatic dust cleaning and washing can be realized during the processing process, and only one electric element is needed to realize the automatic driving of the cleaning part and the washing part, such as the gear installed on the rotating shaft. The toothed row is fixed on the suction box, and the toothed row is engaged with the gear. When the electric telescopic rod is extended to realize the left and right movement of the suction box, the impeller is in a rotating state under the transmission of the toothed row and the gear at this time. At this time, the cleaning of the article can be realized without a separate electric element. The top end face of the suction box is linearly arrayed with a protrusion, which is a semi-cylindrical structure. An auxiliary rod is welded on the placing plate, which is a bent rod structure. The left side of the auxiliary rod is in contact with the top end face of the suction box. When the electric telescopic rod is extended to realize the left and right movement of the suction box, the placing plate is in an up and down reciprocating state under the action of the protrusion at this time. At this time, the cleaning effect of the article can be improved. This is mainly used for emergency use after the gear is damaged and removed.

[0004] The purpose and effect of the paper machine full-process cleaning system are achieved by the following specific technical means:

[0005] The application provides a paper machine full-process cleaning system, which specifically comprises a processing equipment frame body and a cleaning part; the processing equipment frame body is placed on the ground, and the cleaning part is installed on the processing equipment frame body; the cleaning part is composed of a first frame body, an electric telescopic rod, a suction box, a filter box, a first cover plate, a suction pump, a connecting pipe, an air outlet pipe, a first filter plate, a second filter plate and a protrusion; the first frame body is fixed on the processing equipment frame body, one electric telescopic rod is installed on the first frame body, and the suction box is installed at the left end of the electric telescopic rod; the filter box is installed at the top of the first frame body, a first cover plate is buckled at the top of the filter box, the suction pump is installed on the first cover plate, and the suction pump is connected with the suction box through the connecting pipe; in the use process, on one hand, the suction pump can suck air when working, at this time, dust and lint can enter the suction box, and the cleaning of the dust and lint is completed; on the other hand, the position of the suction box can be adjusted when the electric telescopic rod is telescoped, and the cleaning range is expanded; the suction pump is connected with the filter box through the pipeline, and the filter box is filled with a filtering liquid; when the gas enters the inside of the filter box, the gas is purified through the filtering liquid.

[0006] Further, the first cover plate is connected with an air outlet pipe, the air outlet pipe is in a U-shaped bent rod structure, the air outlet of the air outlet pipe is downward, so that in the non-use state, the probability of dust entering the filter box through the air outlet pipe is reduced, the filtering liquid in the filter box is ensured to be clean, and the filtering effect of the dust and lint is finally ensured.

[0007] Further, the filter box is installed with a first filter plate, the first filter plate is in a rectangular plate structure, the first filter plate is provided with through holes in a rectangular array, the first filter plate is located in the filtering liquid, the through holes provided in the rectangular array jointly form a dust-containing gas separation structure, the dust-containing gas is separated into a plurality of small bubbles through the through holes, and the filtering effect of the dust-containing gas and the filtering liquid is improved.

[0008] Further, the filter box is installed with a second filter plate, the second filter plate is in a rectangular plate structure, the second filter plate is provided with through holes in a rectangular array, the second filter plate is located below the first filter plate, the through holes on the second filter plate and the through holes on the first filter plate are arranged in a staggered manner, so that the separation effect of the gas is improved, and the cleaning and filtering effect of the gas is improved.

[0009] Further, the processing equipment frame body is installed with a cleaning part;

[0010] The cleaning part is composed of a second frame body, a cleaning box, a second cover plate, a placing plate, a rotating shaft, an impeller, a gear, a gear row and an auxiliary rod. The second frame body is arranged on the machining equipment frame body. The second frame body is provided with the cleaning box at the top end face. The cleaning box is provided with the second cover plate at the top. The second cover plate and the first cover plate are both in a stepped structure. The left end face and the right end face of the first cover plate are respectively located at the left side of the left end face and the right side of the right end face of the filter box. The left end face and the right end face of the second cover plate are respectively located at the left side of the left end face and the right side of the right end face of the cleaning box. In use, on the one hand, the sealing performance between the first cover plate and the filter box and between the second cover plate and the cleaning box is improved. On the other hand, the first cover plate and the second cover plate are more convenient to disassemble.

[0011] Further, the cleaning box is filled with a cleaning liquid. The cleaning box is slidably connected with a placing plate. The placing plate is provided with through holes in a rectangular array.

[0012] The cleaning box is rotatably connected with a rotating shaft. The rotating shaft is provided with the impeller in a linear array. When the impeller rotates, the cleaning liquid can be stirred. At this time, the cleaning of the articles on the placing plate can be realized.

[0013] Further, the impeller is in contact with the bottom end face of the placing plate. When the rotating shaft rotates, the placing plate reciprocates up and down under the impelling of the impeller. At this time, the through holes on the placing plate are in a jet injection state. Therefore, the cleaning effect of the articles is improved.

[0014] Further, the rotating shaft is provided with the gear.

[0015] The suction box is fixedly provided with a gear row. The gear row is engaged with the gear. When the electric telescopic rod is extended and retracted to move the suction box left and right, the impeller rotates under the transmission of the gear row and the gear. At this time, the cleaning of the articles can be realized without a separate electric element.

[0016] Further, the top end face of the suction box is welded with protrusions in a linear array. The protrusions are in a semi-cylindrical structure.

[0017] The placing plate is welded with an auxiliary rod. The auxiliary rod is in a bent rod structure. The left end of the auxiliary rod is in contact with the top end face of the suction box. When the electric telescopic rod is extended and retracted to move the suction box left and right, the placing plate reciprocates up and down under the action of the protrusions. At this time, the cleaning effect of the articles is improved. This is mainly used in emergency after the gear is disassembled.

[0018] Further, the first frame body is provided with a control box. The control box is provided with a microprocessor.

[0019] The inhaled box left end surface is provided with a dust sensing induction probe, and the induction probe is electrically connected with the microprocessor.

[0020] Advantages

[0021] The cleaning part is provided with a cleaning liquid, a placing plate is slidably connected in the cleaning box, the placing plate is provided with articles to be cleaned, and the placing plate is provided with through holes in a rectangular array; a rotating shaft is rotatably connected to the cleaning box, impellers are installed on the rotating shaft in a linear array, the impellers can stir the cleaning liquid when rotating, and the articles on the placing plate can be cleaned; the impellers are in contact with the bottom end surface of the placing plate, the placing plate reciprocates up and down under the action of the impellers when the rotating shaft rotates, the through holes on the placing plate are in a jet injection state, and the cleaning effect of the articles is improved; the rotating shaft is provided with a gear, a gear rack is fixed to the suction box, the gear rack is engaged with the gear, the impellers rotate under the transmission of the gear rack and the gear when the suction box moves left and right by the electric telescopic rod, the cleaning of the articles can be realized without a separate electric element; the top end surface of the suction box is welded with protrusions in a linear array, the protrusions are semicylindrical structures; an auxiliary rod is welded to the placing plate, the auxiliary rod is a bent rod structure, the left end of the auxiliary rod is in contact with the top end surface of the suction box, the placing plate reciprocates up and down under the action of the protrusions when the suction box moves left and right by the electric telescopic rod, and the cleaning effect of the articles is improved.

[0022] By the setting of the cleaning part, the first frame body is fixed on the machining equipment frame body, a motorized telescopic rod is installed on the first frame body, and a suction box is installed on the left end of the motorized telescopic rod; a filter box is installed on the top of the first frame body, a first cover plate is buckled on the top of the filter box, a suction pump is installed on the first cover plate, and the suction pump is connected with the suction box through a connecting pipe; in the use process, on the one hand, the suction pump can suck air when working, at this time, dust and lint will enter the suction box, and the cleaning of the dust and lint is completed; on the other hand, the position of the suction box can be adjusted when the motorized telescopic rod is telescoped, and the cleaning range is expanded; in addition, the suction pump is connected with the filter box through the pipeline, the filter box is filled with filter liquid, and the gas entering the filter box is purified through the filter liquid; in addition, the first cover plate is connected with an air outlet pipe, the air outlet pipe is a U-shaped bending rod structure, the air outlet of the air outlet pipe is downward, so that the probability of dust entering the filter box through the air outlet pipe in the non-use state is avoided, the filter liquid in the filter box is guaranteed to be clean, and the filtering effect of the dust and lint is finally guaranteed; in addition, a first filter plate is installed in the filter box, the first filter plate is a rectangular plate structure, through holes are arranged in a rectangular array on the first filter plate, the first filter plate is located in the filter liquid, the through holes arranged in the rectangular array jointly form a dust-containing gas separation structure, the dust-containing gas is separated into a plurality of small bubbles through the through holes, and the filtering effect of the dust-containing gas and the filter liquid is improved; in addition, a second filter plate is installed in the filter box, the second filter plate is a rectangular plate structure, through holes are arranged in a rectangular array on the second filter plate, the second filter plate is located below the first filter plate, the through holes on the second filter plate and the through holes on the first filter plate are arranged in an interlaced manner, so that the separation effect of the gas is improved, and the cleaning and filtering effect of the gas is improved. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0024] The drawings described in the following merely relate to some embodiments of the present application, and are not a limitation to the present application.

[0025] In the drawings:

[0026] Figure 1 is a front view structural schematic diagram of the paper machine full-process cleaning device of the present application.

[0027] Figure 2 is an axial view structural schematic diagram of the paper machine full-process cleaning device of the present application.

[0028] Figure 3 is an axial view structural schematic diagram of the paper machine full-process cleaning device of the present application. Figure 2 is an axial view structural schematic diagram of the paper machine full-process cleaning device of the present application.

[0029] Figure 4 is a schematic diagram of the top structure of the paper machine full-process cleaning device of the present application.

[0030] Figure 5 is a schematic diagram of the axial structure of the paper machine full-process cleaning device of the present application after being partially cut open.

[0031] Figure 6 is a schematic diagram of the axial structure of the paper machine full-process cleaning device of the present application after being partially cut open. Figure 5 is a schematic diagram of the axial structure of the paper machine full-process cleaning device of the present application after being partially cut open.

[0032] Figure 7 is a schematic diagram of the axial structure of the paper machine full-process cleaning device of the present application after being partially cut open.

[0033] Figure 8 is a schematic diagram of the axial structure of the paper machine full-process cleaning device of the present application after being partially cut open.

[0034] Figure 9 is a schematic diagram of the system structure of the paper machine full-process cleaning device of the present application.

[0035] List of figure marks

[0036] 1, processing equipment frame body; 2, cleaning part; 201, first frame body; 202, electric telescopic rod; 203, suction box; 204, filter box; 205, first cover plate; 206, suction pump; 207, connecting pipe; 208, air outlet pipe; 209, first filter plate; 210, second filter plate; 211, protrusion; 3, cleaning part; 301, second frame body; 302, cleaning box; 303, second cover plate; 304, placement plate; 305, rotating shaft; 306, impeller; 307, gear; 308, gear row; 309, auxiliary rod; 4, control box; 401, microprocessor; 402, inductive probe. DETAILED DESCRIPTION

[0037] The embodiments of the present application will be further described in detail below in combination with the drawings and examples.

[0038] Example: please refer to Figures 1 to 9 :

[0039] The present application proposes a paper machine full-process cleaning system, which comprises: a processing equipment frame body 1 and a cleaning part 2.

[0040] The processing equipment frame body 1 is placed on the ground, and the cleaning part 2 is installed on the processing equipment frame body 1.

[0041] The cleaning part 2 is composed of the first frame body 201, the electric telescopic rod 202, the suction box 203, the filter box 204, the first cover plate 205, the suction pump 206, the connecting pipe 207, the air outlet pipe 208, the first filter plate 209, the second filter plate 210 and the convex 211, the first frame body 201 is fixed on the machining equipment frame body 1, one electric telescopic rod 202 is installed on the first frame body 201, one end of the left side of the electric telescopic rod 202 is provided with the suction box 203;

[0042] The top of the first frame body 201 is provided with the filter box 204, the top of the filter box 204 is buckled with a first cover plate 205, the first cover plate 205 is provided with the suction pump 206, the suction pump 206 is connected with the suction box 203 through the connecting pipe 207, in the use process, on the one hand, when the suction pump 206 works, the suction can be carried out, at this time, the dust and the lint will enter the suction box 203, at this time, the cleaning of the dust and the lint is completed, on the other hand, when the electric telescopic rod 202 is telescopic, the position adjustment of the suction box 203 can be realized, so the expansion of the cleaning range is realized.

[0043] The suction pump 206 is connected with the filter box 204 through the pipeline, the filter box 204 is filled with filter liquid, when the gas enters the inside of the filter box 204, the filter liquid is used for purifying the gas.

[0044] The first cover plate 205 is connected with an air outlet pipe 208, the air outlet pipe 208 is a U-shaped bending rod structure, the air outlet of the air outlet pipe 208 is downward, so in the non-use state, the probability of the dust entering the filter box 204 through the air outlet pipe 208 can be avoided, so the cleanliness of the filter liquid in the filter box 204 is ensured, and finally the filtering effect of the dust and the lint is ensured.

[0045] The filter box 204 is provided with a first filter plate 209, the first filter plate 209 is a rectangular plate structure, the first filter plate 209 is provided with through holes in a rectangular array, the first filter plate 209 is located in the filter liquid, the through holes provided in the rectangular array jointly form a dust-containing gas separation structure, the dust-containing gas passing through the through holes is separated into multiple small bubbles, so the filtering effect of the dust-containing gas and the filter liquid is improved.

[0046] The filter box 204 is provided with a second filter plate 210, the second filter plate 210 is a rectangular plate structure, the second filter plate 210 is provided with through holes in a rectangular array, the second filter plate 210 is located below the first filter plate 209, the through holes on the second filter plate 210 and the through holes on the first filter plate 209 are arranged in an interlaced manner, so the separation effect of the gas is improved, and the cleaning and filtering effect of the gas is improved.

[0047] The machining equipment frame body 1 is provided with a cleaning part 3;

[0048] The cleaning part 3 is composed of the second frame body 301, the cleaning box 302, the second cover plate 303, the placing plate 304, the rotating shaft 305, the impeller 306, the gear 307, the gear row 308 and the auxiliary rod 309. The second frame body 301 is defined on the machining equipment frame body 1. The cleaning box 302 is installed on the top end surface of the second frame body 301. The second cover plate 303 is buckled on the top of the cleaning box 302. The second cover plate 303 and the first cover plate 205 are both ladder-shaped structures. The left end surface and the right end surface of the first cover plate 205 are respectively located on the left side of the left end surface and the right side of the right end surface of the filter box 204. The left end surface and the right end surface of the second cover plate 303 are respectively located on the left side of the left end surface and the right side of the right end surface of the cleaning box 302. Therefore, on the one hand, the sealing performance between the first cover plate 205 and the filter box 204 and between the second cover plate 303 and the cleaning box 302 can be improved. On the other hand, the first cover plate 205 and the second cover plate 303 can be more convenient to disassemble.

[0049] The cleaning box 302 is filled with cleaning liquid. The placing plate 304 is slidably connected in the cleaning box 302. The articles to be cleaned are placed on the placing plate 304. The through holes are formed in a rectangular array on the placing plate 304.

[0050] The rotating shaft 305 is rotatably connected to the cleaning box 302. The impeller 306 is linearly arranged on the rotating shaft 305. When the impeller 306 rotates, the cleaning liquid can be stirred. At this time, the articles on the placing plate 304 can be cleaned.

[0051] The impeller 306 is in contact with the bottom end surface of the placing plate 304. When the rotating shaft 305 rotates, the placing plate 304 reciprocates up and down under the impeller 306. At this time, the through holes on the placing plate 304 are in a jet injection state. Therefore, the cleaning effect of the articles is improved.

[0052] The gear 307 is installed on the rotating shaft 305.

[0053] The gear row 308 is fixed on the suction box 203. The gear row 308 is engaged with the gear 307. When the suction box 203 moves left and right by the extension and retraction of the electric telescopic rod 202, the impeller 306 rotates under the transmission of the gear row 308 and the gear 307. At this time, the cleaning of the articles can be realized without a separate electric element.

[0054] The protrusions 211 are linearly welded in a linear array on the top end surface of the suction box 203. The protrusions 211 are semicylindrical structures.

[0055] An auxiliary rod 309 is welded on the placing plate 304, the auxiliary rod 309 is a bent rod structure, and the left end of the auxiliary rod 309 is in contact with the top end surface of the suction box 203; when the electric telescopic rod 202 is telescopically adjusted to move the suction box 203 leftward and rightward, the placing plate 304 is in a reciprocating state up and down under the action of the protrusion 211, and the cleaning effect of the articles can be improved; this is mainly used in emergency after the gear 307 is damaged and disassembled.

[0056] The first frame body 201 is provided with a control box 4, and the control box 4 is provided with a microprocessor 401.

[0057] The left end surface of the suction box 203 is provided with a sensing probe 402 for dust sensing, and the sensing probe 402 is electrically connected with the microprocessor 401; when the sensing probe 402 senses dust, a signal is transmitted to the microprocessor 401, and the microprocessor 401 controls the electric telescopic rod 202 to work, thereby improving the automation.

[0058] The specific use mode and effect of the embodiment are as follows:

[0059] When the sensing probe 402 senses dust, a signal is transmitted to the microprocessor 401, and the microprocessor 401 controls the electric telescopic rod 202 to work.

[0060] When the electric telescopic rod 202 is telescopically adjusted, the first frame body 201 is fixed on the machining equipment frame body 1, the first frame body 201 is provided with an electric telescopic rod 202, the left end of the electric telescopic rod 202 is provided with a suction box 203; the top of the first frame body 201 is provided with a filter box 204, the top of the filter box 204 is buckled with a first cover plate 205, the first cover plate 205 is provided with a suction pump 206, the suction pump 206 is connected with the suction box 203 through a connecting pipe 207; during use, on the one hand, when the suction pump 206 works, the suction box 203 can be used for suction, and dust and lint can enter the suction box 203, and the cleaning of the dust and lint is completed; on the other hand, when the electric telescopic rod 202 is telescopically adjusted, the position of the suction box 203 can be adjusted, and the cleaning range is expanded.

[0061] Meanwhile, the cleaning box 302 is filled with cleaning liquid, and a placing plate 304 is slidably connected in the cleaning box 302, and the placing plate 304 is provided with articles to be cleaned, and the placing plate 304 is provided with through holes in a rectangular array; the cleaning box 302 is rotatably connected with a rotating shaft 305, and the rotating shaft 305 is provided with impellers 306 in a linear array, and the impellers 306 can stir the cleaning liquid when rotating, so that the articles on the placing plate 304 can be cleaned; since the impellers 306 are in contact with the bottom end surface of the placing plate 304, the placing plate 304 reciprocates up and down under the action of the impellers 306 when the rotating shaft 305 rotates, so that the through holes on the placing plate 304 are in a jet injection state, thereby improving the cleaning effect of the articles; since the rotating shaft 305 is provided with a gear 307, the suction box 203 is fixed with a gear rack 308, and the gear rack 308 is engaged with the gear 307, so that the impellers 306 rotate under the transmission of the gear rack 308 and the gear 307 when the electric telescopic rod 202 is extended and retracted to move the suction box 203 left and right, thereby realizing the cleaning of the articles without a separate electric element; since the top end surface of the suction box 203 is welded with protrusions 211 in a linear array, the protrusions 211 are semicylindrical structures; the placing plate 304 is welded with an auxiliary rod 309, and the auxiliary rod 309 is a bent rod structure, and the left end of the auxiliary rod 309 is in contact with the top end surface of the suction box 203, so that the placing plate 304 reciprocates up and down under the action of the protrusions 211 when the electric telescopic rod 202 is extended and retracted to move the suction box 203 left and right, thereby improving the cleaning effect of the articles, and the auxiliary rod 309 is mainly used for emergency use after the gear 307 is damaged and removed;

[0062] In use, because the suction pump 206 is connected with the filter box 204 through the pipeline, the filter box 204 is filled with filter liquid, when the gas enters into the filter box 204, it is purified by the filter liquid; because the first cover plate 205 is connected with an air outlet pipe 208, the air outlet pipe 208 is a U-shaped bending rod structure, the air outlet of the air outlet pipe 208 is downward, so in the non-use state, the probability of dust entering into the filter box 204 through the air outlet pipe 208 can be avoided, the cleanliness of the filter liquid in the filter box 204 is ensured, and finally the filtering effect of dust and fluff is ensured; because a first filter plate 209 is installed in the filter box 204, the first filter plate 209 is a rectangular plate structure, the first filter plate 209 is provided with through holes in a rectangular array, the first filter plate 209 is located in the filter liquid, the through holes provided in the rectangular array together form a dust-containing gas separation structure, the dust-containing gas separated by the through holes is separated into multiple small bubbles, at this time, the filtering effect of the dust-containing gas and the filter liquid is improved; because a second filter plate 210 is installed in the filter box 204, the second filter plate 210 is a rectangular plate structure, the second filter plate 210 is provided with through holes in a rectangular array, the second filter plate 210 is located below the first filter plate 209, the through holes on the second filter plate 210 and the through holes on the first filter plate 209 are arranged in a staggered manner, so the separation effect of the gas can be improved, and the cleaning and filtering effect of the gas is improved.

Claims

1. A paper machine full flow cleaning system characterized by, The utility model relates to a kind of cleaning device for processing equipment, including: Processing equipment frame body (1) and cleaning part (2);The processing equipment frame body (1) is placed on ground, and cleaning part (2) is installed on processing equipment frame body (1);The cleaning part (2) is composed of first frame body (201), electric telescopic rod (202), suction box (203), filter box (204), first cover plate (205), suction pump (206), connecting pipe (207), air outlet pipe (208), first filter plate (209), second filter plate (210) and protrusion (211), first frame body (201) is fixed on processing equipment frame body (1), and first frame body (201) is installed with one electric telescopic rod (202), and one suction box (203) is installed on the left end of electric telescopic rod (202);First frame body (201) top is installed with filter box (204), and one first cover plate (205) is buckled on the top of filter box (204), and suction pump (206) is installed on first cover plate (205), and suction pump (206) is connected with suction box (203) by connecting pipe (207);The suction pump (206) is connected with filter box (204) by pipeline, and filter box (204) is filled with filter liquid; Processing equipment frame body (1) is installed with cleaning part (3); Cleaning part (3) is composed of second frame body (301), cleaning box (302), second cover plate (303), placement plate (304), rotating shaft (305), impeller (306), gear (307), gear rack (308) and auxiliary rod (309), and second frame body (301) is defined on processing equipment frame body (1), and one cleaning box (302) is installed on the top end surface of second frame body (301), and one second cover plate (303) is buckled on the top of cleaning box (302), and second cover plate (303) and first cover plate (205) are both ladder-shaped structure, and the left end surface and the right end surface of first cover plate (205) are respectively located on the left side of the left end surface of filter box (204) and the right side of the right end surface, and the left end surface and the right end surface of second cover plate (303) are respectively located on the left side of the left end surface of cleaning box (302) and the right side of the right end surface; Cleaning box (302) is filled with cleaning liquid, and one placement plate (304) is slidably connected in cleaning box (302), and the article needing cleaning is placed on placement plate (304), and through hole is formed on placement plate (304) in rectangular array shape; Rotating shaft (305) is rotatably connected on cleaning box (302), and impeller (306) is installed on rotating shaft (305) in linear array shape; Impeller (306) is in contact with the bottom end surface of placement plate (304), and placement plate (304) is reciprocated up and down under the impelling of impeller (306) when rotating shaft (305) rotates, and the through hole on placement plate (304) is in jet injection state at this time; Gear (307) is installed on rotating shaft (305). The suction box (203) is fixed with a gear rack (308), the gear rack (308) is engaged with a gear (307), when the electric telescopic rod (202) is telescoped to realize the left and right movement of the suction box (203), at this time, the impeller (306) is in a rotating state under the transmission of the gear rack (308) and the gear (307); The top surface of the suction box (203) is linearly arrayed with a convex (211) welded, the convex (211) is a semi-cylindrical structure; An auxiliary rod (309) is welded on the placement plate (304), the auxiliary rod (309) is a bent rod structure, the left end of the auxiliary rod (309) is in contact with the top surface of the suction box (203), when the electric telescopic rod (202) is telescoped to realize the left and right movement of the suction box (203), at this time, the placement plate (304) is in an up and down reciprocating state under the action of the convex (211).

2. A paper machine full flow cleaning system as claimed in claim 1, characterized in that The first cover plate (205) is connected with an air outlet pipe (208), the air outlet pipe (208) is a U-shaped bent rod structure, and the air outlet of the air outlet pipe (208) is downward.

3. A paper machine full flow cleaning system as claimed in claim 1, characterized in that: A first filter plate (209) is installed in the filter box (204), the first filter plate (209) is a rectangular plate structure, the first filter plate (209) is located in the filtering liquid, and the rectangular arrayed through holes collectively form a dust-containing gas separation structure.

4. A paper machine full flow cleaning system as claimed in claim 1, characterized in that: A second filter plate (210) is installed in the filter box (204), the second filter plate (210) is a rectangular plate structure, the second filter plate (210) is located below the first filter plate (209), and the through holes on the second filter plate (210) are arranged in an interlaced manner with the through holes on the first filter plate (209).

5. A paper machine full flow cleaning system as claimed in claim 1, characterized in that: A control box (4) is installed on the first frame body (201), and a microprocessor (401) is installed in the control box (4); A sensing probe (402) for dust sensing is installed on the left end surface of the suction box (203), and the sensing probe (402) is electrically connected with the microprocessor (401).

Citation Information

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