无衰减电感式接近开关结构设计优化  

Optimization of Structural Design for Non Attenuation Inductive Proximity Switch

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作  者:张伟 Zhang Wei(Hefei Onsoon Intelligent Electronics Co.,Ltd.,Hefei 230094)

机构地区:[1]合肥安胜智能电子有限公司,合肥市230094

出  处:《仪器仪表标准化与计量》2023年第5期12-13,17,共3页Instrument Standardization & Metrology

摘  要:进入21世纪以来,接近开关越来越广泛地应用于各个领域,但每个领域对接近开关的需求皆不相同,因此产生了许多不同种类的接近开关。无衰减电感式接近开关的最大特点是对铜、铝、铁、不锈钢等多种金属衰减系数为1,同时具有温漂系数小,开关频率高,检测距离远,抗干扰性强等优点[1],比其他类型的接近开关更适合用于复杂的环境中,因此无衰减电感式接近开关也越来越广泛地被使用。在生产过程中如何控制品质又能提高生产效率这是我们关心的问题。我们将对现有的无衰减电感式传感器进行结构分析,通过对其结构优化,简化装配工艺,来提高装配质量和效率。Since the beginning of the 21st century,proximity switches have been increasingly widely used in various fields,but the demand for proximity switches varies in each field,resulting in many different types of proximity switches.The biggest characteristic of non attenuation inductive proximity switch is that it has a attenuation coefficient of 1 for various metals such as copper,aluminum,iron,and stainless steel.At the same time,it has advantages such as low temperature drift coefficient,high switching frequency,long detection distance,and strong anti-interference,make it more suitable for complex environments than other types of proximity switches.Therefore,non attenuation inductive proximity switches are increasingly being used.How to control quality and improve production efficiency during the production process is our concern.The paper will conduct structural analysis on existing non attenuation inductive sensors,optimize their structure,simplify assembly processes,and improve assembly quality and efficiency.

关 键 词:生产效率 结构优化 简化装配工艺 

分 类 号:TM564.7[电气工程—电器]

 

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