COMPRESSION OF AEROGELS

被引:144
作者
SCHERER, GW [1 ]
SMITH, DM [1 ]
QIU, XM [1 ]
ANDERSON, JM [1 ]
机构
[1] UNIV NEW MEXICO, CTR MICROENGINEERED CERAM, ALBUQUERQUE, NM 87131 USA
关键词
D O I
10.1016/0022-3093(95)00074-7
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
When an aerogel is pressurized in a mercury porosimeter, the network is compressed, but no mercury enters the pores. Therefore, porosimetry cannot be used to measure the pore size distribution in an aerogel, but it does provide a measure of the bulk modulus of the network. For silica aerogels, the network is linearly elastic under small strains? then exhibits yield followed by densification and plastic hardening. In the plastic regime it is found that the bulk modulus has a power-law dependence on density with an exponent of approximate to 3.2. For the same gels, the Linear elastic modulus (before compression) also obeys a power law, but the exponent is similar or equal to 3.6, as found by several other groups. If a Eel is compressed to a pressure, P-1, that exceeds the yield stress, then returned to ambient pressure, the plastic deformation is irreversible; if that gel is then compressed to pressure P-2 > P-1, it behaves elastically up to similar or equal to P-1. then yields and follows the same power-law curve. Thus the location of the yield point of a previously compressed material indicates the maximum pressure to which the sample had been subjected; in particular, the compression curve can be used to estimate the capillary pressure exerted on a xerogel during drying.
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页码:316 / 320
页数:5
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