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Bonding glass to metal with plastic ...
~
Willis, Chris Lynn.
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Bonding glass to metal with plastic for ultra stability.
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Bonding glass to metal with plastic for ultra stability./
作者:
Willis, Chris Lynn.
面頁冊數:
98 p.
附註:
Source: Masters Abstracts International, Volume: 41-05, page: 1513.
Contained By:
Masters Abstracts International41-05.
標題:
Engineering, Mechanical. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1412973
Bonding glass to metal with plastic for ultra stability.
Willis, Chris Lynn.
Bonding glass to metal with plastic for ultra stability.
- 98 p.
Source: Masters Abstracts International, Volume: 41-05, page: 1513.
Thesis (M.S.)--University of Massachusetts Lowell, 2003.
To enable the invention of higher power IRCM lasers, 3D LIDAR systems, Designator/Rangefinders and other optical instruments subjected to wide environmental temperature ranges, there is a need to develop improved technology to hold small optical elements with high dimensional stability. This effort attempted to identify significant factors for stability of adhesively mounted optics. Half-inch diameter flat mirrors were face-bonded to metal mounts, then compared with a reference reflective surface over a temperature range of −40 to +70°C. Mount material, adhesive material, and bond joint design were screened. Bond thickness, size variation, and thickness variation were measured in the final experiment. Not surprisingly, thickness variation was critical, but that effect was found to be proportional to the thickness. The thicker the bond, the more the error from the same differential thickness in spots increased above the theoretical value.Subjects--Topical Terms:
783786
Engineering, Mechanical.
Bonding glass to metal with plastic for ultra stability.
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To enable the invention of higher power IRCM lasers, 3D LIDAR systems, Designator/Rangefinders and other optical instruments subjected to wide environmental temperature ranges, there is a need to develop improved technology to hold small optical elements with high dimensional stability. This effort attempted to identify significant factors for stability of adhesively mounted optics. Half-inch diameter flat mirrors were face-bonded to metal mounts, then compared with a reference reflective surface over a temperature range of −40 to +70°C. Mount material, adhesive material, and bond joint design were screened. Bond thickness, size variation, and thickness variation were measured in the final experiment. Not surprisingly, thickness variation was critical, but that effect was found to be proportional to the thickness. The thicker the bond, the more the error from the same differential thickness in spots increased above the theoretical value.
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