Jinrongyuan Standard Vibratory Sieve Shaker
Core Features:
1. Three-Dimensional Compound Motion: Combines circular and deflection movements, simulating manual sieving to break up agglomerated structures and improve sieving efficiency.
2. Adjustable Speed: Continuously adjustable from 300 to 1000 RPM, meeting precise control requirements from coarse to fine sieving.
3. Multi-Stage Synchronous Sieving: Supports up to 5 sieves plus a bottom pan per load, with a particle size range of 10 μm to 30 mm, suitable for various material forms including powders, granules, and slurries.
4. Compact Structure: Small footprint, saving valuable laboratory bench space.
5. Low Noise: Operating noise ≤ 60 dB, providing a comfortable working environment.
6. One-Key Operation: One-touch start, with 0–99 minute timed shutdown for unattended operation.
Technical Specifications:
1. Product Model: JRY-SF
2. Vibration Mode:Circular motion + vertical and horizontal deflection (three-dimensional compound motion)
3. Vibration Frequency: 300–1000 RPM (continuously adjustable)
4. Amplitude: 4 mm (fixed)
5. Sieve Particle Size Range: 10 μm – 30 mm
6. Loading Capacity: Up to 5 standard sieves + 1 bottom pan
7. Timer Setting Range: 0–99 minutes (timed shutdown)
8. Operating Noise: ≤ 60 dB
9. Applicable Materials:Powders, granules, slurries, bulk materials, suspensions, etc.
Applicable Standards:
Geology, Mining & Metallurgy: Particle size classification and determination of ore powders and metal powders (compliant with standards such as GB/T 1480-2025 Metallic powders – Determination of particle size by dry sievingand GB/T 10322.7-2016 Iron ores and direct reduced iron – Determination of size distribution by sieving*)
Soil & Environmental: Particle size analysis and pretreatment of soil samples
Pharmaceutical Industry: Particle size quality control of pharmaceutical powders
Coal Industry: Coal sieving testing (compliant with GB/T 477-2008)
Grain & Oils: Fineness determination of flours and powders (compliant with GB/T 5507-2008)
New Material R&D:Particle size distribution analysis of new energy materials and powder materials