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5mm thick walls with thermal shock-resistant composition Mill Ceramic Jar

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5mm thick walls with thermal shock-resistant composition Mill Ceramic Jar

Brand Name : Zhongli

Model Number : BMJ-01

Certification : CE ISO

Place of Origin : China

MOQ : 1 piece

Payment Terms : L/C,T/T,Western Union

Supply Ability : 10000 per month

Delivery Time : within 15 days

Packaging Details : carton+Pearl wool+wood

Grinding Ball Weight : 1kg

Grinding Modes : Dry/Wet

Rotation Speed Ratio : 2/3

Feeding Granularity : <=1mm

Maximum Loading Capacity : 2/3 capacity of the grinding jar

Grinding Jar Volume : 500ml

Thickness : 5mm

Uses : Temperature-sensitive protein milling

Design : Integrated vacuum ports

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Benefits of 5mm Thick Walls with Thermal Shock-Resistant Composition in Mill Ceramic Jars


In laboratory equipment and industrial applications, the quality and durability of materials used are paramount. One such component that has gained significant attention is the 5mm thick walls with thermal shock-resistant composition Mill Ceramic Jar. These jars are not only essential for grinding and mixing operations but also stand out due to their robust construction and ability to withstand extreme conditions.


Understanding Mill Ceramic Jars


Mill ceramic jars are integral components in milling operations, particularly in planetary ball mills. They are used for grinding and mixing materials in various industries such as paint, ink, ceramics, and chemical engineering. The primary function of these jars is to ensure a homogeneous mix of materials, which is crucial for achieving desired product characteristics.


Key Features of 5mm Thick Walls


  1. Enhanced Durability: The 5mm thickness of the walls provides exceptional strength, making the jars highly resistant to breakage. This feature is particularly important in environments where the jars are subject to constant motion and impact.
  2. Thermal Shock Resistance: The composition of these jars allows them to withstand rapid temperature changes without cracking. This property is essential in processes that involve heating and cooling cycles, ensuring longevity and reliability.
  3. Chemical Resistance: High-quality ceramic materials used in these jars offer superior resistance to chemicals, making them suitable for handling various substances without degradation.


Applications of Thermal Shock-Resistant Mill Ceramic Jars


The versatility of mill ceramic jars with 5mm thick walls makes them suitable for a wide range of applications:


  • Laboratories: Used for grinding samples in research and development settings, these jars facilitate precise and consistent results.
  • Industrial Manufacturing: Essential in the production of paints, inks, and ceramics, where uniformity and quality are critical.
  • Chemical Processing: Ideal for mixing chemical compounds, thanks to their chemical resistance and durability.


Material Composition and Properties


Mill ceramic jars are typically made from high purity alumina ceramic (Al2O3), known for its hardness and abrasion resistance. This material choice ensures that the jars can handle medium to hard, fibrous samples effectively.


Properties of Alumina Ceramic


  • Density: Approximately 3.8 g/cm³, providing a solid and robust structure.
  • Hardness: Greater than 80 HRA, ensuring minimal wear and tear during use.
  • Abrasion Resistance: Excellent, reducing the risk of contamination and extending the jar's lifespan.


Why Choose 5mm Thick Walls with Thermal Shock-Resistant Composition?


The decision to use mill ceramic jars with 5mm thick walls and thermal shock-resistant composition is driven by several factors:


  • Reliability: The construction ensures that the jars can handle rigorous use without failure, providing consistent performance over time.
  • Safety: The ability to withstand thermal shocks reduces the risk of accidents in environments where temperature fluctuations are common.
  • Cost-Effectiveness: While the initial investment may be higher, the long lifespan and reduced maintenance needs of these jars make them a cost-effective choice in the long run.


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