CN207832756U - Self-cleaning liquid on-line detection container - Google Patents
Self-cleaning liquid on-line detection container Download PDFInfo
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- CN207832756U CN207832756U CN201721551677.XU CN201721551677U CN207832756U CN 207832756 U CN207832756 U CN 207832756U CN 201721551677 U CN201721551677 U CN 201721551677U CN 207832756 U CN207832756 U CN 207832756U
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Abstract
Description
技术领域technical field
本实用新型涉及在线检测仪器清洁技术领域,具体地说,是一种自清洁式液体在线检测容器。The utility model relates to the technical field of on-line detection instrument cleaning, in particular to a self-cleaning liquid on-line detection container.
背景技术Background technique
现在各生产企业中对各种在线分析过程中,只是将分析仪探头密闭安装在特定的检测筒里或着专门的取样容器中。分析仪探头和检测筒在之后就会结垢,因此会影响到分析仪的测量精度,这就需要及时对探头进行清洗。Now in various on-line analysis processes in various production enterprises, only the analyzer probe is sealed and installed in a specific detection cylinder or a special sampling container. The analyzer probe and detection cylinder will foul later, which will affect the measurement accuracy of the analyzer, which requires timely cleaning of the probe.
现有技术中,当使用一段时间后需要对检测筒进行清洗时,需要专业的技术人员进行拆卸、清洁和安装,过程复杂,且容易造成分析仪探头损坏,安装不恰当,还容易出现泄漏等事故。危险系数高,清洁过程复杂,技术人员工作量大。In the prior art, when the detection cylinder needs to be cleaned after a period of use, professional technicians are required to disassemble, clean and install, the process is complicated, and it is easy to cause damage to the analyzer probe, improper installation, and easy leakage, etc. ACCIDENT. The risk factor is high, the cleaning process is complicated, and the workload of technicians is heavy.
实用新型内容Utility model content
为了解决上述问题,本实用新型提出一种自清洁式液体在线检测容器,无需拆卸,实现自动清洁,无需人为操作,即可完成清洁。更加可靠和安全。In order to solve the above problems, the utility model proposes a self-cleaning liquid on-line detection container, which can realize automatic cleaning without disassembly, and can complete cleaning without manual operation. More reliable and safe.
为达到上述目的,本实用新型采用的具体技术方案如下:In order to achieve the above object, the concrete technical scheme that the utility model adopts is as follows:
一种自清洁式液体在线检测容器,包括检测筒,在该检测筒内连接有样液输入管和样液输出管,在所述检测筒内安装有分析仪探头,其关键在于:在所述检测筒还与清洗管连通,该清洗管的入水端与清洗液槽连接,在所述清洗管上设置有清洗控制阀门;在所述检测筒顶部还设置有清洗搅拌电机,该清洗搅拌电机的输出轴伸入所述检测筒的筒腔内,在清洗搅拌电机的输出轴上连接有至少一个搅拌耙。A self-cleaning liquid on-line detection container, including a detection cylinder, a sample liquid input pipe and a sample liquid output pipe are connected in the detection cylinder, and an analyzer probe is installed in the detection cylinder. The key lies in: The detection cylinder is also communicated with the cleaning pipe, the water inlet end of the cleaning pipe is connected with the cleaning liquid tank, and a cleaning control valve is arranged on the cleaning pipe; a cleaning stirring motor is also arranged on the top of the detection cylinder, and the cleaning stirring motor The output shaft extends into the cavity of the detection cylinder, and at least one stirring rake is connected to the output shaft of the cleaning stirring motor.
通过上述设计,采用清洗管与检测筒连通,无需对检测筒进行拆卸,就可将清水输送到检测筒内,并且结合搅拌电机,采用多个搅拌耙对清水进行搅拌,提高清洁效果和效率,可靠型好,安全系数高,操作简单方便。Through the above design, the cleaning pipe is connected with the detection cylinder, and the clean water can be transported into the detection cylinder without disassembling the detection cylinder. Combined with the stirring motor, multiple stirring rakes are used to stir the clean water to improve the cleaning effect and efficiency. Good reliability, high safety factor, simple and convenient operation.
进一步的,在所述检测筒筒壁上设置有观察视镜,该观察视镜采用透明材料制作。Further, an observation mirror is arranged on the wall of the detection cylinder, and the observation mirror is made of transparent material.
通过观察视镜,可在检测筒对清洁度进行观察,合理调节搅拌时间,或者进行清水更换等。Through the observation mirror, the cleanliness can be observed in the detection cylinder, the stirring time can be adjusted reasonably, or the clean water can be replaced.
再进一步描述,所述观察视镜纵向设置,沿所述观察视镜设置方向刻有刻度线。To further describe, the observation mirror is arranged longitudinally, and a scale line is engraved along the installation direction of the observation mirror.
通过刻度线,可以对清水输入量进行观察和控制,可根据不同的清洁情况合理控制水的使用量。节约用水,便于观察。Through the scale line, the amount of clean water input can be observed and controlled, and the amount of water used can be reasonably controlled according to different cleaning situations. Save water, easy to observe.
再进一步描述,在该检测筒底部连接有排污管,在该排污管上设置有排污控制阀门。To further describe, a sewage discharge pipe is connected to the bottom of the detection cylinder, and a sewage discharge control valve is arranged on the sewage discharge pipe.
当清洁完毕后,污水通过排污管排出。After cleaning, the sewage is discharged through the sewage pipe.
再进一步描述,在所述检测筒内还连接有清洗剂管,该清洗剂管上设置有清洗剂控制阀门,在所述检测筒和所述清洗剂控制阀门之间的清洗剂管上设置有流量计。To further describe, a cleaning agent pipe is also connected in the detection cylinder, a cleaning agent control valve is arranged on the cleaning agent pipe, and a cleaning agent pipe between the detection cylinder and the cleaning agent control valve is provided with flow meter.
为了增强清洁效果,适当适量的添加清洗剂,可使清洁过程更加高效,清洁效果更加完美。In order to enhance the cleaning effect, proper amount of cleaning agent can be added to make the cleaning process more efficient and the cleaning effect more perfect.
再进一步描述,所述搅拌耙的制作材料为柔性材料。To describe further, the stirring rake is made of flexible material.
为了避免或者降低搅拌耙在搅拌过程中,对分析仪探头和检测筒造成损伤,搅拌耙采用柔性材料,并且柔性材料对分析仪探头和检测筒具有摩擦过程,增强清洁效果。In order to avoid or reduce the damage caused by the stirring rake to the analyzer probe and detection cylinder during the stirring process, the stirring rake is made of flexible materials, and the flexible material has a friction process on the analyzer probe and detection cylinder to enhance the cleaning effect.
再进一步描述,所述输出轴为伸缩输出轴,该输出轴能沿轴向延长或者缩短,所述输出轴延长的最大长度值小于所述检测筒的筒高值。To further describe, the output shaft is a telescopic output shaft, which can be extended or shortened in the axial direction, and the maximum length of the output shaft is less than the height of the detection cylinder.
采用伸缩结构,使搅拌耙能上下移动,实现对检测筒内壁由上之下进行清洁,清洁更加全面。The telescopic structure enables the stirring rake to move up and down, so that the inner wall of the detection cylinder can be cleaned from top to bottom, and the cleaning is more comprehensive.
本实用新型的有益效果:无需对检测筒进行拆卸,就可将清水输送到检测筒内,并且结合搅拌电机,采用多个搅拌耙上下伸缩对检测筒内壁和分析仪探头进行搅拌,并将清洁剂和清水进行清洁,提高清洁效果和效率,可靠性好,安全系数高,操作简单方便。Beneficial effects of the utility model: clean water can be transported into the detection cylinder without disassembling the detection cylinder, and in combination with the stirring motor, a plurality of stirring rakes are used to stretch up and down to stir the inner wall of the detection cylinder and the probe of the analyzer, and clean the Cleaning agent and clean water can improve the cleaning effect and efficiency, good reliability, high safety factor, and simple and convenient operation.
附图说明Description of drawings
图1是本实用新型的结构示意图;Fig. 1 is a structural representation of the utility model;
具体实施方式Detailed ways
下面结合附图对本实用新型的具体实施方式以及工作原理作进一步详细说明。The specific embodiment and working principle of the present utility model will be described in further detail below in conjunction with the accompanying drawings.
从图1可以看出,一种自清洁式液体在线检测容器,包括检测筒1,在该检测筒1内连接有样液输入管2和样液输出管3,在所述检测筒1内安装有分析仪探头4,在所述检测筒1还与清洗管5连通,该清洗管5的入水端与清洗液槽6连接,在所述清洗管5上设置有清洗控制阀门7;在所述检测筒1顶部还设置有清洗搅拌电机8,该清洗搅拌电机8的输出轴伸入所述检测筒1的筒腔内,在清洗搅拌电机8的输出轴8a上连接有2个搅拌耙9。As can be seen from Figure 1, a self-cleaning liquid online detection container includes a detection cylinder 1, a sample liquid input pipe 2 and a sample liquid output pipe 3 are connected in the detection cylinder 1, and a sample liquid output pipe 3 is installed in the detection cylinder 1. An analyzer probe 4 is arranged, and the detection cylinder 1 is also communicated with the cleaning pipe 5, and the water inlet end of the cleaning pipe 5 is connected with the cleaning solution tank 6, and a cleaning control valve 7 is arranged on the cleaning pipe 5; The top of the detection cylinder 1 is also provided with a cleaning and stirring motor 8, the output shaft of which is inserted into the cavity of the detection cylinder 1, and two stirring rakes 9 are connected to the output shaft 8a of the cleaning and stirring motor 8.
优选地,从图1还可以看出,在所述检测筒1筒壁上设置有观察视镜10,该观察视镜10采用透明材料制作。Preferably, as can be seen from FIG. 1 , an observation mirror 10 is arranged on the wall of the detection cylinder 1 , and the observation mirror 10 is made of a transparent material.
在本实施例中,从图1还可以看出,所述观察视镜10纵向设置,沿所述观察视镜10设置方向刻有刻度线。In this embodiment, it can also be seen from FIG. 1 that the observation mirror 10 is arranged longitudinally, and scale lines are engraved along the installation direction of the observation mirror 10 .
在本实施例中,从图1还可以看出,在该检测筒1底部连接有排污管11,在该排污管11上设置有排污控制阀门12。In this embodiment, it can also be seen from FIG. 1 that a sewage discharge pipe 11 is connected to the bottom of the detection cylinder 1 , and a sewage discharge control valve 12 is arranged on the sewage discharge pipe 11 .
在本实施例中,从图1还可以看出,在所述检测筒1内还连接有清洗剂管13,该清洗剂管13上设置有清洗剂控制阀门14,在所述检测筒1和所述清洗剂控制阀门14之间的清洗剂管13上设置有流量计15。In this embodiment, it can also be seen from FIG. 1 that a cleaning agent pipe 13 is also connected in the detection cylinder 1, and a cleaning agent control valve 14 is arranged on the cleaning agent pipe 13. Between the detection cylinder 1 and the A flow meter 15 is arranged on the cleaning agent pipe 13 between the cleaning agent control valves 14 .
优选地,所述搅拌耙9的制作材料为柔性材料。Preferably, the stirring rake 9 is made of flexible material.
在本实施例中,从图1还可以看出,所述输出轴8a为伸缩输出轴,该输出轴8a能沿轴向延长或者缩短,所述输出轴8a延长的最大长度值小于所述检测筒1的筒高值。In this embodiment, it can also be seen from FIG. 1 that the output shaft 8a is a telescopic output shaft, the output shaft 8a can be extended or shortened in the axial direction, and the maximum length of the output shaft 8a extended is less than the detected The cylinder height value of cylinder 1.
本实用新型的工作原理:Working principle of the utility model:
在检测过程中,通过样液输入管2输入检测筒1,分析仪探头4进行检测,检测结束后,样液输出管3排出样液,再重复上述操作。During the detection process, the sample liquid is input into the detection cylinder 1 through the sample liquid input pipe 2, and the analyzer probe 4 performs detection. After the detection is completed, the sample liquid output pipe 3 discharges the sample liquid, and the above operations are repeated.
通过观察视镜10观察分析仪探头4表面和检测筒1内壁上结垢情况,当需要除垢时,进行除垢操作,具体为:Observe the scaling situation on the surface of the analyzer probe 4 and the inner wall of the detection cylinder 1 by observing the sight glass 10, and when descaling is required, perform the descaling operation, specifically:
样液输出管3排出所有样液后,开启清洗剂控制阀门14,将清洗剂从清洗剂管13输入到清洗液槽6内,再开启清洗控制阀门7,向检测筒1输入清水,工作人员通过观察视镜10观察检测筒1内的液位,当到达需要的液位时,关闭清洗控制阀门7。启动清洗搅拌电机8,并使输出轴8a开始伸缩,带动2个搅拌耙9上下移动,对分析仪探头4表面和检测筒1内壁进行清洁。After the sample liquid output pipe 3 discharges all the sample liquid, open the cleaning agent control valve 14, input the cleaning agent from the cleaning agent pipe 13 into the cleaning liquid tank 6, then open the cleaning control valve 7, and input clean water to the detection cylinder 1, and the staff Observe the liquid level in the detection cylinder 1 through the observation mirror 10, and close the cleaning control valve 7 when the required liquid level is reached. Start the cleaning and stirring motor 8, and make the output shaft 8a start to expand and contract, drive the two stirring rakes 9 to move up and down, and clean the surface of the analyzer probe 4 and the inner wall of the detection cylinder 1.
清洗结束后,开启排污控制阀门12,污水从排污管11排出。After cleaning, the sewage control valve 12 is opened, and the sewage is discharged from the sewage pipe 11.
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN109324164A (en) * | 2018-09-30 | 2019-02-12 | 芜湖友仁机电工程有限公司 | Sewage detection sensor |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN109324164A (en) * | 2018-09-30 | 2019-02-12 | 芜湖友仁机电工程有限公司 | Sewage detection sensor |
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