Tungsten Alloy Atomizing Nozzle Metal Injection Molding MIM Parts
Tungsten Alloy Atomizing Nozzle Metal Injection Molding MIM Parts
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Tungsten Alloy Atomizing Nozzle Metal Injection Molding MIM Parts
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Tungsten Alloy Atomizing Nozzle Metal Injection Molding MIM Parts

The atomization forms of tungsten alloy atomizing nozzles can be divided into pressure atomization, rotary atomization, electrostatic atomization, ultrasonic atomization and bubble atomization. Because of its good atomization effect and wide coverage, it is widely used in agricultural production spraying and industrial manufacturing spraying, dust removal and humidification.

product-300-300

 

The atomization forms of tungsten alloy atomizing nozzles can be divided into pressure atomization, rotary atomization, electrostatic atomization, ultrasonic atomization and bubble atomization. Because of its good atomization effect and wide coverage, it is widely used in agricultural production spraying and industrial manufacturing spraying, dust removal and humidification. Carbide pressure atomizing nozzle refers to the process of spraying the jet from the nozzle at a high speed and suspending it in a static or low-speed airflow under the action of liquid high pressure to form atomization. According to the different internal structures of the nozzle, it can also be subdivided into direct nozzle atomization and centrifugal nozzle atomization.

 

The principle of the rotary atomizing nozzle is to supply the liquid to the high-speed rotating center so that the liquid is thrown out by centrifugal force and aerodynamic force to form an atomization effect. When the liquid flow rate is small, the centrifugal force is greater than the surface tension of the liquid, and a small amount of large droplets are thrown out from the edge of the turntable and split directly. When the flow rate and speed increase, the liquid is pulled into many filamentary jets and becomes extremely unstable. After the liquid leaves the edge of the disk for a certain distance, it separates into small droplets due to friction with the surrounding air. As the flow rate and speed increase to a certain extent, the formed liquid film expands outward and becomes thinner, and at the same time rubs against the surrounding air to separate and atomize. Electrostatic atomization, bubble atomization and ultrasonic atomization are all medium-type atomizing nozzles. These nozzles enhance the fluidity of the surrounding airflow, and use high-speed or even supersonic speed to contact with low-speed liquid or liquid film to produce friction and vibration to form small droplets. Compared with other types of nozzles, carbide nozzles can achieve spray effects without air compressors, and the shape of the atomization is generally circular or fan-shaped. In addition, atomizing nozzles also play a very important role in air conditioning. It is configured on the exhaust air pipeline of the air conditioner, and the heat generated during the operation of the air conditioner is effectively reduced by atomized water mist.

 

Qinhuangdao Zhongwei Precision Machinery Co., Ltd. processes microporous 0.1 tungsten steel dispensing nozzles, the model is: tungsten steel nozzle APJ1006-12 100um-6mm, the size specification is: φ4*φ2.5*φ0.3*φ0.1*6. The carbide nozzle tungsten steel dispensing nozzle tip small hole φ0.1 tolerance requirement ±0.004, measured size φ0.096-φ0.097, all surface finish Ra0.2, inner hole and outer shape concentricity within 0.005, the caliber is consistent without collision and missing corners, and it is professionally used for the matching requirements of dispensing machine dispensing valve equipment.

 

Carbide nozzle 0.1 micro-hole tungsten steel dispensing nozzle, Zhongwei precision tungsten steel nozzle production and processing high-quality products.

 

Our advantages: professional carbide manufacturer, providing precision tungsten steel processing non-standard customization;

Our pride: National high-tech enterprise certification, carbide production tungsten steel processing shape and position tolerance accuracy meets ±0.002.

 

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