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全自动超声波清洗机:工业清洗带来的意义是什么?

作者:创始人来源:http://www.jnthcsb.com/时间:2024-08-19

(1) 有利于提高产品的质量和性能

(1) Beneficial for improving product quality and performance

工业清洗有利于提高产品的质量和性能。原材料表面的污垢,在制造中可以保证零件加工精度﹑尺寸;在部件装配中,可以提高产品的质量,例如在照相机、复印机装配中,有利于轴孔的配合.齿轮的啮合等。而对某些产品来说,清洗是为了满足下一道工序的需要﹐如电镀前处理、喷涂前处理、真空镀膜前处理、金属防锈钝化前处理等。

Industrial cleaning is beneficial for improving the quality and performance of products. Removing dirt from the surface of raw materials can ensure the machining accuracy and dimensions of parts during manufacturing; In component assembly, product quality can be improved, for example, in camera and copier assembly, it is beneficial for the fit of shaft holes and gear meshing. For some products, cleaning is to meet the needs of the next process, such as electroplating pre-treatment, spraying pre-treatment, vacuum coating pre-treatment, metal rust prevention and passivation pre-treatment, etc.

(2) 有利于延长工业装置、设备的使用寿命

(2) Beneficial for extending the service life of industrial equipment and devices

2

清洗有利于延长工业装置,设备的使用寿命,有利于设备维护。例如在发电广,化工厂设备检修中,通过超声波清洗,能迅速恢复各种控制阀芯、调节器的灵敏性,可靠性。又如清洗汽车、柴油机的汽缸,活塞环、喷油嘴﹑各类运动轴承等,能大大提高装配质量,减少磨损,延长其使用寿命。

Cleaning is beneficial for extending the service life of industrial equipment and devices, as well as for equipment maintenance. For example, in power generation and chemical plant equipment maintenance, ultrasonic cleaning can quickly restore the sensitivity and reliability of various control valve cores and regulators. For example, cleaning the cylinders, piston rings, fuel injectors, and various motion bearings of cars and diesel engines can greatly improve assembly quality, reduce wear, and extend their service life.

(3) 有利于低碳经济和生产

(3) Beneficial for low-carbon economy and safe production

工业清洗有利于低碳经济和生产。例如发电厂的各种管道装置,因为结垢,造成管线流量面积减小,增加了流通阻力,使能耗,物耗增加。又如化工厂中,各种自控系统的气动,液压阀芯,调节器的喷嘴﹐都会因为污垢而堵塞,造成控制失灵,在连续运行中管道或反应釜压力变大,可能造成爆炸等生产事故。工业清洗除垢,就可以恢复设备的生产效率。

Industrial cleaning is beneficial for low-carbon economy and safe production. For example, various pipeline devices in power plants, due to scaling, reduce the flow area of pipelines, increase flow resistance, and increase energy and material consumption. For example, in chemical plants, the pneumatic and hydraulic valve cores of various self-control systems, as well as the nozzles of regulators, may be blocked due to dirt, causing control failure. During continuous operation, the pressure in pipelines or reactors may increase, which may lead to production safety accidents such as explosions. Industrial cleaning and descaling can restore the production efficiency of equipment.

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