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Vacuum generators and ejectors are machines that generate a vacuum. Vacuum generation methods are different, and vacuum generators are used to create a vacuum using compressed air and carry it by suction. When the compressed air flows into the diffuser, it is jetted at a high speed and the pressure drops, creating a vacuum. It is composed of a nozzle and a diffuser, and the degree of the vacuum pressure changes depending on the shape and dimensions. Ejectors, on the other hand, use water, steam, oil, etc. to create a vacuum. This is a mechanism in which the material that has been heated and turned into steam is injected at a high speed, so that the lower stage is compressed. It consists of jets, cylinders, boilers, pipe heaters, heat insulators with different widths, etc. The ejected steam is cooled and returns to the boiler again. Shapes and performances vary depending on the type, such as those with a solenoid valve, elbow type, and compact type.
Simple structure with no movable parts offers long work life.
[Features] · Long work life and unmovable simple structure. · A series with many models, several nozzle diameters, and from small flow rate to large flow rate.
Additional Function
Type
Ultimate Vacuum(kPa)
Suction Flow(l/min)
Air Supply Port Connecting Port Shape
Vacuum Port Connecting Port Shape
Vacuum Port One-Touch Fitting Size
Air Supply Port One-Touch Fitting Size
Nozzle Dia.
Application
Air Consumption Flow Rate(l/min)
Type of Related Component
Not Provided
Direct Electromagnetic Valve Mounting Type Straight
-87 ~ -53
225 ~ 350
R1/2
-
-
-
3.0mm
Single Item
385
-
From:
₹ 27,393.67
Days to Ship:
5 Day(s) or more
5 Day(s) or more
Brand
Product Series
From
Days to Ship
Additional Function
Type
Ultimate Vacuum(kPa)
Suction Flow(l/min)
Air Supply Port Connecting Port Shape
Vacuum Port Connecting Port Shape
Vacuum Port One-Touch Fitting Size
Air Supply Port One-Touch Fitting Size
Nozzle Dia.
Application
Air Consumption Flow Rate(l/min)
Type of Related Component
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Answer: A vacuum generator is a device that creates a vacuum by removing air or gas from a specific space. Vacuum generators are commonly used in various industries such as manufacturing, electronics, packaging, and robotics, where precise handling of materials is required. They typically use compressed air to create suction and generate a vacuum.
Question: What is an ejector in vacuum technology?
Answer: An ejector is a device that uses the Venturi effect, a principle where compressed air is forced through a nozzle to create a vacuum. Ejectors are highly efficient and do not have moving parts, making them durable and easy to maintain. They are widely used for applications like clamping, lifting, and holding objects securely using vacuum power.
Question: Which type of vacuum generator or ejector is best suited for a specific application?
Answer: The choice between a vacuum generator and ejector depends on factors such as the required vacuum level, flow rate, and the availability of a high-pressure fluid or gas source. Consult with a vacuum specialist to determine the most suitable device for your application.
Question: What factors should I consider when choosing a vacuum generator or ejector?
Answer: When selecting a vacuum generator or ejector, consider the following factors:
• Vacuum level: Determine the vacuum level your application requires.
• Flow rate: The rate at which air is removed to maintain the vacuum.
• Compressed air consumption: Look for energy-efficient models that consume less air.
• Application type: Consider the environment and the type of object or material being handled.
• Maintenance needs: Evaluate the reliability and ease of maintenance.
Question: What is a multi-stage vacuum ejector, and when should it be used?
Answer: A multi-stage vacuum ejector consists of multiple nozzles that work together to create a higher vacuum level with lower air consumption. Each stage increases the efficiency of air evacuation, making multi-stage ejectors ideal for applications requiring a deeper vacuum or for handling porous materials where standard single-stage ejectors may not perform as efficiently. Multi-stage ejectors are often used in industries like automotive manufacturing and food processing, where energy efficiency and high vacuum levels are essential.
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