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Low Thermal Shock 5Y-TZP With Thermal Barrier Coating Zirconia Grinding Vessel 2mm Reinforced Wall Thickness

Low Thermal Shock 5Y-TZP With Thermal Barrier Coating Zirconia Grinding Vessel 2mm Reinforced Wall Thickness

zirconia ball mill jar

zirconia ball milling jar

grinding ball mill jar

Place of Origin:

China

Brand Name:

Zhongli

Certification:

CE ISO

Model Number:

BML-01

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Request A Quote
Product Details
Hardness:
More Than 8.5 Mohs
Volume:
50ml
Grinding Media Compatibility:
Zirconia, Alumina, Agate
Acid Resistance:
High Acid Resistance
Application:
Laboratory, Research, Industrial
Shape:
Cylindrical
Jar Style:
Vertical
Outer Diameter:
49mm
Certifications:
CE ISO
Jar Capacity:
1L
Inner Diameter:
38mm
Jar Weight:
1 Kg
Usage:
Wet Or Dry Grinding
Power:
220V 50HZ
Jar Height:
120 Mm
Highlight:

zirconia ball mill jar

,

zirconia ball milling jar

,

grinding ball mill jar

Payment & Shipping Terms
Minimum Order Quantity
1
Price
$100-$300/ set
Packaging Details
carton+Pearl wool+wood
Delivery Time
within 15 days
Payment Terms
L/C,T/T,Western Union
Supply Ability
10000 per month
Product Description

Product Description

Exploring the Benefits of Low Thermal Shock 5Y-TZP With Thermal Barrier Coating Zirconia Grinding Vessel

In the realm of advanced material sciences, the demand for durable and efficient materials is ever-increasing. One such innovation is the Low Thermal Shock 5Y-TZP with Thermal Barrier Coating Zirconia Grinding Vessel featuring a 2mm reinforced wall thickness. 


Understanding Low Thermal Shock 5Y-TZP

5Y-TZP (5 mol% Yttria-stabilized Tetragonal Zirconia Polycrystal) is a zirconia-based ceramic known for its exceptional mechanical properties and thermal stability. The addition of yttria enhances the material's toughness by stabilizing the tetragonal phase, making it ideal for high-temperature applications. When combined with a thermal barrier coating, 5Y-TZP becomes even more resilient, offering superior protection against thermal shock.


Key Features of 5Y-TZP with Thermal Barrier Coating

  • Enhanced Durability: The thermal barrier coating significantly improves the material's resistance to high temperatures and thermal cycling, extending its lifespan in harsh environments.
  • Reduced Thermal Conductivity: The coating reduces heat transfer, protecting the underlying material and maintaining structural integrity.
  • Improved Mechanical Strength: With a 2mm reinforced wall thickness, the grinding vessel is robust and capable of withstanding mechanical stresses.
  • Corrosion Resistance: The coating provides an additional layer of protection against chemical attacks, ensuring longevity in corrosive conditions.


Applications in Industry

The Low Thermal Shock 5Y-TZP with Thermal Barrier Coating finds applications across various industries due to its unique properties:


  1. Aerospace: Used in turbine engines, the material enhances efficiency by allowing higher operating temperatures while protecting components from thermal damage.
  2. Automotive: In engines and exhaust systems, it improves performance and reduces emissions by maintaining optimal thermal conditions.
  3. Manufacturing: Essential in high-temperature processing equipment, where it ensures reliability and reduces downtime.


Insights from Recent Research

Recent studies, have explored the advancements in thermal barrier coatings. Researchers emphasize the importance of doped, nanostructured, and multilayered zirconia-based coatings, which offer improved durability and thermal stability. These coatings effectively address the limitations of conventional yttria-stabilized zirconia (YSZ) by enhancing phase stability and reducing sintering activity.


Key Findings

  • Doped and Nanostructured Coatings: These coatings exhibit superior thermal shock resistance and wear behavior, crucial for applications in gas turbines and aircraft engines.
  • Multilayered Designs: By layering different materials, these coatings provide a gradient structure that optimizes thermal and mechanical properties.


Advantages Over Conventional Materials

Compared to traditional materials, the Low Thermal Shock 5Y-TZP with Thermal Barrier Coating offers several advantages:
  • Higher Operating Temperatures: The material can withstand temperatures beyond 1200°C, surpassing the limits of standard YSZ coatings.
  • Longer Service Life: Enhanced durability leads to reduced maintenance and replacement costs.
  • Improved Energy Efficiency: By minimizing heat loss, the material contributes to more efficient energy use in industrial processes.


Characteristics & Advantages:

Feature Zirconia Jar Alumina Jar Stainless Steel Jar
Hardness ⭐⭐⭐⭐⭐ (1,200 HV) ⭐⭐⭐ (1,500 HV but brittle) ⭐⭐ (~500 HV)
Fracture Toughness ⭐⭐⭐⭐⭐ (6-10 MPa·m¹/²) ⭐⭐⭐ (3-4 MPa·m¹/²) ⭐⭐⭐⭐ (High, but wears over time)
Chemical Resistance ⭐⭐⭐⭐⭐ (Inert) ⭐⭐⭐⭐ (Good) ⭐⭐ (Corrosion risk)
Contamination Risk ⭐ (None) ⭐⭐ (Low) ⭐⭐⭐ (Metal traces)
Lifespan ⭐⭐⭐⭐⭐ (Longest) ⭐⭐⭐ (Moderate) ⭐⭐ (Wears fastest)


Product Paramenters

 

Material selection of ball mill jar

The material of the ball grinding jar has no pollution to the grinding material and has no effect on the appearance of the material after grinding

Types and requirements of grinding materials   

Ball mill jar material selection reference 

Soil and materials that do not allow impurities

Agate ball mill jar

Metal, non-metal do not allow to bring impurities into the material

Zirconia ball mill jar

Diamond, carbide and other high hardness materials

Carbide ball mill jar

Strong acid, strong base substances and high temperature conditions

Teflon ball mill jar

Materials with low sensitivity to iron and steel minerals and impurities

304 stainless steel ball mill jar

Pigment class, after the sequence can be high temperature treatment class materials

Nylon ball mill jar

Ceramic glaze and other aluminum-containing materials

Corundum ball mill jar

Lithium and other electronic materials

Polyurethane ball mill jar

Materials that are easily oxidized and require special atmosphere protection

Vacuum ball mill jar


Low Thermal Shock 5Y-TZP With Thermal Barrier Coating Zirconia Grinding Vessel 2mm Reinforced Wall Thickness 0

 

Grinding Jar& Ball  

Agate Ball

Zirconia  Ball

TC-ball

Stainless Steel Balls

Alumina Balls

Polyurethane Covered Core Ball

 Steel Ball

Agate Jar

 

 

 

 

 

 

Zirconia Jar

 

 

 

 

 

 

TC-Jar

 

 

 

 

 

PTFE Jar

 

 

 

 

 

Stainless steel Jar

 

 

 

 

 

 

Nylon Jar

 

 

 

 

 

Corundum Jar

 

 

 

 

 

Polyurethane Jar

 

 

 

Note:▲superior formulation, ○optimal formulation

Ball size ratio: Usually the best grinding ball ratio is 20% for large ball, 50% for medium ball, 30% for small ball (weight ratio).

Low Thermal Shock 5Y-TZP With Thermal Barrier Coating Zirconia Grinding Vessel 2mm Reinforced Wall Thickness 1



Factory equipment

Low Thermal Shock 5Y-TZP With Thermal Barrier Coating Zirconia Grinding Vessel 2mm Reinforced Wall Thickness 2

Exhibition & Partner

Low Thermal Shock 5Y-TZP With Thermal Barrier Coating Zirconia Grinding Vessel 2mm Reinforced Wall Thickness 3


Case


Ship to Portugal

Low Thermal Shock 5Y-TZP With Thermal Barrier Coating Zirconia Grinding Vessel 2mm Reinforced Wall Thickness 4

Ship to Republic of Lithuania

Low Thermal Shock 5Y-TZP With Thermal Barrier Coating Zirconia Grinding Vessel 2mm Reinforced Wall Thickness 5


FAQ

1. Can I use different grinding media in the same jar?

Yes, but ensure the grinding media (balls or beads) are compatible with the jar material to avoid contamination or excessive wear. For example:

  • Ceramic jars work well with ceramic or zirconia balls.

  • Stainless steel jars pair best with steel or tungsten carbide balls.

2. How do I clean a ball mill jar?

  • Ceramic/Glass Jars – Use mild detergents, ultrasonic cleaning, or baking soda paste. Avoid abrasive scrubbers.

  • Stainless Steel Jars – Clean with soapy water or solvents (if needed) and dry thoroughly to prevent rust.

  • Plastic Jars – Wash with warm water and mild detergent; avoid harsh chemicals.

3. How do I choose the right ball mill jar?

Consider the following factors:

· Material compatibility – Ensure the jar material won’t react with your sample.

· Grinding media – Match the jar material with the grinding balls (e.g., ceramic jars with ceramic balls).

· Capacity – Select a size that fits your batch requirements.

· Sealing mechanism – Airtight lids prevent contamination and spillage.

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