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Barium sulfate sand

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Barium sulfate sand

Product Introduction

Barium sulfate sand, also known as barite sand, serves as the core raw material for barium sulfate mortar. Thanks to its low cost and easy construction operation, barium sulfate mortar acts as an ideal alternative shielding material to lead plates for radiodiagnosis rooms.

Product Performance

  • Applicable to radiation areas and capable of attenuating X-rays.
  • Professional construction technical guidance can be provided in accordance with customer requirements.
  • It has a high specific gravity, along with acid and alkali resistance, sound insulation performance and excellent radiation shielding properties.
  • The standard mixing ratio of barium sulfate sand to cement for construction is 4:1.
  • It features halogen-free, low-smoke, non-toxic and anti-dripping performance, as well as acid resistance, odorlessness, stable physical properties, no expansion, high decomposition temperature and non-corrosiveness to equipment.

Technical Parameters

Nominal Density: 3.6, 3.8, 4.0, 4.2 g/cm³ Particle Color: White, yellowish white, gray, dark gray
Bulk Density: 4080 kg/m³ Coating Thickness: 10 mm (thickness adjusted according to actual shielding requirements)
Barium Sulfate Content: ≥98% Radiation Shielding Capacity: Equivalent to 0.99 mmPb (120 kV, 2.50 mmAl filtration)

Application Fields

  • Department of Radiology:The Department of Radiology is a comprehensive department integrating imaging diagnosis and interventional therapy. Radiological diagnosis employs X-rays, gamma rays and other radiation to penetrate the human body, rendering images of internal bodily structures and organs on fluorescent screens or radiographic films, enabling evaluation of human anatomical morphology, physiological functions and pathological lesions.

  • Department of Radiation Oncology:Radiation oncology is a localized therapeutic modality that uses ionizing radiation for cancer treatment. Radiation sources include alpha, beta and gamma rays emitted from radioactive isotopes, as well as X-rays, electron beams, proton beams and other particle beams generated by various X-ray therapy units and medical accelerators.

  • Department of Nuclear Medicine:It adopts nuclear science technologies for disease diagnosis and treatment. As an integrated department combining imaging, therapeutic services, scientific research and teaching, it serves as one of the core modalities in modern medicine.

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