共 60 条
Tuning the 3D Printability and Thermomechanical Properties of Radiation Shields
被引:12
作者:

Brounstein, Zachary
论文数: 0 引用数: 0
h-index: 0
机构:
Los Alamos Natl Lab, Los Alamos, NM 87545 USA
Univ New Mexico, Dept Nanosci & Microsyst Engn, Albuquerque, NM 87131 USA Los Alamos Natl Lab, Los Alamos, NM 87545 USA

Zhao, Jianchao
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h-index: 0
机构:
Los Alamos Natl Lab, Los Alamos, NM 87545 USA
Univ Michigan, Dept Chem Engn, Ann Arbor, MI 48109 USA Los Alamos Natl Lab, Los Alamos, NM 87545 USA

Wheat, Jeffrey
论文数: 0 引用数: 0
h-index: 0
机构:
Los Alamos Natl Lab, Los Alamos, NM 87545 USA Los Alamos Natl Lab, Los Alamos, NM 87545 USA

Labouriau, Andrea
论文数: 0 引用数: 0
h-index: 0
机构:
Los Alamos Natl Lab, Los Alamos, NM 87545 USA Los Alamos Natl Lab, Los Alamos, NM 87545 USA
机构:
[1] Los Alamos Natl Lab, Los Alamos, NM 87545 USA
[2] Univ New Mexico, Dept Nanosci & Microsyst Engn, Albuquerque, NM 87131 USA
[3] Univ Michigan, Dept Chem Engn, Ann Arbor, MI 48109 USA
来源:
关键词:
direct ink writing;
radiation shielding;
thermomechanical properties;
3D printability;
neutron radiography;
siloxanes;
inorganic fillers;
ionizing radiation;
BORON-CARBIDE;
SCAFFOLDS;
COMPOSITES;
CERAMICS;
GAMMA;
D O I:
10.3390/polym13193284
中图分类号:
O63 [高分子化学(高聚物)];
学科分类号:
070305 ;
080501 ;
081704 ;
摘要:
Additive manufacturing, with its rapid advances in materials science, allows for researchers and companies to have the ability to create novel formulations and final parts that would have been difficult or near impossible to fabricate with traditional manufacturing methods. One such 3D printing technology, direct ink writing, is especially advantageous in fields requiring customizable parts with high amounts of functional fillers. Nuclear technology is a prime example of a field that necessitates new material design with regard to unique parts that also provide radiation shielding. Indeed, much effort has been focused on developing new rigid radiation shielding components, but DIW remains a less explored technology with a lot of potential for nuclear applications. In this study, DIW formulations that can behave as radiation shields were developed and were printed with varying amounts of porosity to tune the thermomechanical performance.
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