High-Purity Calcium Phosphate Powder Raw Material
High-Purity Calcium Phosphate Powder Raw Material
High-Purity Calcium Phosphate Powder Raw Material
High-Purity Calcium Phosphate Powder Raw Material

High-Purity Calcium Phosphate Powder Raw Material

  • element:Calcium Phosphate (Tricalcium Phosphate, Hydroxyapatite)
  • purity:≥95% (Ultra-pure analytical grade ≥99.5% available)
  • shape:Powder (Nano, Micron scale)
  • specification:Controllable particle size
  • packaging:Standard packaging, compliant with analytical requirements

High-purity calcium phosphate powder provides superior bioavailability, optimized structural integrity, and reliable chemical stability. Designed for medical, dental, and industrial applications, it ensures consistent performance, extended shelf life, and excellent material compatibility.

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Product Overview
The high-purity calcium phosphate powder is synthesized using precise atomic pairing suspension reaction technology, resulting in high-purity tricalcium phosphate (TCP) and hydroxyapatite (HA) powders. With a purity of ≥95%, this powder exhibits excellent sintering density (≥98%) and compressive strength (≥10MPa), and the particle size is controllable in both nano and micron ranges. It is ideal for additive manufacturing and other industrial applications. Ultra-pure analytical-grade samples (≥99.5% purity) are also available for research and testing purposes.

Key Features

  • High Purity (≥95%): Meets the strict requirements for precision manufacturing and additive manufacturing applications.
  • High Sintering Density (≥98%): Provides excellent mechanical properties, ensuring stability and durability.
  • Controllable Particle Size: Suitable for nano and micron scale applications, allowing flexibility in various processes.
  • Ultra-Pure Analytical Grade Available: Pure samples (≥99.5%) are available for scientific research and testing.

Applications

  • Additive Manufacturing: Serves as the base material for bone repair and bio-ceramics in 3D printing and other additive manufacturing techniques.
  • Medical Field: Widely used in the production of artificial bones and dental restoration materials.
  • Precision Manufacturing and Research: Utilized as a standard sample for material analysis and testing in scientific research.
  • Biomedicine and Composites: Used in the production of biomedical materials and composite materials.

 

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