WO2022135316A9 - 一种壁画修复用粉尘清理设备 - Google Patents

一种壁画修复用粉尘清理设备 Download PDF

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WO2022135316A9
WO2022135316A9 PCT/CN2021/139506 CN2021139506W WO2022135316A9 WO 2022135316 A9 WO2022135316 A9 WO 2022135316A9 CN 2021139506 W CN2021139506 W CN 2021139506W WO 2022135316 A9 WO2022135316 A9 WO 2022135316A9
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fixedly connected
plate
dust
box
welded
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PCT/CN2021/139506
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English (en)
French (fr)
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WO2022135316A1 (zh
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向南
张鹏
周亮
黄科
腾磊
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上海建为历保科技股份有限公司
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Publication of WO2022135316A1 publication Critical patent/WO2022135316A1/zh
Publication of WO2022135316A9 publication Critical patent/WO2022135316A9/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D50/00Combinations of methods or devices for separating particles from gases or vapours
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B03SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03CMAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03C3/00Separating dispersed particles from gases or vapour, e.g. air, by electrostatic effect
    • B03C3/017Combinations of electrostatic separation with other processes, not otherwise provided for

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  • the invention relates to the technical field of novel wall painting repairing devices, in particular to a dust cleaning device for wall painting repairing.
  • the purpose of the patent of the present invention is to provide a kind of dust cleaning equipment for mural repair, so as to solve the existing problems: the existing device is often inconvenient to obtain the data of the dust content in the air during use, which is not convenient for continuous control, and lack of The collected and dust-laden air continues to be humidified, causing the dust on the outside of the collection and outside to continue to fly.
  • a kind of dust cleaning equipment for mural repairing including a dust processing box, one end of the dust processing box is fixedly connected with an introduction analysis structure, and the top of the dust processing box is fixedly connected with a Internal and external synchronous humidification structure, one side of the introduction analysis structure is fixedly connected with an automatic electrostatic synchronous dust removal structure, and one end to the other end inside the dust treatment box is fixedly connected with a first filter plate, a second filter plate and a third filter plate in sequence board, the introduction analysis structure includes a built-in carrying box, a wind guide column, an extended carrying board, a laser detection illumination lamp, a dispersive light plate, a flow column, a photosensitive reaction board and a processing circuit board, and the inner side of the built-in carrying box is fixedly connected with A flow column, both ends of the flow column are fixedly connected with a wind guide column, the top of the built-in carrying box is fixedly connected with an extended carrying plate by screws, and the inner
  • the internal and external synchronous humidification structure includes a moisture generation box, a water storage tank, a water pump pressurization outlet pipe, a heating gasification box, an electric heating pipe, a gasification outlet pipe and a cooling outlet plate, and the moisture generation box
  • a moisture generation box One side of the water storage tank is fixedly connected with a water storage tank, and one end of the water storage tank is welded with a water pump pressurization outlet pipe, and the other end of the water pump pressurization outlet pipe is welded and connected to the heating and gasification box.
  • a plurality of electric heating pipes are fixedly connected inside, one side of the electric heating pipes is connected with the cooling outlet plate through the gasification outlet pipe, and a drainage pipe is welded on one side of the cooling outlet plate, and the outer side of the drainage pipe is welded.
  • the automatic electrostatic synchronous dust removal structure includes an automatic reciprocating static electricity generating structure, a first friction plate, a composite mounting support frame, a second friction plate and a collection hopper, and one side of the automatic reciprocating static electricity generating structure is mounted on the inner device through screws.
  • the outside of the box is fixedly connected, one end of the automatic reciprocating static electricity generating structure is fixedly connected with a first friction plate, one side of the composite carrying support frame is welded to the outside of the built-in carrying box, and one end of the composite carrying support frame is fixedly connected There is a second friction plate, and the bottom end of the composite carrying support frame is welded with a collecting hopper.
  • the automatic reciprocating static electricity generating structure includes a drive mounting frame, a protective inner mounting frame, a dynamic positioning block, a motor, an eccentric drive plate, a linkage push rod, a matching power slider, a spring limit post and a C-shaped mounting plate, so
  • One end of the drive mounting frame is welded with a protective inner mounting frame, the inner side of the bottom end of the drive mounting frame is fixedly connected with a dynamic positioning block, one end of the dynamic positioning block is fixedly connected with a motor by screws, and the output end of the motor is fixed
  • An eccentric drive plate is connected, one end of the eccentric drive plate is sleeved with a linkage push rod, and the top end of the linkage push rod is sleeved with a cooperating power slider, and the cooperating power slider is located at the top end of the inner side of the cooperating carrying frame,
  • the top and bottom ends of the cooperating power slider are both connected to the cooperating carrier through a spring limiting column, and a C-shaped mounting plate is
  • a dovetail sliding block is welded on one side of the cooperating power slider, and a coordinating guide dovetail groove is formed on the inner side of the top end of the cooperating carrier, and the cooperating dovetail groove and the dovetail sliding block are in clearance fit.
  • one end of the first friction plate is attached to one end of the second friction plate, and the materials of the first friction plate and the second friction plate are both polyvinyl chloride.
  • an electric heating resistance wire is fixedly connected to the inside of the electric heating heating tube, and the material of the electric heating resistance wire is iron chrome aluminum.
  • the materials of the light dispersing plate and the flow column are glass, and the model of the photosensitive reaction plate is SD3600/5310.
  • a digital display screen is fixed at the top of the laser detection illuminating lamp, and a signal amplification circuit, a microprocessor and a signal derivation module are mounted inside the processing circuit board, and the microprocessor, the signal amplification circuit and the signal derivation module are mounted inside.
  • the modules are all electrically connected, the model of the microprocessor is A80386DX16, the model of the signal exporting module is H7118DTC, and the digital display screen and the signal exporting module are electrically connected.
  • the device facilitates the rapid collection, processing and inspection of the dust gas during use, and cooperates with the synchronous humidification to complete the synchronous humidification of the external gas and the recovered gas, avoiding It reduces the flying of dust and greatly improves the functionality of the device;
  • the present invention adopts the design of the automatic electrostatic synchronous dust removal structure, so that the device is easy to complete the synchronous dust collection through the generation of static electricity while the wind dust collection is performed, and the synchronous use of wind power and static electricity is used to achieve a more efficient dust removal performance.
  • Fig. 1 is the overall structural representation of the present invention
  • Fig. 2 is the top view of the whole of the present invention.
  • Fig. 3 is the partial structure schematic diagram of import analysis structure of the present invention.
  • Fig. 4 is the partial structure schematic diagram of the internal and external synchronous humidification structure of the present invention.
  • Fig. 5 is the partial structural schematic diagram of the automatic electrostatic synchronous dust removal structure of the present invention.
  • FIG. 6 is a partial structural schematic diagram of the automatic reciprocating static electricity generating structure of the present invention.
  • Dust treatment box 2. Import analysis structure; 3. Synchronous internal and external humidification structure; 4. Automatic electrostatic synchronous dust removal structure; 5. Built-in carrying box; 6. Wind guide column; Laser detection illumination lamp; 9. Dispersive light plate; 10. Flow column; 11. Photosensitive reaction plate; 12. Processing circuit board; 13. First filter plate; 14. Second filter plate; 15. Third filter plate; 16 , moisture generation box; 17, water storage tank; 18, pump pressurization outlet pipe; 19, heating gasification box; 20, electric heating pipe; 21, gasification outlet pipe; 22, cooling outlet plate; 23, drainage Tube; 24. Humidification hole for external discharge; 25. Automatic reciprocating static electricity generation structure; 26. First friction plate; 27. Composite carrying support frame; 28. Second friction plate; 29. Collection hopper; 31. Protection built-in frame; 32. Dynamic positioning block; 33. Motor; 34. Eccentric drive plate; 35. Linkage push rod;
  • a dust cleaning equipment for mural restoration including a dust processing box 1, one end of the dust processing box 1 is fixedly connected with an introduction analysis structure 2, and the top of the dust processing box 1 is fixedly connected with an internal and external synchronous humidification structure 3 , the side introduced into the analysis structure 2 is fixedly connected with an automatic electrostatic synchronous dust removal structure 4, and one end of the dust treatment box 1 is fixedly connected with the first filter plate 13, the second filter plate 14 and the third filter plate 15 in sequence from one end to the other end.
  • the introduction analysis structure 2 includes a built-in carrying box 5, a wind guide column 6, an extended carrying plate 7, a laser detection illumination lamp 8, a light dispersing plate 9, a flow column 10, a photosensitive reaction board 11 and a processing circuit board 12.
  • the inner side is fixedly connected with a flow column 10, both ends of the flow column 10 are fixedly connected with a wind guide column 6, the top end of the built-in carrying box 5 is fixedly connected with an extended carrying plate 7 by screws, and the inner side of the top of the extended carrying plate 7 is fixedly connected.
  • the materials of the light dispersing plate 9 and the flow column 10 are both glass, and the model of the photosensitive reaction plate 11 is SD3600/5310, which is convenient to use the light dispersing plate 9 to amplify the astigmatism of the laser light irradiated by the laser detection illumination lamp 8 through the principle of self-convex lens scattering.
  • processing circuit board 12 is equipped with a signal amplification circuit, a microprocessor and a signal derivation module.
  • the microprocessor is electrically connected to the signal amplification circuit and the signal derivation module.
  • the model of the microprocessor is A80386DX16, and the model of the signal derivation module is H7118DTC, the digital display screen and the signal exporting module are electrically connected.
  • the electrical signal derived from the photosensitive reaction board 11 is amplified by the signal amplification circuit and then imported into the microprocessor.
  • the microprocessor is used to complete the signal processing and obtain the unit time. Finally, the obtained data is imported into the digital display screen for reading through the signal export module, and the specific content of dust in the process of treatment and repair is obtained, so as to facilitate the selection of treatment methods;
  • the internal and external synchronous humidification structure 3 includes a moisture generation box 16, a water storage tank 17, a water pump booster outlet pipe 18, a heating gasification box 19, an electric heating heating pipe 20, a gasification outlet pipe 21 and a cooling outlet plate 22.
  • One side of the box 16 is fixedly connected with a water storage tank 17, one end of the water storage tank 17 is welded with a water pump pressurization outlet pipe 18, and the other end of the water pump pressurization outlet pipe 18 is welded and connected to the heating and gasification box 19, and the heating and gasification box is welded.
  • the interior of 19 is fixedly connected with a plurality of electric heating pipes 20, one side of the electric heating pipes 20 is connected with the cooling outlet plate 22 through the gasification outlet pipe 21, and one side of the cooling outlet plate 22 is welded with a drainage pipe 23, the drainage pipe The outer side of the 23 is provided with a plurality of outer row humidification holes 24, and the inside of the electric heating tube 20 is fixedly connected with an electric heating resistance wire, and the material of the electric heating resistance wire is iron-chromium-aluminum;
  • the water stored in the water storage tank 17 is quantitatively guided out through the water pump pressurization and outlet pipe 18, and enters the heating and gasification box 19.
  • the water is heated and vaporized, and the vaporized water vapor is introduced into the cooling outlet plate 22 by the vaporization outlet pipe 21, and the heat of the water vapor is adsorbed by the cooling outlet plate 22 to a certain extent, and then is led out through the drainage pipe 23.
  • One end of the 23 is connected to the dust processing box 1, so that the steam is directly exported into the dust processing box 1, and the dust gas introduced into the dust processing box 1 is humidified, and a part of the humidity is introduced into the air by the external humidification hole 24.
  • the automatic electrostatic synchronous dust removal structure 4 includes an automatic reciprocating static electricity generating structure 25, a first friction plate 26, a composite mounting support frame 27, a second friction plate 28 and a collection hopper 29.
  • One side of the automatic reciprocating static electricity generating structure 25 is mounted with screws and built-in
  • the outer side of the box 5 is fixedly connected, one end of the automatic reciprocating static electricity generating structure 25 is fixedly connected with the first friction plate 26, one side of the composite mounting support frame 27 is welded to the outside of the built-in loading box 5, and one end of the composite mounting support frame 27 is fixedly connected
  • There is a second friction plate 28, a collection hopper 29 is welded to the bottom end of the composite carrying support frame 27, and the automatic reciprocating static electricity generating structure 25 includes a moving carrying frame 30, a protective inner frame 31, a dynamic positioning block 32, a motor 33, and an eccentric drive plate 34.
  • the linkage push rod 35, the matching power slider 36, the spring limit post 37 and the C-type mounting plate 38, one end of the supporting frame 30 is welded with a protective inner frame 31, and the inner side of the bottom end of the supporting frame 30 is fixedly connected with a
  • the dynamic positioning block 32, one end of the dynamic positioning block 32 is fixedly connected with a motor 33 by screws, an eccentric driving disc 34 is fixedly connected to the output end of the motor 33, and one end of the eccentric driving disc 34 is sleeved with a linkage push rod 35, and the linkage push rod 35
  • the top end is sleeved with a matching power slider 36, the matching power slider 36 is located at the top of the inner side of the matching power slider 30, and the top and bottom ends of the matching power slider 36 are connected to the matching power carrying frame 30 through the spring limit post 37.
  • a C-shaped mounting plate 38 is welded on one side of the matching power slider 36, a dovetail sliding block is welded on one side of the matching power slider 36, and a matching guide dovetail groove is opened on the inner side of the top of the matching power slider 30, and the matching guide dovetail groove It is clearance fit with the dovetail sliding block to form a stable support that follows the movement.
  • One end of the first friction plate 26 is attached to one end of the second friction plate 28.
  • the material of the first friction plate 26 and the second friction plate 28 is polychlorinated. Ethylene, to facilitate the formation of a sufficient amount of electrostatic adsorption through the contact friction of polyvinyl chloride;
  • the eccentric drive disc 34 is driven to complete the rotation, and the eccentric drive disc 34 is designed to be eccentric, so that the eccentric drive disc 34 can easily form the highest point and the lowest point during the rotation process, thereby driving the linkage push rod 35 completes the lifting and pushing, using the connection between the linkage push rod 35 and the cooperating power slider 36, so that the cooperating power slider 36 is driven by the linkage push rod 35 to lift and slide inside the coordinating carrier 30, and the spring limit post 37 is used to lift and slide.

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Cleaning In General (AREA)
  • Electrostatic Separation (AREA)

Abstract

本发明公开了一种壁画修复用粉尘清理设备,涉及新型壁画修复装置技术领域。本发明专利包括粉尘处理箱,粉尘处理箱的一端固定连接有导入分析结构,粉尘处理箱的顶端固定连接有内外同步加湿结构。本发明专利通过导入分析结构、内外同步加湿结构的配合设计,使得装置在使用过程便于对粉尘气体进行快速的收集处理和检查,并配合同步加湿完成对外部气体和回收气体的同步加湿,避免了粉尘的飞扬,大大提高了装置的功能性,且通过自动化静电同步除尘结构的设计,使得装置在进行风力集尘的同时便于通过静电的产生完成同步的粉尘收集,利用风力和静电的同步使用,从而达到了更高效的除尘性能。

Description

一种壁画修复用粉尘清理设备 技术领域
本发明涉及新型壁画修复装置技术领域,具体为一种壁画修复用粉尘清理设备。
背景技术
早在汉朝就有在墙壁上作画的记载,多是在石窟、墓室或是寺观的墙壁,到了现在结合了现代工艺和文化气息,墙壁作画越来越多元、个性地发展,更多地被人们在装修时应用,在现代很多壁画需要持续修复,但是修复过程中会产生大量的粉尘,为了避免粉尘对空气造成影响需要对应的清理设备,但是,现有的装置在使用过程中往往不便于获得空气中粉尘含量的数据不便于持续控制,并缺乏对收集和含有粉尘的空气持续加湿处理,导致收集和外侧的粉尘持续飘扬,且缺乏对应的高效回收粉尘的结构。
发明专利内容
本发明专利的目的在于提供一种壁画修复用粉尘清理设备,以解决了现有的问题:现有的装置在使用过程中往往不便于获得空气中粉尘含量的数据不便于持续控制,并缺乏对收集和含有粉尘的空气继续加湿处理,导致收集和外侧的粉尘持续飘扬。
为实现上述目的,本发明提供如下技术方案:一种壁画修复用粉尘清理设备,包括粉尘处理箱,所述粉尘处理箱的一端固定连接有导入分析结构,所述粉尘处理箱的顶端固定连接有内外同步加湿结构,所述导入分析结构的一侧固定连接有自动化静电同步除尘结构,所述粉尘处理箱内部的一端到另一端依次固定连接有第一过滤板、第二过滤板和第三过滤板,所述导入分析结构包括内装搭载箱、风力引导柱、延伸搭载板、激光检测照射灯、分散光板、过流柱、光敏反应板和处理电路板,所述内装搭载箱的内侧固定连接有过流柱,所述过流柱的两端均固定连接有风力引导柱,所 述内装搭载箱的顶端通过螺钉固定连接有延伸搭载板,所述延伸搭载板顶端的内侧固定连接有激光检测照射灯,所述激光检测照射灯的底端焊接有分散光板,所述内装搭载箱内侧的底端固定连接有光敏反应板和处理电路板,所述处理电路板位于光敏反应板的底端,所述光敏反应板和处理电路板为电性连接。
优选的,所述内外同步加湿结构包括湿气产生箱、蓄水罐、水泵增压导出管、加热气化箱、电热加温管、气化导出管和冷却导出板,所述湿气产生箱的一侧固定连接有蓄水罐,所述蓄水罐的一端焊接有水泵增压导出管,所述水泵增压导出管的另一端与加热气化箱焊接连接,所述加热气化箱的内部固定连接有多个电热加温管,所述电热加温管的一侧通过气化导出管与冷却导出板连接,所述冷却导出板的一侧焊接有引流管,所述引流管的外侧开设有多个外排加湿孔。
优选的,所述自动化静电同步除尘结构包括自动化往复静电产生结构、第一摩擦板、复合搭载支撑架、第二摩擦板和收集料斗,所述自动化往复静电产生结构的一侧通过螺钉与内装搭载箱的外侧固定连接,所述自动化往复静电产生结构的一端固定连接有第一摩擦板,所述复合搭载支撑架的一侧焊接于内装搭载箱的外侧,所述复合搭载支撑架的一端固定连接有第二摩擦板,所述复合搭载支撑架的底端焊接有收集料斗。
优选的,所述自动化往复静电产生结构包括配动搭载架、保护内装架、动力定位块、电机、偏心带动盘、联动推杆、配合动力滑块、弹簧限位柱和C型搭载板,所述配动搭载架的一端焊接有保护内装架,所述配动搭载架底端的内侧固定连接有动力定位块,所述动力定位块的一端通过螺钉固定连接有电机,所述电机的输出端固定连接有偏心带动盘,所述偏心带动盘的一端套接有联动推杆,所述联动推杆的顶端套接有配合动力滑块,所述配合动力滑块位于配动搭载架内侧的顶端,所述配合动力滑块的顶端和 底端均通过弹簧限位柱与配动搭载架连接,所述配合动力滑块的一侧焊接有C型搭载板。
优选的,所述配合动力滑块的一侧焊接有燕尾滑动块,所述配动搭载架顶端的内侧开设有配导燕尾槽,所述配导燕尾槽与燕尾滑动块为间隙配合。
优选的,所述第一摩擦板的一端与第二摩擦板的一端贴合,所述第一摩擦板与第二摩擦板的材质均为聚氯乙烯。
优选的,所述电热加温管的内部固定连接有电热阻丝,所述电热阻丝的材质为铁铬铝。
优选的,所述分散光板的和过流柱的材质均为玻璃,所述光敏反应板的型号为SD3600/5310。
优选的,所述激光检测照射灯的顶端固定有数显屏,所述处理电路板的内部搭载有信号放大电路、微型处理器和信号导出模块,所述微型处理器与信号放大电路及信号导出模块之间均为电性连接,所述微型处理器的型号为A80386DX16,所述信号导出模块的型号为H7118DTC,所述数显屏与信号导出模块为电性连接。
与现有技术相比,本发明的有益效果是:
1、本发明通过导入分析结构、内外同步加湿结构的配合设计,使得装置在使用过程便于对粉尘气体进行快速的收集处理和检查,并配合同步加湿完成对外部气体和回收气体的同步加湿,避免了粉尘的飞扬,大大提高了装置的功能性;
2、本发明通过自动化静电同步除尘结构的设计,使得装置在进行风力集尘的同时便于通过静电的产生完成同步的粉尘收集,利用风力和静电的同步使用,从而达到了更高效的除尘性能。
附图说明
为了更清楚地说明本发明专利实施例的技术方案,下面将对实施例描述所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明专利的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明整体的结构示意图;
图2为本发明整体的俯视图;
图3为本发明导入分析结构的局部结构示意图;
图4为本发明内外同步加湿结构的局部结构示意图;
图5为本发明自动化静电同步除尘结构的局部结构示意图;
图6为本发明自动化往复静电产生结构的局部结构示意图。
图中:1、粉尘处理箱;2、导入分析结构;3、内外同步加湿结构;4、自动化静电同步除尘结构;5、内装搭载箱;6、风力引导柱;7、延伸搭载板;8、激光检测照射灯;9、分散光板;10、过流柱;11、光敏反应板;12、处理电路板;13、第一过滤板;14、第二过滤板;15、第三过滤板;16、湿气产生箱;17、蓄水罐;18、水泵增压导出管;19、加热气化箱;20、电热加温管;21、气化导出管;22、冷却导出板;23、引流管;24、外排加湿孔;25、自动化往复静电产生结构;26、第一摩擦板;27、复合搭载支撑架;28、第二摩擦板;29、收集料斗;30、配动搭载架;31、保护内装架;32、动力定位块;33、电机;34、偏心带动盘;35、联动推杆;36、配合动力滑块;37、弹簧限位柱;38、C型搭载板。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。
请参阅图1-6,一种壁画修复用粉尘清理设备,包括粉尘处理箱1, 粉尘处理箱1的一端固定连接有导入分析结构2,粉尘处理箱1的顶端固定连接有内外同步加湿结构3,导入分析结构2的一侧固定连接有自动化静电同步除尘结构4,粉尘处理箱1内部的一端到另一端依次固定连接有第一过滤板13、第二过滤板14和第三过滤板15,导入分析结构2包括内装搭载箱5、风力引导柱6、延伸搭载板7、激光检测照射灯8、分散光板9、过流柱10、光敏反应板11和处理电路板12,内装搭载箱5的内侧固定连接有过流柱10,过流柱10的两端均固定连接有风力引导柱6,内装搭载箱5的顶端通过螺钉固定连接有延伸搭载板7,延伸搭载板7顶端的内侧固定连接有激光检测照射灯8,激光检测照射灯8的底端焊接有分散光板9,内装搭载箱5内侧的底端固定连接有光敏反应板11和处理电路板12,处理电路板12位于光敏反应板11的底端,光敏反应板11和处理电路板12为电性连接;
分散光板9的和过流柱10的材质均为玻璃,光敏反应板11的型号为SD3600/5310,便于通过分散光板9将激光检测照射灯8处照射的激光通过自身凸透镜散射的原理进行散光放大,从而使得激光接触到通过风力引导柱6导入的粉尘气体,被粉尘再次反射,形成小光点信号导入到光敏反应板11处,激光检测照射灯8的顶端固定有数显屏,处理电路板12的内部搭载有信号放大电路、微型处理器和信号导出模块,微型处理器与信号放大电路及信号导出模块之间均为电性连接,微型处理器的型号为A80386DX16,信号导出模块的型号为H7118DTC,数显屏与信号导出模块为电性连接,通过信号放大电路将光敏反应板11处导出的电信号进行放大后导入微型处理器,利用微型处理器完成对信号的处理,获得单位时间内的灰尘含量,最终通过信号导出模块将获得的数据导入数显屏进行读数,获得处理修复过程中灰尘的具体含量,以便于选择处理手段;
内外同步加湿结构3包括湿气产生箱16、蓄水罐17、水泵增压导出 管18、加热气化箱19、电热加温管20、气化导出管21和冷却导出板22,湿气产生箱16的一侧固定连接有蓄水罐17,蓄水罐17的一端焊接有水泵增压导出管18,水泵增压导出管18的另一端与加热气化箱19焊接连接,加热气化箱19的内部固定连接有多个电热加温管20,电热加温管20的一侧通过气化导出管21与冷却导出板22连接,冷却导出板22的一侧焊接有引流管23,引流管23的外侧开设有多个外排加湿孔24,电热加温管20的内部固定连接有电热阻丝,电热阻丝的材质为铁铬铝;
具体为,通过水泵增压导出管18将蓄水罐17内部储蓄的水定量引导出,进入加热气化箱19的内部,经过电热加温管20的持续高热,将加热气化箱19内部的水进行升温气化,利用气化导出管21将气化的水蒸气导入冷却导出板22处,利用冷却导出板22对水蒸气的热力进行一定的吸附,后通过引流管23导出,由于引流管23的一端与粉尘处理箱1连接,使得该蒸汽被直接导出进入粉尘处理箱1的内部,完成对导入粉尘处理箱1内部的灰尘气体进行加湿,利用外排加湿孔24将一部分湿度导入空气中,利用湿度对空气中灰尘的加湿增重,从而使得灰尘无法飘扬,从而保证处理过程中灰尘不飘扬;
自动化静电同步除尘结构4包括自动化往复静电产生结构25、第一摩擦板26、复合搭载支撑架27、第二摩擦板28和收集料斗29,自动化往复静电产生结构25的一侧通过螺钉与内装搭载箱5的外侧固定连接,自动化往复静电产生结构25的一端固定连接有第一摩擦板26,复合搭载支撑架27的一侧焊接于内装搭载箱5的外侧,复合搭载支撑架27的一端固定连接有第二摩擦板28,复合搭载支撑架27的底端焊接有收集料斗29,自动化往复静电产生结构25包括配动搭载架30、保护内装架31、动力定位块32、电机33、偏心带动盘34、联动推杆35、配合动力滑块36、弹簧限位柱37和C型搭载板38,配动搭载架30的一端焊接有保护内装架 31,配动搭载架30底端的内侧固定连接有动力定位块32,动力定位块32的一端通过螺钉固定连接有电机33,电机33的输出端固定连接有偏心带动盘34,偏心带动盘34的一端套接有联动推杆35,联动推杆35的顶端套接有配合动力滑块36,配合动力滑块36位于配动搭载架30内侧的顶端,配合动力滑块36的顶端和底端均通过弹簧限位柱37与配动搭载架30连接,配合动力滑块36的一侧焊接有C型搭载板38,配合动力滑块36的一侧焊接有燕尾滑动块,配动搭载架30顶端的内侧开设有配导燕尾槽,配导燕尾槽与燕尾滑动块为间隙配合,形成跟随运动的稳定支撑,第一摩擦板26的一端与第二摩擦板28的一端贴合,第一摩擦板26与第二摩擦板28的材质均为聚氯乙烯,便于通过聚氯乙烯的接触摩擦形成足够量的吸附静电;
具体为,通过电机33输出转矩,带动偏心带动盘34完成转动,利用偏心带动盘34的偏心设计,使得偏心带动盘34在转动过程中,便于形成最高点和最低点,从而带动联动推杆35完成升降推动,利用联动推杆35和配合动力滑块36的连接,使得配合动力滑块36在联动推杆35的带动下在配动搭载架30的内部升降滑动,利用弹簧限位柱37完成对配合动力滑块36的限位,利用配合动力滑块36和C型搭载板38的连接,利用C型搭载板38带动第一摩擦板26完成升降运动,利用第一摩擦板26和第二摩擦板28的接触,在运动过程中产生大量的静电吸附灰尘。
对于本领域技术人员而言,显然本发明不限于上述示范性实施例的细节,而且在不背离本发明的精神或基本特征的情况下,能够以其他的具体形式实现本发明。因此,无论从哪一点来看,均应将实施例看作是示范性的,而且是非限制性的,本发明的范围由所附权利要求而不是上述说明限定,因此旨在将落在权利要求的等同要件的含义和范围内的所有变化囊括在本发明内。不应将权利要求中的任何附图标记视为限制所涉及的权利要 求。

Claims (9)

  1. 一种壁画修复用粉尘清理设备,包括粉尘处理箱(1),其特征在于:所述粉尘处理箱(1)的一端固定连接有导入分析结构(2),所述粉尘处理箱(1)的顶端固定连接有内外同步加湿结构(3),所述导入分析结构(2)的一侧固定连接有自动化静电同步除尘结构(4),所述粉尘处理箱(1)内部的一端到另一端依次固定连接有第一过滤板(13)、第二过滤板(14)和第三过滤板(15),所述导入分析结构(2)包括内装搭载箱(5)、风力引导柱(6)、延伸搭载板(7)、激光检测照射灯(8)、分散光板(9)、过流柱(10)、光敏反应板(11)和处理电路板(12),所述内装搭载箱(5)的内侧固定连接有过流柱(10),所述过流柱(10)的两端均固定连接有风力引导柱(6),所述内装搭载箱(5)的顶端通过螺钉固定连接有延伸搭载板(7),所述延伸搭载板(7)顶端的内侧固定连接有激光检测照射灯(8),所述激光检测照射灯(8)的底端焊接有分散光板(9),所述内装搭载箱(5)内侧的底端固定连接有光敏反应板(11)和处理电路板(12),所述处理电路板(12)位于光敏反应板(11)的底端,所述光敏反应板(11)和处理电路板(12)为电性连接。
  2. 根据权利要求1所述的一种壁画修复用粉尘清理设备,其特征在于:所述内外同步加湿结构(3)包括湿气产生箱(16)、蓄水罐(17)、水泵增压导出管(18)、加热气化箱(19)、电热加温管(20)、气化导出管(21)和冷却导出板(22),所述湿气产生箱(16)的一侧固定连接有蓄水罐(17),所述蓄水罐(17)的一端焊接有水泵增压导出管(18),所述水泵增压导出管(18)的另一端与加热气化箱(19)焊接连接,所述加热气化箱(19)的内部固定连接有多个电热加温管(20),所述电热加温管(20)的一侧通过气化导出管(21)与冷却导出板(22)连接,所述冷却导出板(22)的一侧焊接有引流管(23),所述引流管(23)的外侧开设有多个外排加湿孔(24)。
  3. 根据权利要求1所述的一种壁画修复用粉尘清理设备,其特征在于:所述自动化静电同步除尘结构(4)包括自动化往复静电产生结构(25)、第一摩 擦板(26)、复合搭载支撑架(27)、第二摩擦板(28)和收集料斗(29),所述自动化往复静电产生结构(25)的一侧通过螺钉与内装搭载箱(5)的外侧固定连接,所述自动化往复静电产生结构(25)的一端固定连接有第一摩擦板(26),所述复合搭载支撑架(27)的一侧焊接于内装搭载箱(5)的外侧,所述复合搭载支撑架(27)的一端固定连接有第二摩擦板(28),所述复合搭载支撑架(27)的底端焊接有收集料斗(29)。
  4. 根据权利要求1所述的一种壁画修复用粉尘清理设备,其特征在于:所述自动化往复静电产生结构(25)包括配动搭载架(30)、保护内装架(31)、动力定位块(32)、电机(33)、偏心带动盘(34)、联动推杆(35)、配合动力滑块(36)、弹簧限位柱(37)和C型搭载板(38),所述配动搭载架(30)的一端焊接有保护内装架(31),所述配动搭载架(30)底端的内侧固定连接有动力定位块(32),所述动力定位块(32)的一端通过螺钉固定连接有电机(33),所述电机(33)的输出端固定连接有偏心带动盘(34),所述偏心带动盘(34)的一端套接有联动推杆(35),所述联动推杆(35)的顶端套接有配合动力滑块(36),所述配合动力滑块(36)位于配动搭载架(30)内侧的顶端,所述配合动力滑块(36)的顶端和底端均通过弹簧限位柱(37)与配动搭载架(30)连接,所述配合动力滑块(36)的一侧焊接有C型搭载板(38)。
  5. 根据权利要求4所述的一种壁画修复用粉尘清理设备,其特征在于:所述配合动力滑块(36)的一侧焊接有燕尾滑动块,所述配动搭载架(30)顶端的内侧开设有配导燕尾槽,所述配导燕尾槽与燕尾滑动块为间隙配合。
  6. 根据权利要求3所述的一种壁画修复用粉尘清理设备,其特征在于:所述第一摩擦板(26)的一端与第二摩擦板(28)的一端贴合,所述第一摩擦板(26)与第二摩擦板(28)的材质均为聚氯乙烯。
  7. 根据权利要求2所述的一种壁画修复用粉尘清理设备,其特征在于:所述电热加温管(20)的内部固定连接有电热阻丝,所述电热阻丝的材质为铁铬 铝。
  8. 根据权利要求1所述的一种壁画修复用粉尘清理设备,其特征在于:所述分散光板(9)的和过流柱(10)的材质均为玻璃,所述光敏反应板(11)的型号为SD3600/5310。
  9. 根据权利要求1所述的一种壁画修复用粉尘清理设备,其特征在于:所述激光检测照射灯(8)的顶端固定有数显屏,所述处理电路板(12)的内部搭载有信号放大电路、微型处理器和信号导出模块,所述微型处理器与信号放大电路及信号导出模块之间均为电性连接,所述微型处理器的型号为A80386DX16,所述信号导出模块的型号为H7118DTC,所述数显屏与信号导出模块为电性连接。
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CN112675652B (zh) * 2020-12-24 2022-05-03 上海建为历保科技股份有限公司 一种壁画修复用粉尘清理设备

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