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High hardness stabilized zirconium dioxide ceramic grinding jars

High hardness stabilized zirconium dioxide ceramic grinding jars

stabilized zirconium dioxide grinding jars

high hardness ceramic ball mill jars

zirconium dioxide ball mill jars

Menşe yeri:

ÇİN

Marka adı:

Zoli

Sertifika:

ISO CE

Model numarası:

BMJ-01

Bizimle İletişim
Teklif Et
Ürün Ayrıntıları
Taşlama Topu Boyutu:
10 mm
Net ağırlığı:
2.4kg
Uyumluluk:
Gezegen Topu Müheri
Bedenler:
1L, 3L, 5L, 10L, 15L, 20L
Taşlama kavanoz hacmi:
100ml
Renk:
SARI
Pot hacmi:
500ml
Kavanoz ağırlığı:
1,5 kg
Toplam ses:
1L
Kavanoz duvar kalınlığı:
6 mm
Asit direnci:
Yüksek Asit Dayanımı
Kapak:
Mevcut
Maksimum dönüş hızı:
800 devir
Malzeme:
paslanmaz çelik
Öğütme kavanoz malzemesi:
zirkonya
Vurgulamak:

stabilized zirconium dioxide grinding jars

,

high hardness ceramic ball mill jars

,

zirconium dioxide ball mill jars

Ödeme ve Nakliye Şartları
Min sipariş miktarı
1 adet
Ambalaj bilgileri
karton+inci yün+ahşap
Teslim süresi
15 gün içinde
Ödeme koşulları
T/T, Western Union, L/C
Yetenek temini
Ayda 10000
Ürün Tanımı
High Hardness Stabilized Zirconium Dioxide Ceramic Grinding Jars
Overview: The Gold Standard for Contamination-Sensitive Milling

Stabilized Zirconium Dioxide (ZrO₂), commonly known as Yttria-Stabilized Zirconia (YSZ), represents one of the most advanced and widely used materials for grinding jars in applications where minimal contamination and high mechanical strength are critical. These engineered ceramics are designed to withstand severe mechanical and thermal stresses of high-energy milling.

High hardness stabilized zirconium dioxide ceramic grinding jars 0 High hardness stabilized zirconium dioxide ceramic grinding jars 1
Key Characteristics and Material Science
Stabilization: The Secret to its Toughness

Pure zirconia undergoes a destructive phase change (from tetragonal to monoclinic) during heating and cooling, leading to cracking. To prevent this, it is "stabilized" by adding metal oxides, most commonly:

  • Yttria (Y₂O₃): Creating Yttria-Stabilized Zirconia (YSZ). This is the most prevalent type for milling jars.
  • Magnesia (MgO) or Ceria (CeO₂): Used in other specific grades.

This stabilization process results in a transformation toughening mechanism. When stress is applied, the zirconia particles at the stress point undergo a microscopic phase change that expands, effectively compressing the developing crack and preventing propagation.

Exceptional Material Properties
  • Extreme Hardness: Typically > 1250 HV (Vickers Hardness), making it highly resistant to wear and abrasion.
  • High Fracture Toughness: YSZ has the highest toughness of all advanced ceramics.
  • High Density (~6.0 g/cm³): Allows jars and balls to impart greater impact energy for more efficient milling.
  • Low Thermal Conductivity: Acts as a thermal barrier to contain heat generated during milling.
  • Excellent Chemical Inertness: Highly resistant to acids and alkalis, ideal for wet milling.
Advantages of YSZ Jars
  • Ultra-Low Contamination: Wear debris is primarily chemically inert ZrO₂, making it ideal for high-purity materials.
  • Superior Wear Life: Outlasts other ceramic jars like Alumina by a significant margin.
  • High Milling Efficiency: High density results in higher kinetic energy per impact.
  • Smooth, Non-stick Surface: Minimizes powder adhesion and makes cleaning easier.
Disadvantages and Considerations
  • Cost: Significantly more expensive than steel or alumina jars.
  • Residual Contamination: While minimal, not zero. Agate might be needed for certain spectroscopic standards.
  • Weight: Heavier than other ceramics, a factor for very large jar sizes.
  • Thermal Shock Resistance: Avoid rapid and extreme temperature changes to prevent cracking.
Primary Applications
  • Nanomaterial Synthesis
  • Battery Material Research
  • Pharmaceuticals
  • Advanced Ceramics
  • Mechanochemistry
  • Metallurgy
Compatible Grinding Media

For best performance and to minimize contamination, YSZ jars must be used with Yttria-Stabilized Zirconia (YSZ) grinding balls. Using different materials will cause rapid wear and cross-contamination.

Operational Guidelines and Best Practices
  • Loading Volume: Do not exceed ⅓ to ½ of the jar's total volume.
  • Grinding Media Size: Use a range of ball sizes for efficient milling.
  • Cleaning: Clean thoroughly between uses with mild detergent and water.
  • Inspection: Regularly inspect for signs of chipping, cracking, or excessive wear.
Summary Comparison vs. Other Jar Materials
Feature Yttria-Stabilized Zirconia (YSZ) Alumina (Al₂O₃) Hardened Steel Tungsten Carbide (WC)
Contamination Very Low (ZrO₂) Very Low (Al₂O₃) Very High (Fe, Cr) Medium (W, Co)
Fracture Toughness Very High Low (Brittle) Very High High (but brittle)
Hardness High High Very High Extreme
Density High Medium Very High Extreme
Best For General R&D for sensitive materials Chemical inertness, lower cost Iron-alloys, non-sensitive materials

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