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Core features of hydraulic backpack sprayer
Uniform atomization and anti drip: Hydraulic stable pressure, fine and consistent atomization of the nozzle, anti drip design reduces drug damage and waste;
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Working principle of hydraulic backpack sprayer
The power end (PTO/engine) drives the hydraulic pump, generating high-pressure oil to drive the hydraulic pump;
The liquid pump extracts the medicine from the medicine box and pressurizes it, and delivers it to the spray bar through the pipeline;
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The core structure of hydraulic backpack spraying
Liquid tank: made of PE material for corrosion prevention, equipped with jet mixing, with a capacity ranging from 16-20L (for personal carrying) to 400-1200L (for tractor carrying);
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Application scenarios of wind-assisted sprayers
Orchard: Control and prevent fruit tree diseases and pests (such as apple rot and citrus red spider mites); apply foliar fertilizers.
Open-field crops: Control and prevent diseases and pests in crops such as corn and wheat; reduce drift of pesticide solutions.
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The core advantages of the wind-assisted sprayer
Strong penetration: The airflow can blow open crop leaves, enabling the spray solution to reach even hidden areas and enhancing the efficacy of pest and disease control.
Uniform atomization: The mist droplets are fine and dense (typically 50–100 microns), reducing waste of the spray solution and lowering the risk of residue.
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The core components of a backpack sprayer
Powertrain: The electric version features lithium batteries and an electric motor, while the gasoline version is equipped with either a two-stroke or four-stroke gasoline engine. The powertrain directly affects spraying efficiency and endurance capability.
Atomization Device: Includes components such as nozzles, spray booms, and pressure regulators. The type of nozzle (e.g., fan-shaped, cone-shaped, wind-resistant) determines the distribution of mist droplets and the coverage area.
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The working principle of a backpack sprayer.
Electric type: A motor drives a booster pump, causing the liquid medicine to be atomized and sprayed out through the nozzle under pressure. Some models are equipped with intelligent control systems that allow adjustment of spraying modes and pressure settings.
Gasoline type: A gasoline engine rotates a centrifugal fan, generating a high-speed airflow. Part of this airflow is directly ejected, while another portion enters the chemical tank to build up pressure, forcing the liquid medicine through the nozzle and into an atomized state. At the nozzle, the airflow and liquid medicine undergo secondary mixing, resulting in finer and more uniform mist droplets.
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