Vibrating Screen Coconut Pollen
What is Vibrating Screen Coconut Pollen?
For the high-precision screening needs of coconut milk, coconut fiber, and pollen in the coconut processing industry, the stainless steel Vibrating Screen Coconut Pollenis recommended. This device uses a vertical electric motor as a vibration source, accurately screening both wet and dry materials in a single operation. It not only offers exceptional screening accuracy and processing efficiency, but also effectively handles finely divided materials and is resistant to clogging. Its all-stainless steel construction not only meets the hygiene and durability requirements of food-grade applications, but also simultaneously improves production capacity and quality control.

Vibrating Screen Coconut Pollencan screen coconut pollen based on its fine, hygroscopic, and nutrient-rich particles, requiring gentle screening to prevent clumping. Commonly used equipment includes circular, ultrasonic, and linear vibrating screens, achieving grading through 1-5 layers of screens. Screening throughput ranges from 100 kg to 2,000 kg per hour, meeting the screening needs of coconut pollen for various production capacities.
Features of Vibrating Screen Coconut Pollen
Vibrating Screen Coconut Pollen has ultrasonic anti-blocking screen technology, which effectively improves the cleaning efficiency by 80%. The part in contact with the material is 304/316L stainless steel. The modular design supports rapid replacement of screens and adapts to multiple specifications of production.

Most of the equipment is a closed structure to prevent dust from flying, which meets the hygiene requirements of the food and pharmaceutical industries. The screen is easy to replace and clean, which effectively improves the efficiency of use. The screening process is low-noise and low-energy, suitable for long-term continuous operation. The modular design allows the screen to be replaced in just 3-5 minutes, and different mesh sizes ,such as 80 mesh coarse screen and 325 mesh fine screen, can be quickly switched to adapt to the production of multiple specifications of products. In addition, some models are equipped with automatic screen cleaning devices, such as rubber ball screen cleaning, ultrasonic vibration screen, etc., which greatly improves production capacity and screening stability. These features make it have obvious advantages in screening coconut pollen, a special fine powder material.
Parameters of Vibrating Screen Coconut Pollen
| Model |
Diameter (mm) |
Feeding Size (mm) |
Frequency (RPM) |
Layers |
Power (kw) |
Capacity (kg/h) |
| DH-400 | 400 | <10 | <1500 | 1-5 | 0.18 | 100 |
| DH-600 | 600 | 0.25 | 200 | |||
| DH-800 | 800 | 0.55 | 500 | |||
| DH-1000 | 1000 | 0.75 | 800 | |||
| DH-1200 | 1200 | 1.1 | 1200 | |||
| DH-1500 | 1500 | 1.5 | 1800 | |||
| DH-1800 | 1800 | 2.2 | 2000 |
What kind of equipment is suitable for screening coconut pollen?
The following three types of Vibrating Screen Coconut Pollen are suitable for coarse screening, ultra-fine screening, and high-precision screening of coconut pollen, covering all links from primary processing to pharmaceutical-grade production. They can also meet the needs of different coconut pollen production capacities.
Ordinary Vibrating Screen: Basic equipment, using a single-layer screen and vertical vibration motor structure, the screen frame is made of carbon steel. Suitable for coarse screening of coconut powder (80-120 mesh), the amplitude can be controlled by adjusting the eccentric block, the cost is low, but it needs to be stopped every 2 hours for manual cleaning, suitable for small batch production.

Linear Vibrating Screen: This device is suitable for screening dried coconut pollen. Typically, 80-120 mesh screens are used, effectively separating coarse fiber from fine powder. The hourly output can reach 50-200 kg, depending on the model. The material-contacting parts of the device are constructed of 304 or 316 stainless steel to prevent contamination.

Ultrasonic vibrating screen: It integrates a 20kHz ultrasonic transducer and generates micron-level vibration through a resonator. It effectively solves the adsorption and agglomeration problem of coconut powder above 325 mesh, and the screening accuracy is increased to 5μm, accounting for more than 60% of the production of medical-grade coconut powder. The transducer module supports fast disassembly and maintenance.

High-precision airflow screening machines typically use 100-500 mesh screens for fine, sticky coconut pollen. Using negative pressure airflow to penetrate the screen, they effectively prevent mesh clogging caused by grease and stickiness. Continuous self-cleaning mechanisms such as airflow cleaning or bouncing balls ensure screening stability. The equipment is typically constructed of 304 or 316L stainless steel, making it suitable for pollen screening applications requiring high purity. Screening efficiencies can exceed 95%, and a single machine typically produces 50-500 kg/h of screening capacity, depending on the material characteristics and screen specifications.

Selection reference of Vibrating Screen Coconut Pollen
When selecting Vibrating Screen Coconut Pollen,conventional vibrating screens are suitable for general precision requirements. Their three-dimensional vibrations can screen coconut pollen with a mesh size of 200-500. They are compact and easy to maintain, but they are prone to clogging when screening ultrafine powders. When clogging occurs with conventional rotary vibrating screens, ultrasonic screens are recommended. These screens utilize high-frequency vibrations to eliminate static electricity and agglomeration issues. They can screen ultrafine powders with a mesh size of 400-600, making them suitable for high-value coconut pollen purification. Linear vibrating screens are more suitable for low- to medium-precision, high-volume production needs in coconut pollen screening. They can separate large impurities such as coconut shell debris and fiber clumps from pollen, and are suitable for screening mesh sizes of 80-200. The screen surface can be flexibly adjusted to meet production capacity requirements, with options ranging from 1 to 6 layers, and the screen mesh can be easily replaced.

Vibrating Screen Coconut Pollen Application Case
During the screening process of coconut shell fibers, a certain factory uses a rotary vibrating screen to remove debris, dust, and impurities, ensuring uniform fiber length and improving the quality of filling or weaving materials. In coconut milk production, a stainless steel food-grade vibrating screen is used to effectively separate the solid and liquid parts of coconut milk, remove coarse residue, and make the coconut milk more delicate and pure. In the processing of coconut pollen, fine vibrating screens such as ultrasonic waves are used to strictly screen and purify the pollen after collection to remove impurities and obtain high-purity pollen with uniform particles for use in artificial pollination and other needs.

Vibrating Screen Coconut Pollen Suppliers
As the source manufacturer, our factory can customize Vibrating Screen Coconut Pollen according to the screen material, screen hole size, screening output and the overall size of the equipment. We also provide comprehensive after-sales service, including free trial machine, equipment installation and commissioning, and free maintenance during the warranty period.

The Vibrating Screen Coconut Pollen is a vibrating screening device designed for high-viscosity, ultrafine powders like coconut powder. It features an ultrasonic anti-clogging screen, a modular design, and quick screen change. It boasts a processing accuracy of up to 99% through an 80-mesh screen, supports 1-5 screening layers, and can process 2-5 tons of coconut powder per day. The device can be used for coarse screening of coconut powder, as well as high-precision screening. Constructed of food-grade stainless steel and featuring a closed structure, it is dust-resistant and low-noise, meeting the requirements of the food and pharmaceutical industries, making it an ideal screening solution for coconut powder processing.
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