A heat exchanger tube bundle cutting device

By designing a heat exchanger tube bundle cutting device that includes a high-pressure blower and a waste gas treatment module, the problem of waste material and waste gas pollution during the cutting process was solved, achieving effective treatment of waste gas and waste material and saving resources.

CN119973242BActive Publication Date: 2026-02-13WUHAN CHANGNENG XINYUE NEW ENERGY TECH CO LTD
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Patent Information

Application Number
CN202510417544.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-02-13
Estimated Expiration
2045-04-03

AI Technical Summary

Technical Problem

Existing heat exchanger tube bundle cutting devices generate waste and exhaust gas during the cutting process, which cannot be effectively treated, leading to environmental pollution.

Method used

A device comprising a high-pressure blower, an extraction hood, a metal hose, a rubber hose, and an exhaust gas treatment module was designed. The high-pressure blower extracts exhaust gas, which is then treated by the exhaust gas treatment module. Combined with a humidification module and a waste liquid treatment module, the device achieves the separation and purification of exhaust gas and waste materials.

Benefits of technology

It effectively treats the exhaust gas and waste generated during cutting, reducing environmental pollution and ensuring the cleanliness and resource conservation of the cutting process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a heat exchanger tube bundle cutting device, and belongs to the technical field of heat exchanger processing. The device comprises a bottom plate, a vertical movement module arranged on one side of the upper end of the bottom plate, a longitudinal movement module arranged on the vertical movement module, a limiting block slidingly arranged on the longitudinal movement module, a cutting machine fixedly connected to the lower end of the limiting block, a high-pressure fan arranged on the top of the vertical movement module, a waste gas treatment module arranged on the side of the high-pressure fan, a support fixedly connected to one side of the limiting block, a metal hose fixedly connected to the support, an air suction cover fixedly connected to one end of the metal hose, and the other end of the metal hose connected to the high-pressure fan through a rubber hose. The application solves the problem that the existing heat exchanger tube bundle cutting device produces waste and waste gas during the cutting process, and the waste and waste gas cannot be treated, thereby polluting the surrounding environment.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of heat exchanger processing, and particularly relates to a heat exchanger tube bundle cutting device. BACKGROUND

[0002] A heat exchanger is a device for transferring part of the heat of a hot fluid to a cold fluid, also known as a heat exchanger, and is an energy-saving device for transferring heat between two or more fluids at different temperatures. In the heat transfer process, the tube bundle in the heat exchanger will be used, and the tube bundle needs to be cut by a cutting device during the processing for better installation and use.

[0003] The prior art CN221134243U discloses a heat exchanger tube bundle cutting device, which comprises a bottom plate, a first recess is formed in the bottom end of the bottom plate and two fixed seats are arranged, a first driving motor is installed on the side face, a first screw rod and a second screw rod are arranged in the first recess and a first bearing is fixed to the side wall, the first screw rod and the second screw rod are oppositely arranged in screw threads and are fixedly connected through a stop block, the other end of the first screw rod is connected with the first bearing, and the other end of the second screw rod is connected with the output end of the first driving motor; the bottom end of each of the two fixed seats is fixedly provided with a first limiting block, and the top end of each of the two fixed seats is provided with a top plate; the two first limiting blocks are respectively connected with the first screw rod and the second screw rod in screw threads; two first hydraulic cylinders are installed on the top plate and the bottom surface of the two first hydraulic cylinders is connected with the fixed seat through two straight rods; the output end of each of the two first hydraulic cylinders extends to the bottom end of the top plate and is connected with a clamping plate; a plurality of V-shaped grooves are uniformly arranged in the bottom end of the clamping plate and the top end of the fixed seat; and a tube bundle is arranged in the V-shaped groove of the fixed seat and corresponds to the V-shaped groove of the clamping plate in one-to-one correspondence. The device cuts the tube bundle by moving the cutting machine, and waste and waste gas are generated during the cutting process. However, the device cannot perform treatment on the waste and waste gas, thereby polluting the surrounding environment. SUMMARY

[0004] The present application provides a heat exchanger tube bundle cutting device, which aims to solve the problem that the existing heat exchanger tube bundle cutting device generates waste and waste gas during the cutting process, cannot perform treatment on the waste and waste gas, and thereby pollutes the surrounding environment.

[0005] The present application provides a heat exchanger tube bundle cutting device, which aims to solve the problem that the existing heat exchanger tube bundle cutting device generates waste and waste gas during the cutting process, cannot perform treatment on the waste and waste gas, and thereby pollutes the surrounding environment. The present application provides a heat exchanger tube bundle cutting device, which aims to solve the problem that the existing heat exchanger tube bundle cutting device generates waste and waste gas during the cutting process, cannot perform treatment on the waste and waste gas, and thereby pollutes the surrounding environment. The present application provides a heat exchanger tube bundle cutting device, which aims to solve the problem that the existing heat exchanger tube bundle cutting device generates waste and waste gas during the cutting process, cannot perform treatment on the waste and waste gas, and thereby pollutes the surrounding environment. The present application provides a heat exchanger tube bundle cutting device, which aims to solve the problem that the existing heat exchanger tube bundle cutting device generates waste and waste gas during the cutting process, cannot perform treatment on the waste and waste gas, and thereby pollutes the surrounding environment. The present application provides a heat exchanger tube bundle cutting device, which aims to solve the problem that the existing heat exchanger tube bundle cutting device generates waste and waste gas during the cutting process, cannot perform treatment on the waste and waste gas, and thereby pollutes the surrounding environment. The present application provides a heat exchanger tube bundle cutting device, which aims to solve the problem that the existing heat exchanger tube bundle cutting device generates waste and waste gas during the cutting process, cannot perform treatment on the waste and waste gas, and thereby pollutes the surrounding environment. The present application provides a heat exchanger tube bundle cutting device, which aims to solve the problem that the existing heat exchanger tube bundle cutting device generates waste and waste gas during the cutting process, cannot perform treatment on the waste and waste gas, and thereby pollutes the surrounding environment. The present application provides a heat exchanger tube bundle cutting device, which aims to solve the problem that the existing heat exchanger tube bundle cutting device generates waste and waste gas during the cutting process, cannot perform treatment on the waste and waste gas, and thereby pollutes the surrounding environment. The present application provides a heat exchanger tube bundle cutting device, which aims to solve the problem that the existing heat exchanger tube bundle cutting device generates waste and waste gas during the cutting process, cannot perform treatment on the waste and waste gas, and thereby pollutes the surrounding environment.

[0006] Further, the bottom plate is provided with a horizontal moving module, and two ends of the horizontal moving module are provided with clamps.

[0007] Further, the exhaust gas treatment module comprises a shell, a plurality of bearing seats are fixedly connected to the upper end of the shell, and a treatment barrel is fixedly connected to the bearing seats; the upper end of the treatment barrel is connected to a gas discharge passage; and the treatment barrel comprises:

[0008] A wetting module is arranged in the treatment barrel, and the wetting module comprises a rotating rod A, one end of the rotating rod A is rotatably connected to the upper end of the treatment barrel, the other end of the rotating rod A penetrates through the lower end of the treatment barrel, one end of the rotating rod A penetrating through the lower end of the treatment barrel is rotatably connected to the upper end of the shell, a partition plate A is rotatably connected to the rotating rod A, the partition plate A is fixedly connected to the inner surface of the treatment barrel, a stripping plate is arranged at the lower end of the partition plate A, the stripping plate is clamped to the outer surface of the rotating rod A, and the stripping plate is fixedly connected to the rotating rod A.

[0009] A waste liquid treatment module is arranged in the treatment barrel, and the waste liquid treatment module comprises a stripping box, a waste liquid passage is fixedly connected to the upper end of the stripping box, the upper end of the waste liquid passage is fixedly connected to the lower end of the treatment barrel, the stripping box and the treatment barrel are connected through the waste liquid passage, one side of the stripping box is fixedly connected to a storage shell, the upper end of the storage shell is fixedly connected to the lower end of the treatment barrel, and an assembly groove B is reserved on one side of the storage shell.

[0010] An adapter cylinder is fixedly connected to the upper end of the shell, a leakproof rotary support is arranged on the outer circumferential surface of the adapter cylinder, the leakproof rotary support is clamped to the adapter cylinder and is tightly embedded with the adapter cylinder, and a plurality of restraint openings are reserved on the outer cylinder.

[0011] Further, the wetting module further comprises a treatment chamber fixedly connected to the side wall of the treatment barrel, the treatment chamber is connected to the inner side of the treatment barrel, one side of the treatment chamber is fixedly connected to an air extraction passage, the air extraction passage is connected to the inner side of the treatment chamber, a bearing block is fixedly connected to the side wall of the treatment barrel, the lower end of the bearing block is fixedly connected to a motor, a sprocket B is fixedly connected to the rotating rod A, the rotating part of the motor is fixedly connected to a sprocket A, the sprocket A and the sprocket B are connected through a chain, the lower end of a rotating table A is fixedly connected to the rotating rod A, and the sprocket B is located above the rotating table A.

[0012] The upper end of the bearing block is fixedly connected to a water pump, the upper end of the treatment chamber is fixedly connected to a liquid outlet groove, the upper end of the liquid outlet groove is fixedly connected to a passage A, the other end of the passage A is fixedly connected to the water pump, a liquid outlet passage is arranged at a high position of the stripping plate in the treatment barrel, a plurality of liquid outlet holes are reserved at the lower end of the liquid outlet passage, the upper end of the liquid outlet passage is fixedly connected to a passage B, one end of the passage B penetrates through the upper end of the treatment barrel and is fixedly connected to the passage A, and the other end of the passage B is fixedly connected to the upper end of the inner side of the treatment barrel.

[0013] Further, the pollution removal module is arranged in the treatment barrel, and the pollution removal module comprises four connecting rods, one end of each of the four connecting rods is fixedly connected with the rotating rod A, the other end of each of two connecting rods is fixedly connected with a vertical rod, one side of the vertical rod is arranged with a pollution removal rod, three constraint rods are fixedly connected to the side wall of the pollution removal rod, one end of the constraint rod penetrates through the vertical rod and is movably connected with the vertical rod, one end of the constraint rod penetrating through the vertical rod is fixedly connected with a constraint piece, the outer surface of the constraint rod is sleeved with a spiral beryllium copper wire A, and two ends of the spiral beryllium copper wire A are respectively fixedly connected with the vertical rod and the pollution removal rod.

[0014] Further, the pollution removal module further comprises a concave cover fixedly connected with the inner surface of the treatment barrel, a mirror image groove is reserved on the inner surface of the concave cover, a change table is movably arranged in the groove, a movable piece is fixedly connected between the change tables, two spiral beryllium copper wires B are arranged between the lower end of the movable piece and the bottom wall of the concave cover, two ends of the two spiral beryllium copper wires B are respectively fixedly connected with the lower end of the movable piece and the bottom wall of the concave cover, a plurality of nylon wires B are arranged on the upper wall of the movable piece, and the nylon wires B are tightly attached to the lower wall of the stripping piece.

[0015] Further, the shell is fixedly connected with a separation piece B, the shell is arranged with a liquid storage chamber and a sundry chamber on the two sides of the separation piece B, the side wall of the liquid storage chamber is fixedly connected with a liquid injection channel and a water discharge channel, the liquid injection channel and the water discharge channel are communicated with the inside of the liquid storage chamber, one end of the water discharge channel is sleeved with a rotating cover, the side wall of the liquid storage chamber is fixedly connected with a connecting channel, the connecting channel is communicated with the inside of the liquid storage chamber, one end of the connecting channel is connected with a water pump, and one side of the sundry chamber is reserved with an assembly groove A.

[0016] Further, the upper end of the liquid storage chamber is reserved with a water receiving opening, the water receiving opening is opposite to the lower end of the stripping box, and the upper end of the sundry chamber is reserved with a sundry inlet.

[0017] Further, the outer cylinder is fixedly connected with an inner cylinder, the inner circumferential surface of the inner cylinder is reserved with a tooth A, the upper end of the shell is sleeved with a rotating rod B, the upper end of the rotating rod B is fixedly connected with a rotating table B, the outer circumferential surface of the rotating table B is reserved with a plurality of teeth B, the outer circumferential surface of the rotating table A is reserved with a plurality of teeth C, the teeth B on the rotating table B are engaged with the teeth A, and the teeth B on the rotating table B are engaged with the teeth C on the rotating table A.

[0018] Further, the outer circumferential surface of the outer cylinder is sleeved with a shielding piece, the lower end of the shielding piece is fixedly connected with the upper end of the shell, the lower end of the stripping box and the lower end of the material storage shell are extended from the upper end of the shielding piece into the shielding piece, the stripping box and the material storage shell are fixedly connected with the shielding piece, the inner cylinder in the shielding piece penetrates through the upper end of the shielding piece, the upper end of the shielding piece is fixedly connected with a leakage prevention rod, the inner surface of the leakage prevention rod is movably connected with the outer surface of the inner cylinder, and the outer surface of the leakage prevention rod is fixedly connected with one side of the stripping box and one side of the material storage shell.

[0019] The beneficial effects of the present application are as follows:

[0020] 1. When the present invention is in operation, the exhaust hood is adjusted to the cutting position, and the exhaust gas is drawn through the exhaust hood into the metal hose by the high-pressure blower. The exhaust gas is then sent through the metal hose to the rubber hose, and the rubber hose draws the exhaust gas into the exhaust gas treatment module by the high-pressure blower. Finally, the exhaust gas treatment module treats the exhaust gas and discharges it, thus avoiding the impact of waste and exhaust gas generated by cutting on the environment.

[0021] 2. During operation, the waste gas is drawn into the treatment chamber through the exhaust channel. The pump operates, drawing the washing liquid from the storage chamber to the outlet tank fixed at the top of the treatment chamber via the connecting channel. The washing liquid absorbs the waste in the waste gas and falls to the bottom of the treatment tank. After passing through the treatment chamber, the waste gas mixed with some waste moves towards the exhaust channel at the top of the treatment tank. The stripping plate strips the waste in the waste gas, and then the waste gas is treated again, thereby reducing the amount of waste in the waste gas flowing out of the exhaust channel.

[0022] 3. In this invention, the liquid outlet channel at the upper end of the peeling sheet ejects liquid to wash the peeling sheet. The washing liquid drains the waste material from the peeling opening on the peeling sheet, allowing the mixture of waste material and washing liquid to fall to the lower end of the treatment tank. The nylon thread B on the lower wall of the peeling sheet cleans the lower wall of the peeling sheet to prevent waste material from blocking the peeling opening on the peeling sheet and weakening the peeling function of the peeling sheet. The rotating rod A pulls the connecting strip fixed to the rotating rod A to rotate, and then pulls the vertical rod to rotate. The vertical rod rotates the cleaning strip through the movable constraint rod. The nylon thread A on one side of the cleaning strip is close to the inner surface of the treatment tank to clean the inner surface of the treatment tank to prevent waste material from adhering to the inner surface of the treatment tank and ensure its cleanliness.

[0023] 4. This invention achieves the purpose of repeated use of washing liquid, saving resources, and allows activated carbon to be replaced during device operation, ensuring the cutting speed of heat exchange tube bundle. Waste is adsorbed on activated carbon, so that users can collect the waste.

[0024] Other features and advantages of the invention will be set forth in the following description, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures particularly pointed out in the description and the drawings. Attached Figure Description

[0025] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings:

[0026] Figure 1 This is a top view of the structure according to an embodiment of the present invention;

[0027] Figure 2A three-dimensional structural schematic of the waste gas treatment module of the embodiment of the present application Figure 1 ;

[0028] Figure 3 A schematic diagram of the internal structure of the treatment barrel of the embodiment of the present application

[0029] Figure 4 A three-dimensional structural schematic of the waste gas treatment module of the embodiment of the present application Figure 2 ;

[0030] Figure 5 A sectional structural schematic of the waste gas treatment module of the embodiment of the present application

[0031] Figure 6 A schematic diagram of the enlarged structure at M of the embodiment of the present application Figure 5

[0032] Figure 7 A schematic diagram of the partial exploded structure of the embodiment of the present application

[0033] Figure 8 A structural schematic of the decontamination module of the embodiment of the present application

[0034] ​Mark No. : 1, bottom plate; 2, transverse moving module; 3, clamp; 4, vertical moving module; 5, longitudinal moving module; 6, limiting block; 7, high-pressure fan; 8, waste gas treatment module; 9, support; 10, metal hose; 11, air extraction cover; 12, rubber hose; 81, shell; 82, bearing seat; 83, treatment barrel; 84, air release channel; 85, wetting module; 851, rotating rod A; 852, separation piece A; 853, peeling piece; 854, treatment chamber; 855, bearing block; 856, motor; 8561, sprocket A; 8562, sprocket B; 8563, chain; 8564, rotating table A; 857, water pump; 858, liquid outlet groove; 859, channel A; 8510, liquid outlet channel; 8511, channel B; 86, air extraction channel; 87, decontamination module; 871, connecting strip; 872, vertical rod; 873, decontamination strip; 874, constraint rod; 875, constraint piece; 876, helical beryllium copper wire A; 877, nylon wire A; 878, concave cover; 879, groove; 8710, variable table; 8711, movable piece; 8712, helical beryllium copper wire B; 8713, nylon wire B; 810, separation piece B; 811, liquid storage chamber; 812, sundry chamber; 813, liquid injection channel; 814, water release channel; 815, screw cap; 816, connecting channel; 817, assembly groove A; 818, collection box; 819, receiving groove; 8110, handle; 88, waste liquid treatment module; 881, peeling box; 882, waste liquid channel; 883, storage shell; 884, assembly groove B; 8111, water inlet; 8112, sundry inlet; 885, leakproof rotary support; 886, outer cylinder; 887, constraint port; 888, inner cylinder; 889, tooth port A; 8810, rotating table B; 8811, shielding piece; 8812, connecting cylinder; 8813, rotating rod B; 8814, activated carbon; 8815, leakproof strip. DETAILED DESCRIPTION

[0035] In order to make the purpose, technical scheme and advantages of the technical scheme of the present application clearer, the technical scheme of the embodiments of the present application will be described clearly and completely below in combination with the drawings of the embodiments of the present application. The same reference signs in the drawings represent the same parts. It should be noted that the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without any creative effort fall within the scope of protection of the present application.

[0036] REFERENCE Figure 1The embodiment of the present application provides a heat exchanger tube bundle cutting device, which comprises a bottom plate 1, a transverse movement module 2 arranged on the bottom plate 1, clamps 3 arranged at two ends of the transverse movement module 2, a vertical movement module 4 arranged on one side of the upper end of the bottom plate 1, a longitudinal movement module 5 arranged on the vertical movement module 4, a limiting block 6 slidably arranged on the longitudinal movement module 5, a cutting machine fixedly connected to the lower end of the limiting block 6, a high-pressure fan 7 arranged on the top of the vertical movement module 4, a waste gas treatment module 8 arranged on the side of the high-pressure fan 7, a support 9 fixedly connected to one side of the limiting block 6, a metal hose 10 fixedly connected to the support 9, an air suction cover 11 fixedly connected to one end of the metal hose 10, and the other end of the metal hose 10 connected to the high-pressure fan 7 through a rubber hose 12.

[0037] In work, the air suction cover 11 is adjusted to the cutting position, waste gas is sucked into the metal hose 10 through the air suction cover 11 by the high-pressure fan 7, the waste gas is sent to the rubber hose 12 through the metal hose 10, the waste gas is sucked into the waste gas treatment module 8 through the rubber hose 12 by the high-pressure fan 7, and finally the waste gas is treated and discharged through the waste gas treatment module 8, so that the influence of waste materials and waste gas generated by cutting on the environment is avoided.

[0038] Reference Figures 2-8 The waste gas treatment module 8 comprises a shell 81, a plurality of bearing seats 82 fixedly connected to the upper end of the shell 81, and treatment barrels 83 fixedly connected to the bearing seats 82, the upper end of the treatment barrel 83 being communicated with a gas discharge passage 84, and further comprising:

[0039] A wetting module 85 comprises a rotating rod A 851 arranged in the treatment barrel 83, one end of the rotating rod A 851 being rotatably connected to the upper end in the treatment barrel 83, the other end of the rotating rod A 851 penetrating the lower end of the treatment barrel 83, one end of the rotating rod A 851 penetrating the lower end of the treatment barrel 83 being rotatably connected to the upper end of the shell 81, a partition piece A 852 being rotatably connected to the rotating rod A 851, the partition piece A 852 being fixedly connected to the inner surface of the treatment barrel 83, a stripping piece 853 being arranged on the lower end of the partition piece A 852, the stripping piece 853 being clamped to the outer surface of the rotating rod A 851 and fixedly connected to the rotating rod A 851;

[0040] A waste liquid treatment module 88 comprises a stripping box 881, a waste liquid passage 882 fixedly connected to the upper end of the stripping box 881, the upper end of the waste liquid passage 882 being fixedly connected to the lower end of the treatment barrel 83, the stripping box 881 and the treatment barrel 83 being communicated through the waste liquid passage 882, a storage shell 883 fixedly connected to one side of the stripping box 881, the upper end of the storage shell 883 being fixedly connected to the lower end of the treatment barrel 83, and an assembly groove B 884 being reserved on one side of the storage shell 883.

[0041] The adapter sleeve 8812 is fixedly connected to the upper end of the shell 81, and the outer circumferential surface of the adapter sleeve 8812 is provided with a leakproof rotary support 885, which is clamped to the adapter sleeve 8812 and tightly embedded in the adapter sleeve 8812. The outer sleeve 886 is provided with a plurality of constraint openings 887.

[0042] The partition sheet A 852 cooperates with the stripping sheet 853 to separate the upper end of the treatment barrel 83 into two areas. Due to the flow of gas, the waste gas passes through the area on the side of the partition sheet A 852, i.e., the lower end of the exhaust passage 84. The area on the other side of the partition sheet A 852 serves as a washing space of the stripping sheet 853. The stripping sheet 853 in the rotating area at the lower end space of the exhaust passage 84 performs stripping on the waste material in the waste gas. The stripping sheet 853 in the washing space sprays washing liquid on the stripping sheet 853 through the liquid outlet passage 8510, so as to use water pressure to dredge the waste material in the stripping opening of the stripping sheet 853.

[0043] The lower end of the treatment barrel 83 is centrally protruded upward, thereby raising the surface of the waste liquid in the lower end of the treatment barrel 83. The lower end is inclined to be not convenient for the waste material in the waste liquid to accumulate, and the decontamination strip 873 performs tumbling on the waste material in the rotating area, so as to prevent the waste material in the waste liquid from causing the waste liquid passage 882 to be blocked.

[0044] In this case, the wetting module 85 further comprises a treatment chamber 854 fixedly connected to the side wall of the treatment barrel 83, the treatment chamber 854 is communicated with the inside of the treatment barrel 83, one side of the treatment chamber 854 is fixedly connected with the exhaust passage 86, the exhaust passage 86 is communicated with the inside of the treatment chamber 854, the other side of the exhaust passage 85 is fixedly connected with the high-pressure fan 7, the side wall of the treatment barrel 83 is fixedly connected with a bearing block 855, the lower end of the bearing block 855 is fixedly connected with a motor 856, the rotating rod A 851 is fixedly connected with a sprocket B 8562, the rotating part of the motor 856 is fixedly connected with a sprocket A 8561, the sprocket A 8561 is connected with the sprocket B 8562 through a chain 8563, the lower end of the sprocket A 8561 is provided with a rotating table A 8564, the lower end of the rotating table A 8564 is fixedly connected with the rotating rod A 851, and the sprocket B 8562 is above the rotating table A 8564.

[0045] The upper end of the bearing block 855 is fixedly connected with a water pump 857, the upper end of the treatment chamber 854 is fixedly connected with a liquid outlet groove 858, the upper end of the liquid outlet groove 858 is fixedly connected with a passage A 859, the other end of the passage A 859 is fixedly connected with the water pump 857, the liquid outlet passage 8510 is arranged at a high position of the stripping sheet 853 in the treatment barrel 83, the lower end of the liquid outlet passage 8510 is provided with a plurality of liquid outlet holes, the upper end of the liquid outlet passage 8510 is fixedly connected with a passage B 8511, one end of the passage B 8511 passes through the upper end of the treatment barrel 83 and is fixedly connected with the passage A 859, and the passage B 8511 is fixedly connected with the upper end of the inside of the treatment barrel 83.

[0046] When the middle, the management of the barrel 83 in the installation of the decontamination module 87, the decontamination module 87 contains four root of the link bar 871, four root of the link bar 871 one head and the rotation bar A851 solid connection, every two root of the link bar 871 the other end is solid with the vertical rod 872, the vertical rod 872 one side is equipped with the decontamination strip 873, the decontamination strip 873 edge wall is solid with three root of the constraint bar 874, the constraint bar 874 one end through the vertical rod 872, and is movably connected with the vertical rod 872, the constraint bar 874 transversely through the vertical rod 872 one end is solid with the constraint piece 875, the constraint bar 874 outer surface hoop with the spiral beryllium copper wire A 876, the spiral beryllium copper wire A 876 two ends are respectively solid with the vertical rod 872 and the decontamination strip 873, the decontamination strip 873 the other side is equipped with a plurality of nylon wire A 877.

[0047] When the middle, the decontamination module 87 also contains the concave cover 878 solid with the surface in the management of the barrel 83, the concave cover 878 inner surface mirror image reserved on the groove 879, the groove 879 movably equipped with the change table 8710, the change table 8710 is solid between the activity piece 8711, the activity piece 8711 lower end and the concave cover 878 bottom wall between the two spiral beryllium copper wire B 8712, two spiral beryllium copper wire B 8712 two ends are respectively solid with the activity piece 8711 lower end and the concave cover 878 bottom wall, the activity piece 8711 upper wall surface is equipped with a plurality of nylon wire B 8713, the nylon wire B 8713 and the stripping piece 853 lower wall surface closely.

[0048] When the middle, the shell 81 is solid with the separation piece B810, the shell 81 is equipped with the liquid storage chamber 811 and the sundry chamber 812 on both sides of the separation piece B810, the liquid storage chamber 811 edge wall is solid with the liquid injection channel 813 and the water discharge channel 814, the liquid injection channel 813 and the water discharge channel 814 are connected with the inside of the liquid storage chamber 811, one end of the water discharge channel 814 is silk with the screw cap 815, the liquid storage chamber 811 edge wall is solid with the link channel 816, the link channel 816 is connected with the inside of the liquid storage chamber 811, one end of the link channel 816 is connected with the water pump 857, one side of the sundry chamber 812 is reserved with the assembly groove A817, the sundry chamber 812 is movably equipped with the collection box 818, the upper end of the collection box 818 is reserved with the receiving groove 819, the edge wall of the collection box 818 is solid with the handle 8110.

[0049] When the middle, the upper end of the liquid storage chamber 811 is reserved with the water inlet 8111, the water inlet 8111 is opposite to the lower end of the stripping box 881, the upper end of the sundry chamber 812 is reserved with the sundry inlet 8112.

[0050] The peeling box 881 and the lower end of the storage shell 883 are provided with through grooves. The lower end of the peeling box 881 corresponds to the water inlet 8111. The arc length of the peeling box 881 is smaller than that of the water inlet 8111. Thus, the time length for the activated carbon 8814 to pass through the upper end of the water inlet 8111 is lengthened. Thus, the excess liquid in the activated carbon 8814 can fall into the liquid storage chamber 811 through the water inlet 8111.

[0051] The inner cylinder 888 is fixed to the upper end of the outer cylinder 886. The inner cylinder 888 is provided with tooth A 889 on the circumferential surface. The outer shell 81 is screwed with the rotating rod B 8813. The rotating rod B 8813 is fixed to the rotating table B 8810. The rotating table B 8810 is provided with a plurality of tooth B on the circumferential surface. The rotating table A 8564 is provided with a plurality of tooth C on the circumferential surface. The tooth B on the rotating table B 8810 engages with the tooth A 889. The tooth B on the rotating table B 8810 engages with the tooth C on the rotating table A 8564.

[0052] The inner cylinder 888 can rotate on the upper end of the outer shell 81 through the cooperation of the leakage-proof rotary support 885 and the inner cylinder 888. The leakage-proof rotary support 885 adopts a leakage-proof structure, which can avoid corrosion in the leakage-proof rotary support 885 and ensure the normal use of the leakage-proof rotary support 885.

[0053] When the rotating rod A 851 rotates, the rotating table A 8564 rotates the rotating table B 8810. Thus, the outer cylinder 886 and the peeling sheet 853 fixed to the rotating rod A 851 rotate together with the decontamination module 87 through the engagement of the tooth B on the rotating table B 8810 and the tooth A 889. Because the sizes of the inner cylinder 888, the rotating table B 8810 and the rotating table A 8564 are different, the rotating rod A 851 rotates faster than the outer cylinder 886. Thus, a speed difference appears. The speed of the outer cylinder 886 dragging the activated carbon 8814 to rotate is reduced. The time length for the activated carbon 8814 to pass through the water inlet 8111 is lengthened. Thus, the peeling function of the activated carbon 8814 can be ensured. When the peeling sheet 853 and the decontamination module 87 rotate faster, the outer cylinder 886 rotates faster. Thus, the activated carbon 8814 is replaced faster. Thus, the treatment function is enhanced.

[0054] The outer cylinder 886 is provided with the shielding sheet 8811 on the circumferential surface. The lower end of the shielding sheet 8811 is fixed to the upper end of the outer shell 81. The lower end of the peeling box 881 and the lower end of the storage shell 883 extend into the shielding sheet 8811 from the upper end of the shielding sheet 8811. The peeling box 881 and the storage shell 883 are fixed to the shielding sheet 8811. The inner cylinder 888 in the shielding sheet 8811 penetrates the upper end of the shielding sheet 8811. The upper end of the shielding sheet 8811 is fixed with the leakage-proof strip 8815. The inner surface of the leakage-proof strip 8815 is movably connected with the outer surface of the inner cylinder 888. The outer surface of the leakage-proof strip 8815 is fixed with one side of the peeling box 881 and one side of the storage shell 883.

[0055] The cooperation of the leakage prevention strip 8815 and the shielding piece 8811 prevents the waste liquid from flowing quickly into the stripping box 881 through the waste liquid passage 882 at the lower end of the treatment barrel 83, so that the waste liquid after stripping cannot fall into the storage chamber 811 through the water inlet 8111 in time, and spreads on the upper end of the shell 81 and flows towards the periphery of the shell 81.

[0056] During operation, the exhaust gas is drawn into the treatment chamber 854 through the exhaust passage 86, the water pump 857 is operated to draw the washing liquid in the storage chamber 811 to the liquid outlet groove 858 fixed at the upper end of the treatment chamber 854 to spray into the treatment chamber 854, the washing liquid absorbs the waste in the exhaust gas and falls into the lower end of the treatment barrel 83, and the exhaust gas mixed with some waste after passing through the treatment chamber 854 changes direction towards the air outlet passage 84 at the upper end of the treatment barrel 83, the stripping piece 853 performs stripping on the waste in the exhaust gas, and then performs treatment on the exhaust gas again, so that the waste in the exhaust gas flowing through the air outlet passage 84 is reduced.

[0057] During operation, the motor 856 is operated to rotate the chain wheel A 8561, and then rotate the chain wheel B 8562 through the chain 8563, so that the rotating rod A 851 rotates, the rotating rod A 851 drives the stripping piece 853 to rotate, the liquid outlet passage 8510 at the upper end of the stripping piece 853 sprays liquid to wash the stripping piece 853, the waste in the stripping port on the stripping piece 853 is guided out through the washing liquid, and the mixture of the waste and the washing liquid falls into the lower end of the treatment barrel 83, and the nylon wire B 8713 at the lower wall of the stripping piece 853 performs decontamination on the lower wall of the stripping piece 853 to prevent the waste from blocking the stripping port on the stripping piece 853 and weakening the stripping function of the stripping piece 853.

[0058] The two spiral beryllium copper wires B 8712 at the lower end of the concave cover 878 push the movable piece 8711 upwards, so that the movable piece 8711 moves upwards along the groove 879 through the moving table 8710, and then the nylon wire B 8713 at the upper end of the movable piece 8711 is always attached to the lower wall of the stripping piece 853, so that the decontamination purpose is achieved.

[0059] During the rotation of the stripping piece 853, the rotating rod A 851 drives the connecting strip 871 fixed to the rotating rod A 851 to rotate, and then drives the vertical rod 872 to rotate, the vertical rod 872 drives the decontamination strip 873 to rotate through the movable connecting constraint rod 874, and the nylon wire A 877 on one side of the decontamination strip 873 is tightly attached to the inner surface of the treatment barrel 83 to perform decontamination on the inner surface of the treatment barrel 83, so as to prevent the waste from adhering to the inner surface of the treatment barrel 83 and ensure the cleanliness of the inside.

[0060] The vertical rod 872 pushes the decontamination strip 873 through the cooperation of the spiral beryllium copper wire A 876 to make the nylon wire A 877 always tightly attached to the inner surface of the treatment barrel 83, so as to ensure the decontamination effect.

[0061] The waste liquid at the lower end of the treatment barrel 83 falls into the stripping box 881 through the waste liquid channel 882, the waste liquid is treated by the activated carbon 8814 at the lower end of the stripping box 881, the waste in the waste liquid is adsorbed on the activated carbon 8814, and the washing liquid after the waste liquid treatment falls into the liquid storage chamber 811 through the water inlet 8111, the washing liquid in the liquid storage chamber 811 is pumped away by the water pump 857 through the connecting channel 816, and the washing liquid is transported away through the channel A 859 and the channel B 8511, is separated from the liquid outlet 858 and the liquid outlet channel 8510, and is sprayed out to the treatment chamber 854 and the stripping sheet 853, the waste gas passing through the treatment chamber 854 is removed, the stripping port on the stripping sheet 853 is dredged, and the waste liquid after treatment can be reused, saving resources.

[0062] The activated carbon 8814 and the storage shell 883 are matched with the constraint port 887.

[0063] The activated carbon 8814 rotates during the operation of the device, the storage shell 883 holds a plurality of activated carbons 8814, the rotating platform A 8564 fixedly connected to the rotating rod A 851 drags the rotating platform B 8810 connected to the rotating rod B 8813 at the upper end of the shell 81 to rotate, the tooth B on the rotating platform B 8810 is engaged with the tooth A 889, and then the inner cylinder 888 drags the fixedly connected outer cylinder 886 to rotate, when the constraint port 887 reserved on the outer cylinder 886 rotates by 90 degrees and is located at the corresponding position of the through slot at the lower end of the storage shell 883, the activated carbon 8814 held in the storage shell 883 falls into the constraint port 887 under the weight, the activated carbon 8814 is rotated under the dragging of the outer cylinder 886, and sequentially enters from one side of the stripping box 881 and moves out from the other side of the stripping box 881, after the activated carbon 8814 rotates one circle in the constraint port 887, when the activated carbon 8814 moves to the impurity inlet 8112 at the upper end of the impurity chamber 812, the activated carbon 8814 falls into the movable collection box 818 in the impurity chamber 812, the collection of the used activated carbon 8814 is realized, and then the collection of the waste is realized.

[0064] The user needs to regularly check the number of the storage shell 883 and the collection box 818, so as to timely put the unused activated carbon 8814 and timely take away the activated carbon 8814 and the waste collected in the collection box 818.

[0065] The purpose of repeatedly using the washing liquid is achieved, resources are saved, and the activated carbon 8814 can be replaced during the operation of the device, so as to ensure the cutting speed of the heat exchange tube bundle and the user to collect the waste.

[0066] It should be noted here that the transverse movement module 2, the clamp 3, the vertical movement module 4, the longitudinal movement module 5 and the cutting machine are prior art, which will not be described in detail here.

[0067] The foregoing is considered as illustrative only of the principles of the application and the forms thereof which are demonstrated by the described embodiments. Further, those skilled in the art will readily recognize that certain of the above described embodiments can include, inter alia, alternate configurations and steps thereof without departing from the true spirit and scope of the present application. Accordingly, what is sought to be protected by Letters Patent is set forth and dependent on the claims and their equivalents.

Claims

1. A heat exchanger tube bundle cutting device, comprising a base plate, a vertical moving module mounted on one side of the upper end of the base plate, a longitudinal moving module mounted on the vertical moving module, a limiting block slidably mounted on the longitudinal moving module, and a cutting machine fixedly connected to the lower end of the limiting block, characterized in that, A high-pressure blower is installed on the top of the vertical moving module, and an exhaust gas treatment module is installed on the side of the high-pressure blower. A bracket is fixed to one side of the limiting block, and a metal hose is fixed to the bracket. One end of the metal hose is fixed to the exhaust hood, and the other end of the metal hose is connected to the high-pressure blower via a rubber hose. The exhaust gas treatment module includes a housing, with several support seats fixedly connected to the upper end of the housing. A treatment tank is fixedly connected to the support seats, and the upper end of the treatment tank is connected to an exhaust channel. It also includes: The wetting module includes a rotating rod A installed in the treatment tank. One end of the rotating rod A is screwed to the upper end of the treatment tank, and the other end of the rotating rod A passes through the lower end of the treatment tank. The end of the rotating rod A passing through the lower end of the treatment tank is screwed to the upper end of the outer shell. A separator A is screwed onto the rotating rod A. The separator A is fixedly connected to the inner surface of the treatment tank. A peeling plate is installed at the lower end of the separator A. The peeling plate is clamped to the outer surface of the rotating rod A and fixedly connected to the rotating rod A. The waste liquid treatment module includes a stripping box, a waste liquid channel fixedly connected to the upper end of the stripping box, a waste liquid channel fixedly connected to the lower end of the treatment tank, the stripping box and the treatment tank being connected through the waste liquid channel, a storage shell fixedly connected to one side of the stripping box, a storage shell fixedly connected to the upper end of the treatment tank, and an assembly slot B reserved on one side of the storage shell. The connecting cylinder is fixed to the upper end of the outer shell. A leak-proof slewing bearing is installed on the outer circumference of the connecting cylinder. The leak-proof slewing bearing is clamped to the connecting cylinder and tightly embedded with it. Several constraint openings are reserved on the outer cylinder. The dehumidification module also includes a treatment chamber fixed to the side wall of the treatment tank, which is connected to the inside of the treatment tank. One side of the treatment chamber is fixed to an air extraction channel, which is connected to the inside of the treatment chamber. A support block is fixed to the side wall of the treatment tank, and a motor is fixed to the lower end of the support block. A sprocket B is fixed to the rotating rod A, and the rotating part of the motor is fixed to the sprocket A. The sprocket A and the sprocket B are connected by a chain. A rotating platform A is installed at the lower end of the sprocket A, and the rotating rod A is fixed to the lower end of the rotating platform A. The sprocket B is located on the rotating platform A. The upper end of the support block is fixed to the water pump, the upper end of the treatment chamber is fixed to the liquid outlet tank, the upper end of the liquid outlet tank is fixed to channel A, the other end of channel A is fixed to the water pump, the liquid outlet channel is installed in the treatment tank at the high position of the peeling plate, several liquid outlet holes are reserved at the lower end of the liquid outlet channel, the upper end of the liquid outlet channel is fixed to channel B, one end of channel B passes through the upper end of the treatment tank and is fixed to channel A, and channel B is fixed to the upper end inside the treatment tank.

2. The heat exchanger tube bundle cutting device according to claim 1, characterized in that: A transverse moving module is mounted on the base plate, and clamps are mounted at both ends of the transverse moving module.

3. The heat exchanger tube bundle cutting device according to claim 1, characterized in that: The treatment tank contains a decontamination module, which consists of four connecting strips. One end of each connecting strip is fixedly connected to a rotating rod A. The other ends of every two connecting strips are fixedly connected to a vertical rod. A decontamination strip is installed on one side of the vertical rod. Three constraint rods are fixedly connected to the side wall of the decontamination strip. One end of the constraint rod passes through the vertical rod and is movably connected to it. The end of the constraint rod that passes horizontally through the vertical rod is fixedly connected to a constraint plate. A spiral beryllium copper wire A is attached to the outer surface of the constraint rod. Both ends of the spiral beryllium copper wire A are fixedly connected to the vertical rod and the decontamination strip. Several nylon threads A are installed on the other side of the decontamination strip.

4. The heat exchanger tube bundle cutting device according to claim 3, characterized in that: The decontamination module also includes a concave cover fixed to the inner surface of the treatment tank. The inner surface of the concave cover has a groove mirrored in the groove, in which a movable platform is movably installed. A movable plate is fixed between the movable platforms. Two spiral beryllium copper wires B are installed between the lower end of the movable plate and the bottom wall of the concave cover. The two ends of the two spiral beryllium copper wires B are fixed to the lower end of the movable plate and the bottom wall of the concave cover. Several nylon wires B are installed on the upper wall of the movable plate, and the nylon wires B are in close contact with the lower wall of the stripping plate.

5. The heat exchanger tube bundle cutting device according to claim 1, characterized in that: A partition plate B is fixedly connected to the outer casing. A liquid storage chamber and a miscellaneous chamber are installed on both sides of the partition plate B. An injection channel and a drain channel are fixedly connected to the side wall of the liquid storage chamber. Both the injection channel and the drain channel are connected to the inside of the liquid storage chamber. One end of the drain channel is threaded to a screw cap. A connecting channel is fixedly connected to the side wall of the liquid storage chamber. The connecting channel is connected to the inside of the liquid storage chamber. One end of the connecting channel is connected to a water pump. An assembly slot A is reserved on one side of the miscellaneous chamber. A collection box is movably installed in the miscellaneous chamber. A receiving slot is reserved at the top of the collection box. A handle is fixedly connected to the side wall of the collection box.

6. The heat exchanger tube bundle cutting device according to claim 5, characterized in that: A water inlet is provided at the top of the liquid storage chamber, which is directly opposite the bottom of the stripping box. A debris inlet is provided at the top of the debris chamber.

7. A heat exchanger tube bundle cutting device according to claim 6, characterized in that: The upper end of the outer cylinder is fixedly connected to the inner cylinder. The inner circumferential surface of the inner cylinder has a pre-reserved tooth A. The upper end of the outer shell is screwed to the rotating rod B. The upper end of the rotating rod B is fixedly connected to the rotating platform B. The outer circumferential surface of the rotating platform B has a number of pre-reserved teeth B. The outer circumferential surface of the rotating platform A has a number of pre-reserved teeth C. The teeth B on the rotating platform B and the teeth A engage. The teeth B on the rotating platform B and the teeth C on the rotating platform A engage.

8. A heat exchanger tube bundle cutting device according to claim 7, characterized in that: A baffle plate is attached to the outer circumference of the outer cylinder. The lower end of the baffle plate is fixedly connected to the upper end of the outer shell. The lower end of the stripping box and the lower end of the storage shell both extend from the upper end of the baffle plate into the baffle plate. The stripping box and the storage shell are both fixedly connected to the baffle plate. The inner cylinder inside the baffle plate passes through the upper end of the baffle plate. A leak-proof strip is fixedly connected to the upper end of the baffle plate. The inner surface of the leak-proof strip and the outer surface of the inner cylinder are movably connected. The outer surface of the leak-proof strip and one side of the stripping box are fixedly connected to the other side of the storage shell.

Citation Information

Patent Citations

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    CN221134243U

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