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Spray cleaning machine is an efficient and automated cleaning equipment widely used in industrial manufacturing, food processing, medical equipment, automotive parts and other fields. The core principle is to use a high-pressure spray system, combined with cleaning agents or pure water, to flush, remove dirt, and disinfect the surface of objects. This article will introduce the technical principles, classification, and typical application scenarios.
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1. Technical principles
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The spray cleaning machine mainly consists of the following components:
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Pump system: Provides high-pressure water flow or cleaning agent, with a pressure range typically between 10-100 bar, adjustable according to demand.
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Nozzle array: Multi angle and multi-directional nozzle layout to ensure coverage of all surfaces of the cleaned object.
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Control system: PLC or touch screen control, supporting parameter settings such as time, temperature, pressure, etc.
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Water circulation system: Some equipment is equipped with filtration and separation devices to achieve the recycling of water resources.
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The cleaning process is divided into four stages: pre cleaning, main cleaning, rinsing, and drying, with full automation to reduce manual intervention.
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2. Classification
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Classified by purpose: industrial grade (metal parts degreasing), food grade (fruit and vegetable cleaning), medical grade (instrument sterilization).
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Classified by structure: tunnel type (continuous assembly line), cabinet type (small batch processing), customized (special shaped workpieces).
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3. Typical application scenarios
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Automotive manufacturing industry: degreasing and rust removal of engine components and gears.
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Food processing industry: surface cleaning of bottles, cans, fruits and vegetables, and removal of pesticide residues.
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Medical field: High temperature and high pressure sterilization and cleaning of surgical instruments.
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Electronics industry: PCB board cleaning after soldering to remove solder flux residue.
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4. Advantages
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Efficient and energy-saving: Compared to manual cleaning, the efficiency is increased by 5-10 times.
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Environmental protection and water conservation: The circulating water system can reduce water consumption by 80%.
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High consistency: Automated processes avoid human operational errors.
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