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Planetary Ball Mill, Small Laboratory Dry And Wet Dual-purpose Planetary Ball Mill, Agate Grinding Jar

Planetary Ball Mill, Small Laboratory Dry And Wet Dual-purpose Planetary Ball Mill, Agate Grinding Jar

small laboratory planetary ball mill

dry wet dual-purpose planetary mill

agate grinding jar planetary mill

Miejsce pochodzenia:

Chiny

Nazwa handlowa:

ZOLI

Orzecznictwo:

ISO 9001 CE

Numer modelu:

XQM

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Szczegóły produktu
Współczynnik prędkości obrotowej:
2/3
Zużycie energii:
0,75 kW
Tryby szlifowania:
suchy/mokry
Pojemność:
0,4L-100L
Moc:
220 V, 50 Hz
Rozładowywanie ziarnistości:
0,1 minimum mikronów
Materiał szlifierski:
Stal, tlenek cyrkonu, tlenek glinu
Zasada pracy:
Ruch planetarny
Wymiary:
420 x 320 x 300 mm
Woltaż:
220 V
Typ kontroli:
Cyfrowy wyświetlacz z timerem
Liczba naczyń mielących:
2
System sterowania:
Mikrokomputer
Typ:
Ławka planetarna
Maksymalny rozmiar wyjściowy:
0,1 μm
Podkreślić:

small laboratory planetary ball mill

,

dry wet dual-purpose planetary mill

,

agate grinding jar planetary mill

Warunki płatności i wysyłki
Minimalne zamówienie
1 zestaw
Szczegóły pakowania
karton + drewno
Czas dostawy
W ciągu 15 dni
Zasady płatności
Akredytywa, T/T, Western Union
Możliwość Supply
200 jednostek miesięcznie
Opis produktu
Planetary Ball Mill, Small Laboratory Dry And Wet Dual-purpose Planetary Ball Mill, Agate Grinding Jar
This machine is a small, versatile planetary ball mill designed for both dry and wet grinding operations in a laboratory setting. When equipped with an agate grinding jar, it becomes an essential tool for preparing ultra-fine, contamination-sensitive samples across various scientific disciplines.
Core Components & Their Significance
1. The Agate Grinding Jar (The Key to Purity)
Material: Agate is a natural form of Silicon Dioxide (SiO₂), closely related to quartz. It is meticulously processed and sintered to create a dense, hard, and incredibly smooth grinding medium.
Why Agate is Chosen:
  • Extreme Hardness & Wear Resistance: With a Mohs hardness of 6.5-7, it is harder than most common materials, ensuring minimal wear during grinding.
  • Excellent Chemical Inertness: Agate is highly resistant to acids and solvents (except Hydrofluoric acid).
  • Smooth, Non-porous Surface: The polished surface prevents particles from embedding in the jar walls.
Ideal For:
Grinding hard, abrasive materials where even trace metal contamination would ruin the analysis. Examples include geological samples for XRD/XRF, ceramic precursors, semiconductor materials, and pharmaceutical actives.
2. Dry and Wet Dual-Purpose Capability
This is a critical feature that dramatically expands the mill's application range.
Dry Grinding:
  • Process: The sample is loaded into the agate jar in a dry, powdered form along with the grinding balls.
  • Advantages: Simpler setup, no need for solvents, easier post-grinding handling and drying.
  • Disadvantages: Can generate more heat due to friction.
Best For:
Materials that are not heat-sensitive and where the introduction of a solvent is undesirable.
Wet Grinding:
  • Process: A liquid medium is added to the dry powder and balls.
  • Advantages: Prevents caking, cools the sample, and allows for finer particle size.
Best For:
Achieving sub-micron or nano-scale dispersions, grinding ductile metals, and processing temperature-sensitive samples.
3. Small Laboratory Planetary Ball Mill Mechanism
Principle: The agate jar is secured on a rotating disk (sun wheel). It simultaneously revolves at high speed around a central axis and rotates around its own axis in the opposite direction.
Result: This planetary motion generates powerful Coriolis forces, efficiently pulverizing the sample.
Technical Specifications
Feature Specification
Model Type Small Laboratory, Benchtop
Grinding Modes Dry and Wet (Dual-Purpose)
Typical Jar Volume 50 mL, 100 mL, 250 mL, 500 mL
Jar & Ball Material Agate (other materials like SS, ZrO₂ are also compatible)
Number of Jars Typically 2 or 4
Final Fineness < 1 µm (can be nano-scale with optimized conditions)
Speed Control Digital, Programmable (e.g., 100 - 800 rpm)
Control System Programmable for time, speed, and run/pause cycles
Typical Applications with an Agate Jar
  • Geology & Mining: Preparing pristine soil and rock samples for accurate XRF and XRD without metal contamination.
  • Ceramics & Glass: Grinding raw materials and precursors for advanced ceramics where iron contamination must be avoided.
  • Pharmaceutical Research: Size reduction of active pharmaceutical ingredients (APIs) for bioavailability studies.
  • Archaeology: Contamination-free grinding of ancient artifacts for compositional analysis.
  • Electronics: Preparing high-purity ceramic powders for capacitors, sensors, and other electronic components.
  • Pigments & Dyes: Fine grinding to develop consistent, high-quality colors without introducing impurities.
Planetary Ball Mill, Small Laboratory Dry And Wet Dual-purpose Planetary Ball Mill, Agate Grinding Jar 0
Planetary Ball Mill, Small Laboratory Dry And Wet Dual-purpose Planetary Ball Mill, Agate Grinding Jar 1
Planetary Ball Mill, Small Laboratory Dry And Wet Dual-purpose Planetary Ball Mill, Agate Grinding Jar 2
Planetary Ball Mill, Small Laboratory Dry And Wet Dual-purpose Planetary Ball Mill, Agate Grinding Jar 3
Planetary Ball Mill, Small Laboratory Dry And Wet Dual-purpose Planetary Ball Mill, Agate Grinding Jar 4
Operational Advantages Summary
  • Maximum Purity: The agate jar ensures your sample remains uncontaminated by the grinding process.
  • Unmatched Versatility: The dry and wet dual-purpose design allows you to process a vast range of materials.
  • High Efficiency: The planetary mechanism provides the high energy necessary for rapid nano-scale grinding.
  • Precision and Reproducibility: Programmable controls guarantee that every experiment is repeatable.
  • Compact Footprint: The small laboratory size makes it ideal for any lab bench.

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