CN115165741A - Laboratory geological information analysis device and use method thereof - Google Patents

Laboratory geological information analysis device and use method thereof Download PDF

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CN115165741A
CN115165741A CN202210789597.7A CN202210789597A CN115165741A CN 115165741 A CN115165741 A CN 115165741A CN 202210789597 A CN202210789597 A CN 202210789597A CN 115165741 A CN115165741 A CN 115165741A
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casing
rod
air
hollow
negative pressure
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常青
李明
陆丽君
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Nanjing Desun Technology Co ltd
Geological Survey Of Jiangsu Province
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Geological Survey Of Jiangsu Province
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/01Arrangements or apparatus for facilitating the optical investigation
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/10Particle separators, e.g. dust precipitators, using filter plates, sheets or pads having plane surfaces
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
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    • B01D46/68Regeneration of the filtering material or filter elements inside the filter by means acting on the cake side involving movement with regard to the filter elements
    • B01D46/681Regeneration of the filtering material or filter elements inside the filter by means acting on the cake side involving movement with regard to the filter elements by scrapers, brushes or the like
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/01Arrangements or apparatus for facilitating the optical investigation
    • G01N21/15Preventing contamination of the components of the optical system or obstruction of the light path
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    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/20009Modifications to facilitate cooling, ventilating, or heating using a gaseous coolant in electronic enclosures
    • H05K7/20136Forced ventilation, e.g. by fans
    • H05K7/20145Means for directing air flow, e.g. ducts, deflectors, plenum or guides
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
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    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/2039Modifications to facilitate cooling, ventilating, or heating characterised by the heat transfer by conduction from the heat generating element to a dissipating body
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/01Arrangements or apparatus for facilitating the optical investigation
    • G01N2021/0106General arrangement of respective parts
    • G01N2021/0112Apparatus in one mechanical, optical or electronic block
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/01Arrangements or apparatus for facilitating the optical investigation
    • G01N21/15Preventing contamination of the components of the optical system or obstruction of the light path
    • G01N2021/151Gas blown

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Abstract

本发明公开了一种实验室地质信息分析装置,包括壳体,所述壳体内部设有装置主体,所述装置主体两侧均设有导热硅胶垫,所述导热硅胶垫通过若干个导热片与壳体连接,所述壳体顶端设有集风罩,所述集风罩顶端设有驱动电机,所述驱动电机的输出轴固定连接有转轴,所述转轴贯穿集风罩并延伸至壳体内部,所述集风罩内部设有排风扇叶,所述排风扇叶固定安装在转轴上。通过设置活塞筒,可以利用驱动电机工作的同时带动转轴转动,可以利用第一偏心轮对活塞杆进行推拉,从而可以将活塞筒内部的气体挤出吹向散热片,可以加速散热片周围的气流流动,增加散热效果;同时可以驱动清理机构和负压吸尘组件对滤网进行有效清理,增加散热效果。

Figure 202210789597

The invention discloses a laboratory geological information analysis device, comprising a casing, a device main body is arranged inside the casing, and thermally conductive silicone pads are arranged on both sides of the device main body, and the thermally conductive silicone pads pass through a plurality of thermally conductive sheets It is connected with the casing, the top of the casing is provided with a wind collecting cover, the top of the wind collecting cover is provided with a driving motor, and the output shaft of the driving motor is fixedly connected with a rotating shaft, and the rotating shaft penetrates the wind collecting cover and extends to the casing Inside the body, an exhaust fan blade is arranged inside the air collecting hood, and the exhaust fan blade is fixedly installed on the rotating shaft. By setting the piston cylinder, the drive motor can be used to drive the shaft to rotate at the same time, and the first eccentric wheel can be used to push and pull the piston rod, so that the gas inside the piston cylinder can be squeezed out and blown to the heat sink, which can accelerate the airflow around the heat sink. flow, and increase the heat dissipation effect; at the same time, it can drive the cleaning mechanism and the negative pressure dust collector to effectively clean the filter screen and increase the heat dissipation effect.

Figure 202210789597

Description

一种实验室地质信息分析装置及其使用方法A kind of laboratory geological information analysis device and using method thereof

技术领域technical field

本发明涉及地质分析领域,尤其涉及一种实验室地质信息分析装置及其使用方法。The invention relates to the field of geological analysis, in particular to a laboratory geological information analysis device and a method for using the same.

背景技术Background technique

传统的地质环境分析,需要对岩石进行采样、检测和分析,在对岩石进行检测处理时,需要添加试剂与样品反应,并利用微机元素分析仪装置,对反应后的试剂中的元素进行分析。Traditional geological environmental analysis requires sampling, testing and analysis of rocks. When testing and processing rocks, it is necessary to add reagents to react with the samples, and use a microcomputer elemental analyzer device to analyze the elements in the reacted reagents.

现有的微机元素分析装置在使用时,内部会产生的较大的热量,且现有的散热方式大多通过开散热孔进行散热,散热效果不佳,且散热时回灰尘容易进入到装置内部,影响其使用寿命,一些采用滤网的散热结构,滤网容易被灰尘堵塞,进行影响散热效果;且装置在工作时,试剂容易洒在光检台上,且不便于进行干燥处理,影响检测分析工作,需要进行改进。When the existing microcomputer element analysis device is in use, a large amount of heat will be generated inside, and most of the existing heat dissipation methods are used to dissipate heat by opening heat dissipation holes, and the heat dissipation effect is not good. Affecting its service life, some of the heat dissipation structures using filter screens are easily blocked by dust, which affects the heat dissipation effect; and when the device is working, reagents are easily sprinkled on the optical inspection table, and it is inconvenient for drying treatment, which affects the detection and analysis. work and needs to be improved.

发明内容SUMMARY OF THE INVENTION

本发明的目的在于提供一种实验室地质信息分析装置及其使用方法,以解决上述技术问题。The purpose of the present invention is to provide a laboratory geological information analysis device and a method for using the same, so as to solve the above-mentioned technical problems.

本发明为解决上述技术问题,采用以下技术方案来实现:一种实验室地质信息分析装置,包括壳体,所述壳体内部设有装置主体,所述装置主体两侧均设有导热硅胶垫,所述导热硅胶垫通过若干个导热片与壳体连接,所述壳体顶端设有集风罩,所述集风罩顶端设有驱动电机,所述驱动电机的输出轴固定连接有转轴,所述转轴贯穿集风罩并延伸至壳体内部,所述集风罩内部设有排风扇叶,所述排风扇叶固定安装在转轴上,所述壳体后侧固定连接有光检台,所述光检台与装置主体电性连接,所述光检台一侧设有干燥机构,所述壳体两侧均固定安装有散热片,所述散热片下方设有圆形进风口,所述圆形进风口上设有滤网,所述滤网上设有清理机构,所述清理机构上设有负压吸尘组件。In order to solve the above-mentioned technical problems, the present invention adopts the following technical solutions: a laboratory geological information analysis device, comprising a casing, a device main body is arranged inside the casing, and thermally conductive silica gel pads are arranged on both sides of the device main body , the thermally conductive silicone pad is connected to the casing through a number of thermally conductive sheets, the top of the casing is provided with an air collection cover, the top of the air collection cover is provided with a driving motor, and the output shaft of the driving motor is fixedly connected with a rotating shaft, The rotating shaft penetrates the air collecting hood and extends to the inside of the casing. The air collecting hood is provided with an exhaust fan blade, and the exhaust fan blade is fixedly installed on the rotating shaft. The rear side of the casing is fixedly connected with an optical inspection stage. The optical inspection stage is electrically connected to the main body of the device. A drying mechanism is arranged on one side of the optical inspection stage, and heat sinks are fixedly installed on both sides of the housing. The air inlet is provided with a filter screen, the filter screen is provided with a cleaning mechanism, and a negative pressure dust suction assembly is provided on the cleaning mechanism.

作为本技术方案的进一步优选的:所述转轴位于壳体内部的部分上安装有行星齿轮,所述行星齿轮底端固定安装有驱动锥齿轮,所述壳体两侧壁上均转动安装有转动杆,两个所述转动杆一端均延伸至壳体内部并固定连接有从动锥齿轮,所述从动锥齿轮与驱动锥齿轮啮合连接,两个所述转动杆另一端延伸至壳体外部并固定连接有第一偏心轮。As a further preference of this technical solution: a planetary gear is installed on the part of the rotating shaft inside the casing, a drive bevel gear is fixedly installed at the bottom end of the planetary gear, and a rotating bevel gear is rotatably installed on both side walls of the casing One end of the two rotating rods extends to the inside of the casing and is fixedly connected with a driven bevel gear, the driven bevel gear is meshed with the driving bevel gear, and the other ends of the two rotating rods extend to the outside of the casing and fixedly connected with a first eccentric wheel.

作为本技术方案的进一步优选的:所述壳体两侧壁上均固定安装有活塞筒,所述活塞筒内部滑动安装有活塞板,所述活塞板上表面活动连接有活塞杆,所述活塞杆向上延伸并与第一偏心轮活动连接。As a further preference of this technical solution: a piston cylinder is fixedly installed on both side walls of the housing, a piston plate is slidably installed inside the piston cylinder, a piston rod is movably connected to the upper surface of the piston plate, and the piston The rod extends upward and is movably connected with the first eccentric.

作为本技术方案的进一步优选的:所述活塞筒下方设有横向集风管,所述横向集风管位于散热片下方并与壳体固定连接,所述活塞筒的输出端与横向集风管内部连通,所述横向集风管上端设有若干个排风口,若干个所述排风口均朝向相邻两个散热片之间。As a further preference of this technical solution: a transverse air collecting pipe is arranged under the piston cylinder, the transverse air collecting pipe is located under the radiating fins and is fixedly connected with the casing, and the output end of the piston cylinder is connected to the transverse air collecting pipe The interior is communicated, and the upper end of the horizontal air collecting pipe is provided with a plurality of air exhaust ports, and the plurality of the air exhaust ports are all facing between two adjacent radiating fins.

作为本技术方案的进一步优选的:所述清理机构包括转动安装在滤网中心部分的空心轴杆,所述空心轴杆上固定安装有空心清洁杆,所述空心清洁杆上设有清洁毛刷,所述清洁毛刷与滤网表面接触。As a further preference of this technical solution: the cleaning mechanism includes a hollow shaft rod rotatably installed on the central part of the filter screen, a hollow cleaning rod is fixedly installed on the hollow shaft rod, and a cleaning brush is arranged on the hollow cleaning rod , the cleaning brush is in contact with the surface of the filter screen.

作为本技术方案的进一步优选的:所述活塞板下表面活动安装有牵引杆,所述牵引杆一端延伸至活塞筒下方并位于滤网一侧,所述空心轴杆一端固定连接有第二偏心轮,所述牵引杆底端与第二偏心轮固定连接。As a further preference of this technical solution: a drawbar is movably installed on the lower surface of the piston plate, one end of the drawbar extends below the piston cylinder and is located on one side of the filter screen, and one end of the hollow shaft is fixedly connected with a second eccentric The bottom end of the drawbar is fixedly connected with the second eccentric wheel.

作为本技术方案的进一步优选的:所述负压吸尘组件包括负压管,所述负压管一端与活塞筒的输入端连接,所述负压管另一端与空心轴杆内部连通,所述空心轴杆与空心清洁杆内部连通。As a further preference of this technical solution: the negative pressure dust suction assembly includes a negative pressure pipe, one end of the negative pressure pipe is connected to the input end of the piston cylinder, and the other end of the negative pressure pipe is communicated with the interior of the hollow shaft, so The hollow shaft is in communication with the hollow cleaning rod.

作为本技术方案的进一步优选的:所述空心清洁杆一侧表面开设有若干个吸尘孔,若干个所述吸尘孔均匀排列分布在空心清洁杆上,且吸尘孔与清洁毛刷错位设置。As a further preference of this technical solution: a number of dust suction holes are opened on one side surface of the hollow cleaning rod, the dust suction holes are evenly arranged and distributed on the hollow cleaning rod, and the dust suction holes and the cleaning brush are dislocated set up.

作为本技术方案的进一步优选的:所述干燥机构包括若干个排风管,所述排风管一端与集风罩内部连通,所述排风管另一端延伸至光检台上方一侧,且排风管的出风口朝向光检台表面。As a further preference of this technical solution: the drying mechanism includes several exhaust pipes, one end of the exhaust pipes is communicated with the inside of the air collecting hood, and the other end of the exhaust pipes extends to the upper side of the optical inspection table, and The air outlet of the exhaust duct faces the surface of the optical inspection table.

一种实验室地质信息分析装置的使用方法,包括如下步骤:A method for using a laboratory geological information analysis device, comprising the following steps:

步骤1:装置主体工作时,利用驱动电机工作带动转轴转动,转轴转动的同时带动排风扇叶转动,将壳体内部的热量排出;Step 1: When the main body of the device is working, the drive motor is used to drive the rotating shaft to rotate, and the rotating shaft rotates at the same time to drive the exhaust fan blades to rotate to discharge the heat inside the casing;

步骤2:利用驱动锥齿轮啮合从动锥齿轮转动,进而可以使得转动杆转动并带动第一偏心轮转动,第一偏心轮对活塞杆进行推拉工作,将活塞筒内部的气流挤出并通过横向集风管上的若干个排风口吹向相邻两个散热片之间;Step 2: Use the driving bevel gear to mesh the driven bevel gear to rotate, so as to make the rotating rod rotate and drive the first eccentric to rotate. Several air outlets on the air collecting pipe blow between two adjacent heat sinks;

步骤3:活塞板上下移动并通过牵引杆带动第二偏心轮进行转动,第二偏心轮转动的同时带动空心轴杆同步转动,利用空心清洁杆跟随空心轴杆同步转动,并利用其上的清洁毛刷对滤网表面进行清理;Step 3: The piston plate moves up and down and drives the second eccentric wheel to rotate through the traction rod. When the second eccentric wheel rotates, it drives the hollow shaft to rotate synchronously. The hollow cleaning rod is used to follow the hollow shaft to rotate synchronously, and the cleaning on it is used. The brush cleans the surface of the filter screen;

步骤4:当活塞筒内产生负压时,可以通过负压管将对空心轴杆内部进行负压吸收,使得空心清洁杆内部产生负压,并通过空心清洁上的若干个吸尘孔对滤网被清理时产生的灰尘进行吸收;Step 4: When negative pressure is generated in the piston cylinder, the negative pressure inside the hollow shaft can be absorbed by the negative pressure tube, so that negative pressure is generated inside the hollow cleaning rod, and the filter is filtered through several dust suction holes on the hollow cleaning rod. The net is absorbed by the dust generated during cleaning;

步骤5:集风罩上连接的若干个排风管将热气流吹光检台表面,对光检台表面干燥。Step 5: Several exhaust pipes connected to the air collecting hood blow the hot air on the surface of the optical inspection table, and dry the surface of the optical inspection table.

本发明的有益效果是:The beneficial effects of the present invention are:

1、本发明通过设置活塞筒,并在活塞筒下方设有横向集风管,可以利用驱动电机工作的同时带动转轴转动,可以利用第一偏心轮对活塞杆进行推拉,从而可以将活塞筒内部的气体挤出并送入到横向集风管内部,然后通过若干排风口吹向散热片,可以加速散热片周围的气流流动,增加散热效果。1. In the present invention, by arranging a piston cylinder and a transverse air collecting pipe under the piston cylinder, the rotating shaft can be driven to rotate while the driving motor is working, and the first eccentric wheel can be used to push and pull the piston rod, so that the inner part of the piston cylinder can be pushed and pulled. The gas is extruded and fed into the horizontal air collecting pipe, and then blown to the heat sink through several air outlets, which can accelerate the airflow around the heat sink and increase the heat dissipation effect.

2、本发明通过设置清理机构,可以在活塞板上下移动的同时带动牵引杆同步移动,并利用牵引杆推动第二偏心轮转动,从而可以使得空心轴杆转动并带动空心清洁杆转动,利用空心清洁杆转动的同时对滤网进行清理,可以有效将附着在滤网上灰尘扫落,避免滤网被堵塞。2. In the present invention, by setting the cleaning mechanism, the piston plate can be moved up and down while driving the draw rod to move synchronously, and the draw rod can be used to push the second eccentric to rotate, so that the hollow shaft can be rotated and the hollow cleaning rod can be driven to rotate. When the cleaning rod rotates, the filter screen is cleaned, which can effectively sweep off the dust attached to the filter screen and prevent the filter screen from being blocked.

3、本发明通过设置负压吸尘组件,可以在活塞板上移时,使得活塞筒内部产生负压,从而可以利用负压管对空心轴杆内部进行负压吸收,进而可以使得空心清洁杆内部产生负压,并利用若干个吸尘孔对滤网清理过程中产生的灰尘进行吸收,避免清扫的灰尘二次附着在滤网上,提高对滤网的清理效果。3. In the present invention, by setting up a negative pressure dust collector, when the piston plate moves, negative pressure can be generated inside the piston cylinder, so that the negative pressure tube can be used to absorb the negative pressure inside the hollow shaft rod, and then the hollow cleaning rod can be Negative pressure is generated inside, and several dust suction holes are used to absorb the dust generated during the cleaning process of the filter screen, so as to prevent the cleaned dust from adhering to the filter screen twice, and improve the cleaning effect of the filter screen.

4、本发明通过设置干燥组件,可以利用排风扇叶将壳体内部的热气流排出并送入到集风罩内部,然后通过集风罩上连接的若干个排风管将热气流吹光检台表面,保证光检台表面干燥,避免因光检台表面残留的液体影响检测分析工作。4. In the present invention, by setting the drying assembly, the exhaust fan blades can be used to discharge the hot air inside the casing and send it into the air collecting hood, and then blow the hot air to the optical inspection stage through several exhaust pipes connected to the air collecting hood. Ensure that the surface of the optical inspection table is dry, and avoid the detection and analysis work affected by the residual liquid on the surface of the optical inspection table.

附图说明Description of drawings

图1为本发明的整体结构示意图;Fig. 1 is the overall structure schematic diagram of the present invention;

图2为本发明的剖面结构示意图;Fig. 2 is the cross-sectional structure schematic diagram of the present invention;

图3为本发明的侧视图示意图;3 is a schematic side view of the present invention;

图4为本发明的部分结构示意图;Fig. 4 is the partial structure schematic diagram of the present invention;

图5为本发明的图4中A部分结构放大图;Fig. 5 is an enlarged view of the structure of part A in Fig. 4 of the present invention;

图6为本发明的俯视图;Fig. 6 is the top view of the present invention;

附图标记:1、壳体;2、驱动电机;3、集风罩;4、排风管;5、活塞筒;6、活塞杆;7、散热片;8、第一偏心轮;9、第二偏心轮;10、牵引杆;11、导热硅胶垫;12、导热片;13、活塞板;14、转动杆;15、排风扇叶;16、转轴;17、行星齿轮;18、驱动锥齿轮;19、从动锥齿轮;20、滤网;21、负压管;22、空心清洁杆;23、吸尘孔;24、清洁毛刷;25、空心轴杆;26、光检台;27、横向集风管;28、排风口。Reference numerals: 1, housing; 2, drive motor; 3, air collecting cover; 4, exhaust pipe; 5, piston cylinder; 6, piston rod; 7, cooling fin; 8, first eccentric wheel; 9, The second eccentric wheel; 10, the traction rod; 11, the thermal conductive silicone pad; 12, the thermal conductive sheet; 13, the piston plate; 14, the rotating rod; 15, the exhaust fan blade; 16, the rotating shaft; 17, the planetary gear; ;19, driven bevel gear; 20, filter screen; 21, negative pressure pipe; 22, hollow cleaning rod; 23, suction hole; 24, cleaning brush; 25, hollow shaft; 26, optical inspection table; 27 , Horizontal air collecting pipe; 28. Air outlet.

具体实施方式Detailed ways

为了使本发明实现的技术手段、创作特征、达成目的与功效易于明白了解,下面结合具体实施例和附图,进一步阐述本发明,但下述实施例仅仅为本发明的优选实施例,并非全部。基于实施方式中的实施例,本领域技术人员在没有做出创造性劳动的前提下所获得其它实施例,都属于本发明的保护范围。In order to make the technical means, creative features, goals and effects realized by the present invention easy to understand, the present invention will be further described below with reference to specific embodiments and accompanying drawings, but the following embodiments are only preferred embodiments of the present invention, not all of them. . Based on the examples in the implementation manner, other examples obtained by those skilled in the art without creative work shall fall within the protection scope of the present invention.

下面结合附图描述本发明的具体实施例。Specific embodiments of the present invention will be described below with reference to the accompanying drawings.

实施例1Example 1

如图1、图2和图3所示,一种实验室地质信息分析装置,包括壳体1,所述壳体1内部设有装置主体,所述装置主体两侧均设有导热硅胶垫11,所述导热硅胶垫11通过若干个导热片12与壳体1连接,所述壳体1顶端设有集风罩3,所述集风罩3顶端设有驱动电机2,所述驱动电机2的输出轴固定连接有转轴16,所述转轴16贯穿集风罩3并延伸至壳体1内部,所述集风罩3内部设有排风扇叶15,所述排风扇叶15固定安装在转轴16上,所述壳体1后侧固定连接有光检台26,所述光检台26与装置主体电性连接,所述光检台26一侧设有干燥机构,所述壳体1两侧均固定安装有散热片7,所述散热片7下方设有圆形进风口,所述圆形进风口上设有滤网20,所述滤网20上设有清理机构,所述清理机构上设有负压吸尘组件;可以利用导热硅胶垫11将装置主体工作时产生的热量进行吸收,并通过导热片12传到至壳体1上,并利用若干个散热片7对壳体1上的热量吸附并散发,同时可以利用驱动电机2工作带动转轴16转动,转轴16转动的同时带动排风扇叶15转动,从而可以加速将壳体1内部的热气流排出,增加对壳体1的散热效果,同时外部的冷气流可以通过圆形进风口补入到壳体1内部,促进壳体1内部的气流流动,同时圆形进风口上设有的滤网20可以对进入的气流进行除尘过滤,减少灰尘进入到壳体1内部;As shown in FIGS. 1 , 2 and 3 , a laboratory geological information analysis device includes a casing 1 , a device main body is arranged inside the casing 1 , and thermally conductive silicone pads 11 are arranged on both sides of the device main body. , the thermally conductive silicone pad 11 is connected to the housing 1 through a plurality of thermally conductive sheets 12 , the top of the housing 1 is provided with a wind collecting cover 3 , the top of the wind collecting cover 3 is provided with a driving motor 2 , and the driving motor 2 The output shaft is fixedly connected with a rotating shaft 16, the rotating shaft 16 penetrates the collecting hood 3 and extends to the inside of the casing 1, the collecting hood 3 is provided with an exhaust fan blade 15, and the exhaust fan blade 15 is fixedly installed on the rotating shaft 16 , the rear side of the housing 1 is fixedly connected with an optical inspection stage 26, the optical inspection stage 26 is electrically connected to the main body of the device, a drying mechanism is provided on one side of the optical inspection stage 26, and both sides of the housing 1 are A cooling fin 7 is fixedly installed, and a circular air inlet is arranged below the cooling fin 7, and a filter screen 20 is arranged on the circular air inlet, and a cleaning mechanism is arranged on the filter screen 20, and a cleaning mechanism is arranged on the cleaning mechanism. There is a negative pressure vacuuming assembly; the heat generated by the main body of the device can be absorbed by the thermally conductive silicone pad 11, and transmitted to the casing 1 through the thermal conductive sheet 12, and several heat sinks 7 can be used to absorb the heat generated on the casing 1. The heat is absorbed and dissipated, and at the same time, the drive motor 2 can be used to drive the rotating shaft 16 to rotate. When the rotating shaft 16 rotates, it drives the exhaust fan blades 15 to rotate, so that the hot air inside the casing 1 can be discharged quickly, and the heat dissipation effect on the casing 1 can be increased. At the same time, the external cold air can be fed into the interior of the casing 1 through the circular air inlet to promote the airflow inside the casing 1. At the same time, the filter screen 20 provided on the circular air inlet can dust and filter the incoming air, reducing the Dust enters the inside of the housing 1;

所述转轴16位于壳体1内部的部分上安装有行星齿轮17,所述行星齿轮17底端固定安装有驱动锥齿轮18,所述壳体1两侧壁上均转动安装有转动杆14,两个所述转动杆14一端均延伸至壳体1内部并固定连接有从动锥齿轮19,所述从动锥齿轮19与驱动锥齿轮18啮合连接,两个所述转动杆14另一端延伸至壳体1外部并固定连接有第一偏心轮8;驱动电机2带动转轴16高速转动,行星齿轮17的设置,可以降低转速,并且可以使得驱动锥齿轮18匀速转动,并利用驱动锥齿轮18啮合从动锥齿轮19转动,进而可以使得转动杆14转动,两个转动杆14转动的同时带动第一偏心轮8转动;A planetary gear 17 is installed on the part of the rotating shaft 16 inside the casing 1 , a drive bevel gear 18 is fixedly installed at the bottom end of the planetary gear 17 , and a rotating rod 14 is rotatably installed on both side walls of the casing 1 . One end of the two rotating rods 14 extends into the casing 1 and is fixedly connected with a driven bevel gear 19, the driven bevel gear 19 is meshed with the driving bevel gear 18, and the other ends of the two rotating rods 14 extend The first eccentric wheel 8 is fixedly connected to the outside of the housing 1; the driving motor 2 drives the rotating shaft 16 to rotate at a high speed, and the setting of the planetary gear 17 can reduce the rotational speed, and can make the driving bevel gear 18 rotate at a constant speed, and use the driving bevel gear 18 The meshing driven bevel gear 19 rotates, thereby making the rotating rod 14 rotate, and the two rotating rods 14 rotate while driving the first eccentric wheel 8 to rotate;

所述壳体1两侧壁上均固定安装有活塞筒5,所述活塞筒5内部滑动安装有活塞板13,所述活塞板13上表面活动连接有活塞杆6,所述活塞杆6向上延伸并与第一偏心轮8活动连接;当第一偏心轮8转动时,可以利用对活塞杆6进行推拉工作,当第一偏心轮8推动活塞杆6下移时,活塞杆6推动活塞板13下移,从而可以将活塞筒5内部的气流挤出;A piston cylinder 5 is fixedly installed on both side walls of the housing 1, a piston plate 13 is slidably installed inside the piston cylinder 5, and a piston rod 6 is movably connected to the upper surface of the piston plate 13, and the piston rod 6 is upward. Extends and is movably connected with the first eccentric wheel 8; when the first eccentric wheel 8 rotates, the piston rod 6 can be pushed and pulled, and when the first eccentric wheel 8 pushes the piston rod 6 down, the piston rod 6 pushes the piston plate 13 Move down, so that the airflow inside the piston cylinder 5 can be squeezed out;

所述活塞筒5下方设有横向集风管27,所述横向集风管27位于散热片7下方并与壳体1固定连接,所述活塞筒5的输出端与横向集风管27内部连通,所述横向集风管27上端设有若干个排风口28,若干个所述排风口28均朝向相邻两个散热片7之间;可以将活塞筒5内部的气流排出至横向集风管内部,然后通过横向集风管上的若干个排风口28排出并吹向相邻两个散热片7之间,加速散热片7周边的气流流动,从而可以增加散热效果;A transverse air collecting pipe 27 is arranged below the piston cylinder 5 , the transverse air collecting pipe 27 is located under the radiating fins 7 and is fixedly connected with the casing 1 , and the output end of the piston cylinder 5 is communicated with the interior of the transverse air collecting pipe 27 , the upper end of the lateral air collecting pipe 27 is provided with a number of exhaust ports 28, and several of the exhaust ports 28 are all facing between two adjacent fins 7; the airflow inside the piston cylinder 5 can be discharged to the lateral collector The inside of the air duct is then discharged through several air outlets 28 on the horizontal air collecting duct and blown between two adjacent radiating fins 7 to accelerate the airflow around the radiating fins 7, thereby increasing the heat dissipation effect;

工作时,可以利用导热硅胶垫11将装置主体工作时产生的热量进行吸收,并通过导热片12传到至壳体1上,并利用若干个散热片7对壳体1上的热量吸附并散发,同时可以利用驱动电机2工作带动转轴16转动,转轴16转动的同时带动排风扇叶15转动,从而可以加速将壳体1内部的热气流排出,增加对壳体1的散热效果,同时外部的冷气流可以通过圆形进风口补入到壳体1内部,促进壳体1内部的气流流动,同时圆形进风口上设有的滤网20可以对进入的气流进行除尘过滤,减少灰尘进入到壳体1内部;When working, the heat generated by the main body of the device can be absorbed by the thermally conductive silicone pad 11, and transmitted to the casing 1 through the thermal conductive sheet 12, and the heat on the casing 1 can be absorbed and dissipated by several heat sinks 7. At the same time, the drive motor 2 can be used to drive the rotating shaft 16 to rotate. When the rotating shaft 16 rotates, it drives the exhaust fan blades 15 to rotate, so as to accelerate the discharge of the hot air inside the casing 1 and increase the heat dissipation effect on the casing 1. At the same time, the external cooling The air flow can be supplemented into the casing 1 through the circular air inlet to promote the airflow inside the casing 1. At the same time, the filter screen 20 provided on the circular air inlet can filter the incoming air to reduce dust entering the casing. Inside body 1;

驱动电机2带动转轴16高速转动,行星齿轮17的设置,可以降低转速,并且可以使得驱动锥齿轮18匀速转动,并利用驱动锥齿轮18啮合从动锥齿轮19转动,进而可以使得转动杆14转动,两个转动杆14转动的同时带动第一偏心轮8转动;当第一偏心轮8转动时,可以利用对活塞杆6进行推拉工作,当第一偏心轮8推动活塞杆6下移时,活塞杆6推动活塞板13下移,从而可以将活塞筒5内部的气流挤出;活塞筒5内部的气流排出至横向集风管27内部,然后通过横向集风管上的若干个排风口28排出并吹向相邻两个散热片7之间,加速散热片7周边的气流流动,从而可以增加散热效果。The drive motor 2 drives the rotating shaft 16 to rotate at a high speed, and the setting of the planetary gear 17 can reduce the rotational speed, and can make the driving bevel gear 18 rotate at a constant speed, and use the driving bevel gear 18 to mesh with the driven bevel gear 19 to rotate, thereby making the rotating rod 14 rotate. , the two rotating rods 14 rotate while driving the first eccentric wheel 8 to rotate; when the first eccentric wheel 8 rotates, the piston rod 6 can be pushed and pulled. When the first eccentric wheel 8 pushes the piston rod 6 to move down, The piston rod 6 pushes the piston plate 13 down, so that the airflow inside the piston cylinder 5 can be squeezed out; the airflow inside the piston cylinder 5 is discharged to the interior of the lateral air collecting pipe 27, and then passes through several exhaust ports on the lateral air collecting pipe 28 is discharged and blown between two adjacent radiating fins 7 to accelerate the airflow around the radiating fins 7, thereby increasing the heat dissipation effect.

实施例2Example 2

如图3、图4和图5所示,在其它部分均与实施例1相同的情况下,本实施例与实施例1的区别在于:所述清理机构包括转动安装在滤网20中心部分的空心轴杆25,所述空心轴杆25上固定安装有空心清洁杆22,所述空心清洁杆22上设有清洁毛刷24,所述清洁毛刷24与滤网20表面接触;所述活塞板13下表面活动安装有牵引杆10,所述牵引杆10一端延伸至活塞筒5下方并位于滤网20一侧,所述空心轴杆25一端固定连接有第二偏心轮9,所述牵引杆10底端与第二偏心轮9固定连接;As shown in Figure 3, Figure 4 and Figure 5, under the condition that other parts are the same as in Embodiment 1, the difference between this embodiment and Embodiment 1 is that the cleaning mechanism includes a rotatable installation on the central part of the filter screen 20. A hollow shaft 25, a hollow cleaning rod 22 is fixedly installed on the hollow shaft 25, and a cleaning brush 24 is arranged on the hollow cleaning rod 22, and the cleaning brush 24 is in contact with the surface of the filter screen 20; the piston A traction rod 10 is movably installed on the lower surface of the plate 13. One end of the traction rod 10 extends below the piston cylinder 5 and is located on the side of the filter screen 20. One end of the hollow shaft rod 25 is fixedly connected with a second eccentric wheel 9. The bottom end of the rod 10 is fixedly connected with the second eccentric wheel 9;

工作时,当活塞板13上下移动的同时,可以通过牵引杆10带动第二偏心轮9进行转动,且第二偏心轮9转动的同时带动空心轴杆25同步转动,空心轴杆25转动时带动空心清洁杆22同步转动,从而可以利用空心清洁杆22上的清洁毛刷24对滤网20表面进行清理,有效将滤网20上粘附的灰尘扫落,避免滤网20被灰尘堵塞。During operation, when the piston plate 13 moves up and down, it can drive the second eccentric wheel 9 to rotate through the traction rod 10, and the second eccentric wheel 9 rotates while driving the hollow shaft 25 to rotate synchronously. The hollow cleaning rod 22 rotates synchronously, so that the cleaning brush 24 on the hollow cleaning rod 22 can be used to clean the surface of the filter screen 20, effectively sweeping off the dust adhering to the filter screen 20 and preventing the filter screen 20 from being blocked by dust.

实施例3Example 3

如图4和图5所示,在其它部分均与实施例1相同的情况下,本实施例与实施例1的区别在于:所述负压吸尘组件包括负压管21,所述负压管21一端与活塞筒5的输入端连接,所述负压管21另一端与空心轴杆25内部连通,所述空心轴杆25与空心清洁杆22内部连通;所述空心清洁杆22一侧表面开设有若干个吸尘孔23,若干个所述吸尘孔23均匀排列分布在空心清洁杆22上,且吸尘孔23与清洁毛刷24错位设置;As shown in FIG. 4 and FIG. 5 , under the condition that other parts are the same as those of Embodiment 1, the difference between this embodiment and Embodiment 1 is that the negative pressure dust collecting assembly includes a negative pressure pipe 21 , and the negative pressure One end of the pipe 21 is connected to the input end of the piston cylinder 5, the other end of the negative pressure pipe 21 is communicated with the hollow shaft 25, and the hollow shaft 25 is communicated with the hollow cleaning rod 22; one side of the hollow cleaning rod 22 A number of dust suction holes 23 are opened on the surface, and the plurality of dust suction holes 23 are evenly arranged and distributed on the hollow cleaning rod 22, and the dust suction holes 23 and the cleaning brush 24 are arranged in dislocation;

工作时,当活塞板13被拉动上移时,活塞筒5内会产生负压,此时可以通过负压管21将对空心轴杆25内部进行负压吸收,由于空心清洁杆22与空心轴杆25内部连通,从而可以使得空心清洁杆22内部产生负压,并通过空心清洁上的若干个吸尘孔23对滤网20被清理时产生的灰尘进行吸收,可以在利用毛刷对滤网20清理的同时,进行负压吸尘,避免清扫的灰尘二次附着在滤网20上,提高对滤网20的清理效果。During operation, when the piston plate 13 is pulled up, a negative pressure will be generated in the piston cylinder 5. At this time, the negative pressure inside the hollow shaft rod 25 can be absorbed by the negative pressure pipe 21. Since the hollow cleaning rod 22 and the hollow shaft The interior of the rod 25 is communicated, so that a negative pressure can be generated inside the hollow cleaning rod 22, and the dust generated when the filter screen 20 is cleaned can be absorbed through a number of dust suction holes 23 on the hollow cleaning rod, and the filter screen can be cleaned with a brush. At the same time as cleaning 20 , negative pressure vacuuming is performed to prevent the cleaned dust from adhering to the filter screen 20 for a second time, so as to improve the cleaning effect of the filter screen 20 .

实施例4Example 4

如图6所示,在其它部分均与实施例1相同的情况下,本实施例与实施例1的区别在于:所述干燥机构包括若干个排风管4,所述排风管4一端与集风罩3内部连通,所述排风管4另一端延伸至光检台26上方一侧,且排风管4的出风口朝向光检台26表面;As shown in FIG. 6 , under the condition that other parts are the same as those of Embodiment 1, the difference between this embodiment and Embodiment 1 is that the drying mechanism includes several exhaust pipes 4 , and one end of the exhaust pipes 4 is The air collecting hood 3 is connected internally, the other end of the air exhaust pipe 4 extends to the upper side of the optical inspection table 26, and the air outlet of the air exhaust pipe 4 faces the surface of the optical inspection table 26;

工作时,可以利用排风扇叶15将壳体1内部的热气流排出并送入到集风罩3内部,然后通过集风罩3上连接的若干个排风管4将热气流吹光检台26表面,保证光检台26表面干燥,避免因光检台26表面残留的液体影响检测分析工作。During operation, the hot air flow inside the casing 1 can be discharged and sent into the air collecting hood 3 by the exhaust fan blades 15, and then the hot air can be blown on the optical inspection stage 26 through the several exhaust pipes 4 connected to the air collecting hood 3. The surface of the optical inspection table 26 is guaranteed to be dry, so as to avoid the influence of the detection and analysis work due to the residual liquid on the surface of the optical inspection table 26 .

实施例5Example 5

一种实验室地质信息分析装置的使用方法,包括如下步骤:A method for using a laboratory geological information analysis device, comprising the following steps:

步骤1:装置主体工作时,利用驱动电机2工作带动转轴16转动,转轴16转动的同时带动排风扇叶15转动,将壳体1内部的热量排出;Step 1: When the main body of the device is working, the drive motor 2 is used to drive the rotating shaft 16 to rotate, and the rotating shaft 16 rotates while driving the exhaust fan blades 15 to rotate, so as to discharge the heat inside the casing 1;

步骤2:利用驱动锥齿轮18啮合从动锥齿轮19转动,进而可以使得转动杆14转动并带动第一偏心轮8转动,第一偏心轮8对活塞杆6进行推拉工作,从而可以将活塞筒5内部的气流挤出并通过横向集风管27上的若干个排风口28吹向相邻两个散热片7之间;Step 2: Use the driving bevel gear 18 to mesh the driven bevel gear 19 to rotate, so that the rotating rod 14 can rotate and drive the first eccentric wheel 8 to rotate. The first eccentric wheel 8 pushes and pulls the piston rod 6, so that the piston cylinder can be rotated 5. The internal air flow is extruded and blown between two adjacent radiating fins 7 through several air exhaust ports 28 on the transverse air collecting pipe 27;

步骤3:活塞板13上下移动并通过牵引杆10带动第二偏心轮9进行转动,第二偏心轮9转动的同时带动空心轴杆25同步转动,从而可以利用空心清洁杆22跟随空心轴杆25同步转动,并利用其上的清洁毛刷24对滤网20表面进行清理;Step 3: The piston plate 13 moves up and down and drives the second eccentric wheel 9 to rotate through the draw rod 10. When the second eccentric wheel 9 rotates, it drives the hollow shaft 25 to rotate synchronously, so that the hollow cleaning rod 22 can be used to follow the hollow shaft 25. Rotate synchronously, and use the cleaning brush 24 on it to clean the surface of the filter screen 20;

步骤4:当活塞筒5内产生负压时,可以通过负压管21将对空心轴杆25内部进行负压吸收,从而可以使得空心清洁杆22内部产生负压,并通过空心清洁上的若干个吸尘孔23对滤网20被清理时产生的灰尘进行吸收;Step 4: When a negative pressure is generated in the piston cylinder 5, the negative pressure can be absorbed inside the hollow shaft 25 through the negative pressure pipe 21, so that a negative pressure can be generated inside the hollow cleaning rod 22, and through several The dust suction holes 23 absorb the dust generated when the filter screen 20 is cleaned;

步骤5:集风罩3上连接的若干个排风管4将热气流吹光检台26表面,对光检台26表面干燥。Step 5: Several exhaust pipes 4 connected to the air collecting hood 3 blow the hot air on the surface of the optical inspection stage 26 to dry the surface of the optical inspection stage 26 .

工作原理:工作时,可以将盛放液体的比色杯放置在光检台26上,进行检测分析工作,装置主体工作的同时会产生一定的热量,可以利用导热硅胶垫11将装置主体工作时产生的热量进行吸收,并通过导热片12传到至壳体1上,并利用若干个散热片7对壳体1上的热量吸附并散发,同时可以利用驱动电机2工作带动转轴16转动,转轴16转动的同时带动排风扇叶15转动,从而可以加速将壳体1内部的热气流排出,增加对壳体1的散热效果,同时外部的冷气流可以通过圆形进风口补入到壳体1内部,促进壳体1内部的气流流动,同时圆形进风口上设有的滤网20可以对进入的气流进行除尘过滤,减少灰尘进入到壳体1内部;Working principle: When working, the cuvette containing the liquid can be placed on the optical inspection table 26 for detection and analysis. The main body of the device will generate a certain amount of heat when it is working. The heat generated is absorbed, and transmitted to the casing 1 through the heat-conducting sheet 12, and the heat on the casing 1 is absorbed and dissipated by several heat sinks 7. At the same time, the driving motor 2 can be used to drive the rotating shaft 16 to rotate. When 16 rotates, it drives the exhaust fan blades 15 to rotate, so that the hot air inside the casing 1 can be discharged quickly, and the heat dissipation effect on the casing 1 can be increased. , to promote the airflow inside the housing 1, and the filter screen 20 provided on the circular air inlet can filter the incoming airflow to reduce dust from entering the interior of the housing 1;

驱动电机2带动转轴16高速转动,行星齿轮17的设置,可以降低转速,并且可以使得驱动锥齿轮18匀速转动,并利用驱动锥齿轮18啮合从动锥齿轮19转动,进而可以使得转动杆14转动,两个转动杆14转动的同时带动第一偏心轮8转动;The drive motor 2 drives the rotating shaft 16 to rotate at a high speed, and the setting of the planetary gear 17 can reduce the rotational speed, and can make the driving bevel gear 18 rotate at a constant speed, and use the driving bevel gear 18 to mesh with the driven bevel gear 19 to rotate, thereby making the rotating rod 14 rotate. , the two rotating rods 14 rotate while driving the first eccentric wheel 8 to rotate;

当第一偏心轮8转动时,可以利用对活塞杆6进行推拉工作,当第一偏心轮8推动活塞杆6下移时,活塞杆6推动活塞板13下移,从而可以将活塞筒5内部的气流挤出;活塞筒5内部的气流排出至横向集风管内部,然后通过横向集风管上的若干个排风口28排出并吹向相邻两个散热片7之间,加速散热片7周边的气流流动,从而可以增加散热效果;When the first eccentric wheel 8 rotates, the piston rod 6 can be pushed and pulled. When the first eccentric wheel 8 pushes the piston rod 6 down, the piston rod 6 pushes the piston plate 13 down, so that the inside of the piston cylinder 5 can be pushed down. The air flow is extruded; the air flow inside the piston cylinder 5 is discharged to the interior of the horizontal air collecting pipe, and then discharged through several air outlets 28 on the horizontal air collecting pipe and blown between two adjacent radiating fins 7, accelerating the cooling fins 7 The airflow around the periphery can increase the heat dissipation effect;

当活塞板13上下移动的同时,可以通过牵引杆10带动第二偏心轮9进行转动,且第二偏心轮9转动的同时带动空心轴杆25同步转动,空心轴杆25转动时带动空心清洁杆22同步转动,从而可以利用空心清洁杆22上的清洁毛刷24对滤网20表面进行清理,有效将滤网20上粘附的灰尘扫落,避免滤网20被灰尘堵塞;When the piston plate 13 moves up and down, it can drive the second eccentric wheel 9 to rotate through the traction rod 10, and the second eccentric wheel 9 rotates while driving the hollow shaft 25 to rotate synchronously, and the hollow shaft 25 drives the hollow cleaning rod when it rotates. 22 rotates synchronously, so that the cleaning brush 24 on the hollow cleaning rod 22 can be used to clean the surface of the filter screen 20, effectively sweeping off the dust adhering to the filter screen 20, and preventing the filter screen 20 from being blocked by dust;

当活塞板13被拉动上移时,活塞筒5内会产生负压,此时可以通过负压管21将对空心轴杆25内部进行负压吸收,由于空心清洁杆22与空心轴杆25内部连通,从而可以使得空心清洁杆22内部产生负压,并通过空心清洁上的若干个吸尘孔23对滤网20被清理时产生的灰尘进行吸收,可以在利用毛刷对滤网20清理的同时,进行负压吸尘,避免清扫的灰尘二次附着在滤网20上,提高对滤网20的清理效果;When the piston plate 13 is pulled up, a negative pressure will be generated in the piston cylinder 5. At this time, the negative pressure inside the hollow shaft 25 can be absorbed by the negative pressure pipe 21. Since the hollow cleaning rod 22 and the hollow shaft 25 Connected, so that negative pressure can be generated inside the hollow cleaning rod 22, and the dust generated when the filter screen 20 is cleaned can be absorbed through the several dust suction holes 23 on the hollow cleaning rod, and the filter screen 20 can be cleaned with a brush. At the same time, negative pressure vacuuming is performed to prevent the cleaned dust from adhering to the filter screen 20 for a second time, so as to improve the cleaning effect of the filter screen 20;

排风扇叶15将壳体1内部的热气流排出并送入到集风罩3内部,然后通过集风罩3上连接的若干个排风管4将热气流吹光检台26表面,保证光检台26表面干燥,避免因光检台26表面残留的液体影响检测分析工作。The exhaust fan blades 15 discharge the hot air inside the casing 1 and send it into the air collecting hood 3, and then blow the hot air on the surface of the optical inspection stage 26 through the several exhaust pipes 4 connected to the air collecting hood 3 to ensure the optical detection. The surface of the stage 26 is dry, so as to avoid the detection and analysis work being affected by the liquid remaining on the surface of the optical inspection stage 26 .

以上显示和描述了本发明的基本原理、主要特征和本发明的优点。本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的仅为本发明的优选例,并不用来限制本发明,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其等效物界定。The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above-mentioned embodiments, and the above-mentioned embodiments and descriptions are only preferred examples of the present invention, and are not intended to limit the present invention, without departing from the spirit and scope of the present invention. Under the premise, the present invention will also have various changes and improvements, and these changes and improvements all fall within the scope of the claimed invention. The claimed scope of the present invention is defined by the appended claims and their equivalents.

Claims (10)

1. The utility model provides a laboratory geological information analytical equipment, includes casing (1), casing (1) inside is equipped with the device main part, its characterized in that: device main part both sides all are equipped with heat conduction silica gel pad (11), heat conduction silica gel pad (11) are connected with casing (1) through a plurality of conducting strip (12), casing (1) top is equipped with air-collecting cover (3), air-collecting cover (3) top is equipped with driving motor (2), driving motor (2)'s output shaft fixedly connected with pivot (16), pivot (16) run through air-collecting cover (3) and extend to inside casing (1), inside exhaust fan leaf (15) of being equipped with of air-collecting cover (3), exhaust fan leaf (15) fixed mounting is on pivot (16), casing (1) rear side fixedly connected with optical inspection platform (26), optical inspection platform (26) and device main part electric connection, optical inspection platform (26) one side is equipped with dry mechanism, the equal fixed mounting in casing (1) both sides has fin (7), fin (7) below is equipped with circular air intake, be equipped with filter screen (20) on the circular air intake, be equipped with clearance mechanism on filter screen (20), be equipped with negative pressure dust absorption component on the clearance mechanism.
2. The laboratory geological information analysis device according to claim 1, wherein: install planetary gear (17) on the part that pivot (16) are located casing (1) inside, planetary gear (17) bottom fixed mounting has drive bevel gear (18), all rotate on casing (1) both sides wall and install dwang (14), two dwang (14) one end all extends to casing (1) inside and fixedly connected with driven bevel gear (19), driven bevel gear (19) are connected with drive bevel gear (18) meshing, two dwang (14) other end extends to casing (1) outside and the first eccentric wheel of fixedly connected with (8).
3. The laboratory geological information analysis device according to claim 1, wherein: equal fixed mounting has piston cylinder (5) on casing (1) both sides wall, piston cylinder (5) inside slidable mounting has piston board (13), surface swing joint has piston rod (6) on piston board (13), piston rod (6) upwards extend and with first eccentric wheel (8) swing joint.
4. The laboratory geological information analysis device according to claim 3, characterized in that: piston cylinder (5) below is equipped with horizontal collection tuber pipe (27), horizontal collection tuber pipe (27) be located fin (7) below and with casing (1) fixed connection, the output and the inside intercommunication of horizontal collection tuber pipe (27) of piston cylinder (5), horizontal collection tuber pipe (27) upper end is equipped with a plurality of air exit (28), a plurality of air exit (28) all are towards between two adjacent fin (7).
5. The laboratory geological information analysis device according to claim 3, characterized in that: clearance mechanism is including rotating hollow axostylus axostyle (25) of installing at filter screen (20) central part, fixed mounting has hollow cleaning rod (22) on hollow axostylus axostyle (25), be equipped with on hollow cleaning rod (22) cleaning brush (24), cleaning brush (24) and filter screen (20) surface contact.
6. The laboratory geological information analysis device according to claim 5, characterized in that: the lower surface of the piston plate (13) is movably provided with a draw bar (10), one end of the draw bar (10) extends to the lower part of the piston cylinder (5) and is positioned on one side of the filter screen (20), one end of the hollow shaft lever (25) is fixedly connected with a second eccentric wheel (9), and the bottom end of the draw bar (10) is fixedly connected with the second eccentric wheel (9).
7. The laboratory geological information analysis device according to claim 6, characterized in that: the negative pressure dust collection assembly comprises a negative pressure pipe (21), one end of the negative pressure pipe (21) is connected with the input end of the piston cylinder (5), the other end of the negative pressure pipe (21) is communicated with the inside of the hollow shaft lever (25), and the hollow shaft lever (25) is communicated with the inside of the hollow cleaning rod (22).
8. The laboratory geological information analysis device according to claim 7, wherein: a plurality of dust suction holes (23) are formed in the surface of one side of the hollow cleaning rod (22), the dust suction holes (23) are uniformly distributed on the hollow cleaning rod (22), and the dust suction holes (23) and the cleaning brushes (24) are arranged in a staggered mode.
9. The laboratory geological information analysis device according to claim 1, characterized in that: drying mechanism includes a plurality of exhaust pipe (4), exhaust pipe (4) one end and the inside intercommunication of air-collecting cover (3), exhaust pipe (4) other end extends to light and examines platform (26) top one side, and the air outlet of exhaust pipe (4) examines platform (26) surface towards light.
10. A method for using the laboratory geological information analysis device according to any of claims 1-9, characterized by comprising the following steps:
step 1: when the device main body works, the driving motor (2) is used for working to drive the rotating shaft (16) to rotate, the rotating shaft (16) drives the exhaust fan blade (15) to rotate at the same time of rotating, and heat in the shell (1) is exhausted;
and 2, step: the driving bevel gear (18) is meshed with the driven bevel gear (19) to rotate, so that the rotating rod (14) can rotate and drive the first eccentric wheel (8) to rotate, the first eccentric wheel (8) pushes and pulls the piston rod (6), airflow in the piston cylinder (5) is extruded out and blown to the space between two adjacent cooling fins (7) through a plurality of air outlets (28) in the transverse air collecting pipe (27);
and step 3: the piston plate (13) moves up and down and drives the second eccentric wheel (9) to rotate through the traction rod (10), the second eccentric wheel (9) drives the hollow shaft rod (25) to synchronously rotate while rotating, the hollow cleaning rod (22) is used for synchronously rotating along with the hollow shaft rod (25), and the cleaning brush (24) on the hollow cleaning rod is used for cleaning the surface of the filter screen (20);
and 4, step 4: when negative pressure is generated in the piston cylinder (5), negative pressure absorption can be carried out on the interior of the hollow shaft rod (25) through the negative pressure pipe (21), so that negative pressure is generated in the interior of the hollow cleaning rod (22), and dust generated when the filter screen (20) is cleaned is absorbed through a plurality of dust absorption holes (23) in the hollow cleaning rod;
and 5: the air exhaust pipes (4) connected with the air collecting cover (3) blow hot air to the surface of the optical detection table (26) and dry the surface of the optical detection table (26).
CN202210789597.7A 2022-07-06 2022-07-06 Laboratory geological information analysis device and use method thereof Withdrawn CN115165741A (en)

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Application Number Priority Date Filing Date Title
CN202210789597.7A CN115165741A (en) 2022-07-06 2022-07-06 Laboratory geological information analysis device and use method thereof

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Application Number Priority Date Filing Date Title
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116335776A (en) * 2023-01-30 2023-06-27 南通常安能源有限公司 Recycling device for cogeneration and permeation separation wastewater
CN117492537A (en) * 2023-12-27 2024-02-02 北京伟思创科技股份有限公司 Super integration all-in-one

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116335776A (en) * 2023-01-30 2023-06-27 南通常安能源有限公司 Recycling device for cogeneration and permeation separation wastewater
CN116335776B (en) * 2023-01-30 2023-10-20 南通常安能源有限公司 Recycling device for cogeneration and permeation separation wastewater
CN117492537A (en) * 2023-12-27 2024-02-02 北京伟思创科技股份有限公司 Super integration all-in-one

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Application publication date: 20221011