Published 2019 | Version v1
Miscellaneous

Loading Capabilities of Irradiated 3-D Printed Polymers

Description

Gamma radiation is the emission of a high-energy photon from a radioactive source. The photon then interacts with an atom potentially damaging it. While time has shown that gamma radiation has a little effect on metals, the same cannot be said about plastic. The use of these types of materials in radioactive areas has increased for many reasons ranging from the weight difference between plastics and metals to the costs associated with doing so. For example, a potential use for radiation resistant plastics could be longer lasting, cost effective, and light weight radiation detection devices sent to probe an area that may present unsafe conditions for humans to survey. For these reasons and more, finding a plastic polymer that can withstand radiation for an extended period of time would make a great impact on the nuclear industry. In this experiment, two different polymers will undergo a series of strength tests before and after being exposed to radiation after different amounts of time up to two weeks. There are two sets of plastic polymers that will be used. Each set will consist of an nonirradiated, control subset, and subsets subject to radiation for one day, one week, and two weeks. The radiation source is 1100 Ci cobalt- 60. The specimens are placed on a foam platform such that they will be exposed as evenly as possible. They are then lowered into the radiation chamber where they are surround by cobalt-60 sources and irradiated for the given amount of time. The specimens will be tested for tensile strength and flexural strength according to ASTM standards. For tensile testing, the specimen has a 'dog bone' shape. The specimen is gripped at the wide ends, and pulled away from the center at a constant rate until failure. To test flexural strength, the specimens will be subject to a 3-point bend test. The specimen is held in place by three points, center top side and both ends bottom side. Load is applied at a constant rate on the center of the specimen until failure. The calculations to be considered for comparison after performing these tests include the tensile strength and stress, elongation, flexural stress and strain, and elasticity. Once these tests are completed, testing specimens that have been 3D printed with different print orientations will be considered and tested. The results from both experiments will help create strong, radiation resistant products in a expeditious manner that could really push the current limitations and expand the use of radiation resistant material

Availability note (English)

Available from: WM Symposia, Inc., PO Box 27646, 85285-7646 Tempe, AZ (US)

Additional details

Publishing Information

Imprint Pagination
1 p.
Report number
INIS-US--21-WM-P29

Conference

Title
45. Annual Waste Management Conference
Acronym
WM2019
Dates
3-7 Mar 2019
Place
Phoenix, AZ (United States)

Optional Information

Notes
available online at: https://www.xcdsystem.com/wmsym/2019/index.html