A Novel Design for Production of Efficient Flexible Lead-Free Shields against X-ray Photons in Diagnostic Energy Range

نویسندگان

  • A. Tavakkoli-Golpayegani Assistant Professor of Medical Engineering (Biomechanics), Medical Physics & Engineering Department, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran
  • B. Zeinali-Rafsanjani The Center for Research on Radiological Sciences, School of Paramedical Sciences, Shiraz University of Medical Sciences, Shiraz, Iran
  • H. Baharvand Assistant Professor of Polymer Chemistry, Iran Polymer Institute, Tehran, Iran
  • M. A. Mosleh-Shirazi Assistant Professor of Medical Physics, Radiotherapy Department, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran
  • M. R. Aghamiri Associate Professor of Medical Physics, Medical Physics & Engineering Department, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran
  • M. Tayebi Master Student of Radiobiology and Radiation Protection, Shahid Beheshti University of Medical Sciences, Tehran, Iran
  • S. M. J. Mortazavi Professor of Medical Physics, Medical Physics & Engineering Department, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran
چکیده مقاله:

Background: Lead-based radiation shields are widely used in radiology departments to protect both workers and patients from any unnecessary exposure to ionizing radiation. Recently there has been a great deal of concern expressed about the toxicity of lead. Human lead toxicity is well documented. In that light, production of environmentally-friendly lead-free radiation shields with less weight compared to conventional lead-based shields is a challenging issue. The aim of this study was to design lead free flexible radiation shields for protection against X and gamma rays.Methods: In this investigation, a wide variety of metallic compounds which potentially could be appropriate radiation shields, were studied. The Monte Carlo code, MCNP4C, was used to model the attenuation of X-ray photons in shields with different designs. Besides simulation, experimental measurements were carried out to assess the attenuation properties of each shielding design. On the other hand, major mechanical properties of this shield such as tensile strength, modulus and elongation at break were investigated.Results: Among different metals, tungsten and tin were the two most appropriate candidates for making radiation shields in diagnostic photon energy range. A combination of tungsten (45%) and tin (55%) provided the best protection in both simulation and experiments. In the next stage, attempts were made to produce appropriate Tungsten-tin-filled polymers which could be used for production of shielding garments. The density of this tungsten-tin-filled polymer was 4.4 g/cm3. The MCNP simulation and experimental measurements for HVL values of this shield at 100 kVp were 0.26 and 0.24 mm, respectively. On the other hand, this novel shield provides considerable mechanical properties and is highly resistant to chemicals.Conclusions: The cost-effective lead-free flexible radiation shield produced in this study offers effective radiation protection in a diagnostic energy range. This environmentally-friendly shield may replace the traditional lead-based shielding garments.

برای دانلود باید عضویت طلایی داشته باشید

برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

a novel design for production of efficient flexible lead-free shields against x-ray photons in diagnostic energy range

background: lead-based radiation shields are widely used in radiology departments to protect both workers and patients from any unnecessary exposure to ionizing radiation. recently there has been a great deal of concern expressed about the toxicity of lead. human lead toxicity is well documented. in that light, production of environmentally-friendly lead-free radiation shields with less weight ...

متن کامل

Radiation attenuation properties of shields containing micro and Nano WO3 in diagnostic X-ray energy range

Background: It has recently been shown that the particle size of materials used for radiation shielding can affect the magnitude of radiation attenuation. Over the past years, application of nano-structured materials in radiation shielding has attracted attention world-wide. The purpose of this study was to investigate the shielding properties of the lead-free shields containing micro and nano-...

متن کامل

radiation attenuation properties of shields containing micro and nano wo3 in diagnostic x-ray energy range

background: it has recently been shown that the particle size of materials used for radiation shielding can affect the magnitude of radiation attenuation. over the past years, application of nano-structured materials in radiation shielding has attracted attention world-wide. the purpose of this study was to investigate the shielding properties of the lead-free shields containing micro and nano-...

متن کامل

Designed free-lead composite shields for diagnostic medicine radiation fields by using MCNPX code

 Introduction: Nowadays, applications of free-lead radiation shields are increased specially for weighting factor and toxicity of lead elements. Although touching the lead may be results in the nervousand blood system of body, it is not exactly proven yet. Protective measures are the fundamental parts of radiation protection. On the other hand, high weighting factor of lead sh...

متن کامل

Introducing a novel Polyvinyl chloride/Tungsten composites for shielding against gamma and X-ray radiations

Introduction: This study introduces a novel polyvinyl chloride (PVC)/tungsten composites with characterization of their shielding properties by employing different techniques. Methods: The PVC/tungsten composites were produced by employing various weight fractions of tungsten micro-particles including 0, 20, and 40 % wt via melt blending method. In the next st...

متن کامل

Assessment of the Radiation Attenuation Properties of Several Lead Free Composites by Monte Carlo Simulation

Background:In diagnostic radiology lead apron, are usually used to protect patients and radiology staff against ionizing radiation. Lead apron is a desirable shield due to high absorption and effective attenuation of x-ray photons in the diagnostic radiology range.Objective: Although lead aprons have good radiation protection properties, in recent years, researchers have been looking for altern...

متن کامل

منابع من

با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

ذخیره در منابع من قبلا به منابع من ذحیره شده

{@ msg_add @}


عنوان ژورنال

دوره 1  شماره 1

صفحات  -

تاریخ انتشار 2011-12-01

با دنبال کردن یک ژورنال هنگامی که شماره جدید این ژورنال منتشر می شود به شما از طریق ایمیل اطلاع داده می شود.

میزبانی شده توسط پلتفرم ابری doprax.com

copyright © 2015-2023