Core decontamination copolymer film recycling machine
By designing a nuclear decontamination copolymer membrane recycling machine, the shortcomings of copolymer membrane recycling equipment in confined spaces have been addressed, achieving automated cutting, peeling, and recycling, and improving the efficiency of nuclear accident emergency response.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-03-27
AI Technical Summary
The lack of miniaturized mechanized equipment in existing technologies for the efficient recovery of nuclear-contaminated copolymer membranes in confined spaces affects the efficiency of nuclear accident emergency response.
A nuclear decontamination copolymer membrane recycling machine was designed, comprising a longitudinal cutting component, a peeling and recycling component, and a transverse cutting component. It can automatically complete the cutting, peeling, and recycling of the membrane and is suitable for confined spaces.
It enables efficient and automated cutting, peeling, and recycling of copolymer membranes in confined spaces, improving the speed and efficiency of nuclear accident emergency response.
Smart Images

Figure CN224044306U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to nuclear safety emergency technical field especially is a kind of nuclear decontamination copolymer film recycling machine. BACKGROUND
[0002] It is known that with the increasingly perfect nuclear energy application technology, the development and utilization of nuclear energy bring huge economic benefits and social benefits to human beings. With the wide application of nuclear energy, nuclear accidents or nuclear terrorist incidents have caused potential threats to the environment, social order and the health and safety of earth's inhabitants, so nuclear accident emergency, especially the emergency control of nuclear accident consequences, has become an essential means to ensure nuclear safety.
[0003] Nuclear pollution continuous copolymer film emergency control method has become an important technical means for emergency control of nuclear accident radiation consequences due to its unique advantages of less waste, no secondary cross-contamination, high emergency cost-effectiveness ratio, and its control operation system has become an important part of the national nuclear accident emergency control capability construction. The basic principle of nuclear pollution copolymer film emergency control (also known as nuclear pollution copolymer film three-stage control) is that the nuclear pollution dispersion device disperses the nuclear pollution copolymer film control agent to the surface of the contaminated object, fully covers the nuclear pollutants, and prevents the nuclear pollutants from being suspended and dispersed in the air or migrating deeply into the object under natural or artificial disturbance; at the same time, the control agent and the nuclear pollution particles interact through wetting, adsorption, embedding, gluing, linking, micelle growth and copolymerization to form a dense nuclear decontamination copolymer film, which completely fixes it in place and controls its internal radiation hazard range; the nuclear decontamination copolymer film formed is stripped from the surface of the object and transferred to a specific place for burial, thereby eliminating the external radiation hazard of the nuclear pollution site and restoring the human survivable environment. From the three-stage control of nuclear pollution copolymer film, it can be seen that the stripping and recycling of nuclear decontamination copolymer film is one of the inevitable actions during the nuclear accident emergency response period. In order to improve the emergency response speed and minimize the harm to the people, the use of mechanical decontamination equipment has become an inevitable tool, therefore, a small nuclear decontamination copolymer film recycling equipment - nuclear decontamination copolymer film recycling machine is proposed, which can be used in a small space. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a nuclear decontamination copolymer film recycling machine to solve the technical problems existing in the prior art. The preferred technical solutions in many technical solutions provided by the utility model can produce many technical effects, which are described in detail below.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions:
[0006] A nuclear decontamination co-polymer film recycling machine comprises a vehicle body assembly and a longitudinal cutting assembly, a stripping and recycling assembly, a transverse cutting assembly and a storage assembly connected to the vehicle body assembly, the longitudinal cutting assembly is located in front of the stripping and recycling assembly in the direction of travel, the longitudinal cutting assembly can contact and cut the film body longitudinally during operation, the stripping and recycling assembly can contact and strip and recycle the film body into the storage assembly during operation, and the transverse cutting assembly can cut the film body in the storage assembly transversely during operation.
[0007] Preferably, the longitudinal cutting assembly comprises an electric push rod, a first sliding rail slider, a movable piece, a vibrating knife and a compression spring, the electric push rod is connected to the vehicle body assembly and drivingly connected to the movable piece, the movable piece is movably connected to the vehicle body assembly through the first sliding rail slider, the vibrating knife is movably connected to the movable piece, and the compression spring is connected to the movable piece and the vibrating knife respectively.
[0008] Preferably, the longitudinal cutting assembly further comprises a circular knife support and a circular knife body, the circular knife support is connected to the vibrating knife, and the circular knife body is connected to the circular knife support.
[0009] Preferably, the stripping and recycling assembly comprises a film stopping roller, a driving roller, a driving motor, a pressing roller, a pressing handle, an adjustable roller, a conveying roller, a material sliding plate and a film pushing connecting rod, the film stopping roller is movably connected to the vehicle body assembly, the driving roller is movably connected to the vehicle body assembly and located above the film stopping roller, the driving motor is connected to the vehicle body assembly and drivingly connected to the driving roller, the pressing roller is movably connected to the pressing handle and drivingly engaged with the driving roller, the pressing handle is connected to the vehicle body assembly, the adjustable roller and the conveying roller are movably connected to the vehicle body assembly and drivingly connected to the driving roller, and the material sliding plate and the film pushing connecting rod are connected to the vehicle body assembly.
[0010] Preferably, the transverse cutting assembly comprises a fixed seat, a lead screw motor, a lead screw, a second sliding rail slider, a sliding seat, a transverse cutting motor and a transverse cutting knife, the fixed seat is connected to the vehicle body assembly, the lead screw motor is connected to the fixed seat, the lead screw is drivingly connected to the lead screw motor through a gear, the lead screw is drivingly connected to the sliding seat, the sliding seat is slidingly connected to the fixed seat through the second sliding rail slider, the transverse cutting motor is connected to the sliding seat, and the transverse cutting knife is drivingly connected to the transverse cutting motor.
[0011] Preferably, the storage assembly is a bag, which is connected to the vehicle body assembly and located above the stripping and recycling assembly and below the transverse cutting assembly.
[0012] Preferably, the vehicle body assembly comprises a vehicle body bottom plate, a vehicle body frame, a driving wheel set, a steering wheel set, a direction pedal and a push rod, the vehicle body frame and the longitudinal cutting assembly are connected on the top of the vehicle body bottom plate, the push rod and the transverse cutting assembly are connected on the vehicle body frame, the stripping and recycling assembly is connected on the vehicle body bottom plate and the vehicle body frame, and the driving wheel set, the steering wheel set and the direction pedal are connected on the bottom of the vehicle body bottom plate.
[0013] Preferably, the vehicle body assembly further comprises a shell, the shell is connected on the vehicle body bottom plate and covers the outside of the longitudinal cutting assembly, the stripping and recycling assembly, the transverse cutting assembly and the storage assembly, the front end and the rear end of the shell are provided with movable doors, and the top of the shell is provided with an observation window.
[0014] Preferably, the vehicle body assembly further comprises a control system panel, and the control system panel is arranged on the top of the shell.
[0015] Preferably, the vehicle body assembly further comprises a lithium battery, the lithium battery is connected on the vehicle body bottom plate, and the lithium battery is electrically connected with the control system panel.
[0016] The nuclear decontamination co-polymer film recycling machine can automatically realize the cutting, stripping, recycling, packaging and transferring processes of the film body, and is more convenient and fast to operate.
[0017] The nuclear decontamination co-polymer film recycling machine has a relatively small size and is more compact, has the functions of cutting, stripping, rapid recycling, packaging and transferring of the radioactive contaminated film body on the surface of a non-penetrating medium in a small space such as a room, a carriage or a cave, and achieves the effects of decontamination of the surface of an object and purification of a site environment. BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.
[0019] Figure 1The utility model discloses a three -dimensional structure diagram of hidden shell behind;
[0020] Figure 2 It is the front view structure diagram of hidden shell behind the utility model;
[0021] Figure 3 It is the three -dimensional structure diagram of certain view behind the utility model hidden shell;
[0022] Figure 4 It is the three -dimensional structure diagram of another view behind the utility model hidden shell;
[0023] Figure 5 It is the structure diagram of the storage assembly of the utility model;
[0024] Figure 6 It is the front view structure diagram of the longitudinal cutting assembly of the utility model;
[0025] Figure 7 It is the side view structure diagram of the transverse cutting assembly of the utility model;
[0026] Figure 8 It is the three -dimensional structure diagram of the transverse cutting assembly of the utility model;
[0027] 1, vehicle body assembly, 11, vehicle body bottom plate, 12, vehicle body framework, 13, drive wheel group, 14, steering wheel group, 15, direction pedal, 16, push rod, 17, shell, 171, observation window, 18, control system panel;
[0028] 2, longitudinal cutting assembly, 21, electric push rod, 22, first sliding rail sliding block, 23, movable piece, 24, vibration knife, 25, compression spring, 26, round cutting knife support, 27, round cutting knife body;
[0029] 3, stripping and recycling assembly, 31, film roller, 32, driving roller, 33, drive motor, 34, compression roller, 35, compression handle, 36, height adjusting roller, 37, conveying roller, 38, sliding material plate, 39, film pushing connecting rod;
[0030] 4, transverse cutting assembly, 41, fixed seat, 42, lead screw motor, 43, lead screw, 44, second sliding rail sliding block, 45, sliding seat, 46, transverse cutting motor, 47, transverse cutting knife;
[0031] 5, storage assembly. DETAILED DESCRIPTION
[0032] In order to make the purpose, technical scheme and advantages of the utility model clearer, the technical scheme of the utility model will be described in detail below. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope protected by the utility model.
[0033] In the description of the utility model, it is understood that the orientation or positional relationship indicated by the terms "center", "lateral", "length", "width", "height", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "side" and the like is based on the drawings and only for the convenience of describing the utility model and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model. Figure 1
[0034] In the description of the utility model, it is understood that the terms "mounting", "connection", "connection" should be understood broadly unless otherwise explicitly specified and limited, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected, it can be mechanically connected, or it can be electrically connected, it can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0035] With reference to Figures 1 to 8 The utility model provides a kind of nuclear decontamination copolymer film recycling machine, including vehicle body component 1 and the longitudinal cutting component 2 of being connected on vehicle body component 1, stripping recovery component 3, transverse cutting component 4 and storage component 5, longitudinal cutting component 2 is located in front of stripping recovery component 3 in the direction of travel, longitudinal cutting component 2 can be contacted with film body and carries out longitudinal cutting to film body when operating, film body is cut into strip, stripping recovery component 3 can be contacted with strip-shaped film body and stripping recovery component 3 is recovered to storage component 5 on ground when operating, when storage component 5 is full or needs to stop recovery, transverse cutting component 4 can carry out transverse cutting to film body in storage component 5, to stop recovery, nuclear decontamination copolymer film recycling machine can automatically realize the cutting, stripping, recovery, packaging and transfer of film body and other processes, it is more convenient and fast to operate.
[0036] The nuclear decontamination co-polymer film recycling machine has a relatively small size and is more compact, and has the integrated functions of cutting, stripping, fast recycling, packaging and transferring of radioactive contaminated film on the surface of a non-permeable medium and in a small space in a narrow room, a car, a cave, etc., to achieve the effects of surface decontamination and on-site environmental purification.
[0037] As an optional implementation, the longitudinal cutting assembly 2 comprises an electric push rod 21, a first sliding rail slider 22, a movable part 23, a vibrating knife 24 and a compression spring 25, the electric push rod 21 is connected with the vehicle body assembly 1 and is drivingly connected with the movable part 23, the movable part 23 is movably connected with the vehicle body assembly 1 through the first sliding rail slider 22, the vibrating knife 24 is movably connected with the movable part 23, and the compression spring 25 is connected with the movable part 23 and the vibrating knife 24 respectively;
[0038] After the electric push rod 21 is started, the movable part 23 can be moved in the vertical direction under the cooperation of the first sliding rail slider 22, which is equivalent to adjusting the relative position of the vibrating knife 24 in the vertical direction. When the driving position is reached, the vibrating knife 24 is relatively high and is in the retracted state to prevent the vibrating knife from contacting the ground during driving and being broken. When the working position is reached, the vibrating knife 24 is moved to the ground to start the longitudinal cutting operation.
[0039] The compression spring 25 cooperates with the movable part 23 to form a certain pre-tightening pressure on the vibrating knife 24. After the compression spring 25 is compressed, the vibrating knife 24 can be pressed down to the ground, and at the same time, the longitudinal cutting assembly 2 needs to have a certain follow-up performance when in use to adapt to the ups and downs of the ground and ensure continuous cutting of the film on the ground to realize continuous recycling.
[0040] In this embodiment, the longitudinal cutting assembly 2 is two groups, and the two groups of longitudinal cutting assemblies 2 are symmetrically arranged. The two longitudinal cutting assemblies 2 jointly cut the film, and the distance between the two longitudinal cutting assemblies 2 is equivalent to the width of the film to be cut.
[0041] As an optional implementation, the longitudinal cutting assembly 2 further comprises a round cutter support 26 and a round cutter body 27. The round cutter support 26 is connected to the vibrating knife 24, and the round cutter body 27 is connected to the round cutter support 26. The round cutter body 27 can follow the vibrating knife 24 to jointly perform the cutting operation. In addition, when the vibrating knife 24 is accidentally broken or there is a film that is not completely cut, affecting the recycling efficiency, the round cutter body 27 can play a complementary role to improve the problem of affecting the continuous recycling of the co-polymer film and improve the recycling efficiency.
[0042] As an optional implementation, the stripping and recycling assembly 3 comprises a film stopping roller 31, a driving roller 32, a driving motor 33, a pressing roller 34, a pressing handle 35, an adjusting roller 36, a conveying roller 37, a material sliding plate 38 and a film pushing connecting rod 39.
[0043] The film blocking roller 31 is movably connected to the vehicle body assembly 1, preferably rotatably connected, so that the film blocking roller 31 can rotate relative to the vehicle body assembly 1;
[0044] The driving roller 32 is movably connected to the vehicle body assembly 1 and located above the film blocking roller 31. The driving roller 32 can also rotate relative to the vehicle body assembly 1. The driving motor 33 is connected to the vehicle body assembly 1 and in transmission connection with the driving roller 32. The driving motor 33 can drive the driving roller 32 to rotate.
[0045] The pressing roller 34 is movably connected to the pressing handle 35 and in transmission connection with the driving roller 32. The pressing handle 35 is connected to the vehicle body assembly 1. The pressing handle 35 can adjust the relative position between the pressing roller 34 and the driving roller 32, so that the pressing roller 34 and the driving roller 32 always maintain a pressing state. The two can jointly clamp the film. Meanwhile, the pressing roller 34 can also rotate under the driving of the driving roller 32.
[0046] The height adjusting roller 36 and the conveying roller 37 are both movably connected to the vehicle body assembly 1 and in transmission connection with the driving roller 32. The material sliding plate 38 and the film pushing connecting rod 39 are both connected to the vehicle body assembly 1. The driving roller 32 can drive the height adjusting roller 36 and the conveying roller 37 to rotate synchronously. The height adjusting roller 36 and the conveying roller 37 can convey the film. In combination with the material sliding plate 38 and the film pushing connecting rod 39, the film can be conveyed into a bag.
[0047] Before the peeling and recycling assembly 3 performs the peeling and recycling work, part of the film needs to be wound around the film blocking roller 31. Then, the pressing handle 35 is pressed down to lift the pressing roller 34. The film is passed between the driving roller 32 and the pressing roller 34 and wound to the height adjusting roller 36 and the conveying roller 37. Then, the pressing handle 35 is lifted up to make the pressing roller 34 and the driving roller 32 cooperate to press, and the work can be started.
[0048] When starting the work, the driving motor 33 is started. The driving motor 33 is in chain transmission with the driving roller 32 to drive the driving roller 32 to start rotating. The driving roller 32 and the pressing roller 34 are in meshing transmission to peel the film in cooperation with clamping.
[0049] At the same time, the driving roller 32 and the height adjusting roller 36 are also in chain transmission. The driving roller 32 can drive the height adjusting roller 36 and the conveying roller 37 to transmit, and the peeled film is recycled into a waste bag through the material sliding plate 38 and the film pushing connecting rod 39.
[0050] In this embodiment, the driving roller 32 is preferably in transmission with other rollers through precise roller chains. The transmission ratio can also be configured by the control system to connect the whole machine linkage components in series, so as to ensure the matching relationship of the trolley running, peeling and recycling, film position adjustment, and stable transmission of system power.
[0051] As an optional implementation, the transverse cutting assembly 4 comprises a fixed seat 41, a lead screw motor 42, a lead screw 43, a second sliding rail slider 44, a sliding seat 45, a transverse cutting motor 46 and a transverse cutting knife 47, the fixed seat 41 is connected to the vehicle body assembly 1, the lead screw motor 42 is connected to the fixed seat 41, the lead screw 43 is in driving connection with the lead screw motor 42 preferably through a bevel gear, the lead screw 43 is in driving connection with the sliding seat 45, the sliding seat 45 is in sliding connection with the fixed seat 41 through the second sliding rail slider 44, the transverse cutting motor 46 is connected to the sliding seat 45, and the transverse cutting knife 47 is in driving connection with the transverse cutting motor 46;
[0052] After the lead screw motor 42 is started, the lead screw 43 can be driven to rotate, the lead screw 43 can drive the sliding seat 45 to move left and right under the auxiliary cooperation of the second sliding rail slider 44, and simultaneously drive the transverse cutting motor 46 and the transverse cutting knife 47 to move synchronously, so that the transverse cutting motor 46 can drive the transverse cutting knife 47 to rotate at high speed, and the transverse cutting knife 47 can complete the cutting operation, the transverse cutting assembly 4 has simple structure and high working efficiency.
[0053] As an optional implementation, the receiving assembly 5 is a bag, the bag is connected to the vehicle body assembly 1 and located at the high position of the peeling and recycling assembly 3 and below the transverse cutting assembly 4, the bag can receive the film after cutting, and when the bag is full, the bag can be packed and replaced by opening the movable door on the shell 17.
[0054] As an optional implementation, the vehicle body assembly 1 comprises a vehicle body bottom plate 11, a vehicle body framework 12, a driving wheel set 13, a steering wheel set 14, a direction pedal 15 and a push rod 16, the vehicle body framework 12 and the longitudinal cutting assembly 2 are connected to the top of the vehicle body bottom plate 11, the push rod 16 and the transverse cutting assembly 4 are connected to the vehicle body framework 12, the peeling and recycling assembly 3 is connected to the vehicle body bottom plate 11 and the vehicle body framework 12, and the driving wheel set 13, the steering wheel set 14 and the direction pedal 15 are connected to the bottom of the vehicle body bottom plate 11.
[0055] The vehicle body bottom plate 11 and the vehicle body framework 12 are preferably made of aluminum alloy material, which is stable in structure and has stronger bearing capacity.
[0056] The driving wheel set 13 preferably adopts an aluminum core structure and is driven by a motor, thereby providing power for the movement of the trolley and having bearing capacity, the driving wheel set 13 can be preferably in driving connection with the driving motor 33 of the peeling and recycling assembly 3, both of which are provided with power by the same motor, and the transmission ratio is matched through a chain wheel, so that the peeling speed and the vehicle movement speed are basically kept synchronous, thereby achieving the effect of continuous recycling.
[0057] The steering wheel set 14 preferably adopts a wheel body with a locking mechanism, and can also be controlled through a direction pedal 15, which is stepped down to lock the driving direction when preparing for the recycling operation, so as to keep the orientation stable and recycle stably;
[0058] The push rod 16 can be held by the operator, and assists in moving and steering.
[0059] As an optional implementation, the vehicle body assembly 1 further comprises a shell 17 connected to the vehicle body bottom plate 11 and covering the outside of the longitudinal cutting assembly 2, the stripping and recycling assembly 3, the transverse cutting assembly 4 and the storage assembly 5, the shell 17 is preferably a full-metal structure with good structural strength;
[0060] The front end and the rear end of the shell 17 are both provided with a movable door, the movable door at the front end facilitates loading and unloading of the bag filled with waste, and the movable door at the rear end facilitates installation and maintenance;
[0061] The top of the shell 17 is provided with an observation window 171, through which the recycling status of the film can be observed in real time, and timely adjustment and replacement can be made when a fault or fullness is found.
[0062] As an optional implementation, the vehicle body assembly 1 further comprises a lithium battery connected to the vehicle body bottom plate 11, the lithium battery is electrically connected with the control system panel 18, and the lithium battery can provide electric energy for the recycling machine.
[0063] As an optional implementation, the vehicle body assembly 1 further comprises a control system panel 18 arranged on the top of the shell 17 and close to the push rod 16, all operation commands can be integrated on the control system panel 18, so as to facilitate the operator to control, the operator can issue corresponding instructions on the control system panel 18 to control the components of the recycling machine to work, and the control system panel 18 can also display real-time power to facilitate timely power supply.
[0064] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto, any skilled person in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A nuclear decontamination copolymer film recycling machine characterized by, The application relates to a film cutting and recycling device, which comprises a vehicle body assembly (1) and a longitudinal cutting assembly (2), a stripping and recycling assembly (3), a transverse cutting assembly (4) and a storage assembly (5) connected to the vehicle body assembly (1), the longitudinal cutting assembly (2) is located in front of the stripping and recycling assembly (3) in the running direction, the longitudinal cutting assembly (2) can contact and longitudinally cut a film body during operation, the stripping and recycling assembly (3) can contact and strip and recycle a film body into the storage assembly (5) during operation, and the transverse cutting assembly (4) can transversely cut the film body in the storage assembly (5) during operation. The longitudinal cutting assembly (2) comprises an electric push rod (21), a first sliding rail sliding block (22), a movable piece (23), a vibrating knife (24) and a compression spring (25), the electric push rod (21) is connected with the vehicle body assembly (1) and is drivingly connected with the movable piece (23), the movable piece (23) is movably connected with the vehicle body assembly (1) through the first sliding rail sliding block (22), the vibrating knife (24) is movably connected with the movable piece (23), and the compression spring (25) is connected with the movable piece (23) and the vibrating knife (24) respectively.
2. The nuclear decontamination copolymer film recycler of claim 1, wherein, The longitudinal cutting assembly (2) further comprises a round cutting knife support (26) and a round cutting knife body (27), the round cutting knife support (26) is connected with the vibrating knife (24), and the round cutting knife body (27) is connected with the round cutting knife support (26).
3. The nuclear decontamination copolymer film recycler of claim 1, wherein, The stripping and recycling assembly (3) comprises a film stopping roller (31), a driving roller (32), a driving motor (33), a pressing roller (34), a pressing handle (35), an adjusting roller (36), a conveying roller (37), a material sliding plate (38) and a film pushing connecting rod (39), the film stopping roller (31) is movably connected with the vehicle body assembly (1), the driving roller (32) is movably connected with the vehicle body assembly (1) and located above the film stopping roller (31), the driving motor (33) is connected with the vehicle body assembly (1) and drivingly connected with the driving roller (32), the pressing roller (34) is movably connected with the pressing handle (35) and drivingly engaged with the driving roller (32), the pressing handle (35) is connected with the vehicle body assembly (1), the adjusting roller (36) and the conveying roller (37) are movably connected with the vehicle body assembly (1) and drivingly connected with the driving roller (32), and the material sliding plate (38) and the film pushing connecting rod (39) are connected with the vehicle body assembly (1).
4. The nuclear decontamination copolymer film recycler of claim 1, wherein, The transverse cutting assembly (4) comprises a fixing base (41), a lead screw motor (42), a lead screw (43), a second sliding rail slider (44), a sliding base (45), a transverse cutting motor (46) and a transverse cutting knife (47), the fixing base (41) is connected to the vehicle body assembly (1), the lead screw motor (42) is connected to the fixing base (41), the lead screw (43) is in driving connection with the lead screw motor (42) through a gear, the lead screw (43) is in driving connection with the sliding base (45), the sliding base (45) is in sliding connection with the fixing base (41) through the second sliding rail slider (44), the transverse cutting motor (46) is connected to the sliding base (45), and the transverse cutting knife (47) is in driving connection with the transverse cutting motor (46).
5. The nuclear decontamination copolymer film recycler of claim 1, wherein, The storage assembly (5) is a bag, which is connected to the vehicle body assembly (1) and located at the high position of the peeling and recycling assembly (3) and below the transverse cutting assembly (4).
6. The nuclear decontamination copolymer film recycler of claim 1, wherein, The vehicle body assembly (1) comprises a vehicle body bottom plate (11), a vehicle body framework (12), a driving wheel set (13), a steering wheel set (14), a direction pedal (15) and a push rod (16), the vehicle body framework (12) and the longitudinal cutting assembly (2) are both connected to the top of the vehicle body bottom plate (11), the push rod (16) and the transverse cutting assembly (4) are connected to the vehicle body framework (12), the peeling and recycling assembly (3) is connected to the vehicle body bottom plate (11) and the vehicle body framework (12), and the driving wheel set (13), the steering wheel set (14) and the direction pedal (15) are all connected to the bottom of the vehicle body bottom plate (11).
7. The nuclear decontamination copolymer film recycler of claim 6, wherein, The vehicle body assembly (1) further comprises an outer shell (17), which is connected to the vehicle body bottom plate (11) and covers the outside of the longitudinal cutting assembly (2), the peeling and recycling assembly (3), the transverse cutting assembly (4) and the storage assembly (5), the front end and the rear end of the outer shell (17) are both provided with a movable door, and the top of the outer shell (17) is provided with an observation window (171).
8. The nuclear decontamination copolymer film recycler of claim 7, wherein, The vehicle body assembly (1) further comprises a control system panel (18), which is arranged on the top of the outer shell (17).
9. The nuclear decontamination copolymer film recycler of claim 8, wherein, The vehicle body assembly (1) further comprises a lithium battery, which is connected to the vehicle body bottom plate (11) and electrically connected to the control system panel (18).