Environmentally friendly multi-functional irradiation treatment equipment
Patent Information
- Application Number
- CN202411108166.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2044-08-13
AI Technical Summary
[0004]传统的辐照设备存在以下缺点:首先,体积较大,不方便移动,其次,辐照设备不设置任何防护作用,产生的射线存在泄漏的情况,容易对周围环境或者人员造成伤害,因此本发明提出环保型多功能辐照处理设备
[0008]The beneficial effects of adopting the above technical solution are: the side output plate and the auxiliary output plate are movably connected by a rotating component, which can realize the rotation of the auxiliary output plate. At the same time, the auxiliary output plate, the steering output plate and the main output plate are detachably fixed by bolts, which allows the equipment to be quickly disassembled and transported, increasing the functionality of the equipment. Compared with traditional large-scale irradiation equipment, its mobility is unmatched by traditional equipment.
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Figure CN118929062B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of irradiation treatment equipment technology, and in particular to an environmentally friendly, multifunctional irradiation treatment equipment. Background Technology
[0002] Irradiation equipment has wide applications in many fields, such as industry, food, agriculture, and medicine. These devices alter the properties of processed materials by utilizing the physical, chemical, and biological effects produced by the interaction of radiation with matter. For example, irradiation can enhance the thermal stability, flame retardancy, and chemical stability of materials, and can also be used for sterilization and disinfection.
[0003] In irradiation equipment, the selection of the radiation source is crucial. Currently commonly used radiation sources include gamma radiation sources, electron beam radiation sources, and X-ray sources. Gamma radiation sources typically use radioactive nuclides such as Co-60, which have strong penetrating power and are suitable for irradiating products with high density and large volume;
[0004] Traditional irradiation equipment has the following disadvantages: First, it is large in size and inconvenient to move; second, the irradiation equipment does not have any protective measures, and the generated radiation may leak, which can easily cause harm to the surrounding environment or people. Therefore, this invention proposes an environmentally friendly multifunctional irradiation treatment device. Summary of the Invention
[0005] The purpose of this invention is to overcome the shortcomings of existing technologies and propose an environmentally friendly, multifunctional irradiation treatment device.
[0006] To achieve the above objectives, the present invention adopts the following technical solution: an environmentally friendly multifunctional irradiation treatment device, including a device housing and an irradiation device body disposed within the device housing, wherein feed inlets are correspondingly opened on both sides of the device housing, and conveying components are disposed on the outer sides of the feed inlets on both sides of the device housing.
[0007] The conveying assembly includes a side output plate, a secondary output plate, a steering output plate, and a main output plate. A rotating component is provided between the side output plate and the secondary output plate, and the side output plate and the secondary output plate are movably connected through the rotating component. The secondary output plate, the steering output plate, and the main output plate are all fixedly connected by bolts. A movable shaft is provided on the surface of each of the side output plate, the secondary output plate, the steering output plate, and the main output plate. A drive roller is fixedly mounted on each movable shaft. The movable shaft is rotatably connected to the inner wall of each of the side output plate, the secondary output plate, the steering output plate, and the main output plate. The drive roller is movably connected to the movable shaft and is fixedly mounted on the top of each of the side output plate, the secondary output plate, the steering output plate, and the main output plate.
[0008] The beneficial effects of adopting the above technical solution are: the side output plate and the auxiliary output plate are movably connected by a rotating component, which can realize the rotation of the auxiliary output plate. At the same time, the auxiliary output plate, the steering output plate and the main output plate are detachably fixed by bolts, which allows the equipment to be quickly disassembled and transported, increasing the functionality of the equipment. Compared with traditional large-scale irradiation equipment, its mobility is unmatched by traditional equipment.
[0009] Furthermore, a mounting plate is fixed on the outer side wall of the main output plate, and an output motor is mounted on the mounting plate. The output end of the output motor movably passes through the main output plate and is fixedly connected to the outermost movable shaft.
[0010] Furthermore, the rotating component includes an outer side plate and an inner fixing plate. The outer side plate is fixed to the outer side wall of the side output plate, and the rotating component is fixed to the inner side wall of the side output plate away from the equipment housing. A rotary motor is fixed to the inner fixing plate on the side away from the outer side plate. The output end of the rotary motor passes through the inner fixing plate and is fixed with a drive shaft. The other end of the drive shaft is fixedly connected to the outer side plate.
[0011] The beneficial effects of adopting the above technical solution are: using a rotary motor to start and drive the transmission shaft to rotate, thereby realizing the rotation of the rotating parts and the auxiliary output plate, which facilitates the reduction of the overall size of the equipment during the transfer process.
[0012] Furthermore, auxiliary functional components are provided on the top two sides of the device housing. The auxiliary functional components include a support plate, a guide side plate is fixed to one side of the support plate, and an electric push rod is horizontally fixed to the guide side plate. The distance between the electric push rod and the support plate is greater than the thickness of the sub-output plate.
[0013] The beneficial effects of adopting the above technical solution are as follows: after the steering output plate and the main output plate are disassembled, the auxiliary output plate rotates to a vertical state and fits against the support plate. By activating the electric push rod, the electric push rod is positioned horizontally on the outside of the auxiliary output plate to limit and block the auxiliary output plate, ensuring the stability of the auxiliary output plate during transportation.
[0014] Furthermore, a protective component is provided directly below one of the auxiliary function components. The protective component includes a trigger plate and a right side baffle. A driving component is fixedly connected to the top of the right side baffle. The driving component is mounted on the device housing. A spring assembly is provided on the side of the trigger plate near the right side baffle. The spring assembly is fixed to the trigger plate and the right side baffle respectively. A touch rod is fixed in the middle of the side of the trigger plate near the right side baffle. A control button is provided on the right side baffle on the other side of the touch rod.
[0015] The beneficial effects of adopting the above technical solution are as follows: when the trigger plate is subjected to the squeezing force of the object, the touch rod touches the drive component, controls the start of the drive motor, thereby realizing the rise of the right side baffle and the left side baffle, so that the feed troughs on both sides of the equipment housing open, so that the object can enter the equipment housing for irradiation treatment.
[0016] Furthermore, the driving component includes a housing, a drive motor is fixed to the top of the housing, the output end of the drive motor passes through the housing and is fixed with a drive screw, a drive block is threadedly connected to the portion of the drive screw located inside the housing, a connecting rod is fixed to the outer wall of the drive block, the bottom of the connecting rod is fixed to the top of the right side baffle, and the drive motor is electrically connected to the corresponding control button.
[0017] The beneficial effects of adopting the above technical solution are: the start of the drive motor can be controlled by the control button, eliminating the need for manual start-up, and avoiding the inability to control the start of the drive motor well due to radiation during remote start-up.
[0018] Furthermore, a top limiting plate is fixed to the top of the trigger plate, and a top limiting sleeve is provided directly above the top limiting plate. The top limiting sleeve is fixed to the equipment housing, and the top limiting plate is correspondingly and movably inserted into the top limiting sleeve. The top outer surface of the top limiting plate is curved and supported by a flexible material.
[0019] The beneficial effects of adopting the above technical solution are as follows: during the upward movement of the right baffle, the top limiting plate slides into the inside of the top limiting sleeve. Due to the arc design of the surface of the top limiting plate, the pressure of the top limiting sleeve on the arc surface of the top limiting plate will be used to squeeze the trigger plate at the same time as the top limiting plate is inserted into the top limiting sleeve. This avoids the situation where the right baffle does not rise completely due to the pressure being reduced when the object falls off during the movement.
[0020] Furthermore, a limiting groove is formed on the surface of the outer shell, and the connecting rod is slidably connected to the limiting groove.
[0021] The beneficial effect of adopting the above technical solution is that it can be used to restrict the linear movement of the connecting rod.
[0022] Furthermore, the same driving component is provided on the other side of the device housing, and a control component is fixed on the driving component on the other side of the device housing. The control component includes a left side baffle, and an infrared sensor is fixed at the bottom of the left side baffle. The infrared sensor is electrically connected to the drive motor in the two sets of driving components.
[0023] The beneficial effects of adopting the above technical solution are as follows: the infrared sensor is electrically connected to the drive motor in the two sets of drive components. The infrared sensor is used to detect whether there is an object passing through the inside of the equipment housing. If not, it can notify the reverse drive motor to start, so as to lower the right baffle and the left baffle, thereby closing the feed trough and preventing the energy of the radiation from leaking out.
[0024] Furthermore, the irradiation equipment body consists of a speed regulating tube, an electron gun, a waveguide system, an accelerating tube, a focusing coil, a gas filling system, and a scanning window. An internal conveying plate is provided directly below the scanning window in the irradiation equipment body. The internal conveying plate is provided with the same movable shaft, transmission roller, and bottom movable sleeve plate as those provided on the side output plate.
[0025] Compared with the prior art, the advantages and positive effects of the present invention are as follows:
[0026] 1. This invention includes a conveying assembly and auxiliary functional components. The side output plate and the auxiliary output plate in the conveying assembly can rotate freely. When the auxiliary output plate rotates to a vertical position, one side of it is tightly attached to the support plate. At this time, the electric push rod is activated to extend and retract, blocking the outer wall of the auxiliary output plate to ensure the attachment between the auxiliary output plate and the support plate. The auxiliary output plate, the steering output plate and the main output plate are detachably fixed with bolts, which is convenient for disassembly. Therefore, the irradiation equipment proposed in this invention can be disassembled as a whole, which is convenient for daily transportation.
[0027] 2. This invention incorporates protective and control components. During routine irradiation treatment, when an object is conveyed to one side of the trigger plate, the object's forward momentum generates a squeezing force towards the trigger plate, causing it to move a distance towards the right-side baffle. At this point, a touch lever on one side of the trigger plate touches the control button, activating the drive motor in the drive unit. This causes the drive screw to move the drive block upwards, which in turn uses a connecting rod to move the right and left-side baffles upwards, connecting the feed troughs on the equipment housing and completing the irradiation treatment of the material. When no object needs irradiation, the infrared sensor detects that no object is passing below and controls the drive motor to reverse, causing the right and left-side baffles to move downwards, sealing the feed troughs on both sides of the equipment housing. This design achieves automatic sealing and opening of the equipment housing, ensuring that the entire equipment remains sealed when not in use. This not only prevents equipment damage but also prevents the leakage of incompletely released radiation energy, thus avoiding harm to the surrounding environment and personnel, further improving the environmental performance of the equipment. Attached Figure Description
[0028] Figure 1 This is a front view of the environmentally friendly multifunctional irradiation treatment equipment of the present invention;
[0029] Figure 2 This is a diagram at point A of the environmentally friendly multifunctional irradiation treatment equipment of the present invention;
[0030] Figure 3 This is a partial view of the environmentally friendly multifunctional irradiation treatment equipment of the present invention;
[0031] Figure 4 This is a diagram at point B of the environmentally friendly multifunctional irradiation treatment equipment of the present invention;
[0032] Figure 5 This is a schematic diagram of the connection structure of the drive component in the environmentally friendly multifunctional irradiation treatment equipment of the present invention;
[0033] Figure 6 This is a left view of the environmentally friendly multifunctional irradiation treatment equipment of the present invention;
[0034] Figure 7 This is an internal diagram of the environmentally friendly multifunctional irradiation treatment equipment of the present invention.
[0035] Figure Labels
[0036] 1. Equipment housing; 2. Conveying assembly; 3. Protective assembly; 4. Auxiliary function assembly; 5. Control assembly; 6. Irradiation equipment body; 7. Internal conveyor plate;
[0037] 21. Side output plate; 22. Rotating component; 23. Auxiliary output plate; 24. Steering output plate; 25. Main output plate; 26. Mounting plate; 27. Output motor; 28. Movable shaft; 29. Drive roller; 210. Bottom movable sleeve plate; 221. Outer side plate; 222. Inner fixed plate; 223. Rotary motor; 224. Drive shaft;
[0038] 31. Trigger plate; 32. Right side baffle; 33. Top limit plate; 34. Top limit sleeve; 35. Drive component; 36. Spring assembly; 37. Touch rod; 38. Control button; 351. Housing; 352. Drive motor; 353. Drive screw; 354. Drive block; 355. Connecting rod; 356. Limit groove;
[0039] 41. Support plate; 42. Guide side plate; 43. Electric push rod;
[0040] 51. Left side panel; 52. Infrared sensor. Detailed Implementation
[0041] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0042] Example 1
[0043] like Figure 1 , Figure 2 as well as Figure 4 As shown, the present invention provides a technical solution: an environmentally friendly multifunctional irradiation treatment device, including a device housing 1 and an irradiation device body 6 disposed inside the device housing 1. Feeding slots are provided on both sides of the device housing 1, and conveying components 2 are provided on the outer sides of the feeding slots on both sides of the device housing 1. The object to be irradiated enters and exits the device housing 1 through the feeding slots on both sides of the device housing 1, and the irradiation treatment of the object is completed by the irradiation device body 6.
[0044] The conveying assembly 2 includes a side output plate 21, a secondary output plate 23, a steering output plate 24, and a main output plate 25. A rotating component 22 is provided between the side output plate 21 and the secondary output plate 23, and the side output plate 21 and the secondary output plate 23 are movably connected by the rotating component 22. The secondary output plate 23, the steering output plate 24, and the main output plate 25 are all fixedly connected by bolts. A movable shaft 28 is provided on the surface of each of the side output plate 21, the secondary output plate 23, the steering output plate 24, and the main output plate 25. A transmission roller 29 is correspondingly fixed on each of the movable shafts 28. The movable shafts 28 are respectively rotatably connected to the side output plate 21 and the secondary output plate 23. On the inner walls of the steering output plate 24 and the main output plate 25, the drive roller 29 is movably connected to the movable shaft 28 and correspondingly fixed on the top of the side output plate 21, the auxiliary output plate 23, the steering output plate 24 and the main output plate 25. The side output plate 21 and the auxiliary output plate 23 are movably connected by the rotating part 22, which can realize the rotation of the auxiliary output plate 23. At the same time, the auxiliary output plate 23, the steering output plate 24 and the main output plate 25 are detachably fixed by bolts, which allows the equipment to be quickly disassembled and transported, increasing the functionality of the equipment. Compared with traditional large-scale irradiation equipment, its mobility is unmatched by traditional equipment.
[0045] A mounting plate 26 is fixed on the outer wall of the main output plate 25. An output motor 27 is mounted on the mounting plate 26. The output end of the output motor 27 movably passes through the main output plate 25 and is fixedly connected to the outermost movable shaft 28. The corresponding movable shafts 28 are all connected by belt drive in the side output plate 21, auxiliary output plate 23, steering output plate 24 and the main output plate 25. The first section of the side output plate 21, auxiliary output plate 23 and steering output plate 24 are all equipped with the same output motor 27 as the one on the main output plate 25. The belt is hidden inside the side output plate 21, auxiliary output plate 23, steering output plate 24 and the main output plate 25 to avoid damage. At the same time, it can drive all the movable shafts 28 to rotate for material conveying.
[0046] The rotating component 22 includes an outer plate 221 and an inner fixing plate 222. The outer plate 221 is fixed to the outer wall of the side output plate 21, and the rotating component 22 is fixed to the inner wall of the side output plate 21 away from the equipment housing 1. A rotary motor 223 is fixed to the side of the inner fixing plate 222 away from the outer plate 221. The output end of the rotary motor 223 passes through the inner fixing plate 222 and is fixed with a drive shaft 224. The other end of the drive shaft 224 is fixedly connected to the outer plate 221. The rotary motor 223 is used to start and drive the drive shaft 224 to rotate, thereby realizing the rotation of the rotating component 22 and the auxiliary output plate 23, which facilitates the reduction of the overall volume of the equipment during the transfer process.
[0047] Auxiliary functional components 4 are correspondingly arranged on both sides of the top of the equipment housing 1. The auxiliary functional components 4 include a support plate 41, a guide side plate 42 is fixed on one side of the support plate 41, and an electric push rod 43 is horizontally fixed on the guide side plate 42. The distance between the electric push rod 43 and the support plate 41 is greater than the thickness of the sub-output plate 23. After the steering output plate 24 and the main output plate 25 are disassembled, the sub-output plate 23 rotates to a vertical state and fits against the support plate 41. By activating the electric push rod 43, the electric push rod 43 is positioned horizontally on the outside of the sub-output plate 23 to limit and block the sub-output plate 23, ensuring the stability of the sub-output plate 23 during the transfer process.
[0048] In this embodiment, when assembling the equipment, the electric push rod 43 is first activated to retract, and then the rotary motor 223 is turned on. The transmission shaft 224 drives the outer plate 221 to rotate until the auxiliary output plate 23 and the side output plate 21 are at the same level. Then, the auxiliary output plate 23, the steering output plate 24 and the main output plate 25 are connected by bolts to complete the assembly of the device. This design allows the irradiation equipment to be disassembled as a whole, which is convenient for daily transportation.
[0049] Example 2
[0050] like Figure 3 , Figure 5 , Figure 6 as well as Figure 7 As shown, a protective component 3 is provided directly below one of the auxiliary functional components 4. The protective component 3 includes a trigger plate 31 and a right side baffle 32. A driving component 35 is fixedly connected to the top of the right side baffle 32. The driving component 35 is installed on the equipment housing 1. A spring assembly 36 is provided on the side of the trigger plate 31 near the right side baffle 32. The spring assembly 36 is fixed on the trigger plate 31 and the right side baffle 32 respectively. A touch rod 37 is fixed in the middle of the side of the trigger plate 31 near the right side baffle 32. A control button 38 is provided on the right side baffle 32 on the other side of the touch rod 37. When the trigger plate 31 is subjected to the squeezing force of an object, the touch rod 37 touches the driving component 35, which controls the start of the drive motor 352, thereby realizing the rise of the right side baffle 32 and the left side baffle 51, so that the feed slots on both sides of the equipment housing 1 are opened, so that the object can enter the equipment housing 1 for irradiation treatment.
[0051] The driving component 35 includes a housing 351. A driving motor 352 is fixed to the top of the housing 351. The output end of the driving motor 352 passes through the housing 351 and is fixed with a driving screw 353. A driving block 354 is threadedly connected to the portion of the driving screw 353 located inside the housing 351. A connecting rod 355 is fixed to the outer wall of the driving block 354. The bottom of the connecting rod 355 is fixed to the top of the right side baffle 32. The driving motor 352 is electrically connected to the control button 38. The driving motor 352 is started by controlling the control button 38, eliminating the need for manual start-up and avoiding the inability to control the start-up of the driving motor 352 due to radiation during remote start-up.
[0052] A top limiting sleeve 34 is provided directly above the top limiting plate 33. The top limiting sleeve 34 is fixed to the equipment housing 1. The top limiting plate 33 is correspondingly and movably inserted into the top limiting sleeve 34. The top outer surface of the top limiting plate 33 is arc-shaped and supported by a flexible material. During the upward movement of the right baffle 32, the top limiting plate 33 slides into the top limiting sleeve 34. Due to the arc-shaped design of the surface of the top limiting plate 33, when the top limiting plate 33 is inserted into the top limiting sleeve 34, the pressure of the top limiting sleeve 34 on the arc surface of the top limiting plate 33 will squeeze the trigger plate 31, thus preventing the right baffle 32 from not fully rising due to the pressure being reduced when the object falls off during the movement.
[0053] The surface of the outer shell 351 is provided with a limiting groove 356, and the connecting rod 355 is partially slidably connected to the limiting groove 356 to limit the linear movement of the connecting rod 355.
[0054] On the other side of the equipment housing 1, there is a similar driving component 35. A control component 5 is fixed on the driving component 35 on the other side of the equipment housing 1. The control component 5 includes a left baffle 51. An infrared sensor 52 is fixed at the bottom of the left baffle 51. The infrared sensor 52 is electrically connected to the drive motor 352 in the two sets of driving components 35. The infrared sensor 52 is used to detect whether there is an object passing through the inside of the equipment housing 1. If not, it can notify the reverse drive motor 352 to be turned on, so as to lower the right baffle 32 and the left baffle 51, thereby closing the feed trough and preventing the energy of the radiation from leaking out.
[0055] The internal conveyor plate 7 is equipped with the same movable shaft 28, transmission roller 29 and bottom movable sleeve plate 210 as the side output plate 21. The first end of the internal conveyor plate 7 is also equipped with an output motor 27, and the movable shaft 28 on the internal conveyor plate 7 is also connected by belt drive.
[0056] The irradiation equipment body 6 consists of a speed control tube, an electron gun, a waveguide system, an acceleration tube, a focusing coil, a gas filling system, and a scanning window, used to generate rays and thus achieve irradiation treatment.
[0057] In this embodiment, when the object on the conveying assembly 2 is conveyed to one side of the trigger plate 31, the object continues to be conveyed on the conveying assembly 2. At this time, the object squeezes the trigger plate 31, and the trigger plate 31 moves to the right baffle 32, so that the touch rod 37 touches the control button 38. At this time, the two drive motors 352 are turned on, so that the drive screw 353 rotates and drives the drive block 354 to move upward. Then, through the connecting rod 355, the right baffle 32 and the left baffle 51 are moved upward, opening the feed trough. After the object enters the feed trough, it continues to be conveyed on the internal conveying plate 7 until it passes below the scanning window in the irradiation equipment body 6. After the irradiation treatment is completed by the scanning of the X-ray, it is then transmitted out through the feed trough on the other side of the equipment housing 1. During the transmission process, the infrared sensor 52 is used to sense whether there is still an object being conveyed on the internal conveying plate 7 and the conveying assembly 2. When no object is sensed for a long time, the drive motor 352 is controlled to turn on in reverse, thereby closing the feed trough to prevent energy leakage.
[0058] This design enables the automatic sealing and opening of the equipment housing 1, ensuring that the entire equipment is sealed when not in use. This not only prevents damage to the equipment but also prevents the leakage of incompletely released radiation energy, thus avoiding harm to the surrounding environment and personnel, and further improving the environmental performance of the equipment.
[0059] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the protection scope of the present invention.
Claims
1. An environmentally friendly multifunctional irradiation treatment device, comprising a device shell (1) and an irradiation device body (6) arranged in the device shell (1), characterized in that, The equipment housing (1) has feeding slots on both sides, and conveying components (2) are provided on the outer sides of the feeding slots on both sides of the equipment housing (1). The conveying assembly (2) includes a side output plate (21), a secondary output plate (23), a steering output plate (24), and a main output plate (25). A rotating component (22) is provided between the side output plate (21) and the secondary output plate (23). The side output plate (21) and the secondary output plate (23) are movably connected by the rotating component (22). The secondary output plate (23), the steering output plate (24), and the main output plate (25) are all fixedly connected by bolts. The rotating component (22) includes an outer plate (221) and an inner fixing plate (222). The outer plate (221) is fixed to the outer wall of the side output plate (21). The rotating component (22) is fixed to the inner wall of the side output plate (21) away from the equipment housing (1). A rotary motor (223) is fixed to the side of the inner fixing plate (222) away from the outer plate (221). The output end of the rotary motor (223) passes through the inner fixing plate (222) and is fixed with a drive shaft (224). The other end of the drive shaft (224) is fixedly connected to the outer plate (221). Auxiliary functional components (4) are provided on the top two sides of the equipment housing (1). The auxiliary functional components (4) include a support plate (41). A guide side plate (42) is fixed on one side of the support plate (41). An electric push rod (43) is horizontally fixed on the guide side plate (42). The distance between the electric push rod (43) and the support plate (41) is greater than the thickness of the sub-output plate (23). A protective component (3) is provided directly below one of the auxiliary function components (4). The protective component (3) includes a trigger plate (31) and a right side baffle (32). A driving component (35) is fixedly connected to the top of the right side baffle (32). The driving component (35) is installed on the device housing (1). A spring assembly (36) is provided on the side of the trigger plate (31) near the right side baffle (32). The spring assembly (36) is fixed on the trigger plate (31) and the right side baffle (32). A touch rod (37) is fixed in the middle of the side of the trigger plate (31) near the right side baffle (32). A control button (38) is provided on the right side baffle (32) on the other side of the touch rod (37). The top of the trigger plate (31) is fixed with a top limiting plate (33), and a top limiting sleeve (34) is provided directly above the top limiting plate (33). The top limiting sleeve (34) is fixed on the equipment housing (1), and the top limiting plate (33) is correspondingly and movably inserted into the top limiting sleeve (34). The top outer surface of the top limiting plate (33) is arc-shaped and supported by a flexible material.
2. The environmentally friendly multifunctional irradiation treatment equipment according to claim 1, characterized in that: A mounting plate (26) is fixed on the outer wall of the main output plate (25). An output motor (27) is mounted on the mounting plate (26). The output end of the output motor (27) movably passes through the main output plate (25) and is fixedly connected to the outermost movable shaft (28). Movable shafts (28) are provided on the surfaces of the side output plate (21), the auxiliary output plate (23), the steering output plate (24), and the main output plate (25). A transmission roller (29) is fixed on each of the movable shafts (28). The movable shafts (28) are rotatably connected to the inner walls of the side output plate (21), the auxiliary output plate (23), the steering output plate (24), and the main output plate (25). The transmission roller (29) is movably connected to the movable shaft (28) and is fixed on the top of the side output plate (21), the auxiliary output plate (23), the steering output plate (24), and the main output plate (25).
3. The environmentally friendly multifunctional irradiation treatment equipment according to claim 1, characterized in that: The drive unit (35) includes a housing (351), a drive motor (352) is fixed to the top of the housing (351), the output end of the drive motor (352) passes through the housing (351) and is fixed with a drive screw (353), a drive block (354) is threadedly connected to the part of the drive screw (353) located inside the housing (351), a connecting rod (355) is fixed to the outer wall of the drive block (354), the bottom of the connecting rod (355) is fixed to the top of the right side baffle (32), and the drive motor (352) is electrically connected to the control button (38).
4. The environmentally friendly multifunctional irradiation treatment equipment according to claim 3, characterized in that: A limiting groove (356) is formed on the surface of the outer shell (351), and the connecting rod (355) is partially slidably connected to the limiting groove (356).
5. The environmentally friendly multifunctional irradiation treatment equipment according to claim 1, characterized in that: The same drive unit (35) is provided on the other side of the device housing (1). A control component (5) is fixed on the drive unit (35) on the other side of the device housing (1). The control component (5) includes a left side baffle (51). An infrared sensor (52) is fixed at the bottom of the left side baffle (51). The infrared sensor (52) is electrically connected to the drive motor (352) in the two sets of drive units (35).
6. The environmentally friendly multifunctional irradiation treatment equipment according to claim 1, characterized in that: The irradiation equipment body (6) consists of a speed regulating tube, an electron gun, a waveguide system, an accelerating tube, a focusing coil, a gas filling system, and a scanning window. An internal conveying plate (7) is provided directly below the scanning window in the irradiation equipment body (6). The internal conveying plate (7) is provided with the same movable shaft (28), transmission roller (29), and bottom movable sleeve plate (210) as those provided on the side output plate (21).
Citation Information
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