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Initial Studies of Electron Beams as a Means of Modifying Collagen
by
Setiniyaz, Sadiq
, Hernandez, Maribel
, Apsimon, Robert
, Wise, William
, Ortiz, Edgar
, Seviour, Rebecca
, Junginger, Tobias
in
accelerator
/ Charged particles
/ Collagen
/ collagen modification
/ Conveyors
/ Design modifications
/ Electron beams
/ electrons
/ Energy
/ Incidence angle
/ leather
/ Magnetic fields
/ OEM
/ Particle accelerators
/ Particle interactions
/ Polymers
/ tanning
2021
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Initial Studies of Electron Beams as a Means of Modifying Collagen
by
Setiniyaz, Sadiq
, Hernandez, Maribel
, Apsimon, Robert
, Wise, William
, Ortiz, Edgar
, Seviour, Rebecca
, Junginger, Tobias
in
accelerator
/ Charged particles
/ Collagen
/ collagen modification
/ Conveyors
/ Design modifications
/ Electron beams
/ electrons
/ Energy
/ Incidence angle
/ leather
/ Magnetic fields
/ OEM
/ Particle accelerators
/ Particle interactions
/ Polymers
/ tanning
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Initial Studies of Electron Beams as a Means of Modifying Collagen
by
Setiniyaz, Sadiq
, Hernandez, Maribel
, Apsimon, Robert
, Wise, William
, Ortiz, Edgar
, Seviour, Rebecca
, Junginger, Tobias
in
accelerator
/ Charged particles
/ Collagen
/ collagen modification
/ Conveyors
/ Design modifications
/ Electron beams
/ electrons
/ Energy
/ Incidence angle
/ leather
/ Magnetic fields
/ OEM
/ Particle accelerators
/ Particle interactions
/ Polymers
/ tanning
2021
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Initial Studies of Electron Beams as a Means of Modifying Collagen
Journal Article
Initial Studies of Electron Beams as a Means of Modifying Collagen
2021
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Overview
We present the initial design studies and specifications for an accelerator and conveyor system to irradiate collagen samples, modifying properties such as the putrescibility and mechanical behaviours in a paradigm shift from existing, widely used technology. We show the integrated design requirements for a magnetic rastering scheme to move the beam position in order to ensure a uniform dose distribution over the full surface of the hide and discuss its dependence on factors such as the size of the hide, the beam current and conveyor speed. We also present initial energy deposition studies using beam particle interaction simulation program G4beamline, in order to determine the numerical beam parameters and angle of incidence needed to ensure a uniform depth-dose distribution throughout the hide thickness.
Publisher
MDPI AG
Subject
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