Tuesday December-30 2025  14:51:41
automatic vibrating test sieve with sample uses a motor to vibrate the sieve, ensuring the sample is evenly distributed within the sieve and sieving according to particle size. This equipment can be equipped with 1-8 sieves for simultaneous multi-stage sieving, with sieve apertures ranging from 0.025 mm to 10 mm. The vibration frequency is typically between 200 and 1200 times per minute and can be adjusted according to material characteristics and sieving requirements. The equipment also features an automatic timing function, allowing users to set the sieving time to ensure consistent experimental conditions.

Install the sieves as needed, ensuring the required number of layers are installed. Place the sample to be sieved evenly into the top sieve, ensuring it does not exceed the sieve frame's capacity. Set the vibration frequency, amplitude, and sieving time. Turn on the equipment; the sample will be sieved automatically through vibration. After sieving, remove each sieve layer sequentially and collect samples of different particle sizes for analysis or further processing. After use, the sieve and equipment can be cleaned with a soft brush.

The Automatic Vibrating Test Sieve with Sample can adjust the frequency from 15Hz to 50Hz and the vibration amplitude from 0.5 to 5mm to complete the sieving of difficult-to-sieve samples. Furthermore, the frequency and amplitude can be adjusted according to the material characteristics to make the sieving results more accurate. The equipment supports multi-layer sieve operation, allowing for simultaneous multi-stage sieving of samples and rapid acquisition of particle proportions of different sizes. The equipment only needs to be plugged into a power source to automatically sieve, reducing the time-consuming and inaccurate nature of manual sieving. The equipment has low noise and a robust structure, making it suitable for long-term laboratory use, while reducing errors from manual sieving and improving data repeatability and reliability.

| Parameter | Description |
| Sieving Time | Adjustable from 0-99 minutes |
| Sieve Frame Diameter | 200 mm / 300 mm / 450 mm |
| Sieve Frame Height | 50 mm / 75 mm / 100 mm |
| Number of Sieving Layers | 1-8 layers |
| Sieving Precision | 20 μm - 5 mm |
| Power | 100 W - 300 W |
| Sample Quantity | 50 g - 5 kg |
| Control Method | Touch Screen / Button / PLC Control |
| Sieve Frame Material | Stainless Steel 304 / 316 / Aluminum Alloy |
| Additional Functions | Timing, Reverse Rotation, Automatic Screen Cleaning, Dustproof |
| External Dimensions | 600 × 500 × 400 mm (Length × Width × Height, customizable) |
| Applicable Materials | Powder, Granules, Chemicals, Ores, Plastics, etc. |
The price of the Automatic Vibrating Test Sieve with Sample varies depending on the model, number of sieve layers, and functional configuration. Stainless steel sieve frames are more expensive than those made of brass or other materials. The performance and speed control accuracy of the vibrating motor also affect the price.
Basic models are single-layered or have a few layers, with a sieve frame diameter of 200mm. They use a standard AC motor for basic vibration. With a simple structure and focused functionality on core screening, they are suitable for daily quality control with limited budgets or low throughput. The price ranges from $800 to $1,500.
Standard laboratory models are priced between $1,700 and $2,500. These models feature 5-7 layers of stainless steel sieve frames with a diameter of 300mm. Equipped with a digital timer and a continuously variable speed motor, they allow control of screening time and intensity, ensuring results meet standards such as ASTM and satisfying most R&D and quality control needs.

Automatic vibrating test sieves with samples are used for particle size analysis and quality testing of samples such as flour, powdered sugar, seasonings, pharmaceutical powders, cement, sand, ore, aggregates, soil, and rock fragments.

The Automatic Vibrating Test Sieve with Sample combines an automatic sieving machine with sample processing, improving the speed of sample testing. It is used for agricultural soil testing, drug particle size research, sand and gravel testing, and experimental research in scientific institutions, providing accurate sample distribution data and offering valuable reference for materials development and process improvement.
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