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Fully automatic cleaning machine for charging and discharging caps of new energy batteries
Usually, a combination of multiple cleaning methods is adopted, such as ultrasonic cleaning combined with spray cleaning. Ultrasonic cleaning uses an ultrasonic generator to generate high-frequency vibrations, which are converted into mechanical vibrations through a transducer. Micro-bubbles are formed in the cleaning liquid, and the impact force generated by the bursting of the bubbles can remove the stains on the surface of the cap. Spray cleaning, on the other hand, uses high-pressure nozzles to evenly spray the cleaning liquid onto the cap, washing away the impurities on the surface.
Application scenarios
It is mainly applied to new energy battery manufacturing enterprises and is used to clean the charging and discharging caps of batteries to ensure the performance of the caps and the overall quality of the batteries. It is one of the indispensable equipment on the new energy battery production line.

Product details

Working Principle

Within the broader context of contemporary manufacturing operations, industrial enterprises routinely establish multifaceted cleaning methodologies that strategically combine several distinct yet mutually reinforcing techniques to accomplish superior cleanliness standards and product quality outcomes. Among the available technological pathways, the deliberate pairing of ultrasonic cleaning mechanisms alongside spray-based cleaning processes has demonstrated considerable effectiveness when applied to the processing and preparation of diverse component categories and industrial parts requiring precision surface treatment. The ultrasonic cleaning methodology functions through an intricate technological process in which an ultrasonic generator device initiates the creation of high-frequency mechanical vibrations calibrated to specific frequency parameters.

Structural Composition

Cleaning tank: This essential industrial equipment component represents a critical infrastructure element across multiple manufacturing sectors. The equipment is typically manufactured from stainless steel material, a selection driven by the demanding requirements of modern industrial operations.

The ultrasonic cleaning system occupies a significant position within the broader spectrum of industrial surface treatment applications.

The spray system component functions as a critical subsystem within the overall cleaning apparatus design framework.

The conveying device serves as an integral operational component embedded within the broader framework of automated cleaning system infrastructure.

In the landscape of modern industrial and commercial cleaning operations, the cleaning liquid circulation system functions as a critical infrastructure element that enables efficient management of cleaning solutions throughout various facility types.

The drying system component occupies a critical operational position within the broader cap manufacturing and finishing process workflow. This stage follows immediately after the cleaning phase and serves as an essential procedural step in the production sequence.

The operational framework of this equipment leverages a sophisticated control architecture that is fundamentally built upon programmable logic controller technology.

Features

The charging and discharging caps serve as critical functional components embedded within contemporary new energy battery systems, necessitating exceptionally rigorous surface preparation protocols throughout their entire manufacturing lifecycle.

The manufacturing infrastructure has been structured to include extensive automation functionalities that are integrated throughout the entire range of production processes and operati

In the field of modern battery manufacturing, where quality assurance represents a critical operational requirement, the equipment in question has been engineered to demonstrate substantial adaptability across a broad spectrum of cap configurations and geometric variat

# 擴展改寫版本 (358 字) The cleaning liquid formulation integrated into this system has been engineered to incorporate advanced recycling mechanisms. These mechanisms function to substantially minimize water consumption across the entire cleaning operation cycle.


Display of some cleaned parts